Generated by Rank Math SEO, this is an llms.txt file designed to help LLMs better understand and index this website. # kingpo: KingPo Technology manufactures battery testing machines, environmental test chambers, safety, and reliability testing ## Sitemaps [XML Sitemap](https://www.dgkingpo.com/sitemap_index.xml): Includes all crawlable and indexable pages. ## Posts - [KP-DFT201 Defibrillation Effect and Energy Tester Delivered to DEKRA Guangzhou Laboratory](https://www.dgkingpo.com/defibrillation-effect-energy-tester-dekra-guangzhou/): Contact KingPo - [IP and IK Test Equipment Package for URS Products & Testing in India](https://www.dgkingpo.com/ip-ik-test-equipment-urs-india/): Technical Delivery Case · India IP and IK Test Equipment Package Prepared for URS Products & Testing IP and IK test equipment formed the core of this coordinated laboratory package prepared by KingPo for URS Products & Testing Pvt. Ltd. in India. The project combines equipment for access-protection checks, solid-object ingress, dust ingress, water ingress from IPX1 through IPX9K, mechanical impact testing from IK01 through IK10, and automotive rain exposure. Rather than relying on one universal chamber, the project uses dedicated probes, water-test apparatus, immersion systems, environmental chambers and impact testers. Each test method can therefore be performed using the appropriate force, geometry, water flow, pressure, exposure pattern and specimen arrangement. View IP Test Equipment Discuss a Laboratory Project Large test systems and related equipment secured in individual wooden export cases before container loading. Project Overview Customer URS Products & Testing Pvt. Ltd. Region India Test Coverage IP, IK and automotive rain testing Project Stage Packed and loaded for delivery Main Application Laboratory evaluation of enclosure access protection, dust and water ingress protection, and resistance to external mechanical impact Solid Protection Range Access probes and solid-object tools associated with IP1X through IP4X, together with IP5X and IP6X dust testing Water-Test Range Dripping, spraying, splashing, water jets, temporary immersion, pressure-assisted immersion and high-pressure hot-water spray Impact-Test Range Lower- and higher-energy mechanical impact testing from IK01 through IK10 Main Standards IEC 61032, IEC 60529, IEC 60068-2-75 and the project-specified automotive rain-test method Customer Testing Requirement Based on the selected equipment, the project was designed to give the laboratory broad coverage across several enclosure-protection methods. The configuration needed to support small reference-probe checks as well as larger environmental and mechanical test systems. The required water-test range extended from controlled dripping and spray exposure to high-flow hose-nozzle testing, pressure-assisted immersion and severe high-pressure hot-water spray. A central water-control arrangement was therefore combined with several dedicated test devices. Mechanical testing also required two different arrangements. Lower-energy impacts were assigned to a multi-energy spring hammer, while higher IK levels were covered by a separate pendulum impact system. IP and IK Test Equipment Project Scope The project begins with tools used to evaluate whether a person, tool, wire or specified solid object can enter an enclosure or reach a hazardous part. The selected probe set includes a 50 mm sphere, a jointed test finger, a 12.5 mm sphere, a 2.5 mm test rod and a 1.0 mm test wire. Dust ingress testing is handled by a dedicated IP5X/IP6X chamber using controlled talcum-powder circulation. Water ingress testing is divided between a drip box, oscillating tubes, a handheld spray nozzle, IPX5/IPX6 hose nozzles, immersion equipment and an IPX9K chamber. Mechanical impact testing is performed independently from ingress testing. A spring-operated impact hammer covers the lower-energy range, while the pendulum system provides the arrangement required for higher impact energies. A separate automotive rain chamber adds R1, R2, S1 and S2 rain and spray capabilities. Its spray arrangement differs from the IEC 60529 drip, oscillating-tube and hose-nozzle methods and must therefore be treated as an independent test system. Delivered System Configuration The package combines precision reference tools, standalone apparatus and full-size laboratory systems. The equipment names below link directly to the corresponding KingPo product or configuration pages. Test Area Equipment Laboratory Function Access and solid-object protection IEC 61032 and IEC 60529 test probes 50 mm sphere, jointed test finger, 12.5 mm sphere, 2.5 mm rod and 1.0 mm wire Assessment of enclosure openings, access to hazardous parts and entry by specified solid foreign objects IK01–IK06 IEC 60068-2-75 multi-energy spring impact hammer Selectable lower-energy impacts from 0.14 J through 1.00 J IK07–IK10 KP-IK1000A pendulum impact tester Higher-energy impact testing using a controlled pendulum arrangement IP5X and IP6X KP-DC1000A sand and dust test chamber Controlled talcum-powder exposure for dust ingress evaluation IPX1 and IPX2 IEC 60529 IPX1/IPX2 drip box Vertical dripping and dripping-water exposure with the specimen inclined by 15° IPX3 and IPX4 Oscillating-tube rain spray system IEC 60529 handheld spray nozzle Two apparatus options for spraying and splashing tests, selected according to specimen size and accessibility IPX5 and IPX6 IEC 60529 IPX5/IPX6 hose nozzles Controlled water-jet testing through 6.3 mm and 12.5 mm nozzles IPX7 and IPX8 IPX7/IPX8 water immersion test system Temporary immersion and pressure-assisted continuous immersion under the defined test conditions IPX9K IPX9K-1000B water spray test chamber High-pressure and high-temperature water-spray exposure Automotive rain and spray Automotive rain spray test chamber Project-configured R1, R2, S1 and S2 rain and spray exposure The linked pages provide product-family references. Exact dimensions, accessories, control functions and electrical requirements remain subject to the final project configuration. The wooden cases were positioned inside the container according to their dimensions and handling requirements. Key Technical Parameters The following values summarize the principal configuration points recorded for the project. They explain the supplied scope but do not replace the applicable standard, operating instructions or final technical agreement. Equipment or Test Function Project Configuration Access and solid-object probes 50 mm sphere, 12 mm jointed test finger, 12.5 mm sphere, 2.5 mm test rod and 1.0 mm test wire. The applicable probe and test force depend on the specific access or ingress requirement. Spring impact hammer Selectable impact energies of 0.14 J, 0.20 J, 0.35 J, 0.50 J, 0.70 J and 1.00 J Dust test chamber Internal test space of 1000 × 1000 × 1000 mm, talcum-powder dosage of 2 kg/m³ and air velocity below 2 m/s Water-control system Separate low- and high-flow pumps, digital flow measurement, six stainless-steel water-supply routes and water filtration IPX1/IPX2 drip box Drip area of 1000 × 1000 mm. The configuration supports 1 mm/min for IPX1 and 3 mm/min with four specimen positions inclined by 15° for IPX2. IPX3/IPX4 oscillating tubes Tube radii of 200, 400, 600, 800 and 1000 mm, allowing the laboratory to select an appropriate tube for different specimen dimensions IPX3/IPX4 handheld nozzle Brass spray head with 121 holes of 0.5 mm and an aluminium moving shield IPX5/IPX6 hose nozzles 6.3 mm nozzle at 12.5 L/min for IPX5 and 12.5 mm nozzle at 100 L/min for IPX6 IPX8 pressure vessel Pressure range of 0.01–0.5 MPa with configurable test duration. The required pressure and exposure time must be defined by the applicable product requirement. Why the Project Uses Multiple Test Apparatus Oscillating tube and handheld spray nozzle Both apparatus can support IPX3/IPX4 testing, but the appropriate method depends on specimen size, geometry and mounting. The handheld nozzle provides a practical alternative for large, fixed or irregularly shaped enclosures that cannot be exposed effectively within an oscillating tube. Separate IPX7 and IPX8 arrangements IPX7 uses temporary immersion under defined conditions. IPX8 requires continuous immersion under conditions specified for the product or agreed by the relevant parties, which is why the pressure-controlled vessel is separate from the open immersion tank. Two mechanical impact systems Lower-energy spring hammer tests and higher-energy pendulum tests use different striking mechanisms. Separate apparatus allows the laboratory to apply the required impact energy using the appropriate test arrangement. Independent automotive rain testing The automotive rain chamber uses a dedicated spray arrangement for R1, R2, S1 and S2 conditions. These profiles should be reviewed separately from the general IEC 60529 dripping, spraying and water-jet methods. Applicable Standards and Test Boundaries The package supports several related standards, but each standard serves a different purpose. They should not be combined into one general compliance statement. Standard Application in This Project IEC 61032 Access probes used to assess protection of persons and equipment against access to hazardous parts IEC 60529 Enclosure classifications and test methods covering access, solid-object ingress, dust ingress and water ingress IEC 60068-2-75 Hammer-test arrangements used to evaluate resistance to external mechanical impact Automotive rain-test method Project-specified R1, R2, S1 and S2 rain or spray exposure for vehicle-related components and assemblies The applicable product standard remains decisive An IP or IK code does not define every test condition. The relevant product standard may also specify specimen operation, mounting, preconditioning, test locations, post-test inspection and electrical safety checks. Recommended Laboratory Workflow Confirm the applicable standard, edition, required test level and acceptance criteria. Record the specimen dimensions, mass, mounting position and operating condition. Select the correct access probe or solid-object tool and confirm the required test force. Choose the dust, drip, oscillating-tube, handheld nozzle, hose-nozzle, immersion or IPX9K apparatus required for the specified test. Verify flow, pressure, temperature, exposure time, nozzle distance, oscillation angle and specimen position before testing. Select the appropriate hammer type, impact energy, striking element and impact locations for mechanical impact testing. Complete the required visual, functional, dielectric or other product-specific assessments after exposure. Laboratory Setup and Utility Requirements A package of this scale requires advance planning for utilities, equipment access and specimen handling. The laboratory layout should be reviewed before the larger systems are positioned. Electrical supply Confirm the required voltage, phase, frequency, circuit capacity, grounding and local isolation for each powered system. Water supply and drainage Provide adequate water flow, storage, filtration and drainage. Water quality should also be considered to reduce nozzle blockage, contamination and scale buildup. Equipment access and floor loading Check doorway dimensions, transport routes, lifting arrangements and floor-loading capacity before delivery. Larger chambers and pressure vessels may require dedicated moving equipment. Operating clearance Allow sufficient space for chamber doors, oscillating tubes, rotating tables, specimen loading, handheld nozzle operation, inspection and routine maintenance. Information Required for Similar Projects Before a similar IP and IK test equipment package is configured, the laboratory should provide the following information: Applicable standards, editions and required IP or IK levels Specimen dimensions, mass and enclosure material Required mounting direction and accessible test surfaces Whether the specimen must remain energized or operating during exposure Turntable diameter, load capacity and rotation requirements Required immersion depth, IPX8 pressure and exposure duration Available electrical supply, water source, filtration and drainage Room dimensions, doorway size, access routes and floor-loading limits Calibration, documentation, reporting and spare-parts requirements Laboratories comparing different configurations can also review KingPo’s IP protection rating test equipment selection guide before defining the final project scope. Documentation and Calibration Planning For a multi-equipment laboratory project, the documentation scope should be agreed before delivery. Relevant records may include operation manuals, electrical drawings, installation layouts, equipment identification information, maintenance instructions and recommended spare-parts lists. Calibration and verification requirements should be defined by measurement parameter rather than by equipment name alone. Depending on the apparatus, the laboratory may require records for: Probe dimensions and applied force Drip rate and water flow rate Water pressure and immersion pressure Water temperature Exposure time and rotation speed Oscillation angle and nozzle dimensions Impact energy and striking-element dimensions Define the required records during the project stage Calibration points, certificate type, report language, equipment identification and issuing laboratory should be confirmed before the equipment reaches the customer’s facility. After loading was completed, the container was closed and secured for international transportation. Engineering Notes for Similar Laboratories Do not select equipment from the rating code alone Products with the same nominal IP or IK rating may require different chamber sizes, tube radii, turntable capacities, nozzle access, mounting arrangements or powered-test connections. Confirm the product-specific test conditions The general IP or IK method may be supplemented by a product standard that defines specimen operation, mounting, preconditioning, impact locations and post-test assessment. Distinguish IPX9 and IPX9K requirements Terminology and test conditions depend on the referenced standard and product sector. Pressure, temperature, flow, spray angle, distance and exposure duration should all be confirmed before equipment selection. Plan periodic verification Flow meters, pressure instruments, temperature sensors, timers, dimensional probes and impact equipment should be included in the laboratory’s maintenance, verification and recalibration program. Frequently Asked Questions What test areas are covered by this equipment package? The configuration covers access-protection probes, solid-object ingress, IP5X/IP6X dust testing, IPX1–IPX9K water exposure, IK01–IK10 impact testing and automotive rain and spray testing. Why are two IPX3/IPX4 apparatus types included? The oscillating tube is suitable when the specimen can be positioned within the selected tube radius. The handheld nozzle is useful for large, fixed or irregularly shaped products that cannot be exposed effectively using the oscillating-tube method. Is the maximum IPX8 vessel pressure always used? No. The vessel pressure range defines equipment capability, not the required test condition. Pressure and duration must be selected according to the applicable product requirement or agreed test specification. Can one impact tester cover every IK level? Different impact-energy ranges may require different striking mechanisms. This project uses a spring impact hammer for lower energies and a pendulum system for higher-energy testing. Is automotive rain testing equivalent to IEC 60529 testing? Not automatically. Automotive methods may use different spray patterns, flow rates, pressures, specimen positions and exposure sequences. The relevant automotive specification should be reviewed independently. Can the specimen remain powered during water testing? Powered testing is not automatically included. The requirement should be confirmed from the applicable product standard so that suitable electrical interfaces and safety controls can be incorporated. What information is required for a similar project? Provide the applicable standards, required IP and IK levels, specimen dimensions and mass, operating condition, mounting method, available utilities, laboratory layout and calibration-documentation requirements. Planning an IP and IK Test Equipment Project? Send KingPo the applicable standards, specimen dimensions, required protection levels, operating conditions, laboratory layout and calibration requirements. The proposed configuration can then be reviewed against the actual testing workflow rather than selected only by the rating code. Contact KingPo - [IEC 61058-1:2026 Update: Key Changes and Test System Considerations for Appliance Switches](https://www.dgkingpo.com/iec-61058-1-2026-switch-testing-changes/): What the New 600 V Scope and DC Arc Test Mean for Switch Testing   IEC 61058-1:2026 was published on July 30, 2026. The fifth edition extends the scope of the appliance switch standard from 480 V to 600 V and introduces new ground-fuse requirements and a DC arc extinction test. Laboratories should review the complete test configuration before describing existing equipment as suitable for the new edition. In This Article Confirmed changes in IEC 61058-1:2026 Extension of the scope to 600 V New DC arc extinction test Ground-fuse requirements Classification and documentation changes Existing equipment review KingPo tailored solutions Information required for configuration Frequently asked questions IEC 61058-1:2026, the fifth edition of the international standard for switches used in appliances, was published on July 30, 2026. It replaces IEC 61058-1:2016 and introduces several technical changes that may affect switch classification, laboratory procedures and the configuration of switch testing equipment. The most significant changes include an extension of the scope from 480 V to 600 V, new ground-fuse requirements and the addition of a DC arc extinction test. For laboratories and appliance manufacturers, this is not simply a matter of changing the standard edition shown on a test report. The complete test setup—including the power source, electrical load, operating mechanism, fixtures, protective circuit and measurement system—should be reviewed before support for the 2026 edition is claimed. According to the IEC publication information, the new edition applies to switches or switching devices intended to control household appliances and similar equipment, with rated voltages not exceeding 600 V and rated currents not exceeding 63 A. What Changed in IEC 61058-1:2026? The IEC identifies the following significant technical changes in the fifth edition: The scope has been extended to 600 V. Ground-fuse requirements have been added to Clause 17. A DC arc extinction test has been added to Clause 17 and Annex P. Table 5 has been rearranged to align with switch classifications. Inconsistent values in Table 6 have been corrected. X3 capacitors have been removed from the relevant classification requirements and Table 19. Important technical note: These are the principal changes confirmed in the IEC publication information. Detailed test circuits, test conditions, procedures and acceptance criteria must be checked against the official IEC 61058-1:2026 text rather than inferred from the public summary. 1. The Scope Has Been Extended to 600 V The previous edition covered appliance switches with rated voltages not exceeding 480 V. IEC 61058-1:2026 increases the upper limit to 600 V while retaining the maximum rated current of 63 A. This does not mean that every switch must be tested at 600 V. Actual test conditions still depend on the rated voltage, rated current, switch classification, load characteristics and intended application of the device under test. However, laboratories working with higher-voltage switching devices should review whether their existing test systems provide sufficient: Output voltage range Current and power capacity Electrical insulation Clearance and creepage distances Fixture and terminal ratings Load-circuit capability Measurement range Protective-device ratings Overall test-system safety margin A test system originally designed around a maximum 480 V application should not automatically be described as supporting IEC 61058-1:2026 without a documented hardware and safety review. For projects requiring controlled voltage and frequency output, a suitable programmable AC power source may form part of the overall test system. Its capacity must still be selected according to the DUT rating, starting current, load characteristics and required test duration. 2. A DC Arc Extinction Test Has Been Added One of the most consequential changes is the addition of a DC arc extinction test in Clause 17 and Annex P. This matters because interrupting direct current presents different technical challenges from interrupting alternating current. An AC switch endurance or breaking-capacity system does not automatically provide the source, circuit arrangement, protection and measurement functions required for a DC arc test. Laboratories preparing for the new edition may need to review: Controlled DC voltage and current output Required load characteristics Switching frequency and operating sequence DUT connection and fixture ratings Arc behavior or waveform observation Test interruption conditions Overcurrent and overvoltage protection Emergency shutdown functions Test-data recording Configuration traceability A programmable DC power supply can provide controlled DC output, but it is only one part of the test arrangement. The source, load circuit, actuator, DUT fixture, protection system and measurement equipment must work together as a coordinated test system. The specific Annex P circuit and acceptance criteria must be taken from the official standard. A general-purpose DC source or switch endurance tester should not be described as Annex P compliant without technical verification. 3. Ground-Fuse Requirements Have Been Added IEC 61058-1:2026 also introduces ground-fuse requirements in Clause 17. This may affect the protective arrangement, test circuit and sequence used during applicable switch tests. Laboratories should evaluate the complete test circuit rather than treating this as a requirement to add a single fuse component. The review may need to cover: Fuse type and rating Grounding arrangement Source protection DUT connection Test wiring Fault-current behavior Shutdown logic Measurement and recording functions 4. Classification and Table Changes Require Document Review The rearrangement of Table 5 and correction of values in Table 6 may not require major hardware changes in every laboratory. They may still affect how a switch is classified, how test conditions are selected and how results are documented. Manufacturers, laboratories and certification organizations should review: Product classification records Test plans and laboratory worksheets Equipment configuration sheets Test report templates Product and equipment datasheets Declarations and compliance records Customer quotation specifications Simply replacing “IEC 61058-1:2016” with “IEC 61058-1:2026” in a report template is not sufficient. The classification and test conditions selected from the revised tables should also be checked. 5. X3 Capacitors Have Been Removed The fifth edition removes X3 capacitors from the relevant classification requirements and Table 19. This change may affect component classification, test planning and technical documentation for electronic switch designs. Manufacturers should check whether existing test plans, component lists or compliance records still refer to the removed classification. However, the deletion of X3 capacitors from the identified requirements should not be interpreted as the removal of every capacitor-related evaluation from appliance switch testing. Does Existing Switch Test Equipment Need to Be Replaced? Not necessarily. Some systems may already provide sufficient voltage, current, DC output, actuation and measurement capability. Other systems may be upgradeable by modifying the power source, load circuit, fixtures, protection or control software. The correct decision should be based on a technical gap assessment rather than the publication year alone. Recommended Equipment Review Review Item Information to Confirm Applicable edition Is the project based on the 2016 or 2026 edition? Applicable clauses Which clauses and annexes must be performed? DUT type What type of appliance switch is being evaluated? Electrical rating What are the rated voltage, rated current and switching category? Supply type Does the test require AC, DC or both? Load characteristics Is the load resistive, inductive, capacitive or specially defined? DC arc testing Is the applicable Annex P procedure required? Mechanical operation What force, torque, travel, speed and operating direction are required? Test cycles How many operations must be completed and recorded? Protection Are the grounding, fuse, interlock and emergency-stop arrangements suitable? Measurement Which voltage, current, timing or waveform parameters must be recorded? Traceability Can the test configuration, calibration status and results be documented? Why the Power Source Cannot Be Selected by Voltage Alone A common equipment-selection error is to choose a power source only according to the rated voltage shown on the DUT. The required power-source capacity may also depend on: Rated current Starting or inrush current Load power factor Phase configuration Permitted voltage drop Test duration Operating rate Number of simultaneous test stations Overload and transient requirements For a broader explanation of these factors, see the KingPo guide on how to select programmable AC and DC power sources for product testing. The source should be selected together with the load system and switching mechanism. A source with sufficient open-circuit voltage may still be unsuitable if it cannot maintain the required current or withstand repeated switching transients. Mechanical Operation Is Also Part of the Test System Switch testing is not limited to applying an electrical load. The mechanical actuator must operate the DUT in a controlled and repeatable manner. Depending on the switch structure, the operating system may need to control: Push, pull, rotary or rocker movement Operating direction Stroke or rotation angle Applied force or torque Movement speed Dwell time Operating frequency Return position Contact-failure detection KingPo’s broader range of plug, socket and switch testing equipment includes systems for mechanical endurance, breaking capacity, temperature rise, insertion and withdrawal, and related test applications. These products can provide useful technical references for fixture design, automated cycling and electrical-load integration. However, an IEC 60884-1 system should not automatically be presented as an IEC 61058-1:2026 test system. The applicable standard, DUT structure and required test circuit must be assessed separately. KingPo Tailored Switch Testing Solutions Appliance switches can vary significantly in rated voltage, current, pole configuration, contact structure, operating method, load type and required number of operations. For this reason, KingPo does not recommend selecting a test system from the standard number alone. Based on the customer’s DUT, applicable clauses and laboratory requirements, KingPo can provide a matched testing solution that integrates the necessary electrical, mechanical, measurement, control and safety functions. A matched system may include: AC or DC programmable power sources Resistive, inductive or capacitive load systems Mechanical operating mechanisms Customized DUT fixtures Single-station or multi-station configurations Cycle counting and test-sequence control Voltage and current monitoring Contact-failure detection Data acquisition and waveform observation interfaces Fuse and grounding arrangements Safety interlocks and emergency-stop protection PLC and touchscreen control PC software and test-report functions Standalone Test Equipment Suitable when the laboratory already has a compatible power source, load bank or measurement system and only requires a mechanical operating mechanism or dedicated DUT fixture. Integrated Switch Test Systems Suitable when the customer requires a coordinated system combining electrical supply, load control, mechanical operation, safety protection and data recording. Customized Fixtures and Actuation Suitable for switches with non-standard housings, unusual operating directions, limited mounting space or special force, stroke and torque requirements. Automated Multi-Station Solutions Suitable for repetitive endurance testing, comparative product evaluation or laboratories that need to test multiple samples under the same conditions. KingPo’s electrical safety test equipment can also be combined with customized mechanical, electrical and control modules when a project includes additional appliance safety evaluations. Final support for IEC 61058-1:2026, including the DC arc extinction procedure, must be confirmed according to the applicable clauses and the agreed project configuration. Information Required for a Technical Proposal To prepare a suitable system configuration, customers should provide as much of the following information as possible: Applicable standard and edition Required clauses or test methods DUT name and intended application Product drawings, photographs or samples Switch type and number of poles Rated voltage and rated current AC or DC operating mode Load characteristics Power factor, where applicable Operating force or torque Operating travel or rotation angle Required operating frequency Number of test cycles Number of simultaneous test stations Failure-detection requirements Measurement and recording requirements Communication interface Laboratory input power Available installation space If the detailed standard clauses have not yet been confirmed, the customer can first provide the DUT specifications and intended certification market. KingPo can then help identify the main equipment-selection questions that should be clarified before the final system is specified. Implications for Appliance and Switch Manufacturers Publication of IEC 61058-1:2026 does not automatically invalidate every product evaluated under the previous edition. Transition arrangements may depend on regional adoption, certification schemes, product categories, certification-body policies and the conditions of existing certificates. Manufacturers should confirm: Which edition is required for the intended certification project. Whether an existing certificate remains valid during the transition period. Which technical changes apply to the specific switch design. Whether supplementary testing is required. Whether the existing laboratory setup can perform the applicable 2026 procedures. The IEC publication date should not be treated as a universal regulatory enforcement date for every country or certification scheme. How Should Test Equipment Datasheets Be Updated? Test-equipment manufacturers should avoid changing the applicable-standard field from IEC 61058-1:2016 to IEC 61058-1:2026 without confirming the actual functions and limits of the equipment. A useful datasheet should identify individual capabilities, including: Maximum AC test voltage Maximum DC test voltage Maximum test current Supported load types Number of test stations Operating force or torque Stroke or angular range Operating frequency Cycle-count range Fixture configuration Voltage and current measurement Failure-detection functions Waveform or arc-observation capability Safety protection Data export functions Applicable clauses Optional configurations This gives laboratories more reliable information than a broad “fully compliant” statement and reduces the risk of selecting equipment that cannot reproduce the required test conditions. KingPo’s complete testing equipment product range can be reviewed when a project requires additional power, electrical safety, mechanical endurance or customized laboratory equipment. Frequently Asked Questions Is IEC 61058-1:2026 officially published? Yes. IEC 61058-1:2026 was published on July 30, 2026 as the fifth edition. It replaces IEC 61058-1:2016. Does every switch now need to be tested at 600 V? No. The standard now covers switches rated up to 600 V, but the applicable test voltage depends on the rating, classification and intended application of the individual switch. What is the most important equipment-related change? The addition of DC arc extinction testing is particularly important because an AC endurance tester does not necessarily provide the DC source, load circuit, protection or measurement functions required for the procedure. Can a programmable DC power supply perform the complete Annex P test? Not by itself. It may provide controlled DC output, but the complete system may also require a defined load circuit, operating mechanism, fixture, protection system and measurement equipment. Can IEC 60884-1 plug and socket equipment be used? Some mechanical, load or control functions may be technically relevant, but IEC 60884-1 equipment should not automatically be described as compliant with IEC 61058-1:2026. A clause-based technical assessment is required. Must all existing switch testers be replaced? No. Some systems may already be suitable, while others may be upgradeable. Their actual specifications should be compared with the applicable requirements of the 2026 edition. Does KingPo provide customized switch test systems? Yes. KingPo can develop a matched solution based on the DUT structure, rated electrical parameters, applicable clauses, load type, operating mechanism, test cycles, automation level and laboratory conditions. What information should be submitted for configuration? Provide the applicable standard, required clauses, DUT drawings, rated voltage and current, AC or DC operation, load type, operating force or torque, movement, operating frequency, number of cycles and required data-recording functions. Conclusion IEC 61058-1:2026 is more than an editorial update. The extension to 600 V, new ground-fuse requirements and addition of DC arc extinction testing can affect laboratory procedures and the configuration of switch testing systems. However, the correct response is not to replace every existing tester or immediately update every product page with the new edition number. Manufacturers and laboratories should first identify the requirements applicable to their switches. The power source, load circuit, mechanical actuator, fixtures, protection and measurement system should then be evaluated as one complete test configuration. KingPo can provide matched standalone equipment, integrated systems and customized testing solutions based on the customer’s DUT and testing requirements. Support for individual IEC 61058-1:2026 procedures should be confirmed through a clause-based technical review before the final configuration is agreed. Technical Inquiry and Configuration Support Send us your applicable clauses, DUT voltage and current, AC or DC operating mode, load characteristics, operating requirements, cycle count and data-recording needs. KingPo will evaluate the required test-system configuration for your project. Request a Technical Evaluation - [Defibrillator Output Testing vs Defibrillation-Proof Testing: Test Objects, Methods and Equipment](https://www.dgkingpo.com/defibrillator-output-testing-vs-defibrillation-proof-testing/): A request for a “defibrillator tester” can describe several completely different laboratory tasks. The core difference between defibrillator output testing and defibrillation-proof testing is the direction of the pulse. The correct system is determined first by the device under test, then by the pulse source, the required evidence and the applicable test circuit—not by the largest voltage or energy number on a brochure. - [KingPo and Techno Science Japan Formalize Authorized Distribution Partnership](https://www.dgkingpo.com/kingpo-techno-science-japan-authorized-distributor/): KingPo Technology Development Limited and Techno Science Japan Co., Ltd. have formalized an authorized distribution partnership through the signing of a strategic cooperation and distribution agreement. The partnership combines TSJ’s local market and measurement-system experience with KingPo’s standards-based testing equipment engineering and manufacturing capabilities. - [KingPo KP-FT03-1 Needle Flame Tester Project for DEKRA Testing and Certification S.r.l. in Italy](https://www.dgkingpo.com/iec-60695-11-5-needle-flame-tester-dekra/): KingPo prepared one set of the IEC 60695-11-5 Needle Flame Tester for DEKRA Testing and Certification S.r.l. The KP-FT03-1 system is designed for controlled small-flame fire hazard testing, with applications related to IEC 60695-11-5, IEC 60335-1 and IEC 62368-1. - [KingPo KP-1050S Delivered to SGS Shanghai Laboratory](https://www.dgkingpo.com/kp-1050s-defibrillation-test-pulse-generator-sgs-shanghai/): KingPo delivered one KP-1050S Defibrillation Test Pulse Generator to SGS Shanghai Laboratory for controlled defibrillation pulse simulation in medical device safety testing. - [KingPo Supplies KP-1050S Defibrillation Test Pulse Generator to NeuroPace in the United States](https://www.dgkingpo.com/defibrillation-test-pulse-generator-neuropace-usa/): KingPo has supplied a KP-1050S Defibrillation Test Pulse Generator to NeuroPace, Inc. in Mountain View, California, United States. - [EU MDR Harmonised Standards 2026: Testing Impact](https://www.dgkingpo.com/eu-mdr-harmonised-standards-2026/): EU MDR Harmonised Standards 2026: Testing Updates for Medical Device Manufacturers - [Beyond Peak Voltage: How to Select the Right Impulse Test Generator for IEC 62368-1](https://www.dgkingpo.com/iec-62368-1-impulse-test-generator-selection/): “We need a 5 kV impulse test generator for IEC 62368-1.” - [Vincent Visits KingPo for ISO 80369 Luer Connector Test Technical Exchange](https://www.dgkingpo.com/vincent-visits-kingpo-iso-80369-luer-connector-discussion/): ISO 80369 Luer Connector Test applications were discussed during Vincent’s visit to KingPo Technology Development Limited on July 7, 2026. The technical exchange focused on Luer connector verification, GB/T 1962.1-2015 related requirements, leakage testing, reference connector selection, test fixture configuration, and practical medical device connector testing scenarios. - [How to Select Programmable AC and DC Power Sources for Reliable Product Testing](https://www.dgkingpo.com/programmable-ac-dc-power-sources-product-testing-guide/): Programmable AC and DC power sources are used when a device under test requires controlled, repeatable and configurable power conditions instead of direct mains power or a fixed-output power supply. - [ISO 18250-3 Figure C.3 and C.4 Reference Connectors Supplied to Fresenius Jiangxi Factory](https://www.dgkingpo.com/iso-18250-3-reference-connectors-fresenius-jiangxi/): ISO 18250-3 Reference Connectors were supplied by KingPo to Fresenius Jiangxi Factory on June 23, 2026, including the Figure C.3 Reference Connector and Figure C.4 Cross Reference Connector for cross-port reservoir connector verification and reservoir delivery system connector testing applications. - [Why Annual Calibration of an ESU Analyzer Is Important for Electrosurgical Unit Safety Testing](https://www.dgkingpo.com/esu-analyzer-annual-calibration-importance/): Annual calibration of an ESU Analyzer is important because it helps ensure accurate electrosurgical unit testing, supports IEC 60601-2-2 related verification, reduces false pass or false fail results, and provides traceable evidence for hospital maintenance records, medical device manufacturers, and third-party laboratories. - [Which Glow Wire Test Apparatus Is Best for Meeting IEC Standards in Your Lab?](https://www.dgkingpo.com/best-glow-wire-test-apparatus-iec-60695-kingpo/): The best glow wire test apparatus for IEC 60695 should not be selected only by price or appearance. A suitable tester should match the applicable IEC 60695 test method, provide stable glow wire temperature control, accurate contact force, repeatable specimen movement, safe enclosed operation, and reliable documentation for laboratory audits. - [Effect of High-Frequency Non-Ideality of Rated Load Resistance and Radiation Coupling on Output Power Test Accuracy of 4 MHz Electrosurgical Units](https://www.dgkingpo.com/4-mhz-electrosurgical-units-power-test-iec-60601-2-2/): Abstract: When existing electrosurgery analyzers are used to measure the output power, voltage and current of 4 MHz high-frequency electrosurgical units, problems such as insufficient data repeatability, large differences among test instruments and unstable judgment of rated output power are often observed. Conventional analysis usually attributes these problems to insufficient sampling bandwidth, RMS algorithm error or calibration-frequency mismatch of the analyzer. For 4 MHz electrosurgical units, however, the root cause of the test error does not lie only in the measuring instrument itself. It is also closely related to the non-ideal electromagnetic characteristics of the rated load resistance under high-frequency, high-power excitation. This paper analyzes the distortion mechanism of the rated load resistance in 4 MHz testing from three perspectives: resistor skin effect, resistor structural form and radiation coupling in the test loop under strong electrosurgical excitation. The study indicates that the conventional assumption that the rated load resistance is an ideal pure resistance is not sufficiently valid at 4 MHz. Affected by skin effect, the AC equivalent resistance may deviate from the DC nominal value. Affected by resistor geometry, lead structure, mounting method and heat-dissipation structure, the load may introduce parasitic inductance and parasitic capacitance. Under high-voltage, high-current, non-sinusoidal or pulse-modulated output excitation, the test loop may also generate significant electromagnetic radiation, near-field coupling and additional power loss. IEC 60601-2-2 is the particular standard for the basic safety and essential performance of high-frequency surgical equipment and high-frequency surgical accessories. Output power testing of electrosurgical units is generally performed under specified load conditions or under the manufacturer-declared rated load. Therefore, the authenticity and repeatability of the load condition directly affect the reliability of the test conclusion. This paper proposes that the rated load resistance used in 4 MHz electrosurgical unit testing should be transformed from a conventional DC nominal-resistance model into a high-frequency composite electromagnetic load model that comprehensively considers skin effect, parasitic parameters, thermal drift and radiation coupling. To improve measurement accuracy, low-inductance non-inductive loads or coaxial RF loads, 4 MHz impedance calibration of the rated load, controlled test-loop area and radiation coupling, synchronous voltage-current sampling and instantaneous power integration for active power calculation are recommended. - [IEC 60601-2-4 Defibrillation Electrode Testing Guide: How KINGPO KP-DFT100E Evaluates Impedance, 360J Recovery and Pacing Signal Performance](https://www.dgkingpo.com/kingpo-iec-60601-2-4-defibrillation-electrode-testing-guide/): Defibrillation electrode testing verifies whether disposable and multifunction electrode pads can maintain stable impedance, recover after a 360J shock, control DC offset voltage and support pacing signal transmission under IEC 60601-2-4 related test conditions. - [KingPo Delivers Customized UL 1017 Test Fixtures to Intertek for Appliance Safety Testing](https://www.dgkingpo.com/intertek-ul-1017-test-fixtures/): KingPo has completed the delivery of customized UL 1017 test fixtures to Intertek for the testing of vacuum cleaners, blower cleaners, and household floor finishing machines. - [KingPo Delivers Customized ip testing equipment to UL Suzhou Laboratory for IP Waterproof Testing](https://www.dgkingpo.com/rain-test-room-ul-suzhou-laboratory-ip-waterproof-testing-case/): KingPo delivered a customized Rain Test Room to UL Suzhou Laboratory for IPX1–IPX7, NEMA 4 and UL rain/spray waterproof testing. The system supports IEC 60529, GB/T 4208, UL 50E and UL 1598-related test applications, integrating drip, rain, spray, water jet and immersion testing in one laboratory-grade solution. - [School-Enterprise Cooperation for High-End Testing Instrument Talent Development](https://www.dgkingpo.com/school-enterprise-cooperation-kingpo-dgcu/): During the visit, both sides held in-depth discussions on collaborative talent development, internship and employment base construction, talent supply and demand matching, curriculum co-development, and joint project research. The exchange marked an important step toward a more practical, long-term, and mutually beneficial school-enterprise cooperation model. - [Leakage Current Testing Devices: Types, Standards, Test Procedure and KINGPO Solutions](https://www.dgkingpo.com/leakage-current-testing-devices-kingpo-guide/): Leakage current testing devices are used to measure unintended current that may flow from live parts, insulation systems, accessible conductive parts, protective earth conductors or applied parts. These devices help manufacturers and laboratories evaluate electric shock risk, insulation performance and product safety compliance. KINGPO provides programmable leakage current testing equipment for IEC 60601-1, IEC 60990, IEC 60335-1, IEC 60598-1, IEC 61010-1 and related electrical safety standards, supporting medical electrical equipment, household appliances, lighting products, laboratory instruments and production-line safety testing. - [What Is Safety Testing? Types, Standards, Equipment and Applications](https://www.dgkingpo.com/what-is-safety-testing-types-standards-equipment-kingpo/): KINGPO safety testing equipment covers electrical safety testing, mechanical safety testing, fire hazard testing, IP waterproof and dustproof testing, environmental reliability testing, medical device testing, battery testing, plug and socket testing, and cable testing. A complete safety test program helps manufacturers verify product compliance with IEC, ISO, UL, EN and related standards before certification and mass production. - [Medical Bed Testing Equipment Guide for IEC 80601-2-52:2026](https://www.dgkingpo.com/iec-80601-2-52-medical-bed-testing-equipment-guide/): IEC 80601-2-52:2026 is the current IEC particular standard for adult medical beds. - [How to Choose a Vibration Test System for Your Lab](https://www.dgkingpo.com/how-to-choose-a-vibration-test-system-for-your-lab/): A vibration test system is a laboratory testing platform used to simulate mechanical vibration, transportation stress, resonance, fatigue, and shock conditions. A complete electrodynamic vibration test system normally includes a shaker body, power amplifier, vibration controller, cooling system, accelerometers, fixtures, and optional accessories such as a head expander, horizontal slip table, or environmental test chamber. - [How to choose a medical bed side rail strength tester for IEC 60601-2-52 made simple](https://www.dgkingpo.com/how-to-choose-medical-bed-side-rail-strength-tester-iec60601-2-52/): Choose a medical bed side rail strength tester for IEC 60601-2-52 by focusing on force range, accuracy, compliance, and safety features. - [KingPo Supplies ISO 80369-7 Luer Reference Gauges to Angiosistemy LLC in Russia](https://www.dgkingpo.com/iso-80369-7-luer-reference-gauges-russia/): For this project, the customer needed precision ISO 80369-7 Luer reference gauges to support laboratory testing of medical small-bore connectors. These connectors are widely used in medical devices, so their sealing performance, connection strength, and dimensional accuracy are important for product safety. - [Needle Flame Test Apparatus Calibration: 7 Checks Before IEC 60695-11-5 Testing](https://www.dgkingpo.com/needle-flame-test-apparatus-calibration/): During needle flame test apparatus calibration, record the gas type, flame height setting, time of adjustment, and any correction made before testing. These notes are useful when reviewing borderline results or comparing reports from different operators. - [KingPo Delivers Medical Electrical Safety Test Equipment to Sichuan Medical Device Testing Center](https://www.dgkingpo.com/kingpo-medical-electrical-safety-test-equipment-sichuan/): KingPo recently completed the delivery, commissioning, and technical support of a medical electrical safety test equipment package for Sichuan Institute for Drug Control (Sichuan Medical Device Testing Center), a provincial-level testing institution in China. - [IPX9K Waterproof Test Equipment: Why Nozzle Accuracy and 80°C Water Temperature Control Determine Test Reliability](https://www.dgkingpo.com/ipx9k-waterproof-test-nozzle-temperature-control/): KINGPO IPX9 / IPX9K waterproof test equipment is designed to improve test repeatability and reduce uncertainty by controlling the key variables that affect high-pressure hot-water spray testing. - [IP Protection Rating Test Equipment Selection Guide](https://www.dgkingpo.com/ip-protection-rating-test-equipment-selection-guide/): Choosing the right IP protection rating test equipment starts with clearly defining your test standard (IP5X, IP6X, IP67, or IP68) and test requirements (dust or water protection). Many companies make costly mistakes by focusing only on price instead of accuracy and standard compliance, leading to failed certifications and expensive retests. With 26 years of experience manufacturing IEC test equipment, KingPo recommends prioritizing precision, standard compliance, and future expandability. This guide will help you select the correct IP test equipment and avoid certification failures. - [IEC 60068-2-2 Dry Heat Test: Why Your Chamber Fails and How to Fix It](https://www.dgkingpo.com/iec-60068-2-2-dry-heat-test-why-your-chamber-fails-and-how-to-fix-it/): The IEC 60068-2-2 dry heat test is essential for evaluating product reliability under high-temperature conditions. Many laboratories encounter test failures due to poor temperature stability, excessive temperature overshoot, and oxidation issues. Kingpo high-precision Environmental Test Chambers provide excellent temperature uniformity (±0.5°C to ±1°C), precise PID control, and advanced thermal management systems, enabling laboratories to achieve accurate and repeatable results in compliance with IEC 60068-2-2:2025. - [IEC 60068-2-1 Cold Test: Common Problems and Solutions with Environmental Test Chambers](https://www.dgkingpo.com/iec-60068-2-1-cold-test-common-problems-and-solutions-with-environmental-test-chambers/): The IEC 60068-2-1 cold test is one of the most critical environmental reliability tests for electronic components, batteries, and EV charging equipment. Many laboratories struggle with temperature non-uniformity, condensation issues, and test specimen damage during low-temperature exposure. Kingpo high-precision Environmental Test Chambers deliver exceptional temperature uniformity (±0.5°C to ±1°C), rapid cooling rates, and advanced anti-condensation technology, helping laboratories achieve reliable and repeatable results in full compliance with IEC 60068-2-1:2025. - [【Corporate News】KINGPO Expert Invited as Judge for Dongguan Youth Robot Maker Competition, Empowering the Future of Tech Innovation](https://www.dgkingpo.com/kingpo-robot-maker-competition-judge/): Source: KINGPO Technology - [KingPo KP8850 Electrosurgical Analyzer Successfully Delivered and Accepted by ZHEJIANG INSTITUTE OF MEDICAL DEVICE TESTING](https://www.dgkingpo.com/kingpo-kp8850-electrosurgical-analyzer-accepted-zhejiang/): KingPo KP8850 Electrosurgical Analyzer successfully delivered and accepted by Zhejiang Medical Device in 2026, enhancing clinical engineering and hospital safety. - [KINGPO KP8850 ESU Analyzer: Dynamic Compensation Breakthrough for High-Frequency Electrosurgical Unit Testing](https://www.dgkingpo.com/kingpo-kp8850-esu-analyzer-dynamic-compensation/): Dongguan / Nanning, China — KINGPO Technology Development Limited has announced a breakthrough in high-frequency electrosurgical unit (ESU) testing technology with the launch of its KP8850 Series ESU Analyzer. In collaboration with Guangxi Food and Drug Evaluation and Inspection Center and Guangxi Medical Device Testing Center, KINGPO participated in the development of a dynamic compensation method aimed at improving the accuracy of high-frequency ESU testing. This advancement comes with the ability to meet the latest compliance standards, such as GB9706.202-2021 and IEC 60601-2-2. - [Kingpo Defibrillator Tester & Analyzer 2026 – Key Features Guide | IEC 60601-2-4 Compliant](https://www.dgkingpo.com/kingpo-defibrillator-tester-analyzer-iec-60601-2-4-guide/): When selecting a defibrillator tester (also known as a defibrillator analyzer), biomedical engineers and clinical laboratories must focus on accuracy, waveform compatibility, compliance, and reliability. Kingpo Defibrillator Tester series stands out as a professional solution with high-precision performance and excellent value. - [IEC 60309-2 Gauge Testing Guide: Step-by-Step Procedure for Industrial Plug & Socket Compliance](https://www.dgkingpo.com/iec-60309-2-gauge-testing-guide/): Accurate dimensional verification is essential for industrial plugs and sockets to meet international safety standards. This step-by-step IEC 60309-2 gauge testing guide demonstrates how to use a professional compliance gauge kit to check Go/No-Go dimensions, mechanical strength, and single-pole protection for 16A–125A connectors, helping manufacturers achieve reliable certification results. - [KINGPO Application and Technical Analysis of Glow Wire Test Apparatus in Flame Retardancy for Electrical and Electronic Products](https://www.dgkingpo.com/application-technical-analysis-glow-wire-test-flame-retardancy/): Application and Technical Analysis of Glow Wire Test Apparatus in Flame Retardancy Performance Testi for electrical and electronic products and plastics. - [IEC 62196-1 EV Charging Connector Testing Guide](https://www.dgkingpo.com/iec-62196-1-ev-charging-connector-testing-guide/): Many people still think IEC 62196-1 is primarily a dimensional or basic electrical rating standard. In reality, the standard’s greatest value lies in forcing connectors to prove long-term reliability under conditions that closely simulate real-world use — especially after mechanical wear and environmental stress have taken their toll. - [How to Use Modern Solutions for EV Charging Connector Testing in 2026](https://www.dgkingpo.com/ev-charging-connector-testing-modern-solutions-2026/): Ensure EV charging connector safety and compliance in 2026 with advanced testing solutions, temperature rise analysis, and up-to-date international standards. - [KINGPO Comprehensive Guide to Water Ingress Protection Testing for Reliable Products](https://www.dgkingpo.com/water-ingress-protection-testing-ipx-levels-guide/): Comprehensive guide to water ingress protection testing: IPX waterproof test levels, definitions, procedures, equipment, and solution selection for product reliability. - [A Comprehensive Guide to Understanding IP Code Ratings for Electrical Equipment](https://www.dgkingpo.com/ip-code-explanation-guide-for-electrical-equipment-protection/): IP code explanation: Understand IP ratings, their structure, testing, and what they mean for electrical equipment safety and protection in various environments. - [Step-by-Step Guide to Using IEC 62368-1 Annex D.1 Impulse Test Generator](https://www.dgkingpo.com/iec-62368-1-annex-d1-impulse-test-generator-guide/): Follow this IEC 62368-1 Annex D.1 Impulse test generator guide for safe setup, accurate testing, and compliance with international safety standards. - [IP Rating Complete Guide: What Is an IP Code 60529 Ingress Protection Rating? 2026 Updated](https://www.dgkingpo.com/ip-rating-complete-guide-what-is-an-ip-code-60529-ingress-protection-rating-2026-update/): In the world of electronics, outdoor equipment, industrial enclosures, and consumer devices, IP Rating remains one of the most searched technical keywords. If you’ve ever wondered “What is an IP rating? What exactly is an Ingress Protection Rating?”, this comprehensive guide breaks it down with clear explanations, charts, and real-world applications. - [Electronic Lock Tester Overview for Locksmiths and Technicians](https://www.dgkingpo.com/electronic-lock-tester-overview-locksmiths-technicians-guide/): Electronic lock tester guide for locksmiths and technicians covering setup, compliance, troubleshooting, and choosing the right tester for every job. - [KP8850 ESU Analyzer vs BC Biomedical ESU Analyzer](https://www.dgkingpo.com/kp8850-esu-analyzer-vs-bc-biomedical-esu-analyzer-comparison/): Compare KP8850 ESU Analyzer and BC Biomedical ESU Analyzer for lab precision, clinical speed, compliance, and workflow. Find the right ESU analyzer for you. - [The “Invisible Killer” in Flammability Testing: Why Back Pressure Height Matters So Much](https://www.dgkingpo.com/iec-60695-11-3-500w-flame-test-back-pressure-optimization/): ——IEC 60695-11-3 / IEC 60950 / UL94 500W Flame Test Practice and Cable Flammability Standard Comparison - [How Wireless Power Test Equipment Helps Achieve IEC 62368-1 Compliance](https://www.dgkingpo.com/wireless-power-test-equipment-iec-62368-1-compliance/): Wireless Power Test Equipment enables real-time monitoring and safeguards, ensuring IEC 62368-1 compliance for safer wireless charging devices. - [KINGPO Three Vertical Bar Signal Generator: Your Key to IEC 62368-1 Safety Certification](https://www.dgkingpo.com/three-vertical-bar-signal-generator-iec-62368-1-compliance/): Three Vertical Bar Signal Generator streamlines IEC 62368-1 compliance by ensuring accurate display testing and reliable safety certification. - [KINGPO IEC 62368-1 Annex G.8.2.2 Varistor Overload Test Equipment Makes Compliance Simple](https://www.dgkingpo.com/iec-62368-1-annex-g8-2-2-varistor-overload-test-equipment/): KINGPO IEC 62368-1 Annex G.8.2.2 Varistor Overload Test Equipment streamlines compliance and ensures reliable varistor safety validation. ## Pages - [Flammability Test Equipment for IEC 60695, UL 94 and Cable Fire Tests](https://www.dgkingpo.com/flammability-test-equipment/): Flammability test equipment applies a defined heat, flame, electrical arc or combustible-gas condition to a specimen and measures a method-specific response. Depending on the standard, the result may be ignition, afterflame, afterglow, flame spread, burning rate, damaged length, dripping, non-combustibility or laminar burning velocity. - [Medical Device PCB Design Guide & PCB Trace Width Calculato](https://www.dgkingpo.com/medical-device-pcb-design-trace-width-calculator/): Medical device PCB design requires careful control of electrical safety, trace temperature, insulation distance, leakage current, EMC performance and component reliability. This engineering guide covers patient monitors, infusion pumps, imaging systems, surgical equipment, implantable electronics and wearable medical devices. - [kingpo medical connector calibration service](https://www.dgkingpo.com/medical-connector-test-equipment-calibration/): Connector test equipment calibration is not limited to checking a single dimension. For medical connector test tools, the practical review may involve connector geometry, taper, thread profile, surface roughness, mating interface, force alignment, torque fixture condition and pressure-related measuring instruments. - [Automated ESD Test System with 6-Axis Robot | KINGPO](https://www.dgkingpo.com/automated-esd-test-system-6-axis-robot/): Robotic EMC Test Automation Automated ESD Test System with 6-Axis Robot A turnkey robotic platform for repeatable contact and air-discharge positioning, graphical test-point programming, DUT offset correction and controlled ESD test execution. IEC 61000-4-2 ISO 10605 GB/T 17626.2 ±0.3 mm discharge positioning Request Technical Proposal Email an Engineer Direct Answer What is an automated ESD test system? An automated ESD test system uses a programmable robot to position an ESD generator at defined points, angles and approach distances around a device under test. It improves repeatability and operator separation compared with fully manual gun positioning. This KINGPO configuration combines a 6-axis collaborative robot, ESD gun fixture, graphical test-point software, DUT offset correction, leakage and charging controls, safety monitoring and test-result handling. It is intended for controlled laboratory immunity testing—not semiconductor handling-sensitivity characterization. Best Fit High-volume or repeated ESD test plans Mobile devices, tablets up to 10 inches, earphones and watches Complex surfaces requiring consistent gun angle and position Laboratories seeking traceable test-point execution Projects using compatible Noiseken or Lingse ESD guns 6 Axis Collaborative robot ±0.02 mm Robot repeatability ±0.3 mm Discharge positioning 886.5 mm Working radius System Capabilities Designed for Repeatable ESD Immunity Testing Automation addresses one of the weakest parts of manual ESD testing: reproducing the same discharge location, approach direction and sequence across samples and operators. The platform standardizes motion and test execution while leaving the applicable test level, discharge count and performance criteria under the control of the relevant product standard and approved test plan. 01 6-Axis Robotic Positioning The collaborative robot provides ±0.02 mm repeatability. The complete system is specified for ±0.3 mm discharge positioning and ±0.5° rotational positioning. 02 Contact and Air Discharge The system supports multiple DUT surfaces and precise distance control for air discharge, with automatic switching between configured contact and air-discharge tips. 03 3D Test-Point Programming Operators define discharge points through a graphical interface instead of repeatedly teaching every point through manual robot movement. 04 DUT Offset Correction Automatic correction compensates for defined DUT placement offsets so the programmed discharge locations remain aligned with the test sample. 05 Charge and Leakage Control An automatic 470 kΩ leakage pen and controlled USB charging function support repeatable charge-removal and powered-DUT test sequences. 06 Safety Interlocking Dual-button initiation and through-beam light-curtain monitoring help prevent unintended robot movement when the protected test area is accessed. Test Sequence How the Automated ESD Workflow Operates A controlled automated sequence reduces operator-to-operator variation. The exact sequence must still be reviewed against the applicable standard, DUT operating mode and laboratory procedure. Define Import or configure the DUT and specify discharge points, tip type, angle and sequence. Align Place the DUT and apply the configured offset correction or position verification. Execute The robot moves the compatible ESD gun through the programmed test sequence. Neutralize Apply the configured leakage and charging actions between test stages where required. Evaluate Record results and evaluate DUT performance against the approved acceptance criteria. System View Robot, Test Interface and Functional Monitoring Verified Page Data Technical Specifications Robot configuration 6-axis collaborative robot; maximum payload 5 kg Robot repeatability ±0.02 mm Working radius 886.5 mm System discharge positioning ±0.3 mm Rotational positioning ±0.5° Electrical supply AC 220 V ±10 V, 50 Hz; maximum 10 A Compressed air Greater than 0.5 MPa; 2 L/min Test environment 18–25 °C; 35–80% RH Supported DUT examples Mobile phones, tablets up to 10 inches, earphones and watches Compatible ESD guns Configured for industry ESD guns including Noiseken and Lingse models; exact model/interface must be confirmed Control connection Dedicated LAN connection between host computer and system control Safety provisions Dual-button start and through-beam light-curtain monitoring Important engineering distinction: ±0.02 mm is the robot manufacturer's repeatability value. The relevant complete-system value for discharge positioning is ±0.3 mm. These figures must not be presented as interchangeable. Standards Basis IEC 61000-4-2, ISO 10605 and GB/T 17626.2 IEC 61000-4-2:2025 Basic EMC publication covering ESD immunity test levels, equipment, setup, procedure, calibration and measurement uncertainty for electrical and electronic equipment. Official IEC publication → ISO 10605 Road-vehicle ESD test methods. Applicability, severity and test configuration depend on the automotive component and approved test plan. Official ISO catalogue → GB/T 17626.2 Chinese EMC testing and measurement standard addressing electrostatic discharge immunity test methods. China standards platform → Compliance boundary: the system provides automation infrastructure for executing an ESD test plan. It does not by itself determine the correct severity level, number of discharges, DUT operating mode or pass/fail criterion. Those requirements come from the applicable product standard, vehicle/OEM specification or laboratory procedure. Applications Who Needs a Robotic ESD Test System? Consumer Electronics R&D Repeat testing around displays, buttons, ports, enclosures and conductive interfaces. Mobile Device Validation Defined post-discharge checks for supported display, touch, sensor and connectivity functions. Automotive Electronics Programmable positioning for approved ISO 10605 or OEM-specific component test plans. Third-Party Laboratories Improved repeatability, documented point sequences and safer separation from repetitive discharge work. E-E-A-T Configuration Review and Evidence Package Information Required Before Quotation DUT type, dimensions and mass Applicable standard, edition and test plan ESD gun manufacturer and exact model Contact/air discharge points and approach constraints Required DUT operating and functional monitoring Robot cell, safety and factory interface requirements Recommended Acceptance Evidence For a defensible procurement decision, request a configuration drawing, compatible-gun confirmation, positioning verification method, safety interlock description, sample test sequence, software scope, installation requirements and factory acceptance test plan. Calibration of the ESD generator remains a separate metrological requirement and should be confirmed for the supplied gun. Answer Engine FAQ Frequently Asked Questions Does the robot generate the ESD pulse? No. The robot positions and operates a compatible ESD generator. The ESD gun produces the discharge waveform and must be configured and calibrated for the applicable test standard. What is the difference between robot repeatability and discharge accuracy? Robot repeatability is specified as ±0.02 mm. Complete-system discharge positioning is specified as ±0.3 mm, with rotational positioning of ±0.5°. The system figure is the more relevant value when assessing test-point placement. Can the system perform both contact and air discharge? Yes. The platform supports configured contact and air-discharge operation, automatic tip switching and precise approach-distance control. Exact gun and tip compatibility must be confirmed before quotation. Does it automatically determine whether every DUT has passed? No. Automated hard-failure checks are available for defined functions on supported mobile devices, such as display, touch, sensors and selected interfaces. Other DUTs may require external monitoring or operator evaluation against the approved performance criteria. Is the system automatically compliant with IEC 61000-4-2? The system is designed to support IEC 61000-4-2 test execution, but compliance depends on the ESD generator, calibration, test setup, environment, test plan and correct procedure. The applicable product committee or product standard determines severity and performance criteria. Which DUT sizes are supported? The current page data identifies mobile phones, earphones, watches and tablets up to 10 inches. Larger or unusually shaped DUTs require a workspace, payload, reach and fixture review. What utilities are required? The stated requirements are AC 220 V ±10 V, 50 Hz, maximum 10 A, plus compressed air greater than 0.5 MPa at 2 L/min. The recommended operating environment is 18–25 °C and 35–80% RH. What should be included in a technical inquiry? Send the DUT drawing, test standard and edition, discharge-point list, ESD gun model, required test modes, functional monitoring needs, cycle volume and site utilities. This allows KINGPO to confirm the correct robot, fixture, software and safety configuration. Engineering Review Discuss Your Automated ESD Test Plan Share the DUT, standard, ESD gun model and target test sequence. KINGPO will review robot reach, fixture design, discharge positioning, monitoring functions and installation requirements before quotation. Open Contact Form sales@kingpo.hk - [Programmable AC Power Source Selector & Price Calculator](https://www.dgkingpo.com/programmable-ac-power-source-selector/): The Programmable AC Power Source Selector converts the DUT information entered above into a preliminary capacity requirement. It does more than match the equipment nameplate power. The calculation considers output phase, available facility input, load behavior, expected inrush current and long-duration operation. It then compares the calculated requirement with the priced KINGPO model range and recommends the smallest compatible capacity with sufficient operating margin. The displayed price is an indicative EXW reference rather than a binding quotation because communication interfaces, special frequency options, installation requirements and non-standard configurations can affect the final specification. - [IEC 60601-2-2 HF Insulation Calculator](https://www.dgkingpo.com/iec-60601-2-2-hf-insulation-calculator/): The IEC 60601-2-2 HF insulation calculator provides an engineering estimate of insulation capacitance, high-frequency leakage current, dielectric loading and temperature rise. - [Successful Case](https://www.dgkingpo.com/successful-case/): KingPo UL 1017 Test Fixtures Delivered to Intertek — KingPo delivered customized UL 1017 test fixtures, including a polished composition-tile test frame and checkerboard step/base fixture, to support repeatable appliance safety testing for vacuum cleaners, blower cleaners, and household floor finishing machines. - [Standards](https://www.dgkingpo.com/standards/): Standards - [ISO 80369 Testing Equipment](https://www.dgkingpo.com/iso-80369-testing-equipment/): ISO 80369 testing equipment is used to verify small-bore medical connectors through dimensional gauges, reference connectors, leakage tests, separation force tests, torque tests, overriding resistance tests and stress cracking evaluation. - [IP Test Equipment](https://www.dgkingpo.com/ip-test-equipment/): IP Testing Equipment verifies how an enclosure protects people from hazardous parts and protects equipment from solid foreign objects, dust and water ingress. - [Products](https://www.dgkingpo.com/products/): Product Categories - [Cases](https://www.dgkingpo.com/cases/): Kingpo Technology Launches Latest IEC 60309 Compliance Gauges for Global Markets 12/08/2025 China – July 15, 2025 – Kingpo Technology Development Limited, a leading manufacturer of precision testing... Read More No posts found Previous 1 2 3 4 5 Next - [News](https://www.dgkingpo.com/news/): Standards Focus - [Contact Us](https://www.dgkingpo.com/contact-us/): If you are looking to Contact KingPo, we provide high-precision, standard-based testing instruments and technical support for electrical safety, IEC 60601 applications, environmental reliability, waterproof testing, battery safety, and laboratory compliance testing. As a leader in professional testing equipment solutions, KingPo helps laboratories meet global safety standards with reliable instruments and technical guidance. - [About us](https://www.dgkingpo.com/about-us/): From a small workshop to a global trusted partner — KingPo has been dedicated to precision testing solutions since 2000. - [HOME](https://www.dgkingpo.com/): KingPo Is A Pioneer & Leader Of ## Standards - [ISO 80369-7 Luer Gauges and Reference Connectors](https://www.dgkingpo.com/Standards/iso-80369-7-luer-gauges-reference-connectors/): This ISO 80369-7 guide helps medical device manufacturers, quality engineers, laboratories and procurement teams identify suitable Luer gauges, reference connectors and related verification equipment for intravascular or hypodermic connector applications. - [ISO 18250 Medical Connector Test Equipment Guide](https://www.dgkingpo.com/Standards/iso-18250-medical-connector-test-equipment/): ISO 18250 medical connector test equipment is used to support verification of connectors for reservoir delivery systems in healthcare applications. - [IEC 60695 Fire Hazard Test Equipment Selection Guide](https://www.dgkingpo.com/Standards/iec-60695-test-equipment/): IEC 60695 test equipment is used for fire hazard and flammability evaluation of electrotechnical products, insulating materials, enclosures, components and related assemblies. This guide helps laboratories, manufacturers and procurement engineers identify typical equipment for glow wire testing, needle flame testing, 50 W and 500 W test flames, ball pressure testing, burner calibration, horizontal and vertical flammability testing and related flame test accessories. - [IEC 60335-1 Test Equipment for Household Appliance Safety Compliance](https://www.dgkingpo.com/Standards/iec-60335-1-test-equipment/): KINGPO Standard Test Equipment Guide IEC 60335-1 Household Appliance Safety Testing Overview This IEC 60335-1 test equipment guide helps household appliance manufacturers, certification teams, CBTL laboratories and procurement engineers identify typical instruments, fixtures and materials used for safety testing of household and similar electrical appliances. KingPo structures this page as a practical clause-based equipment selection guide. The checklist maps IEC 60335-1:2020 and IEC 60335-1:2020/AMD1:2025 test items to required testing and measuring equipment, with a reserved column for recommended KingPo equipment categories and future product anchors. This page is an equipment selection framework and website navigation guide. It is not a replacement for the official IEC 60335-1 standard or IECEE documentation. Final compliance decisions should be based on official publications and certification body requirements. As of now, not all available test equipment and customized configurations are listed on our website. If you cannot find the equipment you need, KingPo can provide a complete IEC 60335-1 household appliance safety testing solution tailored to your specific requirements. Contact our technical team for a professional equipment proposal and quotation. Request IEC 60335-1 Test Equipment Quote View Equipment Checklist Standard Information Standard IEC 60335-1:2020 + AMD1:2025 Document Basis IECEE OD-5003-F1:2025, Template Equipment List, Ed.1.4 Product Scope Household and similar electrical appliances Testing Focus Power input, access to live parts, heating, moisture resistance, leakage current, electric strength, abnormal operation, mechanical strength, supply cords, earthing, fire resistance and annex-specific tests KingPo Page Purpose Clause-based IEC 60335-1 test equipment selection and product mapping Version Note for IEC 60335-1:2020 and AMD1:2025 This page is prepared around IEC 60335-1:2020 and Amendment 1:2025 as the current reference direction for household and similar electrical appliance safety testing. Previous editions may still appear in legacy certification projects, but new laboratory equipment planning should normally follow the latest edition required by the certification body. IEC 60335-1 Testing and Measuring Equipment Checklist Use this checklist to identify typical instruments, fixtures and materials for IEC 60335-1 household appliance safety testing. The final column is reserved for equipment mapping. Replace the equipment names with actual KingPo product URLs when the corresponding product page is available. Clause Measurement / Testing Testing / Measuring Equipment or Material Needed Recommended KingPo Equipment All Relevant Clauses - General All test specifications requiring a measurement for mechanical dimensions (size, length, thickness, etc. ) Measuring device (electronic and/or mechanical) for relevant size, length, thickness, etc. Mechanical dimension measuring tools All test specifications requiring a measurement for time Timer Timer and timing measurement device 5 General conditions for tests Resistive-capacitive low pass filter with a -3 dB roll off frequency of 5 kHz ± 0,5 kHz Resistive-capacitive low pass filter 7 Marking and instructions Petroleum spirit Marking durability petroleum spirit test materials 8 Protection against access to live parts Test probe B, 13, 18 and 41 of IEC 61032, voltmeter, milliammeter, oscilloscope, force gauges, 2000 ohm non-inductive resistor IEC 61032 test probes for access to live parts 8 Protection against access to live parts Coulometer, energy meter Coulometer and energy meter 10 Power input and current Chronometer, Voltmeter, ammeter, wattmeter Power input and current measurement setup 11 Heating Temperature controlled room, Temperature Recorder, Thermocouples with diameter not exceeding 0,3 mm, blackened disks of copper or brass, 15 mm diameter and 1 mm thick, Test corners, Winding resistance measurement system, Probe for measurement of surface temperature Temperature rise test system and winding resistance measurement setup 12 Charging of metal-ion batteries Charging system: Heating/cooling cabinet, Temperature Recorder, Thermocouples with diameter not exceeding 0,3 mm, DC power source for charging to a predetermined state of charge for Li-ion cells or battery packs, multimeter, Equipment for current measurement and monitoring with an averaging period of 1 to 5s, Variable load(s) for discharging Li-ion cells or batteries at different C rates Metal-ion battery charging and temperature monitoring setup 13 Leakage current and electric strength at operating temperature Metal foil, Voltmeter, Leakage current meter, Isolation transformer, High voltage tester, Network (Fig.4 of IEC60990) Leakage current meter and electric strength test system 14 Transient overvoltage Impulse voltage test generator and monitor Impulse voltage test generator and monitor 15 Moisture resistance IP test equipment, Measurement beaker, Spray nozzle (for testing appliances that cannot be placed under the oscillating tube specified in IEC 60529) as appropriate according to the requirement of Part 2s (Only when the second numeral more than “0” is given) IEC 60529 IP waterproof test chamber and spray nozzle test setup 15 Moisture resistance NaCl, Rinsing agent Moisture resistance rinsing and salt test materials 15 Moisture resistance Humidity cabinet capable of (93 ± 3)%RH at selected temperature, High voltage tester Humidity conditioning cabinet and high voltage tester 16 Leakage current and electric strength Metal foil, Low impedance ammeter, HV test supply Leakage current and electric strength test setup 17 Overload protection of transformers and associated circuits Included in Clause 11 above Transformer overload protection test support 19 Abnormal operation Electrostatic discharge test apparatus (IEC 61000-4-2), Radiated field test apparatus (IEC 61000-4-3), Fast transient burst test apparatus (IEC 61000-4-4), Voltage surge test apparatus (IEC 61000-4-5), Injected current test apparatus (IEC 61000-4-6), Voltage dip and interruption test apparatus (IEC 61000-4-11), Mains signal test apparatus (IEC 61000-4-13) Other equipment as included in Clauses 11, 16 Abnormal operation EMC immunity test setup 19 Abnormal operation Shorting means with a resistance not to exceed 10 mΩ ± 2 mΩ; DC power source for charging to a predetermined state of charge for Li-ion cells or battery packs Battery short-circuit and charging power source setup 20 Stability and mechanical hazards Inclined plane, Inclinometer, masses, force gauges, test probe similar to test probe B of IEC 61032 with circular stop face 50 mm Ø, Test probe 18, other equipment as indicated in Clause 11 Stability and mechanical hazard test setup 21 Mechanical strength Spring hammer, Hardened steel pin, Force gauges; Free fall test apparatus (IEC 60068-2-31, Procedure 2) IEC 60068-2-75 spring impact hammer for mechanical strength tests 22 Construction Test rig for torque on pin supported appliance, Heating cabinet (70°C ±2°C), Test probe 11 of IEC 61032, Test fingernail (Figure 7), Force gauge, Plug discharge voltage decay measurement instrument with input impedance ≥ 100 MΩ, ≤ 25 pF Plug discharge voltage decay tester for IEC 60335 construction tests 22 Construction Pressure test apparatus Pressure test apparatus 22 Construction Automatic cord reel test apparatus Automatic cord reel test apparatus 22 Construction Oxygen bomb with pressure apparatus Oxygen bomb pressure apparatus 22 Construction Methylated spirits Methylated spirits test material 22 Construction Small parts cylinder in Figure 13 Small parts cylinder 23 Internal wiring Flexing test apparatus, High voltage tester, Metal foil IEC 60335 internal wiring flexing tester 24 Components Laboratory may or may not have facilities for testing to component standards. Certification by specialist laboratories is accepted for compliance Component standard compliance evaluation support 25 Supply connection and external flexible cords Flexing test apparatus, Cord anchorage force & torque tester Power cord flexing test apparatus and IEC 60335-1 cord anchorage torque tester 26 Terminals for external conductors Torque screwdriver Torque screwdriver for external conductor terminals 27 Provision for earthing Earth continuity tester, access to ISO2178 and ISO1463 testing Earth continuity tester and coating thickness verification support 28 Screws and connections Torque gauge Torque gauge for screws and connections 29 Clearances, creepage distances and solid insulation Mechanical measurement tools, Force gauges, Rod or ball gauges, Proof tracking test apparatus Creepage, clearance and proof tracking test apparatus 30 Resistance to heat and fire Ball Pressure test apparatus, Glow wire & Needle flame test apparatus, Apparatus for low power circuit determination Ball pressure test apparatus, glow-wire tester and needle flame test apparatus 30 Resistance to heat and fire Horizontal and vertical burning test apparatus - ISO 9772 and ISO 9773 testing Horizontal and vertical burning test apparatus 31 Resistance to rusting Part 2 requirements Rusting resistance test support according to Part 2 requirements 32 Radiation, toxicity and similar hazards Optical radiation test equipment Optical radiation test equipment Annex B Battery-operated appliances, separable batteries and detachable batteries for battery-operated appliances Free-fall test apparatus (IEC 60068-2-31, procedure 1) Battery-operated appliance free-fall test apparatus Annex B Battery-operated appliances, separable batteries and detachable batteries for battery-operated appliances DC power source for charging to a predetermined state of charge for Li-ion cells or battery packs(1) Battery charging DC power source Annex B Battery-operated appliances, separable batteries and detachable batteries for battery-operated appliances Temperature Recorder, Thermocouples with diameter not exceeding 0,3 mm Battery thermal abuse tester for temperature-related battery safety tests Annex B Battery-operated appliances, separable batteries and detachable batteries for battery-operated appliances Variable load(s) for discharging Li-ion cells or batteries at different C rates, Shorting means with a resistance not to exceed 10 mΩ ± 2 mΩ(1) Battery discharge load and shorting means setup Annex B Battery-operated appliances, separable batteries and detachable batteries for battery-operated appliances Apparatus designed to deliver 20; 30; 50; 100 ml ± 10 % of air at an initial pressure of 2 070 kPa ± 10 % through a (2,85 ± 0,05) mm diameter orifice, Pressure gauge Battery low pressure test chamber and pressure test support Annex B Battery-operated appliances, separable batteries and detachable batteries for battery-operated appliances Vibration tester Subclause 7.3.8.1 and mechanical shock tester Subclause 7.3.8.2 of IEC 62133-2:2017 Explosion proof chamber Battery vibration and mechanical shock test system Annex B Battery-operated appliances, separable batteries and detachable batteries for battery-operated appliances Flat rigid top plate (approx 100 mm by 250 mm) Battery crush test chamber with flat plate fixture Annex B Battery-operated appliances, separable batteries and detachable batteries for battery-operated appliances Torque gauge (counterclockwise) Counterclockwise torque gauge Annex C Ageing test on motors See referenced clauses Motor ageing test support according to referenced clauses Annex D Thermal motor protectors See referenced clauses Thermal motor protector test support according to referenced clauses Annex E Needle flame test Needle flame test apparatus (IEC 60695-11-5) IEC 60695-11-5 needle flame test apparatus Annex F Capacitors Impulse voltage test apparatus, Endurance test apparatus (IEC 60384-14) Capacitor impulse voltage and endurance test apparatus Annex G Safety isolating transformers Part 2 requirements Safety isolating transformer test support according to Part 2 requirements Annex H Switches Endurance test apparatus (IEC 61058-1) Switch endurance test apparatus Annex I Motors having basic insulation that is inadequate for rated voltage of appliance test See referenced clauses Motor insulation test support according to referenced clauses Annex J Coated printed circuit boards Coated printed circuit boards test apparatus (IEC 60664-3) Coated printed circuit board test apparatus Annex N Proof tracking test Proof tracking test apparatus (IEC 60112) IEC 60112 proof tracking test apparatus Annex R Software evaluation Capability for Software evaluation Software evaluation capability support Annex T UV-C radiation effect on non-metallic materials Testing apparatus related to UV-C radiation UV-C radiation effect test apparatus Annex U Evaluation for remote communication through public networks Capability for evaluation of remote communication through public networks Remote communication evaluation support Core IEC 60335-1 Test Equipment Categories Test Category Typical KingPo Equipment Configuration Electrical safety Leakage current meter, high voltage tester, earth continuity tester, power input measurement system and IEC 60990 measuring networks. Thermal and abnormal operation Temperature recorder, thermocouples, winding resistance measurement system, heating cabinet, variable load and short-circuit test setup. Mechanical strength and accessibility IEC 61032 probes, spring hammer, hardened steel pin, force gauges, inclined plane, free-fall test apparatus and stability test tools. Moisture, heat and fire IP test equipment, spray nozzle, humidity cabinet, ball pressure test apparatus, glow-wire tester, needle flame tester and proof tracking tester. Engineering Selection Tips by KingPo for IEC 60335-1 Test Equipment IEC 60335-1 test equipment selection should begin with the basic safety tests that apply to most household appliance laboratories: access to live parts, power input and current, heating, leakage current, electric strength, abnormal operation, mechanical strength, supply cord tests, earthing, creepage and clearance verification, and resistance to heat and fire. KingPo recommends planning IEC 60335-1 equipment as a modular laboratory system instead of isolated instruments. A complete setup normally combines electrical safety testers, thermal measurement systems, mechanical fixtures, IP test equipment, material fire test apparatus and appliance-specific fixtures required by the relevant IEC 60335-2 particular standard. A common procurement mistake is buying the general IEC 60335-1 instruments without checking the applicable Part 2 standard. For example, liquid heating appliances, personal care appliances, cooking appliances and battery-operated appliances may require additional fixtures, endurance systems or abnormal-operation configurations beyond the general Part 1 checklist. Related KingPo Standard Pages Link this page to related KingPo standard pages after they are created. These links should point to standard guide pages, while product links should be placed in the Recommended KingPo Equipment column above. Related Standard Application Link IEC 60335-2 Series Particular requirements for specific household appliance categories Planned Page IEC 60529 Ingress protection tests used for moisture resistance and enclosure protection Planned Page IEC 60695 Series Glow-wire, needle flame, ball pressure and resistance to heat and fire tests Planned Page IEC 61032 Test probes for protection against access to live parts and hazardous parts Planned Page Related Applications IEC 60335-1 Test Equipment Household Appliance Safety Testing Leakage Current and Electric Strength Temperature Rise Testing Cord Flexing and Cord Anchorage Glow Wire and Ball Pressure Testing IP Moisture Resistance Testing Appliance Laboratory Setup FAQ: IEC 60335-1 Test Equipment What is IEC 60335-1 test equipment used for? IEC 60335-1 test equipment is used for safety evaluation of household and similar electrical appliances. Typical tests include access to live parts, power input, heating, leakage current, electric strength, moisture resistance, abnormal operation, mechanical strength, supply cord testing, earthing and resistance to heat and fire. How should a laboratory select IEC 60335-1 test equipment? Laboratories should first define the appliance category, rated supply, applicable IEC 60335-2 particular standard, test volume and automation needs. KingPo can help map the general IEC 60335-1 checklist to appliance-specific fixtures and complete laboratory configurations. Is IEC 60335-1 enough for appliance certification testing? IEC 60335-1 provides general safety requirements, but most household appliances also require the relevant IEC 60335-2 particular standard. Equipment selection should therefore include both general Part 1 instruments and appliance-specific test fixtures from the applicable Part 2 standard. What equipment is required for leakage current and electric strength tests? The typical setup includes metal foil, a leakage current meter or low-impedance ammeter, isolation transformer, high voltage tester and measuring network where required. The exact configuration should follow the applicable clause and certification body interpretation. What test equipment is used for resistance to heat and fire? Resistance to heat and fire tests may require a ball pressure test apparatus, glow-wire test apparatus, needle flame test apparatus, low-power circuit determination apparatus and, where applicable, horizontal and vertical burning test equipment. Can KingPo provide a complete IEC 60335 household appliance test setup? Yes. KingPo supports clause-based equipment planning for IEC 60335-1 and related IEC 60335-2 appliance standards, including electrical safety instruments, environmental chambers, mechanical fixtures, fire test apparatus and customized appliance endurance test systems. Need Help Building an IEC 60335-1 Household Appliance Test Equipment Setup? KingPo supports laboratories and manufacturers with IEC 60335-1 test equipment selection, appliance-specific fixture planning and complete household electrical appliance safety test system configuration according to project requirements. Request IEC 60335-1 Test Equipment Quote Contact KingPo - [IEC 60601-2-52 Test Equipment for Medical Bed Safety Compliance](https://www.dgkingpo.com/Standards/iec-60601-2-52-medical-bed-test-equipment/): This IEC 60601-2-52 test equipment guide helps medical bed manufacturers, laboratories and certification teams identify typical instruments, fixtures and materials used for evaluating the basic safety and essential performance of medical beds. - [IEC 60601-1-8 Medical Alarm Signal Test Equipment](https://www.dgkingpo.com/Standards/iec-60601-1-8-medical-alarm-signal-test-equipment/): KINGPO Standard Test Equipment Guide Testing and Measuring Equipment / Allowed Subcontracting This IEC 60601-1-8 test equipment page helps medical device manufacturers, testing laboratories and certification teams identify typical instruments used for evaluating alarm systems in medical electrical equipment and medical electrical systems. KingPo structures this page as a practical alarm signal testing equipment guide. The checklist maps IEC 60601-1-8 clauses to visual alarm indicators, auditory alarm signals, alarm system delays and recommended equipment categories for procurement review and laboratory planning. This page is an equipment selection framework and website navigation guide. It is not a replacement for the official IEC 60601-1-8 standard or certification body requirements. Final compliance decisions should be based on official publications, test plans and laboratory procedures. Request IEC 60601-1-8 Test Equipment QuoteView Equipment Checklist Standard Information Standard IEC 60601-1-8 Standard Scope Medical electrical equipment and medical electrical systems alarm systems Document Type Collateral standard for alarm system requirements, tests and guidance Testing Focus Alarm indicator lights, auditory alarm signals, alarm delays and information signals KingPo Page Purpose Clause-based medical alarm signal test equipment selection and product mapping IEC 60601-1-8 Medical Alarm Signal Testing Equipment Checklist Use this checklist to identify typical instruments and test setups for IEC 60601-1-8 alarm system evaluations. The final column is reserved for equipment mapping and can be linked to the corresponding KingPo product page. Clause Measurement / Testing Testing / Measuring Equipment or Material Needed Recommended KingPo Equipment 6.3.2.2.1 Characteristics of alarm indicator lights: flashing frequency Tape-measure 4 m; appropriate test instrument for measuring the frequency and duty cycle of the indicator light. KP-108 Medical alarm indicator flashing frequency and duty-cycle analyzer 6.3.2.2 Characteristics of alarm indicator lights: ambient light Luxmeter, tape-measure, appropriate test instrument for achieving a 30° cone angle, Jaeger test card. Medical alarm visual indicator ambient-light test analyzer 6.3.3.1 Characteristics of auditory alarm signals: burst of auditory alarm signals Oscilloscope or sound analyzer. Medical auditory alarm burst signal analyzer 6.3.3.1 Characteristics of the pulse of auditory alarm signals Sound analyzer Type 1 to IEC 61672-1:2013; acoustic environment to ISO 3744:2010 or equivalent. KP-108 Medical auditory alarm pulse characteristic analyzer 6.3.3.2 Volume and characteristics of auditory alarm signals and information signals Sound analyzer Type 1 to IEC 61672-1:2013; acoustic environment to ISO 3744:2010 or equivalent. Medical auditory alarm volume and signal characteristic analyzer 6.4.1, 6.5.5 Alarm system delays and interruptions ≤ 30 s Timer. Medical alarm delay and interruption timing analyzer Engineering Selection Tips by KingPo for IEC 60601-1-8 Alarm Signal Test Equipment IEC 60601-1-8 alarm signal testing should not be treated as a simple sound level check. Medical alarm systems require coordinated evaluation of visual indicators, auditory pulse characteristics, sound pressure behavior, signal timing and alarm system delay conditions. KingPo recommends selecting medical alarm signal test equipment according to the alarm type, acoustic environment, measurement distance, timing accuracy and reporting requirements. For auditory alarm testing, Type 1 acoustic measurement capability and repeatable signal analysis are important. For visual alarm indicator testing, flashing frequency, duty cycle and ambient light evaluation should be considered together. A common procurement mistake is selecting separate general-purpose instruments without considering the complete IEC 60601-1-8 workflow. KingPo supports integrated alarm signal testing configuration so laboratories can evaluate sound, light and timing requirements in a practical medical electrical safety test setup. Related KingPo Standard Pages Link this page to related KingPo standard pages after they are created. These links should point to other standard pages, while product links should be placed in the Recommended KingPo Equipment column above. Related Standard Application Link IEC 60601-1 General medical electrical equipment basic safety and essential performance testing IEC 60601-2-2 High frequency surgical equipment and accessories testing IEC 60601-2-4 Defibrillator and emergency medical equipment testing IEC 61672-1 Sound level meter and acoustic measurement instrumentation Related Applications Medical Alarm Signal Testing IEC 60601-1-8 Test Equipment Auditory Alarm Signal Analysis Visual Alarm Indicator Testing Sound Analyzer Testing Alarm Delay Testing Medical Electrical Safety Testing FAQ: IEC 60601-1-8 Medical Alarm Signal Test Equipment What is IEC 60601-1-8 alarm signal testing used for? IEC 60601-1-8 alarm signal testing is used to evaluate alarm systems in medical electrical equipment and medical electrical systems, including visual indicators, auditory alarm signals, information signals and alarm delay behavior. What equipment is needed for auditory alarm signal testing? Auditory alarm signal testing typically requires a sound analyzer or oscilloscope, and for detailed pulse and volume evaluation, Type 1 sound analysis capability according to IEC 61672-1 is commonly referenced. KingPo maps these requirements to the KP-108 alarm signal analyzer configuration. How are visual alarm indicator lights evaluated? Visual alarm indicator lights may require flashing frequency and duty cycle measurement, ambient light evaluation, tape-measure setup, luxmeter measurement and viewing-angle related assessment depending on the test item. Can KingPo support an integrated IEC 60601-1-8 alarm test setup? Yes. KingPo can support an integrated medical alarm signal testing setup for sound, light and timing measurements, helping laboratories simplify IEC 60601-1-8 test workflow planning. What is tested under alarm system delay requirements? Alarm system delay testing evaluates whether the alarm behavior and interruption timing meet the applicable requirement. A timer or timing measurement function is commonly used for these checks. Is a general sound level meter enough for IEC 60601-1-8? A general sound level meter may not be sufficient for all alarm signal characteristics. Some tests require pulse analysis, burst evaluation, volume characteristics and controlled acoustic conditions. The equipment should be selected according to the specific clause and test method. Can the Recommended KingPo Equipment column be customized? Yes. The final column is designed for product anchors. You can replace the equipment text with the actual KP-108 product link or other related KingPo product pages after the product URL is confirmed. Is this page a replacement for the official IEC 60601-1-8 standard? No. This page is an equipment selection guide. Users should refer to the official IEC standard, certification body requirements and laboratory procedures for final compliance interpretation. Need Help Building an IEC 60601-1-8 Medical Alarm Test Setup? KingPo supports laboratories and manufacturers with IEC 60601-1-8 alarm signal test equipment selection, fixture configuration and medical electrical alarm system testing workflows according to project requirements. Request IEC 60601-1-8 Test Equipment Quote Contact KingPo - [IEC 62368-1 Test Equipment for AV/ICT Safety Compliance](https://www.dgkingpo.com/Standards/iec-62368-1-test-equipment/): This IEC 62368-1 test equipment guide helps laboratories, AV/ICT equipment manufacturers, certification teams and procurement engineers identify typical instruments, fixtures and materials used for audio/video, information and communication technology equipment safety testing. - [IEC 60601-1 Test Equipment for Medical Electrical Safety Compliance](https://www.dgkingpo.com/Standards/iec-60601-1-test-equipment-list/): As of now, not all available test equipment and customized configurations are listed on our website. If you cannot find the equipment you need, KingPo can provide a complete IEC 60601-1 testing solution tailored to your specific requirements. Contact our technical team for a professional equipment proposal and quotation. - [IEC 60601-2-2:2017+AMD1:2023 Testing and Measuring Equipment](https://www.dgkingpo.com/Standards/iec-60601-2-2-electrosurgical-test-equipment/): As of now, not all available test equipment and customized configurations are listed on our website. If you cannot find the equipment you need, KingPo can provide a complete IEC 60601-2-2 testing solution tailored to your specific requirements. Contact our technical team for a professional equipment proposal and quotation. - [IEC 60670-1 Test Equipment for Boxes and Enclosures Compliance](https://www.dgkingpo.com/Standards/iec-60670-1-boxes-enclosures-test-equipment/): KINGPO Standard Test Equipment Guide IEC 60670-1 Test Equipment for Boxes and Enclosures Compliance   This IEC 60670-1 test equipment guide helps laboratories, manufacturers and procurement teams identify typical instruments, fixtures and materials used for boxes and enclosures for electrical accessories in household and similar fixed electrical installations. KingPo structures this page as a practical equipment selection guide. The checklist maps IEC 60670-1 clauses to marking durability, dimensional checks, protection against electric shock, earthing, constructional tests, IP protection, insulation resistance, electric strength, mechanical strength, heat resistance, glow-wire testing, tracking and corrosion resistance. This page is an equipment selection framework and website navigation guide. It is not a replacement for the official IEC 60670-1 standard or IECEE documentation. Final compliance decisions should be based on official publications and certification body requirements. Request IEC 60670-1 Test Equipment QuoteView Equipment Checklist Standard Information Standard IEC 60670-1:2015, Edition 2.0 Reference Scope Boxes and enclosures for electrical accessories for household and similar fixed electrical installations Testing Focus Marking, dimensions, electric shock protection, earthing, IP protection, insulation, mechanical strength, heat, fire, tracking and corrosion resistance KingPo Page Purpose Clause-based IEC 60670-1 test equipment selection and product mapping IEC 60670-1 Testing and Measuring Equipment Checklist Use this checklist to identify typical instruments, fixtures and materials for IEC 60670-1 test items. The final column is reserved for equipment mapping. Replace the placeholder equipment text with actual KingPo product URLs when the corresponding product page is available. Clause Measurement / Testing Testing / Measuring Equipment or Material Needed Recommended KingPo Equipment 8 Indelibility of marking Piece of cloth, water and petroleum spirit as specified in the standard note. Marking durability test materials 9 Checking of dimensions Calliper, micrometer and gauges where standard sheets exist. Dimensional inspection tools and gauges 10 Protection against electric shock IPXXB jointed test finger according to IEC 60529; test probe 11 according to IEC 61032; push dynamometer and electric contact indicator. Jointed test finger and force gauge set 11.1 Voltage drop and resistance in the earthing circuit Apparatus deriving current from an AC source with no-load voltage not exceeding 12 V and current of 25 ± 1 A; measuring probe. Protective earthing resistance test setup 11.2 Test on earthing strap Heating cabinet, test strap, torque screwdriver or spanner, 45 N load and stopwatch. Earthing strap heating and torque test setup 12.2.1 12.2.2 12.2.3 12.2.4 Verification of non-removal/removal of lids, covers or cover-plates fixed without screws Test probe A according to IEC 61032; loads of 10 N, 20 N, 40 N, 80 N and 120 N; hard material sheet and stopwatch. Cover retention force test fixture 12.1.2.3 Verification of the outline of lids, covers and cover-plates fixed without screws Gauge for the verification of the outline of lids, covers or cover-plates. Lid and cover outline verification gauge 12.1.2.4 Verification of grooves, holes and reverse tapers Gauge for verification of grooves, holes and reverse tapers; push dynamometer 1 ± 0.2 N. Groove and reverse taper verification gauge 12.3 Size of drain-holes Slide calliper or appropriate probe. Drain hole measurement tools 12.4 Insulation surroundings of metal parts of internal fixing means Slide calliper and appropriate micrometer. Insulation clearance measurement tools 12.5 12.6 Inlet openings for conduit entries Conduit samples in accordance with IEC 60423 or IEC 60981; slide calliper and micrometer. Conduit entry dimensional test tools 12.7 12.8 Test of the cable anchorage Cable anchorage apparatus, torque tools, loads, torque test apparatus, stopwatch and slide calliper. Cable anchorage and torque test apparatus 12.9.2 Knock-out retention 6 mm diameter mandrel with flat end, 30 ± 1 N load and stopwatch. Knock-out retention test fixture 12.9.3 12.9.4 Knock-out removal Refrigerator adjustable to -5 ºC, -15 ºC or -25 ºC; stopwatch. Low-temperature knock-out removal setup 12.10 Torque test of screw fixing means for covers and accessories Slide calliper and screwdriver or spanner with torque meter. Screw fixing torque test tools 12.11 Verification of fixing means for boxes and enclosures classified according to 7.7.1 Plywood sheet, lever according to the specified figure, dynamometer, stopwatch and slide calliper. Fixing means verification test fixture 12.13.2 Verification of fixing means for mounting to a wood structural member of a wall 45 x 90 mm wood structural member, dynamometer, stopwatch and movement measurement apparatus. Wood wall mounting strength test setup 12.13.3 Verification of fixing means for mounting to a wood structural member of a ceiling 35 x 180 mm wood structural member, dynamometer, stopwatch and deflection measurement apparatus. Wood ceiling mounting strength test setup 12.13.4 Verification of fixing means for mounting to a steel-stud structural member of a wall Steel-stud structural member, dynamometer, stopwatch and deflection measurement apparatus. Steel-stud mounting strength test setup 12.13.5 12.13.6 Measurement of internal volume of boxes and enclosures Flat transparent plate, graduated cylinder or measuring flask. Internal volume measurement tools 12.14 Test on cable glands Metal rods, spanner or suitable tool with torque meter and stopwatch. Cable gland torque test tools 12.15 12.16 Test for boxes and enclosures classified according to 7.3.4 and conical spouts as in 7.3.6 Conduits of minimum nominal size according to IEC 60423 or IEC 60981; dynamometer and stopwatch. Conduit and conical spout force test setup 13.1 Ageing test for insulating and composite boxes and enclosures, seals, grommets and replaceable membranes Cylindrical metal rods, torque tools and heating cabinet. Ageing test setup for boxes and membranes 13.1 Test applicable to all grommets, replaceable and non-replaceable membranes Heating cabinet, test probe 11 according to IEC 61032, push dynamometer and stopwatch. Grommet and membrane test setup 13.1 Test applicable to grommets and entry membranes in inlet openings Refrigerator adjustable to -15 ºC or -25 ºC and stopwatch. Low-temperature membrane test setup 13.2 Protection against ingress of solid objects IP2X to IP6X Slide calliper, torque tools, electric contact indicator, rigid spheres, jointed test finger, steel rods, test wires and dust chamber according to IEC 60529. IEC 60529 IP2X to IP6X dust and probe test equipment 13.3 Protection against harmful ingress of water IPX1 to IPX8 Slide calliper, torque tools, test wall, absorbent paper, drip box, oscillating tube or spray nozzle, water jet nozzles, immersion tank and voltage test equipment. IEC 60529 IPX1 to IPX8 water ingress test equipment 14.1 Humidity treatment Humidity chamber with 91% to 95% RH and temperature range of 20 to 30 ± 1 ºC. Humidity conditioning chamber 14.2 Insulation resistance DC source of 500 V, measuring instruments, metal foil and stopwatch. Insulation resistance test equipment 14.3 Electric strength test Adjustable high voltage test equipment up to 5250 V, output current capability, metal foil and stopwatch. Electric strength test equipment 15.2 Impact test for non-metallic boxes and enclosures intended for cast concrete Vertical hammer test apparatus or spring hammer according to IEC 60068-2-75; refrigerator adjustable to -5 ± 2 ºC, -15 ± 2 ºC or -25 ± 2 ºC. Low-temperature impact test apparatus 15.3 Compression test for non-metallic boxes and enclosures intended for cast concrete Heating cabinet adjustable to 90 ± 5 ºC, flat hardwood plates, 500 ± 5 N load and stopwatch. Compression test apparatus 15.4 Impact test on accessible boxes, enclosures and parts after completion of building process Pendulum hammer or spring hammer according to IEC 60068-2-75, plywood mounting block, mounting support, tape measure or measurement rod. Pendulum hammer and spring hammer impact tester 15.5 Compression test for rubber enclosures Plywood sheet, load from 50 N to 1000 N and stopwatch. Rubber enclosure compression test setup 16.1 Ball-pressure test on insulating material retaining current-carrying or earthing parts Ball-pressure test apparatus according to IEC 60695-10-2, heating cabinet 125 ± 2 °C, stopwatch and impression measurement device. Ball pressure test apparatus 16.2 Ball-pressure test on other insulating parts Same test setup as clause 16.1, with heating cabinet adjustable to 70 ± 2 ºC. Ball pressure test apparatus 16.3 Ball-pressure test on flush-mounted insulating enclosures Same test setup as clause 16.2, with heating cabinet adjustable to 90 ± 2 ºC. Ball pressure test apparatus 16.3.1 16.3.2 Mechanical strength test at high temperature for insulating boxes and enclosures Rigid crossbar, torque tools, total 180 N load, heating cabinet, stopwatch and slide calliper. High-temperature mechanical strength test setup 17 Creepage distances, clearances and distances through sealing compound Relevant measuring equipment according to the applicable part of IEC 60670 series. Creepage and clearance measurement tools 18 Glow-wire test Glow-wire test apparatus according to IEC 60695-2-10, with pinewood board, tissue paper and stopwatch. Glow wire test apparatus 19 Resistance to tracking Tracking test apparatus according to IEC 60112. Tracking index tester 20 Resistance to corrosion Suitable degreasing agent, ammonium chloride, humidity chamber saturated with moisture, heating cabinet and stopwatch. Corrosion and humidity resistance test setup Engineering Selection Tips by KingPo for IEC 60670-1 Test Equipment IEC 60670-1 test equipment selection should not be based only on one clause number. Boxes and enclosures can require a coordinated test setup covering dimensional measurement, probe access, earthing continuity, cable anchorage, ageing, ingress protection, insulation resistance, electric strength, mechanical strength, heat resistance and material safety tests. KingPo recommends matching the equipment configuration with the enclosure type, installation method, IP rating, material category, wall or ceiling mounting condition and expected laboratory throughput. For example, IP testing requires the correct IEC 60529 water and dust apparatus, while mechanical strength testing requires appropriate compression, impact, force and mounting fixtures. A common procurement mistake is purchasing a single generic tester without considering the full IEC 60670-1 workflow. KingPo supports clause-based equipment planning so that laboratories can combine dimensional gauges, test probes, IP equipment, high-voltage testers, impact hammers, ball-pressure testers, glow-wire apparatus and tracking testers into a practical boxes and enclosures compliance test setup. Related KingPo Standard Pages Link this page to related KingPo standard pages after they are created. These links should point to other KingPo standard pages, not product pages. Product links should be placed in the Recommended KingPo Equipment column above. Related Standard Application Link IEC 60529 IP protection against solid objects and water ingress IEC 61032 Test probes for protection against electric shock and accessibility checks IEC 60068-2-75 Impact hammer and pendulum hammer testing IEC 60695-2-10 Glow-wire apparatus and abnormal heat/fire testing IEC 60112 Tracking index testing for insulating materials Related Applications Boxes and Enclosures Testing Electrical Accessories Safety Testing IP Protection Testing Cable Anchorage Testing Impact and Compression Testing Ball Pressure Testing Glow-Wire Testing Tracking Resistance Testing Corrosion Resistance Testing FAQ: IEC 60670-1 Test Equipment What is IEC 60670-1 test equipment used for? IEC 60670-1 test equipment is used to evaluate boxes and enclosures for electrical accessories, including marking durability, dimensional checks, electric shock protection, earthing, constructional requirements, IP protection, insulation resistance, electric strength, mechanical strength, heat resistance, tracking and corrosion resistance. How does KingPo help select IEC 60670-1 test equipment? KingPo maps IEC 60670-1 clauses to practical equipment categories, helping laboratories plan complete setups that include gauges, force fixtures, IP test systems, high-voltage testers, impact equipment, ball-pressure testers, glow-wire apparatus and tracking testers. Which IEC 60670-1 clauses are commonly related to IP testing? Clauses 13.2 and 13.3 are commonly related to ingress protection testing. They reference solid object protection such as IP2X to IP6X and water ingress protection such as IPX1 to IPX8. What equipment is used for IEC 60670-1 mechanical strength testing? Mechanical strength testing can require vertical hammers, spring hammers, pendulum hammers, compression fixtures, loads, refrigerators, heating cabinets, mounting blocks and measurement tools, depending on the enclosure type and clause requirement. What equipment is required for heat and fire resistance testing? Heat and fire resistance testing commonly uses ball-pressure test apparatus, heating cabinets, glow-wire test apparatus, pinewood board, tissue paper and timing devices. KingPo can help map these instruments to the required IEC 60670-1 clauses. Can the Recommended KingPo Equipment column be customized? Yes. The final column is designed for product anchors. You can replace the placeholder equipment names with actual KingPo product links according to the product pages available on your website. Is this page a replacement for the official IEC 60670-1 standard? No. This page is an equipment selection guide. Users should refer to the official IEC 60670-1 standard, IECEE documents and certification body requirements for final compliance interpretation. Need Help Building an IEC 60670-1 Test Equipment Setup? KingPo supports laboratories and manufacturers with IEC 60670-1 test equipment selection, fixture configuration and customized boxes and enclosures safety test systems according to project requirements. Request IEC 60670-1 Test Equipment Quote Contact KingPo ## Products - [TIS 166-2549 Gauges for Plugs and Socket-Outlets](https://www.dgkingpo.com/product/tis-166-2549-gauges-for-plugs-and-socket-outlets/) - [IEC 60335-2-6 Figure 101 Test Vessels](https://www.dgkingpo.com/product/iec-60335-2-6-figure-101-test-vessels/) - [Mask Bacterial Filtration Efficiency Tester for Medical Face Masks](https://www.dgkingpo.com/product/mask-bacterial-filtration-efficiency-tester/) - [ISO 5356-1 Conical Connector Test Equipment – Automatic 35 N / 50 N Testing](https://www.dgkingpo.com/product/iso-5356-1-conical-connector-test-equipment/) - [ISO 22479 Sulfur Dioxide Test Chamber for Humid Corrosion Testing](https://www.dgkingpo.com/product/iso-22479-sulfur-dioxide-test-chamber/) - [IEC 61010-2-020 Thermometer Centrifuge for Glass Clinical Thermometers](https://www.dgkingpo.com/product/iec-61010-2-020-thermometer-centrifuge/) - [IEC 60601-1 Defibrillation-Proof and Energy Reduction Tester](https://www.dgkingpo.com/product/defibrillation-proof-and-energy-reduction-tester/) - [IEC 60335-2-23 Wooden Sphere for Helmet-Type Hairdryer Testing](https://www.dgkingpo.com/product/iec-60335-2-23-wooden-sphere-hairdryer-testing/) - [UL 923 Microwave Oven Door Test Equipment](https://www.dgkingpo.com/product/ul-923-microwave-oven-door-test-equipment/) - [Semi-Automatic Vision Measuring Machine with Z-Axis Auto Focus and Height Measurement](https://www.dgkingpo.com/product/semi-automatic-vision-measuring-machine/) - [Audiometer Calibration System for Pure Tone and Impedance Audiometers](https://www.dgkingpo.com/product/audiometer-calibration-system/) - [IEC 62552 Freezing Load Test Package](https://www.dgkingpo.com/product/iec-62552-freezing-load-test-package/) - [Oxygen Bomb Aging Test Chamber for Cable and Insulation Materials](https://www.dgkingpo.com/product/oxygen-bomb-aging-test-chamber/) - [IEC 62368-1 Annex T Mechanical Strength Tests for Circular Plan Surface Diameter Of 30mm](https://www.dgkingpo.com/product/iec-62368-1-annex-t-mechanical-strength-tests/) - [IEC 60335-1 Clause 5 Resistive-Capacitive Low Pass Filter](https://www.dgkingpo.com/product/iec-60335-1-clause-5-low-pass-filter/) - [IEC 60335-1 Stability Test Equipment for Appliance Inclined Plane Testing](https://www.dgkingpo.com/product/iec-60335-1-stability-test-equipment/) - [IEC 60335-2-15 Kettle Horizontal and Vertical Movement Apparatus](https://www.dgkingpo.com/product/iec-60335-2-15-kettle-movement-test-apparatus/) - [IEC 61032 Test Probe B – IP2X Jointed Test Finger](https://www.dgkingpo.com/product/iec-61032-test-probe-b/) - [Temperature Humidity Test Chamber for Electronics – IEC 60068 Electronic Component Testing](https://www.dgkingpo.com/product/temperature-humidity-test-chamber/) - [Stethoscope Acoustic Test System](https://www.dgkingpo.com/product/stethoscope-acoustic-test-system/) - [IEC 60335 Battery Enclosure Pressure Tester](https://www.dgkingpo.com/product/iec-60335-battery-enclosure-pressure-tester/) - [IEC 61347-1 Annex H Insulating Barrier Test Equipment](https://www.dgkingpo.com/product/iec-61347-1-annex-h-insulating-barrier-test-equipment/) - [IEC 60335-2-17 Blanket Mechanical Strength Test Apparatus for Electric Blanket Safety Testing](https://www.dgkingpo.com/product/iec-60335-2-17-blanket-mechanical-strength-test-apparatus/) - [SASO 1858 Electric Water Heater Energy Efficiency Test Laboratory](https://www.dgkingpo.com/product/electric-water-heater-test-laboratory/) - [Automatic Cord Reel Endurance Tester for IEC 60335-1 Clause 22.16](https://www.dgkingpo.com/product/iec-60335-1-cord-reel-endurance-tester/) - [UL 719 Abrasion Resistance Tester](https://www.dgkingpo.com/product/ul-719-abrasion-resistance-tester/) - [IEC 60335-2-2 Current-Carrying Hose Crushing Tester](https://www.dgkingpo.com/product/iec60335-current-carrying-hose-crushing-tester/) - [UL 2580 Clause 26 Short Circuit Tester](https://www.dgkingpo.com/product/ul-2580-clause-26-short-circuit-tester/) - [IEC 60335-2-30 75mm Test Probe](https://www.dgkingpo.com/product/iec-60335-2-30-75mm-test-probe/) - [IEC 62368-1 Clause 9.6 Wireless Power Receiver for FOD Temperature Rise Testing](https://www.dgkingpo.com/product/iec-62368-1-clause-9-6-wireless-power-receiver/) - [IEC 62368-1 Figure D.2 Pulse Voltage Generator](https://www.dgkingpo.com/product/iec-62368-1-figure-d2-pulse-voltage-generator/) - [IEC 62368-1 Table D.1 Impulse Test Generator](https://www.dgkingpo.com/product/iec-62368-1-impulse-test-generator/) - [IEC 62368-1 Annex D.3 Impulse Test Generator | Electronic Pulse Generator](https://www.dgkingpo.com/product/iec-62368-1-annex-d3-impulse-test-generator/) - [IPX9K Impact Force Measurement Unit](https://www.dgkingpo.com/product/ipx9k-impact-force-measurement-unit/) - [IEC 60335-2-3 Clause 20.104 Test Probe](https://www.dgkingpo.com/product/iec-60335-2-3-test-probe/) - [IEC 62368-1 Annex E Pink Noise Generator](https://www.dgkingpo.com/product/iec-62368-1-pink-noise-generator/) - [IEC 60335-2-3 Steel Cylinder | Clause 20.102](https://www.dgkingpo.com/product/iec-60335-2-3-steel-cylinder/) - [IEC 60335-2-3 Clause 5.9 Test Iron](https://www.dgkingpo.com/product/iec-60335-2-3-clause-5-9-test-iron/) - [ISO 80369-7 Luer Gauge Set and Reference Connectors](https://www.dgkingpo.com/product/iso-80369-7-luer-gauge-set/) - [ISO 80369-7 Male Plug Gauge for Testing Female Luer Connectors](https://www.dgkingpo.com/product/iso-80369-7-male-plug-gauge/) - [ISO 80369-7 Female Ring Gauge for Male Luer Connector Verification](https://www.dgkingpo.com/product/iso-80369-7-female-ring-gauge/) - [IEC 60335-2-6 Figure 106 Spillage Solution Bottle](https://www.dgkingpo.com/product/iec-60335-2-6-figure-106-spillage-solution-bottle/) - [ISO 80369-7 Figure C.6 Male Reference Connector](https://www.dgkingpo.com/product/iso-80369-7-figure-c-6-male-reference-connector/) - [ISO 80369-7 Figure C.5 Female Reference Luer Slip Connector](https://www.dgkingpo.com/product/iso-80369-7-figure-c-5-female-reference-luer-slip-connector/) - [ISO 80369-7 Figure C.4 Male Reference Luer Lock Connector](https://www.dgkingpo.com/product/iso-80369-7-figure-c-4-male-reference-luer-lock-connector/) - [ISO 80369-7 Figure C.3 Female Reference Connector](https://www.dgkingpo.com/product/iso-80369-7-figure-c-3-female-reference-connector/) - [Programmable DC Power Supply 80V 900A 30kW](https://www.dgkingpo.com/product/programmable-dc-power-supply/) - [Programmable AC Power Source / AC Variable Frequency Power Supply Series](https://www.dgkingpo.com/product/programmable-ac-power-source/) - [ISO 80369-7 Figure C.1 Female Reference Luer Lock Connector](https://www.dgkingpo.com/product/iso-80369-7-figure-c-1-female-reference-luer-lock-connector/) - [ISO 80369-7 Figure C.2 Male Reference Luer Slip Connector](https://www.dgkingpo.com/product/iso-80369-7-figure-c-2-male-reference-luer-slip-connector/) ## Categories - [News](https://www.dgkingpo.com/category/news/) - [Cases](https://www.dgkingpo.com/category/cases/) ## Product Categories - [IP Testing Equipment](https://www.dgkingpo.com/product-category/ip-testing-equipment/) - [Environmental Test Chamber](https://www.dgkingpo.com/product-category/environmental-test-chamber/) - [IEC 62368 Test Equipment](https://www.dgkingpo.com/product-category/iec-62368-test-equipment/) - [Flame Test Equipment](https://www.dgkingpo.com/product-category/flame-test-equipment/) - [Medical Test Equipment](https://www.dgkingpo.com/product-category/medical-test-equipment/) - [Vehicle Testing Equipment](https://www.dgkingpo.com/product-category/vehicle-testing-equipment/) - [Electrical Safety Test Equipment](https://www.dgkingpo.com/product-category/electrical-safety-test-equipment/) - [Battery Test Equipment](https://www.dgkingpo.com/product-category/battery-test-equipment/) - [Cable Testing Equipment](https://www.dgkingpo.com/product-category/cable-testing-equipment/) - [Electric Motor Testing System](https://www.dgkingpo.com/product-category/electric-motor-testing-system/) - [Audio Analyzer](https://www.dgkingpo.com/product-category/audio-analyzer/) - [Plug Socket Tester](https://www.dgkingpo.com/product-category/plug-socket-tester/) - [Lamp Cap Gauge](https://www.dgkingpo.com/product-category/lamp-cap-gauge/) ## Standards Categories - [IEC International Electrotechnical Commission](https://www.dgkingpo.com/standards-category/iec-international-electrotechnical-commission/) - [ISO International Organization for Standardization](https://www.dgkingpo.com/standards-category/iso-international-organization-for-standardization/)