IEC 60601-1 Oxygen Rich Environment Spark Ignition Test Setup โ€“ KingPo System Performing Make/Break Operations with DC 0-80V / 2A Output for Medical Electrical Safety Testing
IEC 60601-1 Spark Ignition Tester โ€“ KingPo Apparatus for Fire Risk Evaluation in Oxygen-Rich Environments for ME Equipment and ME Systems per Figures 34-37
IEC 60601-1 Spark Ignition Tester โ€“ KingPo Contact Pins (1 mm and 3 mm Diameter) with Oxygen Flow
IEC 60601-1 Spark Ignition Tester Control Panel โ€“ KingPo PLC Interface with Adjustable Test Speed 0-30 times/min, Cycle Counter, and Oxygen Flow Control
IEC 60601-1 Oxygen Rich Environment Spark Ignition Test Setup โ€“ KingPo System Performing Make/Break Operations with DC 0-80V / 2A Output for Medical Electrical Safety Testing
IEC 60601-1 Spark Ignition Tester โ€“ KingPo Apparatus for Fire Risk Evaluation in Oxygen-Rich Environments for ME Equipment and ME Systems per Figures 34-37
IEC 60601-1 Spark Ignition Tester โ€“ KingPo Contact Pins (1 mm and 3 mm Diameter) with Oxygen Flow
IEC 60601-1 Spark Ignition Tester Control Panel โ€“ KingPo PLC Interface with Adjustable Test Speed 0-30 times/min, Cycle Counter, and Oxygen Flow Control

Spark Ignition Tester โ€“ IEC 60601-1 Oxygen Rich Environment Fire Risk Assessment Apparatus

Spark Ignition Tester โ€“ IEC 60601-1 compliant apparatus assesses the RISK of fire in an oxygen-rich environment for medical electrical (ME) equipment and systems by simulating spark ignition under controlled oxygen flow and electrical parameters per Figures 34-37.

  • Standard Compliance: IEC 60601-1 (Clause 11.2.2, Figures 34-37) โ€“ spark ignition tester for oxygen-rich environment fire risk evaluation in ME EQUIPMENT and ME SYSTEMS
  • Test Speed: 0-30 times/min (PLC controlled)
  • Oxygen Flow: <0.5 m/s (adjustable)
  • Output: DC 0-80 V max voltage, 2 A max current
  • Test Cycles: 0-99999 (presettable)
  • Construction: Robust frame with PLC control and safety features
  • MOQ: 1
  • Price: To be quoted
  • Standard Packaging: plywood box
  • Delivery Period: 30 working days
  • Payment Method: T/T
  • Supply Capacity: 2 units per month

Spark Ignition Tester Description

Oxygen Environment IEC 60601-1 Spark Ignition Tester For Me Equipment / Systems

The Spark Ignition Tester is a specialized safety testing instrument manufactured by KingPo to evaluate the RISK of fire in an oxygen-rich environment for medical electrical (ME) equipment and ME systems in full compliance with IEC 60601-1 Clause 11.2.2 and Figures 34-37.

This apparatus determines whether a source of ignition exists by simulating spark conditions between contact pins (1 mm and 3 mm diameter) in a controlled oxygen flow (<0.5 m/s). It supports assessment under normal and single fault conditions, including temperature effects, solder joint failures, and spark energy limits defined in Figures 35-37. The system flushes contacts with oxygen while performing repeatable make/break operations, with cotton as the ignition indicator material. A minimum of 300 trials is typically performed to confirm no ignition occurs.

IEC 60601-1 Spark Ignition Tester Control Panel โ€“ KingPo PLC Interface with Adjustable Test Speed 0-30 times/min, Cycle Counter, and Oxygen Flow Control
IEC 60601-1 Spark Ignition Tester Control Panel โ€“ KingPo PLC Interface with Adjustable Test Speed 0-30 times/min, Cycle Counter, and Oxygen Flow Control

KingPo Factory Advantages

KingPo is an ISO9001-certified manufacturer with extensive experience in medical electrical safety testing equipment. We have supplied multiple IEC 60601-1 compliant spark ignition testers to global medical device manufacturers and accredited laboratories. All units include calibration certificates (additional cost), on-site installation guidance, a 1-year warranty, and 48-hour technical response from our Dongguan facility.

Professional Construction & Technical Precision

Key features include:

  • PLC-controlled operation with adjustable test speed (0-30 times/min) and oxygen flow (<0.5 m/s)
  • DC output: 0-80 V voltage and 2 A current for precise spark energy simulation
  • Test cycle counter: 0-99999 (presettable with automatic stop)
  • Contact pins constructed from relevant materials (1 mm and 3 mm diameters) per Figure 34
  • Integrated oxygen delivery tube and safety interlocks
  • Robust enclosure suitable for laboratory use

These elements ensure accurate, repeatable simulation of worst-case spark ignition scenarios in 100% oxygen or lower concentrations, with proper justification documented in the RISK MANAGEMENT FILE when deviations apply.

Technical Parameters

Parameter Specification
Model Number KP-601A Spark Ignition Tester
Standard IEC 60601-1 (Clause 11.2.2, Figures 34-37)
Test Speed 0-30 times/min (PLC control)
Oxygen Flow <0.5 m/s (adjustable)
Max Output Voltage (DC) 0-80 V
Max Output Current (DC) 2 A
Test Cycles 0-99999 (presettable)
Power Supply AC 220 V 50 Hz
Dimensions (approx.) 850 ร— 900 ร— 1650 mm (Wร—Dร—H)
Weight (approx.) 150 kg
Packing Dimension 97 ร— 90 ร— 180 cm (Lร—Wร—H)
Gross Weight 213 kg
Figure 34 โ€“ Spark ignition test apparatus

IEC 60601-1 Spark Ignition Tester โ€“ KingPo Electrode Setup Showing Contact Pins and Oxygen Delivery Tube for Repeatable 300+ Trial Spark Ignition Testing

Figure 35 โ€“ Maximum allowable current I as a function of the maximum allowable voltage U measured in a purely resistive circuit in an OXYGEN RICH ENVIRONMENT

 

IEC 60601-1 Oxygen Rich Environment Spark Ignition Test Setup โ€“ KingPo System Performing Make/Break Operations with DC 0-80V / 2A Output for Medical Electrical Safety Testing

Figure 36 โ€“ Maximum allowable voltage U as a function of the capacitance C measured in a capacitive circuit used in an OXYGEN RICH ENVIRONMENT

IEC 60601-1 Oxygen Rich Environment Spark Ignition Test Setup โ€“ KingPo System Performing Make/Break Operations with DC 0-80V / 2A Output for Medical Electrical Safety Testing

Figure 37 โ€“ Maximum allowable current I as a function of the inductance L measured in an inductive circuit in an OXYGEN RICH ENVIRONMENT

IEC 60601-1 Spark Ignition Tester โ€“ KingPo DC Output Module (0-80 V Max Voltage, 2 A Max Current) for Precise Spark Energy Simulation per IEC 60601-1 Figures 35-37

Primary Use Cases & Business Value

The spark ignition tester supports essential stages:

  • Product Development โ€“ Assess fire risk mitigation in oxygen-rich environments for new ME equipment designs
  • Certification Testing โ€“ Generate data for IEC 60601-1 compliance regarding Clause 11.2.2 fire hazards
  • Quality Control โ€“ Verify insulation, components, and spark energy limits in production
  • Risk Management โ€“ Document worst-case scenarios and safety margins per the standard

It helps manufacturers reduce unacceptable fire risks, shorten compliance timelines, and ensure patient safety in oxygen-enriched medical settings.

Procurement Benefits

PLC control and adjustable parameters provide high repeatability and flexibility. Robust construction and comprehensive safety features ensure reliable long-term operation. This spark ignition tester enhances fire risk validation for ME equipment, supports regulatory compliance, and minimizes safety-related risks. Contact us today for your quote โ€“ we will respond within 24 hours with detailed technical specifications and pricing.

Spark Ignition Tester Applications

  • Medical Electrical (ME) Equipment and Systems โ€“ Fire risk evaluation in oxygen-rich environments per IEC 60601-1
  • Oxygen-Concentrating Devices and Ventilators โ€“ Spark ignition assessment under normal and single fault conditions
  • Certification Laboratories & Quality Assurance โ€“ Compliance verification for Clause 11.2.2 and Figures 34-37
  • R&D and Risk Management โ€“ Justification of safety margins and material selection for oxygen-enriched applications

Spark Ignition Test Apparatus Operation Manual.pdf

Compliance & Regulatory Assurance

This equipment is strictly designed and manufactured in accordance with IEC 60601-1 Clause 11.2.2, specifically addressing the RISK of fire in an OXYGEN RICH ENVIRONMENT for ME EQUIPMENT and ME SYSTEMS. It simulates spark ignition scenarios using standardized contact pins and oxygen flow to determine whether sparks provide adequate energy for ignition (per Figures 35-37), thereby supporting manufacturers in reducing fire hazards under normal and single fault conditions. Calibration certificates are available at additional cost. Regular verification of voltage/current output, oxygen flow rate, and test speed is recommended to maintain traceability.

Technical Inquiry for IEC 60601-1 Spark Ignition Tester

KingPo specializes in precision medical electrical safety testing equipment designed to IEC 60601-1 for ME EQUIPMENT and ME SYSTEMS. If you require spark ignition testing to evaluate fire risk in oxygen-rich environments, our engineering team can provide customized configurations and technical support.

The Core Value We Deliver to You

  • Adjustable test speed 0โ€“30 times/min with PLC control for repeatable results
  • Controlled oxygen flow less than 0.5 m/s for accurate simulation of oxygen-rich conditions
  • DC output range 0โ€“80 V / 2 A for precise spark energy assessment per Figures 35โ€“37
  • Test cycle counter up to 99999 with automatic stop function
  • Robust construction with safety interlocks suitable for laboratory use

Take Action Now Tell us your testing needs (ME equipment type, oxygen concentration, or specific material requirements) โ€” our engineering team will reply with tailored recommendations within 24 hours.

Related Videos

Detail Display - Oxygen Environment IEC 60601-1 Spark Ignition Tester For Me Equipment / Systems

Spark Ignition Tester FAQs

How is the spark ignition tester calibrated?
Calibration involves certified voltage/current meters, flow meters for oxygen, and tachometers for test speed. Full procedures and recommended frequency are detailed in the user manual and calibration service guide.
What oxygen concentration does the apparatus simulate?
It supports testing in oxygen-rich environments, including up to 100% oxygen, with flow rate controlled below 0.5 m/s as specified in IEC 60601-1. Lower concentrations can be applied with documented justification.
How many trials are typically performed?
A minimum of 300 trials is recommended before concluding that sparks do not cause ignition. The counter allows up to 99999 cycles with automatic stop.
Can the tester evaluate different materials and fuels?
Yes. Contact pins are constructed from the relevant materials of the ME equipment under test, and cotton (or other specified fuels) is used as the ignition indicator.
What safety features are included?
The system incorporates safety interlocks, emergency stop, and controlled oxygen delivery to minimize operator risk during high-voltage spark testing.
Is the apparatus suitable for both resistive and inductive/capacitive circuits?
Yes. It supports evaluation per Figures 35 (resistive), 36 (capacitive), and 37 (inductive) to determine maximum allowable voltage/current limits.
How does the system handle electrode degradation?
Electrodes can be cleaned with a file if spark intensity decreases due to surface conditions, as described in the standard procedure.
What maintenance is required for long-term accuracy?
Periodic inspection of contact pins, oxygen delivery system, and electrical outputs; annual full calibration is recommended.
How can I determine the safety margin for my equipment?
The upper limit (highest voltage/current with no ignition) is divided by a safety margin factor of three, with deviations justified in the RISK MANAGEMENT FILE.
How to request a customized configuration or quotation?
Contact our engineering team with your specific ME equipment details, oxygen concentration, or material requirements. We will provide a tailored solution and quote promptly.

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