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LED Power Supply Aging Test-Burn in Chamber
LED Power Supply Aging Test-Burn in Chamber
LED Power Supply Aging Test-Burn in Chamber
LED Power Supply Aging Test-Burn in Chamber
LED Power Supply Aging Test-Burn in Chamber
LED Power Supply Aging Test-Burn in Chamber
LED Power Supply Aging Test-Burn in Chamber
LED Power Supply Aging Test-Burn in Chamber

LED Power Supply Aging Test-Burn in Chamber

MOQ : 1 , , Millimeter

LED Power Supply Aging Test-Burn in Chamber Specification

  • Gas Pressure
  • 0.4~0.8 MPa (for cooling/air-based models)
  • Measuring Range
  • 0-500V, 0-10A (per channel)
  • Mounting Type
  • Floor-standing
  • Application
  • Aging and reliability test for LED power supplies
  • Response Time
  • <1 second
  • Equipment Type
  • LED Power Supply Aging/Burn-in Chamber
  • Resolution
  • 0.1V/0.01A
  • Number of Specimens
  • Up to 40 units per batch
  • Specimen Size
  • Customizable slots for multiple dimensions
  • Hardness
  • N/A (not applicable)
  • Power Supply
  • 220V AC, 50/60Hz
  • Accuracy
  • 1%
  • Frequency
  • 50/60Hz
  • Operating Voltage
  • 220V / 110V AC optional
  • Port Size
  • Standard (customizable as per requirement)
  • Max Height
  • 1350 mm
  • Test Range
  • 0-200W LED Power Supply
  • Features
  • Overload protection, programmable parameters, temperature/humidity control
  • Automation Grade
  • Automatic
  • Display Type
  • Digital LCD/LED display
  • Temperature
  • Ambient to 70C (programmable)
  • Interface Type
  • RS-232/USB interface for data output
  • Humidity
  • 30% to 90% RH (adjustable)
  • Usage
  • LED driver power aging, endurance, and burn-in testing
  • Capacity
  • 40-60 pieces per cycle
  • Machine Weight
  • Approx. 250 kg
  • Test Speed
  • Variable, up to 60 cycles/min
  • Test Width
  • 600 mm
  • Test Stroke
  • 400 mm
  • Control Mode
  • Microprocessor-based, Automatic
  • Service Access
  • Front/rear maintenance doors
  • Compliance
  • CE, ISO, and other standard certifications
  • Data Logging
  • Built-in data acquisition and recording
  • Optional Remote Monitoring
  • Ethernet/Wi-Fi enabled module
  • External Chamber Dimensions
  • 1100 x 900 x 1800 mm
  • Internal Chamber Dimensions
  • 850 x 700 x 1200 mm
  • Safety Systems
  • Over-temperature, over-current, leak detection
  • Air Flow Type
  • Forced air circulation
  • Operating Environment
  • Indoor, dust-free, ventilated area
  • Cooling System
  • Optional air or water cooling depending on model
  • Lighting Fixture Type
  • Universal, compatible with most LED driver outputs
  • Input Channel Configuration
  • Independent programmable channels for each specimen
  • Alarm Type
  • Audible and visual alarm on fault
  • Chamber Material
  • Powder-coated steel, stainless steel inner
  • Burn-in Time Configuration
  • Programmable 0-9999h per test
 

LED Power Supply Aging Test-Burn in Chamber Trade Information

  • Minimum Order Quantity
  • 1 , , Millimeter
  • Supply Ability
  • 192 Millimeters Per Month
  • Delivery Time
  • 20-25 Days
 

About LED Power Supply Aging Test-Burn in Chamber

With huge technical knowledge and industrial experience, we are engaged in offering a wide array of LED Power Supply Aging Test-Burn in Chamber. This product is manufactured by our skilled engineers utilizing the finest quality components and advanced technology. Renowned for their brilliant features like robust design, zero maintenance and high performance, the offered LED Power Supply Aging Test-Burn in Chamber is widely acknowledged by our clients from every nook & corner of the country. Also, we provide the entire range at the market leading prices.



Comprehensive Testing with Advanced Automation

This burn-in chamber supports variable test cycles and programmable durations up to 9999 hours, providing unparalleled flexibility for endurance and stress testing of LED power supplies. Independent channels and universal fixture compatibility make it suitable for most LED driver outputs, ensuring your quality assurance process is both thorough and efficient.


Reliable Safety and Data Control

Equipped with over-temperature, over-current protection, and leak detectors, the chamber prioritizes device integrity and operator safety. Its built-in data logging and exportable digital interface make it easy to monitor parameters, generate reports, and maintain compliance with CE and ISO standards, all while supporting remote access via Ethernet or Wi-Fi.

FAQs of LED Power Supply Aging Test-Burn in Chamber:


Q: How does the forced air circulation in the LED power supply aging chamber improve test accuracy?

A: The forced air circulation ensures uniform temperature and humidity distribution throughout the chamber, eliminating hot spots and ensuring that each specimen experiences consistent testing conditions, which directly improves reliability and accuracy of the aging and burn-in results.

Q: What types of LED power supplies are compatible with this burn-in chamber?

A: Thanks to its universal lighting fixture and customizable specimen slots, the chamber is compatible with most types of LED driver outputs and power supplies within the 0-200W range, making it adaptable for varied testing requirements.

Q: Where should the LED power supply burn-in chamber be installed for optimal performance?

A: The chamber is designed for indoor use in a dust-free, well-ventilated area. This environment helps maintain testing integrity, prevents contamination, and ensures the chambers cooling and safety systems operate effectively.

Q: What is the process for conducting a burn-in test using this chamber?

A: Users load up to 40 LED power supplies into the chambers customizable slots, configure individual channels and test parameters via the digital interface, and initiate the programmed aging cycle. Data is logged automatically, and any fault triggers both audible and visual alarms.

Q: What are the benefits of the chambers data logging and remote monitoring features?

A: The built-in data acquisition system records test parameters for each specimen in real time. With Ethernet or Wi-Fi enabled remote monitoring, users can oversee test progress and retrieve data without being physically present, enhancing efficiency and traceability.

Q: When should you utilize the automatic safety systems of the chamber?

A: Automatic safety systems such as over-temperature, over-current, and leak detection operate continuously during testing. These safeguards activate immediately upon detecting any fault, minimizing risk and protecting both equipment and test specimens.

Q: How can test results from the chamber be exported for further analysis?

A: Test results can be exported using the RS-232 or USB interface. These outputs allow users to transfer data to external devices or computers for comprehensive analysis, record-keeping, or quality assurance reporting.

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