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LED Lamp Power Supply Aging Test Burn-in Machine
LED Lamp Power Supply Aging Test Burn-in Machine
LED Lamp Power Supply Aging Test Burn-in Machine
LED Lamp Power Supply Aging Test Burn-in Machine
LED Lamp Power Supply Aging Test Burn-in Machine
LED Lamp Power Supply Aging Test Burn-in Machine
LED Lamp Power Supply Aging Test Burn-in Machine
LED Lamp Power Supply Aging Test Burn-in Machine
LED Lamp Power Supply Aging Test Burn-in Machine
LED Lamp Power Supply Aging Test Burn-in Machine

LED Lamp Power Supply Aging Test Burn-in Machine

MOQ : 1 Millimeter

LED Lamp Power Supply Aging Test Burn-in Machine Specification

  • Test Range
  • 0300W (per lamp)
  • Humidity
  • 20%90% RH
  • Temperature
  • 0C50C
  • Specimen Size
  • 400 mm length
  • Features
  • Overload protection, automatic timing, multiple test modes
  • Display Type
  • Digital display
  • Automation Grade
  • Automatic
  • Response Time
  • <2 seconds
  • Interface Type
  • RS232/RS485
  • Operating Voltage
  • 220V AC
  • Gas Pressure
  • 0.40.6 MPa
  • Accuracy
  • 1%
  • Number of Specimens
  • Up to 40 lamps/test
  • Port Size
  • Standard 1/2 inch
  • Power Supply
  • AC 220V 10% 50Hz
  • Equipment Type
  • LED Lamp Power Supply Aging Test Burn-in Machine
  • Max Height
  • 1800 mm
  • Resolution
  • 0.1W
  • Mounting Type
  • Floor standing
  • Application
  • Aging and burn-in testing for LED lamp power supplies
  • Frequency
  • 50/60 Hz
  • Measuring Range
  • 0300W
  • Usage
  • Industrial, manufacturing QC
  • Capacity
  • 40 units per batch
  • Machine Weight
  • 250 kg
  • Test Speed
  • Adjustable, 0 to 5 m/min
  • Test Width
  • 600 mm
  • Test Stroke
  • 01000 mm
  • Control Mode
  • PLC automatic control
  • Safety Protection
  • Short-circuit, over-voltage and over-current protection
  • Cooling System
  • Integrated fan for heat dissipation
  • Data Logging
  • Real-time data recording and export
  • Alarm System
  • Acoustic and visual alarm for fault detection
  • Ambient Noise Level
  • <60 dB(A)
  • Shelves/Fixture Configuration
  • Adjustable shelves with secure lamp holders
  • Lamp Base Compatibility
  • Supports E27, E14, GU10, and custom bases
  • Timer Function
  • Digital programmable time control (09999 min)
 

LED Lamp Power Supply Aging Test Burn-in Machine Trade Information

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

About LED Lamp Power Supply Aging Test Burn-in Machine

 

Keeping in mind, ever-evolving requirements of our valuable clients, we are providing an exclusive range of LED Lamp Power Supply Aging Test - Burn-in Machine. The offered machine is precisely designed using high grade component and advanced technology in compliance with international standards. Our esteemed clients can avail this array of machines at competitive prices. In addition to this, we provide our LED Lamp Power Supply Aging Test - Burn-in Machine in numerous specifications to meet the varied needs of clients.



Versatile and Customizable Testing

Designed to meet diverse testing requirements, this machine features adjustable shelves and compatibility with E27, E14, GU10, and custom lamp bases. This adaptability allows manufacturers to efficiently test different LED lamp models in batches of up to 40 units, ensuring thorough performance assessments across product varieties.


Enhanced Safety and Automated Controls

Safety is prioritized with built-in protections for short-circuit, over-voltage, and over-current. Programmable digital timers provide precise control over test durations, while an automatic PLC-regulated setup accommodates multiple test modes. Acoustic and visual alarms promptly notify users of faults for uninterrupted, secure testing operations.


Efficient Performance Monitoring

The integrated cooling fan ensures the system remains within safe thermal limits during high-load cycles. Real-time data recording with digital export options allows seamless tracking and analysis of each batchs testing results. A clear digital display, 1% accuracy, and swift response time under two seconds facilitate rapid decision-making during quality inspections.

FAQs of LED Lamp Power Supply Aging Test Burn-in Machine:


Q: How does the LED Lamp Power Supply Aging Test Burn-in Machine ensure safety during testing?

A: The machine incorporates several safety features, including short-circuit, over-voltage, and over-current protection. Additionally, an acoustic and visual alarm system alerts operators to any detected faults, supporting an extra layer of operational safety.

Q: What types of LED lamp bases are compatible with this aging test machine?

A: This equipment supports a wide range of lamp bases, such as E27, E14, GU10, and can be customized for other base types. Its adjustable shelves with secure holders accommodate various lamp dimensions, with a maximum specimen length of 400 mm.

Q: When should aging and burn-in testing be performed on LED lamp power supplies?

A: Aging and burn-in tests are typically conducted prior to product shipment or after assembly, as part of routine quality control processes. This ensures that power supplies meet reliability standards and perform consistently in the field.

Q: Where can the aging test machine be installed and operated?

A: This floor-standing unit is designed for industrial and manufacturing settings. It operates best in environments within 0C50C and 20%90% relative humidity, and it requires an AC 220V 10% 50Hz power supply.

Q: What is the process for using the LED Lamp Power Supply Aging Test Burn-in Machine?

A: Operators secure up to 40 lamps onto the adjustable shelves and select the desired test parameters using the touchscreen controls. The PLC automates test execution, while real-time data is logged and can be exported via RS232/RS485 interfaces for analysis.

Q: How does real-time data logging benefit quality control?

A: Real-time data logging enables continuous monitoring and recording of key parameters such as test width, power, and cycle status. With digital export, inspection teams can easily review historical results, improving traceability and supporting data-driven quality improvements.

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