Product Description
In order to meet the diversified requirement of the customers, our organization is engaged in offering precision designed LED Driver Power Supply Aging Test Equipment. In order to maintain the industry standards and to avoid any kind of flaw, this power supply aging test equipment is stringently examined under the guidance of highly experienced quality controllers. Long service life, robust construction and high performance are features of offered LED Driver Power Supply Aging Test Equipment. The offered equipment support power burn-in from low voltage to high voltage and from low current to large current.
Efficient and Reliable TestingDesigned for high-throughput environments, this equipment provides precise and automated aging tests for LED driver power supplies. Its forced air cooling, accurate PLC control, and fast response time (1 sec) ensure reliable operation. With adjustable test speed and multiple cycling modes, users can tailor the process to specific requirements without compromising efficiency.
Flexible and Adaptable OperationThe system supports various specimen sizes and customizable test widths, accommodating evolving testing demands. Adjustable clamps and a sturdy powder-coated steel frame ensure stability during continuous operation. From programmable cycles to real-time remote monitoring via PC software, the device adapts seamlessly to both laboratory and production settings.
Comprehensive Data ManagementInternal memory, USB export, and intuitive data logging simplify result tracking and traceability. Users benefit from alarm functions, overload protection, and auto-shutdown to minimize risk and ensure test accuracy. The equipments easy-to-use LCD touch screen and dedicated PC software make controlling, monitoring, and exporting data straightforward.
FAQs of LED Driver Power Supply Aging Test Equipment:
Q: How does the forced air cooling method enhance equipment performance during aging tests?
A: Forced air cooling effectively dissipates heat generated during extended aging cycles, ensuring the LED driver specimens and equipment maintain optimal operating temperatures. This contributes to consistent, accurate results and prolonged equipment lifespan.
Q: What types of test modes are available on this aging test equipment?
A: The machine offers continuous, cyclic, and programmable cycling modes. Users can select and program test parameters via the PLC touch screen to meet diverse aging and endurance test requirements for various LED drivers.
Q: When should I use the audible and visual alarm functions?
A: Audible and visual alarms activate automatically at fault detection or test completion. These alerts ensure prompt attention to equipment status, supporting laboratory safety and reducing risk during unattended operation.
Q: Where can the test results and data be accessed or exported?
A: Test results are stored in the equipments internal memory and can be conveniently exported via USB. Additionally, remote monitoring and data access are possible through the supplied PC software, enhancing flexibility in laboratory and production environments.
Q: What is the process for adjusting the test width or accommodating different specimen sizes?
A: The adjustable clamp fixtures and customizable test width (standard 300 mm) enable quick setup for various specimen sizes. Users can easily reconfigure the clamping system, making the equipment suitable for an extensive range of LED driver forms.
Q: How does this equipment benefit laboratory and production line usage?
A: With automation, rapid test speeds (up to 50 cycles/min), overload protection, and robust data management, this equipment streamlines testing, boosts productivity, and ensures reliable, traceable results, which are critical for quality control and compliance.
Q: What safety standards does the equipment comply with?
A: The equipment is certified to CE standards and complies with IEC requirements, ensuring it meets international safety, quality, and operational benchmarks for electrical testing devices.