1.5 kW Laser Diode Driver LDD-1500 CW and Pulsed
For pricing, technical or any other questions please contact the supplier
- No registration required
- No markups, no fees
- Direct contact with supplier
-
Ships from:
Poland
-
Sold by:
-
On FindLight:
since 2020
Description
LDD-series Laser Diode Driver
The LDD-series laser diode driver is a robust and versatile solution designed for driving single laser diodes as well as laser diode arrays. Whether you're working with pulses or require continuous form operation, this driver series is engineered to meet your specific needs. The LDD-1500, a high-power model within this series, stands out with its capacity to deliver up to 1500W to laser diodes, laser diode bars and stacks, by pulses or in continuous form, making it suitable for a wide range of applications, including medical uses.
The LDD-series offers a high degree of customization, allowing users to select input voltage, maximum output power, current, and voltage to suit their specific requirements.
Several variants of LDD-1500 are offered with different maximum output power (Pmax could be 600, 1000 or 1500 W), maximum output current (Imax range is 10 … 100 A), maximum output voltage (Vmax ≤ Pmax/ Imax), selected at the moment of order.
This adaptability ensures that the laser diode driver can be tailored to fit various operational needs, providing flexibility and precision in performance. The drivers are designed to handle both low and high power requirements efficiently, making them a reliable choice for diverse applications. In terms of construction, the LDD-series is built with quality and safety in mind. It features a high efficiency of over 80%, ensuring optimal performance while minimizing energy waste.
1500W laser diode driver was designed to comply with IEC 60601-1 (safety) and IEC 60601-1-2 (EMC). Therefore, modules may be used in different kinds of medical devices without any additional filtration and safety measures, at the same time for the proven compliance to standards for a certain modification the certification procedure is need to be passed, which is available on demand.
The high power laser diode driver LDD-1500 is interesting for industrial laser systems and scientific research, where high-power pulses are essential for tasks such as material processing.
The less power Laser Diode Driver LDD-250 (Pmax could be 150, 250 or 400 W)
We have also pulsed Laser Diode Drivers for medicine, i.e. for hair removal lasers, up to 1.6 kW
300W PDD-300
1600W PDD-1600
1.5 kW Laser Diode Driver LDD-1500 CW and Pulsed
Specifications |
|
---|---|
Input Voltage: | 100-240 VAC or 200-240 VAC |
Max. Input Current: | 12 A max |
Max. Output Power: | 150-1500 W |
Max. Output Current: | 5A-100 A |
Max. Output Voltage: | 2V-150 V |
Efficiency: | > 80% |
Rise/Fall Time: | < 1 ms |
Current Regulation Accuracy: | < 1% of IMAX |
Current Overshoot: | < 1% of IMAX |
PFC Value: | > 0.98 (active) |
Leakage Current: | < 150 μA |
Input/Output Isolation Voltage: | 4000 VAC |
Operation Temperature: | 0 … +40 °C |
Storage Temperature: | -20 … +60 °C |
Humidity: | 90%, non-condensing |
Features
- High Power Output: The LDD-series laser diode driver offers a selectable output power range up to 1500W, accommodating various laser diode configurations.
- Adjustable Output Current: Provides a wide range of output currents from 10A to 100A, allowing precise control over laser diode operations.
- Flexible Output Voltage: Output voltage is selectable from 2V to 150V at the moment of order, ensuring compatibility with a variety of laser diodes.
- Fast Response Time: Features a rise/fall time of less than 1 ms (10% to 90% full current), with an option for < 500 μs on request.
- Precision Control: Offers current regulation accuracy and current value error of less than 1% of IMAX, minimizing fluctuations in performance.
- Comprehensive Safety Features: Includes a PFC value greater than 0.98, leakage current under 150 μA, and 4000 VAC input/output isolation voltage for enhanced safety.
Applications
- Industrial Applications: Suitable for industrial laser systems, the driver can handle high power requirements and offers flexibility with its adjustable output power, current, and voltage.
- Research and Development: Ideal for laboratories and research institutions, the driver supports experimentation with various laser configurations, including single diodes and diode arrays.