Laser Diode Driver Module, 1000 mA, 6 V, Dual Channel, LDC-3908/3916

The LDC-3916334 Dual Laser Diode Driver Module offers two independent 1000 mA laser diode drivers.
The module provides two high stability, low noise outputs with multiple hardware current limits and laser protection features such as intermittent contact protection, adjustable compliance voltage limit, slow turn-on, shorting circuits and 4-wire voltage measurement for precise laser diode forward voltage measurement.
This LDC3916334 module is compatible with the
For applications requiring individual modulation, please contact an ILX Sales Engineer.
Setting the Standard in Laser Diode Protection
Laser diodes are extremely sensitive to electro-static discharge, excessive current levels, current spikes, or transients from power surges or other laboratory equipment. One of the most important features we have implemented into each instrument is the ILX Lightwave proven laser diode protection standards. These standards have led to advanced protection features such as intermittent contact protection, adjustable compliance voltage limit, slow-start, shorting circuits, and 4-wire voltage measurement for precise laser diode forward voltage measurement. In addition, the current limit setting is independent of the voltage drop of the device connected to the laser output. Because the current limit circuitry is fully independent of the main current control, the current limit can be adjusted safely, even while the laser output is active. For more information about these protection features, please see our "Protecting Your Laser Diode" application note.
Four-Wire Voltage Sense
These Modular Laser Diode Cards have a 4-wire voltage sense feature. The laser voltage is sensed through a pair of connections that is separate from the laser current drive connections. This allows a more accurate laser voltage reading for the voltage limit feature. All four of these pins must be connected for the module to operate.
Electrically Isolated Photodiode Connections
Many laser diode modules contain an internal photodiode that monitors the back-facet emission of the laser. Usually, this photodiode is internally connected to either the laser anode or cathode. The photodiode and laser connections to these cards are electrically isolated from ground and each other. So, if a 4-pin connection is made (no common connections), no additional jumpers are required.
Grounding Considerations
The laser outputs of these laser diode cards are isolated from chassis ground allowing either output terminal to be grounded at the user's option.
Specifications
- TypeLDC-3908/3916 Driver Card
- Laser Current1 A
- Laser Drive Requirement1 to 10 A
- Laser Compliance Voltage6 V
- Temperature Coefficient50 ppm/ °C
- Laser Current Resolution0.02 mA
- Laser Current Accuracy±0.1% of FS
- Current Output 24 h Stability50 ppm FS
- Current Output 1 h Stability20 ppm FS
- External Modulation High Bandwidth1 MHz
- External Modulation Low Bandwidth30 kHz
- Laser Output Noise/Ripple Low Bandwidth8 µA
- Laser Output Noise/Ripple High Bandwidth<12 µA
- Forward Voltage Accuracy±7mV
- Forward Voltage Resolution10 mV
- Photodiode Current Accuracy±2 µA
- Photodiode Current Range0-5000 µA
- Photodiode Current Resolution0.1 µA
- Photodiode Reverse Bias0-5 V
Resources & Downloads
Application Notes
Protecting Your Laser Diode(2.3 MB, PDF) Laser Diode Characteristics Overview(392.5 kB, PDF)
Manuals
LDC-3916 Controller User's Manual(2 MB, PDF) LDC-3908 Controller User's Manual(2.1 MB, PDF) LDC-391633X Source Modules User's Manual(1.7 MB, PDF)
Literature
LDC-3908 8-Channel Laser Diode Controller Brochure(653 kB, PDF) LDC-3916 16-Channel Laser Diode Controller Brochure(655.6 kB, PDF) Pinout Diagrams for CC-305S and CC-505S Cables(88.5 kB, PDF)
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