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srs LDC500 Series-LD driver & TEC controller

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產(chǎn)品型號(hào)LDC500

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更新時(shí)間:2022-05-24 16:50:03瀏覽次數(shù):5次

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srs LDC500 Series-LD driver & TEC controller
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srs LDC500 Series-LD driver & TEC controller

 

主要指標(biāo)與說明Introducing the LDC500 Series Laser Diode Controllers-highly stable, low-noise current sources, with integrated temperature controllers-all at very affordable prices.The LDC500 series are the ideal instruments for controlling the current and temperature of your laser diodes. They have the performance and features you expect from instruments costing twice as much.

 

Laser Diode Driver100 mA, 500 mA or 2 A sourceUltra-low drift (<10 ppm/°C)<0.3 μA current noise (LDC500)GPIB, RS-232 and EthernetTEC Controller36 W output powerUltra-high stability (0.0005 °C/°C)Auto-tuning of loop parametersCC & CT mode dynamic switchingLDC500 Series Laser Diode ControllersIntroducing the LDC500 Series Laser Diode Controllers-highly stable, low-noise current sources, with integrated temperature controllers-all at very affordable prices.The LDC500 series are the ideal instruments for controlling the current and temperature of your laser diodes. They have the performance and features you expect from instruments costing twice as much. The LDC501 has up to 500 mA of output current with less than 1.1 μA of rms noise, while the LDC500 has up to 100 mA of current and less than 0.3 μA of noise. The LDC502 provides up to 2 A of current.With a low-noise current source, a 36 W high-precision temperature controller, and standard computer interfaces including Ethernet, the LDC500 series is the right choice for your laser diode testing and control applications.Easy-To-Use InterfaceThe LDC500 series have an intuitive user interface, and many first time users will be able to operate the instrument without having to crack open the manual (although we do recommend reading the manual). Unlike competitive models, the LDC500 series controllers have a dedicated front-panel display for parameter entry. You don’t have to sacrifice monitoring temperature or current to simply change an instrument setting-you have a separate two-line, blue alpha-numeric display for that. In addition, bright 5-digit green LED displays constantly monitor current and temperature, and are large enough to easily read from anywhere in the lab.Laser Diode ProtectionMultiple laser diode protection features, including slow start turn-on, adjustable current limits, and adjustable compliance voltage, keep your laser diodes safe when unexpected events occur. Fast clamping and shut down provide extra protection against intermittent contact with the laser. Combined, these features provide trouble-free, safe control of your laser diode.Linear Power SuppliesIndependent linear power supplies are used for the laser diode controller and the temperature controller. The supplies are designed with a magnetically shielded toroidal transformer, and provide ultra-clean, stable isolated power.Computer ControlRemote operation of the LDC500 series is supported with GPIB, RS-232 and Ethernet interfaces. All instrument functions can be controlled and read over any of the interfaces. Up to nine complete instrument configurations can be saved in non-volatile RAM and recalled at any time. A TTL trigger output is also available to synchronize other test equipment.

 

Stable Laser Diode ControllerTo ensure a stable optical output from your laser diode, the LDC500 series LD controllers were designed to deliver noise-free, precision operation. They are accurate to ±0.01 % FS, have automated testing setups, noise is as low as 0.3 μA rms, and they meet a drift specification of 10 ppm/°C.The controller have two modes of operation for the laser diode: constant current and constant power. Constant current mode (CC) programs the source to a precise DC amplitude. Alternatively, the constant optical power mode (CP) servos the current source to maintain a constant signal on a monitor photodiode. Both control modes allow you to add an external modulation signal, with adjustable bandwidth up to 1 MHz (in CC mode) or 10 kHz (in CP mode).Another convenient feature that the LDC500 series offers is a fully programmable photodiode bias voltage. You can set the bias between 0 and 5 V from the front panel, or remoy using one of the computer interfaces.Bumpless TransferA unique feature of the LDC500 series is dynamic “Bumpless Transfer” between CC and CP modes. This feature means you don’t have to shut down your laser to switch modes-simply press the Current/Power button.36 W Temperature ControllerThe LDC500 series integrated 36 W temperature controller lets you adjust temperature with 0.001 °C resolution, and measure temperature with 0.01 °C accuracy (with a calibrated sensor). It maintains a typical stability of 0.0005 °C/°C with respect to room temperature, and has a very wide temperature control range.The TEC controller also has two modes of operation: constant temperature mode (CT) controls the TEC current to maintain a fixed temperature (or raw sensor value), while constant current mode (CC) operates the TEC at a fixed current. Thermistor, RTD and IC sensors are all supported.The LDC500 series offers an auto-tuning feature which automatically optimizes the PID loop parameters of the controller. Of course, full manual control is provided too. Dynamic transfer between CT and CC modes for the TEC is also easy-just press the Temp/Current button.Online Thermistor CalculatorAbout Thermal StabilityTemperature Performance of the LDC501Temperature fluctuations in a typical laboratory environment can often exceed several degrees Celsius over the course of a day. Small temperature changes can mean significant current changes in your laser diode if your controller is not up to the task.The LDC500, LDC501 and LDC502 have a temperature coefficient of 10 ppm/°C, which is a factor of five better than competing models, making it the ideal controller for precision laser diode experiments.The graphs below demonstrate the temperature performance of the LDC500 series. Over a 24 hour period, the ambient temperature change in the laboratory exceeds two degrees Celsius. Note that the output current deviation of the LDC after warm-up is stable to better than ±10 ppm. Laser Diode Current SourceCurrent SourceRange 0 to 100 mA, 0 to 50 mA (LDC500)0 to 500 mA, 0 to 250 mA (LDC501)0 to 2 A, 0 to 1 A (LDC502)Setpoint resolution 1 μA (LDC500), 10 μA (LDC501), 0.1 mA (LDC502)Accuracy ±0.02 % of full scaleOutput impedance >1 MΩ (DC)Stability Thermal <10 ppm/°C Short-term (1 hr.) <5 ppm full scale Long-term (24 hr.) <15 ppm full scaleNoise (10 Hz to 1 MHz) LDC5000.9 μA rms (high range / high bandwidth)0.6 μA rms (high range / low bandwidth)0.5 μA rms (low range / high bandwidth)LDC5014.5 μA rms (high range / high bandwidth)1.5 μA rms (high range / low bandwidth)2.3 μA rms (low range / high bandwidth)1 μA rms (low range / low bandwidth)LDC50225 μA rms (high range / high bandwidth)5.0 μA rms (high range / low bandwidth)10 μA rms (low range / high bandwidth)3.5 μA rms (low range / low bandwidth)Compliance voltage Range 0 to 10 V, programmable Resolution 10 mV Accuracy 0.2 VCurrent limit Range 0 to 100 mA, 0 to 50 mA (LDC500)0 to 500 mA, 0 to 250 mA (LDC501)0 to 2 A, 0 to 1 A (LDC502) Resolution 10 μA (LDC500 & LDC501), 0.1 mA (LDC502) Accuracy ±0.1 mA (LDC500 & LDC501), ±0.4 mA (LDC502)

 

Analog ModulationInput range -10 V to +10 VInput impedance 2 kΩ, typ.Gain CC mode LDC50010 mA/V (high range), 5 mA/V (low range)LDC50150 mA/V (high range), 25 mA/V (low range)LDC502200 mA/V (high range), 100 mA/V (low range) CP mode LDC500 & LDC501500 μA/V (PD current)LDC5021000 μA/V (PD current)Bandwidth (-3 dB) CC mode DC to 1.0 MHz (high bandwidth, LDC500 & LDC501)DC to 0.8 MHz (high bandwidth, LDC502)DC to 10 kHz (low bandwidth, LDC500/ LDC501/ LDC502) CP mode DC to 5 kHz (high bandwidth)DC to 100 Hz (low bandwidth)Monitor PhotodiodeBias voltage 0 to 5 V, programmablePD current range 0 to 5000 μA (LDC500 & LDC501), 0 to 10,000 μA (LDC502)Setpoint resolution 0.1 μA (CP mode)Setpoint accuracy ±2 μA (LDC500/ LDC501)±4 μA (LDC502)Measurement & DisplayOutput current Resolution 1μA (LDC500), 10μA (LDC501), 0.1 mA (LDC502) Accuracy ±0.02 % FSPhotodiode current Resolution 0.1 μA Accuracy ±0.02 % FSLaser diode forward voltage Resolution 1 mV Accuracy ±0.02 % FS ( 4 wire)Temperature Controller Temperature Control Control range IC sensor -55 °C to +150 °C Resistor sensor -150°C to +250 °C (10 Ω to 500 kΩ)Setpoint resolution Temperature 0.001 °C Resistance 0.1 ΩSetpoint accuracy Temperature ±0.01 °C (sensor dependent) Resistance 0.1 % of sensor resistanceStability (typ.) (using a 10 kΩ NTC thermistor) Thermal (vs. ambient) 0.0005 °C/°C Short term (1hr.) ±0.001 °C Long term (24 hr.) ±0.002°CControl algorithm PIDAuto-tuning Step responseTEC OutputSource type Linear, bipolar current sourceCurre

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