ILX LIGHTWAVE LDT-5910B REPAIR and ILX LIGHTWAVE LDT-5910B CALIBRATION

The ILX LIGHTWAVE LDT-5910B is currently in stock and available for purchase on our  Sales Page
It is also available for immediate rental.
Custom-Cal has a high success rate in the repair of the ILX LIGHTWAVE LDT-5910B. A calibration by Custom-Cal is performed by engineers with extensive OEM experience. We have the expertise and the necessary standards to perform the ILX LIGHTWAVE LDT-5910B Calibration, onsite calibration may be available. We specialize in quick turnaround times and we can handle expedited deliveries upon request.

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   ILX LIGHTWAVE LDT-5910B   Description / Specification:    
ILX LIGHTWAVE LDT-5910B 4 A / 4 V Thermoelectric Temperature Controller

The ILX LDT-5910B delivers extended temperature control from -99°C to + 150°C with a choice of temperature sensors and TE modules. With a low-noise, 16W, bipolar output, the instrument has the power to drive most loads, yet is quiet enough to handle even frequency-stabilized laser applications. The unique, hybrid proportional/smart integrator control loop delivers fast settling times while maintaining high stability. In addition, the advanced IEEE-488.2 interface option ensures trouble-free remote programming and readout. The instrument also incorporates an automatic shutdown of the unit if a temperature sensor or the TE module should open. Instrument configuration is simplified by using the SELECT and SET controls in conjunction with the main control knob. These controls allow the setting of the sensor calibration constants, the output current limit, high and low temperature limits and the control loop gain. Specifications. Output Type: Bipolar, constant current source. Maximum Output Current: 4 A. Minimum Output Power: 16 W. Compliance Voltage: 4 Volts at 4 A. Current Limit Control Range: 0 to 4000 mA, ±20 mA. Current Limit Accuracy: ±50 mA. Ripple/Noise: <500 uA. Temperature Range: -99°C to + 150°C, -20°C to +50°C w/ 10 kohm thermistor. Short-Term Stability (1 hr.): ±0.005°C or better. Long-Term Stability (24 hr.): ±0.01°C or better. Sensor Types: 2-wire thermistor, AD590 and LM335 IC, and RTD temperature sensor. Thermistor Sensing Current: 10 uA or 100 uA, user selectable. Thermistor Resistance Range: 25 to 450,000 ohm. Display 4-digit, green LED.



 

Standard Calibration $405.00 *
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*This is a Web introductory price for one calibration of the ILX LIGHTWAVE LDT-5910B. Price does not in most cases include measurement performance data. Pricing does include NIST traceable calibration and issue of a calibration certificate and calibration label. Pricing may vary slightly due to volume and location of laboratory supporting calibration. Volume pricing may apply. On-site fees may apply depending on logistics, location and volume of work to be completed during the visit.


Related Optical Terms and Definitions. For a complete list go to our  Terms and Definitions Page.

dBm
Optical power referenced to 1 millimatt

Multimode Fiber
Multimode Fiber has a large core (almost always 62.5 microns - a micron is one one millionth of a meter - but sometimes 50 microns) and is used with LED sources at wavelengths of 850 and 1300 nm for short distance, lower speed networks like LANs. Both multimode and singlemode fiber have an outside diameter of 125 microns - about 5 thousandths of an inch - just slightly larger than a human hair.

Power Repeatability
Power Repeatability is the random uncertainty in reproducing the power level after changing and re-setting the power level. The power repeatability is ± half the span (in dB) between the highest and lowest actual power. Note: - The long-term power repeatability can be obtained by taken the power repeatability and power stability into account.

Refractive Index
The refractive index or index of refraction of a substance is a measure of the speed of light in that substance. It is expressed as a ratio of the speed of light in vacuum relative to that in the considered medium. The velocity at which light travels in vacuum is a physical constant, and the fastest speed at which energy or information can be transferred. However, light travels slower through any given material, or medium, that is not vacuum.

Total insertion loss
A measure of the loss of light within an optical component


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