ILX LIGHTWAVE LCM-39437 CALIBRATION and ILX LIGHTWAVE LCM-39437 REPAIR

 
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 LCM-39437 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 LCM-39437 (39437)   Description / Specification:    
ILX LIGHTWAVE LCM-39437 1000 mA Laser Diode Driver, 12 W TEC Combination Module

The ILX Lightwave LCM-39437 Current Source/TE Controller Module is a precision laser controller (current source and temperature controller) module for use in the LDC- 3900 Modular Laser Diode Controller. The integrated laser diode current source provides up to 1A of high stability low noise current output with integrated laser diode protection circuits. Standard current source features include constant current, constant power operation modes, and analog modulation. The LCM-39437 also includes a 12W thermoelectric temperature controller that is compatible with thermistor, IC and RTD temperature sensors providing convenience and flexibility over a broad range of temperature control applications. Specifications. Output Current Range: 0 to 1000 mA. Laser Output Compliance Voltage: 0 to 6.0 V. Current Output Short-Term Stability (1 h): 25 ppm. Current Output Long-Term Stability (24 h): 50 ppm FS. TE Current: -2.00 to +2.00 A. TEC Short-Term Stability (1 h): <±0.05 °C. TEC Output Long-Term Stability (24 h): <±0.1 °C. TEC Ripple/Noise (rms): <1 mA. Temperature Range: –99.9 to 99.9°C. Output Power: 12. Photodiode Reverse Bias: 0 to 5 V. Photodiode Current Resolution: 1 µA. Laser Output Noise/Ripple (rms) Hi BW: <4 µA. Temperature Coefficient 100: ppm/ °C.



 

Standard Calibration $240.00 *
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*This is a Web introductory price for one calibration of the ILX LIGHTWAVE LCM-39437. 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.

Coherence Length
Average distance over which superimposed waves lose their phase relationships

Linewidth
Linewidth is the width of a spectral line in terms of wavelength, wave number and frequency.

Power Flatness Versus Wavelength
When changing the wavelength at constant power setting and recording the differences between actual and displayed power levels, the power flatness is ± half the span (in dB) between the maximum and the minimum of the measured power levels.

Spectral Width
Spectral Width is the wavelength interval over which the magnitude of all spectral components is equal to or greater than a specified fraction of the magnitude of the component having the maximum value. In optical communications applications, the usual method of specifying spectral width is the full width at half maximum. This is the same convention used in bandwidth, defined as the frequency range where power drops by less than half (at most -3 dB).

Telecom Bands
Optical fiber communications typically operate in a wavelength region corresponding to one of the following Bands. O Band (original): 1260–1360 nm. E Band (extended): 1360–1460 nm. S Band (short wavelengths): 1460–1530 nm. C Band (conventional): 1530–1565 nm. L Band (long wavelengths): 1565–1625 nm. U Band (ultralong wavelengths): 1625–1675 nm


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