VEEX INC FX150 CALIBRATION and VEEX INC FX150 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 VEEX INC FX150 Calibration, onsite calibration may be available. We specialize in quick turnaround times and we can handle expedited deliveries upon request.

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   VEEX INC FX150   Description / Specification:    
VEEX INC FX150 Mini OTDR

The VeEX FX150 mini OTDR is designed for the installation, maintenance and troubleshooting of FTTx, Mobile FrontHaul/BackHaul and Metro fiber networks. The compact, lightweight platform incorporates power meter, light source, fiber inspection probe and VFL test options. It has a high resolution, 5” TFT color touch-screen suitable for both indoor and outdoor use. Internal data storage with expandable SD card and a micro-USB OTG interface for flash drives, fiber inspection probe connection and test data transfer.

Specifications.
Wavelength (± 20 nm): Multimode - 850/1300, Singlemode - 1310/1490/1550/1625/1650.
Dynamic Range: wavelength dependent.
Pulse width (ns): 3, 10, 25, 30, 100, 300 500, 1000, 3000, 10000, 20000 (where applicable).
Event dead zone: <1m.
Attenuation dead zone: <4m.
Distance range: 1 to 400 km.
Distance Measurement Accuracy: ± (0.5 + resolution + 5 x 10-5 x L) m.
Sampling resolution: 0.04 to 16 m.
Sampling points: Up to 256,000.
Linearity: ±0.05 dB.
Measurement time (seconds): Live or predefined values.
Fiber type: Single mode, 9/125 irn and/or Multimode 50/125.



 



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

Bit Error Ratio (BER)
Bit Error Ratio (BER) is the ratio of errors caused by the number of bits in a data stream that have been altered due to noise, interference, distoriton or bit synchronization errors.

Flatness
Variation of insertion loss on the passband of an optical device.

Polarization Dependent Loss (PDL)
Polarization Dependent Loss is the difference between the maximum and minimum values of loss due to the variation of the polarization states of light propagating through a device. PDL is expressed in decibels. Calculated by; PDL = 10 log10 (Ep/Es), where EP and ES are the measured diffraction efficiencies for P- and S-plane polarized incident light, respectively.

Return Loss (RL)
Return Loss (RL) is the ratio of the incident power to the reflected power expressed in dB. RL = 10log (Pin/Pback)

Wavelength Resolution
Wavelength Resolution is the smallest possible displayed wavelength increment/decrement.


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