Keysight (Agilent) 37718B REPAIR and Keysight (Agilent) 37718B CALIBRATION

 
Custom-Cal has a high success rate in the repair of the Keysight (Agilent) 37718B. A calibration by Custom-Cal is performed by engineers with extensive OEM experience. We have the expertise and the necessary standards to perform the Keysight (Agilent) 37718B Calibration, onsite calibration may be available. We specialize in quick turnaround times and we can handle expedited deliveries upon request.

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   Keysight (Agilent) 37718B   Description / Specification:   Spec Sheet 
Keysight (Agilent) 37718B OmniBER 718 Communications Performance Analyzer

The Agilent OmniBER 718 communications performance analyzer offers a single box field portable multi-rate SDH/SONET tester. The 37718B has multi-rate BER and jitter testing (opt 200) from 64 kb/s to 622 Mb/s (STM-4/OC-12). Concatenated payloads at all synchronous rates up to 622 Mb/s. Full PDH/T-carrier testing. Direct measurement of protection switching time. Powerful thru-mode testing for SDH/SONET ring turn-up. Comprehensive SDH/SONET overhead testing. Packet over SONET/SDH (POS) and ATM payloads up to 622 Mb/s. Fast access to key measurement tasks via Smart Test. Optical power and line frequency measurements. J0 section trace for DWDM testing. J1 and J2 path trace for network path testing. Optional integrated graphical printer. Line frequency offset. Transmit and Receive can be independently configured. Instrument Options: (001) SDH (ITU-T) Test. (002) Dual standard SONET/SDH (ANSI/ITU-T). (010) Structured PDH 2/8/34/140Mb/s. (011) DSN/PDH Rates DS1/DS3/E1/E3. (012) PDH/T-carrier DS1, DS3, 2 Mb/s, 8 Mb/s, 34 Mb/s & 140 Mb/s. (014) 2 Mb/s into DS3 mapping (also requires option 012). (104) Optical interface 1310 nm only. (105) Optical interface 1550 nm only. (106) Optical interface Dual wavelength 1310 nm/1550 nm. (200) Adds jitter Tx/Rx capability to all selected rates. (204) 2.5G Multi-rate 1310nm BER + Jitter. (205) 2.5G Multi-rate 1550nm BER + Jitter. (206) 2.5G Multi-rate 1310/1550nm BER + Jitter. (210) Adds optimized jitter receiver intrinsics(requires opt 200). (300) ATM payloads(up to highest rate)(requires option 350/355). (310) POS payloads(up to highest rate)(requires option 350/355). (350) Advanced payload engine, Provides additional necessary hardware for ATM and POS. (355) Advanced payload engine, providing service disruption history and timestamping and AIS measurements on optical signals to highest rate (must be included for ATM (opt 300) and/or POS (opt 310)). (600) Remote Omnibook controller. (601) RS-232-C, GPIB and LAN remote control interfaces. (602) 80-column in-lid graphics printer.



 

Standard Calibration $785.00 *
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*This is a Web introductory price for one calibration of the Keysight (Agilent) 37718B. 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 Communication Terms and Definitions. For a complete list go to our  Terms and Definitions Page.

Accuracy
Accuracy is the degree of closeness of measurements of a quantity to that quantity's actual (true) value.

Jitter
Jitter in technical terms is the deviation in or displacement of some aspect of the pulses in a high-frequency digital signal. Jitter is the time variation of a periodic signal in electronics and telecommunications, often in relation to a reference clock source. Jitter may be observed in characteristics such as the frequency of successive pulses, the signal amplitude, or phase of periodic signals. Jitter is a significant, and usually undesired, factor in the design of almost all communications links (e.g., USB, PCI-e, SATA, OC-48). In clock recovery applications it is called timing jitter.

Receiver Sensitivity
Receiver Sensitivity is the optical power required by a receiver for low error signal transmission. In the case of digital signal transmission, the mean optical power is usually quoted in Watts or dBm (decibels referred to 1 milliwatt).


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