NEW ESOR ENGINEERING 2904 SALES and ESOR ENGINEERING 2904 CALIBRATION

 
Custom-Cal has for sale a new ESOR ENGINEERING 2904. Also, short calibration turn times minimize downtime and reasonable rates decrease your long-term cost of ownership and minimizes downtime of the ESOR ENGINEERING 2904. We specialize in quick turnaround times and we can handle expedited deliveries upon request.

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List Price for a new ESOR ENGINEERING 2904, $22,950.00   ESOR ENGINEERING 2904   Description / Specification:    
ESOR ENGINEERING 2904 4 x 29.5 Gb/s Pulse Pattern Generator and Error Detector

The ESOR 2904 is a high performance, flexible and cost effective four channel Pulse Pattern Generator (PPG) and Error Detector (ED) that can operate from 24.6 to 29.5 Gb/s along with half rates. It is capable of generating a Pseudo Random Bit Sequence (PRBS) or a user defined 40 bit fixed pattern to test signal integrity of digital communication system links. PRBS patterns of 2^7, 9, 15, 23, 31 are supported. It is a standalone Bit Error Rate (BER) test solution that incorporates an internal full rate clock synthesizer therefore avoiding the expense of an external precision clock source.
Optional features: Tilt bar, custom power up configuration for standalone operation, parallel I/O control, dipswitch control, LED status diagnostics, individual PPG or ED configurations, face plate for 19 inch rack attachment, loopback cables or adding attenuators to the ED to adjust sensitivity.

Specifications.

TX Electrical
CML Output (Single Ended), AC Coupled: 100 to 550 mVpp.
CML Output (Differential), AC Coupled: 200 to 1100 mVpp.
CML Output (Differential), Step Size: 5 mVpp.
CML Output (Differential), Squelch: 0 to 20 mVpp.
CML Output (Rise/Fall Time, 20-80%): 12 ps.
Output Impedance (differential): 100 Ω.
Termination Mismatch: 5%.
AC common mode voltage: 15 mVRMS.
Differential Return Loss: -10 dB.
Jitter (RMS): 1 ps.
Jitter (PK-PK): 5 ps.

RX Electrical
Baud Rate Tolerance: -100 to 100 PPM.
CML Input Voltage (Single Ended) AC Coupled: 200 to 600 mVpp.
CML Input Voltage (Differential) AC Coupled: 100 to 1200 mVpp.
Input Impedance (Differential): 100 Ω.
Termination Mismatch: 10%.
Differential Return Loss: -10 dB.
CDR Acquisition Lock Time: 500 ms.

Clock - Input
Frequency (Square wave): 156,248,438 to 156,251,562 Hz.
Single Ended Voltage Swing: 0.3 to 1.8 V.
Input Impedance, AC Coupled: 49.5 to 50.5 Ω.
Rise/Fall Time (20%-80%): 1 ns.
Duty Cycle (<1nS Tr/Tf): 60%.
Random Jitter (RMS), 12 kHz - 20 MHz: 1 ps.

Clock - Output
Clock Frequency: 0.096 to 3.6875 GHz.
Programmable Divider of Line Rate (Factors of 2): 8 to 256 /N.
Single Ended Voltage Swing, AC Coupled: 200 to 400 mVp.
Termination Mismatch at 1 MHz: 0 to 5%.
Rise/Fall Time (20%-80%): 12 ps.
Output Return Loss: -10 dB.
Jitter (RMS): 750 fs.
Jitter (PK-PK): 3.5 ps.



 

Standard Calibration $890.00 *
*This is a Web introductory price for one calibration of the ESOR ENGINEERING 2904. 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.

Decibel (dB)
A unit of measurement of optical power which indicates relative power. A -10 dB means a reduction in power by 10 times, -20 dB means another 10 times or 100 times overall, -30 means another 10 times or 1000 times overall and so on.

PDH
Plesiochronous Digital Hierarchy (PDH) is a transmission system for voice communication using plesiochronous synchronisation. The transmitter adds dummy information bits to allow multiple channels to be bit interleaved. The receiver discards these bits once the signals have been demultiplexed. PDH combines multiple 2 Mb/s (E1) channels in Europe and 1.544 Mb/s (DS1) channels in the US and Japan.

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).


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