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HFBR-5903E Datasheet(PDF) 6 Page - Agilent(Hewlett-Packard) |
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HFBR-5903E Datasheet(HTML) 6 Page - Agilent(Hewlett-Packard) |
6 / 16 page 6 Transceiver Jitter Performance The Agilent 1300 nm transceivers are designed to operate per the system jitter allocations stated in Table E1 of Annex E of the FDDI PMD and LCF-PMD standards. The Agilent 1300 nm transmitters will tolerate the worst case input electrical jitter allowed in these tables without violating the worst case output jitter requirements of Sections 8.1 Active Output Interface of the FDDI PMD and LCF-PMD standards. The Agilent 1300 nm receivers will tolerate the worst case input optical jitter allowed in Sections 8.2 Active Input Interface of the FDDI PMD and LCF-PMD standards without violating the worst case output electrical jitter allowed in Table E1 of Annex E. The jitter specifications stated in the following 1300 nm transceiver specification tables are derived from the values in Table E1 of Annex E. They represent the worst case jitter contribution that the trans- ceivers are allowed to make to the overall system jitter without violating the Annex E allocation example. In practice the typical contribution of the Agilent trans- ceivers is well below these maximum allowed amounts. Recommended Handling Precautions Agilent recommends that normal static precautions be taken in the handling and assembly of these transceivers to prevent damage which may be induced by electrostatic discharge (ESD). The HFBR-5900 series of transceivers meet MIL-STD-883C Method 3015.4 Class 2 products. Figure 6. Bit Error Rate vs. Relative Receiver Input Optical Power. Figure 7. Recommended Decoupling and Termination Circuits -6 4 1 x 10 -2 RELATIVE INPUT OPTICAL POWER - dB -4 2 -2 0 1 x 10 -4 1 x 10 -6 1 x 10 -8 1 x 10 -10 1 x 10 -11 CONDITIONS: 1. 125 MBd 2. PRBS 2 7-1 3. CENTER OF SYMBOL SAMPLING 4. T A = +25 ˚C 5. V CC = 3.3 V dc 6. INPUT OPTICAL RISE/FALL TIMES = 1.0/ 2.1 ns. 1 x 10 -12 1 x 10 -9 1 x 10 -7 1 x 10 -5 1 x 10 -3 CENTER OF SYMBOL HFBR-5903 SERIES |
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