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V62/12615-01XE-R Fiches technique(PDF) 49 Page - Texas Instruments |
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V62/12615-01XE-R Fiches technique(HTML) 49 Page - Texas Instruments |
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49 / 98 page ![]() 49 DP83848-EP www.ti.com SLLSEC6E – SEPTEMBER 2012 – REVISED JUNE 2019 Submit Documentation Feedback Product Folder Links: DP83848-EP Detailed Description Copyright © 2012–2019, Texas Instruments Incorporated The DP83848-EP is completely ANSI TP-PMD compliant and includes Base Line Wander (BLW) compensation. The BLW compensation block can successfully recover the TP-PMD defined “killer” pattern. BLW can generally be defined as the change in the average DC content, relatively short period over time, of an AC coupled digital transmission over a given transmission medium. (that is, copper wire). BLW results from the interaction between the low frequency components of a transmitted bit stream and the frequency response of the AC coupling component(s) within the transmission system. If the low frequency content of the digital bit stream goes below the low frequency pole of the AC coupling transformers then the droop characteristics of the transformers will dominate resulting in potentially serious BLW. The digital oscilloscope plot provided in Figure 5-9 illustrates the severity of the BLW event that can theoretically be generated during 100BASE-TX packet transmission. This event consists of approximately 800 mV of DC offset for a period of 120 ms. Left uncompensated, events such as this can cause packet loss. 5.5.1.2.3 Signal Detect The signal detect function of the DP83848-EP is incorporated to meet the specifications mandated by the ANSI FDDI TP-PMD Standard as well as the IEEE 802.3 100BASE-TX Standard for both voltage thresholds and timing parameters. Note that the reception of normal 10BASE-T link pulses and fast link pulses per IEEE 802.3u Auto- Negotiation by the 100BASE-TX receiver do not cause the DP83848-EP to assert signal detect. 5.5.1.2.4 MLT-3 to NRZI Decoder The DP83848-EP decodes the MLT-3 information from the Digital Adaptive Equalizer block to binary NRZI data. 5.5.1.2.5 NRZI to NRZ In a typical application, the NRZI to NRZ decoder is required in order to present NRZ formatted data to the descrambler. 5.5.1.2.6 Serial to Parallel The 100BASE-TX receiver includes a Serial to Parallel converter which supplies 5-bit wide data symbols to the PCS Rx state machine. 5.5.1.2.7 Descrambler A serial descrambler is used to de-scramble the received NRZ data. The descrambler has to generate an identical data scrambling sequence (N) in order to recover the original unscrambled data (UD) from the scrambled data (SD) as represented in the equations: (1) Synchronization of the descrambler to the original scrambling sequence (N) is achieved based on the knowledge that the incoming scrambled data stream consists of scrambled IDLE data. After the descrambler has recognized 12 consecutive IDLE code-groups, where an unscrambled IDLE code-group in 5B NRZ is equal to five consecutive ones (11111), it will synchronize to the receive data stream and generate unscrambled data in the form of unaligned 5B code-groups. |
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