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LAN89730 датащи(PDF) 78 Page - Microchip Technology |
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LAN89730 датащи(HTML) 78 Page - Microchip Technology |
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78 / 218 page ![]() LAN89730 DS60001348A-page 78 2013-2015 Microchip Technology Inc. 4.6.1.2 Scrambling Repeated data patterns (especially the IDLE code-group) can have power spectral densities with large narrow-band peaks. Scrambling the data helps eliminate these peaks and spread the signal power more uniformly over the entire channel bandwidth. This uniform spectral density is required by FCC regulations to prevent excessive EMI from being radiated by the physical wiring. The scrambler also performs the Parallel In Serial Out conversion (PISO) of the data. 4.6.1.3 NRZI and MLT-3 Encoding The scrambler block passes the 5-bit wide parallel data to the NRZI converter where it becomes a serial 125 MHz NRZI data stream. The NRZI is encoded to MLT-3. MLT-3 is a tri-level code where a change in the logic level represents a code bit “1” and the logic output remaining at the same level represents a code bit “0”. 4.6.1.4 100M Transmit Driver The MLT-3 data is then passed to the analog transmitter, which launches the differential MLT-3 signal, on outputs TXP and TXN, to the twisted pair media via a 1:1 ratio isolation transformer. The 10Base-T and 100Base-TX signals pass through the same transformer so that common magnetics can be used for both. The transmitter drives into the 100 impedance of the CAT-5 cable. Cable termination and impedance matching require external components. 4.6.1.5 100M Phase Lock Loop (PLL) The 100M PLL locks onto reference clock and generates the 125 MHz clock used to drive the 125 MHz logic and the 100Base-Tx Transmitter. 4.6.2 100BASE-TX RECEIVE The receive data path is shown in Figure 4-18. Detailed descriptions are given in the following subsections. 4.6.2.1 100M Receive Input The MLT-3 from the cable is fed into the PHY (on inputs RXP and RXN) via a 1:1 ratio transformer. The ADC samples the incoming differential signal at a rate of 125M samples per second. Using a 64-level quantizer, it generates 6 digital bits to represent each sample. The DSP adjusts the gain of the ADC according to the observed signal levels such that the full dynamic range of the ADC can be used. FIGURE 4-18: RECEIVE DATA PATH MAC A/D Converter MLT-3 Converter NRZI Converter 4B/5B Decoder Magnetics CAT-5 RJ45 100M PLL Internal MII 25 MHz by 4 bits RX_CLK 25 MHz by 5 bits NRZI MLT-3 MLT-3 MLT-3 6 bit Data Descrambler and SIPO 125 Mbps Serial DSP: Timing Recovery, Equalizer and BLW Correction MLT-3 MII 25 MHz by 4 bits |
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