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HC5513 Datasheet(PDF) 11 Page - Renesas Technology Corp |
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HC5513 Datasheet(HTML) 11 Page - Renesas Technology Corp |
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11 / 20 page ![]() HC5513 FN3963 Rev.12.00 Page 11 of 20 August 2003 Transhybrid Circuit The purpose of the transhybrid circuit is to remove the receive signal (VRX) from the transmit signal (VTX), thereby preventing an echo on the transmit side. This is accomplished by using an external op amp (usually part of the CODEC) and by the inversion of the signal from the 4-wire receive port (RSN) to the 4-wire transmit port (VTX). Figure 17 shows the transhybrid circuit. The input signal will be subtracted from the output signal if I1 equals I2. Node analysis yields the following equation: The value of ZB is then: Where VRX/VTX equals 1/ A4-4. Therefore: Example: Given: RTX = 20k, ZRX = 280k, ZT = 562k(standard value), RF = 20 and ZL= 600, The value of ZB = 18.7k. Supervisory Functions The loop current, ground key and the ring trip detector outputs are multiplexed to a single logic output pin called DET. See Table 1 to determine the active detector for a given logic input. For further discussion of the logic circuitry see section titled “Digital Logic Inputs”. Before proceeding with an explanation of the loop current detector, ground key detector and later the longitudinal impedance, it is important to understand the difference between a “metallic” and “longitudinal” loop currents. Figure 18 illustrates 3 different types of loop current encountered. Case 1 illustrates the metallic loop current. The definition of a metallic loop current is when equal currents flow out of tip and into ring. Loop current is a metallic current. Cases 2 and 3 illustrate the longitudinal loop current. The definition of a longitudinal loop current is a common mode VTX RSN TIP RING IM ZTR VTR EG VTX IM 1000 VTX ZRX 1 HC5513 RF RF A = 4 + - + - + - + - ZT + - VRX + - A = 250 A = 250 IM ZL FIGURE 16. SIMPLIFIED AC TRANSMISSION CIRCUIT VTX RTX ----------- VRX ZB ----------- + 0 = (EQ. 21) ZB R – TX VRX VTX ----------- = (EQ. 22) ZB RTX ZRX ZT ----------- ZT 1000 ------------- 2RF ZL ++ ZL 2RF + -------------------------------------------- = (EQ. 23) HC5513 VTX RSN RTX RFB CODEC/ FILTER I1 I2 VTX ZRX ZT + - ZB VRX + - + - FIGURE 17. TRANSHYBRID CIRCUIT |
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