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CPC5620 Datasheet(PDF) 13 Page - IXYS Corporation |
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CPC5620 Datasheet(HTML) 13 Page - IXYS Corporation |
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13 / 18 page ![]() INTEGRATED CIRCUITS DIVISION CPC5620/CPC5621 R05 www.ixysic.com 13 Figure 5. Differential and Single-ended Transmit Path Connections to LITELINK 3.4 Start-up Requirements OH must be de-asserted (set logic high) once after power-up for at least 50ms to transfer internal gain trim values within LITELINK. This would be normal operation in most applications. Failure to comply with this requirement will result in transmission gain errors and possibly distortion. 3.5 DC Characteristics The CPC5620 and CPC5621 are designed for worldwide application, including use under the requirements of TBR-21. The ZDC, DCS1, and DCS2 pins control the VI slope characteristics of LITELINK. Selecting appropriate resistor values for RZDC (R16) and RDCS (R15) in the provided application circuits assure compliance with DC requirements. 3.5.1 Setting a Current Limit LITELINK includes a telephone line current limit feature that is selectable by choosing the desired value for RZDC (R16) using the following formula: IXYS Integrated Circuits Division recommends using 8.2 for R ZDC for most applications, limiting telephone line current to 130 mA. Whether using the recommended value above or when setting RZDC higher for a lower loop current limit refer to the guidelines for FET thermal management provided in AN-146, Guidelines for Effective LITELINK Designs. 3.6 AC Characteristics 3.6.1 Resistive Termination Applications North American and Japanese telephone line AC termination requirements are met with a resistive 600 AC termination. Receive termination is applied to the LITELINK ZNT pin (pin 29) as a 301 resistor, RZNT (R10). 3.6.2 Reactive Termination Applications Many countries use a single-pole complex impedance to model the telephone network transmission line characteristic impedance as shown in the table below. Proper gain and termination impedance circuits for a complex impedance requires the use of complex network on ZNT as shown in the “Reactive Termination Application Circuit Schematic” on page 8. LITELINK LITELINK TXA1 TXA2 - + 0.1 µf Low-Voltage Side CODEC or Transmit Circuit Low-Voltage Side CODEC or Transmit Circuit TX- TX+ TXA1 - + TX- TX+ 0.1 µf 0.1 µf 0.1 µf ICLAmps 1V RZDC ------------- 0.008A + = Line Impedance Model Australia China TBR 21 RS 220 200 270 RP 820 680 750 CP 120 nF 100 nF 150 nF R S R P C P |
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