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LTC1535CSW Datasheet(PDF) 7 Page - Linear Technology |
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LTC1535CSW Datasheet(HTML) 7 Page - Linear Technology |
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7 / 12 page ![]() 7 LTC1535 APPLICATIO S I FOR ATIO Isolation Barrier and Sampled Communication The LTC1535 uses the SW-28 isolated lead frame package to provide capacitive isolation barrier between the logic interface and the RS485 driver/receiver pair. The barrier provides 2500VRMS of isolation. Communication between the two sides uses the isolation capacitors in a multiplexed way to communicate full-duplex data across this barrier. The data is sampled and encoded before transmitting across the isolation barrier, which will add sampling jitter and delay to the signals. The sampling jitter is approxi- mately 250ns with a nominal delay of 600ns. At 250kBd rate, this represents 6.2% total jitter. The nominal DE signal to the driver output delay is 875ns ±125ns, which is longer due to the encoding. Communication start-up time is approximately 1 µs to 2µs. A time-out fault will occur if communication from the isloated side fails. Faults can be monitored on the RE pin. Push-Pull DC/DC Converter The powered side contains a full-bridge open-loop driver, optimized for use with a single primary and center-tapped secondary transformer. Figure 9 shows the DC/DC con- verter in a configuration that can deliver up to to 100mA of current to the isolated side using a Coiltronics CTX02- 14659 transformer. Because the DC/DC converter is open-loop, care in choos- ing low impedance parts is important for good regulation. Care must also be taken to not exceed the VCC2 recom- mended maximum voltage of 7.5V when there is very light loading. The isolated side contains a low voltage detect circuit to ensure that communication across the barrier will only occur when there is sufficient isolated supply voltage. If the output of the DC/DC converter is over- loaded, the supply voltage will trip the low voltage detec- tion at 4.2V. For higher voltage stand-off, the Coiltronics CTX02-14608 transformer may be used. Figure 9 ** 2 1 1 1535 F09 VCC GND LOGIC COMMON 2 FLOATING RS485 COMMON ** TRANSFORMER COILTRONICS (561) 241-7876 400kHz 4 14 11 1 + + GND2 1/2 BAT54C 1/2 BAT54C ILOAD VCC2 ST1 ST2 3 2 VCC 1 10 µF 10 µF 2 CTX02-14659 IEXT IVCC2 TOTAL LOAD CURRENT, ILOAD (mA) 0 50 100 150 1535 F09a 8 6 4 2 0 VCC = 5.5V VCC = 5V VCC = 4.5V VCC2 vs ILOAD |
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