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LTC1387CSW 数据表(PDF) 2 Page - Linear Technology |
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LTC1387CSW 数据表(HTML) 2 Page - Linear Technology |
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2 / 12 page ![]() 2 LTC1387 A G A U A R BSOLUTEXI TI S ORDER PART NUMBER (Note 1) Supply Voltage (VCC) ............................................. 6.5V Input Voltage Drivers ................................... – 0.3V to (VCC + 0.3V) Receivers ............................................. – 25V to 25V 485/232, ON, DXEN RXEN, SLEW ........................... – 0.3V to (VCC + 0.3V) Output Voltage Drivers ................................................. – 18V to 18V Receivers ............................... – 0.3V to (VCC + 0.3V) Short-Circuit Duration Output ........................................................ Indefinite VDD, VEE, C1+, C1–, C2+, C2–.......................... 30 sec Operating Temperature Range LTC1387C .............................................. 0 °C to 70°C LTC1387I ........................................... – 40 °C to 85°C Storage Temperature Range ................ – 65 °C to 150°C Lead Temperature (Soldering, 10 sec)................ 300 °C PACKAGE/ORDER I FOR ATIO Consult factory for Military grade parts. TJMAX = 125°C, θJA = 120°C/W (G) TJMAX = 125°C, θJA = 75°C/W (SW) 1 2 3 4 5 6 7 8 9 10 TOP VIEW SW PACKAGE 20-LEAD PLASTIC SO G PACKAGE 20-LEAD PLASTIC SSOP 20 19 18 17 16 15 14 13 12 11 C1+ C1– VDD A B Y Z 485/232 DXEN GND C2+ C2– VCC RA RB DY DZ/SLEW ON RXEN VEE DC ELECTRICAL CHARACTERISTICS LTC1387CG LTC1387CSW LTC1387IG LTC1387ISW TA = 25°C, VCC = 5V, C1 = C2 = C3 = C4 = 0.1µF (Notes 2, 3), unless otherwise noted. SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS RS485 Driver (485/232 = High, ON = DXEN = High) VOD1 Differential Driver Output Voltage (Unloaded) IO = 0 q 6V VOD2 Differential Driver Output Voltage (With Load) Figure 1, R = 50 Ω (RS422) q 2.0 6 V Figure 1, R = 27 Ω (RS485) q 1.5 6 V ∆VOD Change in Magnitude of Driver Differential Figure 1, R = 27 Ω or R = 50Ω q 0.2 V Output Voltage for Complementary Output States VOC Driver Common Mode Output Voltage Figure 1, R = 27 Ω or R = 50Ω q 3V ∆VOC Change in Magnitude of Driver Common Mode Figure 1, R = 27 Ω or R = 50Ω q 0.2 V Output Voltage for Complementary Output States IOSD Driver Short-Circuit Current VO = – 7V, 12V; VO = High q 35 250 mA VO = – 7V, 12V; VO = Low (Note 4) q 10 250 mA IOZD Three-State Output Current (Y, Z) – 7V ≤ VO ≤ 12V ±5 500 µA RS232 Driver (485/232 = Low, ON = DXEN = High) VO Output Voltage Swing Figure 4, RL = 3k, Positive q 5 6.5 V Figure 4, RL = 3k, Negative q –5 –6.5 V IOSD Output Short-Circuit Current VO = 0V q ±17 ±60 mA Driver Inputs and Control Inputs VIH Input High Voltage DY, DZ, DXEN, RXEN, ON, 485/232, SLEW q 2V VIL Input Low Voltage DY, DZ, DXEN, RXEN, ON, 485/232, SLEW q 0.8 V IIN Input Current DY, DZ, DXEN, RXEN, ON, 485/232 q ±0.1 ±10 µA SLEW (Note 5) q 5 15 µA |
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