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11C91D Datasheet(PDF) 2 Page - National Semiconductor (TI) |
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11C91D Datasheet(HTML) 2 Page - National Semiconductor (TI) |
2 / 10 page Absolute Maximum Ratings Above which the useful life may be impaired If MilitaryAerospace specified devices are required please contact the National Semiconductor Sales OfficeDistributors for availability and specifications Storage Temperature b 65 Cto a150 C Maximum Junction Temperature (TJ) a 150 C Supply Voltage Range b 70V to GND Input Voltage (DC) VEE to GND Output Current (DC Output HIGH) b 50 mA Operating Range b 57V to b47V Lead Temperature (Soldering 10 sec) 300 C Recommended Operating Conditions Min Typ Max Ambient Temperature (TA) Commercial 0 C a 75 C Military b 55 C a 125 C Supply Voltage (VEE) Commercial b 57V b 52V b 47V Military b 57V b 52V b 47V TTL InputOutput Operation DC Electrical Characteristics Over Operating Temperature and Voltage Range unless otherwise noted Pins 12 and 13 e GND Symbol Parameter Min Typ Max Units Conditions (Note 3) VIH Input HIGH Voltage 41 V Guaranteed Input HIGH Threshold M1 and M2 Inputs Voltage (Note 4) VCC e VCCA e 50V VIL Input LOW Voltage 33 V Guaranteed Input LOW Threshold M1 and M2 Inputs Voltage (Note 4) VCC e VCCA e 50V VOH Output HIGH Voltage 23 33 V VCC e VCCA e Min QTTL Output IOH eb640 mA VOL Output LOW Voltage 02 05 V VCC e VCCA e Min QTTL Output IOL e 200 mA IIL Input LOW Current b 23 b 50 mA VCC e VCCA e Max M1 and M2 Inputs VIN e 04V Pins 6 7 e VCC ISC Output Short Circuit b 20 b 35 b 80 mA VCC e VCCA e Max Current VOUT e 00V Pin 14 e VCC AC Electrical Characteristics VCC e VCCA e 50V Nominal VEE e GND TA ea25 C Symbol Parameter Min Typ Max Units Conditions tPLH Propagation Delay (50% to 50%) 610 14 ns See Figure 1 tPHL CP to QTTL tPLH Propagation Delay (50% to 50%) 12 17 ns MS to QTTL ts Mode Control Setup Time 4 2 ns th Mode Control Hold Time 0 b 2ns tTLH Output Rise Time 10 ns (20% to 80%) tTHL Output Fall Time 2ns (80% to 20%) fMAX Count Frequency 550 650 MHz b 55 Cto a125 C 600 650 0 Cto a75 C Clock Input AC Coupled 350 mV Peak-to-Peak Sinewave (Note 5) 2 |
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