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DS96F174MW/883 Datasheet(PDF) 4 Page - National Semiconductor (TI) |
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DS96F174MW/883 Datasheet(HTML) 4 Page - National Semiconductor (TI) |
4 / 11 page MIL-STD-883C Absolute Maximum Ratings (Note 2) For complete Military Specifications, refer to the appro- priate SMD or MDS. Storage Temperature Range (T STG) −65˚C to +175˚C Lead Temperature (Soldering, 60 sec.) 300˚C Maximum Package Power Dissipation (Note 9) at 25˚C Ceramic LCC (E) 2000 mW Ceramic DIP (J) 1800 mW Ceramic Flatpak (W) 1000 mW Supply Voltage 7.0V Enable Input Voltage 5.5V Recommended Operating Conditions Min Typ Max Units Supply Voltage (V CC) DS96F172M/DS96F174M 4.50 5.0 5.50 V Common Mode −7.0 +12.0 V Output Voltage (V OC) Output Current HIGH (I OH) −60 mA Output Current LOW (I OL)60 mA Operating Temperature (T A) DS96F172M/DS96F174M −55 +125 Note 9: Above TA = 25˚C, derate “E” package 13.4, “J” package 12.5, “W” package 7.1 mW/˚C Electrical Characteristics (Notes 3, 4) Over recommended supply voltage and operating temperature range unless otherwise specified Symbol Parameter Conditions Min Max Units V IH Input Voltage HIGH 2.0 V V IL Input Voltage LOW T A = 25˚C 0.8 V T A = −55˚C, or +125˚C 0.7 V IC Input Clamp Voltage I I = −18 mA −1.5 V |V OD1| Differential Output Voltage I O = 0 mA 6.0 V |V OD2| Differential Output Voltage R L =54 Ω,V CC = 4.5V T A = −55˚C 1.2 Figure 1 T A = 25˚C, or +125˚C 1.5 V R L = 100 Ω,V CC = 4.5V, Figure 1 2.0 ∆|V OD| Change in Magnitude of Differential R L =54 Ω or 100Ω,T A = 25˚C, or +125˚C ±0.2 V Output Voltage (Note 5) V CC = 4.5V, Figure 1 T A = −55˚C ±0.4 V V OC Common Mode Output Voltage (Note 6) R L =54 Ω or 100Ω, Figure 1 3.0 V ∆|V OC| Change in Magnitude of Common R L =54 Ω or 100Ω,V CC = 4.5V, Figure 1 ±0.2 V Mode Output Voltage (Note 5) I O Output Current with Power Off V CC = 0V, VO = −7.0V to +12V ±50 µA I OZ High Impedance State Output Current V O = −7.0V to +12V ±50 µA I IH Input Current HIGH V I = 2.4V 20 µA I IL Input Current LOW V I = 0.4V −50 µA I OS Short Circuit Output Current V O = −7.0V −250 (Note 7) V O = 0V −150 mA V O =VCC 150 V O = +12V 250 I CC Supply Current (All Drivers) No Load Outputs Enabled 50 mA I CCX Outputs Disabled 30 www.national.com 4 |
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