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MC10161P Datasheet(PDF) 2 Page - ON Semiconductor |
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MC10161P Datasheet(HTML) 2 Page - ON Semiconductor |
2 / 8 page MC10161 http://onsemi.com 2 ELECTRICAL CHARACTERISTICS Test Limits Pin Under –30 °C +25 °C +85 °C Characteristic Symbol Under Test Min Max Min Typ Max Min Max Unit Power Supply Drain Current IE 8 84 61 76 84 mAdc Input Current IinH 14 350 220 220 µAdc IinL 14 0.5 0.5 0.3 µAdc Output Voltage Logic 1 VOH 13 13 –1.060 –1.060 –0.890 –0.890 –0.960 –0.960 –0.810 –0.810 –0.890 –0.890 –0.700 –0.700 Vdc Output Voltage Logic 0 VOL 13 –1.890 –1.675 –1.850 –1.650 –1.825 –1.615 Vdc Threshold Voltage Logic 1 VOHA 13 13 –1.080 –1.080 –0.980 –0.980 –0.910 –0.910 Vdc Threshold Voltage Logic 0 VOLA 13 –1.655 –1.630 –1.595 Vdc Switching Times (50 Ω Load) ns Propagation Delay t14+13– t14–13+ 13 13 1.5 1.5 6.2 6.2 1.5 1.5 4.0 4.0 6.0 6.0 1.5 1.5 6.4 6.4 Rise Time (20 to 80%) t13+ 13 1.0 3.3 1.1 2.0 3.3 1.1 3.5 Fall Time (20 to 80%) t13– 13 1.0 3.3 1.1 2.0 3.3 1.1 3.5 ELECTRICAL CHARACTERISTICS (continued) TEST VOLTAGE VALUES (Volts) @ Test Temperature VIHmax VILmin VIHAmin VILAmax VEE –30 °C –0.890 –1.890 –1.205 –1.500 –5.2 +25 °C –0.810 –1.850 –1.105 –1.475 –5.2 +85 °C –0.700 –1.825 –1.035 –1.440 –5.2 Pin Under TEST VOLTAGE APPLIED TO PINS LISTED BELOW (V ) Characteristic Symbol Under Test VIHmax VILmin VIHAmin VILAmax VEE (VCC) Gnd Power Supply Drain Current IE 8 2,7,9,14,15 8 1,16 Input Current IinH 14 14 8 1,16 IinL 14 14 8 1,16 Output Voltage Logic 1 VOH 13 13 2 15 8 8 1,16 1,16 Output Voltage Logic 0 VOL 13 14 8 1,16 Threshold Voltage Logic 1 VOHA 13 13 2 15 8 8 1,16 1,16 Threshold Voltage Logic 0 VOLA 13 14 8 1,16 Switching Times (50 Ω Load) Pulse In Pulse Out –3.2 V +2.0 V Propagation Delay t14+13– t14–13+ 13 13 14 14 13 13 8 8 1,16 1,16 Rise Time (20 to 80%) t13+ 13 14 13 8 1,16 Fall Time (20 to 80%) t13– 13 14 13 8 1,16 Each MECL 10,000 series circuit has been designed to meet the dc specifications shown in the test table, after thermal equilibrium has been established. The circuit is in a test socket or mounted on a printed circuit board and transverse air flow greater than 500 linear fpm is maintained. Outputs are terminated through a 50–ohm resistor to –2.0 volts. Test procedures are shown for only one gate. The other gates are tested in the same manner. |
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