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UA9636ACDRE4 Datasheet(PDF) 3 Page - Texas Instruments |
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UA9636ACDRE4 Datasheet(HTML) 3 Page - Texas Instruments |
3 / 14 page uA9636AC DUAL LINE DRIVER WITH ADJUSTABLE SLEW RATE SLLS110B – OCTOBER 1980 – REVISED MAY 1995 3 POST OFFICE BOX 655303 • DALLAS, TEXAS 75265 electrical characteristics over recommended ranges of free-air temperature, supply voltage, and wave-shaping resistance (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP† MAX UNIT VIK Input clamp voltage II = – 15 mA – 1.1 – 1.5 V RL = ∞ 5 5.6 6 VOH High-level output voltage VI = 0.8 V RL = 3 kΩ to GND 5 5.6 6 V RL = 450 Ω to GND 4 5.4 6 RL = ∞ –6‡ – 5.7 –5 VOL Low-level output voltage VI = 2 V RL = 3 kΩ to GND –6‡ – 5.6 –5 V RL = 450 Ω to GND –6‡ – 5.4 –4 IIH High level input current VI = 2.4 V 10 µA IIH High-level input current VI = 5.5 V 100 µA IIL Low-level input current VI = 0.4 V –20 –80 µA IO Output current (power off) VCC ± = 0, VO = ± 6 V ±100 µA IOS Short circut output current§ VI = 2 V 15 25 150 mA IOS Short-circut output current§ VI = 0 –15 –40 – 150 mA rO Output resistance RL = 450 Ω 25 50 Ω ICC Positive supply current VCC = ± 12 V, VI = 0, 13 18 mA ICC + Positive supply current CC , R(WS) = 100 kΩ, I , Output open 13 18 mA ICC Negative supply current VCC = ± 12 V, VI = 0, 13 18 mA ICC – Negative supply current CC R(WS) = 100 kΩ, I Output open – 13 – 18 mA † All typical values are at VCC = ±12 V, TA = 25°C. ‡ The algebraic convention, in which the less-positive (more-negative) limit is designated as minimum, is used in this data sheet for logic voltage levels, e.g., when – 5 V is the maximum, the minimum is a more-negative voltage. § Not more than one output should be shorted to ground at a time. switching characteristics, VCC± = ±12 V, TA = 25°C (see Figure 1) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT R(WS) = 10 kΩ 0.8 1.1 1.4 tTLH Transition time low to high level output RL = 450 kΩ CL =30 pF R(WS) = 100 kΩ 8 11 14 µs tTLH Transition time, low- to high-level output RL = 450 kΩ, CL = 30 pF R(WS) = 500 kΩ 40 55 70 µs R(WS) = 1 MΩ 80 110 140 R(WS) = 10 kΩ 0.8 1.1 1.4 tTHL Transition time high to low level output RL = 450 kΩ CL =30 pF R(WS) = 100 kΩ 8 11 14 µs tTHL Transition time, high- to low-level output RL = 450 kΩ, CL = 30 pF R(WS) = 500 kΩ 40 55 70 µs R(WS) = 1 MΩ 80 110 140 |
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