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TLV3702-Q1 Datasheet(PDF) 5 Page - Texas Instruments |
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TLV3702-Q1 Datasheet(HTML) 5 Page - Texas Instruments |
5 / 12 page TLV3701Q1 TLV3702Q1 TLV3704Q1 SGLS154C − NOVEMBER 2000 − REVISED NOVEMBER 2003 5 www.ti.com electrical characteristics at specified operating free-air temperature, VCC = 2.7 V, 5 V, 15 V (unless otherwise noted) (continued) power supply PARAMETER TEST CONDITIONS TA† MIN TYP MAX UNIT ICC Supply current (per channel) Output state high 25 °C 560 800 nA ICC Supply current (per channel) Output state high Full range 1200 nA VCC = 2.7 V to 5 V 25 °C 75 100 PSRR Power supply rejection ratio VIC = VCC/2 V, VCC = 2.7 V to 5 V Full range 70 dB PSRR Power supply rejection ratio VIC = VCC/2 V, No load VCC = 5 V to 15 V 25 °C 85 105 dB No load VCC = 5 V to 15 V Full range 80 † Full range is − 40°C to 125°C for Q suffix. switching characteristics at recommended operating conditions, VCC = 2.7 V, 5 V, 15 V, TA = 25°C (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT Propagation response time, low-to-high-level Overdrive = 2 mV 240 t(PLH) Propagation response time, low-to-high-level output (see Note 3) f = 1 kHz, V = 100 mV, Overdrive = 10 mV 64 150† t(PLH) output (see Note 3) f = 1 kHz, VSTEP = 100 mV, CL = 10 pF, Overdrive = 50 mV 36 s Propagation response time, high-to-low-level STEP CL = 10 pF, VCC = 2.7 V, Overdrive = 2 mV 167 µs t(PHL) Propagation response time, high-to-low-level output (see Note 3) VCC = 2.7 V, VIC = VCC/2 Overdrive = 10 mV 67 150† t(PHL) output (see Note 3) VIC = VCC/2 Overdrive = 50 mV 37 tr Rise time CL = 10 pF, VCC = 2.7 V 7 µs tf Fall time CL = 10 pF, VCC = 2.7 V 9 µs NOTE 3: The response time specified is the interval between the input step function and the instant when the output crosses 1.4 V. Propagation responses are longer at higher supply voltages, refer to Figures 11−16 for further details. † This limit applies to the TLV3701-Q1 only. TYPICAL CHARACTERISTICS Table of Graphs FIGURE Input bias/offset current vs Free-air temperature 1 VOL Low-level output voltage vs Low-level output current 2, 4, 6 VOH High-level output voltage vs High-level output current 3, 5, 7 ICC Supply current vs Supply voltage 8 ICC Supply current vs Free-air temperature 9 Output fall time/rise time vs Supply voltage 10 Low-to-high level output response for various input overdrives 11, 13, 15 High-to-low level output response for various input overdrives 12, 14, 16 |
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