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SN74AHC1G04DRLR Arkusz danych(PDF) 4 Page - Texas Instruments |
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SN74AHC1G04DRLR Arkusz danych(HTML) 4 Page - Texas Instruments |
4 / 22 page 4 SN74AHC1G04 SCLS318T – MARCH 1996 – REVISED JANUARY 2016 www.ti.com Product Folder Links: SN74AHC1G04 Submit Documentation Feedback Copyright © 1996–2016, Texas Instruments Incorporated (1) Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated under Recommended Operating Conditions is not implied. Exposure to absolute-maximum-rated conditions for extended periods may affect device reliability. (2) The input and output voltage ratings may be exceeded if the input and output current ratings are observed. 6 Specifications 6.1 Absolute Maximum Ratings over operating free-air temperature range (unless otherwise noted) (1) MIN MAX UNIT VCC Supply voltage range –0.5 7 V VI Input voltage range(2) –0.5 7 V VO Output voltage range(2) –0.5 VCC + 0.5 V IIK Input clamp current VI < 0 –20 mA IOK Output clamp current VO < 0 or VO > VCC ±20 mA IO Continuous output current VO = 0 to VCC ±25 mA Continuous current through each VCC or GND ±50 mA Tstg Storage temperature range –65 150 °C TJ Junction temperature 150 °C (1) JEDEC document JEP155 states that 500-V HBM allows safe manufacturing with a standard ESD control process. (2) JEDEC document JEP157 states that 250-V CDM allows safe manufacturing with a standard ESD control process. 6.2 ESD Ratings VALUE UNIT V(ESD) Electrostatic discharge Human body model (HBM), per ANSI/ESDA/JEDEC JS-001, all pins(1) 3500 V Charged device model (CDM), per JEDEC specification JESD22-C101, all pins(2) 1000 (1) All unused inputs of the device must be held at VCC or GND to ensure proper device operation. Refer to the TI application report, Implications of Slow or Floating CMOS Inputs (SCBA004). 6.3 Recommended Operating Conditions over operating free-air temperature range (unless otherwise noted) (1) MIN MAX UNIT VCC Supply voltage 2 5.5 V VIH High-level input voltage VCC = 2 V 1.5 V VCC = 3 V 2.1 VCC = 5.5 V 3.85 VIL Low-level input voltage VCC = 2 V 0.5 V VCC = 3 V 0.9 VCC = 5.5 V 1.65 VIH Input voltage 0 5.5 V VO Output voltage 0 VCC V IOH High-level output current VCC = 2 V –50 µA VCC = 3.3 V ± 0.3 V –4 mA VCC = 5 V ± 0.5 V –8 IOL Low-level output current VCC = 2 V 50 µA VCC = 3.3 V ± 0.3 V 4 mA VCC = 5 V ± 0.5 V 8 Δt/Δv Input transition rise or fall rate VCC = 3.3 V ± 0.3 V 100 ns/V VCC = 5 V ± 0.5 V 20 TA Operating free-air temperature –40 125 °C |
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