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SN74AUP2G08

Texas Instruments
Part Number SN74AUP2G08
Manufacturer Texas Instruments
Description LOW-POWER DUAL 2-INPUT POSITIVE-AND GATE
Published Dec 24, 2022
Detailed Description SN74AUP2G08 www.ti.com SCES681D – JANUARY 2008 – REVISED OCTOBER 2010 LOW-POWER DUAL 2-INPUT POSITIVE-AND GATE Check f...
Datasheet PDF File SN74AUP2G08 PDF File

SN74AUP2G08
SN74AUP2G08


Overview
SN74AUP2G08 www.
ti.
com SCES681D – JANUARY 2008 – REVISED OCTOBER 2010 LOW-POWER DUAL 2-INPUT POSITIVE-AND GATE Check for Samples: SN74AUP2G08 FEATURES 1 • Available in the Texas Instruments NanoStar™ Package • Low Static-Power Consumption (ICC = 0.
9 mA Max) • Low Dynamic-Power Consumption (Cpd = 4.
3 pF Typ at 3.
3 V) • Low Input Capacitance (Ci = 1.
5 pF Typ) • Low Noise – Overshoot and Undershoot <10% of VCC • Ioff Supports Partial-Power-Down Mode Operation • Schmitt-Trigger Action Allows Slow Input Transition and Better Switching Noise Immunity at the Input (Vhys = 250 mV Typ at 3.
3 V) 1A 1B 2Y GND DCU PACKAGE (TOP VIEW) 1 8 2 7 3 6 4 5 VCC 1Y 2B 2A DQE PACKAGE (TOP VIEW) 1A 1 1B 2 2Y 3 GND 4 V 8 CC 7 1Y 6 2B 5 2A • Wide Operating VCC Range of 0.
8 V to 3.
6 V • Optimized for 3.
3-V Operation • 3.
6-V I/O Tolerant to Support Mixed-Mode Signal Operation • tpd = 5.
9 ns Max at 3.
3 V • Suitable for Point-to-Point Applications • Latch-Up Performance Exceeds 100 mA Per JESD 78, Class II • ESD Performance Tested Per JESD 22 – 2000-V Human-Body Model (A114-B, Class II) – 1000-V Charged-Device Model (C101) RSE PACKAGE (TOP VIEW) VCC 1Y 1 8 7 1A 2B 2 6 1B YFP OR YZP PACKAGE (TOP VIEW) 1A 1B 2Y GND A1 1 8 A2 B1 2 7 B2 C1 3 6 C2 D1 4 5 D2 V CC 1Y 2B 2A See mechanical drawings for dimensions.
2A 3 4 5 2Y GND DESCRIPTION/ORDERING INFORMATION The AUP family is TI's premier solution to the industry's low-power needs in battery-powered portable applications.
This family ensures a very low static- and dynamic-power consumption across the entire VCC range of 0.
8 V to 3.
6 V, resulting in increased battery life (see Figure 1).
This product also maintains excellent signal integrity (see the very low undershoot and overshoot characteristics shown in Figure 2).
Static-Power Consumption (µA) Dynamic-Power Consumption (pF) 100% 100% 80% 80% 60% 40% 3.
3-V Logic† 60% 40% 3.
3-V LLoVgCic† Switching Characteristics at 25 MHz† 3.
5 3 2.
5 2 Input Output 1...



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