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HD74LV393A

Hitachi Semiconductor
Part Number HD74LV393A
Manufacturer Hitachi Semiconductor
Description Dual 4-bit Binary Counters
Published Mar 23, 2005
Detailed Description HD74LV393A Dual 4-bit Binary Counters ADE-205-276 (Z) 1st Edition April 1999 Description The HD74LV393A contain two 4-b...
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HD74LV393A
HD74LV393A


Overview
HD74LV393A Dual 4-bit Binary Counters ADE-205-276 (Z) 1st Edition April 1999 Description The HD74LV393A contain two 4-bit ripple carry binary counters, which can be cascaded to create a single divide-by-256 counter.
The HD74LV393A is incremented on the high to low transition (negative edge) of the clock input, and each has an independent clear input.
When clear is set high all four bits of each counter are set to a low level.
This enables count trucation and allows the implementation of divide-by-N counter configurations.
Low-voltage and high-speed operation is suitable for the battery-powered products (e.
g.
, notebook computers), and the low-power consumption extends the battery life.
Features • • • • • • VCC = 2.
0 V to 5.
5 V operation All inputs VIH (Max.
) = 5.
5 V (@VCC = 0 V to 5.
5 V) All outputs VO (Max.
) = 5.
5 V (@VCC = 0 V) Typical VOL ground bounce < 0.
8 V (@VCC = 3.
3 V, Ta = 25°C) Typical VOH undershoot > 2.
3 V (@VCC = 3.
3 V, Ta = 25°C) Output current ±6 mA (@VCC = 3.
0 V to 3.
6 V), ±12 mA (@VCC = 4.
5 V to 5.
5 V) HD74LV393A Function Table Inputs CLK X H L ↑ ↓ Note: H: L: X: ↑: ↓: High level Low level Immaterial Low to high transition High to low transition CLR H L L L L Output L No change No change No change Count up Pin Arrangement 1CLK 1 1CLR 2 1QA 3 1QB 4 1QC 5 1QD 6 GND 7 14 VCC 13 2CLK 12 2CLR 11 2QA 10 2QB 9 2QC 8 2QD (Top view) 2 HD74LV393A Absolute Maximum Ratings Item Supply voltage range Input voltage range* 1 1, 2 Symbol VCC VI VO Ratings –0.
5 to 7.
0 –0.
5 to 7.
0 –0.
5 to VCC + 0.
5 –0.
5 to 7.
0 Unit V V V Conditions Output voltage range* Output: H or L VCC: OFF Input clamp current Output clamp current Continuous output current Continuous current through VCC or GND Maximum power dissipation at Ta = 25°C (in still air)*3 I IK I OK IO I CC or IGND PT –20 ±50 ±25 ±70 785 500 mA mA mA mA mW VI < 0 VO < 0 or VO > VCC VO = 0 to VCC SOP TSSOP Storage temperature Tstg –65 to 150 °C Notes: The absolute maximum ratings are values which m...



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