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SN74HCS86DYYR データシート(PDF) 13 Page - Texas Instruments

部品番号 SN74HCS86DYYR
部品情報  SNx4HC86 Quadruple 2-Input XOR Gates
PDF  37 Pages
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メーカー  TI [Texas Instruments]
ホームページ  http://www.ti.com
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SN74HCS86DYYR データシート(HTML) 13 Page - Texas Instruments

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10 Power Supply Recommendations
The power supply can be any voltage between the minimum and maximum supply voltage rating located in
the Recommended Operating Conditions. Each VCC terminal should have a bypass capacitor to prevent power
disturbance. A 0.1-μF capacitor is recommended for this device. It is acceptable to parallel multiple bypass caps
to reject different frequencies of noise. The 0.1-μF and 1-μF capacitors are commonly used in parallel. The
bypass capacitor should be installed as close to the power terminal as possible for best results, as shown in
Figure 11-1.
11 Layout
11.1 Layout Guidelines
When using multiple-input and multiple-channel logic devices inputs must not ever be left floating. In many
cases, functions or parts of functions of digital logic devices are unused; for example, when only two inputs of
a triple-input AND gate are used. Such unused input pins must not be left unconnected because the undefined
voltages at the outside connections result in undefined operational states. All unused inputs of digital logic
devices must be connected to a logic high or logic low voltage, as defined by the input voltage specifications, to
prevent them from floating. The logic level that must be applied to any particular unused input depends on the
function of the device. Generally, the inputs are tied to GND or VCC, whichever makes more sense for the logic
function or is more convenient.
11.2 Layout Example
1
2
3
4
5
6
7
14
13
12
11
10
9
8
1A
1B
2A
2B
2Y
GND
V
CC
4B
4A
3B
3A
3Y
GND
V
CC
4Y
1Y
0.1
F
Unused
inputs tied to
VCC
Bypass capacitor
placed close to the
device
Avoid 90°
corners for
signal lines
Recommend GND flood fill for
improved signal isolation, noise
reduction, and thermal dissipation
Unused
output left
floating
Figure 11-1. Example layout for the SN74HC86
www.ti.com
SN74HC86, SN54HC86
SCLS100F – DECEMBER 1982 – REVISED APRIL 2021
Copyright © 2021 Texas Instruments Incorporated
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Product Folder Links: SN74HC86 SN54HC86



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