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CDX4ACT164 Datasheet(PDF) 9 Page - Texas Instruments

Part # CDX4ACT164
Description  CDx4AC164, CDx4ACT164 8-Bit Serial-In/Parallel-Out Shift Register
PDF  19 Pages
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Manufacturer  TI2 [Texas Instruments]
Direct Link  https://www.ti.com
Logo TI2 - Texas Instruments

CDX4ACT164 Datasheet(HTML) 9 Page - Texas Instruments

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6 Detailed Description
6.1 Overview
The CDx4AC(T)164 is an 8-bit shift register with 2 serial inputs (A and B) connected through an AND gate, as
well as an asynchronous clear (CLR). The device requires a high signal on both A and B to set the input data
line high; a low signal on either input will set the input data line low. Data at A and B can be changed while CLK
is high or low, provided that the minimum set-up time requirements are met.
The CLK pin of the CDx4AC(T)164 is rising-edge triggered, activating on the transition from LOW to HIGH. Upon
a positive-edge trigger, the device will store the result of the (A ● B) input data line in the first register and
propagate each register’s data to the next register. The data of the last register, QH, will be discarded at each
clock trigger. If a low signal is applied to the CLR pin, then the CDx4AC(T)164 will set all registers to a logical
low value immediately.
6.2 Functional Block Diagram
CLR
A
CLK
D
R
Q
5 Additional
Shift Register
Stages
B
D
R
Q
QH
QG
QF
QE
QD
QC
QB
QA
D
R
Q
Figure 6-1. Logic Diagram (Positive Logic) for CDx4AC(T)164
6.3 Feature Description
6.3.1 Standard CMOS Inputs
This device includes standard CMOS inputs. Standard CMOS inputs are high impedance and are typically
modeled as a resistor in parallel with the input capacitance given in the Electrical Characteristics. The worst
case resistance is calculated with the maximum input voltage, given in the Absolute Maximum Ratings, and the
maximum input leakage current, given in the Electrical Characteristics, using Ohm's law (R = V ÷ I).
Standard CMOS inputs require that input signals transition between valid logic states quickly, as defined
by the input transition time or rate in the Recommended Operating Conditions table. Failing to meet this
specification will result in excessive power consumption and could cause oscillations. More details can be found
in Implications of Slow or Floating CMOS Inputs.
Do not leave standard CMOS inputs floating at any time during operation. Unused inputs must be terminated at
VCC or GND. If a system will not be actively driving an input at all times, then a pull-up or pull-down resistor can
be added to provide a valid input voltage during these times. The resistor value will depend on multiple factors; a
10kΩ resistor, however, is recommended and will typically meet all requirements.
6.3.2 TTL-Compatible CMOS Inputs
This device includes TTL-compatible CMOS inputs. These inputs are specifically designed to interface with TTL
logic devices by having a reduced input voltage threshold.
TTL-compatible CMOS inputs are high impedance and are typically modeled as a resistor in parallel with
the input capacitance given in the Electrical Characteristics. The worst case resistance is calculated with the
maximum input voltage, given in the Absolute Maximum Ratings, and the maximum input leakage current, given
in the Electrical Characteristics, using Ohm's law (R = V ÷ I).
TTL-compatible CMOS inputs require that input signals transition between valid logic states quickly, as defined
by the input transition time or rate in the Recommended Operating Conditions table. Failing to meet this
www.ti.com
CD54AC164, CD74AC164, CD54ACT164, CD74ACT164
SCHS240D – NOVEMBER 1998 – REVISED OCTOBER 2024
Copyright © 2024 Texas Instruments Incorporated
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Product Folder Links: CD54AC164 CD74AC164 CD54ACT164 CD74ACT164



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