M54HC563 ST Microelectronics, M54HC563 Datasheet

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M54HC563

Manufacturer Part Number
M54HC563
Description
OCTAL D-TYPE LATCH WITH 3 STATE OUTPUT HC563 INVERTING - HC573 NON INVERTING
Manufacturer
ST Microelectronics
Datasheet
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DESCRIPTION
The M54/74HC563 and M54HC573 are high speed
CMOS OCTAL LATCH WITH 3-STATE OUTPUTS
fabricated with in silicon gate C
These ICs archive the high speed operation similar
to equivalent LSTTL while maintaning the CMOS
low power dissipation.
These 8 bit D-Type latches are controlled by a latch
enable input (LE) and a output enable input (OE).
While the LE input is held at a high level, the Q
outputs will follow the data input precisely or
inversely. When the LE is taken low, the Q outputs
will be latched precisely or inversely at the logic level
PIN CONNECTION (top view)
October 1993
HIGH SPEED
t
LOW POWER DISSIPATION
I
HIGH NOISE IMMUNITY
V
OUTPUT DRIVE CAPABILITY
15 LSTTL LOADS
SYMMETRICAL OUTPUT IMPEDANCE
I
BALANCED PROPAGATION DELAYS
t
WIDE OPERATING VOLTAGE RANGE
V
PIN AND FUNCTION COMPATIBLE
WITH 54/74LS563/573
PD
CC
OL
PLH
NIH
CC
= 13 ns (TYP.) AT V
= I
= 4 A (MAX.) AT T
= t
(OPR) = 2 V TO 6 V
= V
PHL
OH
HC563
NIL
= 6 mA (MIN.)
= 28 % V
CC
OCTAL D-TYPE LATCH WITH 3 STATE OUTPUT
A
CC
(MIN.)
= 25 C
HC563 INVERTING - HC573 NON INVERTING
= 5 V
2
MOS technology.
HC573
of D input data. While the OE input is at low level,
the eight outputs will be in a normal logic state (high
or low logic level) and while high level the outpts will
be in a high impedance state.
The application designer
combination of inverting and non inverting outputs.
The three state output configuration and the wide
choise of outline make bus organized system
simple.
All inputs are equipped with protection circuits
against discharge and transient excess voltage.
(Plastic Package)
(Micro Package)
M54HCXXXF1R
M74HCXXXB1R
HC563
M1R
B1R
ORDER CODES :
M54/74HC573
M54/74HC563
M74HCXXXM1R
M74HCXXXC1R
(Ceramic Package)
has a choise of
(Chip Carrier)
HC573
C1R
F1R
1/13

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M54HC563 Summary of contents

Page 1

OCTAL D-TYPE LATCH WITH 3 STATE OUTPUT HC563 INVERTING - HC573 NON INVERTING . HIGH SPEED . (TYP LOW POWER DISSIPATION . (MAX ...

Page 2

M54/M74HC563/573 INPUT AND OUTPUT EQUIVALENT CIRCUIT PIN DESCRIPTION (HC563) PIN No SYMBOL NAME AND FUNCTION State output Enable Input (Active LOW Data Inputs 12, 13, 14, ...

Page 3

TRUTH TABLE INPUTS DON’T CARE Z: HIGH IMPEDANCE *: Q/Q OUTPUTS ARE LATCHED AT THE TIME WHEN THE LE INPUT IS TAKEN LOW LOGIC LEVEL. LOGIC DIAGRAMS HC563 HC573 ...

Page 4

M54/M74HC563/573 ABSOLUTE MAXIMUM RATINGS Symbol Parameter V Supply Voltage Input Voltage Output Voltage Input Diode Current Output Diode Current Output Source Sink Current Per Output ...

Page 5

DC SPECIFICATIONS Test Conditions Symbol Parameter V CC (V) V High Level Input 2.0 IH Voltage 4.5 6.0 V Low Level Input 2.0 IL Voltage 4.5 6.0 V High Level 2 Output Voltage 4.5 V 6.0 V 4.5 ...

Page 6

M54/M74HC563/573 AC ELECTRICAL CHARACTERISTICS (C Test Conditions Symbol Parameter V CC (V) t Output Transition 2.0 TLH t Time THL 4.5 6.0 t Propagation 2.0 PLH t Delay Time PHL 4.5 ( 6.0 2.0 4.5 6.0 t ...

Page 7

SWITCHING CHARACTERISTICS TEST WAVEFORM PLH PHL PLZ PZL The 1K load resistors should be connected between outputs and V line and the 50pF load capacitors CC should be connected ...

Page 8

M54/M74HC563/573 TEST CIRCUIT I (Opr.) CC INPUT WAVEFORM IS THE SAME AS THAT IN CASE OF SWITCHING CHARACTERISTICS TEST. 8/13 ...

Page 9

Plastic DIP20 (0.25) MECHANICAL DATA mm DIM. MIN. TYP. a1 0.254 B 1.39 b 0. 8.5 e 2.54 e3 22. 3.3 Z M54/M74HC563/573 inch MAX. MIN. TYP. 0.010 1.65 0.055 0.018 0.010 25.4 ...

Page 10

M54/M74HC563/573 Ceramic DIP20 MECHANICAL DATA DIM. MIN 0 2.29 G 0.4 I 1.27 L 0. 7.9 Q 10/13 mm TYP. MAX. MIN. 25 7.8 3.3 1.78 0.020 22.86 2.79 0.090 ...

Page 11

SO20 MECHANICAL DATA mm DIM. MIN. TYP 0. 0.35 b1 0. 12.60 E 10.00 e 1.27 e3 11.43 F 7. M54/M74HC563/573 inch MAX. MIN. TYP. 2.65 0.20 0.004 ...

Page 12

M54/M74HC563/573 PLCC20 MECHANICAL DATA DIM. MIN. A 9.78 B 8. 12/13 mm TYP. MAX. MIN. 10.03 0.385 9.04 0.350 4.57 0.165 2.54 0.56 8.38 0.290 1.27 5.08 0.38 ...

Page 13

Information furnished is believed to be accurate and reliable. However, SGS-THOMSON Microelectronics assumes no responsability for the consequences of use of such information nor for any infringement of patents or other rights of third parties which may results from its ...

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