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M74HC564B1RSTMN/a2780avaiOCTAL D-TYPE FLIP FLOP WITH 3 STATE OUTPUT (INVERTING)


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M74HC564B1R
OCTAL D-TYPE FLIP FLOP WITH 3 STATE OUTPUT (INVERTING)
1/11August 2001 HIGH SPEED:
fMAX = 90MHz (TYP.) at VCC = 6V LOW POWER DISSIPATION:CC = 4μA(MAX.) at TA =25°C HIGH NOISE IMMUNITY:NIH = VNIL = 28 % VCC (MIN.) SYMMETRICAL OUTPUT IMPEDANCE:
|IOH| = IOL = 6mA (MIN) BALANCED PROPAGATION DELAYS:
tPLH ≅ tPHL WIDE OPERATING VOLTAGE RANGE:CC (OPR) = 2V to 6V PIN AND FUNCTION COMPATIBLE WITH
74 SERIES 564
DESCRIPTION

The M74HC564 is an high speed CMOS OCTAL
D-TYPE FLIP FLOP WITH 3-STATE OUTPUTS
INVERTING fabricated with silicon gate C2 MOS
technology.
This 8 bit D-TYPE FLIP FLOP is controlled by a
clock input (CK) and an output enable input (OE).
On the positive transition of the clock, the Q
outputs will be set to the logic state that were
setup at the D inputs.
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 outputs will be in a
high impedance state.
The output control does not affect the internal
operation of flip-flops; that is, the old data can be
retained or the new data can be entered even
while the outputs are off.
All inputs are equipped with protection circuits
against static discharge and transient excess
voltage.
M74HC564

OCTAL D-TYPE FLIP FLOP
WITH 3 STATE OUTPUT INVERTING
PIN CONNECTION AND IEC LOGIC SYMBOLS
ORDER CODES
M74HC564
2/11
INPUT AND OUTPUT EQUIVALENT CIRCUIT PIN DESCRIPTION
TRUTH TABLE

X: Don’t Care
Z: High Impedance
LOGIC DIAGRAM

This logic diagram has not be used to estimate propagation delays
M74HC564
3/11
ABSOLUTE MAXIMUM RATINGS

Absolute Maximum Ratings are those values beyond which damage to the device may occur. Functional operation under these conditions is
not implied
(*) 500mW at 65 °C; derate to 300mW by 10mW/°C from 65°C to 85°C
RECOMMENDED OPERATING CONDITIONS
M74HC564
4/11
DC SPECIFICATION
M74HC564
5/11
AC ELECTRICAL CHARACTERISTICS (C
L = 50 pF, Input tr = tf = 6ns)
CAPACITIVE CHARACTERISTICS

1) CPD is defined as the value of the IC’s internal equivalent capacitance which is calculated from the operating current consumption without
load. (Refer to Test Circuit). Average operating current can be obtained by the following equation. ICC(opr) = CPD x VCC x fIN + ICC/8(per
flip-fllop)
M74HC564
6/11
TEST CIRCUIT

CL = 50pF/150pF or equivalent (includes jig and probe capacitance)
R1 = 1KΩ or equivalent
RT = ZOUT of pulse generator (typically 50Ω)
WAVEFORM 1: CK TO Qn PROPAGATION DELAYS, Dn TO CK SETUP AND HOLD TIMES, CK
MAXIMUM FREQUENCY (f=1MHz; 50% duty cycle)
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