The MC74LCX574 is a high performance, non–inverting octal D–type
flip–flop operating from a 2.7 to 3.6V supply. High impedance TTL
compatible inputs significantly reduce current loading to input drivers
while TTL compatible outputs offer improved switching noise
performance. A VI specification of 5.5V allows MC74LCX574 inputs to be
safely driven from 5V devices.
The MC74LCX574 consists of 8 edge–triggered flip–flops with
individual D–type inputs and 3–state true outputs. The buffered clock and
buffered Output Enable (OE
flip–flops will store the state of individual D inputs that meet the setup and
hold time requirements on the LOW–to–HIGH Clock (CP) transition. With
the OE
LOW, the contents of the eight flip–flops are available at the
outputs. When the OE
state. The OE
The LCX574 flow through design facilitates easy PC board layout.
input level does not affect the operation of the flip–flops.
) are common to all flip–flops. The eight
is HIGH, the outputs go to the high impedance
LOW–VOLTAGE CMOS
OCTAL D–TYPE FLIP–FLOP
DW SUFFIX
20
1
PLASTIC SOIC
CASE 751D–04
• Designed for 2.7 to 3.6V V
Operation
CC
• 5V Tolerant — Interface Capability With 5V TTL Logic
• Supports Live Insertion and Withdrawal
• I
Specification Guarantees High Impedance When VCC = 0V
OFF
• LVTTL Compatible
• LVCMOS Compatible
• 24mA Balanced Output Sink and Source Capability
• Near Zero Static Supply Current in All Three Logic States (10µA)
Substantially Reduces System Power Requirements
• Latchup Performance Exceeds 500mA
• ESD Performance: Human Body Model >2000V; Machine Model >200V
Pinout: 20–Lead (Top View)
O0O1O2O3O4O5O6O7CP
V
CC
19201817161514
13
12
11
20
1
20
20
PIN NAMES
Pins
OE
CP
D0–D7
O0–O7
PLASTIC SOIC EIAJ
PLASTIC SSOP
1
1
Function
Output Enable Input
Clock Pulse Input
Data Inputs
3–State Outputs
CASE 940C–03
PLASTIC TSSOP
CASE 948E–02
M SUFFIX
CASE 967–01
SD SUFFIX
DT SUFFIX
OE
9/95
Motorola, Inc. 1996
2134567
D0D1D2D3D4D5D6D7GND
1
9
8
10
REV 2
Page 2
MC74LCX574
OE
CP
D0
LOGIC DIAGRAM
1
11
2
nCP
D
Q
19
O0
D1
D2
D3
D4
D5
D6
D7
3
4
5
6
7
8
9
nCP
D
nCP
D
nCP
D
nCP
D
nCP
D
nCP
D
nCP
D
Q
Q
Q
Q
Q
Q
Q
18
O1
17
O2
16
O3
15
O4
14
O5
13
O6
12
O7
INPUTS
OECPDnQOn
L
L
L↑XNCNCHold and Read Register
H↑XNCZHold and Disable Outputs
H
H
H = High Voltage Level; h = High V oltage Level One Setup T ime Prior to the Low–to–High Clock Transition; L = Low Voltage Level; l = Low
Voltage Level One Setup T ime Prior to the Low–to–High Clock Transition; NC = No Change; X = High or Low V oltage Level and T ransitions
are Acceptable; Z = High Impedance State; ↑= Low–to–High Transition; ↑
Inputs
MOTOROLALCX DATA
↑
↑
↑
↑
l
h
l
h
INTERNAL
LATCHES
L
H
L
H
OUTPUTS
OPERATING MODE
L
H
Z
Z
= Not a Low–to–High Transition; For ICC Reasons DO NOT FLOAT
2
Load Internal Register and Disable Outputs
Load and Read Register
BR1339 — REV 3
Page 3
MC74LCX574
ABSOLUTE MAXIMUM RATINGS*
SymbolParameterValueConditionUnit
V
CC
V
I
V
O
I
IK
I
OK
I
O
I
CC
I
GND
T
STG
* Absolute maximum continuous ratings are those values beyond which damage to the device may occur . Exposure to these conditions or conditions
beyond those indicated may adversely affect device reliability. Functional operation under absolute–maximum–rated conditions is not implied.
1. Output in HIGH or LOW State. IO absolute maximum rating must be observed.
RECOMMENDED OPERATING CONDITIONS
SymbolParameterMinTypMaxUnit
V
CC
V
I
V
O
I
OH
I
OL
I
OH
I
OL
T
A
∆t/∆VInput Transition Rise or Fall Rate, VIN from 0.8V to 2.0V ,
DC Supply Voltage–0.5 to +7.0V
DC Input Voltage–0.5 ≤ VI ≤ +7.0V
DC Output Voltage–0.5 ≤ VO ≤ +7.0Output in 3–StateV
–0.5 ≤ VO ≤ VCC + 0.5Note 1.V
DC Input Diode Current–50VI < GNDmA
DC Output Diode Current–50VO < GNDmA
+50VO > V
DC Output Source/Sink Current±50mA
DC Supply Current Per Supply Pin±100mA
DC Ground Current Per Ground Pin±100mA
Storage Temperature Range–65 to +150°C
Supply VoltageOperating
Data Retention Only
Input Voltage05.5V
Output Voltage(HIGH or LOW State)
3. Skew is defined as the absolute value of the difference between the actual propagation delay for any two separate outputs of the same device.
The specification applies to any outputs switching in the same direction, either HIGH–to–LOW (t
guaranteed by design.
Power–Off Leakage CurrentVCC = 0V; VI or VO = 5.5V10µA
Quiescent Supply Current
Increase in ICC per Input2.7 ≤ VCC ≤ 3.6V; VIH = VCC – 0.6V500µA
Clock Pulse Frequency1150MHz
Propagation Delay
CP to On
Output Enable Time to HIGH and LOW
Levels
Output Disable Time from HIGH and
LOW Levels
Setup TIme, HIGH or LOW Dn to CP12.52.5ns
Hold TIme, HIGH or LOW Dn to CP11.51.5ns
CP Pulse Width, HIGH or LOW33.33.3ns
Output–to–Output Skew
(Note 3.)
2.7 ≤ VCC ≤ 3.6V; VI = GND or V
2.7 ≤ VCC ≤ 3.6V; 3.6 ≤ VI or VO ≤ 5.5V±10µA
11.5
21.5
21.5
VI = VIH or V
VCC = 3.0V to 3.6VVCC = 2.7V
1.5
1.5
1.5
IL
CC
Limits
TA = –40°C to +85°C
8.5
8.5
8.5
8.5
6.5
6.5
1.0
1.0
) or LOW–to–HIGH (t
OSHL
1.5
1.5
1.5
1.5
1.5
1.5
±5.0µA
10µA
9.5
9.5
9.5
9.5
7.0
7.0
); parameter
OSLH
ns
ns
ns
ns
DYNAMIC SWITCHING CHARACTERISTICS
TA = +25°C
SymbolCharacteristicConditionMinTypMaxUnit
V
OLP
V
OLV
4. Number of outputs defined as “n”. Measured with “n–1” outputs switching from HIGH–to–LOW or LOW–to–HIGH. The remaining output is
measured in the LOW state.
Dynamic LOW Peak Voltage (Note 4.)VCC = 3.3V, CL = 50pF, VIH = 3.3V, VIL = 0V0.8V
Dynamic LOW Valley Voltage (Note 4.)VCC = 3.3V, CL = 50pF, VIH = 3.3V, VIL = 0V0.8V
CAPACITIVE CHARACTERISTICS
SymbolParameterConditionTypicalUnit
C
IN
C
OUT
C
PD
MOTOROLALCX DATA
Input CapacitanceVCC = 3.3V, VI = 0V or V
Output CapacitanceVCC = 3.3V, VI = 0V or V
Power Dissipation Capacitance10MHz, VCC = 3.3V, VI = 0V or V
4
CC
CC
CC
7pF
8pF
25pF
BR1339 — REV 3
Page 5
MC74LCX574
2.7V
Dn
t
PLH
1.5V
t
h
, t
f
max
PHL
CP
CP
t
s
CP
On
WAVEFORM 1 – PROPAGATION DELAYS, SETUP AND HOLD TIMES
tR = tF = 2.5ns, 10% to 90%; f = 1MHz; tW = 500ns
1.5V
1.5V
0V
2.7V
0V
V
V
1.5V
1.5V
OH
OL
OE
On
On
t
t
2.7V
1.5V
t
PZH
1.5V
t
PZL
1.5V
WAVEFORM 2 – OUTPUT ENABLE AND DISABLE TIMES
tR = tF = 2.5ns, 10% to 90%; f = 1MHz; tW = 500ns
w
w
1.5V
1.5V
t
PHZ
t
PLZ
2.7V
0V
2.7V
0V
1.5V
0V
V
CC
VOH – 0.3V
≈
0V
≈
3.0V
VOL + 0.3V
GND
PULSE
GENERATOR
tR = tF = 2.5ns (or fast as required) from 10% to 90%;
WAVEFORM 3 – PULSE WIDTH
Output requirements: VOL
≤
0.8V, VOH ≥ 2.0V
Figure 1. AC Waveforms
V
CC
DUT
R
T
TESTSWITCH
t
, t
PLH
PHL
t
, t
PZL
PLZ
Open Collector/Drain t
t
, t
PZH
PHZ
CL = 50pF or equivalent (Includes jig and probe capacitance)
RL = R1 = 500Ω or equivalent
RT = Z
of pulse generator (typically 50Ω)
OUT
PLH
and t
PHL
C
L
Open
6V
6V
GND
6V
R
1
R
L
OPEN
GND
LCX DATABR1339 — REV 3
Figure 2. T est Circuit
5MOTOROLA
Page 6
MC74LCX574
–A
–
1120
–B
P 10 PL
–
110
D
20 PL
0.010 (0.25)T AB
M
G18 PL
SS
C
K
–T
SEATING
–
PLANE
OUTLINE DIMENSIONS
DW SUFFIX
PLASTIC SOIC PACKAGE
CASE 751D–04
ISSUE E
J
F
MM
B
M
0.010 (0.25)
R X 45°
NOTES:
1. DIMENSIONING AND TOLERANCING PER
ANSI Y14.5M, 1982.
2. CONTROLLING DIMENSION: MILLIMETER.
3. DIMENSIONS A AND B DO NOT INCLUDE
MOLD PROTRUSION.
4. MAXIMUM MOLD PROTRUSION 0.150
(0.006) PER SIDE.
5. DIMENSION D DOES NOT INCLUDE
DAMBAR PROTRUSION. ALLOWABLE
DAMBAR PROTRUSION SHALL BE 0.13
(0.005) TOTAL IN EXCESS OF D DIMENSION
AT MAXIMUM MATERIAL CONDITION.
MILLIMETERSINCHES
MINMINMAXMAX
DIM
12.65
A
7.40
B
2.35
C
0.35
D
0.50
F
1.27 BSC0.050 BSC
G
0.25
J
0.10
K
0
M
°
P
10.05
R
0.25
12.95
7.60
2.65
0.49
0.90
0.32
0.25
7
10.55
0.75
0.499
0.510
0.292
0.299
0.093
0.104
0.014
0.019
0.020
0.035
0.010
0.012
0.004
0.009
0
7
°
°
°
0.395
0.010
0.415
0.029
2011
1
Z
D
e
b
0.13 (0.005)
M
HEE
10
A
A
1
0.10 (0.004)
PLASTIC SOIC EIAJ PACKAGE
M SUFFIX
CASE 967–01
ISSUE O
L
E
_
M
L
DETAIL P
VIEW P
NOTES:
1 DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
2 CONTROLLING DIMENSION: MILLIMETER.
3 DIMENSIONS D AND E DO NOT INCLUDE MOLD
FLASH OR PROTRUSIONS AND ARE MEASURED
AT THE PARTING LINE. MOLD FLASH OR
Q
1
PROTRUSIONS SHALL NOT EXCEED 0.15 (0.006)
PER SIDE.
4 TERMINAL NUMBERS ARE SHOWN FOR
REFERENCE ONLY.
5 THE LEAD WIDTH DIMENSION (b) DOES NOT
INCLUDE DAMBAR PROTRUSION. ALLOWABLE
DAMBAR PROTRUSION SHALL BE 0.08 (0.003)
TOTAL IN EXCESS OF THE LEAD WIDTH
DIMENSION AT MAXIMUM MATERIAL CONDITION.
DAMBAR CANNOT BE LOCATED ON THE LOWER
RADIUS OR THE FOOT. MINIMUM SPACE
BETWEEN PROTRUSIONS AND ADJACENT LEAD
TO BE 0.46 ( 0.018).
10
_
INCHES
0
_
MILLIMETERS
c
DIMMINMAXMINMAX
A
--- 2.05--- 0.081
A
0.050.200.002 0.008
1
b
0.350.500.014 0.020
c
0.180.270.007 0.011
D
12.35 12.80 0.486 0.504
E
5.105.450.201 0.215
e
1.27 BSC0.050 BSC
H
7.408.200.2910.323
E
L
0.500.850.0200.033
L
1.101.500.0430.059
E
M
0
_
Q
0.700.900.0280.035
1
Z
--- 0.81--- 0.032
10
_
MOTOROLALCX DATA
6
BR1339 — REV 3
Page 7
OUTLINE DIMENSIONS
MC74LCX574
0.076 (0.003)
SEATING
–T–
PLANE
L/2
L
PIN 1
IDENT
0.20 (0.008)T
C
D
K20X REF
0.12 (0.005)V
2011
A
–V–
M
S
U
G
SD SUFFIX
PLASTIC SSOP PACKAGE
CASE 940C–03
M
S
U
T
B
101
–U–
H
ISSUE B
S
N
J
DETAIL E
0.25 (0.010)
N
F
DETAIL E
K
K1
SECTION N–N
NOTES:
13 DIMENSIONING AND TOLERANCING PER ANSI
Y14.5M, 1982.
14 CONTROLLING DIMENSION: MILLIMETER.
15 DIMENSION A DOES NOT INCLUDE MOLD FLASH,
PROTRUSIONS OR GATE BURRS. MOLD FLASH
OR GATE BURRS SHALL NOT EXCEED 0.15
(0.006) PER SIDE.
16 DIMENSION B DOES NOT INCLUDE INTERLEAD
FLASH OR PROTRUSION. INTERLEAD FLASH OR
PROTRUSION SHALL NOT EXCEED 0.15 (0.006)
PER SIDE.
M
–W–
17 DIMENSION K DOES NOT INCLUDE DAMBAR
PROTRUSION/INTRUSION. ALLOWABLE DAMBAR
PROTRUSION SHALL BE 0.13 (0.005) TOTAL IN
EXCESS OF K DIMENSION AT MAXIMUM
MATERIAL CONDITION. DAMBAR INTRUSION
SHALL NOT REDUCE DIMENSION K BY MORE
THAN 0.07 (0.002) AT LEAST MATERIAL
CONDITION.
18 TERMINAL NUMBERS ARE SHOWN FOR
REFERENCE ONLY.
19 DIMENSION A AND B ARE TO BE DETERMINED
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the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of the application or use of any product or circuit, and
specifically disclaims any and all liability, including without limitation consequential or incidental damages. “T ypical” parameters which may be provided in Motorola
data sheets and/or specifications can and do vary in different applications and actual performance may vary over time. All operating parameters, including “Typicals”
must be validated for each customer application by customer’s technical experts. Motorola does not convey any license under its patent rights nor the rights of
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applications intended to support or sustain life, or for any other application in which the failure of the Motorola product could create a situation where personal injury
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arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim alleges that
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