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DUAL 'D' - TYPE FLIP-FLOP
HCC/HCF4013B
DUAL ’D’ – TYPE FLIP–FLOP
.
STATIC FLIP-FLOP OPERATION - RETAINS
.
MEDIUM-SPEED OPERATION - 16MHz (typ.)
CLOCK TOGGLE RATE AT 10V
.
QUIESCENT CURRENT SPECIFIED TO 20V
FOR HCC DEVICE
.
STANDARDIZED SYMMETRICAL OUTPUT
CHARACTERISTICS
EY
(Plastic Package)
F
(Ceramic Frit Seal Package)
.
5V, 10V, AND 15V PARAMETRIC RATINGS
.
INPUT CURRENT OF 100nA AT 18V AND 25
°
C
FOR HCC DEVICE
.
100% TESTED FOR QUIESCENT CURRENT
M1
(Micro Package)
C1
(Plastic Chip Carrier)
.
MEETS ALL REQUIREMENTS OF JEDEC TEN-
TATIVE STANDARD No. 13A, ”STANDARD
SPECIFICATIONS FOR DESCRIPTION OF ”B”
SERIES CMOS DEVICES”
ORDER CODES :
HCC4013BF
HCF4013BM1
HCF4013BEY
HCF4013BC1
PIN CONNECTIONS
DESCRIPTION
The
HCC4013B
(extended temperature range) and
HCF4013B
(intermediate temperature range) are
monolithic integrated circuits, available in 14-lead
dual in-line plastic or ceramic package and plastic
micropackage.
The
HCC/HCF4013B
consists of two identical, inde-
pendent data-type flip-flops. Each flip-flop has inde-
pendent data, set, reset, and clock inputs and Q and
Q outputs. These devices can be used for shift reg-
ister applications, and, by connecting Q output to the
data input, for counter and toggle applications. The
logic level present at the D input is transferred to the
Q output during the positive-going transition of the
clock pulse. Setting or resetting is independent of
the clock and is accomplished by a high level on the
set or reset line, respectively.
June 1989
1/11
.
SET-RESET CAPABILITY
STATE INDEFINITELY WITH CLOCK LEVEL
EITHER ”HIGH” OR ”LOW”
HCC/HFC4013B
ABSOLUTE MAXIMUM RATINGS
Symbol
Parameter
Value
Unit
V
DD
*
Supply Voltage :
HCC
Types
HCF
Types
– 0.5 to + 20
– 0.5 to + 18
V
V
V
i
Input Voltage
– 0.5 to V
DD
+ 0.5
V
I
I
DC Input Current (any one input)
±
10
mA
P
tot
Total Power Dissipation (per package)
Dissipation per Output Transistor
for T
op
= Full Package-temperature Range
200
mW
100
mW
T
op
Operating Temperature :
HCC
Types
HCF
Types
– 55 to + 125
–40to+85
C
°
C
T
stg
Storasge Temperature
– 65 to + 150
°
C
Stresses above those listed under ”Absolute Maximum Ratings” may cause permanent damage to the device. This is a stress rating
only and functional operation of the device at these or any other conditions above those indicated in the operational sections of this
specification is not implied. Exposure to absolute maximum rating conditions for external periods may affect device reliability.
* All voltages are with respect to V
SS
(GND).
RECOMMENDED OPERATING CONDITIONS
Symbol
Parameter
Value
Unit
V
DD
Supply Voltage :
HCC
Types
HCF
Types
3to18
3to15
V
V
V
I
Input Voltage
0 to V
DD
V
T
op
Operating Temperature :
HCC
Types
HCF
Types
– 55 to + 125
–40to+85
C
°
C
LOGIC DIAGRAM AND TRUTH TABLE
(one of two identical flip–flops)
CL
D
DRSQQ
–
0
0
0
0
1
–
1
0
0
1
0
–
\
–
NO CHANGE
X
0
0
QQ
X
X
1
0
0
1
X
X
0
1
1
0
X
X
1
1
1
1
LOGIC 0 = LOW
D
= LOW LEVEL
LOGIC 1 = HIGH
X = DON’T CARE
N(N) = FF1/FF2 TERMINAL
ASSIGNEMENT
2/11
°
°
HCC/HCF4013B
STATIC ELECTRICAL CHARACTERISTICS
(over recommended operating conditions)
Test Conditions
Value
Symbol
Parameter
V
I
V
O
|I
O
|V
DD
T
Low
*
25
°
C
T
Hig h
*
Unit
(V)
(V)
(
m
A) (V)
Min. Max. Min. Typ. Max. Min. Max.
I
L
Quiescent
Current
0/5
5
1
0.02
1
30
HCC
Types
0/10
10
2
0.02
2
60
0/15
15
4
0.02
4
120
0/20
20
20
0.04 20
600
m
A
0/5
5
4
0.02
4
30
HCF
Types
0/10
10
8
0.02
8
60
0/15
15
16
0.02 16
120
V
OH
Output High
Voltage
0/5
< 1
5
4.95
4.95
4.95
0/10
< 1 10 9.95
9.95
9.95
V
0/15
< 1 15 14.95
14.95
14.95
V
OL
Output Low
Voltage
5/0
< 1
5
0.05
0.05
0.05
10/0
< 1 10
0.05
0.05
0.05
V
15/0
< 1 15
0.05
0.05
0.05
V
IH
Input High
Voltage
0.5/4.5 < 1
5
3.5
3.5
3.5
1/9
< 1 10
7
7
7
V
1.5/13.5 < 1 15
11
11
11
V
IL
Input Low
Voltage
4.5/0.5 < 1
5
1.5
1.5
1.5
9/1
< 1 10
3
3
3
V
13.5/1.5 < 1 15
4
4
4
I
OH
Output
Drive
Current
0/5
2.5
5
– 2
– 1.6 – 3.2
– 1.15
HCC
Types
0/5
4.6
5 – 0.64
– 0.51 – 1
– 0.36
0/10
9.5
10 – 1.6
– 1.3 – 2.6
– 0.9
0/15 13.5
15 – 4.2
– 3.4 – 6.8
– 2.4
mA
0/ 5
2.5
5 – 1.53
– 1.36 – 3.2
– 1.1
HCF
Types
0/ 5
4.6
5 – 0.52
– 0.44 – 1
– 0.36
0/10
9.5
10 – 1.3
– 1.1 – 2.6
– 0.9
0/15 13.5
15 – 3.6
– 3.0 – 6.8
– 2.4
I
OL
Output
Sink
Current
0/5
0.4
5
0.64
0.51
1
0.36
HCC
Types
0/10
0.5
10
1.6
1.3
2.6
0.9
0/15
1.5
15
4.2
3.4
6.8
2.4
mA
0/5
0.4
5
0.52
0.44
1
0.36
HCF
Types
0/10
0.5
10
1.3
1.1
2.6
0.9
0/15
1.5
15
3.6
3.0
6.8
2.4
I
IH
,I
IL
Input
Leakage
Current
HCC
Types
0/18
18
±
0.1
±
10
–5
±
0.1
±
1
Any Input
m
A
10
–5
HCF
Types
0/15
15
±
0.3
±
±
0.3
±
1
C
I
Input Capacitance
Any Input
5
7.5
pF
*T
Low
=–55
°
C for
HCC
device : – 40
°
C for
HCF
device.
C for
HCF
device.
The Noise Margin for both ”1” and ”0” level is : 1V min. with V
DD
= 5V, 2V min. with V
DD
= 10V, 2.5 V min. with V
DD
=15V.
°
C for
HCC
device : + 85
°
3/11
*T
High
=+125
HCC/HFC4013B
DYNAMIC ELECTRICAL CHARACTERISTICS
(T
amb
=25
°
C, C
L
= 50pF, R
L
= 200k
W
,
typical temperature coefficient for all V
DD
= 0.3%/
°
C values, all input rise and fall time = 20ns)
Symbol
Parameter
Test Conditions
Value
Unit
V
DD
(V)
Min. Typ. Max.
t
PLH
,t
PHL
Propagation Delay Time
(clock to Q or Q outputs)
5
150
300
10
65
130
ns
15
45
90
t
PLH
Propagation Delay Time
(set to Q or reset to Q)
5
150
300
10
65
130
ns
15
45
90
t
PHL
Propagation Delay Time
(set to Q or reset to Q)
5
200
400
10
85
170
ns
15
60
120
t
THL
,t
TLH
Transition Time
5
100
200
10
50
100
ns
15
40
80
f
CL
*
Maximum Clock Input Frequency
5
3.5
7
10
8
16
MHz
15
12
24
t
W
Cock Pulse Width
5
140
70
10
60
30
ns
15
40
20
t
r
,t
f
**
Clock Input Rise or Fall Time
5
15
10
4
m
s
15
1
t
W
Set or Reset Pulse Width
5
180
90
10
80
40
ns
15
50
25
t
se tup
Data Setup Time
5
40
20
10
20
10
ns
15
15
7
*
Input t
r
,
f
= 5ns.
**
If more than unit is cascaded in a parallel clocked application, t
r
should be made less than or equal to the sum of the fixed
propagation delay time at 15pF and the transition time of the carry output driving stage for the estimated capacitive load.
4/11
HCC/HCF4013B
Typical Output Low (sink) Current Characteristics.
Minimum Output Low (sink) Current Charac-
teristics.
Typical Output High (source) Current Charac-
teristics.
Minimum Output High (source) Current Charac-
teristics.
Typical Propagation Delay Time vs. Load Capacit-
ance (CLOCK or SET to Q, CLOCK or RESET to
Q).
Typical Propagation Delay Time vs. Load Capacit-
ance (SET to Q or RESET to Q).
5/11
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