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MC14013BDG

Part # MC14013BDG
Description LOG CMOS D FLIP FLOP DUAL - Rail/Tube
Category IC
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Technical Document


DISCLAIMER: The information provided herein is solely for informational purposes. Customers must be aware of the suitability of this product for their application, and consider that variable factors such as Manufacturer, Product Category, Date Codes, Pictures and Descriptions may differ from available inventory.

© Semiconductor Components Industries, LLC, 2006
October, 2006 Rev. 7
1 Publication Order Number:
MC14013B/D
MC14013B
Dual Type D Flip−Flop
The MC14013B dual type D flipflop is constructed with MOS
Pchannel and Nchannel enhancement mode devices in a single
monolithic structure. Each flipflop has independent Data, (D), Direct
Set, (S), Direct Reset, (R), and Clock (C) inputs and complementary
outputs (Q and Q). These devices may be used as shift register
elements or as type T flipflops for counter and toggle applications.
Features
Static Operation
Diode Protection on All Inputs
Supply Voltage Range = 3.0 Vdc to 18 Vdc
Logic EdgeClocked FlipFlop Design
Logic state is retained indefinitely with clock level either high or
low; information is transferred to the output only on the
positivegoing edge of the clock pulse
Capable of Driving Two Lowpower TTL Loads or One Lowpower
Schottky TTL Load Over the Rated Temperature Range
PinforPin Replacement for CD4013B
PbFree Packages are Available
MAXIMUM RATINGS (Voltages Referenced to V
SS
)
Symbol Parameter Value Unit
V
DD
DC Supply Voltage Range 0.5 to +18.0 V
V
in
, V
out
Input or Output Voltage Range
(DC or Transient)
0.5 to V
DD
+ 0.5 V
I
in
, I
out
Input or Output Current
(DC or Transient) per Pin
± 10 mA
P
D
Power Dissipation, per Package
(Note 1)
500 mW
T
A
Ambient Temperature Range 55 to +125 °C
T
stg
Storage Temperature Range 65 to +150 °C
T
L
Lead Temperature
(8Second Soldering)
260 °C
Stresses exceeding Maximum Ratings may damage the device. Maximum
Ratings are stress ratings only. Functional operation above the Recommended
Operating Conditions is not implied. Extended exposure to stresses above the
Recommended Operating Conditions may affect device reliability.
1. Temperature Derating:
Plastic “P and D/DW” Packages: – 7.0 mW/_C From 65_C To 125_C
This device contains protection circuitry to guard against damage due to high
static voltages or electric fields. However, precautions must be taken to avoid
applications of any voltage higher than maximum rated voltages to this
highimpedance circuit. For proper operation, V
in
and V
out
should be constrained
to the range V
SS
v (V
in
or V
out
) v V
DD
.
Unused inputs must always be tied to an appropriate logic voltage level
(e.g., either V
SS
or V
DD
). Unused outputs must be left open.
MARKING
DIAGRAMS
1
14
PDIP14
P SUFFIX
CASE 646
MC14013BCP
AWLYYWWG
SOIC14
D SUFFIX
CASE 751A
TSSOP14
DT SUFFIX
CASE 948G
1
14
14013BG
AWLYWW
14
013B
ALYW G
G
1
14
A = Assembly Location
WL, L = Wafer Lot
YY, Y = Year
WW, W = Work Week
G or G = PbFree Package
SOEIAJ14
F SUFFIX
CASE 965
1
14
MC14013B
ALYWG
See detailed ordering and shipping information in the package
dimensions section on page 2 of this data sheet.
ORDERING INFORMATION
http://onsemi.com
(Note: Microdot may be in either location)
MC14013B
http://onsemi.com
2
TRUTH TABLE
Inputs Outputs
Clock
Data Reset Set Q Q
0 0 0 0 1
1 0 0 1 0
X 0 0 Q Q
X X 1 0 0 1
X X 0 1 1 0
X X 1 1 1 1
X = Don’t Care
† = Level Change
BLOCK DIAGRAM
10
11
9
8
4
3
5
6
12
13
2
1
S
S
R
R
D
C
D
C
Q
Q
Q
Q
V
DD
= PIN 14
V
SS
= PIN 7
11
12
13
14
8
9
105
4
3
2
1
7
6
R
B
C
B
Q
B
Q
B
V
DD
S
B
D
B
R
A
C
A
Q
A
Q
A
V
SS
S
A
D
A
PIN ASSIGNMENT
ORDERING INFORMATION
Device Package Shipping
MC14013BCP PDIP14
25 Units / Rail
MC14013BCPG PDIP14
(PbFree)
MC14013BD SOIC14
55 Units / Rail
MC14013BDG SOIC14
(PbFree)
MC14013BDR2 SOIC14
2500 Units / Tape & Reel
MC14013BDR2G SOIC14
(PbFree)
MC14013BDTR2 TSSOP14*
MC14013BDTR2G TSSOP14*
MC14013BF SOEIAJ14
50 Units / Rail
MC14013BFG
SOEIAJ14
(PbFree)
MC14013BFEL SOEIAJ14
2000 Units / Tape & Reel
MC14013BFELG
SOEIAJ14
(PbFree)
For information on tape and reel specifications, including part orientation and tape sizes, please refer to our Tape and Reel Packaging
Specifications Brochure, BRD8011/D.
*This package is inherently PbFree.
No
Change
MC14013B
http://onsemi.com
3
ELECTRICAL CHARACTERISTICS (Voltages Referenced to V
SS
)
Characteristic Symbol
V
DD
Vdc
55_C 25_C 125_C
Unit
Min Max Min Typ
(2)
Max Min Max
Output Voltage “0” Level
V
in
= V
DD
or 0
V
in
= 0 or V
DD
“1” Level
V
OL
5.0
10
15
0.05
0.05
0.05
0
0
0
0.05
0.05
0.05
0.05
0.05
0.05
Vdc
V
OH
5.0
10
15
4.95
9.95
14.95
4.95
9.95
14.95
5.0
10
15
4.95
9.95
14.95
Vdc
Input Voltage “0” Level
(V
O
= 4.5 or 0.5 Vdc)
(V
O
= 9.0 or 1.0 Vdc)
(V
O
= 13.5 or 1.5 Vdc)
(V
O
= 0.5 or 4.5 Vdc) “1” Level
(V
O
= 1.0 or 9.0 Vdc)
(V
O
= 1.5 or 13.5 Vdc)
V
IL
5.0
10
15
1.5
3.0
4.0
2.25
4.50
6.75
1.5
3.0
4.0
1.5
3.0
4.0
Vdc
V
IH
5.0
10
15
3.5
7.0
11
3.5
7.0
11
2.75
5.50
8.25
3.5
7.0
11
Vdc
Output Drive Current
(V
OH
= 2.5 Vdc) Source
(V
OH
= 4.6 Vdc)
(V
OH
= 9.5 Vdc)
(V
OH
= 13.5 Vdc)
(V
OL
= 0.4 Vdc) Sink
(V
OL
= 0.5 Vdc)
(V
OL
= 1.5 Vdc)
I
OH
5.0
5.0
10
15
– 3.0
– 0.64
– 1.6
– 4.2
– 2.4
– 0.51
1.3
3.4
– 4.2
– 0.88
– 2.25
8.8
– 1.7
0.36
– 0.9
2.4
mAdc
I
OL
5.0
10
15
0.64
1.6
4.2
0.51
1.3
3.4
0.88
2.25
8.8
0.36
0.9
2.4
mAdc
Input Current I
in
15 ± 0.1 ± 0.00001 ± 0.1 ± 1.0
mAdc
Input Capacitance
(V
in
= 0)
C
in
5.0 7.5 pF
Quiescent Current
(Per Package)
I
DD
5.0
10
15
1.0
2.0
4.0
0.002
0.004
0.006
1.0
2.0
4.0
30
60
120
mAdc
Total Supply Current
(3)
(4)
(Dynamic plus Quiescent,
Per Package)
(C
L
= 50 pF on all outputs, all
buffers switching)
I
T
5.0
10
15
I
T
= (0.75 mA/kHz) f + I
DD
I
T
= (1.5 mA/kHz) f + I
DD
I
T
= (2.3 mA/kHz) f + I
DD
mAdc
2. Data labelled “Typ” is not to be used for design purposes but is intended as an indication of the IC’s potential performance.
3. The formulas given are for the typical characteristics only at 25_C.
4. To calculate total supply current at loads other than 50 pF:
I
T
(C
L
) = I
T
(50 pF) + (C
L
50) Vfk
where: I
T
is in mA (per package), C
L
in pF, V = (V
DD
V
SS
) in volts, f in kHz is input frequency, and k = 0.002.
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