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HCC40110B
HCF40110B
DECADE UP-DOWN COUNTER/DECODER/LATCH/DRIVER
. SEPARATE CLOCK-UP AND CLOCK-DOWN
LINES
. CAPABLE OF DRIVING COMMON CATHODE
LEDS AND OTHER DISPLAYS DIRECTLY
. ALLOWS CASCADING WITHOUT ANY EX-
TERNAL CIRCUITRY
. MAXIMUM INPUT CURRENT OF 1 µA AT 18 V
(full package-temperature range)
. QUIESCENT CURRENT AT 20 V FOR HCC DE-
VICE
. 5 V, 10 V AND 15 V PARAMETRIC RATINGS
. INPUT CURRENT OF 100 nA AT 18 V AND
25 °C FOR HCC DEVICE
. 100 % TESTED FOR QUIESCENT CURRENT
. MEETS ALL REQUIREMENTS OF JEDECTEN-
TATIVE STANDARD No. 13 A, ”STANDARD
SPECIFICATIONS FOR DESCRIPTION OF ”B”
SERIES CMOS DEVICES”
EY
(Plastic Package)
F
(Ceramic Package)
C1
(Chip Carrier)
DESCRIPTION
The HCC 40110B (extended temperature range)
and HCF 40110B (intermediate temperature range)
are monolithic integrated circuits, available in 16-
lead dual in-line plastic or ceramic package. The
HCC/HCF 40110B is a dual-clocked up/down
counter with a special preconditioning circuit that
allows the counter to be clocked, via positive going
inputs, up or down regardless of that state or timing
(within 100 ns typ.) of the other clock line. The clock
signal is fed into the control logic and Johnson
counter after is preconditioned. The outputs of the
Johnson counter (which include antilock gating to
avoid being locked at an illegal state) are fed into a
latch. This data can be fed directly to the decoder
through the latch or can be strobed to hold a particu-
lar count while the Johnson counter continues to be
clocked. The decoder feeds a seven-segment bipo-
lar output driver which can source up to 25 mA to
drive LEDs and other displays such as low-voltage
fluorescent and incandescent lamps. A short dura-
tion negative-going pulse appears on the BORROW
output when the count changes from 0 to 9 or the
CARRY output when the count changes from 9 to
0. At the other times the BORROW and CARRY out-
put are a logic 1. The CARRY and BORROW out-
puts can be tied directly to the clock-up and
clock-down lines respectively of another HCC/HCF
40110B for easy cascading of several counters.
ORDER CODES :
HCC40110BF
HCF40110BEY
HCF40110BC1
PIN CONNECTIONS
September 1988
1/11

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HCC/HCF40110B
FUNCTIONAL DIAGRAM
ABSOLUTE MAXIMUM RATING
Symbol
Parameter
Value
Unit
VDD *
Supply Voltage: HCC Types
HCF Types
-0.5 to +20
-0.5 to +18
V
V
Vi Input Voltage
-0.5 to VDD + 0.5
V
II DC Input Current (any one input)
± 10 mA
Ptot Total Power Dissipation (per package)
200 mW
Dissipation per Output Transistor
for Top = Full Package Temperature Range
100 mW
Top Operating Temperature: HCC Types
HCF Types
-55 to +125
-40 to +85
oC
oC
Tstg Storage Temperature
-65 to +150
oC
Stresses above those listed under ”Absolute Maximum Ratings” may cause permanent damage to the device. This is a stress ratingonly 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 voltage values are referred to VSS pin voltage.
RECOMMENDED OPERATING CONDITIONS
Symbol
VDD
VI
Top
Parameter
Supply Voltage: HCC Types
HCF Types
Input Voltage
Operating Temperature: HCC Types
HCF Types
Value
3 to 18
3 to 15
0 to VDD
-55 to +125
-40 to +85
Unit
V
V
V
oC
oC
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LOGIC DIAGRAMS
HCC/HCF40110
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HCC/HCF40110B
LOGIC DIAGRAM (continued)
DISPLAY SEGMENTS
Ouptut Low (sink) Current Characterisitcs.
TRUTH TABLE
CLOCK UP*
CLOCK
DOWN*
X
LATCH
ENABLE
0
TOGGLE
ENABLE
0
RESET
0
COUNTER
DISPLAY
Increments by 1 Follows Counter
X 0 0 0 Decrement by 1 Follows Counter
X
X
0
No Change
No Change
X
X
X
X
1
Goes to 00000
Follows Counter
(Display = 0 )
X
XX
1
0
Inhibited
Remains Fixed
X 1 0 0 Increments by 1 Remains Fixed
X 1 0 0 Decrement by 1 Remains Fixed
x = Don’t care 1 = High State 2 = Low State
* Typically 100 ns between clock-up and clock-down positive transitions are required to ensure proper counting
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HCC/HCF40110
STATIC ELECTRICAL CHARACTERISTICS (over recommended operating conditions)
Symbol
Parameter
Test Conditios
VI VO |IO| VDD
(V) (V) (µA) (V)
TLOW *
Min. Max.
Value
25 oC
Min. Typ. Max.
THIGH *
Min. Max.
IL Quiescent
0/5
Current
HCC 0/10
Types 0/15
5 5 0.04 5 150
10 10 0.04 10 300
15 15 0.04 20 600
0/20
20
20
0.48 100
3000
HCF 0/5
Types 0/10
0/15
5 5 0.04 20 150
10 10 0.04 40 300
15 15 0.04 80 600
VOH Output High
Voltage
0/5
0/10
5
10
4.95
9.55
0/15 15
14.55
VOL Output Low
Voltage
5/0
10/0
5 0.05
10 0.05
0 0.05
0 0.05
0.05
0.05
15/0
15 0.05
0 0.05
0.05
VIH Input High
Voltage
0.5/3.8
1/8.8
5 3.5
10 7
3.5
7
3.5
7
1.5/3.8
15 11
11
11
VIL Input Low
Voltage
0.5/3.8
1/8.8
5
10
1.5
3
1.5 1.5
33
1.5/3.8
15
4
44
VOL Output Drive
Voltage
(for HCC/HCF)
05
10 5
25 5
4.55
4.13
3.64
0 10
9.55
10 10
9.25
25 10
8.85
0 15
14.55
10 15
14.21
25 15
13.9
IOL Output
Sink
Current
HCC 0/5
Types 0/10
0/15
0.4
0.5
1.5
5 0.64
10 1.6
15 4.2
0.51 1
1.3 2.6
3.4 6.8
0.36
0.9
2.4
HCF 0/5
Types 0/10
0/15
0.4
0.5
1.5
5 0.52
10 1.3
15 3.6
0.44 1
1.1 2.6
3.0 6.8
0.36
0.9
2.4
IIH, IIL
Input
Leakage
Current
HCC
Types
HCF
Types
0/18
0/15
Any Input
18
15
±0.1
±0.3
±10-5 ±0.1
±10-5 ±0.3
±1
±1
CI Input Capacitance
Any Input
5 7.5
* TLOW = -55 oC for HCC device: -40 oC for HCF device.
* THIGH = +125 oC for HCC device: +85 oC for HCF device.
The Noise Margin for both ”1” and ”0” level is: 1V min. with VDD = 5 V, 2 V min. with VDD = 10 V, 2.5 V min. with VDD = 15 V
Unit
µA
V
V
V
V
V
mA
µA
pF
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