Datasheet HCF4038B, HCF4032B Datasheet (SGS Thomson Microelectronics)

.INVERT INPUTS ON ALL ADDERS FOR SUM
COMPLEMENTING APPLICATIONS
.FULLY STATIC OPERATION...DC TO 10MHz
(typ.)@ VDD=10V
.BUFFEREDINPUTS AND OUTPUTS
.SINGLE-PHASE CLOCKING
.STANDARDIZED SYMMETRICAL OUTPUT
CHARACTERISTICS
.QUIESCENT CURRENT SPECIFIED TO 20V
FOR HCC DEVICE
.5V, 10V, AND 15V PARAMETRIC RATING
.INPUT CURRENT OF100nAAT18VAND 25°C
FOR HCC DEVICE
.100% TESTEDFOR QUIESCENTCURRENT
.MEETSALLREQUIREMENTSOFJEDECTEN-
TATIVESTANDARDN°13A,”STANDARDSPE­CIFICATIONS FOR DESCRIPTION OF ”B” SERIESCMOS DEVICES”
HCC/HCF4032B HCC/HCF4038B
TRIPLE SERIAL ADDERS
EY
(Plastic Package)
M1
(MicroPackage)
ORDER CODES :
HCC40XXBF HCF40XXBM1 HCF40XXBEY HCF40XXBC1
(Ceramic Package)
(PlasticChipCarrier)
F
C1
DESCRIPTI ON
The HCC/4032B/4038B (extended temperature range) and HCF4032B/4038B (intermediate tem- perature range) are monolithic integrated circuits, available in 16-lead dual in-line plastic or ceramic package and plasticmicro package.
The HCC/HCF4032B and HCC/HCF4038B types consist of three serial adder circuits with common CLOCK and CARRY-RESET inputs. Each adder has two provisions for two serial DATA INPUT sig­nals and an INVERT command signal. When the command signal is a logical ”1”, the sum is com­plemented. Data words enter the adder with the leastsignificantbit first;thesignbittrails.Theoutput istheMOD2sumoftheinput bitsplusthecarry from the previous bitposition.The carry is only added at the positive-going clock transition for the HCC/HCF4032B or at the negative-going clock for the HCC/HCF4038B, thus, for spike-free operation the input data transitions should occur as soon as possible after the triggering edge. The CARRY is reset to a logical ”0” at the endof each word by ap­plyinga logical ”1” signal toa CARRY-RESET input one-bit-position before the application of the first bit of the next word.
PIN CONNECTIONS
June1989
1/11
HCC/HCF4032B/4038B
FUN CTIONAL DIAGR A M
ABSOLUTE M AXI MUM RAT INGS
Symbol Parameter Value Unit
V
* Supply Voltage : HC C Types
DD
HCF Types
V
Input Voltage – 0.5 to VDD+ 0.5 V
i
I
DC Input Current (any one input) ± 10 mA
I
P
Total Power Dissipation (per package)
tot
– 0.5 to + 20 – 0.5 to + 18
200
V V
mW Dissipation per Output Transistor for Top= Full Package-temperature Range
T
Operating Temperature : HCC Types
op
HCF Types
T
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 voltage values are referred to VSSpin voltage.
Storage Temperature – 65 to + 150 °C
stg
100
– 55 to + 125
–40to+85
mW
°C °C
RECOMMENDED OPERATING CONDITIONS
Symbol Parameter Value Unit
V
T
Supply Voltage : HCC Types
DD
HCF Types
V
Input Voltage 0 to V
I
Operating Temperature : HCC Types
op
HCF Types
3to18 3to15
DD
– 55 to + 125
–40to+85
V V
V
°C °C
2/11
LOGI C AND TIMIN G DIAG RA M S
(oneof three serial adders)
4032B
HCC/HCF4032B/4038B
WORD 1 0.0111100 = + 60 WORD 2 0.0110010 = + 50
0.1101110 = +110
WORD3 1.1011011 = – 37 WORD4 1.1001110 = – 50
1.0101001= –87
3/11
HCC/HCF4032B/4038B
LOGI C AND TIMIN G DIAG RA M S (continued)
4038B
4/11
WORD 1 1.1000011 = – 61 WORD 2 1.1001101 = – 51
1.0010000 = –112
WORD3 0.0100100 = + 36 WORD4 0.0110001 = + 49
0.1010101= + 85
HCC/HCF4032B/4038B
STATIC ELECTRICAL CHARACTERISTICS (over recommended operating conditions)
Test Conditions Value
Symbol Parameter
I
Quiescent
L
Current
HCC Types
V
V
O
| IO| V
I
(V) (V) (µA) (V)
T
DD
* 25°CT
Low
Min. Max. Min. Typ. Max. Min. Max.
High
0/ 5 5 5 0.04 5 150 0/10 10 10 0.04 10 300 0/15 15 20 0.04 20 600 0/20 20 100 0.08 100 3000
0/ 5 5 20 0.04 20 150
HCF
0/10 10 40 0.04 40 300
Types
0/15 15 80 0.04 80 600
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 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 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
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
13.5/1.5 < 1 15 4 4 4
I
Output
OH
Drive Current
0/ 5 2.5 5 – 2 – 1.6 – 3.2
HCC
0/ 5 4.6 5
Types
0.64
0.51
1.15
–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
0/ 5 2.5 5
HCF
0/ 5 4.6 5
Types
1.53
0.52
–3.2 –1.1
1.36 –
–1
0.44
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
Output
OL
Sink Current
0/ 5 0.4 5 0.64 0.51 1 0.36
HCC
0/10 0.5 10 1.6 1.3 2.6 0.9
Types
0/15 1.5 15 4.2 3.4 6.8 2.4
0/ 5 0.4 5 0.52 0.44 1 0.36
HCF
0/10 0.5 10 1.3 1.1 2.6 0.9
Types
0/15 1.5 15 3.6 3.0 6.8 2.4
I
IH,IIL
Input Leakage Current
C
Input Capacitance Any Input 5 7.5 pF
*T *T
I
=–55°CforHCC device : – 40°CforHCF device.
Low
= + 125°CforHCC device : + 85°CforHCF device.
High
The Noise Margin for both ”1” and ”0” level is : 1V min. with VDD= 5V, 2V min. with VDD= 10V, 2.5V min. with VDD= 15V.
HCC Types
HCF
Types
0/18
0/15
Any Input
18 ± 0.1 ±10
15 ± 0.3 ±10
–5
± 0.1 ± 1
–5
± 0.3 ± 1
Unit
*
µA
V
V
V
V
mA
mA
µA
5/11
HCC/HCF4032B/4038B
DYNAMIC ELECTRICAL CHARACTERISTICS (T
=25°C, CL= 50pF, RL= 200k,
amb
all input rise and fall time = 20ns)
Symbol Parameter
t
,
PHL
t
PLH
Propagation Delay Time A, B, or Inverter Inputs to Sum Outputs
Test Conditions
V
(V) Min. Typ. Max.
DD
5260520 10 120 240 15 90 180
t
,
PHL
t
PLH
Propagation Delay Time (clock input to sum outputs)
5325650 10 175 350 15 150 300
t
,
THL
t
THL
Transition Time 5 100 200
10 50 100 15 40 80
t
hold
f
max
Data Input Hold Time (clock edge to A, B, or reset inputs)
5120200 10 50 80 15 40 60
Maximum Clock Input Frequency 5 2.5 4.5
10 5 10
15 7.5 15
t
* Clock Input Rise or Fall Time 5 500
r,tf
10 500 15 500
* If more than one unit is cascaded trshould be made less than or equal to the sum of the transition time and the fixed propa­gation delay of the output of the driving state for the estimated capacitive load.
Value
Unit
ns
ns
ns
MHz
µs
TypicalOutput Low (sink)Current. Minimum OutputLow (sink) Current Charac-
teristics.
6/11
HCC/HCF4032B/4038B
TypicalOutput High (source) Current Charac­teristics.
Minimum OutputHigh (source) CurrentCharac­teristics.
TEST CIRCUITS
QuiescentDevice Current. Input Voltage.
Input Current.
7/11
HCC/HCF4032B/4038B
Plastic DIP16 (0.25) MECHANICAL DATA
DIM.
MIN. TYP. MAX. MIN. TYP. MAX.
a1 0.51 0.020
B 0.77 1.65 0.030 0.065
b 0.5 0.020
b1 0.25 0.010
D 20 0.787 E 8.5 0.335
e 2.54 0.100
e3 17.78 0.700
F 7.1 0.280
I 5.1 0.201
L 3.3 0.130
Z 1.27 0.050
mm inch
8/11
P001C
HCC/HCF4032B/4038B
Ceramic DIP16/1 MECHANICAL DATA
DIM.
MIN. TYP. MAX. MIN. TYP. MAX.
A 20 0.787 B 7 0.276 D 3.3 0.130 E 0.38 0.015
e3 17.78 0.700
F 2.29 2.79 0.090 0.110 G 0.4 0.55 0.016 0.022 H 1.17 1.52 0.046 0.060
L 0.22 0.31 0.009 0.012
M 0.51 1.27 0.020 0.050
N 10.3 0.406
P 7.8 8.05 0.307 0.317 Q 5.08 0.200
mm inch
P053D
9/11
HCC/HCF4032B/4038B
PLCC20 MECHANICAL DATA
DIM.
MIN. TYP. MAX. MIN. TYP. MAX.
A 9.78 10.03 0.385 0.395
B 8.89 9.04 0.350 0.356 D 4.2 4.57 0.165 0.180
d1 2.54 0.100 d2 0.56 0.022
E 7.37 8.38 0.290 0.330
e 1.27 0.050
e3 5.08 0.200
F 0.38 0.015 G 0.101 0.004
M 1.27 0.050
M1 1.14 0.045
mm inch
10/11
P027A
HCC/HCF4032B/4038B
Information furnished is believed to be accurate and reliable. However, SGS-THOMSON Microelectronics assumes no responsability for the consequences of use of such information nor for any infringement of patents or other rights of third parties which may results from its use. No license is granted by implication or otherwise underany patent or patent rights of SGS-THOMSON Microelectronics. Specificationsmentioned in this publication are subject to changewithout notice. This publication supersedes and replaces all information previously supplied. SGS-THOMSON Microelectronicsproductsare notauthorized for use ascritical componentsinlife supportdevices or systemswithout express written approval of SGS-THOMSON Microelectonics.
1994 SGS-THOMSON Microelectronics - All Rights Reserved
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11/11
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