HCF4085B [STMICROELECTRONICS]
DUAL 2-WIDE 2-INPUT AND-OR-INVERTER GATE; 双路2宽2输入与或反相门![HCF4085B](http://pdffile.icpdf.com/pdf1/p00083/img/icpdf/HCF4085B_439468_icpdf.jpg)
型号: | HCF4085B |
厂家: | ![]() |
描述: | DUAL 2-WIDE 2-INPUT AND-OR-INVERTER GATE |
文件: | 总13页 (文件大小:300K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
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HCC/HCF4085B
DUAL 2-WIDE 2-INPUT AND-OR-INVERTER GATE
.
MEDIUM-SPEED OPERATION – tPHL = 90ns ;
tPLH = 125ns (TYP.) AT 10V
INDIVIDUAL INHIBIT CONTROLS
STANDARDIZED SYMMETRICAL OUTPUT
CHARACTERISTICS
QUIESCENT CURRENT SPECIFIED TO 20V
FOR HCC DEVICE
5V, 10V, AND 15V PARAMETRIC RATINGS
INPUT CURRENT OF 100nA AT 18V AND
25°C FOR HCC DEVICE
100% TESTED FOR QUIESCENT CURRENT
MEETS ALLREQUIREMENTS OF JEDECTEN-
TATIVE STANDARD N°. 13A, ”STANDARD
SPECIFICATIONS FOR DESCRIPTION OF ”B”
SERIES CMOS DEVICES”
.
.
.
EY
F
.
(Ceramic Frit Seal Package)
(Plastic Package)
.
.
.
M1
C1
(Micro Package)
(Plastic Chip Carrier)
ORDER CODES :
HCC4085BF
HCF4085BM1
HCF4085BEY
HCF4085BC1
PIN CONNECTIONS
DESCRIPTION
The HCC4085B (extended temperature range) and
HCF4085B (intermediate temperature range) are
monolithic integrated circuit, available in 14-lead
dual in-line plastic or ceramic package and plastic
micropackage.
The HCC/HCF4085B contains a pair of AND-OR-
INVERT gates, each consisting of two 2-input AND
gates driving a 3-input NOR gate. Individual inhibit
controls are provided for both A-O-I gates.
September 1988
1/13
HCC/HCF4085B
LOGIC DIAGRAM
ABSOLUTE MAXIMUM RATINGS
Symbol
Parameter
Value
Unit
VDD
*
Supply Voltage : HCC Types
HCF Types
– 0.5 to + 20
– 0.5 to + 18
V
V
Vi
II
Input Voltage
– 0.5 to VDD + 0.5
V
DC Input Current (any one input)
± 10
mA
mW
Ptot
Total Power Dissipation (per package)
Dissipation per Output Transistor
200
for Top = Full Package-temperature Range
100
mW
Top
Operating Temperature : HCC Types
HCF Types
– 55 to + 125
– 40 to + 85
°C
°C
Tstg
Storage 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 those or any other conditions aboves those indicated in the operational sections of this specifica-
tion 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
Parameter
Supply Voltage : HCC Types
HCF Types
Value
Unit
VDD
3 to 18
3 to 15
V
V
VI
Input Voltage
0 to VDD
V
Top
Operating Temperature : HCC Types
HCF Types
– 55 to + 125
– 40 to + 85
°C
°C
2/13
HCC/HCF4085B
SCHEMATIC DIAGRAM
3/13
HCC/HCF4085B
STATIC ELECTRICAL CHARACTERISTICS (over recommended operating conditions)
Test Conditions
Value
Symbol
Parameter
Unit
VI
VO
|IO| VDD
TLow
*
25°C
THigh*
(V)
(V)
(µA) (V)
Min. Max. Min. Typ. Max. Min. Max.
IL
Quiescent
Current
0/ 5
0/10
0/15
0/20
0/ 5
0/10
0/15
0/ 5
0/10
0/15
5/0
5
1
2
0.02
0.02
0.02
0.04
0.02
0.02
0.02
1
2
30
60
10
15
20
5
HCC
Types
4
4
120
600
30
µA
20
4
20
4
HCF
Types
10
15
8
8
60
16
16
120
VOH
VOL
VIH
VIL
Output High
Voltage
< 1
5
4.95
4.95
9.95
4.95
9.95
V
V
< 1 10 9.95
< 1 15 14.95
14.95
14.95
Output Low
Voltage
< 1
5
0.05
0.05
0.05
0.05
0.05
0.05
0.05
0.05
0.05
10/0
15/0
< 1 10
< 1 15
Input High
Voltage
0.5/4.5 < 1
1/9 < 1 10
1.5/13.5 < 1 15
4.5/0.5 < 1
9/1 < 1 10
13.5/1.5 < 1 15
5
3.5
7
3.5
7
3.5
7
V
V
11
11
11
Input Low
Voltage
5
1.5
3
1.5
3
1.5
3
4
4
4
IOH
Output
Drive
Current
0/ 5
0/ 5
0/10
0/15
0/ 5
0/ 5
0/10
0/15
0/ 5
0/10
0/15
0/ 5
0/10
0/15
2.5
4.6
9.5
13.5
2.5
4.6
9.5
13.5
0.4
0.5
1.5
0.4
0.5
1.5
5
5
– 2
– 1.6 – 3.2
– 0.51 – 1
– 1.3 – 2.6
– 3.4 – 6.8
– 1.36 – 3.2
– 0.44 – 1
– 1.1 – 2.6
– 3.0 – 6.8
– 1.15
– 0.36
– 0.9
– 2.4
– 1.1
– 0.36
– 0.9
– 2.4
0.36
0.9
– 0.64
HCC
Types
10 – 1.6
15 – 4.2
mA
5
5
– 1.53
– 0.52
HCF
Types
10 – 1.3
15 – 3.6
IOL
Output
Sink
Current
5
0.64
1.6
0.51
1.3
1
HCC
Types
10
15
5
2.6
6.8
1
4.2
3.4
2.4
mA
0.52
1.3
0.44
1.1
0.36
0.9
HCF
Types
10
15
2.6
6.8
3.6
3.0
2.4
I
IH, IIL
Input
Leakage
Current
HCC
Types
0/18
0/15
18
15
± 0.1
± 0.3
±10–5 ± 0.1
± 1
± 1
Any Input
µA
HCF
Types
±10–5 ± 0.3
CI
Input Capacitance
Any Input
5
7.5
pF
*
*
TLow = – 55°C for HCC device : – 40°C for HCF device.
THigh = + 125°C for HCC device : + 85°C for HCF device.
The Noise Margin for both ”1” and ”0” level is :1V min. with VDD = 5V, 2V min. with VDD = 10V, 2.5min. with VDD = 15V.
4/13
HCC/HCF4085B
DYNAMIC ELECTRICAL CHARACTERISTICS (Tamb = 25°C, CL = 50pF, RL = 200kΩ,
typical temperature coefficient for all VDD = 0.3%/°C values, all input rise and fall time = 20ns)
Test Conditions
Value
Symbol
Parameter
Unit
VDD (V) Min.
Typ. Max.
tPHL
Propagation Delay Time (data)
5
225
90
450
180
130
620
250
180
300
120
80
10
15
5
65
ns
tPLH
tPHL
tPLH
Propagation Delay Time (data)
Propagation Delay Time (inhibit)
Propagation Delay Time (inhibit)
310
125
90
10
15
5
150
60
10
15
5
40
ns
ns
250
100
70
500
200
140
200
100
80
10
15
5
t
TLH, tTHL Transition Time
100
50
10
15
40
Typical Voltage and Current Transfer Characteristics with Test Circuit.
5/13
HCC/HCF4085B
Minimum and Maximum Voltage Transfer Characteristics with Test Circuit.
Typical Output Low (sink) Current Characteristics.
Minimum Output Low (sink) Current Charac-
teristics.
Typical Ouput High (source) Current Charac-
teristics.
Minimum Output High (source) Current Charac-
teristics.
6/13
HCC/HCF4085B
Typical Data High-to-low Level Propagation Delay
Time vs. Load Capacitance.
Typical Data Low-to-high Level Propagation
Delay Time vs. Load Capacitance.
Typical Data Propagation Delay Time vs. Supply
Voltage.
Typical Transition Time vs. Load Capacitance.
Typical Power Dissipation vs. Frequency.
7/13
HCC/HCF4085B
TEST CIRCUITS
Quiescent Device Current.
Input Voltage.
Input Current.
8/13
HCC/HCF4085B
Plastic DIP14 MECHANICAL DATA
mm
inch
TYP.
DIM.
MIN.
0.51
1.39
TYP.
MAX.
MIN.
0.020
0.055
MAX.
a1
B
b
1.65
0.065
0.5
0.020
0.010
b1
D
E
e
0.25
20
0.787
8.5
2.54
15.24
0.335
0.100
0.600
e3
F
7.1
5.1
0.280
0.201
I
L
3.3
0.130
Z
1.27
2.54
0.050
0.100
P001A
9/13
HCC/HCF4085B
Ceramic DIP14/1 MECHANICAL DATA
mm
inch
TYP.
DIM.
MIN.
TYP.
MAX.
20
MIN.
MAX.
0.787
0.276
A
B
7.0
D
E
3.3
0.130
0.600
0.38
0.015
e3
F
15.24
2.29
0.4
2.79
0.55
1.52
0.31
2.54
10.3
8.05
5.08
0.090
0.016
0.046
0.009
0.060
0.110
0.022
0.060
0.012
0.100
0.406
0.317
0.200
G
H
L
1.17
0.22
1.52
M
N
P
7.8
0.307
Q
P053C
10/13
HCC/HCF4085B
SO14 MECHANICAL DATA
mm
inch
TYP.
DIM.
MIN.
TYP.
MAX.
1.75
0.2
MIN.
MAX.
0.068
0.007
0.064
0.018
0.010
A
a1
a2
b
0.1
0.003
1.65
0.46
0.25
0.35
0.19
0.013
0.007
b1
C
0.5
0.019
c1
D
45° (typ.)
8.55
5.8
8.75
6.2
0.336
0.228
0.344
0.244
E
e
1.27
7.62
0.050
0.300
e3
F
3.8
4.6
0.5
4.0
5.3
0.149
0.181
0.019
0.157
0.208
0.050
0.026
G
L
1.27
0.68
M
S
8° (max.)
P013G
11/13
HCC/HCF4085B
PLCC20 MECHANICAL DATA
mm
inch
TYP.
DIM.
MIN.
9.78
8.89
4.2
TYP.
MAX.
10.03
9.04
MIN.
0.385
0.350
0.165
MAX.
0.395
0.356
0.180
A
B
D
4.57
d1
d2
E
2.54
0.56
0.100
0.022
7.37
8.38
0.290
0.330
0.004
e
1.27
5.08
0.38
0.050
0.200
0.015
e3
F
G
0.101
M
M1
1.27
1.14
0.050
0.045
P027A
12/13
HCC/HCF4085B
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 under any patent or patent rights of SGS-THOMSON Microelectronics. Specificationsmentioned
in this publication are subject to change without notice. This publication supersedes and replaces all information previously supplied.
SGS-THOMSON Microelectronicsproductsare notauthorized foruse ascritical componentsin life support devices or systems without express
written approval of SGS-THOMSON Microelectonics.
1994 SGS-THOMSON Microelectronics - All Rights Reserved
SGS-THOMSON Microelectronics GROUP OF COMPANIES
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Singapore - Spain - Sweden - Switzerland - Taiwan - Thailand - United Kingdom - U.S.A
13/13
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STMICROELECTR
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