HCF40193BEY [STMICROELECTRONICS]

PRESETTABLE UP/DOWN COUNTERS (DUAL CLOCK WITH RESET) 40192B BCD TYPE 40193B BINARY TYPE; 预置增/减计数器(双时钟带复位) 40192B BCD型40193B二进制类型
HCF40193BEY
型号: HCF40193BEY
厂家: ST    ST
描述:

PRESETTABLE UP/DOWN COUNTERS (DUAL CLOCK WITH RESET) 40192B BCD TYPE 40193B BINARY TYPE
预置增/减计数器(双时钟带复位) 40192B BCD型40193B二进制类型

计数器 触发器 逻辑集成电路 光电二极管 输出元件 CD 时钟
文件: 总15页 (文件大小:316K)
中文:  中文翻译
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HCC/HCF40192B  
HCC/HCF40193B  
PRESETTABLE UP/DOWN COUNTERS (DUAL CLOCK  
WITH RESET) 40192B – BCD TYPE 40193B – BINARY TYPE  
.
.
INDIVIDUAL CLOCK LINES FOR COUNTING  
UP OR COUNTING DOWN  
SYNCHRONOUS HIGH-SPEED CARRY AND  
BORROWPROPAGATION DELAYS FOR CAS-  
CADING  
ASYNCHRONOUS RESET AND PRESET CA-  
PABILITY  
MEDIUM-SPEED OPERATION - fCL = 8MHz  
(typ.) @ 10V  
STANDARDIZED SYMMETRICAL OUTPUT  
CHARACTERISTICS  
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-  
TATIVESTANDARDN°13A, ”STANDARD SPE-  
CIFICATIONS FOR DESCRIPTION OF ”B”  
SERIES CMOS DEVICES”  
.
.
.
EY  
F
(Plastic Package)  
(Ceramic Frit Seal Package)  
.
.
M1  
C1  
(Chip Carrier)  
(Plastic Chip Carrier)  
.
.
ORDER CODES :  
HCC401XXBF  
HCF401XXBEY  
HCF401XXBM1  
HCF401XXBC1  
PIN CONNECTIONS  
DESCRIPTION  
The HCC40192B, HCC40193B, (extended tem-  
perature range) and the HCF40192B, HCF40193B  
(intermediate temperature range) are monolithic in-  
tegrated circuits, available in 16-lead dual in-line  
plastic or ceramic package and platic micro pack-  
age. The HCC/HCF40192B Presettable BCD  
Up/Down Counter and the HCC/HCF40193B Pres-  
ettable Binary Up/Down Counter each consist of 4  
synchronously clocked, gated ”D” type flip-flops  
connected as a counter. The inputs consist of 4 in-  
dividual jam lines, a PRESET ENABLE control, in-  
dividual CLOCK UP and CLOCK DOWN signals  
and a master RESET. Four buffered Q signal out-  
puts as well as CARRY and BORROW outputs for  
multiple-stage counting schemes are provided. The  
counter is cleared so that all outputs are in a low  
state by a high on the RESET line. A RESET is ac-  
complished asynchronously with the clock. Each  
output is individually programmable asynchron-  
ouslywith theclock tothelevel on the corresponding  
jam input when thePRESET ENABLE control is low.  
The counter counts up one count on the positive  
clock edge of the CLOCK UP signal provided the  
CLOCK DOWN line is high. The counter counts  
down one count on the positive clock edge of the  
CLOCK DOWN signal provided the CLOCK UP line  
June 1989  
1/15  
HCC/HCF40192B/193B  
is high. The CARRY and BORROW signals are high  
when the counter is counting up or down. The  
CARRY signal goes low one-half clock cycle after  
the counterreaches its maximum countinthe count-  
up mode. The BORROW signal goes low one-half  
clock cycle after the counter reaches its minimum  
count in the count-down mode. Cascading of  
multiple packages is easily accomplished without  
the need for additional external circuitry by tying the  
BORROW and CARRY outputs to the CLOCK  
DOWN and CLOCK UP inputs, respectively, of the  
succeeding package.  
FUNCTIONAL DIAGRAM  
ABSOLUTE MAXIMUM RATINGS  
Symbol  
Parameter  
Supply Voltage : HCC Types  
HCF Types  
Value  
Unit  
VDD  
*
– 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  
Pt ot  
Total Power Dissipation (per package)  
Dissipation per Output Transistor  
200  
for Top = Full Package-temperature Range  
100  
mW  
To p  
Tstg  
Operating Temperature : HCC Types  
HCF Types  
– 55 to + 125  
– 40 to + 85  
°C  
°C  
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 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 VSS (GND).  
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
To p  
Operating Temperature : HCC Types  
HCF Types  
– 55 to + 125  
– 40 to + 85  
°C  
°C  
2/15  
HCC/HCF40192B/193B  
LOGIC DIAGRAMS  
40192B (BCD).  
40193B (Binary).  
3/15  
HCC/HCF40192B/193B  
TIMING DIAGRAMS  
40192B (BCD).  
40193B (Binary).  
4/15  
HCC/HCF40192B/193B  
Internal Logic of Flip-flop.  
TRUTH TABLE  
Clock  
Up  
Clock  
Down  
Preset  
Enable  
Reset  
Action  
1
1
1
1
1
0
X
0
0
0
0
0
1
Count Up  
No Count  
Count Down  
No Count  
Preset  
/
1
\
1
1
/
\
X
X
X
X
Reset  
1 = High Level  
0 = Low Level  
X = Don’t Care.  
5/15  
HCC/HCF40192B/193B  
STATIC ELECTRICAL CHARACTERISTICS (over recommended operating conditions)  
Test Conditions  
Value  
Symbol  
Parameter  
Unit  
VI  
VO  
|IO  
|
VD D  
T Lo w  
*
25°C  
T High*  
(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
5
10  
20  
100  
20  
40  
80  
0.04  
0.04  
0.04  
5
150  
300  
600  
3000  
150  
300  
600  
10  
15  
20  
5
10  
20  
HCC  
Types  
µA  
0.08 100  
0.04  
0.04  
0.04  
20  
40  
80  
HCF  
Types  
10  
15  
VOH  
VOL  
VIH  
VIL  
Output High  
Voltage  
< 1  
< 1  
< 1  
< 1  
< 1  
< 1  
5
4.95  
4.95  
9.95  
4.95  
9.95  
V
V
10 9.95  
15 14.95  
14.95  
14.95  
Output Low  
Voltage  
5
0.05  
0.05  
0.05  
0.05  
0.05  
0.05  
0.05  
0.05  
0.05  
10/0  
15/0  
10  
15  
Input High  
Voltage  
0.5/4.5 < 1  
1/9 < 1  
5
10  
15  
5
3.5  
7
3.5  
7
3.5  
7
V
V
1.5/13.5 < 1  
4.5/0.5 < 1  
11  
11  
11  
Input Low  
Voltage  
1.5  
3
1.5  
3
1.5  
3
9/1  
< 1  
10  
15  
5
13.5/1.5 < 1  
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  
– 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  
5
– 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
0.9  
4.2  
3.4  
2.4  
mA  
0.52  
1.3  
0.44  
1.1  
0.36  
HCF  
Types  
10  
15  
2.6  
6.8  
0.9  
3.6  
3.0  
2.4  
I
IH, IIL Input  
HCC  
Types  
0/18  
0/15  
18  
15  
± 0.1  
± 0.3  
±105 ± 0.1  
± 1  
± 1  
Leakage  
Current  
Any Input  
µA  
HCF  
Types  
±105 ± 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, 2.5V min. with VDD  
=
6/15  
HCC/HCF40192B/193B  
DYNAMIC ELECTRICAL CHARACTERISTICS (Tamb = 25°C, CL = 50pF, RL = 200k,  
typical temperature coefficient for all VDD values is 0.3%/°C, all input rise and fall time = 20ns)  
Test Conditions  
Value  
Symbol  
Parameter  
Unit  
V DD (V) Min. Typ. Max.  
tPHL  
tP LH  
,
Propagation Delay Time  
Clock Up or Clock Down to Q  
Reset to Q  
5
250  
120  
90  
500  
240  
180  
400  
200  
140  
320  
160  
120  
600  
300  
220  
200  
100  
80  
ns  
10  
15  
5
PE to Q  
200  
100  
70  
ns  
ns  
10  
15  
5
Clock Up to Carry  
Clock Down to Borrow  
160  
80  
10  
15  
5
60  
Reset or PR to Borrow or Carry  
Transition Time  
300  
150  
110  
100  
50  
ns  
10  
15  
5
tTHL  
tTLH  
,
ns  
10  
15  
5
40  
tre m  
*
Removal Time  
Reset or PE  
80  
40  
40  
ns  
10  
15  
5
20  
30  
15  
tW  
Clock Input Pulse Width  
Reset  
480  
300  
260  
240  
150  
130  
120  
85  
ns  
10  
15  
5
PE  
240  
170  
140  
180  
90  
ns  
10  
15  
5
70  
Clock  
90  
ns  
10  
15  
5
45  
30  
60  
tr, tf  
Clock Input Rise or Fall Time  
Maximum Clock Input Frequency  
15  
µs  
10  
15  
5
15  
5
fCL  
2
5
4
8
MHz  
10  
15  
5.5  
11  
* The time required for Reset or Preset Enable control to be removed before clocking (see timing diagram).  
7/15  
HCC/HCF40192B/193B  
Timing Diagram Defining trem  
.
Output Low (sink) Current Characteristics.  
Output high (source) Current Characteristics.  
Typical Transition Time vs. Load Capacitance.  
Typical Propagation Delay Time vs. Load Capacit-  
ance.  
8/15  
HCC/HCF40192B/193B  
Typical Dynamic Power Dissipation.  
TYPICAL APPLICATION  
CASCADED COUNTER PACKAGES  
TEST CIRCUITS  
Quiescent Device Current.  
Input Voltage.  
9/15  
HCC/HCF40192B/193B  
TEST CIRCUITS (continued)  
Input Leakage Current.  
Dynamic Power Dissipation.  
10/15  
HCC/HCF40192B/193B  
Plastic DIP16 (0.25) MECHANICAL DATA  
mm  
inch  
TYP.  
DIM.  
MIN.  
0.51  
0.77  
TYP.  
MAX.  
MIN.  
0.020  
0.030  
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  
17.78  
0.335  
0.100  
0.700  
e3  
F
7.1  
5.1  
0.280  
0.201  
I
L
3.3  
0.130  
Z
1.27  
0.050  
P001C  
11/15  
HCC/HCF40192B/193B  
Ceramic DIP16/1 MECHANICAL DATA  
mm  
inch  
TYP.  
DIM.  
MIN.  
TYP.  
MAX.  
20  
MIN.  
MAX.  
0.787  
0.276  
A
B
7
D
E
3.3  
0.130  
0.700  
0.38  
0.015  
e3  
F
17.78  
2.29  
0.4  
2.79  
0.55  
1.52  
0.31  
1.27  
10.3  
8.05  
5.08  
0.090  
0.016  
0.046  
0.009  
0.020  
0.110  
0.022  
0.060  
0.012  
0.050  
0.406  
0.317  
0.200  
G
H
L
1.17  
0.22  
0.51  
M
N
P
7.8  
0.307  
Q
P053D  
12/15  
HCC/HCF40192B/193B  
SO16 (Narrow) MECHANICAL DATA  
mm  
inch  
DIM.  
MIN.  
TYP.  
MAX.  
1.75  
0.2  
MIN.  
TYP.  
MAX.  
0.068  
0.007  
0.064  
0.018  
0.010  
A
a1  
a2  
b
0.1  
0.004  
1.65  
0.46  
0.25  
0.35  
0.19  
0.013  
0.007  
b1  
C
0.5  
0.019  
c1  
D
45° (typ.)  
9.8  
5.8  
10  
0.385  
0.228  
0.393  
0.244  
E
6.2  
e
1.27  
8.89  
0.050  
0.350  
e3  
F
3.8  
4.6  
0.5  
4.0  
5.3  
0.149  
0.181  
0.019  
0.157  
0.208  
0.050  
0.024  
G
L
1.27  
0.62  
M
S
8° (max.)  
P013H  
13/15  
HCC/HCF40192B/193B  
PLCC20 MECHANICAL DATA  
mm  
inch  
TYP.  
DIM.  
MIN.  
TYP.  
MAX.  
10.03  
9.04  
MIN.  
0.385  
0.350  
0.165  
MAX.  
0.395  
0.356  
0.180  
A
B
9.78  
8.89  
4.2  
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  
14/15  
HCC/HCF40192B/193B  
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  
Australia - Brazil - France - Germany - Hong Kong - Italy - Japan - Korea - Malaysia - Malta - Morocco - The Netherlands -  
Singapore - Spain - Sweden - Switzerland - Taiwan - Thailand - United Kingdom - U.S.A  
15/15  

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