HCC4093BF STMicroelectronics, HCC4093BF Datasheet

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HCC4093BF

Manufacturer Part Number
HCC4093BF
Description
Manufacturer
STMicroelectronics
Datasheet

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DESCRIPTION
The HCC4093B (extended temperature range) and
HCF4093B (intermediate temperature range) are
available in 14-lead dual in-line plastic or ceramic
package
HCC/HCF4093B consists of four Schmitt-trigger cir-
cuits. Each circuit functions as a two-input NAND
gate with Schmitt-trigger action on both inputs. The
gate switches at different points for positive and ne-
gative-going signals.
The difference between the positive voltage (V
and the negative voltage (V
teresis voltage (V
June 1989
SCHMITT-TRIGGER ACTION ON EACH INPUT
WITH NO EXTERNAL COMPONENTS
HYSTERESIS VOLTAGE TYPICALLY 0.9V AT
V
NOISE IMMUNITY GREATER THAN 50% OF
V
NO LIMIT ON INPUT RISE AND FALL TIMES
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 ALL REQUIREMENTS OF JEDEC TEN-
TATIVE STANDARD N . 13A, ”STANDARD
SPECIFICATIONS FOR DESCRIPTION OF ”B”
SERIES CMOS DEVICES”
DD
DD
= 5V AND 2.3V AT V
(typ.)
and
H
) (see fig. 1).
plastic
DD
micropackage.
N
) is defined as hys-
QUAD 2-INPUT NAND SCHMIDT TRIGGERS
= 10V
The
P
)
(Plastic Package)
(Micro Package)
HCC4093BF
HCF4093BEY
EY
M1
HCC/HCF4093B
PIN CONNECTIONS
ORDER CODES :
(Ceramic Frit Seal Package)
HCF4093BM1
HCF4093BC1
(Plastic Chip Carrier)
C1
F
1/13

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HCC4093BF Summary of contents

Page 1

... The difference between the positive voltage (V and the negative voltage ( defined as hys- N teresis voltage (V ) (see fig. 1). H June 1989 HCC/HCF4093B EY (Plastic Package) (Ceramic Frit Seal Package) M1 (Micro Package) ORDER CODES : HCC4093BF HCF4093BEY PIN CONNECTIONS The ) (Plastic Chip Carrier) HCF4093BM1 HCF4093BC1 1/13 ...

Page 2

HCC/HCF4093B FUNCTIONAL DIAGRAM Schmitt triggers ABSOLUTE MAXIMUM RATINGS Symbol Parameter V * Supply Voltage : HC C Types Types V Input Voltage Input Current (any one input) I Total Power ...

Page 3

STATIC ELECTRICAL CHARACTERISTICS (over recommended operating conditions) Test Conditions Symbol Parameter V I (V) I Quiescent Current 0/10 HCC Types 0/15 0/ HCF 0/10 Types 0/15 V Positive Trigger a P Threshold Voltage a a ...

Page 4

HCC/HCF4093B STATIC ELECTRICAL CHARACTERISTICS ( continued) Test Conditions Symbol Parameter V I (V) I Output Sink 0/10 Current 0/ 0/10 0/ Input HCC IH IL 0/18 Leakage Types Current HCF 0/15 Types ...

Page 5

Test setup Figure 3 : Typical Current and Voltage Transfer Characteristics. Figure 4 : Typical Voltage Transfer Characteristics as a Function of Temperature, and Test Circuit. HCC/HCF4093B Figure 2 : Input and Output Characteristics. 5/13 ...

Page 6

HCC/HCF4093B Figure 5 : Typical Output Low (sink) Current Char- acteristics. Figure 7 : Typical Output High (source) Current Characteristic. Figure 9 : Typical Propagation Delay Time vs. Sup- ply Voltage. 6/13 Figure 6 : Minimum Output Low (sink) Current ...

Page 7

Figure 11 : Typical Trigger Threshold Voltage vs.V DD Figure 13 : Typical Dissipation Characteristics. HCC/HCF4093B Figure 12 : Typical per cent Hysteresis vs. Supply Voltage. Figure 14 : Power Dissipation vs. Rise and Fall Times. 7/13 ...

Page 8

HCC/HCF4093B APPLICATIONS Figure 15 : Wave Shaper. Figure17 : Astable Multivibrator. TEST CIRCUITS Figure18 : Quiescent Device Current. 8/13 Figure 16 : Monostable Multivibrator. Figure 19 : Input Leakage Current. ...

Page 9

Plastic DIP14 MECHANICAL DATA mm DIM. MIN. TYP. a1 0.51 B 1.39 b 0 8.5 e 2.54 e3 15. 3.3 Z 1.27 HCC/HCF4093B inch MAX. MIN. TYP. 0.020 1.65 0.055 0.020 0.010 20 ...

Page 10

HCC/HCF4093B Ceramic DIP14/1 MECHANICAL DATA DIM. MIN 0. 2.29 G 0.4 H 1.17 L 0. 7.8 Q 10/13 mm TYP. MAX. MIN. 20 7.0 3.3 0.015 15.24 2.79 0.090 0.55 ...

Page 11

SO14 MECHANICAL DATA mm DIM. MIN. TYP 0 0.35 b1 0. 8.55 E 5.8 e 1.27 e3 7.62 F 3.8 G 4 HCC/HCF4093B inch MAX. MIN. TYP. 1.75 ...

Page 12

HCC/HCF4093B PLCC20 MECHANICAL DATA DIM. MIN. A 9.78 B 8. 12/13 mm TYP. MAX. MIN. 10.03 0.385 9.04 0.350 4.57 0.165 2.54 0.56 8.38 0.290 1.27 5.08 0.38 ...

Page 13

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 ...

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