SL4012B System Logic Semiconductor, SL4012B Datasheet

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SL4012B

Manufacturer Part Number
SL4012B
Description
Dual 4-Input NAND Gate
Manufacturer
System Logic Semiconductor
Datasheet
Dual 4-Input NAND Gate
High-Voltage Silicon-Gate CMOS
emplementation of the NAND function.
SLS
The SL4012B NAND gates provide the system designer with direct
Operating Voltage Range: 3.0 to 18 V
Maximum input current of 1 A at 18 V over full package-
temperature range; 100 nA at 18 V and 25 C
Noise margin (over full package temperature range):
System Logic
Semiconductor
1.0 V min @ 5.0 V supply
2.0 V min @ 10.0 V supply
2.5 V min @ 15.0 V supply
PINS 6, 8 = NO CONNECTION
LOGIC DIAGRAM
PIN 7 = GND
PIN 14 =V
CC
X = don’t care
T
A
X
X
X
H
L
A
ORDERING INFORMATION
= -55 to 125 C for all packages
FUNCTION TABLE
PIN ASSIGNMENT
NC = NO CONNECTION
X
X
X
H
B
L
Inputs
SL4012BN Plastic
SL4012BD SOIC
C
X
X
X
H
L
SL4012B
D
X
X
X
H
L
Output
H
H
H
H
Y
L

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SL4012B Summary of contents

Page 1

... Dual 4-Input NAND Gate High-Voltage Silicon-Gate CMOS The SL4012B NAND gates provide the system designer with direct emplementation of the NAND function. Operating Voltage Range: 3 Maximum input current over full package- temperature range; 100 and 25 C Noise margin (over full package temperature range): 1 ...

Page 2

... SL4012B * MAXIMUM RATINGS Symbol V DC Supply Voltage (Referenced to GND Input Voltage (Referenced to GND Output Voltage (Referenced to GND) OUT I DC Input Current, per Pin IN P Power Dissipation in Still Air, Plastic DIP Power Dissipation per Output Transistor D Tstg Storage Temperature ...

Page 3

... GND GND GND =0 GND =2 =4 =13 SL4012B Guaranteed Limit - 125 Unit C C 3.5 3.5 3 1.5 1.5 1 4.95 4.95 4.95 V 9.95 9.95 9.95 14.95 14.95 14.95 0.05 0.05 0.05 V 0.05 0.05 0.05 0.05 0.05 0.05 ...

Page 4

... SL4012B AC ELECTRICAL CHARACTERISTICS Symbol Parameter Maximum Propagation Delay, Input A, B,C PLH PHL Output Y (Figure Maximum Output Transition Time, Any Output TLH THL (Figure 1) C Maximum Input Capacitance IN (C =50pF, R =200k , Input 5 5 Figure 1. Switching Waveforms ...

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