NSC 100321FMQB, 100321DMQB Datasheet

100321 Low Power 9-Bit Inverter
General Description
The 100321 is a monolithic 9-bit inverter. The device con­tains nine inverting buffer gates with single input and output. All inputs have 50 kpull-down resistors.
Features
n 30%power reduction of the 100121
n 2000V ESD protection n Pin/function compatible with 100121 n Voltage compensated operating range=−4.2V to −5.7V n Available to MIL-STD-883
Logic Symbol
Pin Names Description
D
1–D9
Data Inputs
O
1–O9
Data Outputs
Connection Diagrams
DS100309-1
24-Pin DIP
DS100309-2
24-Pin Quad Cerpak
DS100309-3
August 1998
100321 Low Power 9-Bit Inverter
© 1998 National Semiconductor Corporation DS100309 www.national.com
Absolute Maximum Ratings (Note 1)
If Military/Aerospace specified devices are required, please contact theNational Semiconductor Sales Office/ Distributors for availability and specifications.
Above which the useful life may be impaired
Storage Temperature (T
STG
) −65˚C to +150˚C
Maximum Junction Temperature (T
J
) Ceramic +175˚C Plastic +150˚C
V
EE
Pin Potential to Ground Pin −7.0V to +0.5V
Input Voltage (DC) V
EE
to +0.5V
Output Current (DC Output HIGH) −50 mA
ESD (Note 2) 2000V
Recommended Operating Conditions
Case Temperature (TC)
Military −55˚C to +125˚C
Supply Voltage (V
EE
) −5.7V to −4.2V
Note 1: Absolute maximum ratings are those values beyond which the de­vice may be damaged or have its useful life impaired. Functonal operation under these conditions is not implied.
Note 2: ESD testing conforms to MIL-STD-883, Method 3015.
Military Version
DC Electrical Characteristics
V
EE
=
−4.2V to −5.7V, V
CC
=
V
CCA
=
GND, T
C
=
−55˚C to +125˚C
Symbol Parameter Min Max Units T
C
Conditions Notes
V
OH
Output HIGH Voltage −1025 −870 mV O˚C to
+125˚C
−1085 −870 mV −55˚C V
IN
=
V
IH
(Max) Loading with
(Notes 3, 4, 5)
V
OL
Output LOW Voltage −1830 −1620 mV 0˚C to or VIL(Min) 50to −2.0V
+125˚C
−1830 −1555 mV −55˚C
V
OHC
Output HIGH Voltage −1035 mV 0˚C to
+125˚C
−1085 mV −55˚C V
IN
=
V
IH
(Min) Loading with
(Notes 3, 4, 5)
V
OLC
Output LOW Voltage −1610 mV 0˚C to or VIL(Max) 50to −2.0V
+125˚C
−1555 mV −55˚C
V
IH
Input HIGH Voltage −1165 −870 mV −55˚C to Guaranteed HIGH Signal
(Notes 3, 4, 5,
6)
+125˚C for All Inputs
V
IL
Input LOW Voltage −1830 −1475 mV −55˚C to Guaranteed LOW Signal
(Notes 3, 4, 5,
6)
+125˚C for All Inputs
I
IL
Input LOW Current 0.50 µA −55˚C to V
EE
=
−4.2V (Notes 3, 4, 5)
+125˚C V
IN
=
V
IL
(Min)
I
IH
Input HIGH Current 240 µA 0˚C to
+125˚C V
EE
=
−5.7V (Notes 3, 4, 5)
340 µA −55˚C V
IN
=
V
IH
(Max)
I
EE
Power Supply Current
−70 −25 mA
−55˚C to Inputs Open
(Notes 3, 4, 5)
+125˚C
Note 3: F100K 300 Series cold temperature testing is performed by temperature soaking (to guarantee junction temperature equals −55˚C), then testing immediately without allowing for the junction temperature to stabilize due to heat dissipation after power-up. This provides “cold start” specs which can be considered a worst case condition at cold temperatures.
Note 4: Screen tested 100%on each device at −55˚C, +25˚C, and +125˚C, Subgroups 1, 2, 3, 7, and 8. Note 5: Sample tested (Method 5005, Table I) on each manufactured lot at −55˚C, +25˚C and +125˚C, Subgroups A1, 2, 3, 7, and 8. Note 6: Guaranteed by applying specified input condition and testing V
OH/VOL
.
www.national.com 2
Loading...
+ 4 hidden pages