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What is 74AUP1G97?

This electronic component, produced by the manufacturer "Fairchild Semiconductor", performs the same function as "Low Power Universal Configurable Two-Input Logic Gate".


74AUP1G97 Datasheet PDF - Fairchild Semiconductor

Part Number 74AUP1G97
Description Low Power Universal Configurable Two-Input Logic Gate
Manufacturers Fairchild Semiconductor 
Logo Fairchild Semiconductor Logo 


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October 2010
74AUP1G97
TinyLogic® Low Power Universal Configurable
Two-Input Logic Gate
Features
ƒ 0.8V to 3.6V VCC Supply Operation
ƒ 3.6V Over-Voltage Tolerant I/Os at VCC
from 0.8V to 3.6V
ƒ High Speed tPD
- 3.1ns: Typical at 3.3V
ƒ Power-Off High-Impedance Inputs and Outputs
ƒ Low Static Power Consumption
- ICC=0.9µA Maximum
ƒ Low Dynamic Power Consumption
- CPD=2.5pF Typical at 3.3V
ƒ Ultra-Small MicroPak™ Packages
Description
The 74AUP1G97 is a universal configurable 2-input
logic gate that provides a high performance and low
power solution ideal for battery-powered portable
applications. This product is designed for a wide low
voltage operating range (0.8V to 3.6V) and guarantees
very low static and dynamic power consumption across
the entire voltage range. All inputs are implemented
with hysteresis to allow for slower transition input
signals and better switching noise immunity.
The 74AUP1G97 provides for multiple functions as
determined by various configurations of the three
inputs. The potential logic functions provided are MUX,
AND, OR, NAND, and NOR, inverter and buffer. Refer
to Figures 3 to 9.
Ordering Information
Part Number Top Mark
Package
74AUP1G97L6X
AD 6-Lead MicroPak™, 1.0mm Wide
74AUP1G97FHX
AD 6-Lead, MicroPak2™, 1x1mm Body, .35mm Pitch
Packing Method
5000 Units on
Tape & Reel
5000 Units on
Tape & Reel
© 2008 Fairchild Semiconductor Corporation
74AUP1G97 • 1.0.5
www.fairchildsemi.com

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74AUP1G97 equivalent
Absolute Maximum Ratings
Stresses exceeding the absolute maximum ratings may damage the device. The device may not function or be
operable above the recommended operating conditions and stressing the parts to these levels is not recommended.
In addition, extended exposure to stresses above the recommended operating conditions may affect device
reliability. The absolute maximum ratings are stress ratings only.
Symbol
VCC
VIN
VOUT
IIK
IOK
IOH / IOL
IO
ICC or IGND
TSTG
TJ
TL
PD
ESD
Parameter
Supply Voltage
DC Input Voltage
DC Output Voltage
HIGH or LOW State(3)
VCC=0V
DC Input Diode Current
VIN < 0V
DC Output Diode Current
VOUT < 0V
VOUT > VCC
DC Output Source / Sink Current
Continuous Output Current
DC VCC or Ground Current per Supply Pin
Storage Temperature Range
Junction Temperature Under Bias
Junction Lead Temperature, Soldering 10s
Power Dissipation at +85°C
MicroPak-6
MicroPak2-6
Human Body Model, JEDEC:JESD22-A114
Charged Device Model, JEDEC:JESD22-C101
Note:
3. IO absolute maximum rating must be observed.
Min.
-0.5
-0.5
-0.5
-0.5
-65
Max.
4.6
4.6
VCC + 0.5
4.6
-50
-50
+50
±50
±20
±50
+150
+150
+260
130
120
5000+
1500
Unit
V
V
V
mA
mA
mA
mA
mA
°C
°C
°C
mW
V
Recommended Operating Conditions(4)
The Recommended Operating Conditions table defines the conditions for actual device operation. Recommended
operating conditions are specified to ensure optimal performance to the datasheet specifications. Fairchild does not
recommend exceeding them or designing to Absolute Maximum Ratings.
Symbol
VCC
VIN
VOUT
IOH/IOL
TA
θJA
Parameter
Supply Voltage
Input Voltage
Output Voltage
Output Current
Operating Temperature, Free Air
Thermal Resistance
Conditions
VCC=0V
HIGH or LOW State
VCC=3.0V to 3.6V
VCC=2.3V to 2.7V
VCC=1.65V to 1.95V
VCC=1.4V to 1.6V
VCC=1.1V to 1.3V
VCC=0.8V
MicroPak-6
MicroPak2-6
Note:
4. Unused inputs must be held HIGH or LOW. They may not float.
Min.
0.8
0
0
0
-40
Max.
3.6
3.6
3.6
VCC
±4.0
±3.1
±1.9
±1.7
±1.1
±20.0
+85
500
560
Unit
V
V
V
mA
µA
°C
°C/W
© 2008 Fairchild Semiconductor Corporation
74AUP1G97 • 1.0.5
5
www.fairchildsemi.com


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Part Details

On this page, you can learn information such as the schematic, equivalent, pinout, replacement, circuit, and manual for 74AUP1G97 electronic component.


Information Total 12 Pages
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