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74AHC132 Series

4-ch 4-input 2-V to 5.5-V NAND gates with Schmitt-Trigger inputs

Manufacturer: Texas Instruments

Catalog(8 parts)

PartNumber of CircuitsNumber of InputsOperating TemperatureOperating TemperatureSupplier Device PackagePackage / CasePackage / CasePackage / CaseLogic TypeFeaturesVoltage - SupplyVoltage - SupplyCurrent - Output High, LowCurrent - Output High, LowInput Logic Level - LowInput Logic Level - LowMounting TypeMax Propagation Delay @ V, Max CLPackage / CasePackage / CasePackage / Case
Texas Instruments
SN74AHC132PWR
NAND Gate IC 4 Channel Schmitt Trigger 14-TSSOP
4 ul
2 ul
-40 °C
85 °C
14-TSSOP
14-TSSOP
0.004394200164824724 m
0.004399999976158142 m
NAND Gate
Schmitt Trigger
2 V
5.5 V
0.00800000037997961 A
0.00800000037997961 A
0.8999999761581421 V
1.649999976158142 V
Surface Mount
9.69999991440318e-9 s
Texas Instruments
SN74AHC132PW
NAND Gate IC 4 Channel Schmitt Trigger 14-TSSOP
4 ul
2 ul
-40 °C
85 °C
14-TSSOP
14-TSSOP
0.004394200164824724 m
0.004399999976158142 m
NAND Gate
Schmitt Trigger
2 V
5.5 V
0.00800000037997961 A
0.00800000037997961 A
0.8999999761581421 V
1.649999976158142 V
Surface Mount
9.69999991440318e-9 s
Texas Instruments
SN74AHC132DGVR
NAND Gate IC 4 Channel Schmitt Trigger 14-TVSOP
4 ul
2 ul
-40 °C
85 °C
14-TFSOP
NAND Gate
Schmitt Trigger
2 V
5.5 V
0.00800000037997961 A
0.00800000037997961 A
0.8999999761581421 V
1.649999976158142 V
Surface Mount
9.69999991440318e-9 s
0.004399999976158142 m
Texas Instruments
SN74AHC132N
NAND Gate IC 4 Channel Schmitt Trigger 14-PDIP
4 ul
2 ul
-40 °C
85 °C
14-DIP
NAND Gate
Schmitt Trigger
2 V
5.5 V
0.00800000037997961 A
0.00800000037997961 A
0.8999999761581421 V
1.649999976158142 V
Through Hole
9.69999991440318e-9 s
0.007619999814778566 m
0.007619999814778566 m
Texas Instruments
SN74AHC132DR
NAND Gate IC 4 Channel Schmitt Trigger 14-SOIC
4 ul
2 ul
-40 °C
85 °C
14-SOIC
NAND Gate
Schmitt Trigger
2 V
5.5 V
0.00800000037997961 A
0.00800000037997961 A
0.8999999761581421 V
1.649999976158142 V
Surface Mount
9.69999991440318e-9 s
0.003899999894201755 m
0.003911599982529879 m
Texas Instruments
SN74AHC132D
NAND Gate IC 4 Channel Schmitt Trigger 14-SOIC
4 ul
2 ul
-40 °C
85 °C
14-SOIC
NAND Gate
Schmitt Trigger
2 V
5.5 V
0.00800000037997961 A
0.00800000037997961 A
0.8999999761581421 V
1.649999976158142 V
Surface Mount
9.69999991440318e-9 s
0.003899999894201755 m
0.003911599982529879 m
Texas Instruments
SN74AHC132PWRG4
NAND Gate IC 4 Channel Schmitt Trigger 14-TSSOP
4 ul
2 ul
-40 °C
85 °C
14-TSSOP
14-TSSOP
0.004394200164824724 m
0.004399999976158142 m
NAND Gate
Schmitt Trigger
2 V
5.5 V
0.00800000037997961 A
0.00800000037997961 A
0.8999999761581421 V
1.649999976158142 V
Surface Mount
9.69999991440318e-9 s
Texas Instruments
SN74AHC132RGYR
NAND Gate IC 4 Channel Schmitt Trigger 14-VQFN (3.5x3.5)
4 ul
2 ul
-40 °C
85 °C
14-VQFN (3.5x3.5)
14-VFQFN Exposed Pad
NAND Gate
Schmitt Trigger
2 V
5.5 V
0.00800000037997961 A
0.00800000037997961 A
0.8999999761581421 V
1.649999976158142 V
Surface Mount
9.69999991440318e-9 s

Key Features

Operating range 2V to 5.5V VCCOperation from very slow input transitionsTemperature-compensated threshold levelsHigh noise immunitySame pinouts asSNx4AHC00Latch-up performance exceeds 250mAper JESD 17ESD protection exceeds JESD 222000V human-body model1000V charged-device modelOperating range 2V to 5.5V VCCOperation from very slow input transitionsTemperature-compensated threshold levelsHigh noise immunitySame pinouts asSNx4AHC00Latch-up performance exceeds 250mAper JESD 17ESD protection exceeds JESD 222000V human-body model1000V charged-device model

Description

AI
The SN7AHC132 device is a quadruple positive-NAND gate designed for 2V to 5.5V VCC operation. This device performs the Boolean functionY = A × B or Y = A + B in positive logic. Schmitt-trigger inputs provide added noise immunity and support for slow input signal transitions. The SN7AHC132 device is a quadruple positive-NAND gate designed for 2V to 5.5V VCC operation. This device performs the Boolean functionY = A × B or Y = A + B in positive logic. Schmitt-trigger inputs provide added noise immunity and support for slow input signal transitions.