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74LVC2G08 Series

2-ch, 2-input 1.65-V to 5.5-V 32 mA drive strength AND gate

Manufacturer: Texas Instruments

Catalog(11 parts)

PartCurrent - Output High, LowCurrent - Output High, LowOperating TemperatureOperating TemperatureInput Logic Level - LowInput Logic Level - LowMax Propagation Delay @ V, Max CLMounting TypeCurrent - Quiescent (Max)Number of InputsNumber of CircuitsVoltage - SupplyVoltage - SupplyLogic TypeInput Logic Level - HighInput Logic Level - HighSupplier Device PackagePackage / CasePackage / CasePackage / CaseGradeQualification
Texas Instruments
SN74LVC2G08YZTR
AND Gate IC 2 Channel 8-DSBGA
0.03200000151991844 A
0.03200000151991844 A
-40 °C
85 °C
0.800000011920929 V
0.699999988079071 V
3.7999998703242e-9 s
Surface Mount
0.000009999999747378752 A
2 ul
2 ul
5.5 V
1.649999976158142 V
AND Gate
1.7000000476837158 V
2 V
8-DSBGA
Texas Instruments
SN74LVC2G08DCTR
AND Gate IC 2 Channel SM8
0.03200000151991844 A
0.03200000151991844 A
-40 °C
125 °C
0.800000011920929 V
0.699999988079071 V
3.7999998703242e-9 s
Surface Mount
0.000009999999747378752 A
2 ul
2 ul
5.5 V
1.649999976158142 V
AND Gate
1.7000000476837158 V
2 V
SM8
Texas Instruments
SN74LVC2G08MDCUREP
AND Gate IC 2 Channel 8-VSSOP
0.024000000208616257 A
0.024000000208616257 A
-55 °C
125 °C
0.800000011920929 V
0.699999988079071 V
4.799999953064571e-9 s
Surface Mount
0.000009999999747378752 A
2 ul
2 ul
5.5 V
1.649999976158142 V
AND Gate
1.7000000476837158 V
2 V
0.002311399905011058 m
8-VFSOP
0.002300000051036477 m
Texas Instruments
SN74LVC2G08DCUR
AND Gate IC 2 Channel 8-VSSOP
0.03200000151991844 A
0.03200000151991844 A
-40 °C
125 °C
0.800000011920929 V
0.699999988079071 V
3.7999998703242e-9 s
Surface Mount
0.000009999999747378752 A
2 ul
2 ul
5.5 V
1.649999976158142 V
AND Gate
1.7000000476837158 V
2 V
0.002311399905011058 m
8-VFSOP
0.002300000051036477 m
Texas Instruments
SN74LVC2G08DCURG4
AND Gate IC 2 Channel 8-VSSOP
0.03200000151991844 A
0.03200000151991844 A
-40 °C
125 °C
0.800000011920929 V
0.699999988079071 V
3.7999998703242e-9 s
Surface Mount
0.000009999999747378752 A
2 ul
2 ul
5.5 V
1.649999976158142 V
AND Gate
1.7000000476837158 V
2 V
0.002311399905011058 m
8-VFSOP
0.002300000051036477 m
Texas Instruments
SN74LVC2G08DCURE4
AND Gate IC 2 Channel 8-VSSOP
0.03200000151991844 A
0.03200000151991844 A
-40 °C
125 °C
0.800000011920929 V
0.699999988079071 V
3.7999998703242e-9 s
Surface Mount
0.000009999999747378752 A
2 ul
2 ul
5.5 V
1.649999976158142 V
AND Gate
1.7000000476837158 V
2 V
0.002311399905011058 m
8-VFSOP
0.002300000051036477 m
Texas Instruments
SN74LVC2G08IDCTRQ1
AND Gate IC 2 Channel SM8
0.03200000151991844 A
0.03200000151991844 A
-40 °C
85 °C
0.800000011920929 V
0.699999988079071 V
3.7999998703242e-9 s
Surface Mount
0.000009999999747378752 A
2 ul
2 ul
5.5 V
1.649999976158142 V
AND Gate
1.7000000476837158 V
2 V
SM8
Automotive
AEC-Q100
Texas Instruments
SN74LVC2G08YZAR
AND Gate IC 2 Channel 8-DSBGA (1.9x0.9)
0.03200000151991844 A
0.03200000151991844 A
-40 °C
85 °C
0.800000011920929 V
0.699999988079071 V
3.7999998703242e-9 s
Surface Mount
0.000009999999747378752 A
2 ul
2 ul
5.5 V
1.649999976158142 V
AND Gate
1.7000000476837158 V
2 V
8-DSBGA (1.9x0.9)
8-XFBGA, DSBGA
Texas Instruments
SN74LVC2G08DCTRG4
AND Gate IC 2 Channel SM8
0.03200000151991844 A
0.03200000151991844 A
-40 °C
125 °C
0.800000011920929 V
0.699999988079071 V
3.7999998703242e-9 s
Surface Mount
0.000009999999747378752 A
2 ul
2 ul
5.5 V
1.649999976158142 V
AND Gate
1.7000000476837158 V
2 V
SM8
Texas Instruments
SN74LVC2G08DCU6
IC Channel
Texas Instruments
SN74LVC2G08DCUTG4
AND Gate IC 2 Channel 8-VSSOP
0.03200000151991844 A
0.03200000151991844 A
-40 °C
125 °C
0.800000011920929 V
0.699999988079071 V
3.7999998703242e-9 s
Surface Mount
0.000009999999747378752 A
2 ul
2 ul
5.5 V
1.649999976158142 V
AND Gate
1.7000000476837158 V
2 V
0.002311399905011058 m
8-VFSOP
0.002300000051036477 m

Key Features

Available in the Texas InstrumentsNanoStar™ and NanoFree™ PackageSupports 5-V VCCOperationInputs Accept Voltages to 5.5 VMax tpdof 4.7 ns at 3.3 VLow Power Consumption, 10-µA Maximum ICC±24-mA Output Drive at 3.3 VTypical VOLP(Output Ground Bounce)<0.8 V at VCC= 3.3 V, TA= 25°CTypical VOHV(Output VOHUndershoot)>2 V at VCC= 3.3 V, TA= 25°CIoffSupports Live Insertion, Partial-Power-DownMode, and Back-Drive ProtectionCan Be Used as a Down Translator to TranslateInputs From a Maximum of 5.5 V Down to the VCCLevelLatch-Up Performance Exceeds 100 mA PerJESD 78, Class IIESD Protection Exceeds JESD 222000-V Human Body Model (A114-A)1000-V Charged-Device Model (C101)Available in the Texas InstrumentsNanoStar™ and NanoFree™ PackageSupports 5-V VCCOperationInputs Accept Voltages to 5.5 VMax tpdof 4.7 ns at 3.3 VLow Power Consumption, 10-µA Maximum ICC±24-mA Output Drive at 3.3 VTypical VOLP(Output Ground Bounce)<0.8 V at VCC= 3.3 V, TA= 25°CTypical VOHV(Output VOHUndershoot)>2 V at VCC= 3.3 V, TA= 25°CIoffSupports Live Insertion, Partial-Power-DownMode, and Back-Drive ProtectionCan Be Used as a Down Translator to TranslateInputs From a Maximum of 5.5 V Down to the VCCLevelLatch-Up Performance Exceeds 100 mA PerJESD 78, Class IIESD Protection Exceeds JESD 222000-V Human Body Model (A114-A)1000-V Charged-Device Model (C101)

Description

AI
This dual 2-input positive-AND gate is designed for 1.65-V to 5.5-V VCCoperation. The SN74LVC2G08 device performs the Boolean function A × B or Y =A\ + B\in positive logic. NanoFree package technology is a major breakthrough in IC packaging concepts, using the die as the package. This device is fully specified for partial-power-down applications using Ioff. The Ioffcircuitry disables the outputs, preventing damaging current backflow through the device when it is powered down. This dual 2-input positive-AND gate is designed for 1.65-V to 5.5-V VCCoperation. The SN74LVC2G08 device performs the Boolean function A × B or Y =A\ + B\in positive logic. NanoFree package technology is a major breakthrough in IC packaging concepts, using the die as the package. This device is fully specified for partial-power-down applications using Ioff. The Ioffcircuitry disables the outputs, preventing damaging current backflow through the device when it is powered down.