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SN74AC86DBR

Active
Texas Instruments

4-CH, 2-INPUT, 2-V TO 5.5-V XOR (EXCLUSIVE OR) GATES

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SN74AC86DBR - https://ti.com/content/dam/ticom/images/products/package/d/db0014a.png

SN74AC86DBR

Active
Texas Instruments

4-CH, 2-INPUT, 2-V TO 5.5-V XOR (EXCLUSIVE OR) GATES

Technical Specifications

Parameters and characteristics commom to parts in this series

SpecificationSN74AC86DBRSN74AC86 Series
Current - Output High, Low [custom]24 mA24 mA
Current - Output High, Low [custom]24 mA24 mA
Input Logic Level - High [Max]3.85 V3.85 V
Input Logic Level - High [Min]2.1 V2.1 V
Input Logic Level - Low [Max]1.65 V1.65 V
Input Logic Level - Low [Min]0.9 V0.9 V
Logic TypeXOR (Exclusive OR)XOR (Exclusive OR)
Max Propagation Delay @ V, Max CL8.5 ns8.5 ns
Mounting TypeSurface MountSurface Mount, Through Hole
Number of Circuits44
Number of Inputs22
Operating Temperature [Max]85 °C85 °C
Operating Temperature [Min]-40 °C-40 °C
Package / Case0.209 in0.209 in
Package / Case14-SSOP14-SOIC, 14-TSSOP, 14-SSOP, 14-DIP
Package / Case5.3 mm0.154 - 5.3 in
Package / Case-3.9 - 7.62 mm
Package / Case-5.3 mm
Package / Case-0.209 in
Package / Case-0.173 in
Package / Case-4.4 mm
Supplier Device Package14-SSOP14-SO, 14-TSSOP, 14-SSOP
Voltage - Supply [Max]6 V6 V
Voltage - Supply [Min]2 V2 V

Pricing

Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly

SN74AC86 Series

4-ch, 2-input, 2-V to 5.5-V XOR (exclusive OR) gates

PartNumber of CircuitsInput Logic Level - Low [Min]Input Logic Level - Low [Max]Logic TypeVoltage - Supply [Min]Voltage - Supply [Max]Current - Output High, Low [custom]Current - Output High, Low [custom]Number of InputsMounting TypeOperating Temperature [Min]Operating Temperature [Max]Input Logic Level - High [Min]Input Logic Level - High [Max]Package / CasePackage / CasePackage / CaseMax Propagation Delay @ V, Max CLPackage / Case [y]Package / Case [y]Supplier Device PackagePackage / Case [custom]Package / Case [custom]Package / Case
Texas Instruments
SN74AC86DR
The ’AC86 devices are quadruple 2-input exclusive-OR gates. The devices perform the Boolean function Y = A ⊕ B or Y = AB + AB in positive logic. A common application is as a true/complement element. If one of the inputs is low, the other input is reproduced in true form at the output. If one of the inputs is high, the signal on the other input is reproduced inverted at the output. The ’AC86 devices are quadruple 2-input exclusive-OR gates. The devices perform the Boolean function Y = A ⊕ B or Y = AB + AB in positive logic. A common application is as a true/complement element. If one of the inputs is low, the other input is reproduced in true form at the output. If one of the inputs is high, the signal on the other input is reproduced inverted at the output.
4
0.9 V
1.65 V
XOR (Exclusive OR)
2 V
6 V
24 mA
24 mA
2
Surface Mount
-40 °C
85 °C
2.1 V
3.85 V
3.9 mm
0.154 in
14-SOIC
8.5 ns
Texas Instruments
SN74AC86NSR
The ’AC86 devices are quadruple 2-input exclusive-OR gates. The devices perform the Boolean function Y = A ⊕ B or Y = AB + AB in positive logic. A common application is as a true/complement element. If one of the inputs is low, the other input is reproduced in true form at the output. If one of the inputs is high, the signal on the other input is reproduced inverted at the output. The ’AC86 devices are quadruple 2-input exclusive-OR gates. The devices perform the Boolean function Y = A ⊕ B or Y = AB + AB in positive logic. A common application is as a true/complement element. If one of the inputs is low, the other input is reproduced in true form at the output. If one of the inputs is high, the signal on the other input is reproduced inverted at the output.
4
0.9 V
1.65 V
XOR (Exclusive OR)
2 V
6 V
24 mA
24 mA
2
Surface Mount
-40 °C
85 °C
2.1 V
3.85 V
14-SOIC
8.5 ns
5.3 mm
0.209 in
14-SO
Texas Instruments
SN74AC86PWR
The ’AC86 devices are quadruple 2-input exclusive-OR gates. The devices perform the Boolean function Y = A ⊕ B or Y = AB + AB in positive logic. A common application is as a true/complement element. If one of the inputs is low, the other input is reproduced in true form at the output. If one of the inputs is high, the signal on the other input is reproduced inverted at the output. The ’AC86 devices are quadruple 2-input exclusive-OR gates. The devices perform the Boolean function Y = A ⊕ B or Y = AB + AB in positive logic. A common application is as a true/complement element. If one of the inputs is low, the other input is reproduced in true form at the output. If one of the inputs is high, the signal on the other input is reproduced inverted at the output.
4
0.9 V
1.65 V
XOR (Exclusive OR)
2 V
6 V
24 mA
24 mA
2
Surface Mount
-40 °C
85 °C
2.1 V
3.85 V
14-TSSOP
8.5 ns
14-TSSOP
0.173 in
4.4 mm
Texas Instruments
SN74AC86PW
The ’AC86 devices are quadruple 2-input exclusive-OR gates. The devices perform the Boolean function Y = A ⊕ B or Y = AB + AB in positive logic. A common application is as a true/complement element. If one of the inputs is low, the other input is reproduced in true form at the output. If one of the inputs is high, the signal on the other input is reproduced inverted at the output. The ’AC86 devices are quadruple 2-input exclusive-OR gates. The devices perform the Boolean function Y = A ⊕ B or Y = AB + AB in positive logic. A common application is as a true/complement element. If one of the inputs is low, the other input is reproduced in true form at the output. If one of the inputs is high, the signal on the other input is reproduced inverted at the output.
4
0.9 V
1.65 V
XOR (Exclusive OR)
2 V
6 V
24 mA
24 mA
2
Surface Mount
-40 °C
85 °C
2.1 V
3.85 V
14-TSSOP
8.5 ns
14-TSSOP
0.173 in
4.4 mm
Texas Instruments
SN74AC86DBR
The ’AC86 devices are quadruple 2-input exclusive-OR gates. The devices perform the Boolean function Y = A ⊕ B or Y = AB + AB in positive logic. A common application is as a true/complement element. If one of the inputs is low, the other input is reproduced in true form at the output. If one of the inputs is high, the signal on the other input is reproduced inverted at the output. The ’AC86 devices are quadruple 2-input exclusive-OR gates. The devices perform the Boolean function Y = A ⊕ B or Y = AB + AB in positive logic. A common application is as a true/complement element. If one of the inputs is low, the other input is reproduced in true form at the output. If one of the inputs is high, the signal on the other input is reproduced inverted at the output.
4
0.9 V
1.65 V
XOR (Exclusive OR)
2 V
6 V
24 mA
24 mA
2
Surface Mount
-40 °C
85 °C
2.1 V
3.85 V
5.3 mm
14-SSOP
8.5 ns
14-SSOP
0.209 in
Texas Instruments
SN74AC86N
The ’AC86 devices are quadruple 2-input exclusive-OR gates. The devices perform the Boolean function Y = A ⊕ B or Y = AB + AB in positive logic. A common application is as a true/complement element. If one of the inputs is low, the other input is reproduced in true form at the output. If one of the inputs is high, the signal on the other input is reproduced inverted at the output. The ’AC86 devices are quadruple 2-input exclusive-OR gates. The devices perform the Boolean function Y = A ⊕ B or Y = AB + AB in positive logic. A common application is as a true/complement element. If one of the inputs is low, the other input is reproduced in true form at the output. If one of the inputs is high, the signal on the other input is reproduced inverted at the output.
4
0.9 V
1.65 V
XOR (Exclusive OR)
2 V
6 V
24 mA
24 mA
2
Through Hole
-40 °C
85 °C
2.1 V
3.85 V
7.62 mm
0.3 in
14-DIP
8.5 ns

Description

General part information

SN74AC86 Series

The ’AC86 devices are quadruple 2-input exclusive-OR gates. The devices perform the Boolean function Y = A ⊕ B or Y = AB + AB in positive logic.

A common application is as a true/complement element. If one of the inputs is low, the other input is reproduced in true form at the output. If one of the inputs is high, the signal on the other input is reproduced inverted at the output.

The ’AC86 devices are quadruple 2-input exclusive-OR gates. The devices perform the Boolean function Y = A ⊕ B or Y = AB + AB in positive logic.