文件名称:74HC116
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- ActiveX/DCOM
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- [PDF]
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- 2012-11-26
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- 11.35mb
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January 1988
MM54HC00/MM74HC00
Quad 2-Input NAND Gate
General Descr iption
These NAND gates utilize advanced silicon-gate CMOS
technology to achieve operating speeds similar to LS-TTL
gates with the low power consumption of standard CMOS
integrated circuits. All gates have buffered outputs. All de-
vices have high noise immunity and the ability to drive 10
LS-TTL loads. The 54HC/74HC logic family is functionally
as well as pin-out compatible with the standard 54LS/74LS
logic family. All inputs are protected from damage due to
static discharge by internal diode clamps to VCC and
ground.
Features
Y Typical propagation delay: 8 ns
Y Wide power supply range: 2–6V
Y Low quiescent current: 20 mA maximum (74HC Series)
Y Low input current: 1 mA maximum
Y Fanout of 10 LS-TTL loads-January 1988MM54HC00/MM74HC00Quad 2-Input NAND GateGeneral Descr iptionThese NAND gates utilize advanced silicon-gate CMOStechnology to achieve operating speeds similar to LS-TTLgates with the low power consumption of standard CMOSintegrated circuits. All gates have buffered outputs. All de-vices have high noise immunity and the ability to drive 10LS-TTL loads. The 54HC/74HC logic family is functionallyas well as pin-out compatible with the standard 54LS/74LSlogic family. All inputs are protected from damage due tostatic discharge by internal diode clamps to VCC andground. FeaturesY Typical propagation delay: 8 nsY Wide power supply range: 2-6VY Low quiescent current: 20 mA maximum (74HC Series) Y Low input current: 1 mA maximumY Fanout of 10 LS-TTL loads
MM54HC00/MM74HC00
Quad 2-Input NAND Gate
General Descr iption
These NAND gates utilize advanced silicon-gate CMOS
technology to achieve operating speeds similar to LS-TTL
gates with the low power consumption of standard CMOS
integrated circuits. All gates have buffered outputs. All de-
vices have high noise immunity and the ability to drive 10
LS-TTL loads. The 54HC/74HC logic family is functionally
as well as pin-out compatible with the standard 54LS/74LS
logic family. All inputs are protected from damage due to
static discharge by internal diode clamps to VCC and
ground.
Features
Y Typical propagation delay: 8 ns
Y Wide power supply range: 2–6V
Y Low quiescent current: 20 mA maximum (74HC Series)
Y Low input current: 1 mA maximum
Y Fanout of 10 LS-TTL loads-January 1988MM54HC00/MM74HC00Quad 2-Input NAND GateGeneral Descr iptionThese NAND gates utilize advanced silicon-gate CMOStechnology to achieve operating speeds similar to LS-TTLgates with the low power consumption of standard CMOSintegrated circuits. All gates have buffered outputs. All de-vices have high noise immunity and the ability to drive 10LS-TTL loads. The 54HC/74HC logic family is functionallyas well as pin-out compatible with the standard 54LS/74LSlogic family. All inputs are protected from damage due tostatic discharge by internal diode clamps to VCC andground. FeaturesY Typical propagation delay: 8 nsY Wide power supply range: 2-6VY Low quiescent current: 20 mA maximum (74HC Series) Y Low input current: 1 mA maximumY Fanout of 10 LS-TTL loads
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74HC116
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.......\74HC237.pdf
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.......\74HC253.pdf
.......\74HC257.pdf
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.......\74HC259.pdf
.......\74HC266A.pdf
.......\74HC27.pdf
.......\74HC273.pdf
.......\74HC280.pdf
.......\74HC283.pdf
.......\74HC299.pdf
.......\74HC30.pdf
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.......\74HC423A.pdf
.......\74HC4511.pdf
.......\74HC4514.pdf
.......\74HC4543.pdf
.......\74HC51.pdf
.......\74HC521.pdf
.......\74HC533.pdf
.......\74HC534.pdf
.......\74HC540.pdf
.......\74HC541.pdf
.......\74HC58.pdf
.......\74HC589.pdf
.......\74HC594.pdf
.......\74HC595.pdf
.......\74HC00.pdf
.......\74HC02.pdf
.......\74HC03.pdf
.......\74HC04.pdf
.......\74HC05.pdf
.......\74HC08.pdf
.......\74HC107.pdf
.......\74HC109A.pdf
.......\74HC11.pdf
.......\74HC112.pdf
.......\74HC113.pdf
.......\74HC123A.pdf
.......\74HC125.pdf
.......\74HC126.pdf
.......\74HC132.pdf
.......\74HC133.pdf
.......\74HC137.pdf
.......\74HC138.pdf
.......\74HC139.pdf
.......\74HC14.pdf
.......\74HC147.pdf
.......\74HC148.pdf
.......\74HC149.pdf
.......\74HC151.pdf
.......\74HC153.pdf
.......\74HC154.pdf
.......\74HC155.pdf
.......\74HC157.pdf
.......\74HC161.pdf
.......\74HC163.pdf
.......\74HC164.pdf
.......\74HC165.pdf
.......\74HC166.pdf
.......\74HC173.pdf
.......\74HC174.pdf
.......\74HC175.pdf
.......\74HC181.pdf
.......\74HC182.pdf
.......\74HC190.pdf
.......\74HC191.pdf
.......\74HC192.pdf
.......\74HC193.pdf
.......\74HC194.pdf
.......\74HC195.pdf
.......\74HC20.pdf
.......\74HC221A.pdf
.......\74HC237.pdf
.......\74HC242.pdf
.......\74HC244.pdf
.......\74HC251.pdf
.......\74HC253.pdf
.......\74HC257.pdf
.......\74HC258.pdf
.......\74HC259.pdf
.......\74HC266A.pdf
.......\74HC27.pdf
.......\74HC273.pdf
.......\74HC280.pdf
.......\74HC283.pdf
.......\74HC299.pdf
.......\74HC30.pdf
.......\74HC32.pdf
.......\74HC34.pdf
.......\74HC354.pdf
.......\74HC356.pdf
.......\74HC365.pdf
.......\74HC366.pdf
.......\74HC367.pdf
.......\74HC368.pdf
.......\74HC373.pdf
.......\74HC374.pdf
.......\74HC393.pdf
.......\74HC4016.pdf
.......\74HC4017.pdf
.......\74HC4020.pdf
.......\74HC4040.pdf
.......\74HC4046.pdf
.......\74HC4049.pdf
.......\74HC4050.pdf
.......\74HC4051.pdf
.......\74HC4052.pdf
.......\74HC4060.pdf
.......\74HC4066.pdf
.......\74HC4075.pdf
.......\74HC42.pdf
.......\74HC423A.pdf
.......\74HC4511.pdf
.......\74HC4514.pdf
.......\74HC4543.pdf
.......\74HC51.pdf
.......\74HC521.pdf
.......\74HC533.pdf
.......\74HC534.pdf
.......\74HC540.pdf
.......\74HC541.pdf
.......\74HC58.pdf
.......\74HC589.pdf
.......\74HC594.pdf
.......\74HC595.pdf