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    1. Home/
    2. All Manufacturers/
    3. Onsemi/
    4. Integrated Circuits - ICs/
    5. Logic ICs

    Logic ICs

    (54,798)

    Logic ICs are integrated circuits designed to implement fundamental digital logic functions and signal control within electronic systems. They process binary input signals to produce defined binary outputs according to established logic rules.

    This category includes devices that realize common logic operations and related digital building blocks, supporting the creation, conditioning, and coordination of digital signals at the circuit level.

    • Core purpose: Perform logical decision-making and digital signal manipulation.
    • Functional scope: Basic logic functions and standard digital logic elements.
    • System role: Provide predictable logic behavior for combining, routing, and controlling digital signals.
    1000Results Found

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    ProductManufacturerIn Stock StatusPriceQtyRFQDescription
    SSTV16859GX
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    SSTV16859GX

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    SSTV16859 is a dual output 13-bit register with SSTL-2 compatible I/O and reset, designed for DDR-1 memory modules.

    SN74LS86DR2
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    SN74LS86DR2

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    SN74LS86 Quad 2-Input Exclusive OR Gate

    SN74LS123DR2
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    SN74LS123DR2

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    These dc triggered multivibrators feature pulse width control by three methods.

    NLVVHC1GT08DFT2G
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    NLVVHC1GT08DFT2G

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    Single 2-Input AND gate in tiny footprint packages.

    NLVVHC1GT00DFT2G
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    NLVVHC1GT00DFT2G

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    The MC74VHC1G00 / MC74VHC1GT00 is a 2-input NAND gate in tiny footprint packages.

    NLVVHC1G09DFT2G
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    NLVVHC1G09DFT2G

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    The MC74VHC1G09 is an advanced high speed CMOS 2−input AND gate with open drain output fabricated with silicon gate CMOS technology.

    NLVVHC1G02DFT2G
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    NLVVHC1G02DFT2G

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    Advanced high speed CMOS 2-input NOR gate in tiny footprint packages.

    NLVVHC1G02DFT1G
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    NLVVHC1G02DFT1G

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    Advanced high-speed CMOS 2-input NOR gate in tiny footprint packages.

    NLVHC32ADTR2G
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    NLVHC32ADTR2G

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    Quad 2-Input OR Gate with High-Performance Silicon-Gate CMOS technology

    NLVHC1G00DFT2G
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    NLVHC1G00DFT2G

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    The MC74HC1G00 is a high speed CMOS 2−input NAND gate fabricated with silicon gate CMOS technology.

    NLVHC165ADR2G
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    NLVHC165ADR2G

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    8-bit shift register with complementary outputs, supporting parallel or serial data loading.

    NLV74LCX573DTR2G
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    NLV74LCX573DTR2G

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    Low-Voltage CMOS Octal Transparent Latch with 5 V-Tolerant Inputs and Outputs, 3-State, Non-Inverting

    NLV74HCT74ADR2G
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    NLV74HCT74ADR2G

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    Dual D Flip-Flop with Set and Reset with LSTTL Compatible Inputs High−Performance Silicon−Gate CMOS

    NLV74HCT74ADG
    RoHS
    NLV74HCT74ADG

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    Dual D Flip-Flop with Set and Reset with LSTTL Compatible Inputs High−Performance Silicon−Gate CMOS

    NLV74HC595AMNTWG
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    NLV74HC595AMNTWG

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    8-Bit Serial-Input/Serial or Parallel-Output Shift Register with Latched 3-State Outputs

    NLV74HC1G00DTT1G
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    NLV74HC1G00DTT1G

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    The MC74HC1G00 is a high speed CMOS 2−input NAND gate fabricated with silicon gate CMOS technology.

    NLV74HC00ADTR2G
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    NLV74HC00ADTR2G

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    Quad 2-Input NAND Gate with High-Performance Silicon-Gate CMOS technology.

    NL17SZ04EDFT2G
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    NL17SZ04EDFT2G

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    The NL17SZ04E is an inverter in three tiny footprint packages. The device performs much as LCX multi−gate products in speed and drive.

    NL17SHT32P5T5G
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    NL17SHT32P5T5G

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    The NL17SHT32 is an advanced high speed CMOS 2−input OR gate fabricated with silicon gate CMOS technology. It achieves high speed operation similar to equivalent Bipolar Schottky TTL while maintaining CMOS low power dissipation.

    NC7WZU04P6X_F065
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    NC7WZU04P6X_F065

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    The NC7WZU04 is a dual unbuffered inverter from onsemi’s Ultra High Speed Series of TinyLogic in the space saving SC−88 6−lead package.

    NC7SVL32P5X
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    NC7SVL32P5X

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    NC7SVL32 TinyLogic Low-ICCT Two-Input OR Gate

    NC7ST32P5
    NC7ST32P5

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    The NC7ST32 is a single 2-Input high performance CMOS OR Gate, with TTL-compatible inputs.

    NB100LVEP17MNR2G
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    NB100LVEP17MNR2G

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    The NB100LVEP17 is a 4-bit differential line receiver with internal gain stages for high bandwidth amplifier applications.

    MM74HCT573SJX
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    MM74HCT573SJX

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    Octal D-type latch and flip-flop with 3-state outputs, CMOS technology, TTL compatible.

    MM74HCT374SJX
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    MM74HCT374SJX

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    The MM74HCT373 octal D-type latches and MM74HCT374 Octal D-type flip flops advanced silicon-gate CMOS technology, which provides the inherent benefits of low power consumption and wide power supply range, but are LS-TTL input and output characteristic & pin-out compatible.

    MM74HCT273SJ
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    MM74HCT273SJ

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    The MM74HCT273 utilizes advanced silicon-gate CMOS technology. It has an input threshold and output drive similar to LS-TTL with the low standby power of CMOS.

    MM74HCT08SJX
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    MM74HCT08SJX

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    The MM74HCT08 is a logic function fabricated by using advanced silicon-gate CMOS technology which provides the inherent benefits of CMOS—low quiescent power and wide power supply range.

    MM74HCT08SJ
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    MM74HCT08SJ

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    The MM74HCT08 is a logic function fabricated by using advanced silicon-gate CMOS technology which provides the inherent benefits of CMOS—low quiescent power and wide power supply range.

    MM74HCT05SJX
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    MM74HCT05SJX

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    The MM74HCT05 is a logic function fabricated by using advanced silicon-gate CMOS technology, which provides the inherent benefits of CMOS—low quiescent power and wide power supply range. The MM74HCT05 open drain Hex Inverter requires the addition of an external resistor to perform a wire-NOR function.

    MM74HCT05N
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    MM74HCT05N

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    The MM74HCT05 is a logic function fabricated by using advanced silicon-gate CMOS technology, which provides the inherent benefits of CMOS—low quiescent power and wide power supply range.

    MM74HCT04SJX
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    MM74HCT04SJX

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    The MM74HCT04 is a logic function fabricated by using advanced silicon-gate CMOS technology which provides the inherent benefits of CMOS—low quiescent power and wide power supply range.

    MM74HC74ASJ
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    MM74HC74ASJ

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    A dual D-type flip-flop with preset and clear, using CMOS technology for high-speed operation.

    MM74HC595SJX
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    MM74HC595SJX

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    8-Bit Shift Register with Output Latches. Utilizes advanced silicon-gate CMOS technology with high noise immunity and low power consumption.

    MM74HC589SJ
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    MM74HC589SJ

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    The MM74HC589 high speed shift register utilizes advanced silicon-gate CMOS technology to achieve the high noise immunity and low power consumption of standard CMOS integrated circuits, as well as the ability to drive 15 LS-TTL loads.

    MM74HC589MX
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    MM74HC589MX

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    The MM74HC589 high speed shift register utilizes advanced silicon-gate CMOS technology to achieve the high noise immunity and low power consumption of standard CMOS integrated circuits, as well as the ability to drive 15 LS-TTL loads.

    MM74HC574SJ
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    MM74HC574SJ

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    The MM74HC574 high speed octal D-type flip-flops utilize advanced silicon-gate P-well CMOS technology. They possess the high noise immunity and low power consumption of standard CMOS integrated circuits, as well as the ability to drive 15 LS-TTL loads.

    MM74HC573SJX
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    MM74HC573SJX

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    The MM74HC573 high speed octal D-type latches utilize advanced silicon-gate P-well CMOS technology. They possess the high noise immunity and low power consumption of standard CMOS integrated circuits, as well as the ability to drive 15 LS-TTL loads.

    MM74HC573SJ
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    MM74HC573SJ

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    The MM74HC573 high speed octal D-type latches utilize advanced silicon-gate P-well CMOS technology.

    MM74HC541SJ
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    MM74HC541SJ

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    Inverting and non-inverting octal 3-state buffers using advanced silicon-gate CMOS technology.

    MM74HC540SJ
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    MM74HC540SJ

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    Inverting and non-inverting octal 3-state buffers utilizing advanced silicon-gate CMOS technology with high drive current outputs for high-speed operation.

    MM74HC4538SJ
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    MM74HC4538SJ

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    The MM74HC4538 high speed monostable multivibrator (one shots) is implemented in advanced silicon-gate CMOS technology. They feature speeds comparable to low power Schottky TTL circuitry while retaining the low power and high noise immunity characteristic of CMOS circuits.

    MM74HC4538MX
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    MM74HC4538MX

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    The MM74HC4538 high speed monostable multivibrator (one shots) is implemented in advanced silicon-gate CMOS technology. They feature speeds comparable to low power Schottky TTL circuitry while retaining the low power and high noise immunity characteristic of CMOS circuits.

    MM74HC4538M
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    MM74HC4538M

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    The MM74HC4538 high speed monostable multivibrator (one shots) is implemented in advanced silicon-gate CMOS technology. They feature speeds comparable to low power Schottky TTL circuitry while retaining the low power and high noise immunity characteristic of CMOS circuits.

    MM74HC4514WMX
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    MM74HC4514WMX

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    4-to-16 line decoder with latch utilizing advanced silicon-gate CMOS technology, suited for memory address decoding or data routing.

    MM74HC4514MTC
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    MM74HC4514MTC

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    The MM74HC4514 utilizes advanced silicon-gate CMOS technology, which is well suited to memory address decoding or data routing application. It possesses high noise immunity and low power dissipation usually associated with CMOS circuitry, yet speeds comparable to low power Schottky TTL circuits.

    MM74HC423AN
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    MM74HC423AN

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    The 74HC423A high speed monostable multivibrators (one shots) utilize advanced silicon-gate CMOS technology. They feature speeds comparable to low power Schottky TTL circuitry while retaining the low power and high noise immunity characteristic of CMOS circuits.

    MM74HC374SJX
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    MM74HC374SJX

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    The MM74HC374 high speed Octal D-Type Flip-Flops utilize advanced silicon-gate CMOS technology, possessing high noise immunity and low power consumption.

    MM74HC374SJ
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    MM74HC374SJ

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    The MM74HC374 high speed Octal D-Type Flip-Flops utilize advanced silicon-gate CMOS technology. They possess the high noise immunity and low power consumption of standard CMOS integrated circuits, as well as the ability to drive 15 LS-TTL loads.

    MM74HC373SJX
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    MM74HC373SJX

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    The MM74HC373 high speed octal D-type latches utilize advanced silicon-gate CMOS technology. They possess the high noise immunity and low power consumption of standard CMOS integrated circuits, as well as the ability to drive 15 LS-TTL loads.

    MM74HC373SJ
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    MM74HC373SJ

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    High speed octal D-type latch with 3-STATE outputs using CMOS technology.

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