ON Semiconductor 74ACT series Logic - Gates and Inverters

Introduction, stock information and FAQs of 74ACT series Gates & Inverters

In this article, you will be informed about the features, applications, PDF datasheets, alternative items, and the most recent stock and cost data of ON Semiconductor 74ACT series Gates & Inverters.

Applications

  • Data center & enterprise computing
Associated Products

Part NumberDescriptionStockRFQ
MC74ACT00DTR2GIC GATE NAND 4CH 2-INP 14-TSSOP13BUY
74ACT08MTCXIC GATE AND 4CH 2-INP 14-TSSOP20000BUY
MC74ACT20DGIC GATE NAND 2CH 4-INP 14-SOIC13BUY
MC74ACT11DR2GIC GATE AND 3CH 3-INP 14-SOIC2490RFQ
MC74ACT05DTR2GIC INVERTER HEX OPN DRN 14-TSSOP316BUY
MC74ACT32DTR2GIC GATE OR 4CH 2-INP 14-TSSOP2500BUY
MC74ACT14DGON SEMICONDUCTOR - MC74ACT14DG - HEX INVERTER, SCHMITT TRIGGER SOIC-14332BUY
MC74ACT04DGIC INVERTER 6CH 6-INP 14SOIC95BUY
74ACT14MTCIC INVERTER HEX SCHMITT 14TSSOP124RFQ
MC74ACT10DTR2GIC GATE NAND 3CH 3-INP 14-TSSOP47BUY
MC74ACT14DR2GIC SCHMITT TRIG HEX INV 14-SOIC2469RFQ
74ACT04MTCFAIRCHILD SEMICONDUCTOR 74ACT04MTC Inverter Gate, ACT Family, 6 Gate, 1 Input, 24 mA, 4.5V to 5.5V, TSSOP-1430000BUY
MC74ACT00DTR2IC GATE NAND 4CH 2-INP 14-TSSOP0RFQ
MC74ACT132MELGIC GATE NAND 4CH 2-INP 14-SOEIAJ0RFQ
MC74ACT02DTR2IC GATE NOR 4CH 2-INP 14-TSSOP1187RFQ
MC74ACT10MELGIC GATE NAND 3CH 3-INP 14-SOEIAJ0RFQ
MC74ACT00MELGIC GATE NAND 4CH 2-INP 14-SOEIAJ400RFQ
MC74ACT10DR2IC GATE NAND 3CH 3-INP 14-SOIC0RFQ
MC74ACT11NIC GATE AND 3CH 3-INP 14-DIP0RFQ
MC74ACT02DIC GATE NOR 4CH 2-INP 14-SOIC4950RFQ
Technical Documents

The ON Semiconductor 74ACT series Logic Gates and Inverters are a family of high-speed, low-power CMOS logic devices. They are designed to provide high-speed logic functions with low power consumption and low noise. The 74ACT series is available in a variety of logic functions, including AND, OR, NAND, NOR, XOR, and XNOR gates, as well as inverters. The 74ACT series is designed to operate from a single 3.3V or 5V power supply, and is available in a variety of packages, including SOIC, TSSOP, and QFN. The 74ACT series is ideal for applications requiring high-speed logic functions with low power consumption and low noise.


Features


• Low power consumption

• High speed operation

• Low input and output capacitance

• High noise immunity

• High fan-out capability

• Low input and output leakage current

• High noise immunity

• High fan-out capability


Applications


  • Security Systems

  • Data Transmission

  • Power Management

  • Clock Signal Generation

  • Digital Signal Processing

  • Microprocessor and Microcontroller Interface


Frequently Asked Questions

What are the Alternative Products of ON Semiconductor 74ACT series Logic - Gates and Inverters?

1. Texas Instruments SN74ACT Series Logic - Gates and Inverters 2. NXP 74ACT Series Logic - Gates and Inverters 3. STMicroelectronics 74ACT Series Logic - Gates and Inverters 4. Fairchild 74ACT Series Logic - Gates and Inverters 5. Renesas 74ACT Series Logic - Gates and Inverters 6. Microchip 74ACT Series Logic - Gates and Inverters 7. Analog Devices 74ACT Series Logic - Gates and Inverters 8. Maxim Integrated 74ACT Series Logic - Gates and Inverters

What are the differences between the types of ON Semiconductor 74ACT series Logic - Gates and Inverters?

The 74ACT series of logic gates and inverters from ON Semiconductor are available in a variety of types, each with its own unique features and characteristics. The main differences between the types are their speed, power consumption, and input/output levels.   The 74ACT00 series is the slowest of the 74ACT series, with a maximum propagation delay of 15ns. It is also the most power efficient, with a maximum power dissipation of 1.2W. The input/output levels are TTL compatible.   The 74ACT04 series is faster than the 74ACT00 series, with a maximum propagation delay of 8ns. It is slightly less power efficient, with a maximum power dissipation of 1.5W. The input/output levels are also TTL compatible.   The 74ACT08 series is the fastest of the 74ACT series, with a maximum propagation delay of 4ns. It is the least power efficient, with a maximum power dissipation of 2.2W. The input/output levels are CMOS compatible.