Texas Instruments 74HC series Logic - Gates and Inverters

Introduction, stock information and FAQs of 74HC 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 Texas Instruments 74HC series Gates & Inverters.

Applications

  • Data center & enterprise computing
Associated Products

Part NumberDescriptionStockRFQ
SN74HC04NIC INVERTER 6CH 6-INP 14DIP1000RFQ
CD74HC14EIC INVERTER SCHMITT 6CH 14DIP30000BUY
SN74HC08DRIC GATE AND 4CH 2-INP 14SOIC12366RFQ
SN74HC86PWRIC, Quad Xor Gate, 2I/P, TSSOP-14, Full Reel1000RFQ
SN74HC10DRTriple 3-Input Positive-NAND Gates 14-SOIC -40 to 850BUY
SN74HC00PWRIC GATE NAND 4CH 2-INP 14TSSOP2000RFQ
SN74HC10PWRNAND Gate 3-Element 3-IN CMOS 14-Pin TSSOP T/R1979BUY
SN74HC20DRIC GATE NAND 2CH 4-INP 14SOIC2113BUY
SN74HC132PWRIC GATE NAND SCHMITT 4CH 14TSSOP1000RFQ
SN74HC11PWRIC GATE AND 3CH 3-INP 14-TSSOP2053RFQ
SN74HC14ANSRInverter Schmitt Trigger 6-Element CMOS 14-Pin SOP T/R2000RFQ
SN74HC132NSRNAND Gate 4-Element 2-IN CMOS 14-Pin SOP T/R1400RFQ
SN74HC04APWRInverters Hex Inverters47RFQ
CD74HC03ENAND Gate 4-Element 2-IN CMOS 14-Pin PDIP Tube78000BUY
CD74HC4075MIC GATE OR 3CH 3-INP 14-SOIC280BUY
SN74HC04DTIC HEX INVERTER 14-SOIC29BUY
SN74HC08PW@IC, SN74HC08PW, TSSOP-14, Quad 2-INPUT And Gate (10)5BUY
SN74HC21PWIC GATE AND 2CH 4-INP 14TSSOP50BUY
CD74HC14PWInverter Schmitt Trigger 6-Element CMOS 14-Pin TSSOP Tube5BUY
CD74HC30MIC GATE NAND 1CH 8-INP 14SOIC30BUY
Technical Documents

The Texas Instruments 74HC series Logic Gates and Inverters are a family of integrated circuits designed to provide logic functions in a wide variety of applications. These devices are based on the popular CMOS technology and offer high speed, low power consumption, and low noise operation. The 74HC series includes a variety of logic gates and inverters, including AND, OR, NAND, NOR, XOR, and XNOR gates, as well as inverters. These devices are available in a variety of packages, including DIP, SOIC, and TSSOP. The 74HC series is ideal for applications requiring high speed, low power, and low noise operation.


Features


• Low power consumption

• High speed operation

• Low input current

• High noise immunity


Applications


• Data Processing: The logic gates can be used for Boolean algebra, which is a fundamental operation in data processing and information theory.

• Memory Circuits: These logic gates can be used in memory circuits such as random access memory (RAM), read-only memory (ROM), and programmable logic devices (PLDs).

• Clock Generation: The logic gates can be used to generate clock signals for synchronous circuits require precise timing signals.

• Data Transmission: These gates are used in serial and parallel communication systems to transmit data and to control the flow of data between different components.

• Combinational Logic: The logic gates can be used to design combinational logic circuits such as adders, multipliers and comparators.

Overall, the Texas Instruments 74HC series logic gates and inverters offer a high-performance and cost-effective solution for digital circuits and enable a variety of operations in different types of electronics-based systems in the industry.



Frequently Asked Questions

What are the Alternative Products of Texas Instruments 74HC series Logic - Gates and Inverters?

1. NXP 74HC Series Logic Gates and Inverters 2. STMicroelectronics 74HC Series Logic Gates and Inverters 3. ON Semiconductor 74HC Series Logic Gates and Inverters 4. Fairchild 74HC Series Logic Gates and Inverters 5. Renesas 74HC Series Logic Gates and Inverters 6. Microchip 74HC Series Logic Gates and Inverters 7. Analog Devices 74HC Series Logic Gates and Inverters 8. Maxim Integrated 74HC Series Logic Gates and Inverters

What are the differences between the types of Texas Instruments 74HC series Logic - Gates and Inverters?

The 74HC series of logic gates and inverters are CMOS (Complementary Metal-Oxide Semiconductor) integrated circuits. The main difference between the two types is that logic gates are used to perform logical operations on two or more inputs, while inverters are used to invert the logic level of a single input. Logic gates can be used to create complex logic functions, while inverters are used to convert a logic level from one state to another. Additionally, logic gates are typically faster than inverters, and can handle higher voltages.