Logic - Gates and Inverters

Image Part Number Description / PDF Quantity Rfq
74AUP1GU04GX,125

74AUP1GU04GX,125

NXP Semiconductors

IC INVERTER 1CH 1-INP 5X2SON

230000

74LVT14BQ,115

74LVT14BQ,115

NXP Semiconductors

IC INVERTER 6CH 6-INP 14DHVQFN

5517

74HC00D/S208,118

74HC00D/S208,118

NXP Semiconductors

IC GATE NAND 4CH 2-INP 14SO

52500

74LVC1G00GW/C2125

74LVC1G00GW/C2125

NXP Semiconductors

NAND GATE, LVC/LCX/Z SERIES

201000

74HC04D/AU118

74HC04D/AU118

NXP Semiconductors

IC INVERTER 6CH 6-INP 14SO

62650

74ALVC14PW,118

74ALVC14PW,118

NXP Semiconductors

IC INVERTER 6CH 6-INP 14TSSOP

20922

74HCT10N,652

74HCT10N,652

NXP Semiconductors

IC GATE NAND 3CH 3-INP 14DIP

2066

74LVC1G99GT/S500115

74LVC1G99GT/S500115

NXP Semiconductors

MAJORITY LOGIC GATE

105000

HEF4011BT/C118

HEF4011BT/C118

NXP Semiconductors

NAND GATE

2500

74HC86N,652

74HC86N,652

NXP Semiconductors

IC GATE XOR 4CH 2-INP 14DIP

62741

74ABT04N,112

74ABT04N,112

NXP Semiconductors

IC INVERTER 6CH 6-INP 14DIP

2679

74AHCT2G32DC-Q100125

74AHCT2G32DC-Q100125

NXP Semiconductors

OR GATE, AHCT/VHCT/VT SERIES

2490

74HCT4075D/C118

74HCT4075D/C118

NXP Semiconductors

IC GATE OR 3CH 3-INP 14SO

5000

74HC03PW/C1118

74HC03PW/C1118

NXP Semiconductors

IC GATE NAND OD 4CH 2-IN 14TSSOP

2500

74HCT3G06DP,125

74HCT3G06DP,125

NXP Semiconductors

IC INVERTER OD 3CH 3-INP 8TSSOP

15000

74AHC1G32GW/C3125

74AHC1G32GW/C3125

NXP Semiconductors

OR GATE, AHC/VHC/H/U/V SERIES

72000

74LVC1G32GW/AU125

74LVC1G32GW/AU125

NXP Semiconductors

OR GATE, LVC/LCX/Z SERIES

630000

74HCT00D/S400118

74HCT00D/S400118

NXP Semiconductors

IC GATE NAND 4CH 2-INP 14SO

42500

74AHCT02U/S400029

74AHCT02U/S400029

NXP Semiconductors

NOR GATE, AHCT/VHCT/VT SERIES

6426

74HC11D118

74HC11D118

NXP Semiconductors

IC GATE AND 3CH 3-INP 14SO

2500

Logic - Gates and Inverters

1. Overview

Logic gates and inverters are fundamental components of digital integrated circuits (ICs). They perform basic logical operations (AND, OR, NOT, etc.) and signal inversion, forming the building blocks of complex digital systems. These components enable Boolean algebra implementation in hardware, driving functions in computers, communication systems, industrial automation, and consumer electronics. Their reliability, speed, and miniaturization have been critical to advancements in modern electronics.

2. Major Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
AND GateOutputs HIGH only when all inputs are HIGHAddress decoding in memory circuits
OR GateOutputs HIGH if at least one input is HIGHSignal combining in control systems
NOT Gate (Inverter)Reverses input signal (HIGH LOW)Digital signal conditioning
NAND GateAND followed by inversion (universal gate)Universal logic implementation
NOR GateOR followed by inversion (universal gate)High-speed arithmetic circuits
XOR GateOutputs HIGH when inputs differError detection/correction circuits

3. Structure and Composition

Logic gates and inverters are fabricated using semiconductor technologies like CMOS (Complementary Metal-Oxide-Semiconductor), TTL (Transistor-Transistor Logic), or ECL (Emitter-Coupled Logic). A typical CMOS-based gate includes:

  • Substrate: Silicon wafer with p-well/n-well regions
  • Transistors: Paired NMOS and PMOS devices for signal switching
  • Interconnects: Aluminum/copper layers for input/output connections
  • Encapsulation: Plastic/ceramic packages (DIP, SOP, QFN) with 14 20 pins

Advanced nodes (e.g., 7nm FinFET) integrate 3D transistor structures for improved performance.

4. Key Technical Specifications

ParameterDescriptionImportance
Propagation DelayTime between input change and output responseDetermines maximum operating frequency
Supply Voltage (VCC)Operating voltage range (e.g., 1.8V 5.5V)Defines compatibility with system voltage
Power DissipationEnergy consumed during operationImpacts thermal management and battery life
Output Drive CapabilityMaximum current/voltage outputDictates fan-out and load capacity
Operating TemperatureTemperature range (-40 C to 125 C)Ensures reliability in harsh environments

5. Application Domains

  • Computing: CPUs, GPUs, ALUs, memory controllers
  • Communication: Routers, modems, 5G base stations
  • Industrial: PLCs, motor controllers, sensors
  • Consumer Electronics: Smartphones, TVs, gaming consoles
  • Automotive: ECUs, ADAS, infotainment systems

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductsKey Features
Texas InstrumentsSN74LVC1G08 (AND gate)Ultra-low power, 1.65V 5.5V supply
NXP Semiconductors74HCT03 (NAND gate)High-speed CMOS, TTL-compatible
STMicroelectronicsSTM74HC04 (Hex Inverter)Industrial temperature range
IntelFPGA-based logic arraysReconfigurable gate-level logic

7. Selection Guidelines

Key considerations include:

  • Speed vs. Power: High-speed (ECL/TTL) for performance-critical tasks; CMOS for low power
  • Voltage Compatibility: Match supply voltage with system requirements
  • Package Type: DIP for prototyping, QFN for space-constrained PCBs
  • Environmental Demands: Automotive-grade parts for high-temperature resilience
  • Cost: Balance performance needs with budget constraints

Example: Choosing SN74LVC1G32 (OR gate) for a 3.3V IoT device ensures low power consumption and compact integration.

8. Industry Trends

  • Advanced Node Scaling: Transition to 5nm/3nm processes for higher density
  • 3D Integration: Stacked die architectures for improved performance
  • Green Manufacturing: Reduced lead/tin content and energy-efficient fabrication
  • AI-Driven Design: Machine learning for optimized logic synthesis
  • Automotive Focus: Increased demand for AEC-Q100 qualified parts
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