Logic - Latches

Image Part Number Description / PDF Quantity Rfq
74LVT16373ADGG,112

74LVT16373ADGG,112

Nexperia

IC 16BIT TRANSP LATCH D 48TSSOP

0

74HC573D,653

74HC573D,653

Nexperia

IC LATCH OCTAL D 3STATE 20SOIC

2238

74LVC573AD,112

74LVC573AD,112

Nexperia

IC OCTAL D TRANSP LATCH 20SOIC

3918

74HC259PW,118

74HC259PW,118

Nexperia

IC 8BIT ADDRESSABL LATCH 16TSSOP

502

74HC373DB112

74HC373DB112

Nexperia

NOW NEXPERIA 74HC373DB - BUS DRI

2120

74HC259D,652

74HC259D,652

Nexperia

IC ADDRESSABLE LATCH 8BIT 16SOIC

5155

74AHCT573BQ-Q100X

74AHCT573BQ-Q100X

Nexperia

IC TRANSP LATCH OCTAL D 20DHVQFN

0

74ALVC373D,118

74ALVC373D,118

Nexperia

IC OCT D TRANSP LTCH 3ST 20SOIC

0

74LVC162373ADGG:11

74LVC162373ADGG:11

Nexperia

IC 16BIT D TRANSP LATCH 48TSSOP

0

74HC373PW-Q100,118

74HC373PW-Q100,118

Nexperia

BUS DRIVER, HC/UH SERIES, 1-FUNC

1960

74LVCH16373ADGG-QJ

74LVCH16373ADGG-QJ

Nexperia

IC 16BIT BUS TXRX 48TSSOP

1900

74LVC573APW-Q100J

74LVC573APW-Q100J

Nexperia

IC TRANSPARENT LATCH 20TSSOP

0

74LVCH162373ADGG:1

74LVCH162373ADGG:1

Nexperia

IC 16BIT D TRANSP LATCH 48TSSOP

1247

74HC75D,653

74HC75D,653

Nexperia

IC LATCH QUAD BISTABLE 16SOIC

840

74LVT573D,118

74LVT573D,118

Nexperia

74LVT573 - 3.3 V OCTAL D-TYPE TR

1950

74HCT573D

74HCT573D

Nexperia

NOW NEXPERIA 74HCT573D - BUS DRI

1520

74LVCH16373ADGG:11

74LVCH16373ADGG:11

Nexperia

IC TRANSP LATCH TRI-ST 48TSSOP

3225

74LVCH162373ADGG,1

74LVCH162373ADGG,1

Nexperia

IC 16BIT D TRANSP LATCH 48TSSOP

653

74LVC573AD-Q100J

74LVC573AD-Q100J

Nexperia

IC TRANSPARENT LATCH 20SOIC

0

74LVT573PW,112

74LVT573PW,112

Nexperia

IC OCTAL D TRANSP LATCH 20TSSOP

0

Logic - Latches

1. Overview

Logic latches are fundamental components in digital electronics, serving as bistable multivibrators that store one bit of binary data. They operate in two stable states (0 or 1) and are controlled by input signals to maintain or change their output states. Latches are essential building blocks for memory units, registers, and sequential logic circuits. Their importance spans across modern computing, telecommunications, industrial automation, and consumer electronics, enabling temporary data storage and synchronization in digital systems.

2. Major Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
SR LatchSet-Reset functionality; asynchronous operationBasic memory units, control circuits
D LatchData storage with single data input (D) and clock controlShift registers, data buffers
JK LatchUniversal latch with toggling capability; eliminates invalid statesCounters, state machines
T LatchToggle mode operation; simplified JK variantFrequency division circuits

3. Structure and Composition

Logic latches typically consist of transistor-based gate structures, often implemented using CMOS or TTL technology. A standard latch includes:

  • Input terminals (e.g., Data, Set, Reset, Clock)
  • Cross-coupled inverters for state retention
  • Control logic gates (NAND/AND-OR) for signal processing
  • Output terminals (Q and Q for complementary outputs)

Modern IC latches are fabricated on silicon wafers with sub-micron process nodes (e.g., 180nm, 130nm), featuring multiple latches per package (e.g., 8-bit registers) in standard footprints like SOIC, TSSOP, and QFN.

4. Key Technical Specifications

ParameterDescriptionImportance
Supply Voltage (VCC)Operating voltage range (e.g., 1.65-5.5V)Determines compatibility with system power rails
Propagation DelayTime between input change and output response (ns)Impacts maximum operating frequency
Power ConsumptionStatic and dynamic current draw ( A/mA)Crucial for battery-powered devices
Operating TemperatureTemperature range (-40 C to +125 C)Defines environmental durability
Output Drive StrengthCurrent delivery capability (mA)Affects fan-out and signal integrity

5. Application Fields

Major industries utilizing latches include:

  • Telecommunications: Network switches, routers, optical transceivers
  • Computing: CPU registers, cache memory, ALU components
  • Industrial Automation: PLCs, sensor data buffers, motor controllers
  • Consumer Electronics: Smartphones, wearables, display drivers
  • Automotive: CAN bus controllers, ADAS data registers

6. Leading Manufacturers and Products

ManufacturerKey ProductsFeatures
Texas InstrumentsSN74LVC1G374Low-voltage D latch with 1.5ns delay
STMicroelectronicsCD4042BCMOS latch with clock polarity control
NXP Semiconductors74HC373Octal D latch for bus interfacing
ON SemiconductorMC74VHC1G373Ultra-low power single latch

7. Selection Guidelines

Key selection criteria:

  • Functional requirements (e.g., SR vs. D latch functionality)
  • Speed vs. power consumption trade-offs
  • Package type for PCB space constraints
  • Environmental operating conditions
  • Cost optimization for mass production
  • Supply voltage compatibility with existing system components

Case Study: For a portable IoT device, prioritize ultra-low power latches like ON Semi's MC74VHC1G373 with <1 A quiescent current, while high-speed applications (e.g., networking ASICs) require devices with sub-ns propagation delays.

8. Industry Trends

Emerging trends shaping latch technology include:

  • Continued process node scaling (e.g., 28nm FD-SOI for radiation-hardened latches)
  • Integrated error correction features for mission-critical applications
  • Development of latch arrays with programmable interconnects
  • Advanced packaging (3D ICs, chiplets) for higher density
  • Low-voltage operation (<0.8V) for energy-efficient computing
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