Logic - Flip Flops

Image Part Number Description / PDF Quantity Rfq
SN74LV574AZQNR

SN74LV574AZQNR

Texas Instruments

BUS DRIVER

5000

SN74ALS574BDW

SN74ALS574BDW

Texas Instruments

IC FF D-TYPE SNGL 8BIT 20SOIC

202

CD74HC564M

CD74HC564M

Texas Instruments

IC FF D-TYPE SNGL 8BIT 20SOIC

491

5962-9761601QCA

5962-9761601QCA

Texas Instruments

SN54LVC74A DUAL POSITIVE-EDGE-TR

191

74LVTH162374ZQLR

74LVTH162374ZQLR

Texas Instruments

IC FF D-TYPE DUAL 8BIT 56BGA

1000

SN74BCT29821NT

SN74BCT29821NT

Texas Instruments

BUS DRIVER

463

SN74HCT273DW

SN74HCT273DW

Texas Instruments

IC FF D-TYPE SNGL 8BIT 20SOIC

3489

SN74LS378N

SN74LS378N

Texas Instruments

IC FF D-TYPE SNGL 6BIT 16DIP

60

SN74ABT821ADWR

SN74ABT821ADWR

Texas Instruments

SN74ABT821A 10-BIT BUS INTERFACE

16000

SN74S112AN3

SN74S112AN3

Texas Instruments

J-K FLIP-FLOP

2475

SNJ54LS112AJ

SNJ54LS112AJ

Texas Instruments

54LS112A DUAL J-K NEGATIVE-EDGE-

0

SN74ABT821ANT

SN74ABT821ANT

Texas Instruments

BUS DRIVER

3097

SN74HC174DG4

SN74HC174DG4

Texas Instruments

D FLIP-FLOP

840

CY74FCT273ATSOC

CY74FCT273ATSOC

Texas Instruments

IC FF D-TYPE SNGL 8BIT 20SOIC

1050

SN74LV574ADW

SN74LV574ADW

Texas Instruments

IC FF D-TYPE SNGL 8BIT 20SOIC

571

SN74ALS174FN

SN74ALS174FN

Texas Instruments

D FLIP-FLOP, ALS SERIES TTL

1659

SN74ACT74DR

SN74ACT74DR

Texas Instruments

IC FF D-TYPE DUAL 1BIT 14SOIC

3125

SN74ALS574BN

SN74ALS574BN

Texas Instruments

IC FF D-TYPE SNGL 8BIT 20DIP

2502

CD4013BM96G4

CD4013BM96G4

Texas Instruments

IC FF D-TYPE DUAL 1BIT 14SOIC

6023

CY74FCT574TQCT

CY74FCT574TQCT

Texas Instruments

CY74FCT574T OCTAL EDGE-TRIGGERED

17900

Logic - Flip Flops

1. Overview

Flip flops are fundamental building blocks in digital electronics, serving as bistable multivibrators capable of storing one bit of data. They form the basis of sequential logic circuits, enabling data storage, synchronization, and state control. Their ability to maintain stable states until triggered by clock signals makes them critical in memory units, counters, and register files. Modern computing, telecommunications, and automation systems rely heavily on flip flops for reliable data management and timing control.

2. Major Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
SR Flip FlopSet-Reset operation with undefined state when both inputs activateBasic memory elements, control circuits
D Flip FlopData storage with single data input synchronized by clock edgeRegisters, shift registers, data buffers
JK Flip FlopUniversal type eliminating invalid states through feedbackCounters, frequency dividers, state machines
T Flip FlopToggle state with each clock pulse when input activeBinary counters, clock division circuits

3. Structure and Composition

Flip flops are typically constructed using transistor-transistor logic (TTL) or complementary metal-oxide-semiconductor (CMOS) technologies. A standard CMOS D flip flop contains 8-12 transistors arranged in master-slave configuration with transmission gates. Key components include:

  • Clock signal input for synchronization
  • Data input/output terminals
  • Feedback paths for state retention
  • Level-sensitive or edge-triggered control circuitry

4. Key Technical Specifications

ParameterTypical RangeImportance
Clock FrequencyDC to 10GHz (varies by technology)Determines maximum operating speed
Propagation Delay1-10ns (CMOS), 3-20ns (TTL)Impacts circuit timing margins
Power Consumption1mW-100mW per flip flopCritical for battery-powered devices
Setup/Hold Time0.1-2nsEssential for reliable data capture
Output Drive Strength2mA-24mAAffects fan-out capability

5. Application Domains

  • Telecommunications: Synchronization circuits in 5G base stations, optical transceivers
  • Computing: CPU register files, cache memory controllers
  • Industrial Control: Programmable logic controllers (PLCs), sensor interfaces
  • Consumer Electronics: Timing circuits in smartphones, wearable devices
  • Automotive: CAN bus controllers, ADAS synchronization modules

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductsKey Features
Texas InstrumentsSN74LVC1G80Single D flip flop with 14ns delay, 2GHz clock rate
STMicroelectronicsSTM74HC74ADGDual D flip flop with 8mA drive, 125MHz operation
NXP Semiconductors74AUP1G175GFLow-power quad D flip flop, 0.9V-3.6V operation
IntelIOP333B00ESHigh-speed differential flip flops for FPGA interfaces

7. Selection Guidelines

Key selection criteria include:

  • Speed requirements vs. power budget trade-offs
  • Compatibility with existing logic families (TTL/CMOS)
  • Package type (QFP, BGA, WLCSP) for PCB constraints
  • Environmental specifications (temperature range, radiation hardness)
  • Integration level (discrete vs. embedded in FPGAs/ASICs)

Example: For high-speed networking equipment, select flip flops with <1ns jitter and LVDS compatibility.

8. Industry Trends

Current development trends include:

  • Migration to FinFET and GAAFET transistor structures for sub-5nm nodes
  • Integration with on-die clocking networks in 3D-stacked ICs
  • Emergence of spin-transfer torque flip flops for non-volatile memory
  • Adoption of photonics-ready flip flops for optical computing interfaces
  • Development of ultra-low-voltage ( 0.5V) flip flops for IoT applications
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