Logic - Shift Registers

Image Part Number Description / PDF Quantity Rfq
MC14559BCPG

MC14559BCPG

SUCCESSIVE APROX REGISTER

0

MC14014BFR2

MC14014BFR2

PARALLEL IN SERIAL OUT, 8-BIT,

2000

QS29FCT520ATSO

QS29FCT520ATSO

PIPELINE REGISTER, 8-BIT

1240

SN74LS166ADR

SN74LS166ADR

Texas Instruments

IC SHFT REG PAR-LD 8BIT 16-SOIC

12427

74LV595PW,112

74LV595PW,112

Nexperia

IC 8BIT SHIFT REGISTER 16TSSOP

2092

74LVC595APW,118

74LVC595APW,118

Nexperia

IC 8BIT SHIFT REGISTER 16-TSSOP

3611

7802401RA

7802401RA

Texas Instruments

SN54LS299 8-BIT UNIVERSAL SHIFT/

43

74LVC595AD,112

74LVC595AD,112

Nexperia

IC 8BIT SHIFT REGISTER 16-SOIC

387

MC14015BDR2G

MC14015BDR2G

Sanyo Semiconductor/ON Semiconductor

IC SHIFT REGISTER DL 4BIT 16SOIC

733

74HCT4015N,112

74HCT4015N,112

NXP Semiconductors

SERIAL IN PARALLEL OUT

6207

MC14557BFL1

MC14557BFL1

SERIAL IN SERIAL OUT

1000

SNJ54LS322AFK

SNJ54LS322AFK

Texas Instruments

PARALLEL IN PARALLEL OUT

0

SN74AHC594DBR

SN74AHC594DBR

Texas Instruments

IC SHIFT REGISTER 8BIT 16-SSOP

1933

54F194DM-MLS

54F194DM-MLS

PARALLEL IN PARALLEL OUT, F/FAST

33

NLV14549BDWR2G

NLV14549BDWR2G

Sanyo Semiconductor/ON Semiconductor

IC REGISTER 8BIT 16SOIC

0

HV9808PJ-G

HV9808PJ-G

Roving Networks / Microchip Technology

IC 32BIT SRL CMOS 80V 44PLCC

0

CD4014BD

CD4014BD

8-STAGE STATIC SHIFT REGISTER

39

MM74HC195J

MM74HC195J

PARALLEL IN PARALLEL OUT

180

74HC194DB,118

74HC194DB,118

NXP Semiconductors

74HC194DB - PARALLEL IN PARALLE

10000

74HCT194D,653

74HCT194D,653

NXP Semiconductors

PARALLEL IN PARALLEL OUT

0

Logic - Shift Registers

1. Overview

Logic shift registers are sequential logic circuits used to store and transfer data in digital systems. They consist of cascaded flip-flops controlled by a common clock signal, enabling data movement in serial or parallel formats. These ICs are fundamental in applications requiring data buffering, serial-to-parallel conversion, and timing control. Their importance spans modern computing, telecommunications, and embedded systems, where efficient data manipulation is critical.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Serial-In Parallel-Out (SIPO)Converts serial data to parallel outputCommunication interfaces (RS-232), data acquisition systems
Parallel-In Serial-Out (PISO)Converts parallel data to serial outputDigital signal processing, sensor networks
Serial-In Serial-Out (SISO)Shifts data in and out seriallyDelay lines, data encryption
Parallel-In Parallel-Out (PIPO)Direct parallel data transferCPU register files, memory buffers
Bidirectional Shift RegistersSupports left/right data movementArithmetic logic units (ALUs), network switches
Multifunction Shift RegistersProgrammable shift directions and modesFPGA I/O interfaces, test equipment

3. Structure and Composition

Typical shift register ICs are built using CMOS or TTL semiconductor processes. The core structure includes:

  • Cascaded Flip-Flops: D-type flip-flops connected in series for data storage stages
  • Control Logic: Clock dividers, direction control gates, and reset circuits
  • Input/Output Buffers: Level shifters and drivers for signal integrity
  • Power Distribution: VCC/GND rails with decoupling capacitors

Common packaging includes DIP, SOIC, and QFP formats with 8-48 pins. Advanced ICs integrate features like three-state outputs and error detection circuits.

4. Key Technical Specifications

ParameterDescription
Clock FrequencyMaximum operating frequency (1 MHz - 200 MHz), determines data transfer rate
Supply VoltageTypical range 2.0V-5.5V for CMOS devices
Input/Output TypeCMOS/TTL compatibility, differential signaling (LVDS)
Propagation DelayTime between clock edge and output change (ns range)
Power ConsumptionQuiescent current ( A/MHz) and dynamic power dissipation
Operating TemperatureIndustrial (-40 C to +85 C) or commercial (0 C to 70 C) ranges
Data Width8/16/32/64-bit configurations

5. Application Areas

  • Telecommunications: Line drivers/receivers, protocol converters (USB/Ethernet)
  • Computing: CPU cache control, GPU memory interfaces
  • Industrial Automation: PLC data buses, motor controllers
  • Consumer Electronics: Display drivers (LCD/OLED), audio codecs
  • Automotive: CAN bus transceivers, ADAS sensor interfaces

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
TI (Texas Instruments)SN74HC595N8-bit SIPO, 3-state output, 100 MHz clock
NXP Semiconductors74LVC16424516-bit bidirectional, 2.3V-3.6V supply
STMicroelectronicsCD4014BM8-stage PISO, 20V tolerant inputs
ON SemiconductorMC74VHC164Low power, 2V-5.5V operation
Microchip TechnologySRM74HC1658-bit PISO with parallel load

7. Selection Guidelines

  1. Define data interface type (serial/parallel, bidirectional)
  2. Match clock speed requirements with propagation delay specifications
  3. Verify voltage compatibility with host system (e.g., 3.3V/5V logic levels)
  4. Consider package type based on PCB space constraints (TSSOP vs. QFN)
  5. Evaluate temperature and reliability needs for industrial/automotive applications
  6. Check for additional features like error detection or daisy-chaining support

8. Industry Development Trends

  • Integration: Combining shift registers with level shifters and protocol converters in single packages
  • Power Efficiency: Sub-1V operation and leakage current reduction for IoT devices
  • Higher Speeds: GDDR6/DDR5 memory interface ICs with >1 Gbps per pin performance
  • Miniaturization: WLCSP packages for wearable electronics (e.g., 0.4mm pitch devices)
  • Automotive Focus: AEC-Q100 qualified parts with fault-tolerant designs for ADAS systems
  • Intelligence: Embedded configuration registers and thermal shutdown protection
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