Logic - Shift Registers

Image Part Number Description / PDF Quantity Rfq
CD4014BCM

CD4014BCM

PARALLEL IN SERIAL OUT, 8-BIT,

0

CD4517BF

CD4517BF

DUAL STATIC SHIT REGSTR

0

TPIC6B596DWRG4

TPIC6B596DWRG4

Texas Instruments

IC PWR 8-BIT SHIFT REGIS 20-SOIC

1412

CD4015BM96

CD4015BM96

Texas Instruments

IC DUAL STATIC SHFT REG 16-SOIC

0

QS29FCT520ATP

QS29FCT520ATP

QUALITY SEMI PLD

0

74HC165N,652

74HC165N,652

NXP Semiconductors

PARALLEL IN SERIAL OUT

140761

SN74AHCT595DBR

SN74AHCT595DBR

Texas Instruments

IC 8-BIT SHIFT REGISTER 16-SSOP

768

SNJ54HC595J

SNJ54HC595J

Texas Instruments

54HC595 8-BIT SHIFT REGISTERS WI

44

N74F299N,602

N74F299N,602

NXP Semiconductors

PARALLEL IN PARALLEL OUT

0

MC74HC165AD

MC74HC165AD

PARALLEL IN SERIAL OUT

3168

TPIC6B595DW

TPIC6B595DW

Texas Instruments

IC PWR 8-BIT SHIFT REGIS 20-SOIC

211

HEF4094BTT-Q100118

HEF4094BTT-Q100118

NXP Semiconductors

SERIAL IN PARALLEL OUT

2500

SN74HC595PWRE4

SN74HC595PWRE4

Texas Instruments

IC SHIFT REGISTER 8BIT 16-TSSOP

0

SN74LS594N

SN74LS594N

Texas Instruments

SN74LS594 SERIAL-IN SHIFT REGIST

6485

CD4021BPWR

CD4021BPWR

Texas Instruments

IC STATIC SHFT REG 8STG 16-TSSOP

5442

MM74HC595WM

MM74HC595WM

SERIAL IN PARALLEL OUT

7000

74HCT597D,652

74HCT597D,652

Nexperia

IC 8BIT SHIFT REGISTER 16SOIC

1759

HV5523K7-G

HV5523K7-G

Roving Networks / Microchip Technology

IC 32BIT SRL PARALLEL 44WQFN

970

74F676SC

74F676SC

PARALLEL IN SERIAL OUT

355

74HCT595DB,118

74HCT595DB,118

Nexperia

IC 8BIT SHIFT REGISTER 16SSOP

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
RFQ BOM Call Skype Email
Top