Logic - Parity Generators and Checkers

Image Part Number Description / PDF Quantity Rfq
9348DC

9348DC

PARITY GENERATOR/CHECKER, TTL

6102

74F280SCX

74F280SCX

IC PARITY GEN/CHKER 9-BIT 14SOIC

7500

SNJ54LS280FK

SNJ54LS280FK

Texas Instruments

PARITY GENERATOR/CHECKER, 9-BIT

112

I74F280BD,602

I74F280BD,602

NXP Semiconductors

PARITY GENERATOR/CHECKER, 9-BIT

0

CRT8002B-021P

CRT8002B-021P

Fluke Electronics

CRT VIDEO ATTRIBUTES CONTROLLER

0

MC74F280DR2

MC74F280DR2

PARITY GENERATOR/CHECKER 9 BIT 1

5000

9348PC

9348PC

PARITY GENERATOR/CHECKER, TTL

11388

MC10160L

MC10160L

PARITY GENERATOR/CHECKER, 12-BIT

3410

SN74S280D

SN74S280D

Texas Instruments

PARITY GENERATOR/CHECKER, 9-BIT

1525

54180DM

54180DM

PARITY GENERATOR/CHECKER, TTL

1860

QS74FCT280BTS1

QS74FCT280BTS1

IC PARITY GEN/CHKER 9-BIT

7051

DM74AS280M

DM74AS280M

IC PARITY GEN/CHKER 9-BIT 14SOIC

2860

74180DC

74180DC

PARITY GENERATOR/CHECKER

1448

SN74AS280NSR

SN74AS280NSR

Texas Instruments

SN74AS280 9-BIT PARITY GENERATOR

10100

CY74FCT480BTPC

CY74FCT480BTPC

Texas Instruments

IC PARITY GEN/CHKER 8-BIT 24DIP

471

74HC280D/S400118

74HC280D/S400118

NXP Semiconductors

PARITY GENERATOR/CHECKER, 9-BIT

127500

54F280FMQB

54F280FMQB

PARITY GENERATOR/CHECKER

692

9348DM

9348DM

PARITY GENERATOR/CHECKER, TTL

414

CD74HC280E

CD74HC280E

IC PARITY GEN/CHKER 9-BIT 14DIP

7750

74AC280SC

74AC280SC

IC PARITY GEN/CHKER 9-BIT 14SOIC

7898

Logic - Parity Generators and Checkers

1. Overview

Parity generators and checkers are digital logic ICs used to detect errors in data transmission or storage systems. These circuits generate a parity bit (even or odd) during data transmission and verify the parity at the receiver end to ensure data integrity. They play a critical role in applications requiring error detection, such as communication systems, memory modules, and industrial automation. By adding redundancy through parity bits, these ICs help identify single-bit errors, enhancing system reliability.

2. Main Types and Functional Classification

TypeFunctional FeaturesApplication Examples
Even/Odd Parity GeneratorGenerates a parity bit to ensure even or odd number of 1s in dataSerial communication protocols (RS-232)
Parity CheckerVerifies received data against transmitted parity bitRAM error detection systems
Multifunction Parity ICSupports both generation and checking in a single chipNetworking hardware (Ethernet switches)
High-Speed Parity ICOptimized for GHz-range data transmissionFiber optic communication systems

3. Structure and Composition

These ICs typically consist of XOR/XNOR logic gates arranged in combinatorial circuits. Key components include:

  • Input buffers for data signal conditioning
  • Parity computation logic (tree-based XOR structures)
  • Control pins for parity mode selection (even/odd)
  • Output drivers for parity bit transmission
  • Standard packages: TSSOP, QFN, or BGA with 14-100 pins

4. Key Technical Specifications

ParameterTypical ValueImportance
Operating Voltage1.8V - 5.5VEnsures compatibility with system logic levels
Propagation Delay3 - 20 nsDetermines maximum data rate support
Power Consumption10 - 100 mWImpacts thermal design and efficiency
Parity Bit Width4/8/16 bitsDefines data bus compatibility
Operating Temperature-40 C to +125 CCritical for industrial/environmental reliability

5. Application Fields

  • Telecommunications: 5G base stations, satellite modems
  • Computer Systems: ECC memory controllers, RAID storage arrays
  • Industrial Automation: PLC data integrity verification
  • Consumer Electronics: Smartcard readers, IoT wireless modules

Case Study: In DDR4 memory systems, parity checkers validate address/command lines at 3200MT/s data rates.

6. Leading Manufacturers and Products

ManufacturerRepresentative ProductKey Features
TI (Texas Instruments)SN74LVC1G18Single-bit parity generator with 2ns delay
NXP Semiconductors74FCT273TOctal parity checker for SCSI interfaces
IntelPAT16G4416-bit parity engine for Xeon processors
AMDAm7960Integrated parity solution for network switches

7. Selection Guidelines

  • Data Bus Width: Match IC parity width to system data path (e.g., 8-bit for UART)
  • Speed Requirements: Propagation delay must satisfy Nyquist criteria for clock rate
  • Power Budget: Low-power variants (e.g., CMOS) for battery-operated devices
  • Environmental Factors: Automotive-grade parts (-40 C to +150 C) for vehicle systems
  • Cost vs. Integration: Multifunction ICs reduce PCB space but may increase BOM cost

8. Industry Trends

Future developments include:

  • Integration with advanced error correction (SEC-DED) in 3D-stacked memory
  • Support for emerging 112Gbps+ SerDes interfaces
  • AI-driven parity optimization in data centers
  • Photonics-compatible parity circuits for optical computing

Market demand grows at 6.2% CAGR (2023-2030), driven by autonomous vehicle safety systems and 6G infrastructure.

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