Logic - FIFOs Memory

Image Part Number Description / PDF Quantity Rfq
SN74V3690-6PEU

SN74V3690-6PEU

Texas Instruments

IC 32768X36 FIFO MEMORY 128LQFP

238

SN74ACT7201LA50DVR

SN74ACT7201LA50DVR

Texas Instruments

FIFO MEM ASYNC 512 X 9

2000

SN74ABT3612-30PQ

SN74ABT3612-30PQ

Texas Instruments

BI-DIRECTIONAL FIFO, 64X36, 15NS

2635

SN74ALS233BFN

SN74ALS233BFN

Texas Instruments

FIFO, 16X5, 30NS, SYNCHRONOUS

820

SN74ALVC3651-20PCB

SN74ALVC3651-20PCB

Texas Instruments

BI-DIRECTIONAL FIFO, 2KX36

810

SN74ACT7202LA15NP

SN74ACT7202LA15NP

Texas Instruments

FIFO, 1KX9, 15NS, ASYNCHRONOUS

3287

SN74ACT7807-40FN

SN74ACT7807-40FN

Texas Instruments

FIFO, 2KX9, 25NS, SYNCHRONOUS

4889

CD74HCT40105E

CD74HCT40105E

Texas Instruments

FIFO, 16X4, 2250NS, SYNCHRONOUS

6006

SN74V263-6GGM

SN74V263-6GGM

Texas Instruments

FIFO, 8KX18, 4.5NS, SYNCHRONOUS

2037

SN74ACT7813-20DLR

SN74ACT7813-20DLR

Texas Instruments

FIFO, 64X18, 13NS, SYNCHRONOUS

1000

CD74HC40105MT

CD74HC40105MT

Texas Instruments

FIFO, 16X4, 2250NS, SYNCHRONOUS

750

SN74ACT7203L15NP

SN74ACT7203L15NP

Texas Instruments

FIFO, 2KX9, 15NS, ASYNCHRONOUS

2283

SN74ALVC7803-40DL

SN74ALVC7803-40DL

Texas Instruments

FIFO, 512X18, 20NS, SYNCHRONOUS

1167

SN74ACT3632-15PQG4

SN74ACT3632-15PQG4

Texas Instruments

BI-DIRECTIONAL FIFO, 512X36, 11N

900

SN74V245-7PAG

SN74V245-7PAG

Texas Instruments

IC SYNC FIFO MEM 4096X18 64-TQFP

444

SN74ACT7882-15PN

SN74ACT7882-15PN

Texas Instruments

FIFO, 2KX18, 12NS, SYNCHRONOUS

913

SN74ACT7202LA50DV

SN74ACT7202LA50DV

Texas Instruments

FIFO MEM ASYNC 16K X 9

436

SN74ACT7804-20DL

SN74ACT7804-20DL

Texas Instruments

FIFO, 512X18, 20NS, SYNCHRONOUS,

19238

SN74V215-7PAG

SN74V215-7PAG

Texas Instruments

IC SYNC FIFO MEM 512X18 64-TQFP

196

SN74ACT7802-25FN

SN74ACT7802-25FN

Texas Instruments

FIFO, 1KX18, 30NS, SYNCHRONOUS

614

Logic - FIFOs Memory

1. Overview

FIFO (First-In-First-Out) memory is a specialized logic integrated circuit designed to store and manage data in a sequential queue structure. As a critical component in digital systems, FIFOs ensure data integrity by maintaining the order of data streams during transmission or buffering. Their importance spans across telecommunications, computing, industrial automation, and consumer electronics, where they resolve timing mismatches between system components, optimize data flow, and enhance overall efficiency.

2. Main Types and Functional Classification

Type Functional Characteristics Application Examples
Synchronous FIFO Single clock domain for read/write operations; low latency CPU cache interconnects, high-speed data pipelines
Asynchronous FIFO Independent clock domains for read/write; metastability protection Cross-domain bridging in FPGAs, UART communication
Multi-port FIFO Supports multiple read/write ports with arbitration logic Network switches, parallel processing systems
Dual-Queue FIFO Separate memory banks for simultaneous access Real-time signal processing, AI accelerators

3. Structure and Composition

A typical FIFO memory integrates four core components: (1) Storage Array implemented with SRAM or DRAM cells for data retention; (2) Read/Write Pointers using Gray code counters to prevent race conditions; (3) Control Logic managing status flags (full/empty/half-full); and (4) Bus Interfaces supporting parallel or serial data transfer. Advanced designs incorporate error correction codes (ECC) and voltage regulation circuits for reliability in harsh environments.

4. Key Technical Specifications

Parameter Description
Storage Capacity Measured in bits/bytes (ranging from 256b to 128KB), determines buffer depth
Access Speed Maximum clock frequency (up to 1.2GHz) affecting data throughput
Power Consumption Typically 50-300mW; critical for battery-powered devices
Data Width Bus size (8/16/32/64 bits) matching host system requirements
Package Type Options: TSSOP, QFN, BGA for varying density/performance needs

5. Application Fields

Primary industries include:

  • Telecommunications: 5G base stations, optical transceivers
  • Industrial Automation: PLC controllers, sensor data aggregation systems
  • Consumer Electronics: Smartphones (camera ISPs), SSD controllers
  • Medical Devices: MRI image streaming processors
Case Study: In automotive LiDAR systems, FIFOs buffer high-speed point cloud data between laser sensors and SoC processors, ensuring zero data loss at 10Gbps rates.

6. Leading Manufacturers and Products

Manufacturer Representative Product Key Features
Texas Instruments SN74ACT7801 18-bit synchronous FIFO, 165MHz operation
STMicroelectronics STF2N60DM2 Dual-port FIFO with 2KB storage, automotive grade
NXP Semiconductors MC74LCX16500 16-bit asynchronous FIFO, 100MHz, low-voltage operation

7. Selection Guidelines

Key considerations include:

  1. Match storage capacity to burst data length requirements
  2. Verify access speed aligns with system clock domain constraints
  3. Assess power/performance trade-offs for mobile vs. fixed installations
  4. Choose synchronous/asynchronous type based on timing architecture
  5. Confirm package compatibility with PCB layout and thermal needs
For high-reliability applications, prioritize radiation-hardened variants with built-in test (BIST) capabilities.

8. Industry Trends

Emerging trends include:

  • 3D IC stacking for terabit-level FIFO densities
  • Integration with SerDes interfaces for 112Gbps+ data rates
  • Development of ultra-low-power FIFOs for IoT edge devices
  • Adoption of GDDR6/DDR5 memory interfaces in high-performance computing FIFOs
  • Standardization of FIFO IP cores in ASIC design toolchains
The global FIFO memory market is projected to grow at 6.8% CAGR through 2030, driven by 5G infrastructure and autonomous vehicle sensor networks.

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