Manufacturer Part Number
MT29F1G08ABBFAH4-AAT
F
Manufacturer
Micron Technology
Introduction
This 1Gbit NAND flash memory from Micron Technology is a high-performance, automotive-grade SLC (Single-Level Cell) memory solution designed for a wide range of embedded applications. With its parallel interface and fast access/write speeds, this memory module offers reliable and efficient data storage capabilities.
Product Features and Performance
Memory Size: 1Gbit
Memory Organization: 128M x 8
Memory Interface: Parallel
Write Cycle Time Word, Page: 25ns
Access Time: 25ns
Voltage Supply: 1.7V ~ 1.95V
Operating Temperature: -40°C ~ 105°C (TA)
Product Advantages
Automotive-grade quality and reliability, meeting AEC-Q100 standards
High-performance parallel interface for fast data access and write speeds
Single-Level Cell (SLC) technology for enhanced endurance and data integrity
Wide operating temperature range suitable for harsh environments
Key Reasons to Choose This Product
Proven automotive-grade quality and reliability
Optimal performance for real-time, mission-critical embedded applications
Versatile compatibility and ease of integration
Cost-effective solution for high-volume production
Quality and Safety Features
Automotive-grade qualification (AEC-Q100)
Robust design and rigorous testing for enhanced reliability
Compliance with industry safety and environmental standards
Compatibility
This NAND flash memory is designed for use in a wide range of embedded systems, including automotive electronics, industrial control systems, and consumer devices.
Application Areas
Automotive electronics (infotainment, ADAS, powertrain, etc.)
Industrial automation and control systems
Consumer electronics and IoT devices
Data storage and caching in embedded applications
Product Lifecycle
The MT29F1G08ABBFAH4-AAT:F is an active, in-production product from Micron Technology. There are no known equivalent or alternative models available at this time. For the latest product information and availability, please contact our website's sales team.