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MT29F4G16ABBDAH4-IT:D TR

MT29F4G16ABBDAH4-IT:D TR

Micron Technology Inc.
FLASH - NAND Memory IC 4Gbit Parallel 63-VFBGA (9x11)
Active1,000 in stock

Overview

The MT29F4G16ABBDAH4-IT:D TR is a 4Gbit (256M x 16) parallel NAND Flash memory IC from Micron Technology. This non-volatile memory solution is designed for applications requiring high-density data storage. It features a 63-VFBGA package, making it suitable for surface mount applications.

Why Choose This Part

This NAND Flash memory offers a robust solution for non-volatile data storage with a 4Gbit capacity. Its parallel interface simplifies integration with various microcontrollers and processors. The industrial temperature range of -40 degrees C to 85 degrees C ensures reliable operation in demanding environments.

Applications

Embedded Systems Data Storage
Ideal for storing operating system code, application firmware, and user data in various embedded systems.
Consumer Electronics
Suitable for data storage in devices such as digital cameras, portable media players, and set-top boxes.
Industrial Control Systems
Used for logging data, storing configuration files, and providing boot code for industrial automation equipment.
Solid State Drives (SSDs)
Can be integrated into lower-capacity or specialized SSD solutions for specific data storage needs.
Network Devices
Provides storage for firmware, configuration, and logs in routers, switches, and other network infrastructure.

Key Specifications

Technology FLASH - NAND
Memory Size 4Gbit
Memory Type Non-Volatile
Memory Format FLASH
Mounting Type Surface Mount
Package / Case 63-VFBGA
Memory Interface Parallel
Voltage - Supply 1.7V ~ 1.95V
Memory Organization 256M x 16
Operating Temperature -40degC ~ 85degC (TA)
Supplier Device Package 63-VFBGA (9x11)

Getting Started

Integrating NAND Flash memory typically involves developing a Flash Translation Layer (FTL) within the host microcontroller's firmware to manage wear leveling and bad block management. Micron provides comprehensive datasheets and application notes that detail the command set and timing requirements for proper device operation. Development boards supporting parallel NAND interfaces can be used for initial prototyping and software development.

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