MT29F1G08ABBEAH4-ITX:E

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MT29F1G08ABBEAH4-ITX:E

IC FLASH 1GBIT PARALLEL 63VFBGA

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  • Mfr. Parte #MT29F1G08ABBEAH4-ITX:E
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  • En stock3396

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Especificaciones

Part Status Obsolete
Base Product Number MT29F1G08
DigiKey Programmable Verified
Memory Type Non-Volatile
Memory Format FLASH
Technology FLASH - NAND
Memory Size 1Gbit
Memory Organization 128M x 8
Memory Interface Parallel
Voltage - Supply 1.7V ~ 1.95V
Operating Temperature -40°C ~ 85°C (TA)
Mounting Type Surface Mount
Package 63-VFBGA
Supplier Device Package 63-VFBGA (9x11)
Packaging Tray

Descripción general

Description

The MT29F1G08ABBEAH4-ITX:E is a NAND flash memory device produced by Micron Technology. It features a 1 gigabit (128 megabytes) capacity and is built using advanced 3D NAND technology, which enhances storage density and performance. This memory device typically supports various interfaces, such as ONFI (Open NAND Flash Interface) and is designed to deliver high-speed data transfer rates, making it suitable for a wide range of applications including smartphones, tablets, and embedded systems.
The “ITX” designation indicates that it is packaged in a thin, compact form factor, ideal for space-constrained designs. The device is also characterized by low power consumption, which is crucial for battery-operated devices. The suffix “E” denotes that it is an environmentally friendly product, compliant with RoHS (Restriction of Hazardous Substances) standards.
Overall, the MT29F1G08ABBEAH4-ITX:E is a versatile and efficient solution for manufacturers seeking reliable memory solutions for modern electronic devices.

Features

The MT29F1G08ABBEAH4-ITX:E is a NAND flash memory chip from Micron Technology, specifically designed for embedded applications. Here are its key features:
1. Density: 1 Gb (Gigabit) capacity, allowing for significant data storage in compact designs.
2. Interface: Supports ONFI (Open NAND Flash Interface) for enhanced compatibility and performance.
3. Page Size: 2K bytes per page, enabling efficient data management and programming.
4. Block Size: 128 Kbytes per block, with 64 blocks per die, facilitating wear leveling and data management.
5. Endurance: Typically rated for up to 3,000 program/erase cycles, suitable for applications with moderate write requirements.
6. Voltage Range: Operates at a supply voltage of 1.8V, making it energy-efficient for mobile and battery-operated devices.
7. Temperature Range: Supports industrial temperature ranges, enhancing reliability in harsh environments.
These features make the MT29F1G08ABBEAH4-ITX:E well-suited for automotive, consumer electronics, and other embedded applications requiring reliable and efficient memory solutions.

Package

The MT29F1G08ABBEAH4-ITX:E is packaged in a 48-ball FBGA (Fine Ball Grid Array) format, which is designed for high-density applications. This package type is suitable for space-constrained environments and provides excellent thermal performance and electrical connectivity.

Pinout

The MT29F1G08ABBEAH4-ITX:E is a NAND Flash memory device with a pin count of 48. It is structured to provide 1 Gigabit of memory storage.
Key functions of the device include:
- Data Storage: It stores data in memory cells organized in pages and blocks, enabling efficient read and write operations.
- Read/Write Operations: Supports random access reading and sequential writing with an interface for data transfer.
- Erase Functionality: Offers block-level erasure for efficient data management.
- Low Power Consumption: Designed for mobile and embedded applications, optimizing power usage.
- Reliable Performance: Includes features for error correction and wear leveling to extend lifespan and ensure data integrity.
This device is commonly used in consumer electronics, mobile devices, and other embedded systems requiring non-volatile storage.

Manufacturer

The manufacturer of the MT29F1G08ABBEAH4-ITX:E is Micron Technology, Inc. Micron is a leading global provider of memory and storage solutions, specializing in dynamic random-access memory (DRAM), NAND flash memory, and other advanced memory technologies. Founded in 1978 and headquartered in Boise, Idaho, Micron serves a wide range of industries, including consumer electronics, automotive, and data centers. The company is known for its innovations in memory technology, contributing significantly to the advancement of high-performance computing and mobile devices.

Application

The MT29F1G08ABBEAH4-ITX:E is a NAND flash memory device used in various applications, including smartphones, tablets, digital cameras, and other consumer electronics. It is ideal for data storage in embedded systems, industrial applications, automotive electronics, and IoT devices, providing high-density storage and fast data access for efficient operation in these environments.

Equivalent

The MT29F1G08ABBEAH4-ITX:E is a NAND flash memory chip from Micron. Equivalent products include:
1. Samsung K9GAG08U0M
2. Hynix H26M31001G
3. Toshiba TC58NVG0S3HBAI4
Ensure to verify specifications like density, package type, and interface compatibility before substituting.

Envío

Métodos de envíoNosotros

ofrecer servicios de envío globales a través de DHL, FedEx, TNT, UPS, o cualquier otro expediente de su elección.


Referencia de tarifas de envío (DHL/FedEx):

DHL: El costo de envío oscila entre $25-$45 (0.5kg), con un tiempo de entrega estimado de 2-5 días hábiles.

FedEx: El costo de envío oscila entre $25-$40 (0.5kg), con un tiempo de entrega estimado de 3-7 días hábiles.

UPS: El costo de envío oscila entre $25-$45 (0.5kg), con un tiempo de entrega estimado de 3-7 días hábiles.

TNT: El costo de envío oscila entre $25-$65 (0.5kg), con un tiempo de entrega estimado de 3-7 días hábiles.

EMS: El costo de envío oscila entre $30-$50 (0.5kg), con un plazo de entrega estimado de 7-15 días hábiles.

Correo aéreo registrado: El costo de envío es de $2-$4 (0.1kg), con un tiempo de entrega estimado de 5-20 días hábiles.

Pagos

Payment Methods

El plazo de pago es 100% prepagado.

Actualmente, solo aceptamos los siguientes métodos de pago:

1. de PayPal

2. Tarjeta de crédito/débito

3. Transferencia bancaria