S34ML04G200BHA000

S34ML04G200BHA000
Manufacturer

Cypress Semiconductor Corp

Description

IC FLASH 4GBIT PARALLEL 63BGA

Package

Tray

Stock

1000

Price

active

Download

S34ML04G200BHA000.pdf

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Product Attributes

Product Specifications of S34ML04G200BHA000

•  Memory Type: FLASH - NAND


•  Memory Size: 4Gbit


•  Memory Organization: 512M x 8


•  Memory Interface: Parallel


•  Write Cycle Time - Word, Page: 25ns


•  Voltage - Supply: 2.7V ~ 3.6V


•  Operating Temperature: -40°C ~ 85°C (TA)


•  Mounting Type: Surface Mount


•  Package / Case: 63-BGA (11x9)


•  Supplier Device Package: 63-BGA (11x9)


Product Overview of S34ML04G200BHA000

The S34ML04G200BHA000 is a 4Gbit NAND Flash memory chip that offers high-density, non-volatile storage with a parallel interface. It features a write cycle time of 25 ns, making it suitable for applications requiring fast and reliable data storage. The chip operates within a voltage supply range of 2.7V to 3.6V and can function in a wide operating temperature range, making it versatile for various applications. It is packaged in a 63-BGA (11x9) for surface mounting.


Application Range of S34ML04G200BHA000

This NAND Flash memory chip is designed for use in:

•  High-performance computing systems


•  Consumer electronics requiring robust memory solutions


•  Automotive electronics with extreme temperature demands


•  Industrial control systems needing durable and reliable data storage


Common Q&A of S34ML04G200BHA000

Q: What is the advantage of using NAND Flash memory?

A: NAND Flash memory provides high-density storage with fast read and write capabilities, making it ideal for a wide range of electronic devices.


Q: Can this memory chip handle high-temperature industrial environments?

A: Yes, with an operating temperature range of -40°C to 85°C, it is well-suited for industrial applications that may experience extreme temperatures.


Q: Is the S34ML04G200BHA000 suitable for automotive applications?

A: Absolutely, its robust design and temperature tolerance make it ideal for the demanding conditions found in automotive electronics.


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