The MT29F128G08AMCABK3-10Z:A belongs to the category of NAND Flash memory products.
It is used for storing data in various electronic devices such as smartphones, tablets, digital cameras, and solid-state drives (SSDs).
The MT29F128G08AMCABK3-10Z:A is typically available in a small form factor package suitable for surface mount technology (SMT) assembly.
The essence of this product lies in its ability to provide reliable and high-capacity data storage for a wide range of electronic devices.
It is commonly packaged in tape and reel format with a specific quantity per reel, typically ranging from hundreds to thousands of units.
The detailed pin configuration of the MT29F128G08AMCABK3-10Z:A includes address pins, data input/output pins, control pins, and power supply pins. The specific pinout can be found in the product datasheet.
The MT29F128G08AMCABK3-10Z:A operates based on the principles of NAND flash memory, utilizing floating gate transistors to store data in a non-volatile manner. When data is written, it is stored as electrical charges within the memory cells, and when read, the charges are detected to retrieve the stored information.
The MT29F128G08AMCABK3-10Z:A is widely used in applications requiring high-capacity data storage, such as: - Smartphones and tablets - Digital cameras and camcorders - Solid-state drives (SSDs) - Industrial embedded systems - Automotive infotainment systems
Some alternative models to the MT29F128G08AMCABK3-10Z:A include: - Samsung K9GAG08U0E - Micron MT29F128G08CFABA - Toshiba TH58NVG7D2FLA89
In conclusion, the MT29F128G08AMCABK3-10Z:A offers high-capacity and reliable data storage for a variety of electronic devices, making it a versatile solution for modern digital applications.
Word count: 497
What is the MT29F128G08AMCABK3-10Z:A?
What are the key features of the MT29F128G08AMCABK3-10Z:A?
In what technical solutions can the MT29F128G08AMCABK3-10Z:A be used?
What is the operating voltage range of the MT29F128G08AMCABK3-10Z:A?
What is the maximum data transfer rate of the MT29F128G08AMCABK3-10Z:A?
Does the MT29F128G08AMCABK3-10Z:A support wear leveling and error correction?
Can the MT29F128G08AMCABK3-10Z:A withstand extended temperature ranges?
What interface does the MT29F128G08AMCABK3-10Z:A use for communication with host systems?
Are there any specific design considerations when integrating the MT29F128G08AMCABK3-10Z:A into a technical solution?
Where can I find detailed technical documentation and support for the MT29F128G08AMCABK3-10Z:A?