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PC28F064M29EWLA
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PC28F064M29EWLA Description
PC28F064M29EWLA Description
The PC28F064M29EWLA is a 64Mbit parallel FLASH memory IC manufactured by Micron Technology Inc., designed to deliver high-performance data storage and retrieval. This memory IC features a memory organization of 8M x 8 and 4M x 16, providing flexibility in addressing and data manipulation. With an access time of 60 ns and a write cycle time of 60 ns, the PC28F064M29EWLA offers fast and efficient data access, making it suitable for applications requiring rapid data processing.
PC28F064M29EWLA Features
- Memory Interface: Parallel, allowing for high-speed data transfer and compatibility with various systems.
- Memory Organization: 8M x 8 and 4M x 16, providing flexibility in addressing and data manipulation.
- Access Time: 60 ns, ensuring fast data retrieval.
- Write Cycle Time: 60 ns, enabling efficient data storage.
- Memory Size: 64Mbit, offering ample storage capacity for various applications.
- Voltage - Supply: 2.7V ~ 3.6V, ensuring compatibility with a wide range of power sources.
- RoHS Status: ROHS3 Compliant, adhering to environmental regulations.
- Moisture Sensitivity Level (MSL): 3 (168 Hours), ensuring reliable performance in various environmental conditions.
PC28F064M29EWLA Applications
The PC28F064M29EWLA is ideal for applications requiring high-speed data storage and retrieval, such as:
- Embedded Systems: Providing fast and efficient data storage for embedded systems, such as automotive electronics and industrial control systems.
- Data Logging: Storing large amounts of data in applications like environmental monitoring and industrial automation.
- Consumer Electronics: Supporting data storage needs in consumer electronics, such as digital cameras and portable media players.
Conclusion of PC28F064M29EWLA
The PC28F064M29EWLA is a high-performance, 64Mbit parallel FLASH memory IC from Micron Technology Inc., offering fast data access and ample storage capacity. Its unique features, such as parallel memory interface and flexible memory organization, make it suitable for a wide range of applications, including embedded systems, data logging, and consumer electronics. While the product is currently obsolete, it remains a reliable choice for applications requiring rapid data processing and storage.



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