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NAND512W3A2SZAXE
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NAND512W3A2SZAXE Description
NAND512W3A2SZAXE Description
The NAND512W3A2SZAXE is a high-performance, 512Mbit NAND Flash memory IC from Micron Technology Inc., designed for use in a wide range of applications requiring non-volatile storage. With a parallel memory interface and a memory organization of 64M x 8, this device offers fast access times and efficient data transfer capabilities. The NAND512W3A2SZAXE features an access time of 50 ns and a write cycle time of 50 ns, making it suitable for applications requiring rapid data access and high-speed data processing. The device is surface-mountable and operates over a supply voltage range of 2.7V to 3.6V, providing flexibility in system design.
NAND512W3A2SZAXE Features
- 512Mbit NAND Flash memory
- Parallel memory interface
- 64M x 8 memory organization
- 50 ns access time
- 50 ns write cycle time
- Surface-mountable
- 2.7V to 3.6V supply voltage range
- REACH unaffected
- RoHS3 compliant
- Moisture sensitivity level (MSL) 3 (168 hours)
NAND512W3A2SZAXE Applications
The NAND512W3A2SZAXE is ideal for use in a variety of applications where non-volatile storage is required. Some specific use cases include:
- Consumer electronics: Digital cameras, MP3 players, and other portable devices that require high-speed data access and storage.
- Industrial control systems: Data logging, firmware storage, and other applications requiring reliable, non-volatile memory.
- Automotive systems: In-vehicle infotainment systems, telematics, and other applications requiring fast data access and storage.
- Networking equipment: Routers, switches, and other network devices that require high-speed data processing and storage.
Conclusion of NAND512W3A2SZAXE
The NAND512W3A2SZAXE is a high-performance NAND Flash memory IC that offers fast access times, efficient data transfer capabilities, and a wide supply voltage range. Its unique features and advantages make it an ideal choice for a variety of applications requiring non-volatile storage. While the device is now considered obsolete, it remains a reliable and cost-effective solution for systems that can accommodate its specifications.



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