The NAND512W3A2CZA6 is a high-performance NAND Flash memory device produced by STMicroelectronics, a global semiconductor leader. This memory component is part of the wider NAND Flash memory family that is renowned for offering a balanced combination of density, read/write speeds, and endurance, making it an ideal storage solution for a wide range of applications.
With a storage capacity of 512 Mbit (64MB), the NAND512W3A2CZA6 is well-suited for use in embedded systems, digital media devices, and other applications that require large, non-volatile storage with a small footprint. Its features are designed to provide reliable data storage and retrieval, with a focus on efficiency and durability.
Key Features:
- Memory Capacity: 512 Mbit (64 Mbyte)
- Organization: (x8 or x16 bus width)
- Page Size: 528 Bytes (512 + 16 spare)
- Block Size: 16 KBytes (32 pages)
- Supply Voltage: 2.7V to 3.6V
- Operating Temperature: -40°C to +85°C
- Package: TSOP48 (Type 1)
- Random Access Time: 25 µs (typical)
- Program/Erase Cycles: 100,000 (minimum)
- Electronic Signature: Read ID2 operation
The NAND512W3A2CZA6 integrates smoothly with many microcontrollers and microprocessors, thanks to its straightforward interface. It supports a fast page read and write capability, which is essential for applications that require quick data access and storage. Additionally, the chip's block erase function allows for efficient memory management and longevity of the device.
STMicroelectronics has designed the NAND512W3A2CZA6 with a focus on reliability. The device includes features such as bad block management and wear leveling, which help to extend the life of the memory and maintain the integrity of the data stored within. This makes the NAND512W3A2CZA6 a reliable choice for critical applications where data loss is not an option.
In summary, the NAND512W3A2CZA6 from STMicroelectronics is a versatile and reliable NAND Flash memory chip that offers a great balance of performance, density, and endurance, suitable for a variety of demanding storage applications.