Microchip Technology AT28BV64-30TC EEPROM
The AT28BV64-30TC is a high-performance, 64-Kilobit parallel EEPROM designed and manufactured by Microchip Technology. This non-volatile memory device offers a robust storage solution for a wide range of applications that require data retention after power-off. The AT28BV64-30TC is ideal for use in embedded systems, microcontroller-based applications, and various electronic products where reliable and durable data storage is essential.
With a storage capacity of 64 Kilobits, this EEPROM provides ample space for firmware storage, configuration parameters, or any other data that needs to be preserved between power cycles. The device operates at a voltage range of 2.7V to 3.6V, making it suitable for low-power applications and battery-operated devices. The 30ns access time ensures fast data retrieval, which is crucial for performance-critical systems.
The AT28BV64-30TC features a parallel interface for high-speed data transfer, and it comes in a 28-pin TSOP package, which is both space-saving and easy to integrate into PCB designs. This EEPROM is also designed with industry-standard pinouts, which facilitates easy drop-in replacement for similar memory devices without the need for extensive redesigns.
Microchip Technology's commitment to quality is evident in the AT28BV64-30TC's design, which includes hardware and software data protection schemes to prevent accidental data corruption. The device also supports a full static operation, which means no external clocks or timing strobes are required for operation.
For developers and engineers, the AT28BV64-30TC offers a reliable and flexible storage solution that can be easily programmed and erased. The device supports 10,000 write/erase cycles and a data retention of 10 years, ensuring the longevity and durability of the data stored within.
In summary, the AT28BV64-30TC from Microchip Technology is a versatile, high-speed EEPROM that provides a dependable non-volatile memory solution for a wide array of electronic designs, ensuring data integrity and system reliability.