Microchip Technology's AT24C164-10SI-2.5 EEPROM
The AT24C164-10SI-2.5 is a high-performance, electrically erasable programmable read-only memory (EEPROM) module from the renowned manufacturer, Microchip Technology. This device provides a robust storage solution for applications that require data retention without power and the flexibility to update memory content. The AT24C164-10SI-2.5 is designed for optimal utility in a wide array of electronic systems, ranging from industrial controllers to personal devices.
With a memory size of 16K (2K x 8), this EEPROM provides ample space for firmware storage, device configuration, and data logging. It offers a standard I²C-compatible (2-wire) serial interface, enabling easy integration into existing systems with minimal pin count. The device operates at a clock frequency of 400kHz, providing a balance between speed and power consumption.
The AT24C164-10SI-2.5 operates across a voltage range of 2.5V to 5.5V, making it suitable for both low-power and standard applications. Its industrial temperature range of -40°C to +85°C ensures reliability and performance under extreme conditions, which is critical for mission-critical industrial applications.
This EEPROM comes in a SOIC-8 package, which is a small outline integrated circuit with a moderate footprint, ensuring it can fit into compact PCB layouts without sacrificing performance. The device also features write protect capabilities, which safeguard the memory contents against unintended alterations, thus maintaining data integrity.
For developers and engineers, the AT24C164-10SI-2.5 is supported by Microchip's extensive technical documentation and customer support. This ensures that integrating the EEPROM into your project is as seamless as possible, with resources readily available to troubleshoot and optimize your application.
In summary, the AT24C164-10SI-2.5 EEPROM from Microchip Technology is a reliable, flexible, and easy-to-use memory solution that meets the needs of a broad spectrum of electronics applications. Its robust feature set and compatibility with I²C communication protocol make it an excellent choice for designers looking to incorporate non-volatile memory into their systems.