The AT24C16D-MAHM-E is a high-performance, 16-Kbit Electrically Erasable Programmable Read-Only Memory (EEPROM) device from Microchip Technology, designed for optimal storage solutions in a broad range of electronic applications. This device operates with a voltage range of 1.7V to 5.5V, making it suitable for various low-power and standard applications.
With its I²C-compatible (2-wire) serial interface, the AT24C16D-MAHM-E ensures simple and efficient integration into your system. The device supports a bidirectional data transfer protocol, which is essential for systems that require a seamless and robust communication channel for data storage and retrieval.
The EEPROM is organized as 2048 words of 8 bits each, enabling a flexible data storage architecture that allows byte-level and page-level serial access. This granularity of access provides the designer with the ability to optimize data storage according to the specific needs of their application, whether it's storing configuration parameters, calibration data, or any other data type that requires frequent updating.
One of the key features of the AT24C16D-MAHM-E is its high endurance with a 1 million write cycle rating per word and a data retention period of 100 years. These specifications make it an excellent choice for applications where data integrity and reliability over extended periods are crucial.
The device also includes a write protect pin to prevent inadvertent writes, thereby providing an additional layer of data protection. Moreover, its small 8-lead SOIC package makes it ideal for space-constrained applications, and its extended temperature range of -40°C to +85°C allows for operation in harsh environments.
In conclusion, the Microchip Technology AT24C16D-MAHM-E EEPROM is a versatile and dependable memory solution that delivers high performance, low power consumption, and robust data protection features. It is well-suited for a variety of industrial, automotive, and consumer electronic applications where reliable and persistent data storage is a priority.