Microchip Technology AT24C16NSU27 EEPROM
The AT24C16NSU27 is a high-performance, serial Electrically Erasable Programmable Read-Only Memory (EEPROM) device from Microchip Technology, designed for efficient non-volatile data storage. This device is part of Microchip's extensive EEPROM product line, which is renowned for its reliability and ease of use in a wide range of applications.
Key Features:
- Memory Size: The AT24C16NSU27 offers 16Kbits of memory, organized as 2,048 x 8 bits, which is ideal for storing configurations, settings, or small amounts of data that must be preserved during power loss.
- Interface: It utilizes the industry-standard Two-Wire Serial Interface (I²C), which allows for simple integration into most microcontroller-based systems with minimal pin count.
- Operating Voltage Range: The device supports a wide voltage range of 2.7V to 5.5V, making it suitable for various applications, from battery-operated devices to industrial systems.
- Write Cycle Time: Fast write cycle times of 5 ms (max) for efficient data handling and rapid updates to stored information.
- Endurance: The EEPROM is rated for a high endurance of one million write cycles, ensuring long-term reliability and data retention for at least 100 years.
- Package: It comes in an 8-lead USON (Ultra Small Outline No lead) package, which is ideal for space-constrained applications.
Applications:
The versatility of the AT24C16NSU27 makes it suitable for a diverse array of applications, including:
- Consumer electronics
- Automotive systems
- Industrial control systems
- Medical devices
- Smart cards
- Internet of Things (IoT) devices
Overall, the AT24C16NSU27 from Microchip Technology is a robust and reliable EEPROM choice for designers and engineers looking for a compact, high-endurance, and easy-to-use non-volatile memory solution. Its compatibility with the I²C bus interface and wide operating voltage range ensures that it can be deployed in a multitude of environments and applications, providing a flexible and dependable storage option.