Microchip Technology's AT24C16A-10TI-1.8 EEPROM
The AT24C16A-10TI-1.8 is a high-performance, 16-Kbit Electrically Erasable Programmable Read-Only Memory (EEPROM) module from the trusted semiconductor manufacturer, Microchip Technology. This integrated circuit is specifically designed to add flexible, non-volatile data storage to your electronic designs. It operates on a low-voltage range, making it ideal for applications that require efficient power management without compromising on storage capacity or data integrity.
With a wide operating temperature range and a small form factor, the AT24C16A-10TI-1.8 is suitable for a diverse array of applications, from portable devices to industrial control systems. Its 1.8V power supply compatibility aligns with the needs of modern, energy-conscious designs that operate on reduced voltage levels.
Key Features:
- Memory Size: 16-Kbits (2,048 x 8)
- Operating Voltage: 1.8V to 5.5V
- Interface: I²C (2-wire serial interface)
- Speed: 400kHz (I²C Fast Mode)
- Temperature Range: -40°C to +85°C
- Package: TSSOP (Thin Shrink Small Outline Package)
- Hardware Write Protection: Pin-controlled write protection
- Endurance: 1 Million Write Cycles
- Data Retention: 100 Years
The AT24C16A-10TI-1.8 EEPROM provides designers with a reliable and durable data storage solution that can be easily integrated into a variety of circuits, thanks to its industry-standard I²C interface. The device's built-in hardware write protection feature ensures that your data remains safe from inadvertent changes, adding an extra layer of security to your application.
Whether you're working on consumer electronics, automotive systems, or IoT devices, the AT24C16A-10TI-1.8 from Microchip Technology offers the perfect blend of size, power efficiency, and robustness. Its long-term data retention and high endurance make it a smart choice for applications where data accuracy and reliability are paramount.
Choose the AT24C16A-10TI-1.8 for a compact, efficient, and reliable EEPROM solution that will keep your data secure for decades to come.