The AT17LV256PC is a robust and versatile FPGA (Field Programmable Gate Array) configuration EEPROM (Electrically Erasable Programmable Read-Only Memory) developed by Microchip Technology, designed to store the configuration data for FPGA devices. This EEPROM enables the dynamic reconfiguration of FPGAs, ensuring a flexible and efficient use of the hardware for a variety of applications.
Key Features
- Memory Size: The AT17LV256PC comes with 256Kb of memory, providing sufficient space for storing complex configuration data for FPGAs.
- Operating Voltage: This device operates at a low voltage range of 3V to 3.6V, making it suitable for low-power applications and compatible with most FPGA logic levels.
- Interface: It features a simple serial interface for communication, which facilitates easy and reliable data transfer to and from the FPGA.
- Programming Support: The EEPROM supports industry-standard programming algorithms, ensuring compatibility with most FPGA configuration tools and simplifying the programming process.
- Package: The AT17LV256PC is available in a 20-lead PDIP (Plastic Dual In-line Package), which is widely used and allows for easy integration into various circuit designs.
- Endurance: High reliability is ensured with an endurance of 100,000 write cycles and a data retention period of 20 years, guaranteeing the longevity of the configuration data.
Applications
The AT17LV256PC is suitable for a wide range of applications where FPGA configuration storage is necessary. It is commonly used in:
- Telecommunications equipment
- Networking hardware
- Industrial control systems
- Aerospace and defense systems
- Consumer electronics
Conclusion
The Microchip Technology AT17LV256PC is an indispensable component for any system utilizing FPGAs, providing a reliable and flexible solution for storing and updating configuration data. Its ease of use, coupled with its low-power operation and high endurance, makes it an excellent choice for designers looking to enhance the capabilities and performance of their FPGA-based systems.