Microchip Technology AT27C128-20DC
The AT27C128-20DC is a high-performance, low-power EPROM (Erasable Programmable Read-Only Memory) device from the renowned manufacturer Microchip Technology. This integrated circuit is specially designed to offer a reliable and durable non-volatile memory solution for a wide array of electronic applications.
Key Features:
- Memory Capacity: The device boasts a substantial memory capacity of 128 kilobits, providing ample storage for firmware, boot code, or other critical data that requires long-term retention without power.
- Access Speed: With an access speed of 200 nanoseconds, the AT27C128-20DC ensures quick data retrieval, contributing to the overall performance and responsiveness of the system it's integrated into.
- Package Type: It comes in a user-friendly DIP (Dual In-line Package), which is well-suited for through-hole mounting techniques, making it ideal for prototyping as well as production runs.
- Power Consumption: The device is designed for low power consumption, making it an excellent choice for power-sensitive applications. It operates efficiently, which can help extend the life of battery-powered devices.
- Programmability: As an EPROM, the AT27C128-20DC can be erased and reprogrammed, providing flexibility for updates or changes to the stored data. This feature is particularly useful during the development and testing phases of a product.
- Temperature Range: The device is built to perform reliably over a wide temperature range, ensuring stability and functionality in varying environmental conditions.
Applications:
The AT27C128-20DC is suitable for a diverse range of applications, including but not limited to:
- Embedded systems
- Microcontroller-based applications
- Automotive electronics
- Industrial control systems
- Telecommunication infrastructure
- Medical devices
With its robust design and comprehensive features, the AT27C128-20DC from Microchip Technology is a versatile and dependable choice for designers and engineers looking to incorporate a high-quality EPROM into their electronic designs.