Intel's EP1C6F256C6NGA is a high-performance field-programmable gate array (FPGA) belonging to the Cyclone V family. This device is designed to offer a balance between power efficiency, performance, and cost, making it suitable for a wide range of applications.
Description:
The EP1C6F256C6NGA is a 6-layer thin quad flat no-lead (TQFN) package FPGA with a programmable logic density of 256 macrocells. It features a high-speed transceiver for high-performance communication applications and a comprehensive set of I/O options for easy integration with other components.
Features:
- 256 macrocells for programmable logic density
- 6-layer thin quad flat no-lead (TQFN) package
- High-speed transceiver for communication applications
- Comprehensive I/O options for easy integration
- Low power consumption for energy-efficient designs
- High-performance clock management for precise timing control
- On-chip memory resources for data storage and processing
- Configurable logic blocks for customization and optimization
Applications:
- Communications infrastructure: The high-speed transceiver and low power consumption make the EP1C6F256C6NGA suitable for applications such as network routers, switches, and optical transport network (OTN) systems.
- Industrial automation: The device's robust I/O options and programmable logic make it ideal for motor control, machine vision, and process automation systems.
- Automotive: The EP1C6F256C6NGA can be used in advanced driver assistance systems (ADAS), infotainment systems, and power management applications within the automotive industry.
- Consumer electronics: The FPGA's versatility and low power consumption make it suitable for applications such as set-top boxes, digital cameras, and portable devices.
- Aerospace and defense: The EP1C6F256C6NGA can be used in secure communication systems, radar processing, and electronic warfare applications due to its high reliability and performance.
In summary, Intel's EP1C6F256C6NGA is a versatile and high-performance FPGA that offers a balance between power efficiency, performance, and cost. Its features make it suitable for a wide range of applications, including communications infrastructure, industrial automation, automotive, consumer electronics, and aerospace and defense.