DK-DEV-5CSXC6N/ES
DK-DEV-5CSXC6N/ES
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Intel Corporation

DK-DEV-5CSXC6N/ES


DK-DEV-5CSXC6N/ES
F18-DK-DEV-5CSXC6N/ES
Active
CYCLONE V SOC DEVELOPMENT KIT

DK-DEV-5CSXC6N/ES ECAD Model


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DK-DEV-5CSXC6N/ES Attributes


Type Description Select
Mfr Intel
Series Cyclone® V SX
Package Box
Type FPGA
For Use With/Related Products 5CSXFC6
Platform Cyclone V SX SoC
Contents Board(s), Cable(s), Power Supply
Interconnect System HSMC
Suggested Programming Environment Quartus II
Base Product Number 5CSXFC6

DK-DEV-5CSXC6N/ES Datasheet Download


DK-DEV-5CSXC6N/ES Overview



The DK-DEV-5CSXC6N/ES chip is a low-power, dual-core, ARM Cortex-A9 processor, designed and manufactured by Altera Corporation. It is based on the Altera SoC architecture and is optimized for embedded applications such as industrial automation, medical, military and aerospace, automotive, and consumer electronics.


The DK-DEV-5CSXC6N/ES chip features a dual-core ARM Cortex-A9 processor core with an operating frequency of up to 800MHz. It also includes a dedicated memory controller, a 32-bit DDR3 SDRAM, two 10/100/1000 Ethernet ports, two USB ports, four UART ports, two I2C ports, two SPI ports, four GPIO ports, and an SD/MMC port. It also includes a wide range of peripherals such as a 16-bit ADC, a 32-bit timer, a watchdog timer, and a real-time clock.


The DK-DEV-5CSXC6N/ES chip supports a wide range of operating systems including Linux, Android, Windows, and VxWorks. It also supports a wide range of development tools such as Altera’s Quartus II software and the Altera Nios II embedded processor. The chip is also supported by a wide range of third-party tools, including Altera’s SoC Embedded Design Suite (EDS) and Altera’s Embedded Design Suite (EDS).


The DK-DEV-5CSXC6N/ES chip is designed to provide low-power, high-performance solutions for embedded applications. It is also designed to provide a high degree of scalability and flexibility, allowing it to be used in a wide range of applications. It is also designed to provide a high degree of reliability and robustness, making it suitable for use in mission-critical applications.



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