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ARM/FPGA Soc Development Board
ARM/FPGA Soc Development Board
ARM/FPGA Soc Development Board
ARM/FPGA Soc Development Board
ARM/FPGA Soc Development Board
ARM/FPGA Soc Development Board
ARM/FPGA Soc Development Board
ARM/FPGA Soc Development Board
ARM/FPGA Soc Development Board
ARM/FPGA Soc Development Board
ARM/FPGA Soc Development Board
ARM/FPGA Soc Development Board

ARM/FPGA Soc Development Board

MOQ : 1 Piece

ARM/FPGA Soc Development Board Specification

  • Application
  • Engineering Educational Equipment
  • Temperature
  • 0C to 50C Operating
  • Humidity
  • 10% - 90% RH (non-condensing)
  • Power Supply
  • DC 5V/2A (via Adapter)
  • Response Time
  • <1 ms
  • Automation Grade
  • Manual/Programmable
  • Max Height
  • 35 mm
  • Frequency
  • 50/60 Hz
  • Display Type
  • On-board 7-Segment & External HDMI Display
  • Port Size
  • Standard HDMI, USB, UART, JTAG
  • Mounting Type
  • Desktop
  • Product Type
  • ARM/FPGA Soc Development Board
  • Features
  • Integrated ARM Cortex and Xilinx Spartan FPGA, on-board interfaces, peripheral compatibility, open-source programmable
  • Usage
  • Engineering Educational Equipment
  • Operating Voltage
  • 5V DC
  • Interface Type
  • USB 2.0, HDMI, UART, JTAG
  • Machine Weight
  • 1.2 kg
  • Control Mode
  • Manual & Programmable
  • Equipment Type
  • ARM/FPGA Soc Development Board
  • Development Support
  • Keil, Xilinx ISE, Vivado
  • Board Dimensions
  • 170 mm x 100 mm
  • Connectivity
  • Ethernet, USB Host, USB Device, UART
  • PCB Type
  • Multi-layer FR4, RoHS Compliant
  • Memory
  • 512 MB DDR3 RAM, 8 MB Flash
  • Debug Options
  • JTAG Debug Support
  • Cooling
  • Passive (No fan required)
  • Indicators
  • LED Status Indicators
  • Input Devices
  • Push Buttons, Switches
  • Output Devices
  • LEDs, 7-Segment Display, External HDMI
  • Processor
  • ARM Cortex-M3, Xilinx Spartan-6 FPGA
  • Expansion Slots
  • Arduino-compatible headers, GPIO
  • OS Support
  • Windows, Linux
 

ARM/FPGA Soc Development Board Trade Information

  • Minimum Order Quantity
  • 1 Piece
  • Supply Ability
  • 100 Pieces Per Week
  • Delivery Time
  • 1 Week
  • Sample Available
  • Yes
  • Sample Policy
  • Sample costs shipping and taxes has to be paid by the buyer
  • Packaging Details
  • carton box, export quality also available
  • Main Domestic Market
  • All India
  • Certifications
  • ISO 9001, 14001 ,CE
 

About ARM/FPGA Soc Development Board

ARM/FPGA Soc Development Board

  • Dual-core
  • 512 MB DDR3
  • 256 MB Quad-SPI Flash
  • 4 GB SD card
  • On-board USB-JTAG Programming
  • 10/100/1000 Ethernet
  • USB OTG 2.0 and USB-UART
  • Analog Devices, Low Power, 96 kHz, 24-Bit Audio Codec
  • Analog Devices, High Performance 225 MHz HDMI Transmitter (1080p HDMI, 8-bit VGA, 128x32 OLED)PS & PL I/O expansion (FMC, Pmod, XADC)





Integrated Dual-Processor Platform

This board uniquely combines the ARM Cortex-M3 microcontroller with Xilinx Spartan-6 FPGA, enabling both sequential and parallel processing. It allows students and engineers to experiment with real-world embedded systems and digital design on one compact device. With support for manual and programmable control, users can innovate in both software and hardware design workflows.


Robust Connectivity and Expansion Options

Designed for flexibility, the board features multiple expansion slots and connectivity options, including Arduino-compatible headers, GPIO, Ethernet, USB Host/Device, and UART ports. Its standard HDMI allows seamless external display integration, expanding its utility in demonstration and testing environments. This versatility makes the board adaptable for a broad range of engineering projects.


User-Friendly Development Environment

The board supports essential development tools like Keil, Xilinx ISE, and Vivado, fostering a smooth prototyping experience. With compatibility across Windows and Linux operating systems, educators and students benefit from easy setup and cross-platform functionality. JTAG interface and LED indicators simplify debugging and status monitoring, enhancing usability during project development.

FAQs of ARM/FPGA Soc Development Board:


Q: How can I program both the ARM Cortex-M3 and the Xilinx Spartan-6 FPGA on this development board?

A: Programming for the ARM Cortex-M3 is supported via Keil, while the Xilinx Spartan-6 FPGA can be developed using Xilinx ISE or Vivado. Each processor has its own toolchain, allowing users to load, debug, and run their code independently or in conjunction for hybrid applications. JTAG interface is available for in-depth debugging.

Q: What educational benefits does this ARM/FPGA SoC development board offer for engineering students?

A: This board provides hands-on experience with both microcontroller and FPGA-based architectures. Students learn to design hardware and software solutions, experiment with peripherals, and debug embedded systems, bridging theoretical concepts with practical implementation in real-world environments.

Q: Where can the development board be used, and is it suitable for laboratory environments?

A: The development board is designed for desktop mounting and is ideal for use in university labs, engineering training institutes, and R&D centers. Its compliance with RoHS standards and passive cooling ensures safe and reliable operation in classroom and professional environments.

Q: What is the process for interfacing external devices and displays to the board?

A: External devices and displays can be connected via standard interfaces such as HDMI, USB, UART, and Arduino-compatible headers. Users can control output devices through programmable logic or microcontroller code, making it simple to demonstrate concepts or test hardware interactions.

Q: When should I use the programmable mode instead of manual control?

A: Programmable mode is recommended when automating tasks, performing complex processing, or integrating with other computing systems. Manual mode is helpful for direct hardware manipulation, testing, and educational demonstrations, giving flexibility in control.

Q: What advantages does the multi-layer FR4 PCB and passive cooling provide?

A: Multi-layer FR4 PCB ensures robust signal integrity and reliable power management, while passive cooling (no fan required) guarantees quiet and energy-efficient operation. These features extend board durability and maintain performance during prolonged usage periods.

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