In order to implement a design, discover how you can use the 4-bit adder on a real development board.
- Implementation has some additional requirements related … to the fact that your design … has to interact with the outside world. … Two of the most important of these requirements … are input and output pin assignments … and timing specifications. … So let's see how I'll implement … the 4-Bit Adder in our development boards. … Once again, the inputs are two 4-Bit numbers, A and B, … and the output is a 5-Bit number called C, in this diagram. … Now, in the external hardware, I'll drive the inputs with … the onboard switches and the output will drive … the segment displays so that we can see A, B and C … in hexadecimal in the displays. … This is why we will need … a so-called hexadecimal two 7-segment decoder module. … This is a combination of circuit … that converts a 4-Bit number … into it's 7-segment display representation. … So it has four inputs and seven outputs. … You'll see that the system design for the Sidelinks … and Intel Boards will be slightly different. … The Intel system will be combinational …
- What is an FPGA?
- FPGA use cases
- Logic blocks and interconnects
- The FPGA development process
- Reviewing the hardware description languages
- Running FPGA simulations
- Implementing an FPGA design
Skill Level Intermediate
Learning Arduino: Interfacing with Hardwarewith Zahraa Khalil1h 40m Intermediate
What you should know1m 9s
1. Field Programmable Gate Arrays
2. Embedded Development Process
3. Hardware Description Languages
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