A Binary-Coded Hexadecimal (BCH) converter accepts a 4-bit decimal input and displays the equivalent hexadecimal value on a 7-segment display. In this task, you will design a BCH converter and display its output on one of the 7-segment displays found on the DE1-SoC board. Consider the figure below. There are 4 ON/OFF switches {SW3, SW2, SWI, SwO} that represent the 4-bit decimal input. Also, there are 7 LEDS {HEXO [6:0]}, which represent the hexadecimal output displayed on the 7-segment display. HEXO(6] HEXO[5] HEXO[4] SW3 SW2 BCH Converter HEXO[3] Swi HEXO[2] swo HEXO[1] HEXO[0] Also, the figure below shows the hexadecimal numbers from 0 to F displayed on the 7-segment display. Do the following: 1. Draw a truth table that maps the input {SW3, sW2, SWI, SWO} to the output {HEXO [6:0]}. Note that LEDS on the 7-segment display are active low. In other words, if you want to turn ON an LED, you have to set it to "0'; and vice versa. 2. Create a new Quartus II project. Based on the truth table in the previous step, describe the BCH converter using Verilog behavioral modelling. Compile the Design.

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Task #2:
A Binary-Coded Hexadecimal (BCH) converter accepts a 4-bit decimal input and displays the equivalent
hexadecimal value on a 7-segment display.
In this task, you will design a BCH converter and display its output on one of the 7-segment displays found
on the DE1-SoC board.
Consider the figure below. There are 4 ON/OFF switches {SW3, sw2, SWI, swo} that represent the 4-bit
decimal input. Also, there are 7 LEDS {HEXO [6:0]}, which represent the hexadecimal output displayed on
the 7-segment display.
HEXO[6]
HEXO[5]
НЕХО 4]
SW3
SW2
BCH
Converter
НЕХО[3]
swi
НЕХО (2]
Swo
НЕХО 1]
HEXO[0)
Also, the figure below shows the hexadecimal numbers from 0 to F displayed on the 7-segment display.
Do the following:
1. Draw a truth table that maps the input {SW3, SW2, SWI, SWO} to the output {HEXO [6:0]}. Note
that LEDS on the 7-segment display are active low. In other words, if you want to turn ON an LED,
you have to set it to *O'; and vice versa.
2. Create a new Quartus II project. Based on the truth table in the previous step, describe the BCH
converter using Verilog behavioral modelling. Compile the Design.
3. Use the document “DE1-SoC User Manual" to get the pin numbers of the 4 ON/OFF switches and
the 7-segment display on the platform FPGA.
4. Program the platform FPGA and validate the design.
Transcribed Image Text:Task #2: A Binary-Coded Hexadecimal (BCH) converter accepts a 4-bit decimal input and displays the equivalent hexadecimal value on a 7-segment display. In this task, you will design a BCH converter and display its output on one of the 7-segment displays found on the DE1-SoC board. Consider the figure below. There are 4 ON/OFF switches {SW3, sw2, SWI, swo} that represent the 4-bit decimal input. Also, there are 7 LEDS {HEXO [6:0]}, which represent the hexadecimal output displayed on the 7-segment display. HEXO[6] HEXO[5] НЕХО 4] SW3 SW2 BCH Converter НЕХО[3] swi НЕХО (2] Swo НЕХО 1] HEXO[0) Also, the figure below shows the hexadecimal numbers from 0 to F displayed on the 7-segment display. Do the following: 1. Draw a truth table that maps the input {SW3, SW2, SWI, SWO} to the output {HEXO [6:0]}. Note that LEDS on the 7-segment display are active low. In other words, if you want to turn ON an LED, you have to set it to *O'; and vice versa. 2. Create a new Quartus II project. Based on the truth table in the previous step, describe the BCH converter using Verilog behavioral modelling. Compile the Design. 3. Use the document “DE1-SoC User Manual" to get the pin numbers of the 4 ON/OFF switches and the 7-segment display on the platform FPGA. 4. Program the platform FPGA and validate the design.
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