📄 led.vhd.bak
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LIBRARY IEEE;
USE IEEE.STD_LOGIC_1164.ALL;
USE IEEE.STD_LOGIC_ARITH.ALL;
USE IEEE.STD_LOGIC_UNSIGNED.ALL;
ENTITY LED IS
PORT(ADIN :IN STD_LOGIC_VECTOR(23 DOWNTO 0);
CK:IN STD_LOGIC;
SEG :OUT STD_LOGIC_VECTOR(6 DOWNTO 0);
SEL: OUT STD_LOGIC_VECTOR(2 DOWNTO 0));
END LED;
ARCHITECTURE NIE6 OF LED IS
SIGNAL NUM:STD_LOGIC_VECTOR(3 DOWNTO 0);
SIGNAL COUNT:STD_LOGIC_VECTOR(2 DOWNTO 0);
BEGIN
PROCESS(CK)
BEGIN
IF CK'EVENT AND CK='1' THEN
IF COUNT<5 THEN COUNT<=COUNT+1;
ELSE COUNT<=(OTHERS=>'0');
END IF;
END IF;
END PROCESS;
SEL<=COUNT;
NUM<=ADIN(3 DOWNTO 0)WHEN COUNT=0 ELSE
ADIN(7 DOWNTO 4)WHEN COUNT=1 ELSE
ADIN(11 DOWNTO 8)WHEN COUNT=2 ELSE
ADIN(15 DOWNTO 12)WHEN COUNT=3 ELSE
ADIN(19 DOWNTO 16)WHEN COUNT=4 ELSE
ADIN(23 DOWNTO 20);
SEG<="0111111" WHEN NUM=0 ELSE
"0000110" WHEN NUM=1 ELSE
"1011011" WHEN NUM=2 ELSE
"1001111" WHEN NUM=3 ELSE
"1100110" WHEN NUM=4 ELSE
"1101101" WHEN NUM=5 ELSE
"1111101" WHEN NUM=6 ELSE
"0000111" WHEN NUM=7 ELSE
"1111111" WHEN NUM=8 ELSE
"1101111";
END NIE6;
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