entity seq_gen is
port(clk_seq : in std_logic;
rst_seq : in std_logic;
lcd_hs_out : out std_logic;
lcd_dataen : out std_logic;
lcd_vs_out : out std_logic;
pix_clk : out std_logic );
end seq_gen;
architecture rtl_seq_gen of seq_gen is
signal lcd_hb : std_logic;
signal lcd_hs : std_logic;
signal lcd_vb : std_logic;
signal lcd_vs : std_logic;
signal clken_vcount : std_logic;
begin
hcount: block
signal hcountreg :std_logic_vector(9 downto 0);
signal hz_temp : std_logic;
signal lcd_hz : std_logic;
begin
process (clk_seq,lcd_hz)
begin
if (lcd_hz = '1') then
hcountreg <= (others =>'0');
elsif clk_seq'event and clk_seq = '1' then
hcountreg <= hcountreg +1;
end if;
end process;
lcd_hb <= '0' when hcountreg >=600 and hcountreg < 650
else '1';
lcd_hs <='0' when hcountreg >=610 and hcountreg < 630
else '1';
hz_temp <= '1' when hcountreg = 650 else '0';
lcd_hz <=hz_temp or rst_seq;
end block hcount;
diff : block
signal inputrega : std_logic;
signal inputregb : std_logic;
begin
process(clk_seq)
begin
if clk_seq'event and clk_seq='1' then
inputregb <= inputrega;
inputrega <= not lcd_hs;
end if;
end process;
clken_vcount <= not inputregb and inputrega;
end block diff;
vcount : block
signal vcountreg : std_logic_vector(9 downto 0);
signal vz_temp : std_logic;
signal lcd_vz : std_logic;
begin
process (clk_seq,lcd_vz)
begin
if(lcd_vz='1')then
vcountreg <= (others => '0');
elsif clk_seq'event and clk_seq = '1' then
if clken_vcount = '1' then
vcountreg <= vcountreg +1;
end if;
end if;
end process;
lcd_vb <= '0' when vcountreg >=600 and vcountreg < 615
else '1';
lcd_vs <='0' when vcountreg >=607 and vcounreg < 610
else '1';
vz_temp <= '1' when vcountreg = 615 else '0';
lcd_vz <= vz_temp or rst_seq;
end block vcount;
pix_clk <=clk_seq;
lcd_dataen <=lcd_hb and lcd_vb;
lcd_hs_out <=lcd_hs;
lcd_vs_out <=lcd_vs;
end rtl_seq_gen;
這種用VHDL產(chǎn)生掃描時序的方法簡單、易讀,并且易于修改。在代碼中只須修改一些時序參數(shù)就能產(chǎn)生任意時序的波形,具有很好的可重用性。用FPGA Express 3.5半VHDL代碼綜合后,通過Foundation 3.1i進(jìn)行布局和布線,用Foundation提供的門級仿真工具產(chǎn)生的行掃描時序仿真圖如圖4所示。
采用FPGA技術(shù)設(shè)計的AMLCD控制器,大大減少了電路板的尺寸,同時增加了系統(tǒng)可靠性和設(shè)計靈活性。這種用VHDL語言實現(xiàn)現(xiàn)行場掃描時序生成器的方法,具有簡便。易讀和可重用性強(qiáng)的特點(diǎn)。該AMLCD控制器已用Xilinx公司的SpartanII系列器件XC2S50實現(xiàn),并在飛機(jī)座艙圖形顯示系統(tǒng)中實現(xiàn)應(yīng)用。





