source: firmware/FTU/test_firmware/FTU_test8/FTU_test8_dac_control.vhd@ 10102

Last change on this file since 10102 was 9622, checked in by weitzel, 14 years ago
FTU_test8 added (threshold ramping)
File size: 4.9 KB
Line 
1----------------------------------------------------------------------------------
2-- Company: ETH Zurich, Institute for Particle Physics
3-- Engineer: P. Vogler, Q. Weitzel
4--
5-- Create Date: 08/04/2010
6-- Design Name:
7-- Module Name: FTU_test8_dac_control - Behavioral
8-- Project Name:
9-- Target Devices:
10-- Tool versions:
11-- Description: test8 for controling DAC on FTU board
12--
13-- Dependencies:
14--
15-- Revision:
16-- Revision 0.01 - File Created
17-- Additional Comments:
18--
19----------------------------------------------------------------------------------
20library IEEE;
21use IEEE.STD_LOGIC_1164.ALL;
22use IEEE.STD_LOGIC_ARITH.ALL;
23use IEEE.STD_LOGIC_UNSIGNED.ALL;
24library ftu_definitions_test8;
25USE ftu_definitions_test8.ftu_array_types.all;
26
27---- Uncomment the following library declaration if instantiating
28---- any Xilinx primitives in this code.
29--library UNISIM;
30--use UNISIM.VComponents.all;
31
32entity FTU_test8_dac_control is
33 port(
34 clk : IN STD_LOGIC;
35 reset : IN STD_LOGIC;
36 clr : OUT STD_LOGIC;
37 mosi : OUT STD_LOGIC;
38 sck : OUT STD_LOGIC;
39 cs_ld : out STD_LOGIC;
40 enable1 : out STD_LOGIC;
41 enable2 : out STD_LOGIC;
42 enable3 : out STD_LOGIC
43 );
44end FTU_test8_dac_control;
45
46architecture Behavioral of FTU_test8_dac_control is
47
48 component FTU_test8_spi_interface
49 port(
50 clk_50MHz : IN std_logic;
51 config_start : IN std_logic;
52 dac_array : IN dac_array_type;
53 config_ready : OUT std_logic;
54 config_started : OUT std_logic;
55 dac_cs : OUT std_logic;
56 mosi : OUT std_logic;
57 sclk : OUT std_logic;
58 miso : INOUT std_logic
59 );
60 end component;
61
62 signal clk_sig : std_logic;
63 signal reset_sig : std_logic;
64
65 signal clr_sig : std_logic;
66 signal mosi_sig : std_logic := '0';
67 signal serial_clock_sig : std_logic;
68 signal dac_cs_sig : std_logic;
69
70 signal config_start_sig : std_logic := '0';
71 signal config_ready_sig : std_logic;
72 signal config_started_sig : std_logic := '0';
73 signal dac_array_sig : dac_array_type := (0,0,0,0,0,0,0,100);
74
75 -- Build an enumerated type for the state machine
76 type state_type is (START, SET, WAITING, WAITING_MORE, STOP);
77
78 -- Register to hold the current state
79 signal state : state_type;
80
81 signal ramp_cnt : integer range 0 to 45 := 0;
82 constant RAMP_STEP : integer := 91;
83
84 --signal wait_cnt : integer range 0 to 150000000 := 0; --implement
85 signal wait_cnt : integer range 0 to 10 := 0; --simulation
86 --change this also below!!!
87
88begin
89
90 reset_sig <= reset;
91 clk_sig <= clk;
92 mosi <= mosi_sig;
93 sck <= serial_clock_sig;
94 cs_ld <= dac_cs_sig;
95
96 -- FSM for dac control: second process
97 FSM_logic: process(clk_sig)
98 begin
99 if rising_edge(clk_sig) then
100 case state is
101 when START =>
102 dac_array_sig <= (0,0,0,0,0,0,0,100);
103 config_start_sig <= '0';
104 enable1 <= '0';
105 enable2 <= '1';
106 enable3 <= '1';
107 state <= SET;
108 when SET =>
109 dac_array_sig <= (ramp_cnt*91,ramp_cnt*91,ramp_cnt*91,ramp_cnt*91,0,0,0,100);
110 config_start_sig <= '1';
111 enable1 <= '0';
112 enable2 <= '1';
113 enable3 <= '1';
114 if config_started_sig = '1' then
115 state <= WAITING;
116 else
117 state <= SET;
118 end if;
119 when WAITING =>
120 dac_array_sig <= (ramp_cnt*91,ramp_cnt*91,ramp_cnt*91,ramp_cnt*91,0,0,0,100);
121 config_start_sig <= '1';
122 enable1 <= '0';
123 enable2 <= '1';
124 enable3 <= '1';
125 if (config_ready_sig = '1') then
126 state <= WAITING_MORE;
127 else
128 state <= WAITING;
129 end if;
130 when WAITING_MORE =>
131 dac_array_sig <= (ramp_cnt*91,ramp_cnt*91,ramp_cnt*91,ramp_cnt*91,0,0,0,100);
132 config_start_sig <= '0';
133 enable1 <= '1';
134 enable2 <= '0';
135 enable3 <= '1';
136 if wait_cnt < 10 then
137 wait_cnt <= wait_cnt + 1;
138 state <= WAITING_MORE;
139 else
140 wait_cnt <= 0;
141 if (ramp_cnt < 45) then
142 ramp_cnt <= ramp_cnt + 1;
143 state <= SET;
144 else
145 state <= STOP;
146 end if;
147 end if;
148 when STOP =>
149 dac_array_sig <= (0,0,0,0,0,0,0,100);
150 enable1 <= '1';
151 enable2 <= '1';
152 enable3 <= '0';
153 config_start_sig <= '0';
154 end case;
155 end if;
156 end process;
157
158 Inst_FTU_test8_spi_interface : FTU_test8_spi_interface
159 port map(
160 clk_50MHz => clk_sig,
161 config_start => config_start_sig,
162 dac_array => dac_array_sig,
163 config_ready => config_ready_sig,
164 config_started => config_started_sig,
165 dac_cs => dac_cs_sig,
166 mosi => mosi_sig,
167 sclk => serial_clock_sig,
168 miso => open
169 );
170
171end Behavioral;
172
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