brix5 / firmware / demo / QuadDRV-HwTest / QuadDRV-HwTest.ino @ a2a2cf8b
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1 | 9e4d9eb1 | Jan | // Demo Sketch for 4x TI DRV2605 and I2C MUX |
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2 | // |
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3 | // Usage: |
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4 | // Serial Connect w/ 9600 baud |
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5 | // 0-3 send a buzz on channel 0-3 respectively |
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6 | |||
7 | #include "Adafruit_DRV2605.h" |
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8 | |||
9 | const uint8_t channelCount = 4; // belt has 3 channels |
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10 | Adafruit_DRV2605 drvs[channelCount] = { |
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11 | Adafruit_DRV2605(0), |
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12 | Adafruit_DRV2605(1), |
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13 | Adafruit_DRV2605(2), |
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14 | Adafruit_DRV2605(3) |
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15 | }; |
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16 | |||
17 | uint8_t library = 6; // LRA |
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18 | char motor = '!'; // '!' = disabled |
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19 | cd87454c | Jan | bool debug = true; |
20 | 9e4d9eb1 | Jan | |
21 | void setup() { |
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22 | Wire.begin(); |
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23 | |||
24 | // wait for serial port to connect |
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25 | cd87454c | Jan | // while (!Serial); |
26 | 9e4d9eb1 | Jan | Serial.begin(9600); |
27 | delay(250); |
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28 | |||
29 | for (uint8_t i = 0; i < channelCount; i++) { |
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30 | drvs[i].begin(); |
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31 | drvs[i].selectLibrary(library); |
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32 | drvs[i].useLRA(); |
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33 | drvs[i].setMode(DRV2605_MODE_REALTIME); |
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34 | } |
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35 | } |
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36 | |||
37 | void loop() { |
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38 | cd87454c | Jan | // Serial.println("Test loop"); |
39 | 9e4d9eb1 | Jan | if (Serial.available()) { |
40 | |||
41 | char cmd = Serial.read(); |
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42 | if (debug) { |
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43 | Serial.print("Received: "); |
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44 | Serial.println(cmd); |
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45 | } |
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46 | |||
47 | uint8_t intensity = 0; |
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48 | int duration = 0; |
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49 | |||
50 | switch (cmd) { |
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51 | if (debug) { |
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52 | Serial.print("playing on channel "); |
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53 | Serial.println(cmd); |
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54 | } |
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55 | |||
56 | case ('0'): |
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57 | case ('1'): |
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58 | case ('2'): |
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59 | cd87454c | Jan | case ('3'): |
60 | 9e4d9eb1 | Jan | motor = cmd; |
61 | cd87454c | Jan | intensity = 127; |
62 | duration = 500; |
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63 | 9e4d9eb1 | Jan | } |
64 | |||
65 | if (intensity > 0) { |
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66 | // single channel |
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67 | |||
68 | // convert ASCII channel string to int |
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69 | uint8_t channel = ((uint8_t)motor) - 48; |
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70 | |||
71 | if ((motor != '!') && (channel < channelCount)) { |
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72 | playRTP(channel, intensity, duration); |
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73 | motor = '!'; // reset to normal mode |
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74 | } else { |
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75 | playRTP(intensity, duration); |
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76 | } |
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77 | intensity = 0; |
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78 | duration = 0; |
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79 | } |
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80 | |||
81 | if (debug) { |
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82 | Serial.println(); |
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83 | } |
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84 | } |
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85 | } |
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86 | |||
87 | // all channels |
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88 | void playRTP(uint8_t intensity, uint16_t duration) { |
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89 | if (debug) { |
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90 | Serial.print("Playing intensity "); |
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91 | Serial.print(intensity); |
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92 | Serial.print(" for "); |
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93 | Serial.print(duration); |
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94 | Serial.println("ms on all channels"); |
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95 | } |
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96 | for (uint8_t channel; channel < channelCount; channel++) { |
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97 | drvs[channel].setRealtimeValue(intensity); |
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98 | } |
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99 | delay(duration); |
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100 | for (uint8_t channel; channel < channelCount; channel++) { |
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101 | drvs[channel].setRealtimeValue(0x00); |
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102 | } |
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103 | } |
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104 | |||
105 | // single channel |
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106 | void playRTP(uint8_t channel, uint8_t intensity, uint16_t duration) { |
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107 | if (debug) { |
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108 | Serial.print("Playing intensity "); |
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109 | Serial.print(intensity); |
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110 | Serial.print(" for "); |
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111 | Serial.print(duration); |
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112 | Serial.print("ms on channel "); |
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113 | Serial.println(channel); |
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114 | } |
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115 | drvs[channel].setRealtimeValue(intensity); |
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116 | delay(duration); |
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117 | drvs[channel].setRealtimeValue(0x00); |
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118 | } |