adafruit_bno055 / examples / sensorapi / sensorapi.ino @ 48741e1f
History | View | Annotate | Download (3.911 KB)
1 |
#include <Wire.h> |
---|---|
2 |
#include <Adafruit_Sensor.h> |
3 |
#include <Adafruit_BNO055.h> |
4 |
#include <utility/imumaths.h> |
5 |
|
6 |
/* This driver uses the Adafruit unified sensor library (Adafruit_Sensor), |
7 |
which provides a common 'type' for sensor data and some helper functions. |
8 |
|
9 |
To use this driver you will also need to download the Adafruit_Sensor |
10 |
library and include it in your libraries folder. |
11 |
|
12 |
You should also assign a unique ID to this sensor for use with |
13 |
the Adafruit Sensor API so that you can identify this particular |
14 |
sensor in any data logs, etc. To assign a unique ID, simply |
15 |
provide an appropriate value in the constructor below (12345 |
16 |
is used by default in this example). |
17 |
|
18 |
Connections |
19 |
=========== |
20 |
Connect SCL to analog 5 |
21 |
Connect SDA to analog 4 |
22 |
Connect VDD to 3.3V DC |
23 |
Connect GROUND to common ground |
24 |
|
25 |
History |
26 |
======= |
27 |
2015/MAR/03 - First release (KTOWN) |
28 |
*/ |
29 |
|
30 |
/* Set the delay between fresh samples */ |
31 |
#define BNO055_SAMPLERATE_DELAY_MS (500) |
32 |
|
33 |
Adafruit_BNO055 bno = Adafruit_BNO055(55); |
34 |
|
35 |
/**************************************************************************/ |
36 |
/* |
37 |
Displays some basic information on this sensor from the unified |
38 |
sensor API sensor_t type (see Adafruit_Sensor for more information) |
39 |
*/ |
40 |
/**************************************************************************/ |
41 |
void displaySensorDetails(void) |
42 |
{ |
43 |
sensor_t sensor; |
44 |
bno.getSensor(&sensor); |
45 |
Serial.println("------------------------------------"); |
46 |
Serial.print ("Sensor: "); Serial.println(sensor.name); |
47 |
Serial.print ("Driver Ver: "); Serial.println(sensor.version); |
48 |
Serial.print ("Unique ID: "); Serial.println(sensor.sensor_id); |
49 |
Serial.print ("Max Value: "); Serial.print(sensor.max_value); Serial.println(" xxx"); |
50 |
Serial.print ("Min Value: "); Serial.print(sensor.min_value); Serial.println(" xxx"); |
51 |
Serial.print ("Resolution: "); Serial.print(sensor.resolution); Serial.println(" xxx"); |
52 |
Serial.println("------------------------------------"); |
53 |
Serial.println(""); |
54 |
delay(500); |
55 |
} |
56 |
|
57 |
/**************************************************************************/ |
58 |
/* |
59 |
Arduino setup function (automatically called at startup) |
60 |
*/ |
61 |
/**************************************************************************/ |
62 |
void setup(void) |
63 |
{ |
64 |
Serial.begin(9600); |
65 |
Serial.println("Orientation Sensor Test"); Serial.println(""); |
66 |
|
67 |
/* Initialise the sensor */ |
68 |
if(!bno.begin()) |
69 |
{ |
70 |
/* There was a problem detecting the BNO055 ... check your connections */ |
71 |
Serial.print("Ooops, no BNO055 detected ... Check your wiring or I2C ADDR!"); |
72 |
while(1); |
73 |
} |
74 |
|
75 |
delay(1000); |
76 |
|
77 |
/* Display some basic information on this sensor */ |
78 |
displaySensorDetails(); |
79 |
|
80 |
/* Display system info (optional) */ |
81 |
bno.displaySystemStatus(); |
82 |
Serial.println(""); |
83 |
|
84 |
/* Display chip revision details (optional) */ |
85 |
bno.displayRevInfo(); |
86 |
Serial.println(""); |
87 |
} |
88 |
|
89 |
/**************************************************************************/ |
90 |
/* |
91 |
Arduino loop function, called once 'setup' is complete (your own code |
92 |
should go here) |
93 |
*/ |
94 |
/**************************************************************************/ |
95 |
void loop(void) |
96 |
{ |
97 |
// Possible vector values can be: |
98 |
// - VECTOR_ACCELEROMETER |
99 |
// - VECTOR_MAGNETOMETER |
100 |
// - VECTOR_GYROSCOPE |
101 |
// - VECTOR_EULER |
102 |
// - VECTOR_LINEARACCEL |
103 |
// - VECTOR_GRAVITY |
104 |
imu::Vector<3> euler = bno.getVector(Adafruit_BNO055::VECTOR_EULER); |
105 |
Serial.print("X: "); |
106 |
Serial.println((int)euler.x(), DEC); |
107 |
Serial.print("Y: "); |
108 |
Serial.println((int)euler.y(), DEC); |
109 |
Serial.print("Z: "); |
110 |
Serial.println((int)euler.z(), DEC); |
111 |
Serial.println(""); |
112 |
|
113 |
imu::Quaternion quat = bno.getQuat(); |
114 |
Serial.print("qW: "); |
115 |
Serial.println((int)quat.w(), DEC); |
116 |
Serial.print("qX: "); |
117 |
Serial.println((int)quat.x(), DEC); |
118 |
Serial.print("qY: "); |
119 |
Serial.println((int)quat.y(), DEC); |
120 |
Serial.print("qZ: "); |
121 |
Serial.println((int)quat.z(), DEC); |
122 |
Serial.println(""); |
123 |
|
124 |
delay(BNO055_SAMPLERATE_DELAY_MS); |
125 |
} |