mag3110: add driver

This commit is contained in:
Ayke van Laethem
2018-11-18 20:24:04 +01:00
parent 36b00aac58
commit 6f0ace9157
2 changed files with 83 additions and 0 deletions
+55
View File
@@ -0,0 +1,55 @@
// Package mag3110 implements a driver for the MAG3110 3-axis magnetometer by
// Freescale/NXP.
//
// Datasheet: https://www.nxp.com/docs/en/data-sheet/MAG3110.pdf
package mag3110
import (
"machine"
)
// Device wraps an I2C connection to a MAG3110 device.
type Device struct {
bus machine.I2C
}
// NewI2C creates a new MAG3110 connection. The I2C bus must already be
// configured.
//
// This function only creates the Device object, it does not touch the device.
func NewI2C(bus machine.I2C) Device {
return Device{bus}
}
// Connected returns whether a MAG3110 has been found.
// It does a "who am I" request and checks the response.
func (d Device) Connected() bool {
data := []byte{0}
d.bus.ReadRegister(Address, WHO_AM_I, data)
return data[0] == 0xC4
}
// Configure sets up the device for communication.
func (d Device) Configure() {
d.bus.WriteRegister(Address, CTRL_REG2, []uint8{0x80}) // Power down when not used
}
// ReadMagnetic reads the vectors of the magnetic field of the device and
// returns it.
func (d Device) ReadMagnetic() (x int16, y int16, z int16) {
d.bus.WriteRegister(Address, CTRL_REG1, []uint8{0x1a}) // Request a measurement
data := make([]byte, 6)
d.bus.ReadRegister(Address, OUT_X_MSB, data)
x = int16((uint16(data[0]) << 8) | uint16(data[1]))
y = int16((uint16(data[2]) << 8) | uint16(data[3]))
z = int16((uint16(data[4]) << 8) | uint16(data[5]))
return
}
// ReadTemperature reads the current die temperature in degrees Celsius.
func (d Device) ReadTemperature() (temp int8) {
data := make([]byte, 1)
d.bus.ReadRegister(Address, DIE_TEMP, data)
return int8(data[0])
}
+28
View File
@@ -0,0 +1,28 @@
package mag3110
// Constants/addresses used for I2C.
// The I2C address which this device listens to.
const Address = 0x0E
// Registers. Names, addresses and comments are copied from the datasheet.
const (
DR_STATUS = 0x00 // Data ready status per axis
OUT_X_MSB = 0x01 // Bits [15:8] of X measurement
OUT_X_LSB = 0x02 // Bits [7:0] of X measurement
OUT_Y_MSB = 0x03 // Bits [15:8] of Y measurement
OUT_Y_LSB = 0x04 // Bits [7:0] of Y measurement
OUT_Z_MSB = 0x05 // Bits [15:8] of Z measurement
OUT_Z_LSB = 0x06 // Bits [7:0] of Z measurement
WHO_AM_I = 0x07 // Device ID Number
SYSMOD = 0x08 // Current System Mode
OFF_X_MSB = 0x09 // Bits [14:7] of user X offset
OFF_X_LSB = 0x0A // Bits [6:0] of user X offset
OFF_Y_MSB = 0x0B // Bits [14:7] of user Y offset
OFF_Y_LSB = 0x0C // Bits [6:0] of user Y offset
OFF_Z_MSB = 0x0D // Bits [14:7] of user Z offset
OFF_Z_LSB = 0x0E // Bits [6:0] of user Z offset
DIE_TEMP = 0x0F // Temperature, signed 8 bits in °C
CTRL_REG1 = 0x10 // Operation modes
CTRL_REG2 = 0x11 // Operation modes
)