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Add support for adxl380 and adxl382
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Signed-off-by: Robert Budai <[email protected]>
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rbudai98 committed Nov 13, 2024
1 parent 58c3827 commit c346ea1
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1 change: 1 addition & 0 deletions adi/__init__.py
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Expand Up @@ -90,6 +90,7 @@
from adi.adxl313 import adxl313
from adi.adxl345 import adxl345
from adi.adxl355 import adxl355
from adi.adxl380 import adxl380
from adi.adxrs290 import adxrs290
from adi.cn0511 import cn0511
from adi.cn0532 import cn0532
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186 changes: 186 additions & 0 deletions adi/adxl380.py
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# Copyright (C) 2021-2024 Analog Devices, Inc.
#
# SPDX short identifier: ADIBSD

from decimal import Decimal

from adi.attribute import attribute
from adi.context_manager import context_manager
from adi.rx_tx import rx


class adxl380(rx, context_manager, attribute):
""" adxl380 3-axis accelerometer """

_device_name = "adxl380"
_rx_unbuffered_data = True
_rx_data_si_type = float

def __init__(self, uri="", device_name=None):
context_manager.__init__(self, uri, self._device_name)

compatible_parts = ["adxl380", "adxl382"]

if not device_name:
device_name = compatible_parts[0]

if device_name not in compatible_parts:
raise Exception(
"Not a compatible device:"
+ str(device_name)
+ ".Please select from:"
+ str(compatible_parts)
)
else:
print("Device found: ", device_name)
self._ctrl = self._ctx.find_device(device_name)
self._rxadc = self._ctx.find_device(device_name)

if self._ctrl is None:
print(
"No device found with device_name = "
+ device_name
+ ". Searching for a device found in the compatible list."
)
for i in compatible_parts:
self._ctrl = self._ctx.find_device(i)
self._rxadc = self._ctx.find_device(i)
if self._ctrl is not None:
print("Found device = " + i + ". Will use this device instead.")
break
if self._ctrl is None:
raise Exception("No compatible device found")

self.accel_x = self._channel(self._ctrl, "accel_x")
self.accel_y = self._channel(self._ctrl, "accel_y")
self.accel_z = self._channel(self._ctrl, "accel_z")
self.temp = self._tempchannel(self._ctrl, "temp")
self._rx_channel_names = ["accel_x", "accel_y", "accel_z"]
rx.__init__(self)
self.rx_buffer_size = 16 # Make default buffer smaller

@property
def sampling_frequency(self):
"""Device sampling frequency"""
return self._get_iio_dev_attr_str("sampling_frequency")

@sampling_frequency.setter
def sampling_frequency(self, value):
self._set_iio_dev_attr_str("sampling_frequency", str(Decimal(value).real))

@property
def sampling_frequency_available(self):
"""Device available sampling frequency"""
return self._get_iio_dev_attr_str("sampling_frequency_available")

@property
def waiting_for_supplier(self):
"""Device waiting for supplier"""
return self._get_iio_dev_attr_str("waiting_for_supplier")

def to_degrees(self, raw):
"""Convert raw to degrees Celsius"""
return (raw + self.temp.offset) * self.temp.scale / 1000.0

class _tempchannel(attribute):
"""adxl380 temperature channel"""

def __init__(self, ctrl, channel_name):
self.name = channel_name
self._ctrl = ctrl

@property
def offset(self):
"""adxl380 temperature offset value"""
return self._get_iio_attr(self.name, "offset", False)

@property
def raw(self):
"""adxl380 temperature raw value"""
return self._get_iio_attr(self.name, "raw", False)

@property
def scale(self):
"""adxl380 channel scale value"""
return self._get_iio_attr(self.name, "scale", False)

class _channel(attribute):
"""adxl380 acceleration channel"""

def __init__(self, ctrl, channel_name):
self.name = channel_name
self._ctrl = ctrl

@property
def calibbias(self):
"""adxl380 channel offset"""
return self._get_iio_attr(self.name, "calibbias", False)

@calibbias.setter
def calibbias(self, value):
self._set_iio_attr(self.name, "calibbias", False, value)

@property
def filter_high_pass_3db_frequency(self):
"""adxl380 highpass filter cutoff frequency"""
return self._get_iio_attr(
self.name, "filter_high_pass_3db_frequency", False
)

@filter_high_pass_3db_frequency.setter
def filter_high_pass_3db_frequency(self, value):
self._set_iio_attr(
self.name,
"filter_high_pass_3db_frequency",
False,
str(Decimal(value).real),
)

@property
def filter_high_pass_3db_frequency_available(self):
"""Provides all available highpass filter cutoff frequency settings for the adxl380 channels"""
return self._get_iio_attr(
self.name, "filter_high_pass_3db_frequency_available", False
)

@property
def filter_low_pass_3db_frequency(self):
"""adxl380 lowpass filter cutoff frequency"""
return self._get_iio_attr(self.name, "filter_low_pass_3db_frequency", False)

@filter_low_pass_3db_frequency.setter
def filter_low_pass_3db_frequency(self, value):
self._set_iio_attr(
self.name,
"filter_low_pass_3db_frequency",
False,
str(Decimal(value).real),
)

@property
def filter_low_pass_3db_frequency_available(self):
"""Provides all available lowpass filter cutoff frequency settings for the adxl380 channels"""
return self._get_iio_attr(
self.name, "filter_low_pass_3db_frequency_available", False
)

@property
def raw(self):
"""adxl380 channel raw value"""
return self._get_iio_attr(self.name, "raw", False)

@property
def scale(self):
"""adxl380 channel scale(gain)"""
return float(self._get_iio_attr_str(self.name, "scale", False))

@scale.setter
def scale(self, value):
self._set_iio_attr(
self.name, "scale", False, str(Decimal(value).real),
)

@property
def scale_available(self):
"""Provides all available scale settings for the adxl380 channels"""
return self._get_iio_attr(self.name, "scale_available", False)
7 changes: 7 additions & 0 deletions doc/source/devices/adi.adxl380.rst
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adxl380
==================

.. automodule:: adi.adxl380
:members:
:undoc-members:
:show-inheritance:
1 change: 1 addition & 0 deletions doc/source/devices/index.rst
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Expand Up @@ -96,6 +96,7 @@ Supported Devices
adi.adxl313
adi.adxl345
adi.adxl355
adi.adxl380
adi.adxrs290
adi.cn0511
adi.cn0532
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114 changes: 114 additions & 0 deletions examples/adxl380_example.py
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# Copyright (C) 2021 Analog Devices, Inc.
#
# SPDX short identifier: ADIBSD

import sys
import time

import adi

my_dev_name = sys.argv[1]
my_uri = sys.argv[2]

print("uri: " + str(my_uri))

# Set up adxl380
my_acc = adi.adxl380(uri=my_uri, device_name=my_dev_name)
# my_acc.rx_buffer_size = 16
my_acc.rx_enabled_channels = [0, 1, 2]

print("\nChecking temperature channel...")
print("Temperature raw: " + str(my_acc.temp.raw))
print("Calculated Temperature: " + str(my_acc.to_degrees(my_acc.temp.raw)))


print("\nInitial sample frequency:")
print("Sample frequency: " + str(my_acc.sampling_frequency))

print("Single calculated acceleration values:")
print("\nX acceleration: " + str(my_acc.accel_x.raw * my_acc.accel_x.scale) + " m/s^2")
print("Y acceleration: " + str(my_acc.accel_y.raw * my_acc.accel_y.scale) + " m/s^2")
print("Z acceleration: " + str(my_acc.accel_z.raw * my_acc.accel_z.scale) + " m/s^2")

print("\nSetting sample frequencies to 1000 sps...")
my_acc.sampling_frequency = "{:.6f}".format(16000)
time.sleep(0.25)

print("Verifying new sample rate: " + str(my_acc.sampling_frequency))
print("Setting back to 4000 sps...")
my_acc.sampling_frequency = "{:.6f}".format(4000.0)
time.sleep(0.25)

my_acc.rx_output_type = "raw"
print("\nData using buffered rx(), raw:")
print(my_acc.rx())

cutoffs = my_acc.accel_x.filter_high_pass_3db_frequency_available
print("\nAvailable highpass cutoff frequencies: " + str(cutoffs))

print(
"\nSetting highpass cutoff frequency to "
+ str(cutoffs[1])
+ " then taking a 2 second nap to settle..."
)
my_acc.accel_x.filter_high_pass_3db_frequency = "{:.6f}".format(cutoffs[1])
my_acc.accel_y.filter_high_pass_3db_frequency = "{:.6f}".format(cutoffs[1])
my_acc.accel_z.filter_high_pass_3db_frequency = "{:.6f}".format(cutoffs[1])

print(
"\nX highpass cutoff frequency: "
+ str(my_acc.accel_x.filter_high_pass_3db_frequency)
)
print(
"Y highpass cutoff frequency: " + str(my_acc.accel_y.filter_high_pass_3db_frequency)
)
print(
"Z highpass cutoff frequency: " + str(my_acc.accel_z.filter_high_pass_3db_frequency)
)

time.sleep(2.0)

print(
"\nAccelerations after highpass, should be close to zero if the adxl380 is sitting still...\n"
)
print("X acceleration: " + str(my_acc.accel_x.raw * my_acc.accel_x.scale) + " m/s^2")
print("Y acceleration: " + str(my_acc.accel_y.raw * my_acc.accel_y.scale) + " m/s^2")
print("Z acceleration: " + str(my_acc.accel_z.raw * my_acc.accel_z.scale) + " m/s^2")

print(
"\nSetting highpass cutoff frequency back to zero, then taking a 4 second nap to settle..."
)
my_acc.accel_x.filter_high_pass_3db_frequency = "{:.6f}".format(0.0)
my_acc.accel_y.filter_high_pass_3db_frequency = "{:.6f}".format(0.0)
my_acc.accel_z.filter_high_pass_3db_frequency = "{:.6f}".format(0.0)

time.sleep(4.0)

print("\nAccelerations after highpass settling...")

print("X acceleration: " + str(my_acc.accel_x.raw * my_acc.accel_x.scale) + " m/s^2")
print("Y acceleration: " + str(my_acc.accel_y.raw * my_acc.accel_y.scale) + " m/s^2")
print("Z acceleration: " + str(my_acc.accel_z.raw * my_acc.accel_z.scale) + " m/s^2")

print("\nSetting offset for each axis...\n")
print("X offset set to: " + str(my_acc.accel_x.raw >> 4))
print("Y offset set to: " + str(my_acc.accel_y.raw >> 4))
print("Z offset set to: " + str(my_acc.accel_z.raw >> 4))

my_acc.accel_x.calibbias = "{:.6f}".format(my_acc.accel_x.raw >> 4)
my_acc.accel_y.calibbias = "{:.6f}".format(my_acc.accel_y.raw >> 4)
my_acc.accel_z.calibbias = "{:.6f}".format(my_acc.accel_z.raw >> 4)

print(
"\nAccelerations after setting offset, should be close to zero if the adxl380 is sitting still...\n"
)
print("X acceleration: " + str(my_acc.accel_x.raw * my_acc.accel_x.scale) + " m/s^2")
print("Y acceleration: " + str(my_acc.accel_y.raw * my_acc.accel_y.scale) + " m/s^2")
print("Z acceleration: " + str(my_acc.accel_z.raw * my_acc.accel_z.scale) + " m/s^2")

print("\nSetting offset for each axis back to 0...")
my_acc.accel_x.calibbias = "{:.6f}".format(0.0)
my_acc.accel_y.calibbias = "{:.6f}".format(0.0)
my_acc.accel_z.calibbias = "{:.6f}".format(0.0)

del my_acc
2 changes: 2 additions & 0 deletions supported_parts.md
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Expand Up @@ -160,6 +160,8 @@
- ADXL314
- ADXL345
- ADXL355
- ADXL380
- ADXL382
- ADXL1002
- ADXRS290
- CN0511
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