The ADS1015 is a +/- 24V Analog Digital Converter implemented by Pimoroni as a Breakout Garden board, i.e., an I2C compatible breakout board. It can be used to measure an analog voltage between -24V DC to +24V DC, returning a value with 12 bit precision.
It has three channels (labeled A0, A1 and A2) that can read voltages from -24V to +24V at sampling rates up to 3.3KHz with a 12-bit resolution.
The thumbnail image to the right is roughly the size of the board, which measures 24 x 21mm. The price on the Pimoroni site (as of January 2020) is £12 (~NZ$24).
Features#
- 12-bit precision
- +/- 24V (DC) measurement range
- Three channels
- Programmable gain (please consult the ADS1015 TI datasheet for details; the default is set at ±2.048V)
- Up to 3.3KHz sampling rate
- I2C interface (address 0x48/0x49 (cut trace))
- 3.3V or 5V compatible
- Reverse polarity protection
- Compatible with all models of Raspberry Pi, and Arduino
- ads1015-python library on github
Installation#
You'll need Python and pip (or pip3 for Python 3) already installed.
If you're using Python 2, just run:
sudo pip install ads1015For Python 3, use:
sudo pip3 install ads1015
Example Usage#
The board has three input pins, labeled A0, A1 and A2. Plugging a signal into A0, here's an example of some code to repeatedly read the voltage on the pin until you type Ctrl-C:
#!/usr/bin/env python3 import time from ads1015 import ADS1015 print('''read-all.py - read the A0 input of the ADC. Press Ctrl+C to exit! ''') CHANNEL = 'in0/ref' ads1015 = ADS1015() ads1015.set_mode('single') ads1015.set_programmable_gain(2.048) ads1015.set_sample_rate(1600) reference = ads1015.get_reference_voltage() print("Reference voltage: {:6.3f}v \n".format(reference)) try: while True: value = ads1015.get_compensated_voltage(channel=CHANNEL, reference_voltage=reference) print("A0 value: {:6.3f}v".format(value)) time.sleep(0.5) except KeyboardInterrupt: pass
References#
- !!! ADS1015 +/-24V ADC breakout product page
- ADS101x Ultra-Small, Low-Power, I2C-Compatible, 3.3-kSPS, 12-Bit ADCs With Internal Reference, Oscillator, and Programmable Comparator datasheet from Texas Instruments