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atse | 4beeec6021 | |
atse | 6b8a5f5bb8 | |
atse | 8dd58b364d | |
atse | ae0d593139 | |
atse | adc25c9b2a | |
atse | 9af86be674 | |
atse | eabc7f6a12 | |
atse | 52e35d2a98 | |
atse | f1da910c11 |
13
README.md
13
README.md
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@ -189,31 +189,30 @@ Testing heat flow direction with a low set current is recommended before install
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### Limits
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Each MAX1968 TEC driver has analog/PWM inputs for setting
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Each channel has maximum value settings, for setting
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output limits.
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Use the `output` command to see current settings and maximum values.
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Use the `output` command to see them.
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| Limit | Unit | Description |
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| --- | :---: | --- |
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| `max_v` | Volts | Maximum voltage |
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| `max_i_pos` | Amperes | Maximum positive current |
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| `max_i_neg` | Amperes | Maximum negative current |
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| `i_set` | Amperes | (Not a limit; Open-loop mode) |
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Example: set the maximum voltage of channel 0 to 1.5 V.
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```
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output 0 max_v 1.5
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```
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Example: set the maximum negative current of channel 0 to -3 A.
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Example: set the maximum negative current of channel 0 to -2 A.
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```
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output 0 max_i_neg 3
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output 0 max_i_neg 2
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```
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Example: set the maximum positive current of channel 1 to 3 A.
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Example: set the maximum positive current of channel 1 to 2 A.
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```
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output 0 max_i_pos 3
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output 1 max_i_pos 2
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```
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### Open-loop mode
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@ -13,7 +13,7 @@ When tuning Thermostat PID parameters, it is helpful to view the temperature, PI
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To use the Python real-time plotting utility, run
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```shell
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python pytec/plot.py
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python pythermostat/plot.py
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```
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![default view](./assets/default%20view.png)
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@ -44,12 +44,12 @@ Below are some general guidelines for manually tuning PID loops. Note that every
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## Auto Tuning
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A PID auto tuning utility is provided in the Pytec library. The auto tuning utility drives the the load to a controlled oscillation, observes the ultimate gain and oscillation period and calculates a set of PID parameters.
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A PID auto tuning utility is provided in the PyThermostat library. The auto tuning utility drives the the load to a controlled oscillation, observes the ultimate gain and oscillation period and calculates a set of PID parameters.
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To run the auto tuning utility, run
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```shell
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python pytec/autotune.py
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python pythermostat/autotune.py
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```
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After some time, the auto tuning utility will output the auto tuning results, below is a sample output
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54
flake.nix
54
flake.nix
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@ -2,14 +2,22 @@
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description = "Firmware for the Sinara 8451 Thermostat";
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inputs.nixpkgs.url = "github:NixOS/nixpkgs/nixos-24.05";
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inputs.rust-overlay = {
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inputs.rust-overlay = {
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url = "github:oxalica/rust-overlay";
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inputs.nixpkgs.follows = "nixpkgs";
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};
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outputs = { self, nixpkgs, rust-overlay }:
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outputs =
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{
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self,
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nixpkgs,
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rust-overlay,
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}:
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let
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pkgs = import nixpkgs { system = "x86_64-linux"; overlays = [ (import rust-overlay) ]; };
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pkgs = import nixpkgs {
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system = "x86_64-linux";
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overlays = [ (import rust-overlay) ];
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};
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rust = pkgs.rust-bin.stable."1.66.0".default.override {
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extensions = [ "rust-src" ];
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@ -25,7 +33,7 @@
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version = "0.0.0";
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src = self;
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cargoLock = {
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cargoLock = {
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lockFile = ./Cargo.lock;
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outputHashes = {
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"stm32-eth-0.2.0" = "sha256-48RpZgagUqgVeKm7GXdk3Oo0v19ScF9Uby0nTFlve2o=";
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@ -49,9 +57,22 @@
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dontFixup = true;
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auditable = false;
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};
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in {
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pythermostat = pkgs.python3Packages.buildPythonPackage {
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pname = "pythermostat";
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version = "0.0.0";
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src = "${self}/pythermostat";
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propagatedBuildInputs =
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with pkgs.python3Packages; [
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numpy
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matplotlib
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];
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};
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in
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{
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packages.x86_64-linux = {
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inherit thermostat;
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inherit thermostat pythermostat;
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default = thermostat;
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};
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@ -61,12 +82,21 @@
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devShells.x86_64-linux.default = pkgs.mkShellNoCC {
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name = "thermostat-dev-shell";
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packages = with pkgs; [
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rust llvm
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openocd dfu-util rlwrap
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] ++ (with python3Packages; [
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numpy matplotlib
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packages =
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with pkgs;
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[
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rust
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llvm
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openocd
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dfu-util
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rlwrap
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]
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++ (with python3Packages; [
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numpy
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matplotlib
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]);
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};
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formatter.x86_64-linux = nixpkgs.legacyPackages.x86_64-linux.nixfmt-rfc-style;
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};
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}
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}
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@ -3,7 +3,7 @@ import logging
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from collections import deque, namedtuple
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from enum import Enum
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from pytec.client import Client
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from pythermostat.client import Client
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# Based on hirshmann pid-autotune libiary
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# See https://github.com/hirschmann/pid-autotune
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@ -1,4 +1,5 @@
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from pytec.client import Client
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import time
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from pythermostat.client import Client
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tec = Client() #(host="localhost", port=6667)
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tec.set_param("b-p", 1, "t0", 20)
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@ -7,5 +8,6 @@ print(tec.get_pid())
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print(tec.get_output())
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print(tec.get_postfilter())
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print(tec.get_b_parameter())
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for data in tec.report_mode():
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print(data)
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while True:
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print(tec.get_report())
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time.sleep(0.05)
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@ -1,8 +1,9 @@
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import time
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import numpy as np
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import matplotlib.pyplot as plt
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import matplotlib.animation as animation
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from threading import Thread, Lock
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from pytec.client import Client
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from pythermostat.client import Client
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TIME_WINDOW = 300.0
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@ -47,7 +48,8 @@ quit = False
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def recv_data(tec):
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global last_packet_time
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for data in tec.report_mode():
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while True:
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data = tec.get_report()
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ch0 = data[0]
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series_lock.acquire()
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try:
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@ -61,6 +63,7 @@ def recv_data(tec):
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if quit:
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break
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time.sleep(0.05)
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thread = Thread(target=recv_data, args=(tec,))
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thread.start()
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@ -1,7 +1,7 @@
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import socket
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import json
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import logging
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import time
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class CommandError(Exception):
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pass
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@ -12,6 +12,10 @@ class Client:
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self._lines = [""]
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self._check_zero_limits()
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def disconnect(self):
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self._socket.shutdown(socket.SHUT_RDWR)
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self._socket.close()
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def _check_zero_limits(self):
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output_report = self.get_output()
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for output_channel in output_report:
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@ -110,18 +114,18 @@ class Client:
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"""
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return self._get_conf("postfilter")
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def report_mode(self):
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"""Start reporting measurement values
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def get_report(self):
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"""Obtain one-time report on measurement values
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Example of yielded data::
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{'channel': 0,
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'time': 2302524,
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'interval': 0.12
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'adc': 0.6199188965423515,
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'sens': 6138.519310282602,
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'temperature': 36.87032392655527,
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'pid_engaged': True,
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'i_set': 2.0635816680889123,
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'vref': 1.494,
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'dac_value': 2.527790834044456,
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'dac_feedback': 2.523,
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'i_tec': 2.331,
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@ -129,16 +133,19 @@ class Client:
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'tec_u_meas': 2.5340000000000003,
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'pid_output': 2.067581958092247}
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"""
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while True:
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self._socket.sendall("report\n".encode('utf-8'))
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line = self._read_line()
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if not line:
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break
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try:
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yield json.loads(line)
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except json.decoder.JSONDecodeError:
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pass
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time.sleep(0.05)
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return self._get_conf("report")
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def get_ipv4(self):
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"""Get the IPv4 settings of the Thermostat"""
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return self._command("ipv4")
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def get_fan(self):
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"""Get Thermostat current fan settings"""
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return self._command("fan")
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def get_hwrev(self):
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"""Get Thermostat hardware revision"""
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return self._command("hwrev")
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def set_param(self, topic, channel, field="", value=""):
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"""Set configuration parameters
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@ -163,10 +170,38 @@ class Client:
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self.set_param("pid", channel, "target", value=target)
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self.set_param("output", channel, "pid")
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def save_config(self):
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def save_config(self, channel=""):
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"""Save current configuration to EEPROM"""
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self._command("save")
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self._command("save", channel)
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if channel != "":
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self._read_line() # read the extra {}
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def load_config(self):
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def load_config(self, channel=""):
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"""Load current configuration from EEPROM"""
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self._command("load")
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self._command("load", channel)
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if channel != "":
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self._read_line() # read the extra {}
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def reset(self):
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"""Reset the device"""
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self._socket.sendall("reset".encode("utf-8"))
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self.disconnect() # resetting ends the TCP session, disconnect anyway
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def enter_dfu_mode(self):
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"""Reset device and enters USB device firmware update (DFU) mode"""
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self._socket.sendall("dfu".encode("utf-8"))
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self.disconnect() # resetting ends the TCP session, disconnect anyway
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def set_ipv4(self, address, netmask, gateway=""):
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"""Configure IPv4 address, netmask length, and optional default gateway"""
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self._command("ipv4", f"{address}/{netmask}", gateway)
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def set_fan(self, power=None):
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"""Set fan power with values from 1 to 100. If omitted, set according to fcurve"""
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if power is None:
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power = "auto"
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self._command("fan", power)
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def set_fcurve(self, a=1.0, b=0.0, c=0.0):
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"""Set fan controller curve coefficients"""
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self._command("fcurve", a, b, c)
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@ -1,7 +1,7 @@
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from setuptools import setup, find_packages
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setup(
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name="pytec",
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name="pythermostat",
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version="0.0",
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author="M-Labs",
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url="https://git.m-labs.hk/M-Labs/thermostat",
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@ -0,0 +1,81 @@
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import argparse
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from contextlib import contextmanager
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from pythermostat.client import Client
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CHANNELS = 2
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def get_argparser():
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parser = argparse.ArgumentParser(description="Thermostat hardware testing script")
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parser.add_argument("host", metavar="HOST", default="192.168.1.26", nargs="?")
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parser.add_argument("port", metavar="PORT", default=23, nargs="?")
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parser.add_argument(
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"-r",
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"--testing_resistance",
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default=10_000,
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help="Testing resistance value through SENS pin in Ohms",
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)
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parser.add_argument(
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"-d",
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"--deviation",
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default=1,
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help="Allowed deviation of resistance in percentage",
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)
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return parser
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def main():
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args = get_argparser().parse_args()
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min_allowed_resistance = args.testing_resistance * (1 - args.deviation / 100)
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max_allowed_resistance = args.testing_resistance * (1 + args.deviation / 100)
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print(min_allowed_resistance, max_allowed_resistance)
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thermostat = Client(args.host, args.port)
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for channel in range(CHANNELS):
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print(f"Channel {channel} is active")
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print("Checking resistance through SENS input ....", end=" ")
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sens_resistance = thermostat.get_report()[channel]["sens"]
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if sens_resistance is not None:
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print(sens_resistance, "Ω")
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if min_allowed_resistance <= sens_resistance <= max_allowed_resistance:
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print("PASSED")
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else:
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print("FAILED")
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else:
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print("Floating SENS input! Is the channel connected?")
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with preserve_thermostat_output_settings(thermostat, channel):
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test_output_settings = {
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"max_i_pos": 2,
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"max_i_neg": 2,
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"max_v": 4,
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"i_set": 0.1,
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"polarity": "normal",
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}
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for field, value in test_output_settings.items():
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thermostat.set_param("output", channel, field, value)
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input(f"Check if channel {channel} current = 0.1 A, and press ENTER...")
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input(f"Channel {channel} testing done, press ENTER to continue.")
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print()
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print("Testing complete.")
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@contextmanager
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def preserve_thermostat_output_settings(client, channel):
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original_output_settings = client.get_output()[channel]
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yield original_output_settings
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for setting in "max_i_pos", "max_i_neg", "max_v", "i_set", "polarity":
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client.set_param("output", channel, setting, original_output_settings[setting])
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if __name__ == "__main__":
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main()
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