forked from M-Labs/thermostat
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8b0ad14311
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8b0ad14311 | |||
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136c7a0b52 | |||
5000cae1b1 | |||
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52aa3890c1 |
@ -45,7 +45,7 @@ There are several options for flashing Thermostat. DFU requires only a micro-USB
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### dfu-util on Linux
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### dfu-util on Linux
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* Install the DFU USB tool (dfu-util).
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* Install the DFU USB tool (dfu-util).
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* Convert firmware from ELF to BIN: `arm-none-eabi-objcopy -O binary thermostat thermostat.bin` (you can skip this step if using the BIN from Hydra)
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* Convert firmware from ELF to BIN: `llvm-objcopy -O binary target/thumbv7em-none-eabihf/release/thermostat thermostat.bin` (you can skip this step if using the BIN from Hydra)
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* Connect to the Micro USB connector to Thermostat below the RJ45.
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* Connect to the Micro USB connector to Thermostat below the RJ45.
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* Add jumper to Thermostat v2.0 across 2-pin jumper adjacent to JTAG connector.
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* Add jumper to Thermostat v2.0 across 2-pin jumper adjacent to JTAG connector.
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* Cycle board power to put it in DFU update mode
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* Cycle board power to put it in DFU update mode
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8
flake.lock
generated
8
flake.lock
generated
@ -2,16 +2,16 @@
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"nodes": {
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"nodes": {
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"nixpkgs": {
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"nixpkgs": {
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"locked": {
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"locked": {
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"lastModified": 1691421349,
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"lastModified": 1722791413,
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"narHash": "sha256-RRJyX0CUrs4uW4gMhd/X4rcDG8PTgaaCQM5rXEJOx6g=",
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"narHash": "sha256-rCTrlCWvHzMCNcKxPE3Z/mMK2gDZ+BvvpEVyRM4tKmU=",
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"owner": "NixOS",
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"owner": "NixOS",
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"repo": "nixpkgs",
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"repo": "nixpkgs",
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"rev": "011567f35433879aae5024fc6ec53f2a0568a6c4",
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"rev": "8b5b6723aca5a51edf075936439d9cd3947b7b2c",
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"type": "github"
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"type": "github"
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},
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},
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"original": {
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"original": {
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"owner": "NixOS",
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"owner": "NixOS",
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"ref": "nixos-23.05",
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"ref": "nixos-24.05",
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"repo": "nixpkgs",
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"repo": "nixpkgs",
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"type": "github"
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"type": "github"
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}
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}
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@ -1,7 +1,7 @@
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{
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{
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description = "Firmware for the Sinara 8451 Thermostat";
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description = "Firmware for the Sinara 8451 Thermostat";
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inputs.nixpkgs.url = github:NixOS/nixpkgs/nixos-23.05;
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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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url = "github:oxalica/rust-overlay";
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inputs.nixpkgs.follows = "nixpkgs";
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inputs.nixpkgs.follows = "nixpkgs";
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@ -47,6 +47,7 @@
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'';
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'';
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dontFixup = true;
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dontFixup = true;
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auditable = false;
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};
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};
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in {
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in {
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packages.x86_64-linux = {
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packages.x86_64-linux = {
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@ -61,7 +62,8 @@
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devShells.x86_64-linux.default = pkgs.mkShellNoCC {
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devShells.x86_64-linux.default = pkgs.mkShellNoCC {
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name = "thermostat-dev-shell";
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name = "thermostat-dev-shell";
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packages = with pkgs; [
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packages = with pkgs; [
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rust openocd dfu-util
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rust llvm
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openocd dfu-util
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] ++ (with python3Packages; [
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] ++ (with python3Packages; [
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numpy matplotlib
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numpy matplotlib
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]);
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]);
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@ -1,4 +1,4 @@
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use core::{cmp::max_by, marker::PhantomData};
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use core::marker::PhantomData;
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use heapless::{consts::U2, Vec};
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use heapless::{consts::U2, Vec};
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use num_traits::Zero;
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use num_traits::Zero;
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use serde::{Serialize, Serializer};
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use serde::{Serialize, Serializer};
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@ -561,9 +561,10 @@ impl Channels {
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}
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}
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pub fn current_abs_max_tec_i(&mut self) -> ElectricCurrent {
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pub fn current_abs_max_tec_i(&mut self) -> ElectricCurrent {
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max_by(self.get_tec_i(0).abs(),
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(0..CHANNELS)
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self.get_tec_i(1).abs(),
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.map(|channel| self.get_tec_i(channel).abs())
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|a, b| a.partial_cmp(b).unwrap_or(core::cmp::Ordering::Equal))
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.max_by(|a, b| a.partial_cmp(b).unwrap_or(core::cmp::Ordering::Equal))
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.unwrap()
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}
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}
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}
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}
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@ -34,11 +34,13 @@ use uom::{
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ElectricPotential,
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ElectricPotential,
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ElectricalResistance,
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ElectricalResistance,
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ThermodynamicTemperature,
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ThermodynamicTemperature,
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TemperatureInterval,
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},
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},
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electric_current::ampere,
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electric_current::ampere,
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electric_potential::volt,
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electric_potential::volt,
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electrical_resistance::ohm,
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electrical_resistance::ohm,
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thermodynamic_temperature::{degree_celsius, kelvin},
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thermodynamic_temperature::degree_celsius,
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temperature_interval::kelvin,
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},
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},
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};
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};
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@ -243,7 +245,7 @@ impl Handler {
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use super::command_parser::ShParameter::*;
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use super::command_parser::ShParameter::*;
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match parameter {
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match parameter {
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T0 => sh.t0 = ThermodynamicTemperature::new::<degree_celsius>(value),
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T0 => sh.t0 = ThermodynamicTemperature::new::<degree_celsius>(value),
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B => sh.b = ThermodynamicTemperature::new::<kelvin>(value),
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B => sh.b = TemperatureInterval::new::<kelvin>(value),
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R0 => sh.r0 = ElectricalResistance::new::<ohm>(value),
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R0 => sh.r0 = ElectricalResistance::new::<ohm>(value),
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}
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}
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send_line(socket, b"{}");
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send_line(socket, b"{}");
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@ -345,7 +347,7 @@ impl Handler {
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fn set_fan(socket: &mut TcpSocket, fan_pwm: u32, fan_ctrl: &mut FanCtrl) -> Result<Handler, Error> {
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fn set_fan(socket: &mut TcpSocket, fan_pwm: u32, fan_ctrl: &mut FanCtrl) -> Result<Handler, Error> {
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if !fan_ctrl.fan_available() {
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if !fan_ctrl.fan_available() {
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send_line(socket, b"{ \"warning\": \"this thermostat doesn't have fan!\" }");
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send_line(socket, b"{ \"warning\": \"this thermostat doesn't have a fan!\" }");
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return Ok(Handler::Handled);
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return Ok(Handler::Handled);
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}
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}
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fan_ctrl.set_auto_mode(false);
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fan_ctrl.set_auto_mode(false);
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@ -374,7 +376,7 @@ impl Handler {
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fn fan_auto(socket: &mut TcpSocket, fan_ctrl: &mut FanCtrl) -> Result<Handler, Error> {
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fn fan_auto(socket: &mut TcpSocket, fan_ctrl: &mut FanCtrl) -> Result<Handler, Error> {
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if !fan_ctrl.fan_available() {
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if !fan_ctrl.fan_available() {
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send_line(socket, b"{ \"warning\": \"this thermostat doesn't have fan!\" }");
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send_line(socket, b"{ \"warning\": \"this thermostat doesn't have a fan!\" }");
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return Ok(Handler::Handled);
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return Ok(Handler::Handled);
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}
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}
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fan_ctrl.set_auto_mode(true);
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fan_ctrl.set_auto_mode(true);
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@ -3,10 +3,12 @@ use uom::si::{
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f64::{
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f64::{
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ElectricalResistance,
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ElectricalResistance,
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ThermodynamicTemperature,
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ThermodynamicTemperature,
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TemperatureInterval,
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},
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},
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electrical_resistance::ohm,
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electrical_resistance::ohm,
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ratio::ratio,
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ratio::ratio,
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thermodynamic_temperature::{degree_celsius, kelvin},
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thermodynamic_temperature::{degree_celsius, kelvin},
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temperature_interval::kelvin as kelvin_interval,
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};
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};
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use serde::{Deserialize, Serialize};
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use serde::{Deserialize, Serialize};
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@ -18,14 +20,18 @@ pub struct Parameters {
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/// Resistance at base temperature
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/// Resistance at base temperature
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pub r0: ElectricalResistance,
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pub r0: ElectricalResistance,
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/// Beta
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/// Beta
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pub b: ThermodynamicTemperature,
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pub b: TemperatureInterval,
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}
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}
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impl Parameters {
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impl Parameters {
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/// Perform the resistance to temperature conversion.
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/// Perform the resistance to temperature conversion.
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pub fn get_temperature(&self, r: ElectricalResistance) -> ThermodynamicTemperature {
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pub fn get_temperature(&self, r: ElectricalResistance) -> ThermodynamicTemperature {
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let inv_temp = 1.0 / self.t0.get::<kelvin>() + (r / self.r0).get::<ratio>().ln() / self.b.get::<kelvin>();
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let t0 = TemperatureInterval::new::<kelvin_interval>(self.t0.get::<kelvin>());
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ThermodynamicTemperature::new::<kelvin>(1.0 / inv_temp)
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let inv_temp = 1.0 / t0 + (r / self.r0).get::<ratio>().ln() / self.b;
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let temp = 1.0 / inv_temp;
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ThermodynamicTemperature::new::<kelvin>(temp.get::<kelvin_interval>())
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}
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}
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}
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}
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@ -34,7 +40,7 @@ impl Default for Parameters {
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Parameters {
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Parameters {
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t0: ThermodynamicTemperature::new::<degree_celsius>(25.0),
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t0: ThermodynamicTemperature::new::<degree_celsius>(25.0),
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r0: ElectricalResistance::new::<ohm>(10_000.0),
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r0: ElectricalResistance::new::<ohm>(10_000.0),
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b: ThermodynamicTemperature::new::<kelvin>(3800.0),
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b: TemperatureInterval::new::<kelvin_interval>(3800.0),
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}
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}
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}
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}
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}
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}
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