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athom-presence-sensor.yaml
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athom-presence-sensor.yaml
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substitutions:
# Default name
name: "athom-presence-sensor"
# Default friendly name
friendly_name: "Athom Presence Sensor"
# Allows ESP device to be automatically linked to an 'Area' in Home Assistant. Typically used for areas such as 'Lounge Room', 'Kitchen' etc
room: ""
# Description as appears in ESPHome & top of webserver page
device_description: "athom mmwave radar human presence sensor"
# Project Name
project_name: "Athom Technology.Athom Presence Sensor"
# Projection version denotes the release version of the yaml file, allowing checking of deployed vs latest version
project_version: "v1.0.2"
# Define a domain for this device to use. i.e. iot.home.lan (so device will appear as athom-smart-plug-v2.iot.home.lan in DNS/DHCP logs)
dns_domain: ""
# Set timezone of the smart plug. Useful if the plug is in a location different to the HA server. Can be entered in unix Country/Area format (i.e. "Australia/Sydney")
timezone: ""
# Set the duration between the sntp service polling ntp.org servers for an update
sntp_update_interval: 6h
# Network time servers for your region, enter from lowest to highest priority. To use local servers update as per zones or countries at: https://www.ntppool.org/zone/@
sntp_server_1: "0.pool.ntp.org"
sntp_server_2: "1.pool.ntp.org"
sntp_server_3: "2.pool.ntp.org"
# Enables faster network connections, with last connected SSID being connected to and no full scan for SSID being undertaken
wifi_fast_connect: "false"
# Define logging level: NONE, ERROR, WARN, INFO, DEBUG (Default), VERBOSE, VERY_VERBOSE
log_level: "DEBUG"
# Enable or disable the use of IPv6 networking on the device
ipv6_enable: "false"
esphome:
name: "${name}"
friendly_name: "${friendly_name}"
comment: "${device_description}"
area: "${room}"
name_add_mac_suffix: true
min_version: 2024.6.0
project:
name: "${project_name}"
version: "${project_version}"
esp8266:
board: esp8285
restore_from_flash: true
preferences:
flash_write_interval: 1min
logger:
level: ${log_level}
baud_rate: 115200
api:
ota:
- platform: esphome
mdns:
disabled: false
web_server:
port: 80
network:
enable_ipv6: ${ipv6_enable}
wifi:
# This spawns an AP with the device name and mac address with no password.
ap: {}
# Allow rapid re-connection to previously connect WiFi SSID, skipping scan of all SSID
fast_connect: "${wifi_fast_connect}"
# Define dns domain / suffix to add to hostname
domain: "${dns_domain}"
captive_portal:
dashboard_import:
package_import_url: github://athom-tech/athom-configs/athom-presence-sensor.yaml
light:
- platform: status_led
name: "Status LED"
id: led
pin: GPIO16
disabled_by_default: true
entity_category: config
i2c:
sda: GPIO4
scl: GPIO5
scan: true
uart:
tx_pin: GPIO15
rx_pin: GPIO13
baud_rate: 115200
# debug:
# direction: BOTH
# dummy_receiver: true
# after:
# delimiter: "\n"
# sequence:
# - lambda: UARTDebug::log_string(direction, bytes);
binary_sensor:
- platform: status
name: "Status"
entity_category: diagnostic
- platform: gpio
pin:
number: GPIO0
mode: INPUT_PULLUP
inverted: true
name: "Button"
disabled_by_default: true
on_multi_click:
- timing:
- ON for at least 4s
then:
- button.press: factory_reset_device
- platform: gpio
pin:
number: GPIO14
mode:
input: true
pullup: true
name: "Pir Sensor"
id: pir
filters:
- delayed_on: 50ms
- delayed_off: 10s
device_class: motion
on_press:
if:
condition:
switch.is_on: presence_light
then:
- light.turn_on: led
- platform: gpio
pin:
number: GPIO12
mode:
input: true
pullup: true
name: "mmWave Sensor"
id: mmwave
filters:
- delayed_on: 50ms
device_class: motion
on_release:
then:
- light.turn_off: led
- platform: template
name: "Occupancy"
id: occupancy
device_class: occupancy
lambda: |-
if ( id(mmwave).state and id(pir).state) {
return true;
}
else if (id(mmwave).state == 0) {
return false;
}
else {
return id(occupancy).state;
}
sensor:
- platform: uptime
name: "Uptime Sensor"
id: uptime_sensor
entity_category: diagnostic
internal: true
- platform: wifi_signal
name: "WiFi Signal dB"
id: wifi_signal_db
update_interval: 60s
entity_category: "diagnostic"
- platform: copy
source_id: wifi_signal_db
name: "WiFi Signal Percent"
filters:
- lambda: return min(max(2 * (x + 100.0), 0.0), 100.0);
unit_of_measurement: "Signal %"
entity_category: "diagnostic"
device_class: ""
- platform: bh1750
name: "Light Sensor"
address: 0x23
update_interval: 5s
switch:
- platform: template
name: "mmWave Status"
id: "mmwave_sensor"
internal: true
entity_category: config
optimistic: true
restore_mode: DISABLED
turn_on_action:
- uart.write: "sensorStart\r\n"
turn_off_action:
- uart.write: "sensorStop\r\n"
- platform: template
name: Presence Light
id: presence_light
entity_category: config
optimistic: true
restore_mode: RESTORE_DEFAULT_ON
on_turn_on:
if:
condition:
binary_sensor.is_on: occupancy
then:
- light.turn_on: led
on_turn_off:
- light.turn_off: led
number:
- platform: template
name: Farthest Detection #Value range: 1.9 ~ 12m Default: 6
id: Farthest_Detection
entity_category: config
min_value: 1.9
max_value: 12
initial_value: 6
optimistic: true
step: 0.1
restore_value: true
unit_of_measurement: m
mode: slider
set_action:
- switch.turn_off: mmwave_sensor
- delay: 500ms
- uart.write: !lambda
std::string ranges = "setRange 1.8 " + str_sprintf("%.1f",id(Farthest_Detection).state) + "\r\n";
return std::vector<uint8_t>(ranges.begin(), ranges.end());
- delay: 500ms
- uart.write: "saveConfig\r\n"
- delay: 500ms
- switch.turn_on: mmwave_sensor
- platform: template
name: Maintain Sensitivity #Value range: 0 ~ 9 Default Maintain sensitivity: 7 Default Trigger sensitivity: 5
id: Maintain_Sensitivity
entity_category: config
min_value: 0
max_value: 9
initial_value: 7
optimistic: true
step: 1
restore_value: true
mode: slider
set_action:
- switch.turn_off: mmwave_sensor
- delay: 500ms
- uart.write: !lambda
std::string sensitivitys = "setSensitivity " + str_sprintf("%.0f",id(Maintain_Sensitivity).state) + " " + str_sprintf("%.0f",id(Trigger_Sensitivity).state) + "\r\n";
return std::vector<uint8_t>(sensitivitys.begin(), sensitivitys.end());
- delay: 500ms
- uart.write: "saveConfig\r\n"
- delay: 500ms
- switch.turn_on: mmwave_sensor
- platform: template
name: Trigger Sensitivity #Value range: 0 ~ 9 Default Maintain sensitivity: 7 Default Trigger sensitivity: 5
id: Trigger_Sensitivity
entity_category: config
min_value: 0
max_value: 9
initial_value: 5
optimistic: true
step: 1
restore_value: true
mode: slider
set_action:
- switch.turn_off: mmwave_sensor
- delay: 500ms
- uart.write: !lambda
std::string sensitivityss = "setSensitivity " + str_sprintf("%.0f",id(Maintain_Sensitivity).state) + " " + str_sprintf("%.0f",id(Trigger_Sensitivity).state) + "\r\n";
return std::vector<uint8_t>(sensitivityss.begin(), sensitivityss.end());
- delay: 500ms
- uart.write: "saveConfig\r\n"
- delay: 500ms
- switch.turn_on: mmwave_sensor
- platform: template
name: Detection Delay #Confirmation delay Value range: 0 ~ 100 default 0.050 seconds.
id: Detection_Delay
entity_category: config
min_value: 0.1
max_value: 60
initial_value: 0.1
optimistic: true
step: 0.1
restore_value: true
unit_of_measurement: seconds
mode: slider
set_action:
- switch.turn_off: mmwave_sensor
- delay: 500ms
- uart.write: !lambda |-
std::string detections = "setLatency " + str_sprintf("%.1f",id(Detection_Delay).state) + " " + str_sprintf("%.0f",id(Fading_Time).state) + "\r\n";
return std::vector<uint8_t>(detections.begin(),detections.end());
- delay: 500ms
- uart.write: "saveConfig\r\n"
- delay: 500ms
- switch.turn_on: mmwave_sensor
- platform: template
name: Fading Time #Fade-out delay Value range: 0.5 ~ 1500, default 15 seconds.
id: Fading_Time
entity_category: config
min_value: 1
max_value: 300
initial_value: 15
optimistic: true
step: 1
restore_value: true
unit_of_measurement: seconds
mode: auto
set_action:
- switch.turn_off: mmwave_sensor
- delay: 500ms
- uart.write: !lambda |-
std::string fadings = "setLatency " + str_sprintf("%.1f",id(Detection_Delay).state) + " " + str_sprintf("%.0f",id(Fading_Time).state) + "\r\n";
return std::vector<uint8_t>(fadings.begin(), fadings.end());
- delay: 500ms
- uart.write: "saveConfig\r\n"
- delay: 500ms
- switch.turn_on: mmwave_sensor
- platform: template
name: Blockade Time #Configure block time Value range: 1 ~ 255, default 1 seconds.
id: Blockade_Time
entity_category: config
min_value: 1
max_value: 255
initial_value: 1
optimistic: true
step: 1
restore_value: true
unit_of_measurement: seconds
mode: slider
set_action:
- switch.turn_off: mmwave_sensor
- delay: 500ms
- uart.write: !lambda
std::string blockades = "setInhibit " + str_sprintf("%.0f",x) + "\r\n";
return std::vector<uint8_t>(blockades.begin(), blockades.end());
- delay: 500ms
- uart.write: "saveConfig\r\n"
- delay: 500ms
- switch.turn_on: mmwave_sensor
button:
- platform: factory_reset
name: Restart with Factory Default Settings
id: Reset
entity_category: config
internal: true
- platform: template
name: "Reset device"
id: "factory_reset_device"
entity_category: config
on_press:
- switch.turn_off: mmwave_sensor
- delay: 500ms
- uart.write: "resetCfg\r\n"
- delay: 1s
- switch.turn_on: mmwave_sensor
- button.press: Reset
- platform: restart
name: Restart_esp
id: restart_esp
entity_category: config
internal: true
- platform: safe_mode
name: "Safe Mode"
internal: false
entity_category: config
- platform: template
name: "Restart_mmWave"
id: "restart_mmwave"
entity_category: config
internal: true
on_press:
- uart.write: "resetSystem\r\n"
- platform: template
name: Restart device
entity_category: config
on_press:
- button.press: restart_mmwave
- delay: 1s
- button.press: restart_esp
text_sensor:
- platform: wifi_info
ip_address:
name: "IP Address"
entity_category: diagnostic
ssid:
name: "Connected SSID"
entity_category: diagnostic
mac_address:
name: "Mac Address"
entity_category: diagnostic
# Creates a sensor showing when the device was last restarted
- platform: template
name: 'Last Restart'
id: device_last_restart
icon: mdi:clock
entity_category: diagnostic
# device_class: timestamp
# Creates a sensor of the uptime of the device, in formatted days, hours, minutes and seconds
- platform: template
name: "Uptime"
entity_category: diagnostic
lambda: |-
int seconds = (id(uptime_sensor).state);
int days = seconds / (24 * 3600);
seconds = seconds % (24 * 3600);
int hours = seconds / 3600;
seconds = seconds % 3600;
int minutes = seconds / 60;
seconds = seconds % 60;
if ( days > 3650 ) {
return { "Starting up" };
} else if ( days ) {
return { (String(days) +"d " + String(hours) +"h " + String(minutes) +"m "+ String(seconds) +"s").c_str() };
} else if ( hours ) {
return { (String(hours) +"h " + String(minutes) +"m "+ String(seconds) +"s").c_str() };
} else if ( minutes ) {
return { (String(minutes) +"m "+ String(seconds) +"s").c_str() };
} else {
return { (String(seconds) +"s").c_str() };
}
icon: mdi:clock-start
time:
- platform: sntp
id: sntp_time
# Define the timezone of the device
timezone: "${timezone}"
# Change sync interval from default 5min to 6 hours (or as set in substitutions)
update_interval: ${sntp_update_interval}
# Set specific sntp servers to use
servers:
- "${sntp_server_1}"
- "${sntp_server_2}"
- "${sntp_server_3}"
# Publish the time the device was last restarted
on_time_sync:
then:
# Update last restart time, but only once.
- if:
condition:
lambda: 'return id(device_last_restart).state == "";'
then:
- text_sensor.template.publish:
id: device_last_restart
state: !lambda 'return id(sntp_time).now().strftime("%a %d %b %Y - %I:%M:%S %p");'