370 lines
12 KiB
YAML
370 lines
12 KiB
YAML
# https://digiblur.com/2023/05/24/esphome-mmwave-presence-how-to-guide/
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substitutions:
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name: esp-mmwave-office-7776ec
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friendly_name: esp-mmwave-office
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update_time: 30s
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esphome:
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name: ${name}
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friendly_name: ${friendly_name}
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name_add_mac_suffix: false
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#project:
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#name: esphome.web
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#version: '1.0'
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on_boot: #LD1125H Initial Setting
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priority: -200
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then:
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- uart.write:
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id: LD1125H_UART_BUS
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data: !lambda |-
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std::string th1st = "mth1=" + str_sprintf("%.0f",id(LD1125H_mth1).state) +"\r\n";
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return std::vector<uint8_t>(th1st.begin(), th1st.end());
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- uart.write:
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id: LD1125H_UART_BUS
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data: !lambda |-
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std::string th2st = "mth2=" + str_sprintf("%.0f",id(LD1125H_mth2).state) +"\r\n";
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return std::vector<uint8_t>(th2st.begin(), th2st.end());
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- uart.write:
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id: LD1125H_UART_BUS
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data: !lambda |-
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std::string th3st = "mth3=" + str_sprintf("%.0f",id(LD1125H_mth3).state) +"\r\n";
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return std::vector<uint8_t>(th3st.begin(), th3st.end());
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- uart.write:
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id: LD1125H_UART_BUS
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data: !lambda |-
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std::string rmaxst = "rmax=" + str_sprintf("%.1f",id(LD1125H_rmax).state) +"\r\n";
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return std::vector<uint8_t>(rmaxst.begin(), rmaxst.end());
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#############################################
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# ESPHome Logging Enable
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#############################################
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# NOTE: Baudrate set to 0 as we are using the UART with PZEM
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logger:
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level: INFO #You Can Use "INFO" Level
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baud_rate: 0
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#############################################
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# Enable the Home Assistant API
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#############################################
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api:
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#encryption:
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# key: !secret esp-mainovenmonitor_api_key
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#############################################
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# Enable Over the Air Update Capability
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# Safe mode will detect boot loops
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#############################################
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ota:
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# safe_mode: true
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# password: !secret esp-mainovenmonitor_ota_pass
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#############################################
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# Use Wifi
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#############################################
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wifi:
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ssid: !secret wifi_ssid
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password: !secret wifi_password
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power_save_mode: LIGHT
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# Details for fallback hotspot (captive portal)
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# in case wifi connection fails
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ap:
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ssid: "MMwave Office Fallback Hotspot"
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password: !secret fallback_ap_password
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# manual_ip:
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# static_ip: 192.168.x.x
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# gateway: 192.168.X.x
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# subnet: 255.255.255.0
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# Allow provisioning Wi-Fi via serial
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#improv_serial:
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#############################################
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# Fallback captive portal
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#############################################
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# In combination with the `ap` this allows the user
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# to provision wifi credentials to the device via WiFi AP.
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captive_portal:
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#dashboard_import:
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# package_import_url: github://esphome/example-configs/esphome-web/esp32.yaml@main
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# import_full_config: true
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# Sets up Bluetooth LE (Only on ESP32) to allow the user
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# to provision wifi credentials to the device.
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##esp32_improv:
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## authorizer: none
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#############################################
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# Web Portal for display and monitoring
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#############################################
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#web_server:
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# port: 80
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# auth:
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# username: !secret web_server_username
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# password: !secret web_server_password
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i2c:
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sda: GPIO19
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scl: GPIO21
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scan: True
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#esp32:
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# board: esp32dev
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# framework:
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# type: arduino
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esp32:
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board: nodemcu-32s
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framework:
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type: esp-idf #Suggest Use ESP-IDF Framework, or Plug Out the UART Cable Might Cause ESP32 Hang.
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external_components:
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- source:
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type: git
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url: https://github.com/ssieb/custom_components #Thanks for @ssieb components.
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components: [ serial ]
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uart:
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id: LD1125H_UART_BUS
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rx_pin: GPIO16 #For ESP32, you can use any pin, Recommend Use UART_2, Don't use UART_0, It might Cause Boot Fail or System Hang
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tx_pin: GPIO17 #For ESP32, you can use any pin, Recommend Use UART_2, Don't use UART_0, It might Cause Boot Fail or System Hang
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# rx_pin: GPIO1 #For ESP32, you can use any pin, Recommend Use UART_2, Don't use UART_0, It might Cause Boot Fail or System Hang
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# tx_pin: GPIO0 #For ESP32, you can use any pin, Recommend Use UART_2, Don't use UART_0, It might Cause Boot Fail or System Hang
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baud_rate: 115200
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data_bits: 8
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stop_bits: 1
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parity: NONE
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# debug:
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# direction: BOTH
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# dummy_receiver: false
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# after:
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# delimiter: "\n"
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# sequence:
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# - lambda: UARTDebug::log_string(direction, bytes);
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globals:
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- id: LD1125H_Last_Time
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type: time_t
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restore_value: no
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initial_value: time(NULL)
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- id: LD1125H_Last_Mov_Time
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type: time_t
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restore_value: no
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initial_value: time(NULL)
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- id: LD1125H_Clearence_Status
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type: bool
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restore_value: no
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initial_value: "false"
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status_led:
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pin:
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number: GPIO2 #ESP32 OnBroad LED
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inverted: false
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#web_server: #Avoid Using Web Server To Prevent Hang
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# port: 80
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interval:
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- interval: 1s #Clearance Scan Time
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setup_priority: -200
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then:
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lambda: |-
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if ((time(NULL)-id(LD1125H_Last_Time))>id(LD1125H_Clear_Time).state) {
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if ((id(LD1125H_Clearence_Status) == false) || (id(LD1125H_Occupancy).state != "Clearance")) {
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id(LD1125H_Occupancy).publish_state("Clearance");
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id(LD1125H_Clearence_Status) = true;
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}
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if (id(LD1125H_MovOcc_Binary).state == true) {
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id(LD1125H_MovOcc_Binary).publish_state(false);
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}
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if (id(LD1125H_Mov_Binary).state == true) {
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id(LD1125H_Mov_Binary).publish_state(false);
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}
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}
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number:
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- platform: template
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name: ${upper_devicename} LD1125H mth1 #mth1 is 0~2.8m Sensitivity.
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id: LD1125H_mth1
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icon: "mdi:cogs"
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optimistic: true
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restore_value: true #If you don't want to store the setting at ESP, set it to false.
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initial_value: "60.0" #Default mth1 Setting
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min_value: 10.0
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max_value: 600.0
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step: 5.0
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set_action:
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then:
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- uart.write:
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id: LD1125H_UART_BUS
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data: !lambda |-
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std::string th1st = "mth1=" + str_sprintf("%.0f",x) +"\r\n";
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return std::vector<uint8_t>(th1st.begin(), th1st.end());
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- platform: template
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name: ${upper_devicename} LD1125H mth2 #mth2 is 2.8~8m Sensitivity.
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id: LD1125H_mth2
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icon: "mdi:cogs"
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optimistic: true
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restore_value: true #If you don't want to store the setting at ESP, set it to false.
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initial_value: "30" #Default mth2 Setting
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min_value: 5
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max_value: 300
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step: 5
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set_action:
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then:
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- uart.write:
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id: LD1125H_UART_BUS
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data: !lambda |-
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std::string th2st = "mth2=" + str_sprintf("%.0f",x) +"\r\n";
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return std::vector<uint8_t>(th2st.begin(), th2st.end());
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- platform: template
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name: ${upper_devicename} LD1125H mth3 #mth3 is above 8m Sensitivity.
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id: LD1125H_mth3
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icon: "mdi:cogs"
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optimistic: true
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restore_value: true #If you don't want to store the setting at ESP, set it to false.
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initial_value: "20" #Default mth3 Setting
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min_value: 5
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max_value: 200
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step: 5
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set_action:
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then:
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- uart.write:
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id: LD1125H_UART_BUS
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data: !lambda |-
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std::string th3st = "mth3=" + str_sprintf("%.0f",x) +"\r\n";
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return std::vector<uint8_t>(th3st.begin(), th3st.end());
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- platform: template
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name: ${upper_devicename} LD1125H rmax #rmax is max detection distance.
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id: LD1125H_rmax
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icon: "mdi:cogs"
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optimistic: true
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restore_value: true #If you don't want to store the setting at ESP, set it to false.
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initial_value: "8" #Default rmax Setting
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min_value: 0.4
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max_value: 12
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step: 0.1
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set_action:
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then:
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- uart.write:
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id: LD1125H_UART_BUS
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data: !lambda |-
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std::string rmaxst = "rmax=" + str_sprintf("%.1f",x) +"\r\n";
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return std::vector<uint8_t>(rmaxst.begin(), rmaxst.end());
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- platform: template
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name: ${upper_devicename} LD1125H Clearence Time
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id: LD1125H_Clear_Time
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icon: "mdi:cogs"
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optimistic: true
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restore_value: true #If you don't want to store the setting at ESP, set it to false.
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initial_value: "5" #LD1125H Mov/Occ > Clearence Time Here
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min_value: 0.5
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max_value: 20
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step: 0.5
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- platform: template
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name: ${upper_devicename} LD1125H Movement Time
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id: LD1125H_Mov_Time
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icon: "mdi:cogs"
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optimistic: true
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restore_value: true #If you don't want to store the setting at ESP, set it to false.
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initial_value: "1" #LD1125H Mov > Occ Time Here
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min_value: 0.5
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max_value: 10
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step: 0.5
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sensor:
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- platform: bme280_i2c
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temperature:
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name: ${upper_devicename} BME280 Temp
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accuracy_decimals: 1
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oversampling: 2x
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pressure:
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name: ${upper_devicename} BME280 Pressure
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oversampling: 2x
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humidity:
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name: ${upper_devicename} BME280 Humidity
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accuracy_decimals: 1
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oversampling: 2x
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address: 0x76
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update_interval: ${update_time}
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# - platform: aht10
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# temperature:
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# accuracy_decimals: 2
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# name: ${upper_devicename} AHT21 Temp
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# humidity:
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# accuracy_decimals: 2
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# name: ${upper_devicename} AHT21 Humidity
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# update_interval: ${update_time}
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# - platform: wifi_signal
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# name: ${upper_devicename} WiFi Signal
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# update_interval: 60s
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- platform: uptime
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name: ${upper_devicename} Uptime
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- platform: template
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name: ${upper_devicename} LD1125H Distance
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id: LD1125H_Distance
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icon: "mdi:signal-distance-variant"
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unit_of_measurement: "m"
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accuracy_decimals: 2
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filters: # Use Fliter To Debounce
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- sliding_window_moving_average:
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window_size: 8
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send_every: 2
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- heartbeat: 0.2s
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text_sensor:
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- platform: serial
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uart_id: LD1125H_UART_BUS
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name: ${upper_devicename} LD1125H UART Text
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id: LD1125H_UART_Text
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icon: "mdi:format-text"
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internal: True #If Don't Want to See UART Receive Data, Set To True
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on_value:
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lambda: |-
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if (id(LD1125H_UART_Text).state.substr(0,3) == "occ") {
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id(LD1125H_Distance).publish_state(atof(id(LD1125H_UART_Text).state.substr(9).c_str()));
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if ((time(NULL)-id(LD1125H_Last_Mov_Time))>id(LD1125H_Mov_Time).state) {
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id(LD1125H_Occupancy).publish_state("Occupancy");
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if (id(LD1125H_MovOcc_Binary).state == false) {
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id(LD1125H_MovOcc_Binary).publish_state(true);
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}
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if (id(LD1125H_Mov_Binary).state == true) {
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id(LD1125H_Mov_Binary).publish_state(false);
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}
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}
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if (id(LD1125H_MovOcc_Binary).state == false) {
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id(LD1125H_MovOcc_Binary).publish_state(true);
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}
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id(LD1125H_Last_Time) = time(NULL);
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if (id(LD1125H_Clearence_Status) == true) {
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id(LD1125H_Clearence_Status) = false;
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}
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}
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else if (id(LD1125H_UART_Text).state.substr(0,3) == "mov") {
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id(LD1125H_Distance).publish_state(atof(id(LD1125H_UART_Text).state.substr(9).c_str()));
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id(LD1125H_Occupancy).publish_state("Movement");
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if (id(LD1125H_MovOcc_Binary).state == false) {
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id(LD1125H_MovOcc_Binary).publish_state(true);
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}
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if (id(LD1125H_Mov_Binary).state == false) {
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id(LD1125H_Mov_Binary).publish_state(true);
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}
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id(LD1125H_Last_Mov_Time) = time(NULL);
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id(LD1125H_Last_Time) = time(NULL);
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if (id(LD1125H_Clearence_Status) == true) {
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id(LD1125H_Clearence_Status) = false;
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}
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}
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- platform: template
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name: ${upper_devicename} LD1125H Occupancy Status
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id: LD1125H_Occupancy
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icon: "mdi:motion-sensor"
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binary_sensor:
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- platform: status
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name: ${upper_devicename} Status
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- platform: template
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name: ${upper_devicename} LD1125H Occupancy or Movement
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id: LD1125H_MovOcc_Binary
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device_class: occupancy
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- platform: template
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name: ${upper_devicename} LD1125H Movement
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id: LD1125H_Mov_Binary
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device_class: motion |