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Tips

Connect the pressure, temperature and humidity sensors to the controller ESP12.OLED_V1

How to create a layout (without using a soldering iron) to measure the physical parameters of the environment. An article for programmers who do not like to design or for…

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03.07.2020
Tips

The story of the development of one device in four episodes. Episode 4. We connect the GGreg20 registrar to the ESP12.OLED Controller

In Episode 3, we talked about GGreg20 recorder of radioactive particles with access to the controller What do you need a controller for? Admittedly, developers of electronic equipment (and we…

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10.06.2020
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New publications

  • The most frequently ordered GGreg20_V3 options 2024
    The most frequently ordered GGreg20_V3 options 2024
    08.03.2025/
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  • Testing of energy consumption by Geiger counter GGreg20_V3
    Testing of energy consumption by Geiger counter GGreg20_V3
    26.02.2025/
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  • ESPHome firmware for ESP32 with GGreg20_V3 – solution to the problem with the pulse counter
    ESPHome firmware for ESP32 with GGreg20_V3 – solution to the problem with the pulse counter
    04.01.2025/
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Yaml

може сховати лістинг у акордеон?
####### ggreg20_esp8266_esphome.yaml #####
esphome:
  name: esphome_node1 # Controller Unique Name
  platform: ESP8266 # Platform type you have to select when creating new yaml-config in ESP Home
  board: nodemcuv2 # Controller type you have to select when creating new yaml-config in ESP Home

wifi:
  ssid: "YourWiFiSSID"
  password: "SSIDPassword"

  # Enable fallback hotspot (captive portal) in case wifi connection fails
  ap:
    ssid: "Esphome Node1 Fallback Hotspot"
    password: "Cpxg9hRIBU7M"

captive_portal:

# Enable logging
logger:

# Enable Home Assistant API
api:
  password: "APIpassword"

ota:
  password: "OTApassword"

# Just embedded test D3 (GPIO0) button on every ESP8266 Devboard
# You can press D3 button several times to simulate incoming GGreg pulses
binary_sensor:
  - platform: gpio
    name: "D3 Input Button"
    pin:
      number: 0
      inverted: True
      mode: INPUT_PULLUP

# Here we calc and include to the firmware a power and doze values of ionizing radiation as sensor outputs
sensor:
- platform: pulse_counter
  pin: D3
  unit_of_measurement: 'mkSv/Hour'
  name: 'Ionizing Radiation Power'
  count_mode: 
    rising_edge: DISABLE
    falling_edge: INCREMENT
  update_interval: 60s
  accuracy_decimals: 3
  id: my_doze_meter
  filters:
    - sliding_window_moving_average: # 5-minutes moving average (MA5) here
        window_size: 5
        send_every: 5      
    - multiply: 0.0054 # SBM20 tube conversion factor of pulses into mkSv/Hour 
- platform: integration
  name: "Total Ionizing Radiation Doze"
  unit_of_measurement: "mkSv"
  sensor: my_doze_meter # link entity id to the pulse_counter values above
  icon: "mdi:radioactive"
  accuracy_decimals: 5
  time_unit: min # integrate values every next minute
  filters:
    - multiply: 0.00009 # obtained doze (from mkSv/hour into mkSv/minute) conversion factor: 0.0054 / 60 minutes = 0.00009; so pulses * 0.00009 = doze every next minute, mkSv.
####### END of ggreg20_esp8266_esphome.yaml #####

 

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