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276 lines
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276 lines
11 KiB
ReStructuredText
Using With Sonoff Basic
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=======================
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.. seo::
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:description: Instructions for putting Sonoff basic devices into flash mode and installing ESPHome on them.
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:image: sonoff_basic.jpg
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ESPHome can be used with Sonoff Basic. These devices are basically just
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an ESP8266 chip with a relay to control the connection, a small button on the
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front and a green LED light.
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.. figure:: images/sonoff_basic-full.jpg
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:align: center
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:width: 75.0%
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Sonoff Basic
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This guide will not guide you through setting up your Sonoff Basic step-by-step. It just provide
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a sample configuration. For detailed instructions, see :doc:`sonoff_s20`, as those devices are
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pretty similar.
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.. note::
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If you've previously installed Sonoff-Tasmota or ESPurna on your Sonoff Basic, you're in luck 😀
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ESPHome can generate a firmware binary which you can then upload via the
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web interface.
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Sample configuration
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--------------------
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The Sonoff Basic is based on the ``ESP8266`` platform and is a subtype of the ``esp01_1m`` board.
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With this information, you can also step through the ESPHome wizard (``esphome sonoff_basic.yaml wizard``)
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if you don't want to use the sample configuration file from below.
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Below you will find a table of all usable GPIO pins of the Sonoff Basic and a configuration file that
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exposes all of the basic functions.
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================================================== ==================================================
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``GPIO0`` Button (inverted)
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-------------------------------------------------- --------------------------------------------------
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``GPIO1`` ``TX`` pin (C1 Pin 2)
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-------------------------------------------------- --------------------------------------------------
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``GPIO3`` ``RX`` pin (C1 Pin 3)
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-------------------------------------------------- --------------------------------------------------
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``GPIO12`` Relay
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-------------------------------------------------- --------------------------------------------------
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``GPIO13`` Green LED (inverted)
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-------------------------------------------------- --------------------------------------------------
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``GPIO14`` Optional Sensor (C1 Pin 5)
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================================================== ==================================================
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.. code-block:: yaml
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esphome:
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name: <NAME_OF_NODE>
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platform: ESP8266
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board: esp8285
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wifi:
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ssid: <YOUR_SSID>
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password: <YOUR_PASSWORD>
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api:
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logger:
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ota:
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binary_sensor:
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- platform: gpio
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pin:
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number: GPIO0
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mode:
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input: true
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pullup: true
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inverted: true
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name: "Sonoff Basic Button"
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on_press:
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- switch.toggle: relay
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switch:
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- platform: gpio
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name: "Sonoff Basic Relay"
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pin: GPIO12
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id: relay
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status_led:
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pin:
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number: GPIO13
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inverted: yes
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Now run ``esphome sonoff_basic.yaml compile`` to validate the configuration and
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pre-compile the firmware.
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.. note::
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After this step, you will be able to find the compiled binary under
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``<NAME_OF_NODE>/.pioenvs/<NAME_OF_NODE>/firmware.bin``. If you're having trouble with
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uploading, you can also try uploading this file directly with other tools.
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Or run the upload command if your device is connected to the serial interface:
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.. code-block:: bash
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esphome sonoff_basic.yaml run
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More detailed breakdown
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-----------------------
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1. Programming
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**************
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Ensure you have soldered on the additional header pins to the PCB and connect your USB FTDI programmer.
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See https://randomnerdtutorials.com/how-to-flash-a-custom-firmware-to-sonoff/ for more details on the pinout and FTDI.
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1.1. Put Sonoff into programming mode.
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**************************************
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* Press and hold the toggle pin (long black pin next to LED and custom soldered pins).
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* Supply USB power to Sonoff via FTDI (e.g. plug in USB to the FTDI, or use a power switch as explained in link above).
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* Keep holding the toggle pin for approx 3-5 seconds now you should be ready to program.
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If you get a message unable to communicate when trying flash, check your TX/RX pin or retry entering boot mode again.
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Quick notes:
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* 3.3V setting on FTDI, 5V will cause damage.
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* Ensure the connections on the PCB starts at the closed to the toggle pin, it uses 4 pins, but 5 pins are soldered on.
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* TX and RX should be swapped - RX on Sonoff goes to TX on FTDI.
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1.2. Upload the firmware
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************************
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Run this command from the same directory where your <my-awesome>.yaml file is located
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.. code-block:: bash
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esphome <my-awesome>.yaml run
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Or if you're using the dashboard, just click the "UPLOAD" button.
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You should get an output starting like this
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.. code-block:: text
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INFO Reading configuration...
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INFO Detected timezone 'SAST' with UTC offset 2
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INFO Generating C++ source...
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INFO Compiling app...
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INFO Running: platformio run -d fishpond
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********************************************************************************************************
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Obsolete PIO Core v3.6.3 is used (previous was 3.6.4b1)
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Please remove multiple PIO Cores from a system:
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https://docs.platformio.org/page/faq.html#multiple-pio-cores-in-a-system
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...
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lots of compile stuff
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...
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Memory Usage -> http://bit.ly/pio-memory-usage
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DATA: [====== ] 55.6% (used 45512 bytes from 81920 bytes)
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PROGRAM: [==== ] 38.1% (used 390576 bytes from 1023984 bytes)
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===================================== [SUCCESS] Took 4.70 seconds =====================================
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INFO Successfully compiled program.
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Found multiple options, please choose one:
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[1] /dev/ttyUSB0 (FT232R USB UART)
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[2] Over The Air (fishpond.device)
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(number): 1
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...
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esptool.py v2.6
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Serial port /dev/ttyUSB0
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Connecting....
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Chip is ESP8266EX
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Features: WiFi
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MAC: xx:xx:xx:xx:xx:xx
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Uploading stub...
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Running stub...
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Stub running...
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Configuring flash size...
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Auto-detected Flash size: 1MB
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Compressed 394720 bytes to 267991...
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Wrote 394720 bytes (267991 compressed) at 0x00000000 in 23.8 seconds (effective 132.7 kbit/s)...
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Hash of data verified.
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Leaving...
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Hard resetting via RTS pin...
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INFO Successfully uploaded program.
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INFO Starting log output from /dev/ttyUSB0 with baud rate 115200
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1.3. And then nothing will happen
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*********************************
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Once you have flashed the device, nothing will happen. You need to power cycle the device.
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You will notice the LED will start to flash and then becomes solid once connected to the WiFi network.
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You can follow the logs produced by the running module by running the command
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.. code-block:: bash
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esphome <my-awesome>.yaml logs
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Your output will possibly look like this
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.. code-block:: text
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INFO Reading configuration...
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INFO Detected timezone 'SAST' with UTC offset 2
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INFO Starting log output from fishpond.device using ESPHome API
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INFO Connecting to fishpond.device:6053 (192.168.13.15)
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INFO Successfully connected to fishpond.device
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[11:13:27][D][time.homeassistant:029]: Synchronized time: Wed Jan 16 11:13:27 2019
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[11:13:27][I][application:097]: You're running ESPHome v1.10.1 compiled on Jan 16 2019, 08:12:59
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[11:13:27][C][status_led:023]: Status LED:
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[11:13:27][C][status_led:024]: Pin: GPIO13 (Mode: OUTPUT)
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[11:13:27][C][wifi:341]: WiFi:
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[11:13:27][C][wifi:240]: SSID: 'some-ssid'
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[11:13:27][C][wifi:241]: IP Address: 192.168.13.15
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[11:13:27][C][wifi:243]: BSSID: xx:xx:xx:xx:xx:xx
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[11:13:27][C][wifi:245]: Hostname: 'fishpond'
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[11:13:27][C][wifi:250]: Signal strength: -91 dB ▂▄▆█
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[11:13:27][C][wifi:251]: Channel: 1
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[11:13:27][C][wifi:252]: Subnet: 255.255.255.0
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[11:13:27][C][wifi:253]: Gateway: 192.168.13.1
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[11:13:27][C][wifi:254]: DNS1: 192.168.13.1
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[11:13:27][C][wifi:255]: DNS2: 0.0.0.0
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[11:13:27][C][binary_sensor.status:046]: Status Binary Sensor 'esp_fishpond_system_status'
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[11:13:27][C][binary_sensor.status:046]: Device Class: 'connectivity'
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[11:13:28][C][switch.gpio:049]: GPIO Switch 'esp_fishpond_gpio12'
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[11:13:28][C][switch.gpio:050]: Pin: GPIO12 (Mode: OUTPUT)
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[11:13:28][C][switch.gpio:066]: Restore Mode: Restore (Default to OFF)
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[11:13:28][C][binary_sensor.gpio:023]: GPIO Binary Sensor 'esp_fishpond_gpio0'
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[11:13:28][C][binary_sensor.gpio:024]: Pin: GPIO0 (Mode: INPUT, INVERTED)
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[11:13:28][C][binary_sensor.gpio:023]: GPIO Binary Sensor 'esp_fishpond_gpio14'
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[11:13:28][C][binary_sensor.gpio:024]: Pin: GPIO14 (Mode: INPUT_PULLUP)
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[11:13:28][C][output.esp8266_pwm:028]: ESP8266 PWM:
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[11:13:28][C][output.esp8266_pwm:029]: Pin: GPIO13 (Mode: OUTPUT)
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[11:13:28][C][output.esp8266_pwm:030]: Frequency: 1000.0 Hz
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[11:13:28][C][logger:099]: Logger:
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[11:13:28][C][logger:100]: Level: DEBUG
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[11:13:28][C][logger:101]: Log Baud Rate: 115200
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[11:13:28][C][light.state:266]: Light 'esp_fishpond_gpio13'
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[11:13:28][C][light.state:268]: Default Transition Length: 1000 ms
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[11:13:28][C][light.state:269]: Gamma Correct: 2.80
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[11:13:28][C][switch.restart:034]: Restart Switch 'esp_fishpond_system_restart'
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[11:13:28][C][switch.restart:034]: Icon: 'mdi:restart'
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[11:13:28][C][time.homeassistant:032]: Home Assistant Time:
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[11:13:28][C][time.homeassistant:033]: Timezone: 'SAST-2'
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[11:13:28][C][sensor.wifi_signal:042]: WiFi Signal 'esp_fishpond_system_wifi_signal'
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[11:13:28][C][sensor.wifi_signal:042]: Unit of Measurement: 'dB'
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[11:13:28](Message skipped because it was too big to fit in TCP buffer - This is only cosmetic)
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[11:13:28](Message skipped because it was too big to fit in TCP buffer - This is only cosmetic)
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[11:13:28][C][api:072]: API Server:
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[11:13:28][C][api:073]: Address: 192.168.13.15:6053
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[11:13:28][C][ota:129]: Over-The-Air Updates:
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[11:13:28][C][ota:130]: Address: 192.168.13.15:8266
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1.4. Test now with OTA flashing
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*******************************
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Before installing the Sonoff, do a final OTA test, and this time selecting the OTA option and NOT the USB option when reflashing.
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.. code-block:: bash
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esphome <my-awesome>.yaml run
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Once these actions succeeded you are pretty much in the clear and can be sure your device is ready.
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See Also
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--------
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- :doc:`sonoff`
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- :doc:`sonoff_4ch`
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- :doc:`sonoff_s20`
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- `GPIO locations <https://github.com/arendst/Sonoff-Tasmota/wiki/GPIO-Locations>`__
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- `Edit this page on GitHub <https://github.com/OttoWinter/esphomedocs/blob/current/devices/sonoff_basic.rst>`__
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