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Co-authored-by: Keith Burzinski <kbx81x@gmail.com> Co-authored-by: Jesse Hills <3060199+jesserockz@users.noreply.github.com> Co-authored-by: H. Árkosi Róbert <robreg@zsurob.hu>
341 lines
11 KiB
ReStructuredText
341 lines
11 KiB
ReStructuredText
WeiKai SPI/I²C UART/IO Expander
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===============================
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.. seo::
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:description: Instructions for setting up WeiKai SPI/I²C to UART Expanders in ESPHome.
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:image: wk2168.jpg
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:keywords: UART, SPI, I²C, WK2132, WK2168, WK2204, WK2212, wk2124
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**WeiKai Microelectronics** provides a family of UART & GPIO expansion chips
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that interfaces to a micro-controller through SPI or I²C bus.
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The ESPHome ``WeiKai`` component supports the following WeiKai chips:
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- `WK2168-IQPG <https://jlcpcb.com/partdetail/WEIKAI-WK2168IQPG/C401041>`__
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- `WK2132-ISSG <https://jlcpcb.com/partdetail/WeiKai-WK2132ISSG/C401039>`__
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- `WK2124-ISSG <https://jlcpcb.com/partdetail/WeiKai-WK2124ISSG/C86332>`__
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- `WK2204-IQNG <https://jlcpcb.com/partdetail/WeiKai-WK2204IQNG/C401040>`__
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- `WK2212-IQNG <https://jlcpcb.com/partdetail/WeiKai-WK2212IQNG/C2987671>`__
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It can also be used with evaluation board equipped with these chips, such as:
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- `WK2168 Chip Development Board <https://fr.aliexpress.com/item/1005002198759633.html>`__
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- `WK2132 Chip Development Board <https://www.aliexpress.com/item/1005002018579265.html>`__
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- `DFROBOT Gravity: I²C to Dual UART Module <https://www.dfrobot.com/product-2001.html>`__
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.. figure:: images/DFR0627.jpg
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:align: center
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The features provided by the different WeiKai chips are described in the following table:
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.. list-table:: WeiKai chip's features
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:header-rows: 1
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:width: 450px
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:align: center
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* - Chip
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- Bus
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- UART
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- GPIO
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* - WK2132-ISSG
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- S/I
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- 2
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-
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* - WK2212-IQNG
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- S/I
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- 2
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- 8
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* - WK2124-ISSG
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- S
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- 4
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-
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* - WK2204-IQNG
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- S/I
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- 4
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-
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* - WK2168-IQPG
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- S/I
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- 4
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- 8
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As you can see most of the components can interface either through an I²C bus or a SPI bus,
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they provide either 2 or 4 serial channels, and some provide 8 input/output pins.
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Each UART channel has two independent 256-byte FIFO hardware buffers to transmit and
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receive and support data transmission rates up to 1 Mbps.
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The baud rate and parity format of each UART channel can be configured independently.
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However, the data bit length is fixed at 8.
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Utilizing the UART channels enables you to connect your UART devices, with each channel functioning
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as a virtual UART bus for the connected component.
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The I/O pins of the WeiKai chips can be use as any of the other GPIO pins.
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Any option accepting a :ref:`Pin Schema <config-pin_schema>` can theoretically
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be used, but some more complicated components that do communication through
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this I/O expander might not work.
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Connecting via an SPI bus
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-------------------------
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The ``wk2132_spi``, ``wk2212_spi``, ``wk2204_spi``, ``wk2168_spi`` components allows
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you to connect the WeiKai chip with ESPHome via a :ref:`SPI <spi>` bus.
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You can connect several of these modules to a single SPI controller circuit effectively expanding
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the number of hardware serial ports available. Each WeiKai chip needs to be selected
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with a individual CS.
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Here is an example of configuration entry for a wk2168_spi component. For the other components
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in the list just replace the name of the component and make sure you do not use more channels that the chip
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can support (an error message will be generated otherwise). Note that for the ``WK2124-ISSG`` chip
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you need to use ``wk2204_spi`` as the two chips are similar.
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.. code-block:: yaml
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wk2168_spi:
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- id: wk2168_bridge_spi
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cs_pin: 5
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uart:
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- id: spi_uart_0
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channel: 0
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baud_rate: 128200
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parity: even
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- id: spi_uart_1
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channel: 1
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baud_rate: 19200
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- id: spi_uart_2
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channel: 2
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baud_rate: 9600
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- id: spi_uart_3
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channel: 3
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baud_rate: 19200
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Configuration variables:
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************************
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- **id** (**Required**, :ref:`config-id`): The id to use for this WeiKai component.
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- **spi_id** (*Optional*, :ref:`config-id`): Manually specify the ID of the :ref:`SPI Component <spi>` if you want
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to use multiple SPI buses.
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- **cs_pin** (**Required**, :ref:`Pin Schema <config-pin_schema>`): The pin on the ESP that the chip select line
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of the chip is connected to.
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- **data_rate** (*Optional*): Set the data rate of the controller. One of ``80MHz``, ``40MHz``, ``20MHz``, ``10MHz``,
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``5MHz``, ``4MHz``, ``2MHz``, ``1MHz`` (default), ``200kHz``, ``75kHz`` or ``1kHz``. A numeric value in Hz can
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alternatively be specified.
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- **crystal** (*Optional*): The frequency in Hz of the crystal connected to the chip.
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The default value is 14745600 Hz.
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- **uart** (**Required**): The UART channels.
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- **id** (**Required**, :ref:`config-id`): The id to use for this UART channel.
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- **channel** (**Required**): Unique channel number of this virtual UART.
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Options: ``0`` to ``1`` or ``0`` to ``3`` depending on the model.
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- **baud_rate** (**Required**): The baud rate of the UART channel.
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- **parity** (*Optional*): The parity used on the UART channel. Options: ``NONE``, ``EVEN``,
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``ODD``. Defaults to ``NONE``.
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- **stop_bits** (*Optional*): The number of stop bits to send. Options: ``1``, ``2``.
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Defaults to ``1``.
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Connecting via an I²C bus
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-------------------------
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The ``wk2132_i2c`` ``wk2212_i2c`` ``wk2204_i2c`` ``wk2168_i2c`` components allows you
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to connect the WeiKai chip with ESPHome via an :ref:`I²C <i2c>` bus.
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Up to four WeiKai chips can be connected to an I²C controller board, effectively expanding the
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available hardware serial ports. The base addresses of these boards are defined by the
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positions of two switches, A0 and A1, on the board.
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.. list-table:: WeiKai address selection
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:header-rows: 1
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:width: 350px
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:align: center
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* - I²C address
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- A1
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- A0
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* - 0x10 - 0x17
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- 0
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- 0
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* - 0x30 - 0x37
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- 0
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- 1
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* - 0x50 - 0x57
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- 1
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- 0
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* - 0x70 - 0x77
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- 1
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- 1
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.. important::
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Note that the address is given as a **range** a not a number as you usually find on other I²C component.
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Indeed due to a peculiar way of addressing the different internal registers each component actually occupy
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8 consecutive addresses. For example if the component base address is 0x10, it will occupy the addresses ranging from
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0x10 to 0x17 on the I²C bus.
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This is important to know if you want to connect other devices on the same I²C bus.
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Here is an example of configuration entry for a ``wk2168_i2c`` component. For the other components
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just replace the name of the component and do not use more channels that the chip can
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support (an error message will be generated in this case).
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.. code-block:: yaml
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wk2168_i2c:
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- address: 0x70
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id: wk2168_bridge_i2c
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uart:
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- id: i2c_uart_0
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channel: 0
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baud_rate: 9600
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parity: even
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- id: i2c_uart_1
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channel: 1
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baud_rate: 19200
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- id: i2c_uart_2
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channel: 2
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baud_rate: 9600
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- id: i2c_uart_3
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channel: 3
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baud_rate: 19200
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Configuration variables:
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************************
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- **id** (**Required**, :ref:`config-id`): The id to use for this WeiKai component.
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- **address** (*Optional*): The I²C address of this component. Defaults to ``0x10``.
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- **i2c_id** (*Optional*): The I²C Bus ID. Defaults to the default i²c bus.
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- **crystal** (*Optional*): The frequency in Hz of the crystal connected to the chip.
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The default value is 14745600 Hz.
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- **uart** (*Required*): The UART channels.
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- **id** (**Required**, :ref:`config-id`): The id to use for this UART channel.
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- **channel** (**Required**): Unique channel number of this virtual UART.
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Options: ``0`` to ``1`` or ``0`` to ``3`` depending on the model.
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- **baud_rate** (**Required**): The baud rate of the UART channel.
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- **parity** (*Optional*): The parity used on the UART channel. Options: ``NONE``, ``EVEN``,
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``ODD``. Defaults to ``NONE``.
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- **stop_bits** (*Optional*): The number of stop bits to send. Options: ``1``, ``2``.
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Defaults to ``1``.
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Using the GPIO pins
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-------------------
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For the ``WK2212``, and ``WK2168`` it is possible to use the chip I/O pins as any of the other GPIO pins.
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For example for a wk2168_spi chip:
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.. code-block:: yaml
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# individual binary_sensor inputs
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binary_sensor:
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- platform: gpio
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name: "pin_0"
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pin:
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wk2168_spi: wk2168_bridge_spi
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number: 0
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mode:
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input: true
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- platform: gpio
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name: "pin_1"
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pin:
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wk2168_spi: wk2168_bridge_spi
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number: 1
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mode:
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input: true
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inverted: true
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# Individual binary outputs
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switch:
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- platform: gpio
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name: "pin_2"
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pin:
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wk2168_spi: wk2168_bridge_spi
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number: 2
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mode:
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output: true
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- platform: gpio
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name: "pin_3"
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pin:
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wk2168_spi: wk2168_bridge_spi
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number: 3
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mode:
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output: true
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inverted: true
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Pin configuration variables:
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****************************
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- **wkxxxx_xxx** (**Required**, :ref:`config-id`): The id of the ``wkxxxx_xxx`` component for the pin. For
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example ``wk2212_i2c: wk2168_bridge_spi``
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- **number** (**Required**): The pin number (``0`` to ``7``)
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- **inverted** (*Optional*): If all read and written values should be treated as inverted. Defaults to ``false``.
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- **mode** (*Optional*): A pin mode to set for the pin at. One of ``INPUT`` or ``OUTPUT``. Default to ``INPUT``
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Performance considerations:
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---------------------------
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Bus speed
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*********
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Please be aware that the communication between the WeiKai chips and the processor occurs on an external bus,
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with a relatively low operating frequency. Therefore tasks such as checking the status of the chip's
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registers or transferring bytes from the internal FIFOs to the processor may take time.
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To improve this situation, it is strongly recommended to increase the default bus frequency.
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- With a SPI bus this can be done on the WeiKai component by specifying ``data_rate``. For example:
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.. code-block:: yaml
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wk2168_spi:
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- id: wk2168_bridge_spi
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spi_id: spi_bus_id
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cs_pin: 5
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data_rate: 4MHz
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- With an I²C bus this needs to be done on the ``i2c`` declaration and therefore this frequency will
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apply to all components connected to this bus.
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.. code-block:: yaml
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i2c:
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sda: 21
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scl: 22
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scan: true
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id: bus_i2c
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frequency: 800kHz
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Maximum Baud rate
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*****************
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The maximum baud_rate is proportional to the crystal frequency. The following table
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gives the maximum baud_rate at usual system clock:
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.. list-table:: maximum baud rate
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:header-rows: 1
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:width: 300px
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:align: center
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* - Clock
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- Max Bd
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* - 14,745,600 Hz
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- 921,600 Bd
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* - 11,059,200 Hz
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- 691,200 Bd
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* - 7,372,800 Hz
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- 460,800 Bd
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* - 3,686,400 Hz
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- 230,400 Bd
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* - 1,843,200 Hz
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- 115,200 Bd
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If you try to use a baud rate superior to the maximum baud_rate an error will be displayed in the
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log file and the baud rate will automatically be decreased.
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See Also
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--------
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- :ref:`i2c`
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- :ref:`spi`
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- :doc:`switch/gpio`
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- :doc:`binary_sensor/gpio`
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- :apiref:`weika/weika.h`
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- :ghedit:`Edit`
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