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110 lines
5.6 KiB
Plaintext
110 lines
5.6 KiB
Plaintext
/**
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@defgroup boards_yarm Acmesystems YARM board
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@ingroup boards
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@brief Support for the Acmesystems YARM board.
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## Overview
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Yarm is a smart and cost effective solution for system integrators to build
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their own RF applications at 868 MHz avoiding all the hardware design costs
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requested to start a new custom RF project.
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Yarm integrates:
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- a Microchip SAML21 low power MCU
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- a Microchip ATA8510 radio module
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See Acmesystems [product page](https://www.acmesystems.it/yarm) for more
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information.
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In the provided configuration, stdio is available via USB. The board could be
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configured to provide it on the exposed UART instead, by defining
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```
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USEMODULE=stdio_uart
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```
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Depending on the connection to your PC, you will probably also need to set
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PORT_LINUX to a different value (default is /dev/ttyACM0), for instance
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```
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PORT_LINUX=/dev/ttyUSB0
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```
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## Hardware
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![yarm image](https://www.acmesystems.it/www/yarm/yarm-dev-yarm.jpg)
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### MCU
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| MCU | ATSAML21J18B |
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|:------------- |:------------------------------------------------------------------------------------------------------ |
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| Family | ARM Cortex-M0+ |
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| Vendor | Microchip |
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| RAM | 32Kb |
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| Flash | 256Kb |
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| Frequency | up to 48MHz |
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| FPU | no |
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| Timers | 8 (16-bit) |
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| ADCs | 1x 12-bit (20 channels) |
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| UARTs | x 6 (shared with SPI and I2C) |
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| SPIs | max 6 (see UART) |
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| I2Cs | max 6 (see UART) |
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| Vcc | 1.8V - 3.6V |
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| Datasheet | [Datasheet](https://ww1.microchip.com/downloads/en/DeviceDoc/SAM_L21_Family_DataSheet_DS60001477C.pdf) |
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### RADIO
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| Transceiver | ATA8510 |
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|:------------- |:------------------------------------------------------------------------------------------------------------------- |
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| Vendor | Microchip |
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| Sensitivity | -123dBm |
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| Output power | -12dBm to +14.5dBm programmable in 0.4-dB steps ] |
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| Datasheet | [Datasheet](https://ww1.microchip.com/downloads/en/DeviceDoc/UHF-ASK-FSK-Transceiver-Product-Brief-DS00003077A.pdf) |
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*NOTE:* not all MCU interfaces are available on YARM; see the
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[pinout](https://www.acmesystems.it/pinout_yarm-dev) to know more.
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## Implementation Status
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| Device | ID | Supported | Comments |
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|:---------------- |:----------|:--------- |:------------- |
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| MCU | saml21 | partly | PLL clock not implemented |
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| Low-level driver | GPIO | yes | |
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| | PWM | yes | |
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| | UART | yes | |
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| | I2C | yes | |
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| | SPI | yes | |
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| | USB | yes | |
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| | RTT | yes | |
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| | RTC | yes | |
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| | RNG | yes | |
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| | Timer | yes | |
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| | ADC | yes | |
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## Flashing the device
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Both the MCU and the radio module are flashed using
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[Atmel ICE](https://www.microchip.com/DevelopmentTools/ProductDetails/atatmel-ice),
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with the help of a small adapter. The software used is edbg, bundled with RIOT.
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[wiring](https://www.acmesystems.it/asquini/yarm_avr_programming/ice-wiring.jpg)
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On Linux you might have to add a **udev** rule for Atmel ICE, like
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```
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bash
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(
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cat <<END
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# Atmel-ICE JTAG/SWD in-circuit debugger
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ATTRS{idVendor}=="03eb", ATTRS{idProduct}=="2141", MODE="664", GROUP="plugdev"
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END
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) | sudo tee -a /etc/udev/rules.d/99-atmel-ice.rules
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sudo service udev restart
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```
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## Supported Toolchains
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Recommended toolchain for SAML21 is [GNU Tools for ARM Embedded Processors](https://launchpad.net/gcc-arm-embedded).
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On Debian Buster, the default [gcc-arm-none-eabi](https://packages.debian.org/buster/gcc-arm-none-eabi)
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package works well.
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*/
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