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boards/cc1350-launchpad: update documentation

Signed-off-by: Jean Pierre Dudey <me@jeandudey.tech>
This commit is contained in:
Jean Pierre Dudey 2021-02-17 21:38:15 +01:00
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commit 6b1d8c41a6

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@ingroup boards
@brief Texas Instruments SimpleLink(TM) CC1350 Wireless MCU LaunchPad(TM) Kit
## Overview
## <a name="cc1350_launchpad_toc"> Table of Contents </a> &nbsp;[[TOC]](#cc1350_launchpad_toc)
1. [Overview](#cc1350_launchpad_overview)
2. [Hardware](#cc1350_launchpad_hardware)
3. [Board pinout](#cc1350_launchpad_pinout)
4. [Flashing the Device](#cc1350_launchpad_flashing)
## <a name="cc1350_launchpad_overview"> Overview </a> &nbsp;[[TOC]](#cc1350_launchpad_toc)
The [LAUNCHXL-CC1350](https://www.ti.com/tool/LAUNCHXL-CC1350) is a Texas
Instrument's development kit for the CC1350 SoC MCU which combines a Cortex-M3
microcontroller alonside a dedicated Cortex-M0 to control a dual-band radio.
## Hardware
## <a name="cc1350_launchpad_hardware"> Hardware </a> &nbsp;[[TOC]](#cc1350_launchpad_toc)
![LAUNCHXL-CC1350](https://www.ti.com/diagrams/launchxl-cc1350_launchxl-cc1350.jpg)
| MCU | CC1312R1 |
| MCU | CC1350 |
|:----------------- |:--------------------- |
| Family | ARM Cortex-M3 |
| Vendor | Texas Instruments |
@ -23,29 +30,41 @@ microcontroller alonside a dedicated Cortex-M0 to control a dual-band radio.
| FPU | no |
| Timers | 4 |
| ADCs | 1x 12-bit (channels) |
| UARTs | 2 |
| UARTs | 1 |
| SPIs | 2 |
| I2Cs | 1 |
| Vcc | 1.8V - 3.8V |
| Datasheet | [Datasheet](https://www.ti.com/lit/ds/swrs183b/swrs183b.pdf) |
| Reference Manual | [Reference Manual](https://www.ti.com/lit/ug/swcu117i/swcu117i.pdf) |
## Board pinout
## <a name="cc1350_launchpad_pinout"> Board pinout </a> &nbsp;[[TOC]](#cc1350_launchpad_toc)
The [CC1350 Quick Start Guide](https://www.ti.com/lit/ug/swru478b/swru478b.pdf)
provides the default pinout for the board.
## Flashing and Debugging
## <a name="cc1350_launchpad_flashing"> Flashing the Device </a> &nbsp;[[TOC]](#cc1350_launchpad_toc)
The LAUNCHXL-CC1350 comes with an XDS110 on-board debug probe that provides,
programming, flashing and debuggigng capabilities.
It can be either flashed either using Uniflash or OpenOCD, by setting
`PROGRAMMER=uniflash` (default) or `PROGRAMMER=openocd` respectively.
For example, to use OpenOCD:
Flashing RIOT is quite straight forward. The board comes with an XDS110 on-board
debug probe that provides programming, flashing and debugging capabilities
through the USB Micro-USB connector. Once either TI Uniflash or OpenOCD are
installed just connect the board using the Micro-USB port to your computer and
type:
```
make -C examples/hello-world flash PROGRAMMER=openocd
make flash BOARD=cc1350-launchpad
```
To use OpenOCD instead of uniflash we need to set the `PROGRAMMER` environment
variable, this is to enable OpenOCD instead of Uniflash.
```
export PROGRAMMER=openocd
```
Now we can just do `make flash` and `make debug`, this all using OpenOCD.
For detailed information about CC1312 MCUs as well as configuring, compiling
RIOT and installation of flashing tools for CC1312 boards,
see \ref cc26xx_cc13xx_riot.
*/