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Linter: USB-C trademark miss-spelling rule and content fix [PC-1014, PC-1015] (#620)
* Linter: new rule for `USB-C®` / `USB Type-C®` / `USB4®` trademark * Fix `USB-C®` and `USB Type-C®` trademark miss-spellings * Remove wrong matches * Update regex Co-authored-by: Sebastian Romero <[email protected]> * Remove wrong fixes Co-authored-by: Sebastian Romero <[email protected]>
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content/hardware/02.hero/boards/uno-mini-le/datasheet/datasheet.md

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![](assets/featured.png)
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# Description
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We are celebrating the anniversary of our flagship board, Arduino UNO, by producing a just as effective and versatile miniature: The Arduino UNO Mini. This board is, just as its big brother, equipped with the ATMega328P and the ATMega 16U2 Processor, but is updated with USB-C connector.
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We are celebrating the anniversary of our flagship board, Arduino UNO, by producing a just as effective and versatile miniature: The Arduino UNO Mini. This board is, just as its big brother, equipped with the ATMega328P and the ATMega 16U2 Processor, but is updated with USB-C® connector.
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# Target Areas:
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Hobby-making, future-shaping, engineering, designing, problem-solving

content/hardware/02.hero/boards/uno-mini-le/features.md

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<FeatureDescription>
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The **UNO Mini Limited Edition (LE)** is a miniature version of the classic <a href="../uno-rev3">Arduino UNO board</a>. It is based on the **ATmega328P** microcontroller, has USB-C connector for programming and powering the board, and pins available for connecting external power sources. It also comes with the standard set of female pin connectors, built-in LED, reset button and everything else that the standard UNO have, but at **25% the area size!**.
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The **UNO Mini Limited Edition (LE)** is a miniature version of the classic <a href="../uno-rev3">Arduino UNO board</a>. It is based on the **ATmega328P** microcontroller, has USB-C® connector for programming and powering the board, and pins available for connecting external power sources. It also comes with the standard set of female pin connectors, built-in LED, reset button and everything else that the standard UNO have, but at **25% the area size!**.
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</FeatureDescription>
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content/hardware/02.hero/boards/uno-mini-le/product.md

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certifications: [CE, UKCA, FCC, RCM]
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---
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The Arduino UNO Mini Limited Edition (LE) is a unique black & gold board, that pays tribute to everyones favorite maker board: [the Arduino UNO](https://store-usa.arduino.cc/products/arduino-uno-rev3). It is only 25% of the area size of the original UNO, comes with a USB-C connector and is delivered in a special case.
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The Arduino UNO Mini Limited Edition (LE) is a unique black & gold board, that pays tribute to everyones favorite maker board: [the Arduino UNO](https://store-usa.arduino.cc/products/arduino-uno-rev3). It is only 25% of the area size of the original UNO, comes with a USB-C® connector and is delivered in a special case.

content/hardware/02.hero/boards/uno-mini-le/tutorials/uno-mini-le-guide/uno-mini-le-guide.md

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The [Arduino UNO Mini LE](https://store.arduino.cc/uno-mini-le) is a great little board that is very much like its dad: the good ol' UNO. It uses the same microcontroller, **ATmega328P** and the same USB-Serial Processor **ATmega16U2**, but differs in size and some other areas. Some notable differences are:
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- The UNO Mini LE has a USB-C connector
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- The UNO Mini LE has a USB-C® connector
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- The female header pins are half the pitch of the original UNO (due to its small size).
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- It does not feature a barrel plug connector for external power supply. Instead, there are two pins available for connecting external power supplies: **VIN** and **GND**. The limit for these pins are 6-21V and should not be exceeded.
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- [Arduino UNO Mini LE](https://store.arduino.cc/uno-mini-le)
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- Arduino IDE ([online](https://create.arduino.cc/) or [offline](https://www.arduino.cc/en/main/software) versions).
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- USB-C cable.
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- USB-C® cable.
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## Setup & Installation
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content/hardware/03.nano/carriers/nano-motor-carrier/tutorials/nano-matlab-wifi-led/nanoMatlabWiFiLED.md

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- [Arduino Nano 33 IoT](https://store.arduino.cc/products/arduino-nano-33-iot)
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- [Arduino Nano Motor Carrier](https://store.arduino.cc/products/arduino-nano-motor-carrier)
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- [Micro USB Cable](https://store.arduino.cc/products/usb-cable-type-a-male-to-micro-type-b-male)
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- [Micro USB Cable](https://store.arduino.cc/products/USB-Cable-type-a-male-to-micro-type-b-male)
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- Single cell LiPo/Li-ion 18650 battery and holder with XT30 connector
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- Valid MATLAB® licence
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- [MATLAB® Support Package for Arduino® Hardware](https://www.mathworks.com/matlabcentral/fileexchange/47522-matlab-support-package-for-arduino-hardware)

content/hardware/04.pro/boards/portenta-h7/datasheets/datasheet.md

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<td>Up to 128 MByte</td>
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</tr>
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<tr>
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<td rowspan="4" style="vertical-align: top;" >USB-C</td>
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<td rowspan="4" style="vertical-align: top;" >USB-C®</td>
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<td>High speed (optional/FUll Speed USB)</td>
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<td></td>
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<td rowspan="3"></td>
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## Connector Pinouts
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![USB-C Pinout](assets/portentaH7_PinoutUSB-C.png)
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![USB-C® Pinout](assets/portentaH7_PinoutUSB-C.png)
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### USB-C
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### USB-C®
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| Pin | **Description** | **Pin** | **Description** |
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| ------- | ------------------------------------------------------------ | --------------- | -------------------------------------------------------- |
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| U3 | USB HS PHY | U12, U13, U14 | ESD protection* |
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| U4 | SDRAM | U16 | Crypto Chip (Microchip) |
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| U5 | Ethernet PHY | J1, J2 | High Density Connectors |
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| U6 | MIPI to USB-C/DisplayPort converter* | ANT1 | Antenna or U.FL Connector** |
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| U6 | MIPI to USB-C®/DisplayPort converter* | ANT1 | Antenna or U.FL Connector** |
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| U7 | Level Shifter* | JANALOG JDIGITAL | MKR Compatible headers |
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| U8 | I2C level shifter* | J4 | Battery Connector |
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| U9 | Wifi/BT Module** | J5 | ESLOV Connector |

content/hardware/04.pro/boards/portenta-h7/tutorials/ble-connectivity/content.md

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### 1. The Basic Setup
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Begin by plugging in your Portenta board to the computer using a USB-C cable and open the Arduino IDE. If this is your first time running Arduino sketch files on the board, we suggest you check out how to [set up the Portenta H7 for Arduino](setting-up-portenta) before you proceed.
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Begin by plugging in your Portenta board to the computer using a USB-C® cable and open the Arduino IDE. If this is your first time running Arduino sketch files on the board, we suggest you check out how to [set up the Portenta H7 for Arduino](setting-up-portenta) before you proceed.
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![The Portenta H7 can be connected to the computer using an appropriate USB-C cable](assets/por_ard_ble_basic_setup.svg)
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![The Portenta H7 can be connected to the computer using an appropriate USB-C® cable](assets/por_ard_ble_basic_setup.svg)
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### 2. Install the ArduinoBLE Library
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content/hardware/04.pro/boards/portenta-h7/tutorials/creating-gui-with-lvgl/content.md

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### Required Hardware and Software
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- [Portenta H7 (ABX00042)](https://store.arduino.cc/products/portenta-h7)
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- USB-C cable (either USB-A to USB-C or USB-C to USB-C)
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- USB-C® cable (either USB-A to USB-C® or USB-C® to USB-C®)
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- Arduino IDE 1.8.10+ or Arduino Pro IDE 0.0.4+
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- USB-C hub with HDMI
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- USB-C® hub with HDMI
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- HDMI cable
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### 1. The Basic Setup
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Begin by plugging your Portenta board into the computer using a USB-C cable and open the Arduino IDE. If this is your first time running Arduino sketch files on the board, we suggest you check out how to [set up the Portenta H7 for Arduino](setting-up-portenta) before you proceed.
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Begin by plugging your Portenta board into the computer using a USB-C® cable and open the Arduino IDE. If this is your first time running Arduino sketch files on the board, we suggest you check out how to [set up the Portenta H7 for Arduino](setting-up-portenta) before you proceed.
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![The Portenta H7 can be connected to the computer using an appropriate USB-C cable](assets/por_ard_lvgl_basic_setup.svg)
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![The Portenta H7 can be connected to the computer using an appropriate USB-C® cable](assets/por_ard_lvgl_basic_setup.svg)
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### 2. Download the LVGL Library
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content/hardware/04.pro/boards/portenta-h7/tutorials/dual-core-processing/content.md

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![Running two different sketch files on the different cores.](assets/por_ard_dcp_tutorial_overview.svg)
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### 1. The Basic Setup
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Begin by plugging-in your Portenta board to your computer using an appropriate USB-C cable and have the  Arduino IDE open. If this is your first time running Arduino sketch files on the board, we suggest you check out how to [Setting Up Portenta H7 For Arduino](setting-up-portenta) before you proceed.
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Begin by plugging-in your Portenta board to your computer using an appropriate USB-C® cable and have the  Arduino IDE open. If this is your first time running Arduino sketch files on the board, we suggest you check out how to [Setting Up Portenta H7 For Arduino](setting-up-portenta) before you proceed.
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![A Basic setup of the board attached to your computer](../setting-up-portenta/assets/por_ard_gs_basic_setup.svg)
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content/hardware/04.pro/boards/portenta-h7/tutorials/flash-optimized-key-value-store/content.md

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***Important: The TBStore API optimizes for access speed, reduce [wearing of the flash](https://en.wikipedia.org/wiki/Flash_memory#Memory_wear) and minimize storage overhead. TBStore is also resilient to power failures. If you want to use the Flash memory of the microcontroller, always prefer the TDBStore approach over a direct access to the FlashIAP block device.***
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### 1. The Basic Setup
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Begin by plugging in your Portenta board to the computer using a USB-C cable and open the Arduino IDE. If this is your first time running Arduino sketch files on the board, we suggest you check out how to [set up the Portenta H7 for Arduino](https://docs.arduino.cc/tutorials/portenta-h7/setting-up-portenta) before you proceed.
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Begin by plugging in your Portenta board to the computer using a USB-C® cable and open the Arduino IDE. If this is your first time running Arduino sketch files on the board, we suggest you check out how to [set up the Portenta H7 for Arduino](https://docs.arduino.cc/tutorials/portenta-h7/setting-up-portenta) before you proceed.
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### 2. Create the Structure of the Program
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Let's program the Portenta with a sketch. You will also define a few helper functions in a supporting header file.

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