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https://www.dhl.com/us-en/home/customer-service.html
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https://www.dhl.com/us-en/home/ecommerce/shipping-services/international-shipping-services.html
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https://www.tindie.com/products/ataradov/cmsis-dap-compliant-swd-debugger/
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https://www.arduino.cc/reference/en/libraries/arduino_bmi270_bmm150/
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# Too many redirects
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content/About Arduino/Arduino Security Bulletins/ASEC-24-001-Vulnerabilities-in-ArduinoModbus-Library.md

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## Action Required
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Update the component's library to [ArduinoModbus 1.0.9](https://github.com/arduino-libraries/ArduinoModbus/releases/tag/1.0.9) or later as described by the official documentation available [here](https://www.arduino.cc/reference/en/libraries/arduinomodbus/).
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Update the component's library to [ArduinoModbus 1.0.9](https://github.com/arduino-libraries/ArduinoModbus/releases/tag/1.0.9) or later as described by the official documentation available [here](https://docs.arduino.cc/libraries/arduinomodbus/).
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## Additional information
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For further information visit the following links:
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* [https://www.arduino.cc/reference/en/libraries/arduinomodbus/](https://www.arduino.cc/reference/en/libraries/arduinomodbus/)
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* [https://docs.arduino.cc/libraries/arduinomodbus/](https://docs.arduino.cc/libraries/arduinomodbus/)
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* [https://nvd.nist.gov/vuln/detail/CVE-2019-14463](https://nvd.nist.gov/vuln/detail/CVE-2019-14463)
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* [https://nvd.nist.gov/vuln/detail/CVE-2022-0367](https://nvd.nist.gov/vuln/detail/CVE-2022-0367)
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* [https://github.com/arduino-libraries/ArduinoModbus/releases/tag/1.0.9](https://github.com/arduino-libraries/ArduinoModbus/releases/tag/1.0.9)

content/Arduino Cloud/Arduino IoT Cloud/If-the-sketch-uploads-but-the-device-isn-t-online.md

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4. Fully [delete the device](https://support.arduino.cc/hc/en-us/articles/360018324700), then add it again as a new device. For detailed instructions, see [Add and connect a device to Arduino Cloud](https://support.arduino.cc/hc/en-us/articles/360016495559).
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5. Test your setup with an example from the [ArduinoIoTCloud library](https://www.arduino.cc/reference/en/libraries/arduinoiotcloud/). Upload using Arduino IDE or the [Cloud Editor](https://support.arduino.cc/hc/en-us/articles/13809101080732-Open-the-Cloud-Editor).
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5. Test your setup with an example from the [ArduinoIoTCloud library](https://docs.arduino.cc/libraries/arduinoiotcloud/). Upload using Arduino IDE or the [Cloud Editor](https://support.arduino.cc/hc/en-us/articles/13809101080732-Open-the-Cloud-Editor).
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6. Check your device's power supply. Avoid using a USB hub, and instead connect the board directly to a USB port or another power source with a reliable cable to ensure sufficient power.

content/Education and Kits/CTC 101 and CTC UNO/Troubleshoot-servo-motors.md

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1. **Check connections:** Make sure the connection between the servo and the board is correct. Check the [Basic servo control tutorial](https://docs.arduino.cc/tutorials/generic/basic-servo-control) for a circuit diagram example.
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2. **Verify pin configuration:** Confirm that you've connected the servo to the same pin referenced in the code. For example, if you are using the [servo library](https://www.arduino.cc/reference/en/libraries/servo/), the code might inlcude a line such as `myservo.attach(9)` to link the servo to a specific pin on the board. In this case, the **signal** input on the servo should be connected to the pin 9 on the board.
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2. **Verify pin configuration:** Confirm that you've connected the servo to the same pin referenced in the code. For example, if you are using the [servo library](https://docs.arduino.cc/libraries/servo/), the code might inlcude a line such as `myservo.attach(9)` to link the servo to a specific pin on the board. In this case, the **signal** input on the servo should be connected to the pin 9 on the board.
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3. **Power considerations:** Servo motors draw significant power, and the board might not supply enough energy. If you need to drive more than one or two servos, you may need to power them from a separate supply (i.e. not the 5V pin on your Arduino). Make sure the grounds of the Arduino and the external power supply are connected. Check the diagram below for an example circuit:
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![Two servo motors connected to the digital pins of an Arduino board, powered through a external battery connected to a breadboard.](img/2-servos-set-up-diagram.png)
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## Further reading
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* <a class="link-external" href="https://www.arduino.cc/reference/en/libraries/servo/">Servo library reference</a>
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* <a class="link-external" href="https://docs.arduino.cc/libraries/servo/">Servo library reference</a>

content/Education and Kits/Engineering Kit/AEK-R2-functional-test-for-battery-servo-motor-and-DC-motor.md

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## Before running the tests
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1. Install the [ArduinoMotorCarrier library](https://www.arduino.cc/reference/en/libraries/arduinomotorcarrier/). (See [Add libraries to Arduino IDE](https://support.arduino.cc/hc/en-us/articles/5145457742236-Add-libraries-to-Arduino-IDE) for instructions)
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1. Install the [ArduinoMotorCarrier library](https://docs.arduino.cc/libraries/arduinomotorcarrier/). (See [Add libraries to Arduino IDE](https://support.arduino.cc/hc/en-us/articles/5145457742236-Add-libraries-to-Arduino-IDE) for instructions)
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2. Connect the Nano 33 IoT board to the Nano Motor Carrier.
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![The Nano 33 IoT board plugged to the Arduino Nano Motor Carrier](img/Nano33IoT-plug.png)

content/Hardware Support/Generic/Boards-and-shields-with-wireless-connectivity.md

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* UNO WiFi Rev2
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* UNO R4 WiFi
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Enable it with the [ArduinoBLE library](https://www.arduino.cc/reference/en/libraries/arduinoble/).
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Enable it with the [ArduinoBLE library](https://docs.arduino.cc/libraries/arduinoble/).
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Although the communication modules on these boards can also use Bluetooth _Classic_, it is not currently supported by official firmware or libraries.
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content/Hardware Support/Generic/Change-the-Bluetooth-broadcast-name.md

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id: 360018922199
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When using the [ArduinoBLE](https://www.arduino.cc/reference/en/libraries/arduinoble/) library to enable Bluetooth Low Energy communication on an Arduino board, the broadcasted name is set by the [setLocalName()](https://www.arduino.cc/reference/en/libraries/arduinoble/ble.setlocalname/) function.
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When using the [ArduinoBLE](https://docs.arduino.cc/libraries/arduinoble/) library to enable Bluetooth Low Energy communication on an Arduino board, the broadcasted name is set by the `BLE.setLocalName()` function.
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For example, you can set the name to _MyArduinoDevice_.
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## Further reading
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* [ArduinoBLE library](https://www.arduino.cc/reference/en/libraries/arduinoble/)
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* [ArduinoBLE library](https://docs.arduino.cc/libraries/arduinoble/)
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* [Connecting Nano 33 BLE Devices over Bluetooth<sup>®</sup>](https://docs.arduino.cc/tutorials/nano-33-ble-sense/ble-device-to-device)

content/Hardware Support/Generic/Find-a-library-for-your-boards-Inertial-Measurement-Unit-IMU.md

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| Library | Boards |
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|-------------------------------------------------------------------------------------|-------------------------------------------------------|
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| [Arduino_LSM9DS1](https://www.arduino.cc/reference/en/libraries/arduino_lsm9ds1/) | Arduino Nano 33 BLE Sense |
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| [Arduino_LSM6DS3](https://www.arduino.cc/reference/en/libraries/arduino_lsm9ds1/) | Arduino Nano 33 IoT <br>Arduino Uno WiFi Rev2 |
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| [Arduino_LSM6DSOX](https://www.arduino.cc/reference/en/libraries/arduino_lsm6dsox/) | Arduino Nano RP2040 Connect <br>Arduino Nicla Vision |
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| [MKRIMU](https://www.arduino.cc/reference/en/libraries/mkrimu) | Arduino MKR IMU Shield |
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| [Arduino_LSM9DS1](https://docs.arduino.cc/libraries/arduino_lsm9ds1/) | Arduino Nano 33 BLE Sense |
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| [Arduino_LSM6DS3](https://docs.arduino.cc/libraries/arduino_lsm9ds1/) | Arduino Nano 33 IoT <br>Arduino Uno WiFi Rev2 |
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| [Arduino_LSM6DSOX](https://docs.arduino.cc/libraries/arduino_lsm6dsox/) | Arduino Nano RP2040 Connect <br>Arduino Nicla Vision |
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| [MKRIMU](https://docs.arduino.cc/libraries/mkrimu/) | Arduino MKR IMU Shield |
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content/Hardware Support/Generic/Use-an-LCD-with-Arduino.md

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You can easily connect a liquid crystal display (LCD) with an Arduino to display data.
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The [LiquidCrystal library](https://www.arduino.cc/reference/en/libraries/liquidcrystal/) allows you to control LCD displays based on the Hitachi HD44780 chipset (which is found on most text-based LCDs).
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The [LiquidCrystal library](https://docs.arduino.cc/libraries/liquidcrystal/) allows you to control LCD displays based on the Hitachi HD44780 chipset (which is found on most text-based LCDs).
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See [this guide](https://docs.arduino.cc/learn/electronics/lcd-displays) on how to wire an LCD to an Arduino board and use the LiquidCrystal library

content/Hardware Support/Nano Family/Control-the-RGB-LED-on-Nano-33-BLE-boards.md

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* `LEDG` – green channel pin (P23)
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You can then set the value for each channel with the [`digitalWrite(pin, value)`](https://www.arduino.cc/reference/en/language/functions/digital-io/digitalwrite/) function:
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You can then set the value for each channel with the [`digitalWrite(pin, value)`](https://docs.arduino.cc/language-reference/en/functions/digital-io/digitalwrite/) function:
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* `digitalWrite(LEDR, LOW)` – turn the RED LED **on**.
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* `digitalWrite(LEDR, HIGH)` – turn the RED LED **off**.

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