diff --git a/content/hardware/05.pro-solutions/solutions-and-kits/portenta-proto-kit-me/datasheet/datasheet.md b/content/hardware/05.pro-solutions/solutions-and-kits/portenta-proto-kit-me/datasheet/datasheet.md index 98c75b966e..60a18f9867 100644 --- a/content/hardware/05.pro-solutions/solutions-and-kits/portenta-proto-kit-me/datasheet/datasheet.md +++ b/content/hardware/05.pro-solutions/solutions-and-kits/portenta-proto-kit-me/datasheet/datasheet.md @@ -59,13 +59,11 @@ Predictive maintenance, asset tracking, smart building systems, industrial autom #### Portenta H7 (SKU: ABX00042) -
The Portenta H7 is a dual-core microcontroller board powered by the STMicroelectronics® STM32H747XI, featuring a 32-bit Arm® Cortex®-M7 running at 480 MHz and a Cortex®-M4 at 240 MHz. It includes advanced graphics capabilities and operates within an industrial temperature range (-40 °C to 85 °C). +
The Portenta H7 is a dual-core microcontroller board powered by the STMicroelectronics® STM32H747XI, featuring a 32-bit Arm® Cortex®-M7 running at 480 MHz and a Cortex®-M4 at 240 MHz. It includes advanced graphics capabilities and operates within an industrial temperature range (-40 °C to 85 °C).
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The Nicla Sense ME is a compact microcontroller board powered by the Nordic Semiconductor® nRF52832, featuring a 32-bit Arm® Cortex®-M4 running at 64 MHz. This board is designed for environmental monitoring and motion sensing applications, integrating multiple high-performance sensors. +
The Nicla Sense ME is a compact microcontroller board powered by the Nordic Semiconductor® nRF52832, featuring a 32-bit Arm® Cortex®-M4 running at 64 MHz. This board is designed for environmental monitoring and motion sensing applications, integrating multiple high-performance sensors.
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The Arduino Portenta Mid Carrier expands connectivity options for Portenta family boards, including Ethernet, USB-A, mPCIe, CAN, MicroSD, and 4G. It also features JTAG pins for debugging and supports I2C, SPI, PWM, digital, and analog I/Os. +
The Arduino Portenta Mid Carrier expands connectivity options for Portenta family boards, including Ethernet, USB-A, mPCIe, CAN, MicroSD, and 4G. It also features JTAG pins for debugging and supports I2C, SPI, PWM, digital, and analog I/Os.
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Designed in the widely used Mini PCI Express (mPCIe) format, this module provides global LTE Cat.4 connectivity, 4G support, and GNSS capabilities. +
Designed in the widely used Mini PCI Express (mPCIe) format, this module provides global LTE Cat.4 connectivity, 4G support, and GNSS capabilities.
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The Arduino Portenta Proto Kit ME can be powered through one of the following recommended methods:
-The Arduino Portenta Proto Kit ME can be powered through one of the following recommended methods: - -- **Portenta Mid Carrier Proto Shield onboard power jack**: Provides a dedicated connection to power the kit using a +7 to 30 VDC input. The kit includes a compatible +24 VDC/1A power supply intended to be used with this power jack. -- **USB-C® connector on the Portenta H7 board**: Allows powering the kit with +5 VDC through the Portenta H7's USB-C® port or the terminal pins on the Portenta Mid Carrier. +-Portenta Mid Carrier Proto Shield onboard power jack: Provides a dedicated connection to power the kit using a +7 to 30 VDC input. The kit includes a compatible +24 VDC/1A power supply intended to be used with this power jack.
+-USB-C® connector on the Portenta H7 board: Allows powering the kit with +5 VDC through the Portenta H7's USB-C® port or the terminal pins on the Portenta Mid Carrier.
 @@ -262,35 +248,29 @@ The Arduino Portenta Proto Kit ME can be powered through one of the following reSafety Note: Always disconnect power before making hardware changes to the kit. Ensure that power specifications are within the recommended limits to avoid damage to components.
If you want to program your Arduino Portenta Proto Kit ME offline, install the Arduino Desktop IDE [1]. To connect the Portenta H7 to your computer, you will need a USB-C® cable. Additionally, to program or interact with the Nicla Sense ME, ensure you have a Micro USB cable compatible with the board.
### Getting Started - Arduino Cloud Editor -All components of the Portenta Proto Kit ME work seamlessly on the Arduino Cloud Editor **[2]** by installing a simple plugin. The Arduino Cloud Editor is hosted online, ensuring it is always up-to-date with the latest features and support for all boards and devices. Follow **[3]** to start coding in the browser and upload your sketches onto the Portenta H7 or other components. +All components of the Portenta Proto Kit ME work seamlessly on the Arduino Cloud Editor [2] by installing a simple plugin. The Arduino Cloud Editor is hosted online, ensuring it is always up-to-date with the latest features and support for all boards and devices. Follow [3] to start coding in the browser and upload your sketches onto the Portenta H7 or other components.
### Getting Started - Arduino Cloud -The Portenta Proto Kit ME is fully supported on Arduino Cloud, enabling you to log, graph, and analyze sensor data, trigger events and automate processes for industrial, business, or smart home applications via the Portenta H7 board. Take a look at the official documentation to learn more about how to integrate the kit into your IoT projects. +The Portenta Proto Kit ME is fully supported on Arduino Cloud, enabling you to log, graph, and analyze sensor data, trigger events and automate processes for industrial, business, or smart home applications via the Portenta H7 board. Take a look at the official documentation [3] to learn more about how to integrate the kit into your IoT projects.
### Sample Sketches -Sample sketches for the Portenta Proto Kit ME can be found either in the “Examples” menu in the Arduino IDE or the “Portenta Proto Kit ME Documentation” section of Arduino documentation **[4]**. These examples include basic and advanced applications showcasing motion and environmental monitoring capabilities. +Sample sketches for the Portenta Proto Kit ME can be found either in the “Examples” menu in the Arduino IDE or the “Portenta Proto Kit ME Documentation” section of Arduino documentation [4]. These examples include basic and advanced applications showcasing motion and environmental monitoring capabilities.
### Online Resources -Now that you have gone through the basics of what you can do with the Portenta Proto Kit ME, you can explore the endless possibilities it provides by checking exciting projects on Arduino Project Hub **[5]**, the Arduino Library Reference **[6]** and the ACE-220 online course **[7]**. The Enterprise Prototyping with Portenta Proto Kit ME (ACE-220) course is a resource designed to help you master prototyping in embedded electronics and IoT. Gain hands-on experience with the kit and accelerate your journey from concept to innovation by building functional prototypes tailored for industrial and IoT applications. - -Now that you have gone through the basics of what you can do with the Portenta Proto Kit ME, you can explore the endless possibilities it provides by checking exciting projects on Arduino Project Hub [5], the Arduino Library Reference [6] and the ACE-220 online course [7]. The Enterprise Prototyping with Portenta Proto Kit ME (ACE-220) course is a resource designed to help you master prototyping in embedded electronics and IoT. Gain hands-on experience with the kit and accelerate your journey from concept to innovation by building functional prototypes tailored for industrial and IoT applications.
@@ -363,5 +343,6 @@ The figures below show the main dimensions of the kit in a stacked configuration | **Date** | **Revision** | **Changes** | |:----------:|:------------:|:--------------:| +| 20/01/2025 | 3 | Format fixes | | 16/01/2025 | 2 | Review changes | -| 10/01/2025 | 1 | First release | +| 10/01/2025 | 1 | First release | \ No newline at end of file