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Original file line number Diff line number Diff line change
Expand Up @@ -19,7 +19,7 @@ Maker, enhancements, IoT application
- 64 MHz Arm® Cortex-M4F (with FPU)
- 1 MB Flash + 256 KB RAM

- **Bluetooth 5 multiprotocol radio**
- **Bluetooth® 5 multiprotocol radio**
- 2 Mbps
- CSA #2
- Advertising Extensions
Expand Down Expand Up @@ -113,7 +113,7 @@ Top:

| **Ref.** | **Description** | **Ref.** | **Description** |
| -------- | ------------------------------- | -------- | -------------------------------- |
| U1 | NINA-B306 Module BLE 5.0 Module | U6 | MP2322GQH Step Down Converter |
| U1 | NINA-B306 Module Bluetooth® Low Energy 5.0 Module | U6 | MP2322GQH Step Down Converter |
| U2 | LSM9DS1TR Sensor IMU | PB1 | IT-1185AP1C-160G-GTR Push button |
| U3 | MP34DT06JTR Mems Microphone | HS-1 | HTS221 Humidity Sensor |
| U4 | ATECC608A Crypto chip | DL1 | Led L |
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Expand Up @@ -18,7 +18,7 @@ Maker, enhancements, basic IoT application scenarios
- 64 MHz Arm® Cortex-M4F (with FPU)
- 1 MB Flash + 256 KB RAM

- **Bluetooth 5 multiprotocol radio**
- **Bluetooth® 5 multiprotocol radio**
- 2 Mbps
- CSA #2
- Advertising Extensions
Expand Down Expand Up @@ -88,7 +88,7 @@ Top:

| **Ref.** | **Description** | **Ref.** | **Description** |
| -------- | ------------------------------- | -------- | -------------------------------- |
| U1 | NINA-B306 Module BLE 5.0 Module | U6 | MP2322GQH Step Down Converter |
| U1 | NINA-B306 Module Bluetooth® Low Energy 5.0 Module | U6 | MP2322GQH Step Down Converter |
| U2 | LSM9DS1TR Sensor IMU | PB1 | IT-1185AP1C-160G-GTR Push button |
| DL1 | Led L | DL2 | Led Power |

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Expand Up @@ -43,15 +43,15 @@ Maker, enhancements, basic IoT application scenarios
- 16dBm output power
- 19 dBm EIRP
- -96 dBm sensitivity
- **Bluetooth BR/EDR**
- **Bluetooth® BR/EDR**
- Max 7 peripherals
- 2.4 GHz, 79 channels
- Up to 3 Mbit/s
- 8 dBm output power at 2/3 Mbit/s
- 11 dBm EIRP at 2/3 Mbit/s
- -88 dBm sensitivity
- **Bluetooth Low Energy**
- Bluetooth 4.2 dual mode
- **Bluetooth® Low Energy**
- Bluetooth® 4.2 dual mode
- 2.4GHz 40 channels
- 6 dBm output power
- 9 dBm EIRP
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Expand Up @@ -8,7 +8,7 @@ type: maker

# Description

The feature packed **Arduino® Nano RP2040 Connect** brings the new **Raspberry Pi RP2040** microcontroller to the Nano form factor. Make the most of the dual core **32-bit Arm® Cortex®-M0+** to make Internet of Things projects with Bluetooth and Wi-Fi connectivity thanks to the **U-blox® Nina W102** module. Dive into real-world projects with the onboard accelerometer, gyroscope, RGB LED and microphone. Develop robust embedded AI solutions with minimal effort using the **Arduino® Nano RP2040 Connect**!
The feature packed **Arduino® Nano RP2040 Connect** brings the new **Raspberry Pi RP2040** microcontroller to the Nano form factor. Make the most of the dual core **32-bit Arm® Cortex®-M0+** to make Internet of Things projects with Bluetooth® and Wi-Fi connectivity thanks to the **U-blox® Nina W102** module. Dive into real-world projects with the onboard accelerometer, gyroscope, RGB LED and microphone. Develop robust embedded AI solutions with minimal effort using the **Arduino® Nano RP2040 Connect**!

# Target Areas
Internet of Things (IoT), machine learning, prototyping,
Expand All @@ -30,14 +30,14 @@ Internet of Things (IoT), machine learning, prototyping,
- USB 1.1 Host/Device
- Internal Voltage Regulator to supply the core voltage
- Advanced High-performance Bus (AHB)/Advanced Peripheral Bus (APB)
- **U-blox® Nina W102** Wi-Fi/Bluetooth Module
- **U-blox® Nina W102** Wi-Fi/Bluetooth® Module
- 240MHz 32bit Dual Core Xtensa LX6
- 520kB on-chip SRAM
- 448 Kbyte ROM for booting and core functions
- 16 Mbit FLASH for code storage including hardware encryption to protect programs and data
- 1 kbit EFUSE (non- erasable memory) for MAC addresses, module configuration, Flash-Encryption, and Chip-ID
- IEEE 802.11b/g/n single-band 2.4 GHz Wi-Fi operation
- Bluetooth 4.2
- Bluetooth® 4.2
- Integrated Planar Inverted-F Antenna (PIFA)
- 4x 12-bit ADC
- 3x I2C, SDIO, CAN, QSPI
Expand Down Expand Up @@ -139,7 +139,7 @@ The Arduino® Nano RP2040 Connect can be adapted to a wide range of use cases th

| **Ref.** | **Description** | **Ref.** | **Description** |
| -------- | ------------------------------------------------ | -------- | ----------------------------------------------- |
| U1 | Raspberry Pi RP2040 Microcontroller | U2 | Ublox NINA-W102-00B Wi-Fi/Bluetooth Module |
| U1 | Raspberry Pi RP2040 Microcontroller | U2 | Ublox NINA-W102-00B Wi-Fi/Bluetooth® Module |
| U3 | N/A | U4 | ATECC608A-MAHDA-T Crypto IC |
| U5 | AT25SF128A-MHB-T 16MB Flash IC | U6 | MP2322GQH Step-Down Buck Regulator |
| U7 | DSC6111HI2B-012.0000 MEMS Oscillator | U8 | MP34DT06JTR MEMS Omnidirectional Microphone IC |
Expand All @@ -161,8 +161,8 @@ The processor is based upon the new Raspberry Pi RP2040 silicon (U1). This micro

The RP2040 controls the peripherals and digital pins, as well as analog pins (A0-A3). The I2C connections on pins A4 (SDA) and A5 (SCL) are used for connecting to the onboard peripherals and are pulled up with a 4.7 kΩ resistor. SWD Clock line (SWCLK) and reset are also pulled up with a 4.7 kΩ resistor. An external MEMS oscillator (U7) running at 12MHz provides the clock pulse. Programmable IO helps to the implementation of arbitrary communication protocol with minimal burden on the main processing cores. A USB 1.1 device interface is implemented on the RP2040 for uploading code.

### Wi-Fi/Bluetooth Connectivity
Wi-Fi and Bluetooth connectivity is provided by the Nina W102 (U2) module. The RP2040 only has 4 analog pins, and the Nina is used to extend that to the full eight as is standard in the Arduino Nano form factor with another 4 12-bit analog inputs (A4-A7). Additionally, the common anode RGB LED is also controlled by the Nina W-102 module such that the LED is off when the digital state is HIGH and on when the digital state is LOW. The internal PCB antenna in the module eliminates the need for an external antenna.
### Wi-Fi/Bluetooth® Connectivity
Wi-Fi and Bluetooth® connectivity is provided by the Nina W102 (U2) module. The RP2040 only has 4 analog pins, and the Nina is used to extend that to the full eight as is standard in the Arduino Nano form factor with another 4 12-bit analog inputs (A4-A7). Additionally, the common anode RGB LED is also controlled by the Nina W-102 module such that the LED is off when the digital state is HIGH and on when the digital state is LOW. The internal PCB antenna in the module eliminates the need for an external antenna.
The Nina W102 module also includes a dual core Xtensa LX6 CPU that can also be programmed independently of the RP2040 through the pads under the board using SWD.

### 6-Axis IMU
Expand Down Expand Up @@ -368,7 +368,7 @@ Hereby, Arduino S.r.l. declares that this product is in compliance with essentia
| Project Hub | https://create.arduino.cc/projecthub?by=part&part_id=11332&sort=trending |
| PDM (microphone) Library | https://www.arduino.cc/en/Reference/PDM |
| WiFiNINA (Wi-Fi, W102) Library | https://www.arduino.cc/en/Reference/WiFiNINA |
| ArduinoBLE (Bluetooth, W-102) Library | https://www.arduino.cc/en/Reference/ArduinoBLE |
| ArduinoBLE (Bluetooth®, W-102) Library | https://www.arduino.cc/en/Reference/ArduinoBLE |
| IMU Library | https://www.arduino.cc/en/Reference/Arduino_LSM6DS3 |
| Online Store | https://store.arduino.cc/ |

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Expand Up @@ -54,9 +54,9 @@ Laboratory equipment, Computer vision
</tr>
<tr>
<td style="text-align: center;">Connectivity</td>
<td style="text-align: center;">Ethernet PHY / Wi-Fi / BLE</td>
<td style="text-align: center;">Ethernet PHY / Wi-Fi / Bluetooth® Low Energy</td>
<td style="text-align: center;">Ethernet FHY</td>
<td style="text-align: center;">Ethernet PHY / Wi-Fi / BLE</td>
<td style="text-align: center;">Ethernet PHY / Wi-Fi / Bluetooth® Low Energy</td>
</tr>
<tr>
<td style="text-align: center;">Memory</td>
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Expand Up @@ -23,7 +23,7 @@ Agriculture measurements, smart irrigation systems, hydroponics
* 64 MHz Arm® Cortex®-M4F (with FPU)
* 1 MB Flash + 256 KB RAM
* **Wireless**
* Bluetooth (BLE 5 via Cordio® stack)
* Bluetooth® (Bluetooth® Low Energy 5 via Cordio® stack)
* Advertising Extensions
* 95 dBm sensitivity
* 4.8 mA in TX (0 dBm)
Expand Down
Original file line number Diff line number Diff line change
Expand Up @@ -37,7 +37,7 @@ Agriculture measurements, smart irrigation systems, hydroponics
<tr>
<td style="text-align: center">Wireless</td>
<td>
<p>Bluetooth (BLE 5 via Cordio® stack, BLE 4.2 via Arduino® Stack)</p>
<p>Bluetooth® (Bluetooth® Low Energy 5 via Cordio® stack, Bluetooth® Low Energy 4.2 via Arduino® Stack)</p>
<p>Advertising Extensions</p>
<p>95 dBm sensitivity</p>
<p>4.8 mA in TX (0 dBm)</p>
Expand Down
Original file line number Diff line number Diff line change
Expand Up @@ -137,7 +137,7 @@ Industry 4.0, system integrators
| J3 | Digital inputs | J10 | Encoders |
| J4 | Power supply 24V | J11 | Analog out |
| J5 | HMI - Comm protocols (RS232, RS422, RS485, CAN) | J13 | Ethernet |
| J6 | Digital outputs | J14 | WI-FI / BLE SMA |
| J6 | Digital outputs | J14 | WI-FI / Bluetooth® Low Energy SMA |
| J7 | Temperature probes | J15 | USB A |
| J8 | Digital programmable | J16 | USB micro |
| J9 | Analog in | J17 | Grove I2C |
Expand Down
Original file line number Diff line number Diff line change
Expand Up @@ -14,7 +14,7 @@ The **Arduino® Nicla Sense ME** is our smallest form factor yet, with a range o
wireless sensor networks, data fusion, artificial intelligence, gas detection

# Features
- **ANNA-B112** Bluetooth Module
- **ANNA-B112** Bluetooth® Module
- **nRF52832** System-on-chip
- 64 MHz ARM® Cortex-M4F microcontroller
- 64 KB SRAM
Expand All @@ -23,7 +23,7 @@ wireless sensor networks, data fusion, artificial intelligence, gas detection
- 2x SPI (one is accessible via pin header)
- 2x I2C (one is accessible via pin header)
- 12-bit/200 ksps ADC
- 2.400 - 2.4835 GHz Bluetooth (5.0 via cordio stack, 4.2 via ArduinoBLE)
- 2.400 - 2.4835 GHz Bluetooth® (5.0 via cordio stack, 4.2 via ArduinoBLE)
- Internal antenna
- Internal 32 MHz oscillator
- 1.8V Operating Voltage
Expand Down Expand Up @@ -137,7 +137,7 @@ The Nicla form factor has been specifically developed at Arduino® as a standard

| **Ref.** | **Description** | **Ref.** | **Description** |
| -------- | ------------------------------------------------ | -------- | -------------------------------- |
| MD1 | ANNA B112 Bluetooth Module | U2, U7 | MX25R1635FZUIH0 2 MB FLASH IC |
| MD1 | ANNA B112 Bluetooth® Module | U2, U7 | MX25R1635FZUIH0 2 MB FLASH IC |
| U3 | BMP390 Pressure Sensor IC | U4 | BMM150 3-axis Magnetic Sensor IC |
| U5 | BHI260AP 6 axis IMU and AI core IC | U6 | BME688 Environmental Sensor IC |
| U8 | IS31FL3194-CLS2-TR 3-channel LED IC | U9 | BQ25120AYFPR Battery Charger IC |
Expand Down
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Expand Up @@ -124,7 +124,7 @@ Standard configurations are:
* 8x ADC inputs with separate VREF
* **Murata 1DX** Wi-Fi/BT Module (optional)
* Wi-Fi 802.11b/g/n 65 Mbps
* Bluetooth 5.1 BR/EDR/LE
* Bluetooth® 5.1 BR/EDR/LE
* **NXP SE050C2** Crypto (optional)
* Common Criteria EAL 6+ certified up to OS level
* RSA & ECC functionalities, high key length and future proof curves, such as brainpool, Edwards, and Montgomery
Expand Down Expand Up @@ -175,7 +175,7 @@ Due to the dual core processing and the low-power capabilities, Portenta support

**AI & Machine Learning:** Thanks to the power of the two cores it can simultaneously read data from sensors or other devices on one core while the other core processes the data stream and uses machine learning to make sense of the data. When used with the Portenta Vision Shield its camera module or the two directional microphones can be used as data sources.

**Connectivity:** The Portenta features on-board Bluetooth and Wi-Fi capabilities which makes it the perfect candidate for reliable IoT applications. When used together with the Portenta Vision Shield it enables LoRa communication in places where it needs to communicate efficiently over a long distance. The Vision Shield also features an Ethernet port that allows for wired networking applications.
**Connectivity:** The Portenta features on-board Bluetooth® and Wi-Fi capabilities which makes it the perfect candidate for reliable IoT applications. When used together with the Portenta Vision Shield it enables LoRa communication in places where it needs to communicate efficiently over a long distance. The Vision Shield also features an Ethernet port that allows for wired networking applications.

### Accessories
The [Portenta H7 Vision Shield](https://www.arduino.cc/pro/hardware/product/portenta-vision-shield) is a rapid pathway to developing applications that combine vision, audio and connectivity. The ultra low power HM-01B0 CMOS image sensor is designed with always-on applications in mind. The 324x324 data stream can be used with either the Arduino toolchain or OpenMV for gestures, ambient light, proximity sensing, and object identification. The large pixel size (3.6μm) provides a high signal-to-noise ratio. The two omnidirectional digital-microphones (MP34DB02) allows concurrent capture of stereo sounds alongside the video stream on the MicroSD Card, as well as for beamforming uses. Connectivity is provided by either ethernet or LoRa technology. LoRa technology enables the use of this platform as part of wireless sensor network solutions.
Expand Down Expand Up @@ -261,7 +261,7 @@ Internal memory is composed of 2MB of flash with read while write support and 1M
* 4 Kbytes of SRAM in Backup domain

### Wireless Module
The on board wireless module allows simultaneous management of Wi-Fi and Bluetooth connectivity. The Wi-Fi interface can be operated as an Access Point, as a Station or as a dual mode simultaneous AP/STA and can handle up to 65 Mbps transfer rate. Bluetooth interface supports Bluetooth Classic and BLE.
The on board wireless module allows simultaneous management of Wi-Fi and Bluetooth® connectivity. The Wi-Fi interface can be operated as an Access Point, as a Station or as a dual mode simultaneous AP/STA and can handle up to 65 Mbps transfer rate. Bluetooth® interface supports Bluetooth® Classic and Bluetooth® Low Energy.

### External Memories
Optionally Portenta H7 is available with additional external SDRAM and QSPI Flash memories.
Expand Down
Original file line number Diff line number Diff line change
Expand Up @@ -122,7 +122,7 @@ AI applications, low-latency control solutions
* 8x ADC inputs with separate VREF
* **Murata 1DX** WiFi/BT Module (optional)
* WiFi 802.11b/g/n 65 Mbps
* Bluetooth 5.1 BR/EDR/LE
* Bluetooth® 5.1 BR/EDR/LE

* **Microchip ATECC608** Crypto (optional)
* Protected storage for up to 16 Keys, certificates or data
Expand Down Expand Up @@ -164,7 +164,7 @@ Due to the dual core processing and the low-power capabilities, Portenta support

**AI & Machine Learning:** Thanks to the power of the two cores it can simultaneously read data from sensors or other devices on one core while the other core processes the data stream and uses machine learning to make sense of the data. When used with the Portenta Vision Shield its camera module or the two directional microphones can be used as data sources.

**Connectivity:** The Portenta features on-board Bluetooth and WiFi capabilities which makes it the perfect candidate for reliable IoT applications. When used together with the Portenta Vision Shield it enables LoRa communication in places where it needs to communicate efficiently over a long distance. The Vision Shield also features an Ethernet port that allows for wired networking applications.
**Connectivity:** The Portenta features on-board Bluetooth® and WiFi capabilities which makes it the perfect candidate for reliable IoT applications. When used together with the Portenta Vision Shield it enables LoRa communication in places where it needs to communicate efficiently over a long distance. The Vision Shield also features an Ethernet port that allows for wired networking applications.

### Accessories
The [Portenta H7 Vision Shield](https://www.arduino.cc/pro/hardware/product/portenta-vision-shield) is a rapid pathway to developing applications that combine vision, audio and connectivity. The ultra low power HM-01B0 CMOS image sensor is designed with always-on applications in mind. The 324x324 data stream can be used with either the Arduino toolchain or OpenMV for gestures, ambient light, proximity sensing, and object identification. The large pixel size (3.6μm) provides a high signal-to-noise ratio. The two omnidirectional digital-microphones (MP34DB02) allows concurrent capture of stereo sounds alongside the video stream on the MicroSD Card, as well as for beamforming uses. Connectivity is provided by either ethernet or LoRa technology. LoRa technology enables the use of this platform as part of wireless sensor network solutions.
Expand Down Expand Up @@ -248,7 +248,7 @@ Internal memory is composed of 2MB of flash with read while write support and 1M
* 4 Kbytes of SRAM in Backup domain

### Wireless Module
The on board wireless module allows simultaneous management of WiFi and Bluetooth connectivity. The WiFi interface can be operated as an Access Point, as a Station or as a dual mode simultaneous AP/STA and can handle up to 65 Mbps transfer rate. Bluetooth interface supports Bluetooth Classic and BLE.
The on board wireless module allows simultaneous management of WiFi and Bluetooth® connectivity. The WiFi interface can be operated as an Access Point, as a Station or as a dual mode simultaneous AP/STA and can handle up to 65 Mbps transfer rate. Bluetooth® interface supports Bluetooth® Classic and Bluetooth® Low Energy.

### External Memories
Optionally Portenta H7 Lite Connected is available with additional external SDRAM and QSPI Flash memories.
Expand Down