Arduino Bug Hopper ABX00156
- Concept: Arduino evaluation and development platform for early-stage hardware and application assessment
- Configuration: Publicly verifiable as an evaluation board with MPN ABX00156 from Arduino
- Use case: Suitable for development, test, and prototyping environments where system functions need early validation
- Development focus: Faster technical evaluation and proof-of-concept setups on an Arduino-related platform
- Design note: Verify actual features, interfaces, power requirements, and mechanical design against manufacturer documentation before design-in
Arduino UNO Breakout Carrier ASX00085
- Concept: USB-C cable for data and connectivity tasks between Arduino hardware and host/programming devices
- Configuration: Listed as a 24-PIN USB-C CABLE from Arduino; positioned as a specialized cable connection for development environments
- Use case: Suitable for programming, bring-up, and workstation cabling in Arduino and embedded setups
- Development focus: Consistent, repeatable board-to-host connectivity in lab, test, and demo environments
- Design note: Verify connector configuration, data role, charging/data behavior, and any adapter or host requirements against manufacturer documentation before design-in
Arduino UNO Media Carrier ASX00083
- Carrier concept to extend the UNO form factor with high-speed media connectivity
- Aligned with UNO Q bottom carrier headers such as JMEDIA (MIPI-CSI-2/MIPI-DSI, 1.8 V domain) and JMISC (mixed-function header)
- Relevant for embedded vision and HMI prototyping where camera and display signals are routed through a carrier
- Development focus: faster evaluation of camera/display peripherals and signal paths in a consistent UNO setup
- Design note: mind signal levels/domains (1.8 V / 3.3 V) – level shifting may be required depending on peripherals
Arduino USB-C Cable (24 pin) 1m TPX00243
- Concept: External USB-C power adapter for powering Arduino-related development and workstation setups
- Configuration: Listed as an AC/DC External Adapter Input from Arduino; described in distributor channels as a 36W Power Supply
- Use case: Suitable for lab, test, and evaluation environments that require a separate external power source
- Development focus: Repeatable power delivery for demonstrators, engineering benches, and technical validation setups
- Design note: Verify output voltage, output current, USB-C PD profiles, and regional plug/cable format against manufacturer documentation before design-in
Arduino USB-C Hub (8 in 1) TPX00241
- Concept: USB-C hub for extending a USB-C host with additional I/O and peripheral connectivity
- Configuration: Listed as an 8 in 1 USB-C dongle from Arduino; suitable as a compact connectivity expansion for desktop, lab, or mobile setups
- Use case: For development workstations and evaluation environments where multiple peripherals need to be connected in parallel to a USB-C-based system
- Development focus: Faster reproduction of test and demo setups through centralized host-side connection of external devices
- Design note: Verify exact port configuration, data rates, video features, and power-delivery capability against manufacturer documentation before design-in
Arduino USB-C Power Supply (45W) TPX00242
- Concept: External USB-C power adapter for powering Arduino-related development and workstation setups
- Configuration: Listed as an AC/DC External Adapter Input from Arduino; described in distributor channels as a 36W Power Supply
- Use case: Suitable for lab, test, and evaluation environments that require a separate external power source
- Development focus: Repeatable power delivery for demonstrators, engineering benches, and technical validation setups
- Design note: Verify output voltage, output current, USB-C PD profiles, and regional plug/cable format against manufacturer documentation before design-in
Arduino® UNO™ Q 2GB
Manufacturer: ArduinoMPN: ABX00162
- Hybrid platform with Qualcomm® Dragonwing™ QRB2210 MPU and STM32U585 real-time MCU
- 2GB LPDDR4 RAM and 16GB eMMC for Linux-based embedded and edge AI projects
- Arduino UNO compatible with classic UNO shields, new carriers, and Qwiic expansion
- AI, vision, and audio capabilities for object recognition, voice commands, motion detection, and more
- Arduino App Lab for unified development using Arduino Sketches, Python®, and preloaded AI models
- Wi-Fi® 5, Bluetooth® 5.1, USB-C, LED matrix, and high-speed headers for versatile prototyping and product development tasks
Arduino® UNO™ Q 4GB
- Dual-brain architecture: Linux-capable MPU + real-time MCU on one board
- Qualcomm® Dragonwing™ QRB2210 (quad-core Arm® Cortex®-A53 @ 2.0 GHz) + STM32U585 (Arm® Cortex®-M33 up to 160 MHz)
- 4GB LPDDR4 and 32GB eMMC (no SD card required) – recommended for SBC mode and more advanced AI use cases
- Wi-Fi® 5 (2.4/5 GHz) and Bluetooth® 5.1 with onboard antennas
- USB-C with host/device role switching and video output; connect USB peripherals via dongle
- Arduino UNO ecosystem compatible: classic UNO headers, high-speed headers, and Qwiic expansion
- Arduino App Lab: unified workflow for Arduino Sketches, Python®, and containerized AI models
- 8×13 LED matrix + RGB LEDs for visual feedback and UI prototyping
Arduino® VENTUNO™ Q
- Dual-brain architecture: Qualcomm Dragonwing™ IQ8 (QCS8275) + STM32H5F5 for deterministic real-time actuation
- AI compute: Hexagon Tensor AI Processor (NPU) with up to 40 Dense TOPS
- Memory & storage: 16GB LPDDR5 (2×8GB) + 64GB eMMC, M.2 NVMe Gen4 expansion
- Connectivity: Wi-Fi® 6 (2.4/5/6 GHz), Bluetooth® 5.3, 2.5Gbit Ethernet
- Adapter-free I/O: USB-C (host/device + DP Alt Mode video), 2× USB 3.0 Type-A, HDMI, MIPI CSI / MIPI DSI via carrier headers
- Industrial/robotics I/O: CAN-FD (PHY on screw terminal) plus additional CAN-FD lines via headers, JOMEGA expansion
- Ecosystem: Raspberry Pi® HATs (40-pin), Arduino® UNO shields/carriers, Qwiic/Modulino® + 8×13 LED matrix
- Software: Linux (Debian/Ubuntu), Arduino Core on Zephyr OS, Docker/Docker Compose, Arduino App Lab
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