Trending...
- Zenylitics Announces Leadership Transition to Continue Accelerated Growth
- Wellness Technology Distributor Helping People Set Up Wellness Center Businesses
- J&J Exterminating Celebrates 65th Anniversary and Unveils Strategic Vision at Annual Team Meeting
Copperhill Technologies, a provider of embedded systems for CAN Bus development, introduced a new line of small form factor Classical CAN and CAN FD interfaces operating under embedded Linux. The interface boards are based on the popular Raspberry Pi series of CPU modules, and they support programming in Python and C.
GREENFIELD, Mass. - nvtip -- Copperhill Technologies offers a great variety of Classical CAN and CAN FD HATs for the Raspberry Pi, which support the development of automotive and industrial applications. The newest members of that product line were designed with a small form factor in mind.
The CANPico module is a carrier board for the Raspberry Pi Pico. The Raspberry Pi Pico is a tiny, fast, and adaptable board built using the RP2040, a dual-core Arm Cortex-M0+ processor with 264KB internal RAM and support for up to 16MB of off-chip Flash.
More on nvtip.com
The CANPico board is soldered onto the Pico, connecting the Raspberry Pi to a CAN Bus controller and transceiver, ready for connection to a CAN Bus network via a simple screw terminal. In addition, the CANPico carries an instrument header with the CAN H and CAN L signals and the digital RX and TX signals for use with an oscilloscope or logic analyzer. Software support is via an open-source MicroPython SDK.
The open-source MicroPython SDK from Canis Labs implements a sophisticated CAN API, including priority-inversion free drivers, 1μs accuracy timestamps, large buffers, and an API for triggering a logic analyzer or oscilloscope. Support for communicating to a host device over USB (via the MIN protocol) enables applications like bus logging or even using a CANPico as a PC CAN interface. The SDK also includes the CANHack toolkit for low-level error injection. The SDK allows Python code to operate on the dual-core RP2040 microcontroller of the Raspberry Pi Pico. It responds in real-time to CAN Bus data traffic with times measured in microseconds rather than milliseconds, making it an excellent platform for hardware-in-the-loop test and emulation.
More on nvtip.com
The PiCAN FD Zero HAT provides CAN Bus FD capability for the Raspberry Pi Zero. The Raspberry Pi Zero is a single-board mini-computer, mainly used to design embedded systems for IoT projects. The economical price, small size, and open-source design of this module make it a suitable pick for various applications.
The PiCAN FD Zero HAT uses the Microchip MCP2518FD CAN controller with MCP2562FD CAN transceiver. The CAN_N and CAN_L connection is made via a four-way plug-in terminal block. Also, onboard is a 1A SMPS that supplies power to the PiCAN FD and Pi Zero board.
Both boards, the CANPico and the PiCAN FD Zero HAT, come with extensive documentation, i.e., user manual, schematics, and programming samples.
The CANPico module is a carrier board for the Raspberry Pi Pico. The Raspberry Pi Pico is a tiny, fast, and adaptable board built using the RP2040, a dual-core Arm Cortex-M0+ processor with 264KB internal RAM and support for up to 16MB of off-chip Flash.
More on nvtip.com
- Brosix Celebrates 20 Years of Private Team Messaging for Small and Mid-Sized Businesses
- Top 15 Mosquito-Infested Cities in Louisiana and East Texas Ranked for 2026 Mosquito Season
- From Broken to Soaring Week 40
- Finnish Political Satire Film Generates 10,000+ Cross-Platform Interactions Following Gandalf Parody Video Across TikTok, YouTube and Telegram
- AI Is Making It Easier for API-First Platforms to Connect, Partner, Reach Customers, and Grow Revenue Faster
The CANPico board is soldered onto the Pico, connecting the Raspberry Pi to a CAN Bus controller and transceiver, ready for connection to a CAN Bus network via a simple screw terminal. In addition, the CANPico carries an instrument header with the CAN H and CAN L signals and the digital RX and TX signals for use with an oscilloscope or logic analyzer. Software support is via an open-source MicroPython SDK.
The open-source MicroPython SDK from Canis Labs implements a sophisticated CAN API, including priority-inversion free drivers, 1μs accuracy timestamps, large buffers, and an API for triggering a logic analyzer or oscilloscope. Support for communicating to a host device over USB (via the MIN protocol) enables applications like bus logging or even using a CANPico as a PC CAN interface. The SDK also includes the CANHack toolkit for low-level error injection. The SDK allows Python code to operate on the dual-core RP2040 microcontroller of the Raspberry Pi Pico. It responds in real-time to CAN Bus data traffic with times measured in microseconds rather than milliseconds, making it an excellent platform for hardware-in-the-loop test and emulation.
More on nvtip.com
- 2026 Editorial Freelancers Association Conference Focuses on Building Sustainable Careers
- netElastic Powers LigaT's High-Performance Broadband Expansion and IPv6 Modernization in Portugal
- Raiku launches rkuSOL with Sanctum, Kamino, Loopscale and Exponent
- Greenland Mines Ltd (N A S D A Q: GRML) Advances Strategic Growth Initiatives as Critical Minerals Demand Accelerates
- Entering the $69 Billion Animal Health Market, Delivering Record Growth, AI-Driven Healthcare Innovation, and Targeting $200 Million Revenue by 2029
The PiCAN FD Zero HAT provides CAN Bus FD capability for the Raspberry Pi Zero. The Raspberry Pi Zero is a single-board mini-computer, mainly used to design embedded systems for IoT projects. The economical price, small size, and open-source design of this module make it a suitable pick for various applications.
The PiCAN FD Zero HAT uses the Microchip MCP2518FD CAN controller with MCP2562FD CAN transceiver. The CAN_N and CAN_L connection is made via a four-way plug-in terminal block. Also, onboard is a 1A SMPS that supplies power to the PiCAN FD and Pi Zero board.
Both boards, the CANPico and the PiCAN FD Zero HAT, come with extensive documentation, i.e., user manual, schematics, and programming samples.
Source: Copperhill Technologies Corporation
Filed Under: Technology
0 Comments
Latest on nvtip.com
- Lineus Medical Completes Financial Restructuring with KMF Investments- Launching a New Era for SafeBreak
- Neuro Recovery Institute Showcases Emerging Immersive Neuro-Rehabilitation Technology at Clinical Innovation Open House
- Community, Conservation & Waterwise Inspiration Bloom on June 6
- Industrial and systems engineers celebrate key leaders in the field at IISE Annual Conference
- Cosanostra Miami Rises as the Best Latin Nightclub in Miami in Under Two Years From its Opening
- CCHR Leader's 50-Year Fight for Psychiatric Drug Victims Gains National Momentum
- Author Releases 7-Day Screen Time Reset for Families as Teachers Worldwide Report Children "Struggling to Grasp Basic Concepts"
- Men's Health Month Begins with Record Proclamations, AP News Coverage, & National Momentum for Men's Health
- AdvisorVault Adds Social Media Archiving to its Consolidated D3P Service
- Bolero – The Show Brings Romance, Rhythm and Latin Passion to The Plaza in Downtown Las Vegas
- UK Financial Ltd Audits Full Ethereum Architecture Verifies Corporate Wallets and 19-Token Ecosystem Ahead of CoinMarketCap Filing for Global Ranking
- Creative Investment Research Analysis Finds Slower GDP Growth, Rising Inflation
- TechHouse Earns Highly Selective Microsoft Support Badge
- J&J Exterminating Celebrates 65th Anniversary and Unveils Strategic Vision at Annual Team Meeting
- Tru by Hilton El Paso Airport Opens to Guests
- Zenylitics Announces Leadership Transition to Continue Accelerated Growth
- Wellness Technology Distributor Helping People Set Up Wellness Center Businesses
- Christian Apocalyptic Thriller Explores Biblical Prophecy, Global Technology, & the Rise of the Ant
- Avery Burton Foundation Announces 2026 Student Scholarship Award Winners
- The Hidden Price Of Lost Property In UK Schools





