A vehicle-mounted, immediately deployable computing platform that accelerates the introduction of recognition, autonomous driving, and intelligence through edge AI.
Falcon is an edge AI computing platform equipped with NVIDIA Jetson Orin NX, designed to be directly mounted on vehicles operating in harsh real-world environments. It enables Physical AI at the edge, executing real-time recognition, decision-making, and autonomous actions on the vehicle. It maintains continuous AI processing performance even under dust, vibration, humidity, and extreme temperature conditions. In addition to supporting up to four GMSL2 cameras, it is compatible with T1 Ethernet, Gigabit Ethernet, NVMe, CAN, USB, and more, allowing for flexible connections to vehicles and various sensors. Furthermore, with CTI's EdgeAI Stack, it leverages AI models such as LLM, VLM, and VLA at the edge, facilitating intelligent human-machine interaction. It can be utilized for autonomous cabin assistance, machine guidance, collision avoidance, 360° surround vision, fleet monitoring, and more. As an NVIDIA Elite Partner with over 10 years of experience with Jetson, CTI provides a specially configured and validated JetPack BSP, supporting the rapid deployment of in-vehicle edge AI.
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basic information
NVIDIA GPU SoC module support: Integrated with Jetson Orin NX (Super Mode enabled) Network: 100BASE-T1 or 1000BASE-T1 x2 (some SI-related limitations may need to be confirmed), 1000BASE-T x1 Camera input: FAKRA GMSL2 input x4 USB: USB 2.0 DRP (Type-C) x1, USB 2.0 Host x1 Storage: M.2 Key-M (NVMe) slot x1 (4-lane PCIe Gen 3/4) CAN bus: CAN 2.0B / FD x2 Input power: +9 V to +36 V (nominal +14 V) Dimensions: 152 mm x 115 mm x 52 mm Operating temperature: -25℃ to +70℃ (fanless design) Maximum weight: 1.15 kg
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Applications/Examples of results
1. Autonomous Cabin Support Utilizing the latest LLM, VLM, and VLA models at the edge to enhance the operator's user experience while supporting the workers' tasks. 2. Collision Avoidance and Proximity Warning Using multiple sensors for surrounding awareness to detect workers, vehicles, and obstacles. This supports accident prevention in crowded sites and poor visibility environments. 3. 360° Surround Vision Real-time synthesized display of the surroundings of large vehicles to reduce blind spots. This assists in safety checks during vehicle movement, loading, and reversing. 4. Machine Guidance and Path Following Maintaining accurate positioning and traveling along pre-set routes or terrain/construction surfaces to support semi-autonomous tasks such as leveling, trenching, and compaction. 5. Fleet Monitoring and Predictive Maintenance Processing vehicle condition and operational data at the edge to identify signs of issues early. This supports reducing downtime and improving the overall operational rate of the vehicle fleet.
Company information
The evolution of digital technology has given rise to new needs, such as autonomous driving and ADAS technologies in the automotive industry, as well as imaging and vision technologies utilizing camera footage in the AI robotics sector. As a result, AI service businesses are transforming the business models of society and companies, leading to significant changes in daily life and society. Asmech collaborates with innovation companies related to AI and mobility in Europe, the United States, and Asian countries, focusing on the procurement of imaging components and devices in the fields of AI & IoT, automotive, and security. We provide cutting-edge products to customers aiming for solution development in the imaging sector, including robotics, autonomous driving, drones, industrial cameras, and recording devices. Additionally, we position service to local customers as one of our key challenges, forming alliances with local businesses, universities, government agencies, and local municipalities. Through our security-related businesses, such as the installation of security cameras and recording services, we aim to contribute to the local community.




