RobinX Announces Self-Developed "Embodied Brain Domain Controller T5"
RobinX Inc. has announced the "Embodied Brain Domain Controller T5," a self-developed integrated control platform for next-generation robots. This high-performance domain controller for Embodied AI integrates AI computing, sensor fusion, real-time control, and functional safety into a single unit, serving as the "brain" for mobile robots and unmanned equipment. It is expected to address labor shortages in the logistics, manufacturing, and infrastructure industries.
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- 📰 Published: May 9, 2026 at 04:05
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RobinX Inc. (Headquarters: Kita-Aoyama, Minato-ku, Tokyo; Representative Director: Kei Kiryu) has announced the "Embodied Brain Domain Controller T5" (hereinafter referred to as "T5"), a self-developed integrated control platform for next-generation robots.
Embodied Brain Domain Controller T5
This product is a high-performance domain controller for Embodied AI, developed entirely in-house by RobinX, from hardware design to software integration. It integrates AI computing, sensor fusion, real-time control, and functional safety into a single unit, serving as a next-generation platform that can be utilized as the "brain" for mobile robots and unmanned equipment.
In recent years, in the logistics, manufacturing, infrastructure, and service industries, the demand for autonomous mobile robots and unmanned facilities has been rapidly expanding, driven by increasing labor shortages and the need for labor-saving. However, to integrate multiple sensors and AI models in real-time and control them with high precision and safety, a high-performance and highly reliable integrated control platform is required.
To meet these market needs, RobinX has developed T5 as a next-generation Embodied AI platform, based on its unique AI and robotics technologies.
Key Features of T5
Integrated Architecture Developed Entirely In-House by RobinX
T5 is an Embodied AI domain controller developed entirely in-house by RobinX, from hardware design to software integration and AI algorithm linkage. It adopts a plug-and-play design through software and hardware integration, allowing flexible adaptation to various robot platforms. Furthermore, its configuration, designed for linkage with top-class international AI models and algorithms, enables advanced recognition, judgment, and control processing.
High-Performance AI Computing and Real-Time Control
This product adopts a high-performance GPU/CPU architecture, supporting inference processing for large-scale AI models and simultaneous execution of multiple tasks. Additionally, by incorporating microsecond-level sensor synchronization technology, it enables high-precision integration of information from multiple sensors such such as LiDAR, cameras, radar, and IMU, allowing for real-time environmental recognition and control. One of its features is its ability to demonstrate stable robot control performance even during high-speed movement or in complex environments.
Functional Safety and Industrial Application Support
It adopts a highly reliable design intended for industrial use, capable of continuous operation for long periods and in high-load environments.
Furthermore, with a design that anticipates functional safety (ASIL-D) compliance, it is suitable for deployment in mobile robots and unmanned facilities where safety is paramount. It is envisioned for use in various industrial scenarios, including logistics, factories, infrastructure, and more.
Anticipated Use Cases
T5 can be utilized as an integrated control platform for various mobile robots and unmanned equipment.
Key anticipated applications are as follows:
Autonomous mobile forklifts
Automated Guided Vehicles (AGV) / Autonomous Mobile Robots (AMR)
Autonomous patrol robots
Unmanned work machines
Outdoor mobile robots
Delivery robots
Industrial mobile robots
It supports the introduction of robots in diverse industrial scenarios, including logistics, factories, infrastructure, outdoor work, and service sectors.
Main Specifications
Product Name: Embodied Brain Domain Controller T5
Application: Integrated control platform for mobile robots
AI Computing: High-performance GPU/CPU architecture
Sensor Support: Camera / LiDAR / Radar / IMU
Sensor Synchronization: Microsecond-level synchronization
Memory: Large capacity LPDDR5x
Storage: High-speed NVMe SSD
Safety Design: Functional safety compliant (ASIL-D design compliant)
Features: Software/hardware integration, Plug-and-play
Company Profile
Company Name: RobinX Inc.
Headquarters: Miwa Building 2F, 2-9-15 Kita-Aoyama, Minato-ku, Tokyo 107-0061
Office: Shintoyo Akasaka Building, 4-9-25 Akasaka, Minato-ku, Tokyo 107-0052
Established: February 2025
Representative: Representative Director Kei Kiryu
Business Activities: Development and provision of AI solutions, automatic recognition devices, IoT equipment, and systems
Web: https://robinx.ai/
Embodied Brain Domain Controller T5
This product is a high-performance domain controller for Embodied AI, developed entirely in-house by RobinX, from hardware design to software integration. It integrates AI computing, sensor fusion, real-time control, and functional safety into a single unit, serving as a next-generation platform that can be utilized as the "brain" for mobile robots and unmanned equipment.
In recent years, in the logistics, manufacturing, infrastructure, and service industries, the demand for autonomous mobile robots and unmanned facilities has been rapidly expanding, driven by increasing labor shortages and the need for labor-saving. However, to integrate multiple sensors and AI models in real-time and control them with high precision and safety, a high-performance and highly reliable integrated control platform is required.
To meet these market needs, RobinX has developed T5 as a next-generation Embodied AI platform, based on its unique AI and robotics technologies.
Key Features of T5
Integrated Architecture Developed Entirely In-House by RobinX
T5 is an Embodied AI domain controller developed entirely in-house by RobinX, from hardware design to software integration and AI algorithm linkage. It adopts a plug-and-play design through software and hardware integration, allowing flexible adaptation to various robot platforms. Furthermore, its configuration, designed for linkage with top-class international AI models and algorithms, enables advanced recognition, judgment, and control processing.
High-Performance AI Computing and Real-Time Control
This product adopts a high-performance GPU/CPU architecture, supporting inference processing for large-scale AI models and simultaneous execution of multiple tasks. Additionally, by incorporating microsecond-level sensor synchronization technology, it enables high-precision integration of information from multiple sensors such such as LiDAR, cameras, radar, and IMU, allowing for real-time environmental recognition and control. One of its features is its ability to demonstrate stable robot control performance even during high-speed movement or in complex environments.
Functional Safety and Industrial Application Support
It adopts a highly reliable design intended for industrial use, capable of continuous operation for long periods and in high-load environments.
Furthermore, with a design that anticipates functional safety (ASIL-D) compliance, it is suitable for deployment in mobile robots and unmanned facilities where safety is paramount. It is envisioned for use in various industrial scenarios, including logistics, factories, infrastructure, and more.
Anticipated Use Cases
T5 can be utilized as an integrated control platform for various mobile robots and unmanned equipment.
Key anticipated applications are as follows:
Autonomous mobile forklifts
Automated Guided Vehicles (AGV) / Autonomous Mobile Robots (AMR)
Autonomous patrol robots
Unmanned work machines
Outdoor mobile robots
Delivery robots
Industrial mobile robots
It supports the introduction of robots in diverse industrial scenarios, including logistics, factories, infrastructure, outdoor work, and service sectors.
Main Specifications
Product Name: Embodied Brain Domain Controller T5
Application: Integrated control platform for mobile robots
AI Computing: High-performance GPU/CPU architecture
Sensor Support: Camera / LiDAR / Radar / IMU
Sensor Synchronization: Microsecond-level synchronization
Memory: Large capacity LPDDR5x
Storage: High-speed NVMe SSD
Safety Design: Functional safety compliant (ASIL-D design compliant)
Features: Software/hardware integration, Plug-and-play
Company Profile
Company Name: RobinX Inc.
Headquarters: Miwa Building 2F, 2-9-15 Kita-Aoyama, Minato-ku, Tokyo 107-0061
Office: Shintoyo Akasaka Building, 4-9-25 Akasaka, Minato-ku, Tokyo 107-0052
Established: February 2025
Representative: Representative Director Kei Kiryu
Business Activities: Development and provision of AI solutions, automatic recognition devices, IoT equipment, and systems
Web: https://robinx.ai/