Forcesteed Robotics (Headquarters: Koto-ku, Tokyo; CEO: Hiroyuki Osawa), a developer of AI, image recognition, and robotics, will exhibit at the Chuo Koki Co., Ltd. booth (Booth No. F17) at 'Robot Technology Japan 2026,' held at Port Messe Nagoya from June 11 (Thu) to June 13 (Sat), 2026.
In this exhibition, the company will introduce 'Forcesteed-LEIVOR,' a general-purpose humanoid robot controller currently under development for robot system integrators (SIers).
Additionally, visitors will be able to see the potential of humanoid applications that combine human operation and robots through a bilateral operation experience using ugo Inc.'s 'ugo PRO R&D model.'
Exhibition Highlights
General-Purpose Humanoid Robot Controller 'Forcesteed-LEIVOR'
Forcesteed-LEIVOR is a robot controller for humanoids that combines movement design through teaching, which has been widely used in the industrial robot field, with AI robotics technologies such as imitation learning and inference processing.
The company aims to design and operate robot movements utilizing AI, while leveraging expertise gained from existing robot operations.
Bilateral Operation Experience (ugo PRO R&D model)
At the venue, the company will conduct a bilateral operation experience using the ugo PRO R&D model.
Visitors can experience the operation of conveying human movements to a robot, allowing them to visualize the operation where humans and robots coordinate.
Joint Exhibition with Chuo Koki Booth
At the Chuo Koki booth, automation solutions utilizing collaborative robots, transport robots, humanoids, and simulations will be introduced.
Forcesteed Robotics will exhibit Forcesteed-LEIVOR within the same booth to introduce initiatives toward humanoid utilization.
Exhibition Overview
Exhibition Name: Robot Technology Japan 2026 Dates: June 11 (Thu) – June 13 (Sat), 2026 Venue: Port Messe Nagoya Booth Number: F17 Exhibition Format: Partner exhibition with Chuo Koki Co., Ltd.
FACT BOX
- Source: PR TIMES
- Category: Event
- Products / services: Forcesteed-LEIVOR / FSR-AC