Analyze, design, test, control, and maintain satellite propulsion systems.
Drive HAPS commercialization projects, define flight and weather-response requirements, coordinate aviation authorities and manufacturers, and align stakeholders. Remote work is available.
Design and evaluate prototype and production circuit boards for medical imaging and specimen testing equipment, including FPGA-based systems, and support revisions to existing products. The role is based at Canon’s Tokyo headquarters and includes EMC and electrical safety compliance work.
Manage project execution plans for new product and solution development in autonomous systems.
Maintains and monitors electrical and mechanical systems in an AWS data center, investigates facility failures, coordinates maintenance, manages vendors, and installs or removes equipment.
Leads gyrotron control-system architecture, integrating high-voltage power, instrumentation, and safety controls. Coordinates interfaces and supports commissioning and fault diagnosis.
Responsible for the development, testing, and maintenance of the satellite's attitude and orbit control system.
The Tokyo-based Field Service & Deployment Mechanic role focuses on field service and deployment for Telexistence’s remote-controlled robots, which use artificial intelligence.
Develop optimal control algorithms for E2E autonomous driving models, ensuring safety constraints are met.
Design and lead the implementation of warehouse logistics automation systems, integrating conveyors, AGV/AMRs, robots, and sensors to control and optimize operations through software.
Tests AD/ADAS vehicle-control software against system requirements, creates scenarios, investigates issues through real-vehicle trials, and coordinates improvements with engineering stakeholders.
Prepare building cost estimates and execution budgets for new S- and RC-structure apartments, factories, and stores, while supporting site teams and client negotiations in Tokyo.
Leads the technical integration of customer satellites with the ZERO rocket, from interface design and testing through launch-site operations, safety, quality, and orbital insertion.
Develop and electrically design RF communications and radar equipment for satellites, propose technical solutions to customers, and coordinate work from order receipt through development and delivery.
Support structural and thermal spacecraft design, perform computational analyses, prepare specifications and reviews, and assist with testing, manufacturing, integration, and supplier coordination.
Design and execute data collection for construction equipment, estimate state-space models, and develop control algorithms to enhance autonomous construction technology.
Lead the design, manufacturing, testing, and verification of power systems for Earth observation satellites, engaging in various project phases and technical discussions.
Plans energy facilities for AI infrastructure and green transformation, including batteries and power generation, and coordinates design, EPC, permits, and supplier contracts. Remote work is available.
Design and develop sensors and computing devices for autonomous vehicles, understanding requirements and specifications.
Facility Engineer for DCEO. Requires practical experience in electrical or mechanical engineering, manufacturing, energy, nuclear power, or telecommunications.
Leads package-equipment design for fusion plants, integrating tritium recovery and hydrogen production systems. Manages specifications, vendor reviews, fabrication, testing, delivery, and safety.
Leads hands-on assembly and testing of satellite components and spacecraft, coordinating mechanical, electrical and harness work. Guides contractors and investigates faults.
Design, test, and deploy electrical systems for robotic platforms, covering PCBs, power distribution, sensors, communications, safety, debugging, reliability, and production support.