职位描述
CFS is designing ARC as the world's first commercial fusion power plant with the goal of bringing reliable and clean fusion energy to the grid. Due to device activation and commercial uptime needs, ARC will need periodic, fast, and reliable maintenance to be performed fully remotely. This will require novel solutions and integration in the fields of robotics, remote handling equipment (RHE), plant layout, manufacturing, and tokamak design. ARC's Remote Maintenance System will thus be a critical aspect of realizing CFS's mission to deliver the urgent transition to fusion energy.
The Remote Maintenance team is responsible for designing ARC's Remote Maintenance System. As a Staff Remote Maintenance Engineer on the team, you will develop ARC's maintenance scheme by designing RHE and collaborating with tokamak and plant engineering teams in the design of a maintainable power plant. You will play a key role in ARC's pre-conceptual design phase along with other teams and navigate complex multi-disciplinary problems involving physics, neutronics, thermo-fluids, structures, maintenance, manufacturing, assembly, techno-economics, and other disciplines. This role also requires proactive R&D in novel remote maintenance technologies.
What you'll do
- Lead the development and strategic execution of the operations for the ARC Remote Maintenance System
- Drive the conceptual design process of the ARC fusion power plant, providing expert technical guidance for cross-functional teams
- Lead the design of ARC's radiation hardened remote handling equipment (RHE) by incorporating a mix of existing robotic technologies, custom hardware, and remotely operated heavy lift equipment
- Perform expert-level maintenance assessments of the tokamak and plant to shape the development of ARC as a remotely maintainable power plant, defining processes that impact direct work and identifying/mitigating significant long-term risks
- Collaborate closely with tokamak engineering teams to assist in designing the ARC tokamak for remote maintainability and finding creative and novel solutions for tokamak joints
- Perform high level multi-disciplinary trade studies of solutions that involve complex and ambiguous us tradeoffs between physics, neutronics, mechanical, thermo-fluids, electrical, maintenance, materials, manufacturing, techno-economics, and other disciplines
- Lead multiple teams and manage projects to solve tough multi-disciplinary problems by resolving conflicts and driving key decisions across teams
- Define and own the key R&D strategy needed for the ARC remote maintenance program, and help establish/direct the plans for executing the R&D campaigns internally or with external partners
- Research established and cutting-edge remote handling solutions to assess their application in the ARC remote maintenance system to influence strategic shifts and novel approaches to improve performance, reduce cost, and increase reliability
- Work with external RHE/robotics organizations and general industry to manage contracted work, collaborate on cutting edge R&D, and transfer knowledge and expertise into CFS
- Establish CFS's remote maintenance design principles for RHE, the Tokamak, and plant, while propagating best practices and actively taking ownership of the growth and development of junior and peer engineers
What we're looking for
- Structural, Mechanical, or Aerospace Engineering B.S
- At least 10 years of mechanical engineering experience in the design, fabrication, testing, operations, integration, and commissioning of complex mechanical structures (e.g. fusion, fission, aerospace, marine)
- At least 10 years of technical experience in the design of remote handling equipment (RHE) using robotics or remotely operated precision mechanical structures (e.g. remote welding/cutting, manipulation, alignment, rescue, inspections)
- Proven track record of driving R&D campaigns of novel technology to increase TRL and unlock new design solutions in remote maintenance fields such as remote welding/cutting, inspections, bolting, manipulation, alignment, sensing, mechatronics, rad hard, and cleanliness
- Deep expertise with standard actuation, guidance mechanisms, sensing, and structural mechanisms
- Expertise in structural analysis via both hand calcs and finite element analysis (Ansys preferred)
- Familiar with CAD, (NX preferred)
- Ability to effectively lead a multidisciplinary team of engineers, scientists, technical staff, executives, and others
- Ability to clearly communicate highly complex concepts to diverse audiences and build consensus
- Safety conscious
Bonus points for
- Structural, Mechanical, or Aerospace Engineering M.S
- Experience operating with near-complete independence to drive conceptual design of complex systems involving high level, multi-disciplinary trade studies of both RHE and machine design (e.g. tokamak, fission core, sub-sea hardware, aerospace)
- Experience with the implementation of radiation hardened equipment and methods into RHE design
- Experience with mechatronics or applied robotics
- Experience with rescue or decommissioning RHE
- Experience with site layout design of remotely operated facilities
- Experience with activated waste handling (volume reduction, casking)
- Experience with remote cleanliness methods for UHV environments
- Experience with industrial maintenance facility layout
- Familiarity with basics of sensing, high power, controls, and fluid systems
- Familiarity with ultra high vacuum processes
- Experience with fault tree analysis or fault management and recovery for complex integrated systems
- Knowledge of fabrication methods such as welding and machining
- Knowledge of engineering materials basics for metals and composites
- Proficient in CAD (NX preferred)
- Self-driven and autonomous, capable of managing ambiguous assignments with loosely-defined outcomes
- Aptitude to use data to drive decisions
- Familiarity and experience with end-to-end processes with an emphasis on creativity and simplicity
- The ability to thrive in fast-paced, dynamic environments
Must-have Requirements
- Perform activities such as typing and sitting for extended periods of time
- Dedication to safety to mitigate industrial hazards that may include heat, cold, noise, fumes, strong magnets, lead (Pb), high voltage, and cryogenics
- Willingness to travel or work required nights/weekends/on-call occasionally. Travel expected up to 15%
$130,000 - $200,000 a year
Salary range for this full-time position + equity + benefits. The actual salary will depend on level, location, qualifications, and experience. The range displayed on each job posting reflects new hire salaries for the position across all US locations. Benefits include:
- Competitive compensation with equity
- 13 Company-wide Holidays
- Flexible vacation days
- 10 sick days
- Generous parental leave policy
- Health, dental, and vision insurance
- 401(k) with employer matching
- Professional growth opportunities
- Team-building activities
At CFS, we excel in fast-paced environments, driven by our values of integrity, execution, impact, and self-critique. As we grow, we're eager to bring on mission-driven folks who offer diverse perspectives and fresh ways to tackle challenges.
We value diversity deeply and are proud to be an equal opportunity employer by choice. We consider all qualified applicants equally, regardless of race, color, national origin, ancestry, citizenship status, protected veteran status, religion, physical or mental disability, marital status, sex, sexual orientation, gender identity or expression, age, or any other basis protected by law.
This role requires compliance with U.S. laws concerning the export of controlled or protected technologies or information (collectively, "Export Control Laws"). Any offer of employment will be contingent on the need for compliance with such Export Control Laws.
薪资与福利
职位详情
关于 Commonwealth Fusion Systems
公司概况
英联邦聚变系统(CFS)
总部美国马萨诸塞州剑桥
成立时间2018年
规模约430名员工(来源:zoominfo.com)。收入数据不一,报告显示为2.113亿美元或3170万美元,但作为一家专注于研发的前期聚变开发公司,这些数据可能反映的是融资或运营而非销售。
他们的业务
英联邦聚变系统(CFS)是一家开创性的私人聚变能源公司,专注于基于托卡马克的磁约束聚变。CFS作为麻省理工学院等离子体科学与聚变中心的衍生公司成立,致力于利用高温超导磁体实现商业净能量生产(来源:cfs.energy)。该公司在技术上取得了显著进展,特别是在开发紧凑型聚变机器方面,利用了数十年的托卡马克科学。他们的旗舰项目SPARC和ARC旨在在未来几年内展示净能量增益和商业可行性(来源:cfs.energy)。
项目与业绩
CFS目前正在进行多个开创性项目,最引人注目的是SPARC的建设,预计将成为全球首个净能量聚变机器。SPARC位于马萨诸塞州德文斯的聚变能源校园,旨在于2020年代末展示净能量增益(来源:cfs.energy)。此外,CFS还计划ARC项目,这是一个400 MW级的电网规模托卡马克发电厂,旨在2030年代初进行商业部署。这些项目得益于显著的技术进步,包括在2024年11月成功测试中央螺线管磁体模块(CSMC),确认了SPARC关键组件的可制造性(来源:zoominfo.com)。
近期发展
在过去两年中,CFS取得了显著进展,包括在2023年2月10日开放德文斯聚变能源校园,活动中有美国能源部长詹妮弗·格兰霍姆等知名人士出席(来源:cfs.energy)。该公司还获得了大量资金,2024年8月筹集了8.63亿美元,继2023年5月的18亿美元融资后,总融资超过20亿美元(来源:wbjournal.com)。此外,CFS宣布在弗吉尼亚州切斯特菲尔德县设立首个商业发电厂,计划独立融资和运营,并计划在2030年代初与电网连接(来源:zoominfo.com)。
在这里工作
CFS提供多种职位,涵盖聚变科学、工程、制造和材料科学等多个领域。大多数员工在德文斯校园工作,员工人数已超过430人(来源:cfs.energy)。公司文化强调快速执行和透明度,吸引了来自聚变和制造行业的顶尖人才。主要高管包括联合创始人兼首席执行官鲍勃·穆姆加德,以及其他运营和科学领域的领导者,表明对硬科技和物理学专业知识的强烈需求(来源:nasdaqprivatemarket.com)。虽然具体福利未详细说明,但规模扩大和投资者支持表明在以使命为驱动的环境中提供竞争力的薪酬方案(来源:cfs.energy)。求职者被鼓励关注他们的职业页面,以获取与SPARC和ARC进展相关的职位空缺。
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