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Quaise Energy — Houston, Texas
Quaise Energy is unlocking Earth’s deep heat to deliver clean, reliable, baseload energy at scale—almost anywhere in the world. As both a technology innovator and project developer, Quaise builds and operates solutions that harness superhot geothermal energy far below the surface, enabling power generation that can rival the output of today’s most efficient fossil fuel and nuclear plants. Leveraging millimeter wave drilling, developed after more than a decade of research at MIT, Quaise’s mission is to make superhot geothermal a backbone of the modern energy system, offering affordable, zero-carbon power and true energy independence for communities and nations everywhere.
Quaise is seeking a highly motivated early-career RF Engineer to support the design, modeling, testing, and deployment of high-power RF and millimeter-wave transmission systems for our millimeter-wave drilling technology, and further the development of high power, high efficiency gyrotron sources. This role will collaborate with other cross-functional teams to apply advanced electromagnetic theory and RF design skills in a fast-moving, multidisciplinary R&D environment, as well as troubleshoot and resolve RF-related issues. ) Support the design, simulation, and testing of RF and millimeter-wave components and transmission systems.
Assist in development and integration of waveguide components such as bends, tapers, mode converters, and diagnostics. Perform electromagnetic modeling and simulation using tools such as HFSS, CST, COMSOL, MATLAB, or similar. Participate in laboratory experiments, hardware integration, and field testing activities.
Analyze test data and contribute to iterative design improvements. Prepare technical documentation, test reports, and design notes. Collaborate with mechanical, electrical, and field engineering teams to support system development.
Assist in packaging and ruggedization of RF systems for transition from laboratory to field deployment. Support troubleshooting of RF performance issues and system diagnostics. Contribute to safe lab practices and continuous improvement of engineering processes.
Perform other related duties as assigned. , gyrotrons, klystrons, TWTs) or high-voltage RF environments Experience using electromagnetic or multiphysics simulation tools (HFSS, CST, COMSOL, MATLAB, or similar) Programming experience (MATLAB, Python, or similar) for data analysis, modeling, or automation Awareness of thermal, mechanical, and materials considerations in high-power RF systems Experience supporting experimental system integration, troubleshooting, or lab-to-field technology transitions Strong analytical and problem-solving skills with willingness to learn through hands-on experimentation Ability to collaborate effectively in a multidisciplinary startup environment Excellent written and verbal communication skills Strong organizational skills and attention to detail Proficient with Microsoft Office Suite or related software.
Responsibilities
This role does not include formal people-management
Education and Experience Bachelor’s degree in Electrical Engineering, RF Engineering, Applied Physics, or related field is required. PhD in Electrical Engineering, Applied Physics, RF/Microwave Engineering, or related discipline preferred.