{"data":{"company":{"name":"Exowatt","slug":"exowatt","logo_url":"https://logos.yubhub.co/exowatt.com.png","canonical_domain":"exowatt.com","editorial":null,"wikidata_id":null,"founded":null,"ceo":null,"founders":[],"hq_location":null,"industry":null,"employee_count":null,"official_website":null,"wikipedia_url":null,"stock_ticker":null,"stock_price":null,"market_cap":null,"revenue":null,"ipo_date":null,"sector":null,"full_time_employees":null,"company_description":null,"twitter_username":null,"linkedin_id":null,"instagram_username":null,"facebook_id":null,"parent_org":null,"country":null,"github_org":null,"github_public_repos":null,"github_followers":null,"github_verified":0,"github_description":null,"github_location":null,"github_blog":null,"github_twitter":null,"stock_exchange":null,"stock_beta":null,"stock_range":null,"stock_is_actively_trading":null,"fmp_image":null,"fmp_address":null,"fmp_city":null,"fmp_state":null,"fmp_country":null,"recent_news":[{"title":"Exowatt Schedules Las Vegas Summit Focused on AI Infrastructure and Sustainable Data Centers - TipRanks","url":"https://news.google.com/rss/articles/CBMi1wFBVV95cUxNNk5Qak9PM3pVR091UkJ4R0cwRGd2amYtRG1IeVh2cjFPZE45Q0VCakxzYXlYU3AtbkZSUmtEUFkzblRWSTluZEZscUxTa0VRVlNFM1FrcEFCSVJsdXlpSFlCMDVFR1dRNjFTakVrYlFVc2lBek92TmlBaFlXRTY4U0JZakRhOERhNE9aSVNZc3cxSHlGX0FMN2ZJenJ0YkU3VnhBUndwUmdDbUlLQ1ExTUpOQVUyUWlnaUVsYjZsVkFoZkxaSjdZR0pDd3doTDJpV1pNQWllNA?oc=5","publisher":"TipRanks","date":"2026-08-23","snippet":"Exowatt Schedules Las Vegas Summit Focused on AI Infrastructure and Sustainable Data Centers TipRanks"},{"title":"Exowatt Highlights Power Constraints as AI Data Center Demand Accelerates - TipRanks","url":"https://news.google.com/rss/articles/CBMivgFBVV95cUxPVElWemh2X3ludmNGdERlSDVjUDhNbDZPUVpxc3V2TDgta2twY2pUWTJET18wRDFNSC1wZFg5MFZaeVRZUXY4VWhjdzhYRzRvT18yUm5IVVVwWU05ZFRDd1dlUWo0bllQTFBRTWE1cUt1QllxR3BVRDRnVlVPa0dzTTRQWWpISGhZX2JWdlRucUZqVUp2dFRtdEdaUGpldm1yaFp5TENTdmpqa3M2SmpwcmVVdThoTWVpb2hIRHBR?oc=5","publisher":"TipRanks","date":"2026-08-19","snippet":"Exowatt Highlights Power Constraints as AI Data Center Demand Accelerates TipRanks"}],"search_interest_index":null,"search_interest_trend":null,"wikipedia_monthly_views":null,"hn_mention_count":null,"hn_top_stories":[],"wayback_first_year":null,"sec_incorporation_state":null,"sec_latest_filing_type":null,"sec_latest_filing_date":null,"sec_filings":[],"research_papers_count":null,"research_citations_count":null,"research_h_index":null,"research_topics":[],"is_federal_contractor":null,"earnings_calendar":[],"industry_canonical":null,"enrichment_sources":[],"last_enriched_at":null},"hiring":{"total_jobs":17,"categories":[{"category":"engineering","count":14},{"category":"manufacturing","count":2},{"category":"hr","count":1}],"experience_levels":[{"level":"senior","count":11},{"level":"mid","count":4}],"work_arrangements":[{"arrangement":"onsite","count":16}],"top_titles":[{"title":"Mechanical Engineer - Structural Design","count":2},{"title":"Mechanical Engineer - Heat Exchanger Design","count":2},{"title":"Technical Program Manager - Supply Chain & Manufacturing","count":1},{"title":"Senior HR Business Partner","count":1},{"title":"Quality Engineer","count":1},{"title":"Power Systems Engineer - EMT Modeling/Simulation & Test Validation","count":1},{"title":"Optomechanical Integration & Test Engineer (Miami, FL)","count":1},{"title":"Mechanical Engineer – Optical Systems","count":1},{"title":"Lead Thermal Design Engineer","count":1},{"title":"Lead Power Systems Engineer","count":1},{"title":"Lead Optical Engineer","count":1},{"title":"General Application - Join the Exowatt Talent Network","count":1},{"title":"Electrical Engineer","count":1},{"title":"Controls & Firmware Engineer","count":1},{"title":"Contract Technician","count":1}],"locations":[{"location":"miami, fl","count":8},{"location":"austin, tx","count":6},{"location":"miami","count":1},{"location":"austin","count":1}],"skills":[{"skill":"Mechanical Engineering","required":6,"preferred":0,"total":6},{"skill":"GD&T ASME Y14.5","required":4,"preferred":0,"total":4},{"skill":"Renewable Energy Systems","required":1,"preferred":3,"total":4},{"skill":"Solar Energy","required":1,"preferred":2,"total":3},{"skill":"Finite Element Analysis","required":3,"preferred":0,"total":3},{"skill":"Optical Engineering","required":3,"preferred":0,"total":3},{"skill":"Python","required":3,"preferred":0,"total":3},{"skill":"Heat Exchanger Design","required":2,"preferred":0,"total":2},{"skill":"Thermal Energy Storage","required":2,"preferred":0,"total":2},{"skill":"Thermodynamics","required":2,"preferred":0,"total":2},{"skill":"Fluid Mechanics","required":2,"preferred":0,"total":2},{"skill":"Thermal Coatings","required":2,"preferred":0,"total":2},{"skill":"Concentrated Solar Power","required":0,"preferred":2,"total":2},{"skill":"Structural Design","required":2,"preferred":0,"total":2},{"skill":"3D CAD Software","required":2,"preferred":0,"total":2},{"skill":"Heat Transfer","required":1,"preferred":1,"total":2},{"skill":"High-temperature Materials","required":1,"preferred":1,"total":2},{"skill":"Power Electronics","required":2,"preferred":0,"total":2},{"skill":"Thermal Systems","required":0,"preferred":2,"total":2},{"skill":"Concentrating Optics","required":0,"preferred":2,"total":2}],"salary_stats":null,"job_types":[{"type":"full-time","count":15},{"type":"contract","count":2}],"latest_jobs":[{"id":"job_5549cd44-f0f","title":"Technical Program Manager - Supply Chain & Manufacturing","source_url":"https://jobs.lever.co/exowatt/564725af-d99f-491d-b419-9967aa0bd8c1","location":"Austin, TX","job_type":"Full-time","experience_level":"senior","work_arrangement":"onsite","category":"Manufacturing","description":"<p>Exowatt is revolutionizing the energy landscape for the AI era with our groundbreaking P3 system that captures solar energy, stores it as heat, and generates electricity on demand.</p>\n<p>We are hiring a Technical Program Manager to be the connective tissue between Engineering, Supply Chain, Manufacturing, and Operations. You will own the end-to-end execution of programs that take the P3 from design release through supplier onboarding, NPI builds, and volume production ramp.</p>\n<h3>What You&#39;ll Do</h3>\n<ul>\n<li>Own cross-functional program plans across Engineering, Supply Chain, Manufacturing, Quality, and Operations , including milestones, dependencies, critical path, and executive-ready status reporting.</li>\n<li>Drive New Product Introduction (NPI) for P3 subsystems and modules: lead phase-gate reviews (EVT, DVT, PVT), coordinate build plans, and close out exit criteria with engineering and ops.</li>\n<li>Manage the supplier program calendar , onboarding, tooling, first-article, PPAP/FAI, and capacity commitments , and hold partners accountable to agreed schedules and deliverables.</li>\n<li>Operate the production ramp: partner with Manufacturing Engineering and Operations to sequence build slots, material availability, and yield targets against committed delivery dates.</li>\n<li>Identify and drive resolution of risks and bottlenecks , component lead times, tooling delays, supplier quality issues, design-change impact , before they hit the critical path.</li>\n<li>Build the program management operating system: cadences, dashboards, risk registers, RAID logs, and change-management processes that scale as we grow from units to fleets.</li>\n<li>Lead BOM release, ECO, and design-change coordination between Engineering and Supply Chain so that changes land on the floor with the right parts, documentation, and training.</li>\n<li>Translate executive-level goals into clear program objectives and KPIs (on-time delivery, landed cost, yield, cycle time) and report progress with the rigor a board-backed hardware company demands.</li>\n<li>Travel to suppliers, contract manufacturers, and our Miami production site as needed to unblock programs in person.</li>\n</ul>\n<h3>What You Bring</h3>\n<ul>\n<li>7+ years of program or project management experience in hardware, with meaningful time spent in supply chain, manufacturing, or operations at a product company.</li>\n<li>Proven track record driving NPI programs from prototype through volume production , ideally for complex electromechanical, thermal, or energy systems.</li>\n<li>Deep fluency in the language of hardware: BOMs, ECOs, PLM, MRP/ERP, tooling timelines, PPAP/FAI, lead times, Incoterms, capacity planning, and yield.</li>\n<li>Strong supplier- and CM-facing experience: you know how to structure a schedule, run an escalation, and make a commitment real.</li>\n<li>Excellent written and verbal communication , you can brief the CEO, align a skeptical engineering lead, and coach a supplier project manager in the same day.</li>\n<li>Bias to action and high comfort with ambiguity; you build the plan when there isn&#39;t one and you adjust it faster than conditions change.</li>\n<li>Bachelor&#39;s degree in Engineering, Operations, Supply Chain, or a related technical field.</li>\n</ul>\n<h3>Nice to Haves</h3>\n<ul>\n<li>Experience at a venture-backed hardware startup during a manufacturing ramp.</li>\n<li>Background in clean energy, thermal systems, heavy industrial equipment, automotive, or aerospace.</li>\n<li>PMP, Lean Six Sigma, or equivalent program management credentials.</li>\n<li>Familiarity with tools like Jira, Asana, Smartsheet, MS Project, Arena/Windchill, and NetSuite (or similar ERP).</li>\n<li>Willingness and ability to work primarily on-site in Austin and travel domestically and internationally to suppliers and partners.</li>\n</ul>\n<h3>Additional Information</h3>\n<p>What We Offer:</p>\n<ul>\n<li>Competitive salary and equity options.</li>\n<li>Comprehensive benefits package, including health, dental, and retirement plans.</li>\n<li>A dynamic work environment that fosters creativity and innovation.</li>\n<li>Opportunities for professional growth and development in a rapidly evolving industry.</li>\n<li>Relocation assistance.</li>\n</ul>","enriched_at":1789679073203},{"id":"job_acdd15d2-06e","title":"Contract Technician","source_url":"https://jobs.lever.co/exowatt/c0025d89-1859-4587-9a7b-f4e1ca5704ad","location":null,"job_type":"contract","experience_level":"mid","work_arrangement":"onsite","category":"Manufacturing","description":"<p>Exowatt is revolutionizing the energy landscape for the AI era with our groundbreaking P3 system that captures solar energy, stores it as heat, and generates electricity on demand.</p>\n<p>We are hiring Contract Technicians to build and support our power modules end to end: welding and fabricating structural components, assembling mechanical subsystems, wiring control boxes, and keeping shop equipment running. This is hands-on work across a range of disciplines. You will not be doing the same task every day.</p>\n<h3>What you will do</h3>\n<ul>\n<li>Perform MIG and TIG welding on carbon steel, stainless, and aluminum to print and to spec</li>\n<li>Fabricate sheet metal and structural components , layout, cutting, forming, drilling, grinding, and finishing</li>\n<li>Assemble mechanical parts and subassemblies from drawings, BOMs, and work instructions</li>\n<li>Build electrical control boxes: panel layout, wire routing and termination, harness assembly, labeling, and continuity checks</li>\n<li>Troubleshoot, service, and maintain shop and process equipment including vacuum pumps, chillers, compressors, and related systems</li>\n<li>Use precision measuring tools (calipers, micrometers, dial indicators) to verify work</li>\n<li>Document build steps, record deviations, and feed issues back to engineering</li>\n<li>Follow all safety, lockout/tagout, and PPE requirements</li>\n</ul>\n<h3>Required qualifications</h3>\n<ul>\n<li>3+ years of hands-on technician, fabrication, or manufacturing experience</li>\n<li>Demonstrated welding skill (MIG and/or TIG) with the ability to pass a weld test</li>\n<li>Metal fabrication experience , comfortable with shears, brakes, saws, grinders, and drill presses</li>\n<li>Ability to read and work from mechanical drawings, schematics, and wiring diagrams</li>\n<li>Experience wiring low-voltage control panels and terminating conductors cleanly</li>\n<li>Practical troubleshooting experience on rotating or pressure equipment (pumps, compressors, chillers, HVAC, or similar)</li>\n<li>Able to lift 50 lbs, stand for extended periods, and work in a shop environment</li>\n<li>Legally authorized to work in the United States</li>\n</ul>\n<h3>Preferred qualifications</h3>\n<ul>\n<li>AWS welding certification (D1.1, D17.1, or equivalent)</li>\n<li>Experience in energy, aerospace, industrial equipment, or a similar low-volume/high-mix build environment</li>\n<li>Familiarity with vacuum systems, thermal systems, or high-temperature components</li>\n<li>Machining experience (lathe, mill) or CNC exposure</li>\n<li>Experience with prototype or first-article builds where instructions are still being written</li>\n<li>OSHA 10 or OSHA 30</li>\n<li>Forklift or aerial lift certification</li>\n<li>Bilingual English/Spanish</li>\n</ul>","enriched_at":1787832754739},{"id":"job_5647d85f-dc4","title":"Senior HR Business Partner","source_url":"https://jobs.lever.co/exowatt/f8c6baf4-a9ba-4392-bbe8-2a45e11335df","location":"Austin, TX","job_type":"contract","experience_level":"senior","work_arrangement":"onsite","category":"HR","description":"<p>Exowatt is revolutionizing the energy landscape for the AI era with our groundbreaking P3 system that captures solar energy, stores it as heat, and generates electricity on demand.</p>\n<p>As a Senior HR Business Partner at Exowatt, you will serve as a strategic partner to leaders across our engineering and operations teams. This is a 6-month contract role to start, based in Austin and reporting to the Head of People &amp; Talent.</p>\n<h3>What You&#39;ll Do</h3>\n<p>Strategic Business Partnership: Act as a trusted advisor to leaders and managers. Anticipate organisational needs, connect people strategy to business outcomes, and challenge assumptions through evidence and insight.</p>\n<p>Performance Management &amp; Talent Strategy: Run end-to-end performance review and talent review cycles with rigour and fairness; goal setting, calibration, ratings, and merit/equity refresh planning.</p>\n<p>Organizational Design &amp; Effectiveness: Partner with leaders to design scalable org structures, strengthen alignment, and enable growth.</p>\n<p>Coaching &amp; Influence: Build trusted relationships with managers and leaders, providing candid, actionable feedback that sharpens leadership effectiveness.</p>\n<p>Compensation &amp; Total Rewards: Partner with the Head of People &amp; Talent on compensation strategy and execution; benchmarking roles against market data, maintaining salary bands, and guiding managers through offer, promotion, and adjustment decisions with consistency and equity.</p>\n<p>Analytical &amp; Data-Driven Decision Making: Leverage people data to identify trends, diagnose root causes, and drive measurable improvements in organisational health.</p>\n<p>Project Management &amp; Operational Excellence: Drive cross-functional people initiatives end-to-end; from scoping and planning to execution and follow-through.</p>\n<p>Cultural Stewardship &amp; Employee Experience: Model and amplify Exowatt&#39;s values and performance standards.</p>\n<h3>You&#39;d Be a Great Fit If You</h3>\n<ul>\n<li>Have 8+ years of progressive HR experience, including 3+ years as an HR Business Partner supporting senior leaders in high-growth or scaling environments; ideally including hardware, energy, manufacturing, or deep-tech companies.</li>\n<li>Are a strategic operator who can anticipate organisational needs, translate business priorities into people strategies, and influence through credibility and insight.</li>\n<li>Are data-driven, using qualitative and quantitative insights to inform decision-making, program design, and measurement of impact.</li>\n<li>Are a trusted coach and advisor, capable of balancing candour and empathy while influencing at all levels.</li>\n<li>Have strong working knowledge of org design, performance management, employee relations, and leadership development.</li>\n<li>Can ramp quickly and deliver impact within a defined engagement; comfortable operating with autonomy from day one.</li>\n<li>Thrive in fast-paced, high-growth settings where agility, sound judgment, and ownership are essential.</li>\n<li>Model Exowatt&#39;s cultural principles and uphold our high-performance standard, driving clarity, accountability, and continuous improvement.</li>\n</ul>","enriched_at":1787295919925},{"id":"job_cf3cbe71-16f","title":"Lead Power Systems Engineer","source_url":"https://jobs.lever.co/exowatt/94611625-b554-4900-b14f-08f930e26ba2","location":"Miami, FL","job_type":"full-time","experience_level":"senior","work_arrangement":"onsite","category":"Engineering","description":"<p>Exowatt is revolutionizing the energy landscape for the AI era with our groundbreaking P3 system that captures solar energy, stores it as heat, and generates electricity on demand. Founded in 2023 and backed by leading investors including Andreessen Horowitz, Sam Altman, and Felicis, we’re committed to providing clean, modular, and scalable power that meets the rapidly growing demands of AI infrastructure. Our mission is to make sustainable renewable energy always available and almost free, enabling technological advancement while protecting our planet.</p>\n<p>We are seeking an experienced Lead Power Systems Engineer to own the balance of plant (BoP) design and integration of our Exowatt P3 modules into customer sites. This role will be responsible for ensuring seamless integration of our modules into various grid, behind-the-meter, and microgrid configurations. This highly cross-functional position requires collaboration across engineering, customers, EPCs, and developer partners to ensure successful deployment of our systems. The ideal candidate will have experience in microgrid design, power generation projects, and grid interconnection with a deep understanding of power systems engineering principles.</p>\n<h3>Key Responsibilities:</h3>\n<ul>\n<li>Lead the design and specification of electrical balance of plant components, including transformers, switchgear, inverters, and protection systems.</li>\n<li>Ensure seamless integration of P3 modules with customer infrastructure, microgrids, and utility grids, optimizing for efficiency, reliability, and compliance.</li>\n<li>Develop interconnection strategies for various applications, ensuring compliance with IEEE 1547, UL 1741, NEC, and local utility interconnection requirements.</li>\n<li>Design and model microgrids and distributed energy systems, integrating power electronics, load management, and grid synchronization.</li>\n<li>Work closely with internal engineering teams, EPCs, developers, and customers to align technical requirements, coordinate project execution, and resolve integration challenges.</li>\n<li>Utilize tools such as ETAP, PSCAD, PSS/E, or PowerWorld to analyze power flows, short circuit scenarios, transient stability, and protection coordination.</li>\n<li>Define protection schemes, relay settings, and control logic to ensure system stability, grid compliance, and operational safety.</li>\n<li>Support commissioning and validation of P3 deployments, ensuring systems meet performance and reliability expectations.</li>\n<li>Develop engineering specifications, single-line diagrams (SLDs), protection coordination studies, and technical reports to support system deployment and operation.</li>\n</ul>\n<h3>Qualifications:</h3>\n<ul>\n<li>BS, MS, or PhD in Electrical Engineering, Power Systems Engineering, or a related field.</li>\n<li>7+ years of experience in power systems engineering, microgrid design, or power generation projects.</li>\n<li>Deep knowledge of power electronics, transformers, switchgear, protective relays, inverters, and power system stability.</li>\n<li>Experience integrating solar, battery storage, or thermal power generation into islanded and grid-connected microgrid architectures.</li>\n<li>Familiarity with IEEE 1547, UL 1741 SA, NFPA 70 (NEC), FERC/NERC standards, and utility interconnection processes.</li>\n<li>Proficiency in ETAP, PSCAD, PSS/E, PowerWorld, HOMER, or similar modeling tools for power system design and grid integration.</li>\n<li>Experience working with EPCs, utilities, and developers to successfully deploy and commission power generation projects.</li>\n<li>Strong ability to interface with customers, coordinate with cross-functional teams, and present technical solutions to internal and external stakeholders.</li>\n<li>Ability to operate in a fast-paced startup environment, balancing multiple projects and adapting to evolving technical challenges.</li>\n</ul>\n<h3>Additional Information</h3>\n<h4>What We Offer:</h4>\n<ul>\n<li>Competitive salary and equity options.</li>\n<li>Comprehensive benefits package, including health, dental, and retirement plans.</li>\n<li>A dynamic work environment that fosters creativity and innovation.</li>\n<li>Opportunities for professional growth and development in a rapidly evolving industry.</li>\n<li>Relocation assistance.</li>\n</ul>","enriched_at":1785006357798},{"id":"job_268c0f17-98c","title":"Optomechanical Integration & Test Engineer (Miami, FL)","source_url":"https://jobs.lever.co/exowatt/98ccb27c-cdf4-4ce5-9c2f-baa77c9a7fc0","location":"Miami, FL","job_type":"full-time","experience_level":"senior","work_arrangement":"onsite","category":"Engineering","description":"<p>Exowatt is revolutionizing the energy landscape for the AI era with our groundbreaking P3 system that captures solar energy, stores it as heat, and generates electricity on demand.</p>\n<p>We are seeking an Optomechanical Integration &amp; Test Engineer to join our optics team. The team owns the full design-to-commissioning lifecycle for our tracker hardware: precision optical elements and the structures that position them, solar tracking architectures, structural analysis under wind and gravity loading, and the instrumentation that turns prototypes into measured systems.</p>\n<p>This role owns the last part of the process: proving, with numbers you can defend, that precision optics on a large structure that moves all day, outdoors, under wind, gravity, and thermal swings, actually deliver the energy the models promise, and finding out exactly why when they don&#39;t.</p>\n<p>Key Responsibilities:</p>\n<ul>\n<li>Own optical test stands end to end, from indoor characterization benches to the high-flux test facility to outdoor on-sun stands: concept, CAD, fixtures, instrumentation, commissioning, first light, and day-to-day operation</li>\n<li>Design and run test campaigns from hypothesis to conclusion: write the test plan, build the setup, take the data, quantify the uncertainty, and present results that drive real design decisions</li>\n<li>Characterize optical components and assemblies: alignment verification, focal and flux measurements, camera-based flux mapping, radiometry and thermal power measurement, reflectance and transmittance</li>\n<li>Develop precision alignment procedures and tooling for optical assemblies on tracker platforms, and verify pointing and tracking accuracy in the field</li>\n<li>Select, mount, wire, and calibrate instrumentation (radiometers and power sensors, thermocouples, cameras, tilt sensors, encoders, weather and irradiance instruments) and integrate everything into DAQ systems</li>\n<li>Automate tests in Python: instrument control, data acquisition, analysis pipelines, and the plots and reports that make results legible to the whole team</li>\n<li>Make the test infrastructure agent-ready: expose instruments, test sequencing, and data pipelines through clean scriptable interfaces so AI agents can configure a test, run it, watch it overnight, and flag anomalies</li>\n<li>Close the loop between simulation and hardware: compare measured optical performance against raytrace predictions and chase discrepancies to root cause</li>\n<li>Run environmental and durability testing on optical components (thermal cycling, weathering, soiling) and help build the reliability story for hardware that must survive decades outdoors</li>\n<li>Own test safety around concentrated flux: hazard analyses, interlocks, PPE, and safe operating procedures for indoor high-flux testing and on-sun operations</li>\n</ul>\n<p>Qualifications:</p>\n<ul>\n<li>BS or MS in Optical Engineering, Mechanical Engineering, Electrical Engineering, Aerospace Engineering, Physics, or a closely related discipline</li>\n<li>2+ years of hands-on laboratory, test, or integration experience with optical or precision hardware</li>\n<li>Strong fundamentals in math and physics</li>\n<li>Hands-on experience on an optical bench: mounting, aligning, and characterizing optics</li>\n<li>Instrumentation fundamentals: sensor selection, signal conditioning, calibration, and DAQ integration</li>\n<li>Python for test automation and data analysis</li>\n<li>Fluency with AI coding agents (Claude Code, Codex, or similar) as a daily engineering tool</li>\n<li>Working knowledge of a parametric CAD tool for fixtures and test hardware</li>\n<li>The discipline of good measurement: controlling variables, calibrating before trusting, quantifying uncertainty</li>\n<li>A track record of building real test setups or hardware</li>\n<li>Comfort with both bench and field work</li>\n<li>Structured root-cause instincts when results look wrong</li>\n<li>Strong written communication</li>\n<li>The temperament to hold your ideas loosely</li>\n</ul>\n<p>Preferred Qualifications:</p>\n<ul>\n<li>Radiometry or photometry experience</li>\n<li>Exposure to concentrating optics, heliostat or CPV testing, or high-flux measurement</li>\n<li>Camera-based metrology and image processing</li>\n<li>Thermal measurement experience</li>\n<li>Design validation and reliability practices</li>\n<li>Motion control experience</li>\n<li>Exposure to optical simulation and comparing measurement against model</li>\n<li>Statistics for test engineering</li>\n<li>Experience building agentic systems around real hardware or simulation</li>\n<li>Machine shop skills and rapid prototyping</li>\n<li>Interest in solar energy, heliostats, or large-scale renewable infrastructure</li>\n</ul>\n<p>Additional Requirements:</p>\n<ul>\n<li>Willingness to work extended hours and occasional weekends when test campaigns, commissioning windows, or program deadlines demand it</li>\n<li>Ability to lift up to 25 lbs unassisted, and to work on ladders and lifts and around energized equipment and concentrated light with appropriate PPE</li>\n<li>Ability to work outdoors in Miami heat for extended periods during field testing</li>\n<li>Occasional travel to vendors, calibration labs, and field sites</li>\n</ul>\n<p>What We Offer:</p>\n<ul>\n<li>Competitive salary and equity options</li>\n<li>Comprehensive benefits package, including health, dental, and retirement plans</li>\n<li>Dynamic work environment that fosters creativity and innovation</li>\n<li>Opportunities for professional growth and development in a rapidly evolving industry</li>\n<li>Relocation assistance</li>\n</ul>","enriched_at":1784736719954},{"id":"job_a6be80b4-059","title":"Mechanical Engineer – Optical Systems","source_url":"https://jobs.lever.co/exowatt/0cfb9bc6-a953-49e9-b507-535e7de5ff5d","location":"Miami, FL","job_type":"full-time","experience_level":"senior","work_arrangement":"onsite","category":"Engineering","description":"<p>Exowatt is revolutionizing the energy landscape for the AI era with our groundbreaking P3 system that captures solar energy, stores it as heat, and generates electricity on demand.</p>\n<p>We are seeking a Mechanical Engineer to join our optics team. The team owns the full design-to-commissioning lifecycle for our tracker hardware: precision optical elements and the structures that position them, solar tracking architectures, structural analysis under wind and gravity loading, and the instrumentation that turns prototypes into measured systems.</p>\n<p>Your main focus will be optomechanical assemblies: designing, fabricating, assembling, aligning, and testing the hardware that positions optical elements (lenses and mirrors, for example) on our trackers.</p>\n<h3>Key Responsibilities:</h3>\n<ul>\n<li>Design, build, and align optomechanical assemblies for the tracker platforms (optic mounts, frames, and alignment and adjustment features), owning them end to end: idea, CAD model, fabricated parts, assembled and working hardware</li>\n<li>Build hardware hands-on: assemble prototypes and test articles, fixture and align optics, work through fit-up issues at the bench, and turn what you learn into the next design revision fast</li>\n<li>Support test stand build, instrumentation, and commissioning: sensor mounting, wiring, calibration, DAQ integration, first light, and commissioning runs</li>\n<li>Troubleshoot electromechanical systems hands-on: wiring harnesses, sensors, motor drivers, encoders, microcontrollers, and the code talking to them; multimeter, oscilloscope, and Python debugger in the same afternoon, root-causing failures and driving corrective actions back into the design</li>\n<li>Work AI-native: drive the scripting, analysis, and documentation around your hardware with AI coding agents, and help make the team&#39;s test and simulation infrastructure agent-ready so campaigns can run overnight without a human babysitting them</li>\n<li>Build and revise CAD models in PTC Creo and SolidWorks; develop drawing packages with GD&amp;T (ASME Y14.5) for fabrication, weldments, and assemblies, run tolerance stack-up analyses, and iterate against fabrication feedback</li>\n<li>Support structural analysis across tracker platforms: first-principles hand calculations, ANSYS FEA for detailed analysis, SAP2000 for code-checked wind-load combinations under ASCE 7-22</li>\n<li>Maintain subsystem-level BOMs and handle vendor follow-ups: slew drives, optical components, fasteners, sheet-metal fabrication</li>\n<li>Document analysis, build progress, and decisions on the team wiki: methodology pages, test plans, weekly status, design memos</li>\n<li>Present and defend your own work in design reviews, growing into ownership of larger subsystems over time</li>\n<li>Collaborate with controls, software, and supply chain teams, and with external engineering partners and vendors</li>\n</ul>\n<h3>Qualifications:</h3>\n<ul>\n<li>BS or MS in Mechanical Engineering, Aerospace Engineering, or a closely related discipline</li>\n<li>1+ years of hands-on build or design experience with real hardware; internships, co-ops, research labs, and major project-team roles count</li>\n<li>Strong fundamentals in math and physics: you reason from first principles, estimate before you compute, and check every result against known limits before you believe it; we probe this hard in interviews</li>\n<li>Working knowledge of a parametric CAD tool; the team uses PTC Creo and SolidWorks</li>\n<li>Working understanding of GD&amp;T (ASME Y14.5) and tolerance stack-up analysis</li>\n<li>Familiarity with common fabrication processes (machining, sheet metal, welding, 3D printing) and design-for-manufacturability and assembly (DFM/DFA) principles</li>\n<li>Ability to back up simulation with first-principles hand calculations, and to run structured root-cause analysis when hardware misbehaves</li>\n<li>A track record of building real hardware: internships, capstone projects, FSAE, solar car teams, robotics, makerspaces, or independent builds all count; bench experience matters more than coursework grades</li>\n<li>The drive to own the full cycle yourself: take an idea to CAD, to built hardware, to test, learn from the mistakes, and iterate quickly rather than handing steps off to others</li>\n<li>Comfort with shop and bench work: hand tools, fixturing, assembly, and careful mechanical work on precision hardware</li>\n<li>Coursework or hands-on project experience in solid mechanics, statics, dynamics, and finite element analysis</li>\n<li>Comfort troubleshooting electromechanical systems hands-on: wiring harnesses, sensors, motor drivers, encoders, microcontrollers, and the firmware or software talking to them</li>\n<li>Fluency with AI coding agents (Claude Code, Codex, or similar) as a daily engineering tool: you use them to write most of your code, and you own every line they produce, reviewed, tested, and understood; expect us to ask you to show how you work with AI the same way we ask about your bench skills</li>\n<li>The instinct to make work agentic: you can decompose a workflow into steps an agent can execute, with clean interfaces, verifiable checkpoints, and guardrails, and you have the judgment to catch an agent when it is confidently wrong; engineers who can direct several agents at once will outrun those who type everything themselves, and we hire the former</li>\n<li>Strong written communication: you can document your work clearly enough that the next engineer can pick it up without asking you</li>\n<li>The temperament to hold your ideas loosely: designs evolve weekly and priorities shift on real evidence; engineers who can let go and update move fastest</li>\n</ul>\n<h3>Preferred Qualifications:</h3>\n<ul>\n<li>Hands-on experience assembling or aligning optical or precision mechanical hardware</li>\n<li>Experience with motion components and mechanisms: bearings, actuators, gear and slew drives, bolted and welded joint design</li>\n<li>Exposure to design validation and reliability practices: DFMEA, DVP&amp;R, or environmental qualification testing</li>\n<li>Coursework or research in optical systems, photonics, heat transfer, or solar energy</li>\n<li>Hands-on experience with ANSYS, SAP2000, or another FEA package beyond classroom problem sets</li>\n<li>Python or MATLAB scripting: kinematics, data reduction, plotting</li>\n<li>Experience building agentic systems around real hardware or simulation: agents driving instruments, CAD, or simulation models through tool interfaces (MCP or similar), running parameter sweeps overnight, and summarizing the results; or any project where you gave an AI real levers and made its output trustworthy</li>\n<li>Lab or test-stand experience involving DAQ, instrumentation, or calibration</li>\n<li>Familiarity with controls fundamentals: open-loop versus closed-loop, sensor fusion concepts</li>\n<li>Interest in solar energy, heliostats, or large-scale renewable infrastructure</li>\n</ul>\n<h3>Additional Requirements:</h3>\n<ul>\n<li>Willingness to work extended hours and occasional weekends when builds, test campaigns, or program deadlines demand it</li>\n<li>Ability to lift up to 25 lbs unassisted, and to work safely with shop tools, ladders, and lifts with appropriate PPE</li>\n<li>Ability to work outdoors in Miami heat during assembly and field testing</li>\n<li>Occasional travel to fabricators, vendors, and field sites</li>\n</ul>","enriched_at":1784736691388},{"id":"job_397300ad-aa0","title":"Power Systems Engineer - EMT Modeling/Simulation & Test Validation","source_url":"https://jobs.lever.co/exowatt/171fe2e7-3f69-4e17-b619-9fbf9108103d","location":"Miami, FL","job_type":"full-time","experience_level":null,"work_arrangement":"onsite","category":"Engineering","description":"<p>Exowatt is revolutionizing the energy landscape for the AI era with our groundbreaking P3 system that captures solar energy, stores it as heat, and generates electricity on demand.</p>\n<p>We are looking for a technically curious Power Systems Electrical Engineer to join our systems study team. You will be responsible for developing, maintaining, and analyzing complex power system models, as well as designing and executing test and validation strategies for advanced power conversion systems.</p>\n<h3>Key Responsibilities</h3>\n<h4>Simulation &amp; Modeling</h4>\n<ul>\n<li>Build and execute system-level power system simulations using PSCAD/EMTDC or MATLAB/Simulink to analyze transient, steady-state, and dynamic phenomena</li>\n<li>Perform impact studies for Inverter-Based Resources (IBRs) such as generators, solar, and Battery Energy Storage Systems (BESS)</li>\n<li>Conduct Sub-Synchronous Oscillation (SSO) studies, Control Interaction (CI) analysis, and Transient Overvoltage (TOV) assessments</li>\n<li>Develop and maintain simulation environments for power electronics, energy storage, power conversion, and grid-interactive systems</li>\n</ul>\n<h4>Test &amp; Validation</h4>\n<ul>\n<li>Create and execute test plans, test procedures, and validation protocols for electrical and power system components and integrated systems</li>\n<li>Perform model-in-the-loop (MIL), software-in-the-loop (SIL), hardware-in-the-loop (HIL), and lab-based power converter testing as appropriate</li>\n<li>Validate simulation results against experimental and field data; improve model fidelity over time</li>\n<li>Analyze transient, fault, thermal, and dynamic behavior of power systems under normal and off-nominal conditions</li>\n<li>Investigate root causes of test failures and performance gaps; drive corrective actions with cross-functional teams</li>\n<li>Design and automate test infrastructure, data collection workflows, and post-processing and analysis tools</li>\n</ul>\n<h4>Cross-Functional Contribution</h4>\n<ul>\n<li>Support controls and firmware teams by evaluating system response, protections, edge cases, and failure modes</li>\n<li>Translate complex simulation and test data into clear, actionable technical reports for clients, utilities, or internal stakeholders</li>\n<li>Contribute to design reviews, risk assessments, and engineering decision-making throughout product development</li>\n</ul>\n<h3>Technical Requirements</h3>\n<ul>\n<li>Proficiency or academic experience in PSCAD/PSSE and/or MATLAB/Simulink, PLECS</li>\n<li>Exposure to LabVIEW, RTDS, LTspice is highly preferred</li>\n<li>Familiarity with oscilloscopes, power analyzers, DAQs, microcontrollers, PLCs, and programmable power supplies or load banks</li>\n<li>Deep understanding of Power System Transients, Control Theory, and Power Electronics</li>\n<li>Proficiency in Python or MATLAB for post-processing simulation and test data</li>\n<li>Familiarity with IEEE 1547, NERC PRC/MOD, FERC requirements, or relevant IEC/UL standards</li>\n</ul>\n<h3>Qualifications</h3>\n<ul>\n<li>B.S., M.S., or Ph.D. in Electrical Engineering with a focus on Power Systems, Power Electronics, or Controls</li>\n<li>Open to both experienced professionals (3+ years preferred) and recent university graduates who can demonstrate significant project work or a thesis involving EMT simulation, hardware testing, or power converter validation</li>\n<li>Strong mathematical aptitude in differential equations, phasor analysis, and system dynamics</li>\n<li>Experience designing and executing laboratory tests for electrical systems and interpreting measured data</li>\n<li>Ability to debug complex multidisciplinary systems and communicate findings clearly to both technical and non-technical audiences</li>\n</ul>\n<h3>The &quot;New Grad&quot; Success Profile</h3>\n<ul>\n<li>A capstone project or internship focused on power system modeling.</li>\n<li>A high level of comfort with Python or MATLAB for post-processing simulation data.</li>\n<li>A &quot;builder&quot; mindset,someone who enjoys digging into a black-box model to understand how the underlying code affects the grid.</li>\n</ul>\n<h3>Additional Information</h3>\n<h4>What We Offer:</h4>\n<ul>\n<li>Competitive salary and equity options.</li>\n<li>Comprehensive benefits package, including health, dental, and retirement plans.</li>\n<li>A dynamic work environment that fosters creativity and innovation.</li>\n<li>Opportunities for professional growth and development in a rapidly evolving industry.</li>\n<li>Relocation assistance.</li>\n</ul>","enriched_at":1782879029459},{"id":"job_67bb98ba-e43","title":"Mechanical Engineer - Structural Design","source_url":"https://jobs.lever.co/exowatt/8c588733-6248-455a-9662-983c7763c5aa","location":"Austin, TX","job_type":"full-time","experience_level":"senior","work_arrangement":null,"category":"Engineering","description":"<p>Exowatt is revolutionizing the energy landscape for the AI era with our groundbreaking P3 system that captures solar energy, stores it as heat, and generates electricity on demand.</p>\n<p>We are seeking an experienced Mechanical Engineer specializing in structural design to join our growing team. In this role, you will engage in the structural design and analysis of our renewable energy systems, ensuring structural integrity, durability, and performance in diverse environmental conditions.</p>\n<p><strong>Key Responsibilities:</strong></p>\n<ul>\n<li>Create the structural design of both stationary and moving structures and associated mechanical or drive components and system layouts for renewable energy applications</li>\n<li>Develop and validate structural models using Finite Element Analysis (FEA) and other analytical methods</li>\n<li>Create detailed engineering drawings and specifications for manufacturing</li>\n<li>Collaborate with cross-functional teams, including controls, electrical, thermal, and software engineers</li>\n<li>Evaluate and select appropriate materials based on structural strength requirements, stiffness, cost, and sustainability</li>\n<li>Design for manufacturability, assembly, and serviceability</li>\n<li>Mentor junior engineers and provide technical guidance to the mechanical engineering team</li>\n<li>Interface with suppliers, manufacturers, and external engineering partners</li>\n<li>Participate in design reviews and ensure compliance with industry standards and regulations</li>\n<li>Troubleshoot structural issues during testing and deployment</li>\n</ul>\n<p><strong>Qualifications:</strong></p>\n<ul>\n<li>Bachelor&#39;s degree in Mechanical Engineering or related field; Master&#39;s degree preferred</li>\n<li>7+ years of mechanical engineering experience</li>\n<li>Extensive knowledge of structural mechanics, materials science, and manufacturing processes</li>\n<li>Proficiency in 3D CAD software (SolidWorks, Creo, or similar)</li>\n<li>Experience with FEA software (ANSYS, Nastran, or similar)</li>\n<li>Strong understanding of GD&amp;T ASME Y14.5 and engineering drawing standards</li>\n<li>Experience designing for extreme environmental conditions (high winds, seismic events, etc.)</li>\n<li>Knowledge of relevant standards and codes (ASME, ISO, IEC, etc.)</li>\n<li>Experience with renewable energy systems (solar, wind, or energy storage) preferred</li>\n<li>Excellent communication and collaboration skills</li>\n</ul>\n<p><strong>Additional Information:</strong></p>\n<ul>\n<li>Competitive salary and equity options.</li>\n<li>Comprehensive benefits package, including health, dental, and retirement plans.</li>\n<li>A dynamic work environment that fosters creativity and innovation.</li>\n<li>Opportunities for professional growth and development in a rapidly evolving industry.</li>\n<li>Relocation assistance.</li>\n</ul>","enriched_at":1781790142732},{"id":"job_e37f20bd-0aa","title":"Mechanical Engineer - Heat Exchanger Design","source_url":"https://jobs.lever.co/exowatt/c2770d40-e7ba-457c-b152-350e9741b932","location":"Austin, TX","job_type":"full-time","experience_level":"senior","work_arrangement":"onsite","category":"Engineering","description":"<p>Exowatt is revolutionizing the energy landscape for the AI era with our groundbreaking P3 system that captures solar energy, stores it as heat, and generates electricity on demand.</p>\n<p>We are seeking an experienced Mechanical Engineer specializing in heat exchanger design to join our growing team. In this role, you will lead the design, analysis, and optimization of heat exchangers for our thermal energy storage systems, ensuring efficient heat transfer, system reliability, and performance across demanding operational conditions.</p>\n<p><strong>Key Responsibilities:</strong></p>\n<ul>\n<li>Lead the design, analysis, and optimization of heat exchangers for our thermal energy storage systems.</li>\n<li>Engage with suppliers for development, build, and testing of the heat exchange system for Exowatt’s power conversion unit.</li>\n<li>Perform analysis of mechanical components and systems for heat exchangers utilizing CFD and FEA such as Ansys multiphysics, CAD (Solidworks, Creo, or equivalent).</li>\n<li>Design, build, and test prototype heat exchanger units for Exowatt’s power conversion units.</li>\n<li>Validate models by test and analytical methods.</li>\n<li>Create detailed engineering drawings and specifications for manufacturing.</li>\n<li>Collaborate with cross-functional teams, including electrical, controls, thermal, and software engineers.</li>\n<li>Evaluate and select appropriate materials based on requirements, cost, and sustainability.</li>\n<li>Design for manufacturability, assembly, and serviceability.</li>\n<li>Interface with suppliers, manufacturers, and external engineering partners.</li>\n<li>Participate in design reviews and ensure compliance with industry standards and regulations.</li>\n<li>Troubleshoot issues during testing and deployment.</li>\n</ul>\n<p><strong>Qualifications:</strong></p>\n<ul>\n<li>Bachelor&#39;s degree in Mechanical Engineering or related field; Master&#39;s degree preferred.</li>\n<li>7+ years of mechanical engineering experience with a focus on thermal-fluid systems with a focus on heat exchanger design, analysis, and development.</li>\n<li>Demonstrated experience designing, analyzing, and optimizing heat exchangers for high-temperature applications.</li>\n<li>Hands-on experience in testing of heat exchangers, energy, and power conversion systems.</li>\n<li>Strong foundation in thermodynamics, conjugate heat transfer, fluid mechanics, and thermal coatings.</li>\n<li>Proficiency in 3D CAD software (SolidWorks, Creo, or similar) and experience designing complex flow paths and pressure-containing components.</li>\n<li>Experience with FEA and CFD software (ANSYS multiphysics, Nastran, or similar) for thermal stress analysis and fatigue life prediction under cyclic operating conditions.</li>\n<li>Familiarity with CFD tools for flow distribution, heat transfer optimization, and pressure drop analysis.</li>\n<li>Strong understanding of GD&amp;T ASME Y14.5 and engineering drawing standards for precision-manufactured components.</li>\n<li>Knowledge of relevant standards and codes (ASME BPVC, TEMA, API, ISO) as applied to pressure vessels, heat exchangers, and rotating equipment.</li>\n<li>Experience designing for demanding operating environments, including thermal cycling, high-temperature creep, and corrosive or reactive working fluids.</li>\n<li>Experience with renewable energy systems, thermal energy storage, or concentrated solar power preferred.</li>\n<li>Excellent communication and collaboration skills with the ability to work across multidisciplinary teams.</li>\n</ul>\n<p><strong>What We Offer:</strong></p>\n<ul>\n<li>Competitive salary and equity options.</li>\n<li>Comprehensive benefits package, including health, dental, and retirement plans.</li>\n<li>A dynamic work environment that fosters creativity and innovation.</li>\n<li>Opportunities for professional growth and development in a rapidly evolving industry.</li>\n<li>Relocation assistance.</li>\n</ul>","enriched_at":1781790044266},{"id":"job_5539a75a-9b8","title":"Controls & Firmware Engineer","source_url":"https://jobs.lever.co/exowatt/23f4bd8e-c956-4274-89d5-6544a4943ba6","location":"Austin, TX","job_type":"full-time","experience_level":"mid","work_arrangement":"onsite","category":"Engineering","description":"<p>Exowatt is revolutionizing the energy landscape for the AI era with our groundbreaking P3 system that captures solar energy, stores it as heat, and generates electricity on demand.</p>\n<p>We are looking for a Controls &amp; Firmware Engineer to help design and implement the control architecture for our scalable thermal energy storage system. This hands-on role involves both PLC programming and embedded firmware development, giving flexibility as we evolve our platform from industrial controllers to custom microcontroller-based solutions.</p>\n<h3>Key Responsibilities</h3>\n<h4>Controls (PLC Path)</h4>\n<ul>\n<li>Develop and test PLC programs for system, module, and site-level controllers.</li>\n<li>Implement safety interlocks, alarms, and operational sequences for energy storage modules.</li>\n<li>Configure and validate industrial communication protocols.</li>\n<li>Integrate different system components with Microcontroller based devices.</li>\n<li>Set up and maintain a test bench / HIL environment for PLC validation.</li>\n</ul>\n<h4>Firmware (Microcontroller Path)</h4>\n<ul>\n<li>Design and implement embedded firmware in C/C++ for microcontrollers.</li>\n<li>Develop and test communication stacks, device drivers, and OTA update mechanisms.</li>\n<li>Ensure deterministic, real-time operation in power and energy storage applications.</li>\n<li>Set up and maintain a test bench / HIL environment for validation.</li>\n</ul>\n<h4>DevOps &amp; CI/CD</h4>\n<ul>\n<li>Build and maintain CI/CD pipelines for PLC code, firmware, and test automation.</li>\n<li>Implement version control best practices for branching, releases, and tagging safety-critical builds.</li>\n<li>Develop infrastructure to run automated test suites.</li>\n</ul>\n<h4>Energy Storage Integration</h4>\n<ul>\n<li>Apply knowledge of utility-scale energy storage systems.</li>\n<li>Participate in the development of control panel design for various components of energy storage system.</li>\n<li>Design &amp; develop EMS/SCADA application to map controls data into historians, HMIs, and cloud telemetry systems.</li>\n<li>Support system integration, commissioning, and field validation.</li>\n</ul>\n<h3>Qualifications</h3>\n<ul>\n<li>Bachelor’s in Electrical, Controls, Computer Engineering, or related field.</li>\n<li>2–6 years of experience in PLC programming and/or embedded firmware development.</li>\n<li>Proficiency with Siemens TIA Portal / Rockwell Studio 5000.</li>\n<li>Strong coding skills in C/C++.</li>\n<li>Experience with GitHub workflows, CI/CD pipelines, automated testing.</li>\n<li>Familiarity with utility-scale energy systems or DERs.</li>\n<li>Understanding of industrial networking and protocols.</li>\n</ul>\n<h3>Preferred Skills</h3>\n<ul>\n<li>Exposure to energy storage standards.</li>\n<li>Knowledge of cloud-integrated controls.</li>\n<li>Experience setting up test benches, simulators, or hardware-in-the-loop systems.</li>\n</ul>\n<h3>Additional Information</h3>\n<h4>What We Offer:</h4>\n<ul>\n<li>Competitive salary and equity options.</li>\n<li>Comprehensive benefits package, including health, dental, and retirement plans.</li>\n<li>A dynamic work environment that fosters creativity and innovation.</li>\n<li>Opportunities for professional growth and development in a rapidly evolving industry.</li>\n<li>Relocation assistance.</li>\n</ul>","enriched_at":1781789993785}],"category_normalised":[{"category":"engineering","count":14},{"category":"manufacturing","count":2},{"category":"hr","count":1}],"velocity":{"weeks":[{"week_start":"2026-04-13","count":4},{"week_start":"2026-04-20","count":1},{"week_start":"2026-05-25","count":1},{"week_start":"2026-06-15","count":4},{"week_start":"2026-06-29","count":1},{"week_start":"2026-07-20","count":3},{"week_start":"2026-08-17","count":1},{"week_start":"2026-08-24","count":1},{"week_start":"2026-09-14","count":1}],"trend":"stable","wow_pct":0},"momentum":{"recent_14d":1,"prior_14d":1,"growth_pct":0,"classification":"stable"},"salary_vs_industry":{"company_median":null,"industry_median":null,"percentile":null,"sample_size":0,"by_region":[],"transparency_pct":0,"industry_transparency_pct":0,"transparency_warning":true},"market_share":{"company_jobs":17,"industry_total":17,"share_pct":100,"rank":1,"peer_count":1},"ai_exposure":{"occupation_weighted_score":0.172,"skill_weighted_score":0.136,"top_exposed_titles":[{"title":"Mechanical Engineer - Structural Design","count":2,"score":0.081},{"title":"Mechanical Engineer - Heat Exchanger Design","count":2,"score":0.081}],"top_exposed_skills":[{"skill":"Optical Engineering","count":3,"score":0.22},{"skill":"Python","count":3,"score":0.217},{"skill":"Mechanical Engineering","count":6,"score":0.154},{"skill":"GD&T ASME Y14.5","count":4,"score":0.081},{"skill":"Renewable Energy Systems","count":4,"score":0.081},{"skill":"Finite Element Analysis","count":3,"score":0.081}]},"peer_set":[],"skills_lq":[],"geographic_shift":{"current":[{"region":"United States","count":16,"share_pct":100}],"emerging":[],"shrinking":[]},"seniority_anomalies":{"exec_recent_30d":0,"exec_prior_90d_avg":0,"exec_growth_pct":0,"notable_exec_hires":[]},"posting_dynamics":{"median_days_open":37,"industry_median_days_open":null,"long_open_count":10,"closure_rate_pct":42}}}}