Full-Time

Senior Chassis Engineer

Chassis

Updated on 8/23/2026

Aptera Motors

Aptera Motors

51-200 employees

Solar electric vehicle maker with long-range

No salary listed

Carlsbad, CA, USA

In Person

Bachelor's

Category
Mechanical Engineering (1)
Required Skills
Welding
CAD
GD&T
Assembly

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Requirements
  • Experience designing, developing, engineering, manufacturing, and assembling chassis systems for road vehicles.
  • Advanced proficiency in CATIA V6/3DX CAD modeling, including reading, interpreting, and operating CAD models and technical drawings.
  • Proficiency with geometric dimensioning and tolerancing and layout/packaging.
  • Familiarity with chassis component materials and processes for prototyping and production fabrication and assembly.
  • Extensive knowledge of chassis suspension, steering, and braking systems for automotive vehicles or motorcycles.
  • Five to seven years of chassis engineering experience involving automotive, motorcycle, or three-wheeled vehicles.
  • A bachelor's degree in Mechanical Engineering, Automotive Engineering, or Manufacturing Engineering.
Responsibilities
  • Design, develop, and engineer vehicle suspension, steering, and braking systems and integrate them with controls and other vehicle systems.
  • Coordinate, create, and interpret engineering and CAD models, drawings, and specifications; interface with suppliers and fabricators; provide installation guidance and in-house build instructions; and create and manage bills of materials and chassis documentation.
  • Perform analytical studies, calculations, and simulations to establish the functionality of vehicle chassis systems and components.
  • Work with suppliers on outsourcing, fabrication, and manufacturing of specific components.
  • Lead and collaborate with Engineering, Manufacturing, and Quality teams to establish critical functional parameters, installation, control, and interfaces between chassis systems and the rest of the vehicle.
  • Provide guidance on chassis fundamentals for an advanced three-wheeled vehicle.
  • Identify chassis-system compliance and homologation requirements within the overall vehicle prove-out process.
  • Create and lead design and engineering documentation in accordance with company systems and processes.
Desired Qualifications
  • Specialization in braking, wheels, and tire systems and components, with extensive knowledge of other chassis systems and components.
  • Experience with automotive, motorcycle, and three-wheeled chassis systems for road vehicles.
  • Knowledge and experience with chassis-system calculations, simulations, kinematics, and dynamic behavior.
  • Experience with casting, forging, machining, stamping, extrusion, joining, welding, and bonding processes for chassis components.
  • Familiarity with series-production processes and assembly, rapid prototyping, and additive manufacturing.

Aptera makes solar-powered electric vehicles that run on built-in solar panels and highly efficient design. Its car uses about 30% less energy than typical EVs, can travel up to 1,000 miles on a charge, and generate up to 40 miles of free daily driving from solar energy. Vehicles are sold directly to customers with customization options, combining long range, performance, and sustainability. The goal is to help people travel with minimal charging and reduce annual CO2 emissions by enabling widespread solar-powered mobility.

Company Size

51-200

Company Stage

Post IPO Equity

Headquarters

San Diego, California

Founded

2019

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Simplify Jobs

Simplify's Take

What believers are saying

  • August 4, 2026 orders for first 40 bodies and chassis begin deliveries in October.
  • Launch Design’s August 20, 2026 partnership adds tooling, testing, and supplier network leverage.
  • Aptera raised $24.6 million in 2026 and ended Q2 with $10.1 million cash.

What critics are saying

  • Aptera said August 12, 2026 it needs $40–$45 million more for production.
  • The August 20, 2026 Launch deal issues warrants, diluting shareholders and draining cash.
  • The SEC subpoena from January 2025 remains open, threatening financing and a going-concern collapse.

What makes Aptera Motors unique

  • Aptera’s 0.13-drag, three-wheeled solar EV targets 40 free miles daily.
  • EPA issued Aptera’s 2026 Launch Edition Certificate of Conformity on June 18, 2026.
  • Aptera sells direct-to-consumer and built RepairPal service access across 4,300 locations.

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Benefits

Stock Options

Growth & Insights and Company News

Headcount

6 month growth

0%

1 year growth

1%

2 year growth

2%
eMobility+
Aug 21st, 2026
Aptera Motors secures up to $44 million strategic production partnership with china's Launch Design for solar EV manufacturing.

Aptera Motors secures up to $44 million strategic production partnership with china's Launch Design for solar EV manufacturing. 21st August 2026 Aptera Motors Corp. has announced a strategic investment from Launch Design, the Shanghai-based design-for-manufacturing company, as part of a production programme valued at up to approximately $44 million (RMB 300 million). The partnership covers assembly fixtures and tooling, vehicle testing, pilot production and high-volume manufacturing activities for Aptera's solar electric vehicle. The companies are targeting the start of production of Aptera's first 40 vehicles in the fourth quarter of 2026. Launch Design employs more than 3,000 people and operates multiple production bases, with experience across more than 400 vehicle models developed for global automakers. Under the partnership, Launch will also provide Aptera access to its international supplier network, enabling the solar vehicle company to source parts and tooling at lower costs. The supplier network is expected to provide finished subassemblies directly to Aptera's final assembly facility in California. Aptera said the partnership has already contributed to reductions in its projected bill of materials, which the company expects to improve vehicle unit economics as production scales. "This strategic investment enhances our resources, allowing us to bring proven design-for-manufacturing expertise and a global supply chain to Carlsbad without taking on the capital burden of building that expertise from scratch," said Chris Anthony, Co-CEO of Aptera. The agreement also provides Aptera with access to Launch's production capabilities and supplier relationships for potential expansion into international markets. Aptera will fund two-thirds of the approved programme costs in cash, while the remaining third, up to approximately $15 million, will be paid through warrants to purchase Aptera stock. The structure is intended to preserve Aptera's cash resources while aligning Launch's interests with the company's production growth. The detailed terms of the agreement and the warrants will be disclosed in a Current Report on Form 8-K to be filed with the US Securities and Exchange Commission. Aptera expects to fund its share of the production programme through existing capital resources, previously announced financing arrangements and potential future debt or equity financing. The partnership is expected to support Aptera's transition towards production while providing access to manufacturing expertise, tooling capabilities and a broader global automotive supply chain.

Green Stock News
Aug 20th, 2026
Aptera Motors partners with Launch Design to accelerate path to high-volume production.

Aptera Motors partners with Launch Design to accelerate path to high-volume production. CARLSBAD, Calif., Aug. 20, 2026 (GLOBE NEWSWIRE) - Aptera Motors Corp. (Nasdaq: SEV), a solar mobility company, today announced a strategic investment by Launch Design (Shanghai Launch Automotive Technology Co., Ltd.), a design-for-manufacturing company with more than 3,000 employees, multiple production bases, and a portfolio of more than 400 vehicle models developed for automakers around the globe. The partnership covers a production program valued at up to approximately $44 million (RMB 300 million) at current exchange rates, spanning assembly fixtures and tooling, vehicle testing, pilot production, and high-volume production work. Those first fixtures and parts are for Aptera's first 40 production vehicles, which the companies are aiming to begin building in the fourth quarter of 2026. The partnership also opens Launch's international supplier network to Aptera, giving it access to parts and tooling at costs difficult to reach independently. Launch's supply base is positioned to deliver finished subassemblies, not loose parts, directly to Aptera's final assembly facility in California. "This strategic investment enhances our resources, allowing us to bring proven design-for-manufacturing expertise and a global supply chain to Carlsbad without taking on the capital burden of building that expertise from scratch," said Chris Anthony, Co-CEO of Aptera. "We expect Launch's experience will shorten our path to high-volume production and reduce materials costs. We have already seen reductions in our projected bill of materials from the relationship, an early indication that the partnership is improving unit economics before the first production vehicle is built." "Launch's reach extends well beyond manufacturing," said Steve Fambro, Co-CEO of Aptera. "Their production bases and supplier relationships give us a practical way to plan for markets outside the United States in the future, where we believe the appetite for a highly efficient solar vehicle is significant." Aptera will pay two-thirds of approved program costs, with the remaining third (up to approximately $15 million) paid in warrants to purchase Aptera stock. The structure conserves Aptera's cash as production scales and aligns Launch's interests with Aptera's success. Additional terms of the agreement and the warrants will be included in a Current Report on Form 8-K to be filed with the Securities and Exchange Commission. Aptera expects to fund its portion of the production program through existing capital resources, its previously announced financing arrangements, and future debt or equity financing. About Aptera Motors Corp. Aptera Motors Corp. (Nasdaq: SEV) is a solar mobility company driven by a mission to advance the future of efficient transportation. Its flagship vehicle is conceived to be a paradigm-shifting solar electric vehicle that leverages breakthroughs in aerodynamics, material science, and solar technology to pursue new levels of efficiency. As a public benefit corporation, Aptera is committed to building a sustainable business that positively impacts its stakeholders and the environment. Aptera is headquartered in Carlsbad, California. For more information, please visit www.aptera.Green Stock News LLC. Forward-Looking Statements This press release contains forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995. These statements include, without limitation, statements regarding the anticipated benefits of Aptera's partnership with Launch Design, including the expected value of the production program and the structure and timing of payments under the program, including the issuance of warrants; expectations regarding production timelines, cost efficiencies, bill of materials costs, and capital requirements, including the capital required to reach volume production; plans to scale production at Aptera's Carlsbad facility; expectations regarding future expansion into international markets; and Aptera's plans to continue executing its financing plan to fund its production ramp and work toward the start of production of its solar EV. Words such as "plans," "expects," "anticipates," "intends," "will," "targets," "believes," and similar expressions, or the negative of these terms, are intended to identify forward-looking statements. These forward-looking statements are based on Aptera's current expectations and assumptions and are subject to a number of risks and uncertainties that could cause actual results to differ materially, including, without limitation: risks related to Aptera's ability to raise additional capital on acceptable terms or at all; risks associated with Aptera's equity line of credit arrangement; risks related to the issuance of warrants to Launch under the agreement, including potential dilution to existing shareholders; fluctuations in currency exchange rates affecting the U.S. dollar value of amounts denominated in RMB; risks related to reliance on a single manufacturing partner and an international supply chain, including the risk that Launch does not perform as anticipated; risks related to tariffs, export controls, trade restrictions, or other changes in U.S. or international trade policy that could affect cross-border manufacturing arrangements; uncertainties inherent in scaling manufacturing operations; the risk that anticipated cost savings, capital reductions, or production timelines are not realized; and other risks detailed in Aptera's filings with the SEC, including under the heading "Risk Factors" in its Registration Statement on Form S-1 and its subsequent periodic reports. Aptera's ability to continue as a going concern is dependent on its success in raising additional capital and executing its business plan, as further described in its SEC filings. Aptera undertakes no obligation to update or revise any forward-looking statements as a result of new information, future events, or otherwise, except as required by law. Investor Relations: Aptera Motors Corp. Plug into more green stock news. Tap into the pulse of emerging green sectors every morning. Top daily headlines from clean energy, cleantech, cannabis, and sustainable transport stocks:

MarketScreener
Aug 20th, 2026
Aptera Motors secures $44M partnership with Launch Design to accelerate solar EV production

Aptera Motors has announced a strategic partnership with Launch Design, a Chinese design-for-manufacturing company with over 3,000 employees. The production programme is valued at up to approximately $44 million (RMB 300 million), covering assembly fixtures, tooling, vehicle testing, and production work. Aptera will pay two-thirds of approved costs, with the remaining third (up to $15 million) paid in warrants to purchase Aptera stock. The companies aim to begin building the first 40 production vehicles in the fourth quarter of 2026. The partnership gives Aptera access to Launch's international supplier network, which will deliver finished subassemblies directly to Aptera's California facility. Co-CEO Chris Anthony said the collaboration brings proven manufacturing expertise whilst reducing capital burden and materials costs.

GreenTV
Jul 24th, 2026
Aptera raises $40M for solar EV with 1,000-mile range and $25K starting price

Aptera has raised $40 million in commitments for its solar electric vehicle, the company's co-founder Sarah Hardwick announced. The three-wheeled SEV features a lightweight design and 0.13 drag coefficient, enabling 250 miles of range on a small battery pack and up to 1,000 miles with larger packs. The vehicle can add up to 40 miles of daily range through 700 watts of solar panels when parked outside. Starting at $25,000, the Aptera has generated over 22,000 reservations. The funding will support bringing the vehicle to production, a significant challenge for the startup despite strong consumer interest in its efficient design.

Fortune & Transit Publishers Ltd
Jul 23rd, 2026
Africa's EV makers are testing solar roofs on vehicles to supplement batteries.

Africa's EV makers are testing solar roofs on vehicles to supplement batteries. The continent's abundant sunshine is beginning to shape the next generation of electric vehicles. Startups are testing rooftop solar to complement rechargeable batteries, power auxiliary systems, and extend driving range, mirroring an emerging engineering trend that is gathering pace in Europe, Asia, and the United States. African electric vehicle manufacturers are redesigning vehicles so that sunlight becomes a complementary onboard energy source rather than an external source of electricity. The shift comes as engineers explore vehicle-integrated photovoltaics (VIPV), solar panels embedded into vehicle roofs and bodywork, as a practical way to supplement batteries, particularly in regions with abundant sunshine and still-developing charging infrastructure. "There is a need for a vehicle with zero emissions," according to Boubaker Siala, founder and CEO of Tunisia's Bako Motors. He says the company's solar-assisted electric vehicles respond to growing demand for cleaner transport while creating new commercial opportunities as environmental, social and governance (ESG) priorities become increasingly important for businesses and fleet operators." Autos & Vehicles Although Africa accounts for less than 2% of global installed solar generation capacity, it holds an estimated 40% of the world's theoretical solar energy potential. According to the World Bank's Global Solar Atlas, Africa records the world's highest average long-term photovoltaic yield at 4.51 kWh/kWp per day and is the only continent whose average exceeds the benchmark for "excellent" solar conditions. More than 85% of the continent receives annual solar irradiation above 2,000 kWh per square metre, allowing relatively small rooftop solar arrays to generate meaningful amounts of electricity. Researchers from ETH Zurich and the Paul Scherrer Institute, in a July 2026 study, found that EVs supported by dedicated off-grid solar charging systems could become economically competitive across much of Africa before 2040. After analysing more than 2,000 locations across 52 African countries, the researchers concluded that compact solar installations could reliably support a small electric vehicle travelling about 50 kilometres a day, suggesting the continent's solar resource could become a competitive advantage for electric mobility. The findings come as improvements in lightweight photovoltaic cells, battery technology and power electronics make vehicle-integrated solar increasingly practical for extending driving range and powering auxiliary systems, even though rooftop panels remain too small to replace plug-in charging altogether. Yet engineers remain divided over how far the technology can go. Africans & Diaspora "I'm afraid it's not really headed towards mass adoption," according to Tom Courtright, an independent e-mobility consultant who has tracked Africa's electric mobility sector for years. "It's just generally not really worth the cost, doesn't give that much power being that small, and creates its own problems." The scepticism reflects a broader engineering debate around vehicle-integrated photovoltaics. Because a car roof offers relatively little surface area for solar cells, integrated panels generate only modest amounts of electricity compared with standalone solar installations. In practice, the technology is generally viewed as a way to supplement batteries, power auxiliary systems and provide incremental range gains rather than replace plug-in charging altogether. Among Africa's early commercial adopters is Tunisia's Bako Motors, which has developed electric vehicles that integrate rooftop solar panels to supplement lithium iron phosphate batteries. Its compact Bako Bee, designed for urban mobility, delivers between 70 and 120 kilometres of range while using onboard solar energy to minimise charging top-ups. "Approximately 50% of our business activities are dedicated to exporting to Europe, and the rest is local to the Tunisian market," according to Siala. Solar Power The company recently completed its maiden export delivery of the Bee to Italy, marking one of the first commercial deployments of a solar-assisted African-designed electric vehicle into Europe. Bako is also expanding the concept into commercial logistics through the B-Van, a last-mile delivery vehicle offering up to 300 kilometres of range, 1,320 litres of cargo capacity and a 400-kilogram payload. Its integrated solar roof supplies supplementary energy that helps reduce charging frequency while powering onboard systems such as refrigeration, lighting and air conditioning. The company is scaling production through a new factory in Kalâat El Andalous targeting 8,000 vehicles annually, with around 80% destined for export markets including Italy, Germany and France. It also operates a manufacturing facility in Saudi Arabia serving Gulf markets, reflecting growing international interest in its solar-assisted vehicle strategy. The trend is also attracting international manufacturers looking at African markets. Chinese manufacturer Solarky Mobility Technologies is preparing to enter South Africa with its sunV, which it describes as the world's first mass-produced solar-assisted electric vehicle. Already operating in Tanzania, Thailand and Indonesia, the company has equipped the compact four-seater with a 10.2 kWh lithium iron phosphate battery and an extendable rooftop photovoltaic system that expands from 1.6 to 3.2 square metres. According to the company, the solar array can generate enough electricity under favourable sunlight to add up to 50 kilometres of driving per day, reducing reliance on plug-in charging for urban commuters. Africa's experiments extend well beyond commercial startups. Uganda's Kiira Motors, which grew out of engineering research at Makerere University, equipped its Kayoola Solar Bus with roof-mounted solar panels that continuously recharge onboard battery banks and extend operating range. In Kenya, Solar-e-Cycles integrated a 300-watt photovoltaic roof into its Uhuru electric tricycle to supplement battery power while supporting productive uses including off-grid refrigeration and household electricity. South African universities are also helping advance the technology. Tshwane University of Technology's SunChaser Solar Car Project has become one of Africa's leading university-led solar mobility programmes, using student-designed vehicles as platforms for research into lightweight engineering, energy management systems and vehicle-integrated photovoltaics. The project gained international recognition in September 2025 when it won the International Council of Academies of Engineering and Technological Sciences (CAETS) Communication Prize. "The Solar Car Project is a story of resilience, innovation and engineering excellence. It is a call to the next generation to push boundaries, embrace sustainable technology and reimagine the future of mobility," said Prof. Ben van Wyk, the university's Deputy Vice-Chancellor for Teaching, Learning and Technology. Although still niche, these initiatives reflect a growing engineering philosophy in which solar panels complement, rather than replace, rechargeable batteries. Vehicle design is only one side of that transition. Across East Africa, charging infrastructure is also beginning to incorporate solar generation. Burundi recently commissioned one of the region's first fully solar-powered electric vehicle charging stations through a partnership involving Growth Energy, GEM e-Mobility and Solio Group, demonstrating how renewable electricity generation and transport infrastructure are beginning to evolve alongside advances in vehicle engineering. The movement mirrors a broader global shift. In the United States, Aptera Motors is developing an ultra-lightweight three-wheeled electric vehicle fitted with around 700 watts of integrated solar cells, which the company says can harvest up to 40 miles (64 kilometres) of off-grid driving range per day under favourable conditions. Germany's Sono Motors has pivoted from building passenger cars to supplying solar retrofit kits for municipal buses, refrigerated trailers and delivery vans, enabling rooftop solar panels to feed electricity directly into high-voltage traction batteries. In the Netherlands, Lightyear has shifted from developing premium solar cars to supplying high-efficiency integrated photovoltaic systems to automotive manufacturers, reflecting growing industry interest in solar-assisted vehicle technology. Africa's emerging experiments therefore form part of a wider engineering direction, but one shaped by the continent's combination of abundant sunshine, growing transport demand and still-developing charging networks. According to a 2025 analysis by the Energy for Growth Hub, Africa's vehicle fleet could double by 2050, with motorisation rising from 73 to 150 vehicles per 1,000 people as incomes grow and urbanisation accelerates.