Mechanical Engineer - Interiors
GILLIG
| Company | GILLIG |
| Category | Engineering |
| Location | Livermore |
| Remote | On-site (inferred) |
| Employment | Not stated |
| Level | Not stated |
| Salary | Not stated by the employer |
| Posted | 17 Apr 2026 |
| Last verified | 30 Jul 2026 |
| Source | Employer career page (greenhouse) |
Description
As the leading transit bus manufacturer in the United States, GILLIG buses play a critical role in the environmental and social initiatives in communities across our nation. GILLIG is on the forefront in the transition to zero-emission vehicles and has an unmatched reputation in the industry for quality, reliability, durability, service, and support. From initial design through final assembly, each GILLIG bus is designed and built in Livermore, CA.
WHY GILLIG
Leader in environmentally friendly mobility solutions including battery electric, hybrid electric, near-zero CNG and clean diesel transit buses
Renowned for its inclusive team/family-oriented culture
Stable, successful, and growing organization – a Bay Area business for over 132 years!
Flexible schedules (*depending on project needs)
Excellent compensation including company paid medical premiums, generous retirement plan and other comprehensive benefits
DEPARTMENT OVERVIEW
GILLIG Engineering is responsible for the development, customization, and configuration of GILLIG’s clean technology heavy-duty transit buses. We are committed to developing the most reliable buses that connect communities, eliminate congestion, and contribute to a greener environment. Our engineers are engaged in designing, analyzing, testing, launching, and problem solving across a wide range of technical areas.
Mechanical Engineering is responsible for designing, developing, and optimizing mechanical systems and components, such as chassis, HVAC, interior layout, and powertrain integration to ensure safety, durability, and performance. They collaborate with cross-functional teams to meet regulatory standards, troubleshooting issues during production, and ensure cost-effective and efficient designs tailored to the needs of heavy-duty transit buses.
ABOUT THE ROLE
We are looking for a Mechanical Engineer who will be responsible for assisting & supporting more senior level engineers on various functions relating to transit bus design and is focused on the design and industrialization of content for GILLIG’s continuously evolving product line. The Mechanical Engineer will have influence over vehicle, system, and component level design decisions in conjunction with more senior level engineers. Duties involve engineering assistance, problem resolution, mechanical design, BOM development, application research & other engineering duties in support of the manufacturing of heavy-duty transit buses. This person will have direct influence at the component level to optimize the piece parts. This is a direct, full-time position with GILLIG.
This is a hands-on, on-site role at our Livermore, CA plant and reports to the Interiors Manager, but may also receive direction and guidance from senior engineers.
TECHNICAL FOCUS
Interiors
Our Interior Engineering team has the exciting challenge of designing and integrating both GILLIG and supplier components into both the driver and passenger area of our highly customized buses. Your work will include creating seating layouts, ADA seating and wheelchair restraint options, stanchion pole and grabrail layouts, floor and floor covering configurations, as well as crafting customized driver cockpits, dash layouts, driver safety barriers, fare collection systems, and interior stowage. This role offers a unique opportunity to make a significant impact on the customer and ridership experience, utilizing your strong design abilities and systems engineering skills. Familiarity with ADA compliance standards and driver ergonomics will be highly valuable as you contribute to our cutting-edge projects.
IN THIS ROLE YOU WILL
Create and maintain Bill of Materials (BOM), defining appropriate applications of parts and assembly
Gather information regarding supplier components, existing GILLIG designs and technological advancements to rationalize and optimize design concepts
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