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HomeCompaniesEhth Fa Em2 Oraclecloud Com CX 2001Mechanical Integration Engineer

Mechanical Integration Engineer

Ehth Fa Em2 Oraclecloud Com CX 2001 · Torrance, CA, United States; USA - Torrance - CA4V, Torrance, CA, US · Hybrid · Active · $105,400–$140,000 / year · Oracle Recruiting Cloud / Fusion HCM

Job facts

FieldValue
CompanyEhth Fa Em2 Oraclecloud Com CX 2001
TitleMechanical Integration Engineer
Normalized title-
Department / teamElectrical Engineering
LocationTorrance, CA, United States
Work modelHybrid / Hybrid
Employment typeFull Time
Salary$105,400–$140,000 / year
Statusactive
ATS providerOracle Recruiting Cloud / Fusion HCM
Posted / first seen2026-04-29 / 2026-05-31
Changed / last seen2026-05-31 / 2026-06-06

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Linked records

CompanyEhth Fa Em2 Oraclecloud Com CX 2001
Source7c699d76-4469-4c42-a01e-d488e646e6a8
ATS providerOracle Recruiting Cloud / Fusion HCM

Description

Description Garrett Advancing Motion is the true pioneer of automotive powertrain technologies dating back more than 60 years. It continues today as the world’s leader in technology solutions for passenger cars, commercial vehicles, and off- highway equipment. Garrett supplies technology to nearly all major automakers in addition to the global aftermarket under the Garrett brand name. As a result, unlike many other OEM or supplier organizations, Garrett Advancing Motion has visibility across a broad range of OEM’s and Tier 1 suppliers. We are looking for a “Mechanical Integration Engineer – Core” to join the team and work cross-functionally with electrical, mechanical, simulation, systems and other engineers to design, build and test prototypes. You will be responsible for end-to-end development of high powered inverters that will push the boundaries of what is possible - taking a design from the conceptual stage, to the model stage, to physical prototypes in the lab and ultimately on the customer’s application. Come join our fast-paced and dynamic team! Responsibilities Include: Work in fast-paced environment with competing requirements and challenging deadlines. Work with Lead Designers to manage project milestones, scope changes & supplier issues affecting designs. Teamwork Work with team members locally and at Garrett’s other global development centers. You will have the opportunity to travel to external labs or other facilities to oversee prototype component testing or assembly. End-to-End ownership You will own all aspects of the design including the 3D model, 2D drawings, Bill of Material, component stack-up analysis, validation results, assembly instructions, process controls, quality controls, etc. Concept Work cross-functionally with other engineering teams to understand the requirements, voice-of-the-customer, packaging restrictions and performance targets. Iteratively translating those into a conceptual design. Design Collaborate with Design Engineers to develop a 3D model from “clean sheet” to full production inverter using OnShape cloud based CAD. Convert the 3D model into 2D drawings and implement full GD&T in preparation for procurement. Rapid Prototyping Work with component suppliers to source proto hardware and solve quality and technical challenges. Assembly Collaborate with local and global resources to assemble fully functional units. This includes hands-on assembly, debugging, testing. Simulations Execute various mechanical and thermal simulations on your design, including collaborating with Materials & Structures team FEA and CFD/CHT experts to solve challenging engineering problems and tradeoffs. Electronics Work closely with Electrical Engineering Hardware team to package complex, high voltage, high power PCBA into sealed housings exposed to high temperatures and punishing vibrations. Strong focus on built in quality. Design complex parts and assemblies while applying Design for Manufacturing (DFM), cost & reliability fundamentals. Mechatronic mastery Make design decisions based on engineering and cost tradeoffs on all components of an inverter including: Aluminum die casting parts, injection molding parts, 3D printing, sheet metal forming, welding, soldering, adhesives, liquid cooled systems, seals and gaskets, electrical contacts, busbars, insulating films etc. Justify those decisions with supporting evidence including calculations, simulations and empirical testing. Basic Qualifications: Bachelors’ Degree or higher in Mechanical Engineering, Aerospace Engineering, or Mechatronic Engineering. 3 or more years of experience designing mechanical and/or electrical devices / components / systems such as traction drive inverters, DC/DC converters or other electronics for automotive, aerospace or industrial applications. Intermediate CAD skills. Experience with Onshape (preferred). Solidworks, CATIA V5, or equivalent CAD software accepted. Understanding of vibration, heat transfer, material fatigue, statics & dynamics, fluid dynamics, material properties (metallic, polymeric and elastomeric). Basic knowledge of ASME Y14.5-1994 or 2018 Geometric Dimensioning & Tolerancing (GD&T) standard and 2D/3D tolerance stack up analysis. Experience with Enovia PLM / SmarTeam / Team Center PDM Systems preferred. Experience with other modern PLM systems (e.g. Windchill) are accepted equivalents. Experience in design for manufacturing (DFM) of metal castings, machining, sheet metal forming, plastic injection molding, liquid dispense dosing. Experience in design for modern mass-production part assembly processes. Additional Desired Qualifications: Basic understanding of automotive powertrains internal combustion engines (and turbochargers), fuel cells, electric vehicles. Basic understanding of industrial refrigeration systems and refrigeration compressors. Basic knowledge of mechatronic systems, experience working with PCBA, power electronics and high voltage systems a plus. Knowledge and experience with FEA (Finite Element Analysis). Experience with fluid flow and dynamics and CFD (Computational Fluid Dynamics). Experience with thermal design and simulation (CHT). Experience with APQP, PPAP, DFMEA & problem solving techniques. Six Sigma or Lean certified Key Success Factors: Work both independently and in a team environment. Team player with a positive attitude and a willingness to support other teams when called upon. Ability to coordinate detail design activities with local and global teams. Pay Range The salary range for this role is between $105,400 and $140,000. *Note that this range represents the pay range for all positions in the job grade within which this position falls. Starting rate of pay may vary based on factors including, but not limited to, position offered, education, training, and/or experience. In addition to the annual base salary this role offers the below: Benefits: We offer medical, dental, and vision insurance. In addition we also offer Flexible spending accounts, Life/AD&D insurance, Short term and Long term disability insurance, and hospital indemnity insurance. 401 (K) Retirement Plan: Garrett also provides a 401(k) Retirement Plan through Fidelity with pre-tax, post-tax and ROTH contribution options. There may be an annual discretionary match provided by Garrett based on company performance. Garrett provides paid holidays, vacations, and sick days. Additional details will be shared through the new hire process. Garrett is an equal opportunity employer. Qualified applicants will be considered without regard to age, race, creed, color, national origin, ancestry, marital status, affectional or sexual orientation, gender identity or expression, disability, nationality, sex, or veteran status. #LI-CR1

Full job record

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Org ID693e832c-4ded-4621-8300-fb127d2d7e4c
Source ID7c699d76-4469-4c42-a01e-d488e646e6a8
Board ID7c699d76-4469-4c42-a01e-d488e646e6a8
Provideroracle_hcm
Provider Job Key13893
TitleMechanical Integration Engineer
Normalized Title
Statusactive
Activeyes
Location TextTorrance, CA, United States; USA - Torrance - CA4V, Torrance, CA, US
DepartmentElectrical Engineering
Team
Employment Typefull_time
Workplace Typehybrid
Remote Policyhybrid
CountryUnited States
RegionCA
CityTorrance
Salary Rawsalary range for this role is between $105,400 and $140,000
Salary Min105,400
Salary Max140,000
Salary CurrencyUSD
Salary Periodyear
Source URLhttps://ehth.fa.em2.oraclecloud.com/hcmUI/CandidateExperience/en/sites/CX_2001/job/13893
Apply URLhttps://ehth.fa.em2.oraclecloud.com/hcmUI/CandidateExperience/en/sites/CX_2001/job/13893
First Seen At2026-05-31 18:03:07Z
Last Seen At2026-06-06 11:08:47Z
Last Checked At2026-06-06 11:08:47Z
Last Changed At2026-05-31 18:03:07Z
Inactive At
Source Posted At2026-04-29 23:36:30Z
Source Updated At
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Come join our fast-paced and dynamic team!</p><p style=\"background-color: white; line-height: normal; margin-bottom: 0in;\">&nbsp;</p><p style=\"background-color: white; line-height: normal; margin-bottom: 0in;\"><strong>Responsibilities Include:</strong></p><ul><li>Work in fast-paced environment with competing requirements and challenging deadlines. Work with Lead Designers to manage project milestones, scope changes &amp; supplier issues affecting designs.</li><li>Teamwork<ul><li>Work with team members locally and at Garrett’s other global development centers. You will have the opportunity to travel to external labs or other facilities to oversee prototype component testing or assembly.</li></ul></li><li>End-to-End ownership<ul><li>You will own all aspects of the design including the 3D model, 2D drawings, Bill of Material, component stack-up analysis, validation results, assembly instructions, process controls, quality controls, etc.</li></ul></li><li>Concept<ul><li>Work cross-functionally with other engineering teams to understand the requirements, voice-of-the-customer, packaging restrictions and performance targets. Iteratively translating those into a conceptual design.</li></ul></li><li>Design<ul><li>Collaborate with Design Engineers to develop a 3D model from “clean sheet” to full production inverter using OnShape cloud based CAD. Convert the 3D model into 2D drawings and implement full GD&amp;T in preparation for procurement.</li></ul></li><li>Rapid Prototyping<ul><li>Work with component suppliers to source proto hardware and solve quality and technical challenges.</li></ul></li><li>Assembly<ul><li>Collaborate with local and global resources to assemble fully functional units. &nbsp;This includes hands-on assembly, debugging, testing.</li></ul></li><li>Simulations&nbsp;<ul><li>Execute various mechanical and thermal simulations on your design, including collaborating with Materials &amp; Structures team FEA and CFD/CHT experts to solve challenging engineering problems and tradeoffs.</li></ul></li><li>Electronics<ul><li>Work closely with Electrical Engineering Hardware team to package complex, high voltage, high power PCBA into sealed housings exposed to high temperatures and punishing vibrations.</li></ul></li><li>Strong focus on built in quality. Design complex parts and assemblies while applying Design for Manufacturing (DFM), cost &amp; reliability fundamentals.&nbsp;</li><li>Mechatronic mastery<ul><li>Make design decisions based on engineering and cost tradeoffs on all components of an inverter including: Aluminum die casting parts, injection molding parts, 3D printing, sheet metal forming, welding, soldering, adhesives, liquid cooled systems, seals and gaskets, electrical contacts, busbars, insulating films etc. &nbsp;Justify those decisions with supporting evidence including calculations, simulations and empirical testing.</li></ul></li></ul><p style=\"background-color: white; line-height: normal; margin-bottom: 0in;\">&nbsp;</p><p style=\"background-color: white; line-height: normal; margin-bottom: 0in;\"><strong>Basic Qualifications:</strong></p><ul><li>Bachelors’ Degree or higher in Mechanical Engineering, Aerospace Engineering, or Mechatronic Engineering.</li><li>3 or more years of experience designing mechanical and/or electrical devices / components / systems such as traction drive inverters, DC/DC converters or other electronics for automotive, aerospace or industrial applications.</li><li>Intermediate CAD skills. &nbsp;Experience with Onshape (preferred). &nbsp;Solidworks, CATIA V5, or equivalent CAD software accepted.</li><li>Understanding of vibration, heat transfer, material fatigue, statics &amp; dynamics, fluid dynamics, material properties (metallic, polymeric and elastomeric).</li><li>Basic knowledge of ASME Y14.5-1994 or 2018 Geometric Dimensioning &amp; Tolerancing (GD&amp;T) standard and 2D/3D tolerance stack up analysis.</li><li>Experience with Enovia PLM / SmarTeam / Team Center PDM Systems preferred. &nbsp;Experience with other modern PLM systems (e.g. Windchill) are accepted equivalents.</li><li>Experience in design for manufacturing (DFM) of metal castings, machining, sheet metal forming, plastic injection molding, liquid dispense dosing. Experience in design for modern mass-production part assembly processes.</li></ul><p style=\"background-color: white; line-height: normal; margin-bottom: 0in;\">&nbsp;</p><p style=\"background-color: white; line-height: normal; margin-bottom: 0in;\"><strong>Additional Desired Qualifications:</strong></p><ul><li>Basic understanding of automotive powertrains internal combustion engines (and turbochargers), fuel cells, electric vehicles.</li><li>Basic understanding of industrial refrigeration systems and refrigeration compressors.</li><li>Basic knowledge of mechatronic systems, experience working with PCBA, power electronics and high voltage systems a plus.</li><li>Knowledge and experience with FEA (Finite Element Analysis). &nbsp;Experience with fluid flow and dynamics and CFD (Computational Fluid Dynamics).</li><li>Experience with thermal design and simulation (CHT).</li><li>Experience with APQP, PPAP, DFMEA &amp; problem solving techniques.</li><li>Six Sigma or Lean certified&nbsp;<br>&nbsp;</li></ul><p><strong>Key Success Factors:</strong></p><ul><li>Work both independently and in a team environment. &nbsp;</li><li>Team player with a positive attitude and a willingness to support other teams when called upon. &nbsp;</li><li>Ability to coordinate detail design activities with local and global teams.</li></ul><p style=\"background-color: white; line-height: normal;\">&nbsp;</p><p style=\"background-color: white; line-height: normal;\"><strong>Pay Range</strong></p><p style=\"background-color: white; line-height: normal;\">The salary range for this role is between $105,400 and $140,000.&nbsp;</p><p>*Note that this range represents the pay range for all positions in the job grade within which this position falls. 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