Engineering Jobs in Irvine Ca Remote
319 positions found — Page 16
AI Product Manager
Salary Range: $160k to $180k
Role Summary
We’re hiring an AI Product Manager to own the feature roadmap for our client's AI procurement agents and AI enabled product experiences. This is a highly collaborative role for someone who can lead discovery, translate real contractor workflows into product, and ship AI features that create measurable lift.
What You’ll Own
- Feature roadmap for AI procurement agents and AI assisted workflows (not overall product strategy)
- Discovery + validation: spend time with contractors and suppliers to understand real workflow friction
- AI product execution: define requirements, align design/engineering, and deliver reliable AI features
- Capability boundaries: understand what LLM/agent systems can and cannot do; design accordingly
- Cross functional collaboration: partner deeply with Engineering, Design, and GTM to ship and iterate
- Operational excellence: use AI tools to make your own PM workflow faster and sharper
What We’re Looking For
- 3–7 years product experience, with clear ownership of feature roadmaps and execution
- LLM + agent fluency (not necessarily ML): understands how to apply AI to real workflows
- Strong discovery discipline: avoids jumping to solutions too early; frames the real need first
- Natural problem solver with strong product instincts and structured thinking
- Excellent communicator who can align teams and explain AI behavior clearly to stakeholders
- Passion for staying current on LLMs/agents, tools, and AI product patterns
Location Requirement
Onsite in Irvine, CA (this is not a remote role)
We are seeking a Senior SoC/ASIC Physical Design Engineer to drive physical design activities to successful closure by collaborating closely with RTL and cross-functional engineering teams.
In this role, you will develop, refine, and implement cutting-edge flows and methodologies that optimize performance, power, and area (PPA), directly contributing to world class time to closure and tapeout with optimal team efficiency and resource allocation.
Responsibilities:
- Build modern physical design flows using EDA tool fusion and machine learning to optimize PPA, resources, and accelerate time-to-closure.
- Perform synthesis, floorplanning, PDN generation, place & route, timing, noise, verification, EM/IR checks, and signoff.
- Create and refine PD methodologies and automation scripts to streamline design and signoff processes.
- Partner with RTL, DFT, and ASIC teams to define architectural feasibility, timing/power/area targets, and design trade-offs.
- Apply a metrics-driven approach to resolve design and timing challenges and ensure predictable milestone delivery.
- Lead closure activities, including STA, noise analysis, logic equivalency, physical verification, and power integrity (EM/IR).
Qualifications:
- Bachelor’s in Electrical Engineering, Computer Engineering, or Computer Science .Master’s preferred
- At least 10 years of experience in ASIC/SoC physical design and flow development.
- Expertise in RTL-to-GDSII design flows, Synopsys EDA tools, and advanced PD methodologies like synthesis, place & route, STA, CDC, power analysis.
- Knowledge of FinFET/deep sub-micron CMOS, DFT methodologies like Scan, MBIST, LBIST and power/IR drop management.
- Strong ability to analyze design parameters and QoR metrics and implement advanced power optimization techniques such as SVS, DVFS, and SRAM split-rail architectures.
- Proficient in Python, Tcl, Perl, bash/csh, and automation scripting.
- Strong analytical and problem solving skills with proven ability to lead design closure and collaborate across teams.
Job Title : Nuclear Engineer (Naval Reactors Engineer) Category / Component : Officer • Active Overview Design, regulate, and oversee the Navy's nuclear propulsion program, including reactor design, fleet operations, and eventual defueling and decommissioning of nuclear powered ships and submarines from Naval Reactors Headquarters and associated Department of Energy laboratories and shipyards.
Key Responsibilities Provide technical direction in areas such as reactor and fluid systems design, reactor physics, materials development, component design for steam generators, pumps, and valves, instrumentation and control for reactor and propulsion plants, testing and quality control, radiation shielding, and chemistry and radiological controls; review designs and analyses from laboratories, shipyards, and industry partners; coordinate with fleet units to ensure safe and reliable nuclear plant operation.
What to Expect Assume significant technical responsibility early in your career as part of a lean headquarters staff; work primarily in an analytical and oversight role rather than operating plants at sea; balance long term engineering projects with time sensitive fleet and shipyard issues; frequent coordination with senior civilian engineers, naval officers, and technical teams; high expectations for attention to detail, judgment, and written and oral communication.
Work Environment Work mainly at Naval Reactors Headquarters in the Washington, District of Columbia area with regular engagement with Department of Energy laboratories, nuclear training sites, shipyards, and nuclear powered ships and submarines; office based work that includes document reviews, technical meetings, inspections, and site visits rather than day to day shipboard watchstanding.
Pathways, Training & Advancement Officer commissioning through programs such as Officer Candidate School or the Nuclear Propulsion Officer Candidate program followed by a structured technical qualification program at Naval Reactors; rotational exposure to laboratories, prototypes, shipyards, and fleet support issues; progressive responsibility leading projects and becoming a subject matter expert, with opportunities for professional military education and advanced graduate study in technical fields.
Entry through the Nuclear Propulsion Officer Candidate program for qualified college students and recent graduates, or selection via Officer Candidate School for those who already hold qualifying degrees; all applicants must meet Nuclear Propulsion Program academic and technical screening standards in addition to general officer commissioning requirements.
Qualifications All Navy jobs require meeting general enlistment or commissioning standards, which typically include: Eligibility to serve in the United States Navy, which may involve United States citizenship or other legal residency and work status, depending on the program and current law and policy A high school diploma or equivalent for enlisted positions, and a bachelor's or qualifying professional degree for officer positions Meeting age limits that vary by program and are set in law and Navy policy.
Some communities have more restrictive age ranges Meeting medical, vision, and dental standards, including body composition and physical fitness requirements, with some jobs requiring more demanding standards Meeting character and conduct standards, including background screening Achieving required test scores for your program, such as the Armed Services Vocational Aptitude Battery for enlisted roles or officer qualification tests for officer programs Eligibility for a security clearance when required for your rating or designator Additional qualifications can include specific skills, education, licensure, or experience that are unique to a job or community and will be reviewed with you by a recruiter.
Additional qualifications for this job may include: Completion of a rigorous technical degree in engineering, physics, mathematics, or a closely related field that includes strong backgrounds in calculus and physics; outstanding academic record, particularly in technical coursework; United States citizenship and eligibility for a high level security clearance; strong technical aptitude and comfort with detailed analytical work.
Education Education benefits are available through standard Navy programs such as Tuition Assistance, the Post-9/11 GI Bill, ACE-recommended college credit for Navy training, Navy COOL-funded certifications, USMAP apprenticeships, and other Navy College Program opportunities.
Specific options depend on the Sailor's status, training, and current Navy policy.
Pay, Benefits & Service Pay, benefits, and service commitments follow standard Navy Active and/or Reserve policies for this type of role, including basic pay, allowances when eligible, health coverage, and retirement options.
Exact entitlements, special pays, and service obligations depend on program, component, years of service, and current law and Navy guidance.
Incentives Incentives such as bonuses, special pays, and loan repayment may be available at times for specific ratings or communities, but they change frequently and cannot be guaranteed.
Applicants must confirm current incentives and eligibility with an official Navy recruiter or authoritative Navy source.
Notes and Disclaimers This description is a general overview of typical duties, training, and opportunities in this community.
It does not replace official Navy instructions, policies, or contracts and does not guarantee specific assignments, training, incentives, or outcomes.
Actual opportunities depend on Navy needs, individual performance, screening results, and current law and policy.
- Full Stack, AI/ML ( Remote) Pay Range: 65
- 75/hr
*Please include Linkedin on your resume
* Role Overview: The Enterprise Architect
- Full Stack, AI/ML will be responsible for defining and leading enterprise grade solution architectures that integrate modern full stack engineering practices with scalable AI/ML capabilities.
The role requires deep experience across application engineering, MLOps, cloud-native architectures, data engineering, and enterprise integration.
You will work closely with business, product, engineering, and data science teams to conceptualize, architect, and deliver complex, secure, scalable, and high performing digital ecosystems powered by AI/ML.
This role requires 12+ years of hands-on and architectural experience in large-scale enterprise environments.
Key Responsibilities 1.
Enterprise Architecture & Strategy Define end-to-end architecture for full stack and AI/ML systems across discovery, data management, model development, deployment, and operations.
Establish enterprise architecture principles, standards, and governance models for AI-enabled platforms.
Drive digital modernization and cloud transformation initiatives aligned with business goals.
Evaluate emerging technologies (AI/ML, DevOps, MLOps, cloud platforms) to accelerate enterprise innovation.
2.
AI/ML Solution Architecture Architect scalable ML pipelines and automated workflows including data ingestion, feature engineering, model development, evaluation, deployment, and monitoring.
Design and implement CI/CD and MLOps frameworks.
Work with data scientists, ML engineers, and analytics engineers to operationalize AI/ML models at scale.
Ensure governance, compliance, versioning, reproducibility, and monitoring for AI/ML systems.
3.
Full Stack & Platform Architecture Design and review enterprise applications combining backend, frontend, cloud APIs, and microservices.
Lead architecture for full stack development teams including scalable frontend, middleware, data APIs, microservices, and cloud-native services.
Guide solution teams on performance optimization, caching, distributed systems, and containerized deployments (Docker/Kubernetes).
Oversee API-first integration patterns, event-driven designs, and asynchronous architectures.
4.
Cloud & DevOps/MLOps Integration Architect multi-cloud and hybrid solutions across AWS, Azure, and GCP ensuring interoperability and vendor-neutral design.
Lead cloud automation, DevOps pipelines, infrastructure as code, and observability tooling.
Implement secure, robust API management and enterprise connectivity models.
5.
Stakeholder Leadership & Governance Partner with business leaders to translate complex business goals into technical roadmaps.
Mentor engineering teams and foster best practices in solution delivery, coding, security, scalability, and architecture standards.
Facilitate architecture review boards, technical audits, and solution governance.
This is a hands-on, operations-focused role responsible for the reliability, lifecycle management, and continuous improvement of compute, storage, and networking infrastructure.
The ideal candidate thrives in large-scale production environments, excels in troubleshooting complex hardware issues, and is passionate about automation, reliability, and operational excellence.
Responsibilities Own and operate physical datacenter hardware including compute, storage, and networking systems Execute day-2 hardware operations: installation, break/fix, firmware upgrades, patching, lifecycle management Manage hardware capacity planning, expansions, refresh cycles, and decommissions Troubleshoot complex issues related to: Server hardware (CPU, memory, disks, NICs, HBAs) Storage systems and disk subsystems Network connectivity and physical switches Manage firmware, BIOS, and hardware management controllers (iDRAC, iLO, Redfish, etc.) Collaborate with platform, SRE, network, storage, and security teams during incidents and maintenance Improve hardware reliability through standardization, automation, and proactive monitoring Build automation for provisioning and operations (Ansible, CI/CD, IaC, etc.) Lead incident response and drive RCA, corrective, and preventive actions Maintain documentation including runbooks, standards, and operational playbooks Mentor junior team members and help increase operational maturity Requirements 7+ years of experience in infrastructure, datacenter, or hardware engineering Strong hands-on experience with large-scale server, storage, and network hardware Expertise in x86 architecture, CPU topology, NUMA, memory/I/O subsystems Experience operating enterprise storage systems with strong understanding of performance and resiliency Familiarity with L2/L3 networking, VLANs, NIC bonding, and physical switching Strong Linux fundamentals and ability to diagnose hardware-related OS issues Experience in hardware lifecycle management and vendor coordination Proven ability to automate operational workflows Experience supporting highly available, production-grade infrastructure with on-call rotation Nice to Have Experience with private cloud or on-prem cloud hardware platforms Familiarity with OME, OneView, Intersight, or similar vendor fleet management tools Knowledge of bare-metal provisioning systems and automation tooling Experience integrating hardware with virtualization or container platforms Understanding of IPMI, Redfish, and other hardware management APIs Vendor certifications or hands-on expertise with major server/storage manufacturers Experience operating infrastructure across multiple datacenters or global environments
Job Family: Mechanical Design Engineering
Organization: Data Center Infrastructure Team
Location: Remote* OR Austin, TX
*Requires up to 20% domestic and/or international travel (rare)
How will you make an impact?
We are seeking a highly skilled, technically proficient and detail-oriented Principal Mechanical Engineer with expertise in metal structures, frame design, pipes and fabrication to support the development of power and cooling infrastructure for data centers. This role is critical in designing robust mechanical systems that house and support electrical and thermal management equipment, ensuring structural integrity, manufacturability, and compliance with industry standards.
What will you do?
- Experience designing and integrating hydronic systems including pumps, piping networks, valves, and heat exchangers for data center cooling applications.
- Knowledge of fluid dynamics, pressure drop calculations, and pipe sizing for chilled water and glycol-based systems.
- Understanding of installation constraints, maintenance access, and serviceability in large-scale mechanical infrastructure.
- Design and develop mechanical frames, enclosures, and support structures for data center power and cooling products (UPS systems, battery racks, CRAC units, containment systems, LVS, MVS).
- Perform advanced structural analysis using FEA tools to validate mechanical integrity under static, dynamic, seismic, and thermal loads.
- Analyze load paths, stress concentrations, and fatigue life of structural components to ensure long-term reliability.
- Design metal enclosures with considerations for airflow, thermal containment, EMI shielding, and environmental protection.
- Evaluate and implement new materials, coatings, and fabrication technologies to enhance product performance and reliability.
- Participate in customer engagements and site visits to understand deployment constraints and gather feedback for design improvements.
- Create detailed CAD models and fabrication drawings, including weldments, sheet metal, and machined parts
- Select appropriate materials and fabrication methods to optimize cost, performance, and reliability
- Collaborate with electrical, thermal, and systems engineering teams to integrate mechanical designs with functional components.
- Lead mechanical design reviews and contribute to cross-functional design validation efforts.
- Develop and maintain design documentation including BOMs, specifications, test plans, and engineering change orders (ECOs).
- Drive continuous improvement in mechanical design for manufacturability (DFM), cost reduction, and performance optimization.
- Interface with suppliers and customers to resolve fabrication issues and ensure quality standards are met.
- Support lifecycle management of mechanical components, including obsolescence planning and alternate sourcing.
- Conduct root cause analysis and corrective actions for mechanical failures or field issues.
- Ensure mechanical designs support airflow management, thermal containment, and integration with cooling systems (in-row cooling, rear door heat exchangers).
- Collaborate with compliance and certification teams to ensure mechanical designs meet global regulatory requirements (UL, CE, RoHS, REACH)
- May perform other duties and responsibilities as assigned
How will you get here?
Education:
- Bachelor’s Degree in Mechanical Engineering or related engineering discipline.
Experience:
- 8+ years of experience in mechanical design and fabrication, preferably in data center, industrial, or power systems environment.
- Proficiency in CAD tools (SolidWorks, Creo, Inventor) and FEA software (ANSYS, Abaqus).
- Strong knowledge of metal fabrication processes including welding, sheet metal forming, and machining is a must
- Experience with structural design for heavy equipment or large assemblies, and familiarity with thermal and airflow considerations in enclosure design is required
- Excellent communication and cross-functional collaboration skills
Knowledge, Skills, Abilities:
- Excellent interpersonal and communication skills
- Creative, self-motivated, accountable, and team-oriented
- Able to work independently with minimal oversight
- Proficient in reading, analyzing, and interpreting general business publications, professional journals, technical procedures, and government regulations
- Skilled in writing reports, business correspondence, and procedural guides
- Effective at presenting information and responding to management, clients, and public queries
- Capable of influencing others and sharing best practices
- Comfortable working as part of a global team
- Capable of assessing projects, articulating risks, and developing project milestones
- Familiar with stage-gate processes in project lifecycle management (PLCM)
- Able to mentor less experienced engineers
- Ability to travel both domestically and internationally up to 30%
Preferred Qualifications:
- Master’s Degree in Mechanical Engineering
- Experience designing mechanical systems for data centers, telecom, or industrial power/cooling products.
- Active Professional Engineer (PE) license.
- Knowledge of regulatory and safety standards applicable to data center infrastructure.
- Hands-on experience with prototype fabrication and testing; Experience working with global suppliers and contract manufacturers a plus
Remote working/work at home options are available for this role.
**This position supports hybrid work schedule depending on organization needs.**
Software Test Development Engineer who will directly contribute to the transformative growth within our Enterprise and Infrastructure division by applying unique and innovative approaches to solving problems within a large-scale software production environment. The Software Test Development Engineer play a vital role in ensuring the quality and reliability of hardware products, contributing to the overall success of the manufacturing process and customer satisfaction. You will be responsible for contributing to the end-to-end architecture, definition, development and production deployment of production software applications and infrastructure spanning multiple customers and manufacturing regions. You will also be responsible for interfacing with internal engineering, manufacturing and quality teams and our end customers to ensure your software deliverables meet the rigorous standards of Jabil’s world-class manufacturing environments.
Test System Development: Design and develop test systems and procedures for manufacturing processes. This includes creating test plans, test cases, and test scripts to assess the functionality and performance of hardware components or devices such as motherboard, memory, CPU, storage (SSD, HDD, NVMe) and PCIE devices (NIC, GPU, Mezz cards, RAID cards)
Test Software Development: Create, validate, release, and maintain test software and scripts that automate the testing process. This software may include code for controlling test equipment, collecting and analyzing data, and generating test reports
Test Sustaining: Support and maintenance for the manufacturing server (L10) and rack (L11) level test software and infrastructure deployed at our production facilities, including the implementation of minor system configuration changes (new IPNs)
Maintain comprehensive manufacturing server (L10) and rack (L11) documentation of test procedures, specifications, and Infrastructure
Collaboration: Work closely with cross-functional teams, including hardware engineers, manufacturing engineers, and quality assurance personnel, to ensure alignment on testing requirements and quality standards
Continuous Learning: Stay updated on the latest advancements in testing technologies, methodologies, and industry best practices to keep manufacturing processes competitive and up to date
Definition and collaboration on overall test infrastructure and application architectures
BS degree in Electrical/Computer Engineering, Computer Science or related field is required
5-8 years’ experience in a software manufacturing test development/sustaining with enterprise server, storage or networking products is required
~10+ years of relevant experience in a software manufacturing test development/ sustaining with enterprise server, storage or networking products and some college coursework in lieu of a 4- yr. Expertise in the following programming/scripting languages: Python, Java, BASH. C, C++, experience a plus
Linux development expertise with a solid understanding of its fundamentals: Expertise with hardware and API solutions for controlling, managing and stressing L10 devices (servers, network and storage SSDs, NVMe): IPMI, Redfish, mprime, FIO, Linpack, ptugen, memtester
Expertise in the creation and configuration (DHCP, PXE boot, nginx) of Virtual Machines (VMs) using VMWare
Expertise with leading edge networking systems, hardware, software and protocols including but not limited to enterprise ethernet datacenter switching/routing L1, L2, and L3 (BGP, DHCP Relay, ECMP). Strong knowledge of professional software engineering practices for the complete software development life cycle, including coding standards, code reviews, source control management, build processes, testing, and operations
Ability to travel up to 10% globally as required
Experience working in a multi-site and multi-cultural environments is a plus
Remote working/work at home options are available for this role.
Mechanical Design Engineering
Data Center Infrastructure Team
Location: Remote* OR Austin, TX
*Requires up to 20% domestic and/or international travel (rare)
The Principal Mechanical Design Engineer (Data Center Infrastructure) is a technical leader responsible for the architecture, integration, and validation of advanced mechanical systems supporting hyperscale data center environments. This role is responsible for defining system performance requirements, developing technical specifications, selection and integration of critical components, and leading mechanical design from concept through production release. Responsibilities include wetted material selection, thermal and structural analysis, fastening strategies, component layout, and design for manufacturability. Partners cross-functionally to deliver reliable, scalable, and cost-effective Data Center Infrastructure solutions while advancing innovation in liquid cooling performance.
Lead the end-to-end mechanical design and engineering of hyperscale Data Center Infrastructure (DCI) systems, including liquid-cooled rack assemblies, CDUs, manifolds, enclosures, structural frames, and associated hydronic piping systems.
Serve as the technical authority for single-phase and two-phase liquid cooling architectures, including primary and secondary loop design, in-rack distribution, and system integration within hyperscale data center environments.
Define and validate operational performance requirements for liquid-cooled infrastructure, including pressure ratings, hydrostatic limits, temperature ranges, flow rates and uniformity, thermal expansion, durability, and serviceability.
Design, analyze, and validate machined components, welded fabrications, manifolds, and structural systems using advanced engineering principles, including stress analysis, finite element analysis (FEA), flow modeling, and structural load calculations to ensure mechanical integrity and code compliance.
Lead wetted material selection and compatibility analysis for liquid cooling systems, including corrosion mitigation strategies, surface treatments, cleanliness standards, and long-term durability considerations.
Develop and review CAD models and complete technical data packages using CREO, SolidWorks, or equivalent tools; Author and approve technical specifications for piping systems, rack-level cooling infrastructure, and hydronic components, including installation guidelines, maintenance procedures, testing requirements, and compliance with applicable standards (ASME, ISO).
Establish and oversee validation protocols including hydrostatic pressure testing, leak detection and mitigation, flow resistance analysis, and corrosion verification to ensure regulatory compliance and operational reliability.
Evaluate customer design proposals and technical specifications to assess feasibility, manufacturability, cost, and risk; provide recommendations to optimize performance and total cost of ownership.
Lead cross-functional design reviews with electrical, thermal, manufacturing, quality, and supply chain teams to ensure full system integration and compliance with product specifications and applicable plumbing and hydronic codes.
Optimize rack manifold design and manufacturing processes, including machining, welding, surface finishing, connection interfaces, venting and draining strategies, and flow path optimization to enhance performance and manufacturability.
Drive continuous improvement in manufacturing assembly methods and tooling in collaboration with production teams and equipment vendors to improve quality, scalability, and cost efficiency.
Lead root cause investigations for complex mechanical failures identified during validation or field deployment and implement corrective design improvements.
Provide technical leadership in vendor qualification and management for mechanical components and liquid cooling subsystems.
Identify and mitigate technical risks impacting performance, schedule, or cost, and contribute to R&D initiatives advancing liquid cooling technologies and system innovation.
Bachelor’s degree in Mechanical Engineering, Systems Engineering, or a related engineering discipline from an accredited university.
8 years' experience in mechanical design and integration of mission-critical systems.
~ Proven track record of successful system designs and implementations in a relevant industry
~ Strong understanding of mechanical systems, integration strategy, and system coordination
~ Familiarity with industry standards and regulations related to Energy Storage Systems and Data Center Infrastructure is preferred.
~ Master’s Degree in Mechanical Engineering
~
Remote working/work at home options are available for this role.
Mechanical Design Engineering
Data Center Infrastructure Team
Location: Remote* OR Austin, TX
*Requires up to 20% domestic and/or international travel (rare)
The Principal Mechanical Design Engineer (Data Center Infrastructure) is a technical leader responsible for the architecture, integration, and validation of advanced mechanical systems supporting hyperscale data center environments. This role is responsible for defining system performance requirements, developing technical specifications, selection and integration of critical components, and leading mechanical design from concept through production release. Responsibilities include wetted material selection, thermal and structural analysis, fastening strategies, component layout, and design for manufacturability. Partners cross-functionally to deliver reliable, scalable, and cost-effective Data Center Infrastructure solutions while advancing innovation in liquid cooling performance.
Lead the end-to-end mechanical design and engineering of hyperscale Data Center Infrastructure (DCI) systems, including liquid-cooled rack assemblies, CDUs, manifolds, enclosures, structural frames, and associated hydronic piping systems.
Serve as the technical authority for single-phase and two-phase liquid cooling architectures, including primary and secondary loop design, in-rack distribution, and system integration within hyperscale data center environments.
Define and validate operational performance requirements for liquid-cooled infrastructure, including pressure ratings, hydrostatic limits, temperature ranges, flow rates and uniformity, thermal expansion, durability, and serviceability.
Design, analyze, and validate machined components, welded fabrications, manifolds, and structural systems using advanced engineering principles, including stress analysis, finite element analysis (FEA), flow modeling, and structural load calculations to ensure mechanical integrity and code compliance.
Lead wetted material selection and compatibility analysis for liquid cooling systems, including corrosion mitigation strategies, surface treatments, cleanliness standards, and long-term durability considerations.
Develop and review CAD models and complete technical data packages using CREO, SolidWorks, or equivalent tools; Author and approve technical specifications for piping systems, rack-level cooling infrastructure, and hydronic components, including installation guidelines, maintenance procedures, testing requirements, and compliance with applicable standards (ASME, ISO).
Establish and oversee validation protocols including hydrostatic pressure testing, leak detection and mitigation, flow resistance analysis, and corrosion verification to ensure regulatory compliance and operational reliability.
Evaluate customer design proposals and technical specifications to assess feasibility, manufacturability, cost, and risk; provide recommendations to optimize performance and total cost of ownership.
Lead cross-functional design reviews with electrical, thermal, manufacturing, quality, and supply chain teams to ensure full system integration and compliance with product specifications and applicable plumbing and hydronic codes.
Optimize rack manifold design and manufacturing processes, including machining, welding, surface finishing, connection interfaces, venting and draining strategies, and flow path optimization to enhance performance and manufacturability.
Drive continuous improvement in manufacturing assembly methods and tooling in collaboration with production teams and equipment vendors to improve quality, scalability, and cost efficiency.
Lead root cause investigations for complex mechanical failures identified during validation or field deployment and implement corrective design improvements.
Provide technical leadership in vendor qualification and management for mechanical components and liquid cooling subsystems.
Identify and mitigate technical risks impacting performance, schedule, or cost, and contribute to R&D initiatives advancing liquid cooling technologies and system innovation.
Bachelor’s degree in Mechanical Engineering, Systems Engineering, or a related engineering discipline from an accredited university.
8 years' experience in mechanical design and integration of mission-critical systems.
~ Proven track record of successful system designs and implementations in a relevant industry
~ Strong understanding of mechanical systems, integration strategy, and system coordination
~ Familiarity with industry standards and regulations related to Energy Storage Systems and Data Center Infrastructure is preferred.
~ Master’s Degree in Mechanical Engineering
~
Remote working/work at home options are available for this role.
Build your career with Jabil! We challenge and empower you to make most of your talents, working with outstanding colleagues from diverse backgrounds who share your drive and passion to make Jabil grow!
Location/Division Specific Information – Austin, TX / USA - Remote
**This position supports hybrid work schedule depending on organization needs.**
How will you make an impact? –
Jabil is seeking a DCI Test Development Engineer who will directly contribute to the transformative growth within our Enterprise and Infrastructure division by applying unique and innovative approaches to solving problems within a large-scale software and data center infrastructure. The DCI Test Development Engineer plays a vital role in ensuring the quality and reliability of hardware products, contributing to the overall success of the manufacturing process and customer satisfaction. You will be responsible for contributing to the end-to-end architecture, definition, development and production deployment of production software applications and data center infrastructure spanning multiple customers and manufacturing regions. You will also be responsible for interfacing with internal engineering, manufacturing and quality teams and our end customers to ensure your software deliverables meet the rigorous standards of Jabil’s world-class manufacturing environments.
What will you do?
- Test System Development: Design and develop test systems and procedures for manufacturing processes. This includes creating test plans, test cases, and test scripts to assess the functionality and performance of hardware.
- Develop and implement automated manufacturing test sequences in Python that interface with BMS and PLC hardware to validate the functional performance, communication protocols, and safety logic of liquid cooling equipment.
- Test Software Development: Create, validate, release, and maintain test software and scripts that automate the testing process. This software may include code for controlling test equipment, collecting and analyzing data, and generating test reports.
- Test Sustaining: Support and maintenance for the manufacturing server (L10) and rack (L11) level test software and infrastructure deployed at our production facilities, including the implementation of minor system configuration changes (new IPNs)
- Documentation: Maintain comprehensive documentation of test procedures, specifications, and Infrastructure
- Collaboration: Work closely with cross-functional teams, including hardware engineers, manufacturing engineers, controls engineer, and quality assurance personnel, to ensure alignment on testing requirements and quality standards
- Continuous Learning: Stay updated on the latest advancements in testing technologies, methodologies, and industry best practices to keep manufacturing processes competitive and up to date
- Definition and collaboration on overall test infrastructure and application architectures
How will you get here?
Education:
- BS degree in Electrical/Computer Engineering, Computer Science or related field is required
Experience:
- 5-8 years’ experience in a software manufacturing test development/sustaining with enterprise server, storage or networking products is required
- 10+ years of relevant experience in a software manufacturing test development/ sustaining with enterprise server, storage or networking products and some college coursework in lieu of a 4- yr. degree, will be considered
- Excellent verbal and written communication skills is required
Knowledge, Skills, Abilities:
- Expertise in the following programming/scripting languages: Python, Java, BASH. C, C++, experience a plus
- Linux development expertise with a solid understanding of its fundamentals: CentOS/Ubuntu
- Python for hardware automation, with a deep understanding of industrial communication protocols (Modbus, BACnet, or Ethernet/IP) and the ability to interpret P&IDs and electrical schematics for cooling systems; experience in designing physical test stations and sensor integration is highly preferred.
- Expertise in the creation and configuration (DHCP, PXE boot, nginx) of Virtual Machines (VMs) using VMWare
- Expertise with leading edge networking systems, hardware, software and protocols including but not limited to enterprise ethernet datacenter switching/routing L1, L2, and L3 (BGP, DHCP Relay, ECMP). Arista CloudVision is a plus
- Experience with code versioning tools (Git preferred)
- Strong knowledge of professional software engineering practices for the complete software development life cycle, including coding standards, code reviews, source control management, build processes, testing, and operations
- Ability to travel up to 10% globally as required
Remote working/work at home options are available for this role.