Engineering Jobs in Fl Remote
131 positions found — Page 5
$67K-$75K, plus a take-home company car
Lunch, Gas, Cell Phone, Car Wash Allowance
Generous Time-Off
Bonus and lots more!
Job Title: HR Trainer (for a major automotive logo)
Position Summary
The HR Trainer is responsible for designing, delivering, and continuously improving training programs that support employee development, operational excellence, and compliance within an automotive environment. This role partners closely with HR, Operations, Safety, and Leadership to ensure employees are equipped with the skills, knowledge, and behaviors needed to perform effectively and safely in a fast-paced, production-driven setting.
Key Responsibilities
Training Design & Delivery
- Develop and facilitate onboarding, orientation, and ongoing training programs for hourly and salaried employees
- Deliver instructor-led, virtual, and hands-on training sessions tailored to automotive manufacturing and operations
- Adapt training materials to support different learning styles and workforce levels
Compliance & Policy Training
- Conduct training on HR policies, code of conduct, workplace safety, harassment prevention, and labor law compliance
- Ensure training aligns with company policies, OSHA standards, and applicable federal, state, and local regulations
- Maintain accurate training records and certifications
Operational & Technical Training Support
- Partner with Operations and Safety teams to support production, quality, and safety training initiatives
- Assist in rolling out new processes, systems, or operational changes through effective training programs
- Support continuous improvement initiatives and standardized work practices
Performance & Development
- Assess training needs through job analysis, performance data, and leadership feedback
- Measure training effectiveness using assessments, surveys, and performance metrics
- Recommend improvements to training content and delivery methods
Collaboration & Communication
- Work closely with HR, supervisors, and leadership to ensure consistent messaging and training execution
- Serve as a trusted resource for employees regarding training and development opportunities
Qualifications
Required
- 2–5 years of experience in training, HR, or learning & development
- Experience delivering training in a manufacturing, automotive, or industrial environment
- Strong presentation, facilitation, and communication skills
- Ability to engage both hourly and salaried employees
- Proficiency with Microsoft Office and basic learning management systems (LMS)
Preferred
- Bachelor’s degree in Human Resources, Education, Business, or related field
- Experience with automotive manufacturing processes or plant operations
- Knowledge of OSHA, labor laws, and HR compliance training
- Bilingual (English/Spanish) a plus
- Train-the-Trainer or instructional design certification
Working Conditions
- On-site role within an automotive manufacturing or operations facility
- Frequent interaction with production floor employees and leadership
- Occasional schedule flexibility to support shift-based training
The ideal candidate will be responsible for planning, coordinating, and implementing projects within the decided-upon budget, timeline, and scope. They will also effectively monitor and present project updates to relevant stakeholders, clients, or project team members.
Responsibilities
- Set project timeline
- Monitor project deliverables
- Update relevant stakeholders or team members on the project progress
- Coach and support project team members with tasks you assign them
Qualifications
- Bachelor's Degree or equivalent experience
- Strong business acumen in project planning and management
- Strong verbal, written, and organizational skills
Our 12‑hour overnight shift is ideal for someone who enjoys a more independent work environment with more days off each week.
You’ll benefit from premium shift differentials, cross‑training opportunities, and the chance to shape processes on a growing team.
If you’re someone who prefers working nights or wants to maximize earning potential while enjoying a schedule with fewer total days giving you additional full days off during the week to spend with family, pursue hobbies, or rest, this could be a great fit for you.Currently hiring Technicians for the below shifts.
Note: Based on the 2-week rotating shift pattern, employees will be scheduled to work 36 hours one week, and 48 hours on the alternate week.
In this alternate week, employees will be receiving 8 hours of overtime, resulting in 16 hours of overtime pay in a month.Shift A– 6pm to 6am 15% shift differential pay Week 1: Tuesday, Thursday, and FridayWeek 2: Monday, Wednesday, Saturday and SundayShift B – 6pm to 6am 15% shift differential pay Week 1: Monday, Wednesday, Saturday and SundayWeek 2: Tuesday, Thursday, and FridayShift D – 6pm to 6am 15% shift differential pay Week 1: Tuesday, Thursday, and FridayWeek 2: Monday, Wednesday, Saturday and SundayHow will you make an impact!In this key Manufacturing Engineer Technician onsite role, you will perform preventative maintenance, calibration, change overs in Z-prep area and perform preventive maintenance for tooling (SMT & BE process) and other specialty support equipment used in the manufacturing process.Location: This role will be based on-site at one of our St.
Petersburg Florida Facilities located in Seminole, FL specializing in Renewable EnergyWhat will you do? Key ResponsibilitiesOperate, monitor, and adjust SMT equipment while ensuring high quality and process stability.Perform setups, changeovers, and material verification for each process step.Conduct preventive and corrective maintenance on:Laser marking systemsGlue dispensing machines (CAMALOT)Screen printers (DEK)SPI systems (KOH YOUNG)Pick & place machines (FUJI NXT, AIM)Reflow ovens (ITW/VITRONIC)Troubleshoot and resolve process issues related to solder paste printing, component placement, inspection, and reflow profiling.Create, modify, and optimize SMT programs (FUJI, CAMALOT, DEK, etc.).Document downtime, maintenance activities, root cause analysis, and improvements.Collaborate with Engineering, Quality, and Production to improve OEE, yields, CP/CPK, and reduce rework.Ensure compliance with safety standards, ESD controls, and manufacturing best practices.Cover overtime requirements as needed.How will you get here?Education and Experience:
- Electronics Industry Experience- High School Diploma or GED preferred not required or equivalent
- experience.- Six months of demonstrated experience, ideally 2 plus years.- Must have experience with at least one of the below:Laser marking systemsGlue dispensing machines (CAMALOT)Screen printers (DEK)SPI systems (KOH YOUNG)Pick & place machines (FUJI NXT, AIM)Reflow ovens (ITW/VITRONIC)Why Join Jabil?Be part of a mission-critical team supporting Renewable Energy innovation.Gain hands-on experience with high-precision, advanced technologies.Work in a culture focused on quality, safety, and continuous improvement.Competitive compensation and a comprehensive benefits package.
REQUIREMENTS AND PREFERENCES
The Broward County Board of County Commissioners is seeking qualified candidates for Engineering Unit Supervisor (Highway Construction and Engineering Division).
THIS JOB ANNOUNCEMENT WILL REMAIN OPEN UNTIL SUFFICIENT NUMBER OF APPLICATIONS ARE RECEIVED AND MAY CLOSE AT ANY TIME.
This position supports professionals responsible for managing capital and mobility advancement projects for Broward County's Highway Construction and Engineering Division. The ideal candidate will have experience coordinating with multiple entities, including municipalities, state agencies, and local authorities. Work involves the review, planning, and coordination of the design and construction of County capital and mobility advancement projects, including schedules, budgets, and staff assignments.
General Description
Performs advanced professional and supervisory engineering work in the design and review of a wide variety of engineering and environmental projects.
Works under administrative supervision, developing and implementing programs within organizational policies and reports major activities to executive level administrators through conferences and reports.
Minimum Education and Experience RequirementsRequires a Bachelor's degree from an accredited college or university with major coursework in civil engineering.
Requires six (6) years progressively responsible experience in professional engineering work related to roadway design and construction or closely related field, including two (2) years of supervisory experience.
Special Certifications and LicensesPossess and maintain Professional Engineer License in State of Florida for duration of assignment.
Preferences* Master's Degree in Civil Engineering, Public Administration or closely related field* Certified in the use of one (1) or more of the following engineering programs (i.e. ICPR, ASAD, HY-8, HEC-RAS, HEC-HMS, Synchro, HCS, IMSA), or similar
* Construction Training Qualification Program (CTQP) Certifications (Asphalt, Concrete, Earthwork, QC Manager, etc.)
* Professional Traffic Operations Engineer, Professional Surveyor & Mapper, General Contractor License, or similar
* Project Management Professional and/or Certified Public Manager
* Advanced Work Zone Traffic Control Training Certification
* At least ten (10) years of experience in design and construction of roadway/traffic projects
* At least five (5) years of experience in one (1) of the following specialized fields of engineering: Traffic Operations, Structures, Drainage, Geotechnical, Construction Management
* At least three (3) years of experience with MicroStation OpenRoads Designer (ORD)
* At least two (2) years of experience in governmental contract and procurement
* At least two (2) years of experience in the preparation of agenda items and/or resolutions
SCOPE OF WORK
The functions listed below are those that represent the majority of the time spent working in this class. Management may assign additional functions related to the type of work of the job as necessary.
Schedules, assigns, and supervises engineering design projects; directs and coordinates field surveys, plan design, preparation and review, cost estimate development, and specifications preparation; participates in the development and design and review of major and complex projects.
Supervises and participates in the analysis and review of engineering studies and designs prepared by professional consultants; prepares recommendations for the consideration of professional and administrative superiors and committees.
Supervises the preparation of right-of-way and construction plans for major thoroughfares; conducts studies and prepares reports on proposed locations for future major thoroughfares; maintains liaison with appropriate outside agencies concerning projects under consideration for construction.
Supervises and participates in the activities of construction engineers, inspectors, and materials technicians in the investigation and construction of water and sewer mains, roadways, structures, and related public work projects; prepares general and special specifications for contract construction; supervises the maintenance and analysis of payment estimates and records.
Oversees and performs the technical review of remedial action plans; oversees and administers environmental licensing programs.
Conducts special engineering studies and projects relating to technical and administrative aspects of the public works function; coordinates the utilization of computer technology as related to the engineering function.
Conducts long-range studies involving other departments, agencies, and organizations; prepares reports and recommendations; seals and signs engineering plans, drawings, and documents.
Performs related work as assigned.
WORK ENVIRONMENT
Physical Demands
Physical demands refer to the requirements for physical exertion and coordination of limb and body movement.
Performs sedentary work that involves walking or standing some of the time and involves exerting up to 10 pounds of force on a regular and recurring basis or sustained keyboard operations.
Unavoidable Hazards (Work Environment)Unavoidable hazards refer to the job conditions that may lead to injury or health hazards even though precautions have been taken.
Involves routine and frequent exposure to traffic; moving machinery.
SPECIAL INFORMATION
Competencies
- Manages Complexity
- Decision Quality
- Balances Stakeholders
- Directs Work
- Plans and Aligns
- Optimizes Work Processes
- Ensures Accountability
- Builds Effective Teams
- Communicates Effectively
- Situational Adaptability
County Core ValuesAll Broward County employees strive to demonstrate the County's four core behavioral competencies.
- Collaborates: Building partnerships and working collaboratively with others to meet shared objectives.
- Customer focus: Building strong customer relationships and delivering customer-centric solutions.
- Instills trust: Gaining the confidence and trust of others through honesty, integrity, and authenticity.
- Values differences: Recognizing the value that different perspectives and cultures bring to an organization.
Americans with Disabilities Act (ADA) ComplianceBroward County is an Equal Opportunity Employer committed to inclusion. Broward County is committed to providing equal opportunity and reasonable accommodations to qualified persons with disabilities. We support the hiring of people with disabilities; therefore, if you require assistance due to a disability, please contact the Professional Standards Section in advance at or email to make an accommodation request.
Emergency Management ResponsibilitiesNote: During emergency conditions, all County employees are automatically considered emergency service workers. County employees are subject to being called to work in the event of a disaster, such as a hurricane, or other emergency situation and are expected to perform emergency service duties, as assigned.
County-wide Employee ResponsibilitiesAll Broward County employees must serve the public and fellow employees with honesty and integrity in full accord with the letter and spirit of Broward County's Employee Code of Ethics, gift, and conflict of interest policies.
All Broward County employees must establish and maintain effective working relationships with the general public, co-workers, elected and appointed officials and members of diverse cultural and linguistic backgrounds, regardless of race, color, religion, sex, national origin, age, disability, marital status, political affiliation, familial status, sexual orientation, pregnancy, or gender identity and expression.
The ME/IE Manager is the “site technology leader” of Jabil’s manufacturing processes and systems, which is designed to deliver superior performance and operational efficiency. The ME/IE Manager supports Operation’s business development effort with current and potential customers, and development / implementation of both site a global ME/IE strategies. Responsible for the establishment of optional manufacturing methods and processes for the organization’s production lines. Lead and motivate a large group of Engineers whose primary responsibility is to define and implement complete manufacturing processes. Provides ongoing review of the effective utilization of equipment, production methods, equipment layout, personnel, and material flow. Provide exceptional support to customers, team members, and shareholders.
ESSENTIAL DUTIES AND RESPONSIBILITIES include the following. Other duties may be assigned.
LEADERSHIP AND MANAGEMENT RESPONSIBILITIES
Recruitment and Retention:
· Recruit, interview and hire Industrial Engineers, Process, Manufacturing and Project Engineers.
· Communicate criteria to recruiters for Industrial Engineers, Process, Manufacturing and Project Engineer position candidates.
· Coach Industrial Engineering, Manufacturing and Process Engineering staff in the interviewing/hiring process.
· Monitor team member turnover; identify key factors that can be improved; make improvements.
Employee and Team Development:
· Identify individual and team strengths and development needs on an ongoing basis.
· Create and/or validate training curriculum in area of responsibility.
· Coach and mentor Industrial Engineering staff to deliver excellence to every internal and external customer.
· Create and manage succession plans for Industrial & Manufacturing Engineering function.
Performance Management:
· Establish clear measurable goals and objectives by which to determine individual and team results (i.e. operational metrics, results against project timelines, training documentation, attendance records, knowledge of operational roles and responsibilities, personal development goals).
· Solicit ongoing feedback from Workcell Manager (WCM), Business Unit Manager (BUM), peers and team member on team member’s contribution to the Workcell team. Provide coaching and counseling to team member based on feedback.
· Express pride in staff and encourage them to feel good about their accomplishments.
· Perform team member evaluations professionally and on time.
· Drive individuals and the team to continuously improve in key operational metrics and the achievement of the organizational goals.
· Coordinate activities of large teams and keep them focused in times of crises.
· Ensure recognition and rewards are managed fairly and consistently in area of responsibility.
Communication
· Provide communication forum for the exchange of ideas and information with the department.
· Organize verbal and written ideas clearly and use an appropriate business style.
· Ask questions; encourage input from team members
· Assess communication style of individual team members and adapt own communication style accordingly.
FUNCTIONAL MANAGEMENT RESPONSIBILITIES
Business Strategy and Direction:
· Know and understand Corporate, Campus and Global PE, IE, & ME tactical and strategic direction.
· Define, develop and implement a Process Engineering & Industrial Engineering strategy which contributes to the campus strategic directions.
· Develop an understanding of the Workcell business strategy as it pertains to Industrial & Process Engineering.
· Provide regular updates to BUM, WCM, and Operations Manager on the execution of the strategy.
· Manage technical support globally to sustain Corporate Intranet Site worldwide growth strategy as needed.
Cost Management:
· Identify creative ways to reduce cost by streamlining processes and systems (i.e. modification of responsibilities or consolidation of tasks, elimination of non-value-added processes, or complete re-engineering of processes and systems).
· Utilize tools to monitor departmental cost and cost trends, striving continuously to improve value.
· Provide feedback to peers (BUMs, WCMs, Functional Managers (FMs) on cost and cost trends.
Forecast Development and Accuracy:
· Prepare timely forecasts for the department.
· Compare forward forecast results to historical actual results for trend assessment and analysis.
· Anticipate future headcount requirements based on open Bays and projected business.
TECHNICAL MANAGEMENT RESPONSIBILITIES
· Drive continuous improvement through trend reporting analysis and metrics management.
· Assess the adequacy of data gathering methods utilized by the workcells.
· Assure that procedures and work instructions are efficient and not redundant.
· Prepare quotes for new and potential customers.
· Forecast future requirements and technical trends to drive gear suppliers in their technology roadmap.
· Verify reconfiguration requirements and monitor line moves.
· Lead equipment evaluations. Assure measurement criteria meet all Jabil site requirements worldwide.
· Explore and monitor new processes and procedures to support customer’s expanding requirements on cutting edge technology and product densification.
· Assist Project and Design Engineers with Design for Manufacturability issues.
· Assure that procedures and work instructions are efficient and not redundant.
· Utilize Jabil’s Advanced Engineering group to ensure useful support to Jabil South.
· Establish new measurement systems if/where possible.
· Offer new ideas and suggestions for improvement. Identify and implement new practices and processes that are “best in field.”
· Drive the concept of an IE being an “Integration Engineer” that ensures everything works smoothly to guarantee efficient and high quality processes that translate into high customer satisfaction and revenues for Jabil.
· Demonstrate a commitment to customer service; anticipate, meet, and exceed expectations by solving problems quickly and effectively; making customer issues a priority.
· Periodically “get down in the trenches” to rehabilitate troubled workcells or to help during product launch. Foster a “back to basics” mentality during these times. Lead by example; “walk the talk.”
· Establish new measurement systems if/where possible.
· Exchange knowledge and information with other Jabil facilities to ensure best practices are shared throughout the Jabil organization.
· Ensure 100% adherence to all company policies and procedures (i.e. Health and Safety, Quality).
· Ensure all sensitive and confidential information is handled appropriately.
· Drive Lean Manufacturing in a consistent, structured manner throughout the campus.
· Adhere to all safety and health rules and regulations associated with this position and as directed by supervisor.
· Comply and follow all procedures within the company security policy.
MINIMUM REQUIREMENTS
Extensive knowledge of Manufacturing / Industrial Engineering philosophies and processes. Proven track record in communication, leadership, business analysis, process development, administration, and change management. Bachelor’s degree preferred with 3-5 years of related experience in the electronics manufacturing industry; 2-3 years of supervisory experience or equivalent combination of education and experience.
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?
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 requires deep expertise in liquid cooling technologies (single-phase and two-phase), hydronic system design, structural integration, and manufacturable rack-level infrastructure solutions.
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.
What will you do?
- 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; ensure design accuracy, manufacturability, and system-level integration.
- 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.
MINIMUM QUALIFICATIONS
Education:
- Bachelor’s degree in Mechanical Engineering, Systems Engineering, or a related engineering discipline from an accredited university.
Experience:
- 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.
- Excellent problem-solving skills and attention to detail
- Strong communication and teamwork abilities
PREFERRED QUALIFICATIONS
- Master’s Degree in Mechanical Engineering
- Professional Engineer (PE) License
Remote working/work at home options are available for this role.
Job Family: Mechanical Design Engineering
Organization: Data Center Infrastructure Team
Location: Remote* OR Austin, TX
*Requires up to 30% 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.
Job Family: Electrical 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 experienced and innovative Principal Controls Engineer to lead the development, optimization and implementation of advanced control systems across critical infrastructure products and automation platforms. This role is critical to ensuring the performance, reliability, and scalability of critical systems, with a strong emphasis on data center infrastructure, power/energy management, and industrial automation.
This role will involve designing and developing wiring harness systems, including schematic creation, harness architecture, panel layout, developing specifications, selecting key components, and transitioning design to manufacturing. Furthermore, the position includes leading test process implementation and ensuring equipment alignment to maintain the highest standards of operational excellence and reliability.
What will you do?
- Define and own the control system architecture across multiple platforms, including PLCs, BMS, EPMS, and ATS systems, ensuring scalability, reliability, and maintainability.
- Develop detailed control system specifications, functional design documents, and interface definitions for all subsystems.
- Proficiency in PLC/SCADA programming, HMI development, and system integration with IT networks and facility equipment.
- Ability to read and create BOMs. visual aids, electrical schematics, control diagrams, and sequence of operations.
- Define control logic, sensor integration, and communication protocols (e.g., Modbus, BACnet, SNMP) for intelligent power and cooling management.
- Validate control systems through simulation, testing, and commissioning to ensure reliability, safety, and responsiveness.
- Experience with critical infrastructure systems: UPS, generators, switchgear, chillers, CRAC/CRAH units, fire suppression systems.
- Lead Factory Acceptance Testing (FAT) and Site Acceptance Testing (SAT) for new projects and revisions.
- Drive the development of system-level simulations and digital twins to validate control strategies before deployment
- Architect integration strategies for control systems with enterprise platforms such as SCADA, CMMS, and cloud-based monitoring tools
- Establish design patterns and best practices for modular and reusable control logic across projects
- Lead root cause analysis and resolution of complex control system issues during commissioning and operations
- Evaluate emerging technologies and automation trends to continuously improve system performance and efficiency
- Develop and maintain documentation for system architecture, control logic, and operational procedures
- Collaborate with electrical, mechanical, software, and facilities engineering teams to ensure seamless integration of control systems with physical infrastructure
- Work closely with cross functional teams to align control system designs with business requirements, timelines, and operational constraints
- Facilitate design reviews, technical workshops, and cross-functional planning sessions to ensure alignment and transparency across engineering disciplines
- Support commissioning and field teams during deployment, troubleshooting, and optimization of control systems
How will you get here?
Education:
- Bachelor’s Degree in Electrical Engineering or a relevant engineering discipline.
Experience:
- 8+ years pf experience in control system design and implementation
- Deep expertise in the following:
- PLC programming (Allen-Bradley, Siemens, Schneider Electric)
- Building Management Systems (BMS) integration and optimization
- Electrical Power Monitoring Systems (EPMS/EDPM) for real-time energy analytics
- Automatic Transfer Switches (ATS) control and failover logic
- Strong proficiency in control theory, system modeling, and simulation tools (MATLAB/Simulink)
- Experience with industrial protocols (Modbus, BACnet, OPC UA, Ethernet/IP)
- Familiarity with NFPA, IEC, and ISO standards related to control systems and safety.
Knowledge, Skills, Abilities:
- Excellent interpersonal and communication skills
- Creative, self-motivated, accountable, and team-oriented
- Able to work independently with minimal oversight as part of a global team
- 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 while mentoring less experienced engineers
- Capable of assessing projects, articulating risks, and developing project milestones
- Familiar with stage-gate processes in project lifecycle management (PLCM)
- Excellent problem-solving skills and attention to detail
- Experience in EPlan, WindChill, SolidWorks, and DevOps are a plus
- Experience with hyperscale or colocation data center environments
- Familiarity with low and medium-voltage systems
Preferred Qualifications:
- Master’s Degree in Electrical Engineering or a relevant engineering discipline
- Active Professional Engineer (PE) license
- Experience in mission-critical environments such as data centers, manufacturing, or energy systems.
- Experience with digital twin modeling and predictive maintenance strategies.
Remote working/work at home options are available for this role.
Job Family: Electrical 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 experienced and innovative Principal Controls Engineer to lead the development, optimization and implementation of advanced control systems across critical infrastructure products and automation platforms. This role is critical to ensuring the performance, reliability, and scalability of critical systems, with a strong emphasis on data center infrastructure, power/energy management, and industrial automation.
This role will involve designing and developing wiring harness systems, including schematic creation, harness architecture, panel layout, developing specifications, selecting key components, and transitioning design to manufacturing. Furthermore, the position includes leading test process implementation and ensuring equipment alignment to maintain the highest standards of operational excellence and reliability.
What will you do?
- Define and own the control system architecture across multiple platforms, including PLCs, BMS, EPMS, and ATS systems, ensuring scalability, reliability, and maintainability.
- Develop detailed control system specifications, functional design documents, and interface definitions for all subsystems.
- Proficiency in PLC/SCADA programming, HMI development, and system integration with IT networks and facility equipment.
- Ability to read and create BOMs. visual aids, electrical schematics, control diagrams, and sequence of operations.
- Define control logic, sensor integration, and communication protocols (e.g., Modbus, BACnet, SNMP) for intelligent power and cooling management.
- Validate control systems through simulation, testing, and commissioning to ensure reliability, safety, and responsiveness.
- Experience with critical infrastructure systems: UPS, generators, switchgear, chillers, CRAC/CRAH units, fire suppression systems.
- Lead Factory Acceptance Testing (FAT) and Site Acceptance Testing (SAT) for new projects and revisions.
- Drive the development of system-level simulations and digital twins to validate control strategies before deployment
- Architect integration strategies for control systems with enterprise platforms such as SCADA, CMMS, and cloud-based monitoring tools
- Establish design patterns and best practices for modular and reusable control logic across projects
- Lead root cause analysis and resolution of complex control system issues during commissioning and operations
- Evaluate emerging technologies and automation trends to continuously improve system performance and efficiency
- Develop and maintain documentation for system architecture, control logic, and operational procedures
- Collaborate with electrical, mechanical, software, and facilities engineering teams to ensure seamless integration of control systems with physical infrastructure
- Work closely with cross functional teams to align control system designs with business requirements, timelines, and operational constraints
- Facilitate design reviews, technical workshops, and cross-functional planning sessions to ensure alignment and transparency across engineering disciplines
- Support commissioning and field teams during deployment, troubleshooting, and optimization of control systems
How will you get here?
Education:
- Bachelor’s Degree in Electrical Engineering or a relevant engineering discipline.
Experience:
- 8+ years pf experience in control system design and implementation
- Deep expertise in the following:
- PLC programming (Allen-Bradley, Siemens, Schneider Electric)
- Building Management Systems (BMS) integration and optimization
- Electrical Power Monitoring Systems (EPMS/EDPM) for real-time energy analytics
- Automatic Transfer Switches (ATS) control and failover logic
- Strong proficiency in control theory, system modeling, and simulation tools (MATLAB/Simulink)
- Experience with industrial protocols (Modbus, BACnet, OPC UA, Ethernet/IP)
- Familiarity with NFPA, IEC, and ISO standards related to control systems and safety.
Knowledge, Skills, Abilities:
- Excellent interpersonal and communication skills
- Creative, self-motivated, accountable, and team-oriented
- Able to work independently with minimal oversight as part of a global team
- 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 while mentoring less experienced engineers
- Capable of assessing projects, articulating risks, and developing project milestones
- Familiar with stage-gate processes in project lifecycle management (PLCM)
- Excellent problem-solving skills and attention to detail
- Experience in EPlan, WindChill, SolidWorks, and DevOps are a plus
- Experience with hyperscale or colocation data center environments
- Familiarity with low and medium-voltage systems
Preferred Qualifications:
- Master’s Degree in Electrical Engineering or a relevant engineering discipline
- Active Professional Engineer (PE) license
- Experience in mission-critical environments such as data centers, manufacturing, or energy systems.
- Experience with digital twin modeling and predictive maintenance strategies.
Remote working/work at home options are available for this role.
Job Family: Electrical 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 experienced and innovative Principal Controls Engineer to lead the development, optimization and implementation of advanced control systems across critical infrastructure products and automation platforms. This role is critical to ensuring the performance, reliability, and scalability of critical systems, with a strong emphasis on data center infrastructure, power/energy management, and industrial automation.
This role will involve designing and developing wiring harness systems, including schematic creation, harness architecture, panel layout, developing specifications, selecting key components, and transitioning design to manufacturing. Furthermore, the position includes leading test process implementation and ensuring equipment alignment to maintain the highest standards of operational excellence and reliability.
What will you do?
- Define and own the control system architecture across multiple platforms, including PLCs, BMS, EPMS, and ATS systems, ensuring scalability, reliability, and maintainability.
- Develop detailed control system specifications, functional design documents, and interface definitions for all subsystems.
- Proficiency in PLC/SCADA programming, HMI development, and system integration with IT networks and facility equipment.
- Ability to read and create BOMs. visual aids, electrical schematics, control diagrams, and sequence of operations.
- Define control logic, sensor integration, and communication protocols (e.g., Modbus, BACnet, SNMP) for intelligent power and cooling management.
- Validate control systems through simulation, testing, and commissioning to ensure reliability, safety, and responsiveness.
- Experience with critical infrastructure systems: UPS, generators, switchgear, chillers, CRAC/CRAH units, fire suppression systems.
- Lead Factory Acceptance Testing (FAT) and Site Acceptance Testing (SAT) for new projects and revisions.
- Drive the development of system-level simulations and digital twins to validate control strategies before deployment
- Architect integration strategies for control systems with enterprise platforms such as SCADA, CMMS, and cloud-based monitoring tools
- Establish design patterns and best practices for modular and reusable control logic across projects
- Lead root cause analysis and resolution of complex control system issues during commissioning and operations
- Evaluate emerging technologies and automation trends to continuously improve system performance and efficiency
- Develop and maintain documentation for system architecture, control logic, and operational procedures
- Collaborate with electrical, mechanical, software, and facilities engineering teams to ensure seamless integration of control systems with physical infrastructure
- Work closely with cross functional teams to align control system designs with business requirements, timelines, and operational constraints
- Facilitate design reviews, technical workshops, and cross-functional planning sessions to ensure alignment and transparency across engineering disciplines
- Support commissioning and field teams during deployment, troubleshooting, and optimization of control systems
How will you get here?
Education:
- Bachelor’s Degree in Electrical Engineering or a relevant engineering discipline.
Experience:
- 8+ years pf experience in control system design and implementation
- Deep expertise in the following:
- PLC programming (Allen-Bradley, Siemens, Schneider Electric)
- Building Management Systems (BMS) integration and optimization
- Electrical Power Monitoring Systems (EPMS/EDPM) for real-time energy analytics
- Automatic Transfer Switches (ATS) control and failover logic
- Strong proficiency in control theory, system modeling, and simulation tools (MATLAB/Simulink)
- Experience with industrial protocols (Modbus, BACnet, OPC UA, Ethernet/IP)
- Familiarity with NFPA, IEC, and ISO standards related to control systems and safety.
Knowledge, Skills, Abilities:
- Excellent interpersonal and communication skills
- Creative, self-motivated, accountable, and team-oriented
- Able to work independently with minimal oversight as part of a global team
- 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 while mentoring less experienced engineers
- Capable of assessing projects, articulating risks, and developing project milestones
- Familiar with stage-gate processes in project lifecycle management (PLCM)
- Excellent problem-solving skills and attention to detail
- Experience in EPlan, WindChill, SolidWorks, and DevOps are a plus
- Experience with hyperscale or colocation data center environments
- Familiarity with low and medium-voltage systems
Preferred Qualifications:
- Master’s Degree in Electrical Engineering or a relevant engineering discipline
- Active Professional Engineer (PE) license
- Experience in mission-critical environments such as data centers, manufacturing, or energy systems.
- Experience with digital twin modeling and predictive maintenance strategies.
Remote working/work at home options are available for this role.