Peak Systems Inc Delaware Jobs in Usa
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9 MD's, 20+ CRNA's.
Will supervise at a 1:2 up to a 1:4 ratioEMR System: EPICCredentialing
- 60-90 daysBC, DE license, ACLS, BLS, DEA and COVID vaccine required
* Experienced physical medicine physician leadership team
* Flexible, diverse, independent practices
* Stable practices anchored with inpatient rehab and supplemented with hospital consults and/or SNF and/or LTAC
* Independent contractor (1099) and employed (W2) pay model choice
* We provide each physiatrist a complete set of management and administrative support services so that physicians can do what they are trained to do practice medicine.
* Integrated EHR / practice management system for efficient documentation, data capture and revenue cycle capabilities
* Professional in-house practice development resources to help each physiatrist gain access to the career opportunities they desire
* Professional in-house recruiting to find the best possible physiatrist and physician extenders for each practice group
* Risk management and compliance departments that protect both the patient and the integrity of our practices
Conditions/Treatments Can Include:
* Intrathecal baclofen pump management
* Chemodenervation
* Spasticity
* Traumatic neurological injury including traumatic brain injury, stroke, cerebral palsy, or spinal cord injury
* Musculoskeletal and nonoperative spinal disorders
* Electrodiagnostic medicine (EMG)
* Neuromuscular
* SCI
* Cancer Rehab
Compensation & Benefits:
* A full array of healthcare and 401K benefits
* Base salary
* Monthly productivity bonus (no income cap)
* No practice overhead
* Experienced executive management
* Flexibility and autonomy
* Access to full benefits package
* Malpractice insurance coverage and CME reimbursement
APPLY NOW or TEXT Job and email address to 636 - 628 - 2412.
Search all of our provider opportunities here: brittmedical DOT com
Your Future Evolves Here Evolent partners with health plans and providers to achieve better outcomes for people with most complex and costly health conditions.
Working across specialties and primary care, we seek to connect the pieces of fragmented health care system and ensure people get the same level of care and compassion we would want for our loved ones.
Evolent employees enjoy work/life balance, the flexibility to suit their work to their lives, and autonomy they need to get things done.
Your Future Evolves Here Evolent partners with health plans and providers to achieve better outcomes for people with most complex and costly health conditions.
Working across specialties and primary care, we seek to connect the pieces of fragmented health care system and ensure people get the same level of care and compassion we would want for our loved ones.
Evolent employees enjoy work/life balance, the flexibility to suit their work to their lives, and autonomy they need to get things done.
Driven by a unique Purpose, Culture, and Value Delivery Model, we enable meaningful connections between talented professionals and forward-thinking organizations.
Since our formation in 2002, organizations across commercial and public sectors have been trusting us to help build their teams with exceptional temporary and permanent talent.
Visit us at to learn more and view our open positions.
Please apply or call one of us to learn more For further inquiries regarding the following opportunity, please contact our Talent Specialist, Vijay Raj Jayachandran at (63 or Abdul at (224) 507-1295 Title: Systems Administrator Location: On-site at Austin, TX Duration: 12 Months Only W2 candidates are eligible for this position.
Third-party or C2C candidates will not be considered.
This position requires U.S.
Citizens only to meet the DoD requirements.
Description: This role is ideal for someone with approximately 5 years of hands-on experience in system administration, eager to expand their skills across a diverse technology stack and contribute to the stability and performance of our critical infrastructure.
As the primary Site IT Lead for our Austin office, you'll play a key role in maintaining our Commercial and FedRamp systems, supporting our users, and assisting in the implementation of new technologies.
Core Responsibilities: Advanced Troubleshooting and Technical Support: Be the main point of contact within the Austin office and travel to other sites as needed.
Serve as an escalation point for the global Service Desk Team providing advanced technical support to end-users for the various enterprise applications supported at client.
(e.g., Microsoft 365, Google Workspace, Jamf, Intune, Okta, Zoom, Slack, Github, etc) Collaboration and Coordination Collaborate with senior system administrators and other IT team members on business critical projects and initiatives Assist with driving the implementation of AI tools across the organization Coordinate with our InfoSec team to remediate security gaps or vulnerabilities across client's Enterprise Tools FedRAMP Serve as a primary point of contact for client's FedRAMP systems, collaborating closely with the Identity and Access Management team to uphold strict system compliance and ensure seamless business continuity.
Environment Ownership: Serve as the designated administrator for the FedRAMP boundary, managing a high-trust environment isolated from commercial production.
Asset Management and Documentation: Collaborate with the Service Desk Team to maintain an accurate inventory of all endpoints, documenting hardware and software details.
Assist with asset management, including tracking inventory of hardware and software.
Executive Support Providing premium and proactive technical assistance to client's senior leadership, executives, and their administrative staff in a fast-paced environment.
Serve as a primary point of contact fo rclient's executive assistant team.
Process Optimization: Identify, recommend, and implement continuous process improvements to enhance support operations and minimize incident occurrences.
Knowledge Base Development and Maintenance: Create and publish knowledge base articles for complex or novel issues lacking existing documentation.
Regularly update existing articles to ensure accuracy and relevance.
Troubleshoot AV systems as needed.
Assist in the management of AV Infrastructure Integrator visits and maintenance schedules.
Minimum Qualifications: Minimum of 5 years of work experience providing front-line IT support or systems administration work In-depth knowledge of Windows/Android, Apple ecosystem of products, including Macs, iPhones, and iPads Advanced proficiency with standard IT productivity tools and systems (e.g., Microsoft 365, Google Workspace, Jamf, InTune, Okta, Zoom, Slack).
Strong knowledge of IT security best practices and compliance standards.
Preferred Qualifications: Relevant industry certifications such as ITIL or CompTIA are considered a valuable asset.
Excellent troubleshooting skills and the ability to thoroughly resolve issues across various systems supported at client Excellent verbal and written communication skills that can work closely with both technical and management teams across the organization Excellent customer service skills and the ability to be a self starter Exposure to IT security best practices.
Experience with automation using no-code or low-code automation platforms such as Okta Workflows or Zapier About us: DivIHN, the 'IT Asset Performance Services' organization, provides Professional Consulting, Custom Projects, and Professional Resource Augmentation services to clients in the Mid-West and beyond.
The strategic characteristics of the organization are Standardization, Specialization, and Collaboration.
DivIHN is an equal opportunity employer.
DivIHN does not and shall not discriminate against any employee or qualified applicant on the basis of race, color, religion (creed), gender, gender expression, age, national origin (ancestry), disability, marital status, sexual orientation, or military status.
IT Support, microsoft 365, Apple, Windows/Android
We are seeking a Lead Industrial Engineer to develop and implement efficient production methods and process controls for new and existing assembly operations. In this hands-on role, you will monitor assembly processes, troubleshoot issues, and drive quality improvements. You will serve as a technical expert on various manufacturing projects, introducing new technologies and establishing sustainable processes for long-term production. Your mission will be to ensure profitability, efficiency, adaptability, responsiveness, and high quality across all products and processes through continuous improvement initiatives.
This position is part of the core team launching new manufacturing technologies at our production facility in Florence, KY. It is a fully on-site role, and relocation assistance is available for candidates who live more than 50 miles from the Florence area. The ideal candidate has experience in high-level assembly, testing, and integration of highly complex electronic hardware infrastructure. This is a senior individual contributor position, requiring someone who can collaborate cross-functionally in a fast-paced, highβconstraint environment to deliver data-driven process improvements.
ESSENTIAL DUTIES AND RESPONSIBILITIES
Develop and implement procedures for complex hardware assemblies to validate system integrity and maintain compliance with industry standards and customer quality specifications.
This role is operationally focused, working closely with leads within Test Engineering and Quality Engineering to drive process test optimization, improvement and execution to plan.
Improve manufacturability, reduce cycle times, and enhance reliability of complex server rack assemblies.
Implement and optimize assembly processes to improve efficiency, reliability, safety, and sustainability.
Identify and resolve bottlenecks or inefficiencies in production and workflows to maximize FPY, throughput, and quality.
Support Business Development through assessing the needs of potential customers in conjunction with the Engineering Manager and Engineering Leads.
Design, configure, and monitor process performance during both manufacturing and operational phases, ensuring processes run within specified parameters.
Develop and maintain detailed process documentation, including work instructions, flow charts, and control plans for all critical processes.
Implement process improvements to reduce energy consumption, minimize waste, and lower operational costs while maintaining quality standards.
Monitor key process parameters to ensure compliance with operational thresholds and promptly address deviations.
Analyze process data to identify trends, predict failures, and support preventive maintenance strategies for equipment and systems.
Develop and manage a comprehensive maintenance plan for all process-related equipment and assets, ensuring high uptime and reliability.
Conduct Critical-to-Quality (CTQ) analyses and risk assessments for all process steps to identify potential failure modes and quality improvement opportunities.
Own the full lifecycle of process equipment, including selection, commissioning, monitoring performance, troubleshooting issues, and coordinating servicing or upgrades as needed.
Support the commissioning and validation of new server rack systems and upgrades, ensuring they meet design specifications and integrate smoothly into production.
Work closely with cross-functional teams (manufacturing, design, quality, and maintenance) and utilize data-driven insights to drive continuous process improvements and implement changes that enhance overall production performance.
REQUIRED QUALIFICATIONS
Education : Bachelorβs Degree in Industrial Engineering, Mechanical Engineering, Industrial Automation, or a related engineering discipline.
Experience : 8 years of transferrable experience in a process engineering, manufacturing engineering, or industrial engineering capacity within a manufacturing environment (with Bachelor's Degree) OR 6 years of transferrable experience in a process engineering, manufacturing engineering, or industrial engineering (with Master's Degree). Equivalent combinations of education, training, and relevant experience may be considered.
Proven experience with complex system assembly in a manufacturing setting, ideally involving computer/server hardware or server rack infrastructure.
Proficiency with process control systems, instrumentation, and various sensor technologies used in monitoring and automation.
Demonstrated experience with DMAIC methodology, root cause analysis, and other continuous improvement tools/methodologies (Kaizen, 5-Why, FMEA).
Excellent analytical skills, with strong communication and technical writing abilities for documenting processes and reporting results.
Ability to influence cross-functional teams and stakeholders using data-driven insights to drive process changes and improvements.
Proven ability to excel in a highly constrained, fast-paced production environment while managing multiple priorities and meeting deadlines.
Hands-on mindset and teamwork orientation, with a willingness to be on the factory floor engaging directly with equipment and processes.
PREFERRED QUALIFICATIONS
Experience with assembly, testing, and integration of highly complex electronic hardware infrastructure.
Certification in Six Sigma (Green Belt / Black Belt) or formal training in Lean Manufacturing principles.
Experience with 3D CAD modeling tools (SolidWorks) for designing fixtures, layouts, or process equipment modifications.
Familiarity with ISO 9001 quality management standards and related regulatory compliance requirements in a manufacturing setting.
Familiarity with Building Management Systems (BMS) and Manufacturing Execution Systems (MES), especially as they relate to monitoring environmental controls and production processes.
PHYSICAL DEMANDS
The physical demands described here are representative of those required to successfully perform the essential functions of this job. The employee is frequently required to walk and may lift or carry PCs and test equipment weighing up to 50 lbs. Specific vision abilities required include close vision and extended use of computer monitor screens.
WORK ENVIRONMENT
The work environment characteristics described here are representative of those encountered while performing the essential functions of this job. The primary workstation is located on the manufacturing floor, with some time spent in an office setting. The noise level ranges from low to moderate. Required PPE in the manufacturing area includes: composite-toe shoes, hearing protection, protective eyewear, and an ESD vest. The manufacturing floor is modern, climate-controlled, and well-lit.
COMPANY BENEFITS
Medical, Dental, Prescription Drug, and Vision Insurance with HRA and HSA options
401K match
Employee Stock Purchase Plan
Paid Time Off
Tuition Reimbursement
Life, AD&D, and Disability Insurance
Commuter Benefits
Employee Assistance Program
Pet Insurance
Adoption Assistance
Annual Merit Increases
Community Volunteer Opportunities
Job Title :Β Principal Mechanical Design Engineer
Job Family : Mechanical Design Engineering
Organization : Data Center Infrastructure Team
Location :Β 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 proficientΒ and detail-orientedΒ Principal Mechanical EngineerΒ with expertise inΒ metal structures, frame design, pipes and fabricationΒ to support the development ofΒ power and cooling infrastructureΒ 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 integratingΒ hydronic systemsΒ including pumps, piping networks, valves, and heat exchangers for data center cooling applications.
Knowledge ofΒ fluid dynamics, pressure drop calculations, and pipe sizing for chilled water and glycol-based systems.
Understanding ofΒ 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?Β
Education :
Bachelorβs 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:β―Β
Masterβs 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 Title :Β Principal Mechanical Design Engineer
Job Family : Mechanical Design Engineering
Organization : Data Center Infrastructure Team
Location :Β 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 proficientΒ and detail-orientedΒ Principal Mechanical EngineerΒ with expertise inΒ metal structures, frame design, pipes and fabricationΒ to support the development ofΒ power and cooling infrastructureΒ 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 integratingΒ hydronic systemsΒ including pumps, piping networks, valves, and heat exchangers for data center cooling applications.
Knowledge ofΒ fluid dynamics, pressure drop calculations, and pipe sizing for chilled water and glycol-based systems.
Understanding ofΒ 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?Β
Education :
Bachelorβs 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:β―Β
Masterβs 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 Title: Β Lead Electrical CAD Designer
Job Family: General Design Engineering
Organization : Data Center Infrastructure Team
Location: Β Remote* OR Austin, TX
*Requires up to 20% domestic and/or international travel (rare)
How will you make an impact?
The Lead Electrical CAD Designer will be responsible for creating detailed model designs, modifying existing designs, and working collaboratively with engineers and other team members to meet product specifications. The ideal candidate has in-depth knowledge of various electrical design tools, is detail-oriented, and can effectively communicate design ideas. A strong understanding of Electrical design principles, manufacturing processes, power distribution, automation control (PLC), and electronic device parts are critical. This role will involve selecting key components, developing detailed drawings for control panels, power distribution systems, electrical wiring, and transitioning design to manufacturing.
What will you do?
Creating 2D and 3D models of electrical systems, particularly for complex projects or when visualization is needed
Participating in design reviews to ensure accuracy and compliance with requirements
Advanced proficiency in various CAD software, such as AutoCAD Electrical, Revit, Windchill, Autodesk Inventor-EMX, Autodesk Fusion, to design, draft, and model complex electrical for power system and automation control
Strong understanding of electrical symbols, power systems and automation control with the concepts to accurately create designs that meet technical specifications and standards
Work closely with engineers and other designers to meet product specifications and performance requirements
Modify and revise designs to correct operating deficiencies or to reduce production problems
Prepare and revise engineering drawings, schematics, BOMs, and layouts as required.
Check and validate designs to ensure they meet required quality and safety standards
Excellent attention to detail for ensuring the accuracy of measurements, dimensions, and design specifications
Strong analytical skills for interpreting complex technical drawings, single line diagram, wiring diagram, schematic, power plan, automation control, ladder diagram, and electrical device specifications
Designing and creating schematic PLC input/output connections.Β
Knowledge of manufacturing processes and materials for creating feasible and cost-effective designs.
Evaluate/optimize manufacturing assembly processes by designing, modifying, and testing manufacturing methods and equipment, conferring with equipment vendors, and soliciting observations from production team
Adopt at creating detailed electrical design of components, sub-assemblies, and system integration
Capable of creating a Bill of Materials (BOM) for release to manufacturing
Manage relationships with power systems, electronics, control component vendors, and contract manufacturers
Keep updated with the latest technologies and methods to ensure competitive and cost-effective designs
Discuss with management and production staff to assess engineering feasibility and cost-effectiveness
May perform other duties and responsibilities as assigned
How will you get here?
Education :
Bachelorβs degree in Electrical Engineering, Industrial Design or relevant field is requiredΒ
Experience :
6-8 years of experience in electrical design within the power distribution or data center industry.
Proven experience as a CAD designer, preferably in an electrical engineering environment.
Proficiency in CAD software (AutoCAD Electrical, Revit).
Strong understanding of electrical systems, integration strategy, and system coordination
Excellent problem-solving skills and attention to detail
Effective communication skills to liaise with engineers, manufacturers, and clients, explaining designs and modifications clearly and efficiently
Knowledge, Skills, Abilities:
Strong knowledge of electrical design, manufacturing processes, and material properties.
Power Systems, PLC, VFD, motor control, electronic automation control device, sensors, AC/DC, single phase and three phase power systems.
Electrical Standards, Codes, and regulations: IEEE, UL, ANSI/NEMA, NFPA 70E, NEC, IEC, CSA.
Excellent interpersonal and communication skills.
Creative, self-motivated, accountable, and team-oriented.
Able to work independently with minimal oversight.
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).
The ME/IE Manager is the βsite technology leaderβ of Jabilβs manufacturing processes and systems, which is designed to deliver superior performance and operational efficiency. The ME/IE Manager supports Operationβs 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 organizationβs 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:
Β· Recruit, interview and hire Industrial Engineers, Process, Manufacturing and Project Engineers.
Β· Communicate criteria to recruiters for Industrial Engineers, Process, Manufacturing and Project Engineer position candidates.
Β· Coach Industrial Engineering, Manufacturing and Process Engineering staff in the interviewing/hiring process.
Β· Monitor team member turnover; identify key factors that can be improved; make improvements.
Employee and Team Development:
Β· Identify individual and team strengths and development needs on an ongoing basis.
Β· Create and/or validate training curriculum in area of responsibility.
Β· Coach and mentor Industrial Engineering staff to deliver excellence to every internal and external customer.
Β· Create and manage succession plans for Industrial & Manufacturing Engineering function.
Performance Management:
Β· 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).
Β· Solicit ongoing feedback from Workcell Manager (WCM), Business Unit Manager (BUM), peers and team member on team memberβs contribution to the Workcell team. Provide coaching and counseling to team member based on feedback.
Β· Express pride in staff and encourage them to feel good about their accomplishments.
Β· Perform team member evaluations professionally and on time.
Β· Drive individuals and the team to continuously improve in key operational metrics and the achievement of the organizational goals.
Β· Coordinate activities of large teams and keep them focused in times of crises.
Β· Ensure recognition and rewards are managed fairly and consistently in area of responsibility.
Communication
Β· Provide communication forum for the exchange of ideas and information with the department.
Β· Organize verbal and written ideas clearly and use an appropriate business style.
Β· Ask questions; encourage input from team members
Β· Assess communication style of individual team members and adapt own communication style accordingly.
FUNCTIONAL MANAGEMENT RESPONSIBILITIES
Business Strategy and Direction:
Β· Know and understand Corporate, Campus and Global PE, IE, & ME tactical and strategic direction.
Β· Define, develop and implement a Process Engineering & Industrial Engineering strategy which contributes to the campus strategic directions.
Β· Develop an understanding of the Workcell business strategy as it pertains to Industrial & Process Engineering.
Β· Provide regular updates to BUM, WCM, and Operations Manager on the execution of the strategy.
Β· Manage technical support globally to sustain Corporate Intranet Site worldwide growth strategy as needed.
Cost Management:
Β· 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).
Β· Utilize tools to monitor departmental cost and cost trends, striving continuously to improve value.
Β· Provide feedback to peers (BUMs, WCMs, Functional Managers (FMs) on cost and cost trends.
Forecast Development and Accuracy:
Β· Prepare timely forecasts for the department.
Β· Compare forward forecast results to historical actual results for trend assessment and analysis.
Β· Anticipate future headcount requirements based on open Bays and projected business.
TECHNICAL MANAGEMENT RESPONSIBILITIES
Β· Drive continuous improvement through trend reporting analysis and metrics management.
Β· Assess the adequacy of data gathering methods utilized by the workcells.
Β· Assure that procedures and work instructions are efficient and not redundant.
Β· Prepare quotes for new and potential customers.
Β· Forecast future requirements and technical trends to drive gear suppliers in their technology roadmap.
Β· Verify reconfiguration requirements and monitor line moves.
Β· Lead equipment evaluations. Assure measurement criteria meet all Jabil site requirements worldwide.
Β· Explore and monitor new processes and procedures to support customerβs expanding requirements on cutting edge technology and product densification.
Β· Assist Project and Design Engineers with Design for Manufacturability issues.
Β· Assure that procedures and work instructions are efficient and not redundant.
Β· Utilize Jabilβs Advanced Engineering group to ensure useful support to Jabil South.
Β· Establish new measurement systems if/where possible.
Β· Offer new ideas and suggestions for improvement. Identify and implement new practices and processes that are βbest in field.β
Β· Drive the concept of an IE being an βIntegration Engineerβ that ensures everything works smoothly to guarantee efficient and high quality processes that translate into high customer satisfaction and revenues for Jabil.
Β· Demonstrate a commitment to customer service; anticipate, meet, and exceed expectations by solving problems quickly and effectively; making customer issues a priority.
Β· Periodically βget down in the trenchesβ to rehabilitate troubled workcells or to help during product launch. Foster a βback to basicsβ mentality during these times. Lead by example; βwalk the talk.β
Β· Establish new measurement systems if/where possible.
Β· Exchange knowledge and information with other Jabil facilities to ensure best practices are shared throughout the Jabil organization.
Β· Ensure 100% adherence to all company policies and procedures (i.e. Health and Safety, Quality).
Β· Ensure all sensitive and confidential information is handled appropriately.
Β· Drive Lean Manufacturing in a consistent, structured manner throughout the campus.
Β· Adhere to all safety and health rules and regulations associated with this position and as directed by supervisor.
Β· 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. Bachelorβs 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.
At Jabil, we make the worldβs best brands better by designing, manufacturing, and delivering end-to-end solutions on a scale. Our Salisbury, NC site supports high-growth cloud infrastructure customersβfrom server and rack integration to data-center subsystemsβwhere quality, speed, and traceability are non-negotiable.
How will you make an impact?
As the LeadΒ Quality Systems Engineer, you will serve as a guardian of Quality, shapingΒ a Quality Management System that thrives on speed, security, and scalability.Β
This position requiresΒ proven experienceΒ withΒ developing and implementing QMS in a newΒ start upΒ site.Β
The positionΒ alsoΒ requires the skills to leadΒ cross-functional teams to ensure that our products and processes align with ISO 9001:2015 expectations while still honoring the fast-moving rhythmΒ to meet customer expectations.Β
Quality Systems requires a unique balance of technical precision and practical, streamlined solutions. As a unifying partner across teams, the Quality Systems Engineer provides positive leadership, challenges complacency, and drives continuous improvementβwhile ensuring processes remain efficient and free of unnecessary administrative burden.
What will you do ?
Quality Management System Leadership
Establish a strong QMS foundation aligned with Jabil Global QMS and ISO 9001:2015 Standards.Β
Own the Quality Policy and measurable qualityΒ objectivesΒ throughout the site;Β monitorΒ performance and drive corrective actions where needed.Β
Lead Management Review processes β ensuring data-driven decision-making and compliance visibility.Β
Auditing & Compliance
Plan and execute internal audits across engineering and operations (with focus on IC,Β Planning,Β and other core Manufacturing Processes), product management, customerΒ support.Β
Serve asΒ primaryΒ liaison with external auditors, certification bodies, and regulatory partners.Β
Track and ensure closure of nonconformities, corrective actions, and risk mitigations. A strong grip on basics such as FMEA and Control Plan is a plus point.Β
Champion structured problem-solving using 8D, RCA, FMEA, DMAIC or equivalent frameworks.Β
Document & Process Ownership
Own lifecycle management for QMS documentation β including processes, SOPs, Work Instructions, and Quality Records.Β
Partner with system owners to ensure traceability and version control across Jabil document control tools.Β
Customer & Stakeholder Focus
Integrate Voice of Customer (VoC) into QMS improvements and product roadmaps.Β
Lead quality representation in major incident reviews and customer-impacting events.Β
Track quality KPIs and present insights clearly into executive leadership.Β
Training & Culture BuildingΒ
Develop and deliver ISO 9001:2015 and QMS awareness training for all functionsΒ starting at New Employee Orientation.Β
Advocate for an initiative-taking quality culture β where quality is everyoneβs job, not a bureaucratic checkpoint.Β
Β
Education:
Bachelorβs degree in engineering or quality discipline (masterβs preferred)Β
Experience
5β8 years in Quality Engineering or Quality Systems roles; at least 2-3 years in leading Quality Management Systems
StrongΒ expertiseΒ in ISO 9001:2015 implementation and certification maintenanceΒ
Proven experience with internal and supplier auditsΒ
Data-driven mindset β Excel/Sheets mastery is preferred; bonus if familiar with BI tools (Power BI, Tableau)Β
Certifications (preferred): CQE, CQA, Lead Auditor, Six Sigma Green/Black Belt Etc.Β
What Can Jabil Offer You?
Along with growth, stability, and the opportunity to be challenged, Jabil offers a competitive benefits package that includes:
Medical, Dental, Prescription Drug, and Vision Insurance with HRA and HSA options
401K Match
Employee Stock Purchase Plan
Paid Time Off
Tuition Reimbursement
Life, AD&D, and Disability Insurance
Commuter Benefits
Employee Assistance Program
Pet Insurance
Adoption Assistance
Annual Merit Increases
Community Volunteer Opportunities
Job Title: Β Principal Electrical Design Engineer
Job Family: Electrical Design Engineering
Organization : Data Center Infrastructure Team
Location: Β 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 innovativeΒ Principal Controls EngineerΒ 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 architectureΒ 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 createΒ BOMs. visual aids, electrical schematics,Β control diagrams, andΒ 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 withΒ critical infrastructure systems: UPS, generators, switchgear, chillers, CRAC/CRAH units, fire suppression systems.
- LeadΒ Factory Acceptance Testing (FAT)Β andΒ Site Acceptance Testing (SAT)Β 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 withΒ electrical, mechanical, software, and facilities engineering teamsΒ to ensure seamless integration of control systems with physical infrastructure
- Work closely withΒ cross functional teamsΒ to align control system designs with business requirements, timelines, and operational constraints
- FacilitateΒ design reviews, technical workshops, and cross-functional planning sessionsΒ to ensure alignment and transparency across engineering disciplines
- SupportΒ commissioning and field teamsΒ during deployment, troubleshooting, and optimization of control systems
How will you get here?
Education :Β
- Bachelorβs Degree in Electrical Engineering or a relevant engineering discipline.
Experience : Β
- 8+ years pf experience in control system design and implementation
- Deep expertise in the following:
- PLC programmingΒ (Allen-Bradley, Siemens, Schneider Electric)
- Building Management Systems (BMS)Β integration and optimization
- Electrical Power Monitoring Systems (EPMS/EDPM)Β for real-time energy analytics
- Automatic Transfer Switches (ATS)Β 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:β―Β
- Masterβs 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.
At Jabil, we make the worldβs best brands better by designing, manufacturing, and delivering end-to-end solutions on a scale. Our Salisbury, NC site supports high-growth cloud infrastructure customersβfrom server and rack integration to data-center subsystemsβwhere quality, speed, and traceability are non-negotiable.
How will you make an impact?
As the LeadΒ Quality Systems Engineer, you will serve as a guardian of Quality, shapingΒ a Quality Management System that thrives on speed, security, and scalability.Β
This position requiresΒ proven experienceΒ withΒ developing and implementing QMS in a newΒ start upΒ site.Β
The positionΒ alsoΒ requires the skills to leadΒ cross-functional teams to ensure that our products and processes align with ISO 9001:2015 expectations while still honoring the fast-moving rhythmΒ to meet customer expectations.Β
Quality Systems requires a unique balance of technical precision and practical, streamlined solutions. As a unifying partner across teams, the Quality Systems Engineer provides positive leadership, challenges complacency, and drives continuous improvementβwhile ensuring processes remain efficient and free of unnecessary administrative burden.
What will you do ?
Quality Management System Leadership
Establish a strong QMS foundation aligned with Jabil Global QMS and ISO 9001:2015 Standards.Β
Own the Quality Policy and measurable qualityΒ objectivesΒ throughout the site;Β monitorΒ performance and drive corrective actions where needed.Β
Lead Management Review processes β ensuring data-driven decision-making and compliance visibility.Β
Auditing & Compliance
Plan and execute internal audits across engineering and operations (with focus on IC,Β Planning,Β and other core Manufacturing Processes), product management, customerΒ support.Β
Serve asΒ primaryΒ liaison with external auditors, certification bodies, and regulatory partners.Β
Track and ensure closure of nonconformities, corrective actions, and risk mitigations. A strong grip on basics such as FMEA and Control Plan is a plus point.Β
Champion structured problem-solving using 8D, RCA, FMEA, DMAIC or equivalent frameworks.Β
Document & Process Ownership
Own lifecycle management for QMS documentation β including processes, SOPs, Work Instructions, and Quality Records.Β
Partner with system owners to ensure traceability and version control across Jabil document control tools.Β
Customer & Stakeholder Focus
Integrate Voice of Customer (VoC) into QMS improvements and product roadmaps.Β
Lead quality representation in major incident reviews and customer-impacting events.Β
Track quality KPIs and present insights clearly into executive leadership.Β
Training & Culture BuildingΒ
Develop and deliver ISO 9001:2015 and QMS awareness training for all functionsΒ starting at New Employee Orientation.Β
Advocate for an initiative-taking quality culture β where quality is everyoneβs job, not a bureaucratic checkpoint.Β
Β
Education:
Bachelorβs degree in engineering or quality discipline (masterβs preferred)Β
Experience
5β8 years in Quality Engineering or Quality Systems roles; at least 2-3 years in leading Quality Management Systems
StrongΒ expertiseΒ in ISO 9001:2015 implementation and certification maintenanceΒ
Proven experience with internal and supplier auditsΒ
Data-driven mindset β Excel/Sheets mastery is preferred; bonus if familiar with BI tools (Power BI, Tableau)Β
Certifications (preferred): CQE, CQA, Lead Auditor, Six Sigma Green/Black Belt Etc.Β
What Can Jabil Offer You?
Along with growth, stability, and the opportunity to be challenged, Jabil offers a competitive benefits package that includes:
Medical, Dental, Prescription Drug, and Vision Insurance with HRA and HSA options
401K Match
Employee Stock Purchase Plan
Paid Time Off
Tuition Reimbursement
Life, AD&D, and Disability Insurance
Commuter Benefits
Employee Assistance Program
Pet Insurance
Adoption Assistance
Annual Merit Increases
Community Volunteer Opportunities
As a Mechanical Design Engineer, you will be designing, building, and testing prototypes for many types of liquid cooling systems.
Mikros Technologies liquid cooling systems are deployed servers in large AI data centers and help to increase the energy efficiency of these sites. We also make active liquid cooling systems that are utilized in semiconductor test equipment for providing fast thermal control to maintain a constant temperature under a varying heat load.
- This is an onsite role in Claremont, NH.
- Relocation assistance available.
- Competitive salary with bonus opportunities.
What will you do?
- Ability to provide design and engineering drawing services as required to support our manufacturing processes and integration of our products into the end userβs equipment.
- Design and analysis of cooling systems such as cold plates, manifolds, and fluidic couplings.
- Analyze customer design proposals, specifications, manuals, and other data to evaluate the feasibility and cost of designs or applications.
- Research, design, validate, and analyze machined parts and other components of structural and mechanical systems and processes to meet requirements, applying knowledge of engineering principles.
- Compute and estimate loadings on structural members.
- Provide technical input to identify and mitigate project risks that may impact project plans and schedules
- CAD model development, and design data package development completing finite element analysis techniques for stress and structural dynamics using ProE CREO, SolidWorks or other CAD software
- Review CAD/Technical Data Packages to determine and validate mechanical design requirements for components and their functions within a system environment
- Evaluate/optimize manufacturing assembly processes by designing, modifying, and testing manufacturing methods and equipment, conferring with equipment vendors, and soliciting observations from the production team
- Adept at creating detailed mechanical design of components, sub-assemblies, and system integration
- Capable of creating a Bill of Materials (BOM) for release to manufacturing
- Conduct root cause investigation to troubleshoot complex mechanical design and material issues that arise through testing and engineering development
- Draft and contribute to test plans and specifications
- Perform tests, debug, and validation of mechanical systems and support manufacturing processes
- Manage relationships with mechanical component vendors and contract manufacturers
- Keep updated with the latest technologies and methods to ensure competitive and cost-effective designs
- Work with your manager to propose potential R&D project ideas to enhance competency areas
- Discuss with management and production staff to assess engineering feasibility and cost-effectiveness
- May perform other duties and responsibilities as assigned
How will you get here?Β
Education:Β
- Bachelorβs degree in Mechanical Engineering, Systems Engineering, or a related field. A Masterβs degree in engineering or higher is preferred
Experience:Β
- 5 years of design engineering experience or an equivalent combination of experience and education
- Thermal design and analysis
- Design for manufacturing and GD&T experience
- Mechanical (statics) and fluid analysis
- Computational fluid dynamics (CFD) experience
- Ability to design, build, and test prototypes. Test experience should
- 3D CAD experience (e.g. SolidWorks)
- Excellent problem-solving skills and attention to detail
- Strong communication and teamwork abilities
- Alternatively, a suitable combination of education, experience, and/or training may be considered
Knowledge, Skills, Abilities:Β
- Excellent interpersonal and communication skills
- Creative, self-motivated, accountable, and team-oriented
- Able to work independently with minimal oversight
- 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
- Able to mentor less experienced engineers
- Able to work from first principles in engineering analysis.
What can Jabil offer you?
Along with growth, stability, and the opportunity to be challenged, Jabil offers a competitive benefits package that includes:
- Medical, Dental, Prescription Drug, and Vision Insurance with HRA and HSA options
- 401K Match
- Employee Stock Purchase Plan
- Paid Time Off
- Tuition Reimbursement
- Life, AD&D, and Disability Insurance
- Commuter Benefits
- Employee Assistance Program
- Pet Insurance
- Adoption Assistance
- Annual Merit Increases
- Community Volunteer Opportunities
Apply Today!
Job Title: Β Principal Electrical Controls Engineer
Job Family: Electrical Design Engineering
Organization : Data Center Infrastructure Team
Location: Β 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 innovativeΒ Principal Controls EngineerΒ 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 architectureΒ 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 createΒ BOMs. visual aids, electrical schematics,Β control diagrams, andΒ 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 withΒ critical infrastructure systems: UPS, generators, switchgear, chillers, CRAC/CRAH units, fire suppression systems.
LeadΒ Factory Acceptance Testing (FAT)Β andΒ Site Acceptance Testing (SAT)Β 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 withΒ electrical, mechanical, software, and facilities engineering teamsΒ to ensure seamless integration of control systems with physical infrastructure
Work closely withΒ cross functional teamsΒ to align control system designs with business requirements, timelines, and operational constraints
FacilitateΒ design reviews, technical workshops, and cross-functional planning sessionsΒ to ensure alignment and transparency across engineering disciplines
SupportΒ commissioning and field teamsΒ during deployment, troubleshooting, and optimization of control systems
How will you get here?
Education :Β
Bachelorβs Degree in Electrical Engineering or a relevant engineering discipline.
Experience : Β
8+ years pf experience in control system design and implementation
Deep expertise in the following:
PLC programmingΒ (Allen-Bradley, Siemens, Schneider Electric)
Building Management Systems (BMS)Β integration and optimization
Electrical Power Monitoring Systems (EPMS/EDPM)Β for real-time energy analytics
Automatic Transfer Switches (ATS)Β 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:β―Β
Masterβs 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.
Job Title: Β Principal Electrical Controls Engineer
Job Family: Electrical Design Engineering
Organization : Data Center Infrastructure Team
Location: Β 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 innovativeΒ Principal Controls EngineerΒ 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 architectureΒ 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 createΒ BOMs. visual aids, electrical schematics,Β control diagrams, andΒ 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 withΒ critical infrastructure systems: UPS, generators, switchgear, chillers, CRAC/CRAH units, fire suppression systems.
LeadΒ Factory Acceptance Testing (FAT)Β andΒ Site Acceptance Testing (SAT)Β 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 withΒ electrical, mechanical, software, and facilities engineering teamsΒ to ensure seamless integration of control systems with physical infrastructure
Work closely withΒ cross functional teamsΒ to align control system designs with business requirements, timelines, and operational constraints
FacilitateΒ design reviews, technical workshops, and cross-functional planning sessionsΒ to ensure alignment and transparency across engineering disciplines
SupportΒ commissioning and field teamsΒ during deployment, troubleshooting, and optimization of control systems
How will you get here?
Education :Β
Bachelorβs Degree in Electrical Engineering or a relevant engineering discipline.
Experience : Β
8+ years pf experience in control system design and implementation
Deep expertise in the following:
PLC programmingΒ (Allen-Bradley, Siemens, Schneider Electric)
Building Management Systems (BMS)Β integration and optimization
Electrical Power Monitoring Systems (EPMS/EDPM)Β for real-time energy analytics
Automatic Transfer Switches (ATS)Β 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:β―Β
Masterβs 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.
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?β―
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:β―
- Bachelorβs degree in Mechanical Engineering, Systems Engineering, or a related engineering discipline from an accredited university.
Experience:β―
- 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
- Masterβs Degree in Mechanical Engineering
- Professional Engineer (PE) License
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:
- Bachelorβs 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:β―
- Masterβs 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.
Mechanical Design EngineeringΒ
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.
Bachelorβs 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.
~ Masterβs Degree in Mechanical Engineering
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How will you make an impact?
Manages through subordinates, the development and maintenance of quality evaluation, control systems and protocols for processing materials into partially finished or finished products for a business unit or corporate. Manages the audits of quality systems for deficiency identification and correction. Manages the overall development of inspection and testing processes, mechanisms and equipment as applied to new or existing products. Direct the design, development and maintenance of quality systems and procedures for processing materials into compute and networking racks for multiple product lines. Key objective for this role is to develop a culture of quality within the organization, drive continuous improvement in quality processes, systems tools, and techniques to improve business results and customer satisfaction. Provide exceptional support to customers, team members, and shareholders.
Provide input to and support of plant and company safety initiatives
Provide guidance to support the policies and process with the quality department members to promote the understanding and compliance.
Establish the short and long-term quality goals for the organization and the team.
Direct activities to facilitate the interaction between Quality and the other functional operations area, especially test and manufacturing engineering to accelerate improvement.
Provides early guidance and solutionβs concerning quality evaluation, control systems and protocols, e.g., non-compliant situations, customer scalations, requirements, government regulations, accuracy of products.
Executes all management reports to clients, business unit.
Collaborates with customer in order of accomplish their requirementβs or for any scalation.
Development and modification of all quality evaluation and control systems in areas of product responsibility, and in compliance with company policies, customer requirements.
Direct the development of methods and procedures for inspecting, testing and evaluating the precision and accuracy of products and production equipment.
Provides guidance to statistical analysis projects to assess the cost of and determine the responsibility for products or materials that do not meet required standards and specifications.
Directs the auditing process of quality systems for deficiency identification and correction, and delegates to the subordinates the implementation of the corrective action plans and executed in a timely manner.
Ensures that corrective measures meet acceptable standards, and that documentation is compliant with all Jabil and customer requirements.
Directs the development of sustainable, repeatable and quantifiable business process improvements. Develops and modifies as necessary and required on the status of quality assurance programs and practices.
Provide direction and training, as necessary, to a staff of Managers and Quality Assurance Engineers.
Provides early guidance concerning compliance all site required agency certifications related to product and process quality, not limited to: ISO 9001.
Establishes up front quality planning for new products to ensure appropriate quality systems and processes required to support the introduction are developed and implemented.
Exchange knowledge and information with other Jabil facilities to ensure best practices are shared throughout the Jabil organization.
Other responsibilities may be assigned from time to time as needed, based on the evolution of the company and the requirements of the department/position.
May perform other duties and responsibilities as assigned.
How will you get here?
Education and Experience:
Bachelorβs degree required. Masterβs degree preferred in Engineering or Technology disciplines.
Minimum ten (10) years of experience and required industry experience
Or a combination of education, experience and/or training.
Ideally Seven (7) years of experience in high technology manufacturing including 3 plus years in compute and network server/rack industry.
Must have a proven track record of driving improvements ideally in compute and network server/rack products.
Experience in defining and changing quality culture in production environment.
A team builder: develop and lead a cohesive quality team as well as drive cross functional collaboration.
Successful track record of working in a matrix/collaborative environment.
Strong background in ISO-9000 or similar ideally with ground up implementation experience.
Multisite leadership experience would be a plus.
Excellent verbal and written communication skills.
Multi-task management.
Teamwork and collaboration.
Strong interpersonal skills.