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Internship Nvidia Hardware Engineer Jobs in Indiana

Test Engineer

Odon, IN ยท On-site

... internship, project team, lab environment, etc.). * Hands-on integration experience with hardware ... Experience with engineering tools such as MATLAB, Python, and CAD software. EDUCATION AND ...

... internship, project team, lab environment, etc.). * Hands-on integration experience with hardware ... Experience with engineering tools such as MATLAB, Python, and CAD software. EDUCATION AND ...

Electrical Engineering Intern

Indianapolis, IN ยท On-site

$18.25 - $24/hr

V2X, located in Indianapolis, IN, has an Electrical Engineering Internship opportunity for a current college student to join our Hardware Engineering team in Indianapolis, IN during the Summer of ...

Electrical Engineering Intern

Indianapolis, IN ยท On-site

$18.25 - $24/hr

V2X, located in Indianapolis, IN, has an Electrical Engineering Internship opportunity for a current college student to join our Hardware Engineering team in Indianapolis, IN during the Summer of ...

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Internship Nvidia Hardware Engineer information

What does an internship Nvidia hardware engineer do?

An Internship Nvidia Hardware Engineer works alongside experienced engineers to assist in designing, testing, and validating hardware components such as GPUs, processors, and related systems. Interns typically get hands-on experience with circuit design, simulation, debugging, and performance analysis. They may also collaborate with cross-functional teams to optimize hardware for efficiency and performance. This role gives students exposure to industry-standard tools and real-world engineering challenges, preparing them for future careers in hardware engineering.

What are the key skills and qualifications needed to thrive as an internship Nvidia hardware engineer?

To thrive as an Internship Nvidia Hardware Engineer, you need a solid understanding of electrical engineering fundamentals, digital/analog circuit design, and relevant coursework or project experience. Familiarity with hardware description languages (such as Verilog or VHDL), simulation tools (like ModelSim or Cadence), and version control systems is typically expected. Strong problem-solving abilities, effective teamwork, and clear communication distinguish top candidates in this role. These skills and qualities are crucial to efficiently contribute to complex hardware development projects and collaborate within multidisciplinary engineering teams.

What kinds of projects can an intern expect to work on as a hardware engineer at Nvidia?

As a Hardware Engineer intern at Nvidia, you can expect to be involved in hands-on projects that support the development, testing, and validation of hardware components such as GPUs, system boards, or AI accelerators. Interns often collaborate closely with experienced engineers, contributing to tasks like schematic reviews, board bring-up, signal integrity analysis, or automation of testing procedures. These projects provide opportunities to learn industry-standard tools and workflows, as well as gain practical experience in problem-solving and cross-functional teamwork. This exposure not only builds technical skills but also helps interns understand the end-to-end hardware development lifecycle.

What is the difference between Internship Nvidia Hardware Engineer vs Nvidia Hardware Engineer?

AspectInternship Nvidia Hardware EngineerNvidia Hardware Engineer
QualificationsEnrolled in a relevant degree program, some technical courseworkBachelor's or Master's in Electrical Engineering, Computer Engineering, or related fields
Work EnvironmentInternship program, mentorship, collaborative teamsFull-time, professional environment, project ownership
ResponsibilitiesAssist in hardware design, testing, and documentationDesign, develop, and optimize hardware components and systems

Internship Nvidia Hardware Engineers are students gaining practical experience, focusing on learning and assisting with hardware projects. Nvidia Hardware Engineers are full-time professionals responsible for designing and developing advanced hardware solutions. The internship offers a pathway to a career in hardware engineering, while full-time roles involve more responsibility and expertise.

What are the most commonly searched types of Nvidia Hardware Engineer jobs in Indiana?

The most popular types of Nvidia Hardware Engineer jobs in Indiana are:

What cities in Indiana are hiring for Internship Nvidia Hardware Engineer jobs?

Cities in Indiana with the most Internship Nvidia Hardware Engineer job openings:

Infographic showing various Internship Nvidia Hardware Engineer job openings in Indiana as of July 2026, with employment types broken down into 92% Full Time, 5% Part Time, and 3% Contract. Highlights an 89% Physical, 4% Hybrid, and 7% Remote job distribution.

Senior Electronic Hardware Engineer

Newburgh, IN โ€ข On-site

$104K - $139K/yr

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Re-posted 29 days ago


Job description

Matrix designs, manufactures, and sells innovative technological products that help keep people safe. Originally focused on the underground coal mining industry, Matrix has expanded into new industrial markets in the United States and globally.
We are currently seeking a Senior Electronic Hardware Engineer to design and develop hardware components and systems. You will work closely with other engineers and cross-functional teams to ensure the successful execution of hardware projects. This role is ideal for a proactive and detail-oriented individual with a strong foundation in electronics and a passion for hardware development. This position works in a team environment at our home office in Newburgh, IN. This is not a remote position.
This position reports to the Manager of Hardware Systems.
Duties and Responsibilities
  • Lead and contribute to product design requirement definition by translating customer, regulatory, and internal stakeholder needs into clear, testable engineering requirements and acceptance criteria; work from occasional broad objectives and independently drive requirements clarity across stakeholders
  • Own development of hardware specifications and interfaces for assigned subsystems, including architecture decisions, design trade-offs, risk identification, and alignment with system-level requirements; provide technical consultation to resolve unusual and significant problems
  • Plan and execute proof-of-concept builds and feasibility investigations using innovative techniques to retire technical risk early; define approach, success criteria, schedule, and next-step recommendations
  • Design and own complex schematics and PCB layout using Altium Designer, including design partitioning and critical signal/power integrity considerations; provide guidance, coordination, and review/approval of layouts created by others as needed
  • Define and execute verification plans; prototype, debug, and validate circuits to ensure compliance with specifications, safety requirements, and applicable standards, making timely technical decisions and owning outcomes
  • Direct cross-functional design reviews by setting review objectives, ensuring stakeholder participation, driving closure of action items, and maintaining design quality, manufacturability, and serviceability
  • Architect product verification testers and procedures, balancing coverage, repeatability, throughput, and cost; leverage internal staff services (manufacturing, quality, test engineering) and external partners to implement robust test strategies
  • Develop and maintain manufacturing documentation (BOMs, assembly drawings, work instructions, test procedures) and plan/drive timely release and ECN updates to support production, sustaining engineering, and product changes
  • Provide advanced support and training to installation/repair technicians and field services; lead structured troubleshooting and root-cause investigations for unusual and significant issues through resolution
  • Create and maintain high-quality engineering documentation (drawings, test procedures/reports, specifications, evaluation reports, and technical proposals/estimates) and clearly communicate status, risks, and recommendations to technical and nontechnical stakeholders
  • Coordinate and occasionally conduct testing and information gathering in end-use environments (e.g., warehouses or mine sites); interpret incomplete data using engineering judgment and drive design improvements for reliability and usability
  • Lead component lifecycle management for current product lines by assessing obsolescence risk, identifying and qualifying substitutes, and directing cross-functional change implementation (design, supply chain, manufacturing, and quality)
  • Provide guidance and coordination through coaching and mentorship of interns and less experienced engineers, including reviewing work products, setting best practices, and improving team execution

Qualifications & Competencies
Employment Eligibility & Verification
All applicants must be able to provide proof of eligibility to work in the United States. Employment is contingent upon the successful completion of the I-9 form, as required by federal law. Additionally, candidates will be required to undergo an employment verification process before beginning work. Please note that we do not offer sponsorship for work authorization (e.g., H-1B, TN, or other visas) at this time.
  • Bachelor's degree in electrical engineering (or closely related field)
  • 7+ years of progressive experience in electronic hardware design and development, with demonstrated ownership of designs from concept through production and sustaining support
  • Expert-level proficiency with PCB design tools (Altium Designer preferred; KiCad, OrCAD, Eagle, etc.), including library management and disciplined schematic/layout release practices
  • Deep understanding of analog and digital circuit design, including component selection, design margins, and practical considerations for manufacturability, reliability, and serviceability
  • Advanced knowledge of electrical test and measurement methods (DMMs, power supplies, function generators, oscilloscopes, logic analyzers, etc.), including development of repeatable verification tests and test reports
  • Strong problem-solving and troubleshooting skills, including structured root-cause analysis and effective containment/corrective actions
  • Very good communication skills: ability to convey technical and nontechnical information clearly through written and verbal channels and influence decisions across engineering, manufacturing, quality, and field teams
  • Demonstrated ability to mentor and develop interns and less-experienced engineers through technical guidance, review feedback, and sharing of best practices
  • Excellent planning and execution skills: ability to organize tasks, resources, and time effectively to manage risk and achieve occasional broad objectives on schedule
  • Very good decision-making, self-motivation, and intuition: ability to make timely, accountable technical choices under pressure and use experience to make informed predictions with incomplete data
  • Demonstrated ability to direct cross-functional project work (engineering, manufacturing, quality, supply chain, and field support), coordinating stakeholders and driving closure on commitments

Working Conditions
  • Most of the work will take place in a climate-controlled office or lab setting
  • Travel to supplier/partner facilities or to customer/field locations, supporting initial product R&D and testing or troubleshooting may be required occasionally (industrial or mining sites possible)
  • Matrix employees are furnished with and required to wear safety gear such as hard hats, steel toe shoes, reflective clothing, earplugs, and safety glasses when working in those locations requiring such protective gear

Physical Requirements
The employee is occasionally required to stand, walk and stoop, or crouch. The employee may need to lift and/or move up to 10 pounds. Specific vision abilities required by this job include close vision, distance vision, color vision, peripheral vision, depth perception and ability to adjust focus.
Physical Demands: The physical demands described here are representative of those that must be met by an employee to successfully perform the essential functions of this job. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions. #LI-Onsite
Benefits
  • First day coverage of all benefits - no waiting period
  • Premium free medical, dental and vision insurance - working spouse must take single major medical at their place of employment if offered
  • On-site health clinic
  • Basic Life (2x annual base salary at no cost)
  • Optional Life and Accidental Death and Dismemberment (AD&D) insurance
  • Short-Term and Long-Term Disability insurance (no cost)
  • 401(k) Plan with up to an 8% company match
  • FSA for Health Care and Dependent Care
  • 10 Paid annual holidays plus vacation time
  • Educational Reimbursement Program
  • Scholarship Program
  • Optional Gym Membership
  • ESports Room