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Asic Design Verification Engineer Internship Jobs in Tennessee

Systems Engineer III owns the end-to-end lifecycle from design inception through as-built verification and field commissioning for a set of assigned systems. * Apply systems thinking and a holistic ...

By submitting your interest, you'll be among the first to know when internship opportunities open ... Participating on an Agile Scrum team, collaborating across design, development, and testing

Structural Engineer

Knoxville, TN ยท On-site

$115K - $135K/yr

... design solutions Review and approve shop drawings and verify construction aligns with engineering plans and specifications Manage project design requirements including verification matrices ...

By submitting your interest, you'll be among the first to know when internship opportunities open ... Participating on an Agile Scrum team, collaborating across design, development, and testing

By submitting your interest, you'll be among the first to know when internship opportunities open ... Participating on an Agile Scrum team, collaborating across design, development, and testing

By submitting your interest, you'll be among the first to know when internship opportunities open ... Participating on an Agile Scrum team, collaborating across design, development, and testing

By submitting your interest, you'll be among the first to know when internship opportunities open ... Participating on an Agile Scrum team, collaborating across design, development, and testing

By submitting your interest, you'll be among the first to know when internship opportunities open ... Participating on an Agile Scrum team, collaborating across design, development, and testing

By submitting your interest, you'll be among the first to know when internship opportunities open ... Participating on an Agile Scrum team, collaborating across design, development, and testing

By submitting your interest, you'll be among the first to know when internship opportunities open ... Participating on an Agile Scrum team, collaborating across design, development, and testing

Mechanical Engineering Internships and/or Co-ops, particularly in Machine Design or adjacent industries (see below) * 3D CAD experience; Inventor and/or Solidworks preferred * FEA software experience;

Mechanical Design Engineer

Knoxville, TN ยท On-site

$72K - $98K/yr

The Mechanical Design Engineer will work of a variety of projects and systems including vacuum ... Employment Eligibility Verification For positions based in the United States, Type One Energy ...

Showing results 21-40

Asic Design Verification Engineer Internship information

What does an ASIC design verification engineer intern do?

An ASIC Design Verification Engineer Intern assists with testing and validating the functionality of Application-Specific Integrated Circuits (ASICs) during the hardware development process. Their responsibilities typically include writing test benches, developing verification environments, running simulations, and identifying bugs or design flaws before fabrication. Interns often use hardware description languages like Verilog or VHDL and verification methodologies such as UVM. This role is essential to ensure that the final ASIC design meets the required specifications and functions correctly.

What are the key skills and qualifications needed to thrive as an ASIC design verification engineer intern?

To thrive as an ASIC Design Verification Engineer Intern, you typically need a solid background in digital logic design, hardware description languages (HDLs) like Verilog or VHDL, and coursework in computer engineering or electrical engineering. Familiarity with simulation tools (such as ModelSim or Synopsys VCS), scripting languages like Python or Perl, and version control systems is highly valued. Strong analytical thinking, problem-solving abilities, and effective teamwork skills set exceptional candidates apart. These competencies are crucial for ensuring the functionality, reliability, and timely delivery of complex integrated circuits.

What are some typical challenges faced during an ASIC design verification engineer internship, and how can interns effectively address them?

Interns in ASIC design verification often encounter challenges such as understanding complex hardware specifications, learning new verification tools and methodologies, and debugging intricate design issues. To overcome these, it's important to proactively seek guidance from senior engineers, utilize available documentation and training resources, and actively participate in team meetings. Building strong communication skills and staying organized with test plans and bug tracking can also make the workflow smoother and more manageable.

What is the difference between Asic Design Verification Engineer Internship vs Asic Design Engineer?

AspectAsic Design Verification Engineer InternshipAsic Design Engineer
CredentialsTypically pursuing or recent graduate in Electrical Engineering or Computer EngineeringBachelor's or Master's degree in Electrical Engineering or related field
Work EnvironmentInternship program, often in a corporate R&D or design teamFull-time professional role in ASIC design teams
ResponsibilitiesAssisting in verification testbenches, running simulations, learning verification toolsDesigning, implementing, and testing ASIC hardware components
DurationUsually 3-6 monthsFull-time ongoing role

The Asic Design Verification Engineer Internship is an entry-level, temporary position focused on assisting verification tasks, while the Asic Design Engineer role involves full responsibility for ASIC design and development. Internships provide hands-on experience, whereas full engineers lead projects and make design decisions.

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What cities in Tennessee are hiring for Asic Design Verification Engineer Internship jobs? Cities in Tennessee with the most Asic Design Verification Engineer Internship job openings:

Systems Engineer

EGS

Oak Ridge, TN โ€ข On-site

Contractor

Re-posted 18 days ago


Job description

EGS is seeking a Systems Engineer to support our client located in Oak Ridge, Tennessee. This is a long term (3-4 years) contract position that comes with top competitive rates and great benefits.ย 

Must be US Citizen.ย 

ย This role is responsible for executing rigorous systems engineering processes to support the design, integration, verification, validation, and lifecycle management of complex nuclear systems from conceptual design through physical commissioning and operations turnover. Systems Engineer III applies INCOSE-aligned methodologies to manage multiple concurrent facility subsystems, ensuring all components work together effectively across the complete lifecycle, meet regulatory requirements, and are properly verified throughout the project. This position plays a critical role in requirements traceability management (RVTM/VTM), interface control, configuration baseline management, verification & validation (V&V) planning and execution, procedure development, and enterprise architecture for asset management. Systems Engineer III owns the end-to-end lifecycle from design inception through as-built verification and field commissioning for a set of assigned systems.
ย 
Job Description
  • Apply systems thinking and a holistic approach to solve problems, analyze and design systems, considering the interdependencies and interactions between various components across the entire facility lifecycle.
  • Manage multiple concurrent facility subsystems across design-to-installation lifecycle, owning the functional, allocated, and product baselines for each system and ensuring seamless integration across disciplines.
  • Lead and manage systems engineering lifecycle efforts surrounding:
    • Operations Concept (OpsCon) development.
    • Stakeholder and operational analysis.
    • Requirements management.
    • Functional design interface definition.
    • System architecture development.
    • Physical product definition, interface management, and change control.
    • System verification and validation (V&V) planning and execution.
  • Author, maintain, and manage Requirements Verification Traceability Matrices (RVTM/VTM) as the source of truth linking stakeholder needs, system requirements, design specifications, and physical verification tests across multiple subsystems.
  • Develop, author, review, and maintain enterprise-level engineering procedures that govern design control, configuration management, verification & validation, and engineering quality assurance processes across the organization.
  • Create and maintain enterprise architecture documentation for asset management, including system baselines, interface documents, and configuration management records that support lifecycle control from design through operations.
  • Govern cross-functional Interface Controls (commonly ICDs) to manage critical dependencies between process equipment, structural elements, industrial automation networks, and facility utilities (e.g., HVAC, power distribution, chemical supply systems).
  • Participate in the identification and monitoring of technical risks and the development of risk mitigation strategies using formal methodologies (FMEA, FMECA).
  • Plan, develop, and execute comprehensive Verification & Validation (V&V) activities including:
    • Design Verification Record preparation and closure.
    • V&V Plan development and execution across all lifecycle phases.
    • Test plan creation, review, and approval.
    • Factory Acceptance Testing (FAT) planning, witnessing (in some cases), and approval.
    • Site Acceptance Testing (SAT) planning and execution.
    • Acceptance criteria definition and validation.
    • Inspection, analysis, demonstration, and test method application.
    • As-built vs. as-designed verification to confirm physical installations match approved digital models and design requirements
  • Manage technical baselines across diverse architectural and engineering groups, ensuring that modifications to process equipment, utilities, automation systems, or structural elements are analyzed for systemic impacts before execution.
  • Participate in multi-disciplinary Configuration Control Board (CCB) to manage design variations, prevent scope creep, and ensure rigorous change management.
  • Execute field engineering change control during construction and installation phases to govern modifications made during physical commissioning and prevent cascading system failures or interface conflicts.
  • Manage requirements traceability from stakeholder needs through design specifications, procurement documents, and verification activities using JAMA as the primary requirements management platform (IBM DOORS or similar experience considered transferable).
  • Work across engineering disciplines to ensure effective integration of system components and subsystems, serving as the coordination layer between process, civil, EI&C, and safety teams.
  • Perform work in accordance with quality assurance procedures to ensure engineering projects meet applicable nuclear industry quality standards (10 CFR Part 70, NQA-1, ISO/IEC/IEEE 15288).

Job Profile Minimum Qualifications
Education
  • Bachelor's degree in Systems Engineering, Industrial Engineering, Mechanical Engineering, Nuclear Engineering, or other engineering-related discipline from an ABET-accredited institution required.

Technical Skills & Knowledge
  • Proficiency using requirements management software (JAMA or IBM DOORS preferred).
  • Experience managing Requirements Verification Traceability Matrices (RVTM) and performing requirements decomposition across multiple system levels.
  • Proven ability to establish and maintain end-to-end traceability from stakeholder needs through design specifications and physical verification tests.
  • Demonstrated ability to manage multiple concurrent facility subsystems across the complete design-to-operations lifecycle.
  • Proven ability to identify and resolve interface conflicts before they become field issues.
  • Experience participating in Engineering Change Control, governing modifications made during design, fabrication and installation phases.
  • Proven ability to verify that final, physically installed hardware matches approved digital models and design requirements.
  • Demonstrated ability to develop and execute V&V Plans.
  • Experience creating test plans, test cases, and acceptance criteria for physical testing.
  • Proven experience writing, reviewing, and maintaining engineering procedures and work instructions.
  • Experience with JIRA or similar project management and workflow management tools.
  • Ability to manage technical scope, coordinate multiple contributors, and track action items across multiple concurrent subsystems.
  • Knowledge of System Lifecycle Processes (ISO/IEC/IEEE 15288:2023).
  • Experience with technical risk assessments and management methodologies (FMEA, FMECA, HAZOP).

Additional Job Description: Level III
Level Tasks/Responsibilities
  • Execute the core tasks and responsibilities listed in the Job Profile Tasks/Responsibilities section of this document, under minimal supervision.
  • Provide ownership, responsibility, and accountability over technical scope involving the coordination of multiple individual contributors working in a specific area.

Level III Minimum Qualifications
  • Bachelor's degree in Systems Engineering, Industrial Engineering, Mechanical Engineering, Nuclear Engineering, or other engineering-related discipline from an ABET-accredited institution required.
  • Five years of experience in an engineering role required.
    • A master's degree in engineering or related field (may include a combination of experience obtained through an academic institution, e.g., design projects, research, or design teams, as well as professional experience) may be in lieu of two years of experience.
    • A Ph.D. in engineering or related field (may include a combination of experience obtained through an academic institution, e.g., design projects, research, or design teams, as well as professional experience) may be in lieu of three years of experience.
    • Previous experience at X-energy exceeding performance standards may be in lieu of years of experience.

Preferred Qualifications
  • INCOSE Certified Systems Engineering Professional (CSEP) or Associate Systems Engineering Professional (ASEP) - preferred but not required.
  • Professional Engineer (PE) license in relevant discipline.
  • Experience in nuclear fuel cycle facilities, small modular reactors (SMRs), or advanced reactor design.
  • Prior experience working within NQA-1 or ISO 9001 quality management systems.
  • Experience with nuclear regulatory compliance (NRC, DOE).
  • Experience applying systems engineering in production/manufacturing environments or capital construction projects.
  • Demonstrated success managing 5+ subsystems from design inception through physical commissioning.
Education:Bachelor (BA, BS...)Employment Type: CONTRACTOR