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Senior Rfic Design Engineer Jobs in South Carolina

Design Engineer I - New Product Development Engineering (OPE) The Design Engineer I supports the ... Working under the guidance of senior engineers and engineering leadership, this role contributes to ...

ROLE We are seeking a Senior FPGA Design Engineer with at least 10 years of experience to develop the architecture, implementation, and verification of complex, high-speed FPGA solutions. The ideal ...

The Design Engineer II supports the design and development of outdoor power equipment (OPE) systems ... Working under the guidance of senior engineers and engineering leadership, this role contributes to ...

Senior Mechanical Engineer - Automation Location: Greenville, South Carolina Job Type: Contract to ... Design automation equipment, tooling, fixtures, machine structures, guarding, and mechanical ...

Senior Mechanical Engineer - Automation Location: Greenville, South Carolina Job Type: Contract to ... Design automation equipment, tooling, fixtures, machine structures, guarding, and mechanical ...

Senior Tire Design Engineer / R&D Manager FLSA Status: Exempt Location: Richburg, SC, USA Summary: The Tire Design Engineer supports the development of new tires through learning and applying ...

Senior Design Engineer

Greenville, SC · On-site

$119K - $222K/yr

At Fluor, we are proud to design and build projects and careers. We are committed to fostering a ... Accredited four (4) year degree or global equivalent in engineering field of study and ten (10) ...

Showing results 21-40

Senior Rfic Design Engineer information

What is a Senior RFIC Design Engineer?

A Senior RFIC (Radio Frequency Integrated Circuit) Design Engineer is an experienced professional who designs, develops, and tests high-frequency integrated circuits used in wireless communication devices. They work extensively with analog and mixed-signal circuits, and are responsible for ensuring the performance, reliability, and manufacturability of RFICs for applications such as mobile phones, Wi-Fi, and IoT devices. In addition to technical design tasks, Senior RFIC Design Engineers often mentor junior engineers, collaborate with cross-functional teams, and contribute to the overall architecture of wireless systems.

What are some common challenges faced by Senior RFIC Design Engineers during the chip design and validation process?

Senior RFIC Design Engineers often encounter challenges such as meeting stringent performance specifications within tight power and area constraints, managing electromagnetic interference, and ensuring the design complies with fabrication process limitations. Additionally, integrating RF circuits with digital and analog components on the same chip can introduce complex noise coupling issues that must be mitigated through careful layout and simulation. Close collaboration with layout engineers, validation teams, and system architects is essential to address these challenges and to deliver robust, manufacturable designs on schedule.

What are the key skills and qualifications needed to thrive as a Senior RFIC Design Engineer, and why are they important?

To thrive as a Senior RFIC Design Engineer, you need deep expertise in RF circuit theory, semiconductor physics, and hands-on experience with analog/mixed-signal IC design, usually backed by a master's or PhD in electrical engineering. Mastery of industry-standard EDA tools (such as Cadence Virtuoso, Spectre, and EM simulators) and familiarity with relevant process design kits (PDKs) and lab measurement equipment is essential. Strong analytical thinking, teamwork, and effective communication set outstanding engineers apart. These skills ensure the development of high-performance, reliable RFICs through efficient problem-solving, collaboration, and precise execution in a fast-evolving field.

What is the difference between Senior Rfic Design Engineer vs RFIC Design Engineer?

AspectSenior Rfic Design EngineerRFIC Design Engineer
CredentialsBachelor's or Master's in Electrical Engineering, specialized in RFIC designBachelor's or Master's in Electrical Engineering, with RF focus
Work EnvironmentDesign teams, R&D labs, semiconductor companiesDesign teams, semiconductor firms, integrated circuit companies
Industry UsageUsed in advanced wireless, telecom, and satellite systemsUsed in wireless communication, mobile devices, and RF components

The main difference is that a Senior Rfic Design Engineer typically has more experience and leadership responsibilities in RFIC design projects, whereas an RFIC Design Engineer may be earlier in their career or at a non-senior level. Both roles focus on RF integrated circuit design but differ in seniority and scope of responsibilities.

What are the most commonly searched types of Rfic Design Engineer jobs in South Carolina?

The most popular types of Rfic Design Engineer jobs in South Carolina are:

What cities in South Carolina are hiring for Senior Rfic Design Engineer jobs?

Cities in South Carolina with the most Senior Rfic Design Engineer job openings:

Design Engineer 1

Anderson, SC • On-site

Full-time

Re-posted 11 hours ago


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Job description

Job Description:
Design Engineer I - New Product Development Engineering (OPE)
The Design Engineer I supports the design and development of outdoor power equipment (OPE) systems and components. Working under the guidance of senior engineers and engineering leadership, this role contributes to product development from concept through production by creating detailed designs, supporting prototype builds, conducting testing, and assisting with product validation. The Design Engineer I develops technical skills while collaborating with cross-functional teams to deliver high-quality, manufacturable products.
Key Job Functions & Responsibilities
Technical Design Ownership
  • Supports the design and development for assigned components, sub-assemblies, or systems from concept, layout, and detailed CAD through validation and production release.
  • Develops and maintains 3D CAD models, 2D drawings, GD&T, tolerance stacks, and specifications to ensure functional performance, regulatory compliance, durability, safety, and manufacturability.
  • Ability to analyze problems and provide design trade-off analyses (performance, cost, weight, manufacturability, reliability) and documents rationale for design decisions.
  • Applies structured problem-solving methods to resolve design issues, field failures, and manufacturing concerns.
  • Learns and applies sound engineering principles while developing technical judgment.

Design for Manufacturing, Cost, and Quality
  • Designs components with consideration for manufacturability, assembly, quality, and cost.
  • Works with manufacturing engineering, sourcing, quality, and suppliers to understand the processes and design constraints.
  • Supports value engineering and continuous improvement initiatives.
  • Ensures designs comply with internal standards, regulatory requirements, and applicable UL / ANSI / CSA / ISO expectations.

Verification & Validation
  • Supports DFMEA inputs, design risks, and mitigation strategies for designs.
  • Supports the development and execution of design verification plans including tolerance validation, stress analysis, durability testing, environmental testing, and abuse testing.
  • Uses data-driven test results to refine designs and confirm requirements are met with appropriate margin.
  • Supporting engineering change documentation and product release activities.

Cross-Functional Collaboration
  • Collaborates with Product Management to understand customer requirements and product objectives.
  • Supports Manufacturing Engineering during pilot builds, PPAP, and ramp-up by resolving build issues and incorporating feedback into design revisions.
  • Communicates effectively with global cross-functional teams

Required Qualifications
  • Bachelor of Science in Mechanical Engineering or related engineering discipline.
  • 0-3 years of design experience in consumer, industrial, or electromechanical products (internship and co-op experience considered).
  • Experience with 3D CAD (Creo / SolidWorks / NX or equivalent).
  • Basic understanding of engineering drawings and GD&T.
  • Effective written and verbal communication skills.
  • Strong analytical and problem-solving skills.
  • Comfortable working in a fast-paced, results-driven product development environment.

Preferred Qualifications
  • Internship or co-op experience in product development or manufacturing.
  • Familiarity with injection molding, sheet metal, die casting, machining, or other manufacturing processes.
  • Hands-on mechanical aptitude.
  • Experience with prototype assembly and product testing.

Travel
  • Up to 25% travel (International and Domestic)

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