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Rf Module Design Engineer Jobs in Summerville, SC

Knowledge of standard RF principles * Familiarity with UART, I2C, RS232, RS485, USB, Ethernet ... PCB design for DC power distribution.in small, distributed (IoT) systems incorporating power ...

Senior Software Engineer

Charleston, SC · On-site

$114K - $151K/yr

In this role, you will design, develop, test, and maintain software systems and applications ... the RF/Microwave, Semiconductor & Defense and Space area. Founded in 2021, the company is ...

Knowledge of standard RF principles * Familiarity with UART, I2C, RS232, RS485, USB, Ethernet ... PCB design for DC power distribution.in small, distributed (IoT) systems incorporating power ...

Knowledge of standard RF principles * Familiarity with UART, I2C, RS232, RS485, USB, Ethernet ... PCB design for DC power distribution.in small, distributed (IoT) systems incorporating power ...

Knowledge of standard RF principles * Familiarity with UART, I2C, RS232, RS485, USB, Ethernet ... PCB design for DC power distribution.in small, distributed (IoT) systems incorporating power ...

Knowledge of standard RF principles * Familiarity with UART, I2C, RS232, RS485, USB, Ethernet ... PCB design for DC power distribution.in small, distributed (IoT) systems incorporating power ...

... modules. * Performs moderate to complex civil design tasks while delegating more routine tasks to ... B.S. or M.S. Engineering Certification/Licensure * Professional Engineer (P.E.) License ...

Showing results 21-40

Rf Module Design Engineer information

See Summerville, SC salary details

$65K

$116.6K

$152.1K

How much do rf module design engineer jobs pay per year?

As of Aug 11, 2026, the average yearly pay for rf module design engineer in Summerville, SC is $116,622.00, according to ZipRecruiter salary data. Most workers in this role earn between $98,700.00 and $131,000.00 per year, depending on experience, location, and employer.

What does an RF module design engineer do?

An RF Module Design Engineer specializes in designing, developing, and testing radio frequency (RF) modules used in a variety of wireless communication devices. They are responsible for creating circuit layouts, selecting components, and ensuring the modules meet performance, reliability, and regulatory standards. Their work often involves simulation, prototyping, and troubleshooting to optimize signal integrity and minimize interference. RF Module Design Engineers collaborate closely with hardware, software, and testing teams to integrate their modules into larger systems. This role is essential in industries such as telecommunications, aerospace, and consumer electronics.

What is the difference between Rf Module Design Engineer vs RF System Engineer?

AspectRf Module Design EngineerRF System Engineer
CredentialsBachelor's or Master's in Electrical Engineering, RF certificationsBachelor's or Master's in Electrical or RF Engineering, RF certifications
Work EnvironmentDesign labs, R&D departments, manufacturing facilitiesSystem integration labs, testing environments, R&D teams
Industry UsageWireless device manufacturing, telecom, consumer electronicsWireless networks, telecom infrastructure, system-level design

Both roles require strong RF engineering knowledge and similar educational backgrounds. The Rf Module Design Engineer focuses on designing and developing RF modules, while the RF System Engineer works on integrating RF components into complete systems. Understanding these differences helps in choosing the right career path or job search focus.

What are the key skills and qualifications needed to thrive as an RF module design engineer, and why are they important?

To thrive as an RF Module Design Engineer, you need strong expertise in RF circuit design, electromagnetic theory, and a relevant engineering degree, such as electrical or electronics engineering. Familiarity with tools like ADS, HFSS, and network analyzers, plus knowledge of industry standards and certifications such as IPC, is highly valued. Attention to detail, problem-solving abilities, and effective communication are crucial soft skills for collaborating with cross-functional teams and troubleshooting complex issues. These competencies ensure the development of high-performance, reliable RF modules that meet stringent industry requirements.

What are some common challenges faced by an RF module design engineer during the product development cycle?

RF Module Design Engineers often encounter challenges such as minimizing interference and signal loss, ensuring compliance with international wireless standards, and integrating modules into compact device enclosures without sacrificing performance. Balancing trade-offs between power consumption, cost, and performance is also a frequent consideration. Collaboration with cross-functional teams, such as PCB layout engineers and system architects, is essential to address these challenges and deliver robust, manufacturable designs.
What are popular job titles related to Rf Module Design Engineer jobs in Summerville, SC? For Rf Module Design Engineer jobs in Summerville, SC, the most frequently searched job titles are:
Infographic showing various Rf Module Design Engineer job openings in Summerville, SC as of August 2026, with employment types broken down into 87% Full Time, 8% Part Time, and 5% Contract. Highlights an 85% Physical, 4% Hybrid, and 11% Remote job distribution, with an average salary of $116,622 per year, or $56.1 per hour.

Electrical Battery Engineer III

UEC Electronic

Hanahan, SC

Full-time

Re-posted 2 hours ago


Job description

Description

Position Summary


The Electrical Battery Engineer III is a senior individual contributor responsible for the electrical design, analysis, and validation of battery cells, modules, and pack-level systems used in high-reliability applications (aerospace, defense, and/or industrial energy storage). This role owns technical decisions across the product lifecycle - from concept through qualification and production support - and serves as a technical resource for less-experienced engineers.


Key Responsibilities

  • Lead electrical design of battery modules and packs, including cell selection, series/parallel configuration, protection circuitry, and BMS (Battery Management System) integration
  • Perform electrical analysis: voltage/current distribution, thermal-electrical interactions, impedance, state-of-charge/state-of-health estimation, and failure mode analysis (FMEA)
  • Develop and execute test plans for electrical performance, safety, and environmental qualification (e.g., abuse testing, overcharge/short circuit, vibration, thermal cycling) in accordance with standards such as MIL-PRF, DO-311, UN 38.3, or UL 1642/2580
  • Support NDAA/DFARS compliance efforts, including sourcing traceability for cells and components (relevant to defense-focused battery programs)
  • Collaborate with mechanical, thermal, and systems engineering teams to ensure integrated pack design meets performance, safety, and regulatory requirements
  • Create and maintain engineering documentation: schematics, wiring diagrams, test reports, and design verification records
  • Support root cause investigations for field or production issues and implement corrective actions
  • Interface with customers and suppliers on technical requirements, design reviews, and qualification data
  • Mentor junior engineers (Engineer I/II) and review their design and test work
  • Support new product introduction (NPI) and transition of designs from prototype to production



Requirements

Required Qualifications

  • Bachelor's degree in Electrical Engineering, Electrochemical Engineering, or related  Field (Master's preferred)
  • 5-8+ years of experience in battery/energy storage system design, preferably in aerospace, defense, EV, or industrial applications
  • Strong working knowledge of lithium-ion and/or other advanced cell chemistries
  • Experience with BMS design/integration, protection circuit design, and electrical safety analysis
  • Proficiency with circuit development,  simulation and analysis tools (e.g., Altium Designer, MATLAB/Simulink)
  • Familiarity with relevant industry/military standards (MIL-STD-810, DO-160, UN 38.3, UL, IEC 62133)
  • Strong documentation and technical writing skills
  • Ability to obtain/maintain a security clearance or meet ITAR/EAR requirements, if applicable

Preferred Qualifications

  • Experience with NDAA-compliant battery programs and Chinese-cell-component exclusion requirements
  • Hands-on experience with battery pack manufacturing and laser welding processes
  • Exposure to both high-voltage and low-voltage battery system architectures
  • Six Sigma / Lean manufacturing familiarity
  • Prior experience in a regulated or defense-contracting environment (ITAR/EAR, DFARS)

Physical/Work Environment

  • Primarily office/lab environment with occasional time on the production floor
  • Occasional travel for customer meetings, supplier audits, or qualification testing