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Electrical Communication Engineering Jobs in Texas

Bachelor's degree in Electrical Engineering and/or Electrical Engineering Technology. * 5-7 years ... Communications Flexibility Builds Effective Teams Change Leadership Change Management Cost ...

Sr Electrical Engineer

Plano, TX

$102K - $134K/yr

Adhere to Sutton Engineering, LLC core values and standards. * Participates in project and client ... Communicate with equipment vendors for selecting equipment. * Documents project specifications.

Manager, Electrical Engineering

Carrollton, TX · On-site

$118K - $152K/yr

Bachelor's degree in Electrical Engineering and/or Electrical Engineering Technology. * 5-7 years ... Communications Flexibility Builds Effective Teams Change Leadership Change Management Cost ...

Learn about building power, lighting, and communications systems * Gain experience in the ... Must be pursuing an electrical engineering degree or an architectural engineering degree with an ...

Buildings Electrical Engineering Intern

Dallas, TX · On-site

$18.75 - $24.75/hr

Learn about building power, lighting, and communications systems * Gain experience in the ... Must be pursuing an electrical engineering degree or an architectural engineering degree with an ...

Showing results 41-60

Electrical Communication Engineering information

See Texas salary details

$47K

$103.5K

$156.5K

How much do electrical communication engineering jobs pay per year?

As of Aug 7, 2026, the average yearly pay for electrical communication engineering in Texas is $103,498.00, according to ZipRecruiter salary data. Most workers in this role earn between $77,300.00 and $123,000.00 per year, depending on experience, location, and employer.

What does an electrical communication engineer do?

An electrical communication engineer designs, develops, and maintains systems for transmitting information, such as telecommunications, data networks, and signal processing equipment. They work with tools like circuit design software and may require knowledge of protocols, standards, and certifications to ensure reliable communication systems in various environments.

What is the difference between Electrical Communication Engineering vs Electrical Power Engineering?

AspectElectrical Communication EngineeringElectrical Power Engineering
Required CredentialsBachelor's or Master's in Electrical Communication Engineering; often includes certifications in communication systemsBachelor's or Master's in Electrical Power Engineering; certifications in power systems may be common
Work EnvironmentTelecommunication companies, research labs, network providersPower plants, utility companies, renewable energy firms
Industry UsageDesign and maintenance of communication systems, signal processingGeneration, transmission, and distribution of electrical power

Electrical Communication Engineering focuses on communication systems, signal processing, and networking, while Electrical Power Engineering centers on power generation and distribution. Both fields share foundational electrical principles but serve different industry needs and career paths.

What are some common challenges faced by electrical communication engineers when working on large-scale projects?

Electrical Communication Engineers often encounter challenges such as integrating new technologies with legacy systems, ensuring signal integrity over long distances, and managing cross-disciplinary collaboration with software and hardware teams. Working on large-scale projects also requires meticulous planning to address regulatory compliance, system scalability, and security concerns. Effective communication with stakeholders and adaptability to rapidly evolving standards are essential for overcoming these challenges and delivering successful project outcomes.

What is electrical communication engineering?

Electrical Communication Engineering is a specialized branch of engineering that focuses on the design, development, and maintenance of communication systems and networks. This includes technologies such as wireless communication, fiber optics, satellite systems, and data transmission. Professionals in this field work on both the hardware and software aspects of transmitting information efficiently and securely. Electrical Communication Engineering is vital in enabling modern communication infrastructure, including the internet, mobile networks, and broadcasting systems.

What are the key skills and qualifications needed to thrive as an electrical communication engineer?

To thrive as an Electrical Communication Engineer, you need a strong background in circuit design, digital and analog communications, and signal processing, typically supported by a degree in electrical or electronics engineering. Familiarity with simulation tools like MATLAB, CAD software, and industry standards such as IEEE protocols is often required, along with relevant certifications like Cisco’s CCNA or similar. Strong problem-solving abilities, teamwork, and effective communication are critical soft skills for collaborating on complex projects and conveying technical information. These skills and qualities ensure the engineer can design reliable communication systems, troubleshoot issues efficiently, and contribute to innovative solutions in a rapidly evolving field.
What job categories do people searching Electrical Communication Engineering jobs in Texas look for? The top searched job categories for Electrical Communication Engineering jobs in Texas are:
What cities in Texas are hiring for Electrical Communication Engineering jobs? Cities in Texas with the most Electrical Communication Engineering job openings:
Infographic showing various Electrical Communication Engineering job openings in Texas as of August 2026, with employment types broken down into 1% As Needed, 77% Full Time, 18% Part Time, and 4% Contract. Highlights an 86% Physical, 2% Hybrid, and 12% Remote job distribution, with an average salary of $103,498 per year, or $49.8 per hour.

Electrical Engineering Specialist

Lynntech, Inc.

College Station, TX • On-site

Full-time

Posted 9 days ago


Job description

Electrical Engineer - Embedded Systems and Product Development
Lynntech is seeking an electrical engineer to support the development of electrical and embedded systems for prototype products in the defense, aerospace, and medical markets. A successful candidate will have the opportunity to work across the product development lifecycle, from early-stage technology proof-of-concept through prototype development and testing to qualification of production-ready designs. The engineer will contribute to multi-faceted electrical solutions through embedded firmware/software development, custom circuit board design, and integration of custom and commercial components.
The engineer will execute technical work as part of multidisciplinary project teams and will have opportunities to develop leadership skills through increasing technical responsibility, collaboration with customers and teammates, and participation in proposal development.
Job Description
At Lynntech, engineering is both theoretical and experimental. Our engineers split their time between developing detailed prototype designs and validating those designs in the lab. Engineering projects involve a wide variety of technologies at different stages in the product life cycle, from breadboard proof-of-concepts to minimum viable products. Our electronics engineers are commonly engaged in the following technical activities:
  • Designing electrical system architectures and integrating custom electronics with commercial off-the-shelf components, such as power supplies, motor drivers, sensors, actuators, communication devices, connectors, and industrial control hardware.
  • Developing system wiring diagrams, cable and wire-harness designs, interface-control documentation, and power-distribution architectures
  • Designing and modeling of schematics for both analog and digital circuits
  • Designing and testing custom printed circuit boards for analog and digital applications
  • Creating custom firmware implementations on a variety of platforms for implementation into advanced test fixtures, prototype designs, and marketable products
  • Maturing prototype electrical systems into reproducible and supportable product designs through component derating, tolerance analysis, design-for-manufacture and design-for-test practices, environmental considerations, and verification against system requirements

The engineer will also participate in activities that support technology advancement and transition:
  • Working with project leads, customers, end users, business-development personnel, and manufacturing partners to translate operational needs into technical requirements
  • Collaborating with scientists and engineers to support grant proposals for the exploration and application of new technologies and the continued development of core technologies
  • Participating in early-stage project research and contributing to the development of system requirements, architecture, and interfaces for envisioned prototypes
  • Contributing to and executing test plans to evaluate prototype performance against system requirements
  • Designing and fabricating test fixtures to support evaluation of prototypes, from breadboard systems to minimum viable products
  • Participating in system design verification and validation activities
  • Contributing to technical writing efforts for customer reports and project documentation
  • Supporting technology transition activities, including technical maturation, cost and manufacturability assessments, qualification testing, field demonstrations, and documenting designs for transfer to internal or external manufacturing organizations

Working as an electrical engineer at Lynntech offers many potential long-term career paths. Engineers can advance as technical experts in their discipline, develop expertise in one or more technology areas, and grow into project, personnel, or other leadership roles as their experience and responsibilities increase. Engineers can shape their career growth according to their interests, proficiency, and ability to add value to the engineering team and the organization.
Basic Qualifications
  • Bachelor's Degree in Electrical Engineering, Electronics Engineering, Computer Engineering, or a related field with at least 2 years of relevant engineering experience (or a Master's Degree in a related field)
  • Strong fundamentals in electrical, electronics, and software engineering, with the ability to develop designs and contribute constructively to peer design reviews
  • Experience contributing to system or subsystem designs in areas such as system control, power distribution, or embedded systems based on product requirements and technology constraints
  • Ability to independently execute assigned engineering tasks, seek guidance when appropriate, and contribute to design decisions in a collaborative environment
  • Strong technical writing, speaking, and presentation skills
  • Ability to work in a multi-disciplinary environment involving close interaction with other engineers within the department as well as other scientists in the company
  • Must be a US Citizen, or Permanent Resident, to meet project contract requirements

Preferred Skills and Experience
  • Bachelor's Degree in Electrical Engineering, Electronics Engineering, Computer Engineering, or a related field with 3-4 years of relevant engineering experience (or a Master's Degree with 1-2 years of industry experience), preferably in a technology-development-oriented industrial setting
  • Demonstrated application of engineering principles, concepts, theory, and practice, with the ability to organize and conduct assigned tasks to meet established deadlines or milestones
  • Basic knowledge of systems engineering and the ability to work with teams across the technology-to-product-development lifecycle, including scientific personnel, mechanical engineers, and machining and fabrication personnel
  • Experience with signal processing
  • Understanding of machine learning algorithms
  • Experience with electronics engineering design, embedded microcontroller programming, FPGA development, or similar relevant education and experience
  • Knowledge and experience in PCB design methods and tools such as Altium Designer
  • Knowledge of various communication protocols such as I2C, SPI, serial, USB, CAN, and TCP/IP
  • Programming experience in C/C++, C#, Java, Kotlin, Python, VHDL, or related languages
  • SPICE modeling applied to analog and digital circuit development
  • Knowledge and experience in power supply design, embedded processor solutions, filtering, and data acquisition development (A/D and D/A conversion)
  • Hardware development (schematics, layout, test) (analog and digital design)
  • Firmware development (microcontrollers such as the PIC32, ARM, or MSP430)
  • Experience in troubleshooting electrical and electromechanical systems
  • Working knowledge of general constraints with mechanical and software development, to be able to work with team members with these functionalities
  • Experience contributing to technical writing

Interested candidates are encouraged to apply online at www.lynntech.com. Feel free to include a cover letter or expanded resume to outline how you fit this position.
Lynntech is an Equal Opportunity Emplyer.