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Analog Hardware Engineer Jobs in Texas (NOW HIRING)

Senior Hardware Engineer

Dallas, TX · On-site

$110 - $140/hr

As a Senior Hardware Engineer in the telecommunications industry, you will lead the design ... Strong understanding of analog and digital circuit design, signal processing, and embedded systems.

Senior Hardware Engineer

Dallas, TX · On-site

$101K - $136K/yr

Senior Hardware Engineer Location: Carrollton, TX Reports To: Steve Baum Travel: 0-10% Employment ... Strong understanding of analog and digital circuit design, signal processing, and embedded systems

Hardware Engineer/ Senior Hardware Engineer

Addison, TX · On-site

$107K - $142K/yr

Hardware Engineer/ Sr. Hardware Engineer Location: 3728 Arapaho Rd Addison, TX 75001 Engagement ... Experience with hardware design including design of analog/digital circuits, PCB design and layout ...

Hardware Engineer

Houston, TX · On-site

$55 - $75/hr

Job Title: Sr. Electrical Engineer- Space Power Systems This hardware engineer role focuses on the ... Proficiency in electrical, analog, and digital circuit design related to power storage and power ...

Hardware Engineer

Houston, TX · On-site

$55 - $75/hr

Job Title: Sr. Electrical Engineer- Space Power Systems This hardware engineer role focuses on the ... Proficiency in electrical, analog, and digital circuit design related to power storage and power ...

Hardware Digital Engineer

Austin, TX · On-site

$90 - $120/hr

These circuit cards include both digital and analog circuits used to provide switching, loads and signal conditioning in a test system. The Senior Hardware Engineer will be directly responsible for ...

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Analog Hardware Engineer information

See Texas salary details

$34.9K

$127.7K

$172.9K

How much do analog hardware engineer jobs pay per year?

As of Aug 23, 2026, the average yearly pay for analog hardware engineer in Texas is $127,685.00, according to ZipRecruiter salary data. Most workers in this role earn between $99,100.00 and $149,500.00 per year, depending on experience, location, and employer.

What is an analog hardware engineer?

An Analog Hardware Engineer is a professional who designs, develops, tests, and troubleshoots analog electronic circuits and systems. These engineers work with components such as amplifiers, filters, oscillators, power supplies, and sensors, ensuring they perform reliably and efficiently within electronic devices. They play a crucial role in industries like telecommunications, consumer electronics, automotive, and medical devices, where precise analog signal processing is required. Their responsibilities often include circuit simulation, PCB layout, prototyping, and collaborating with other engineering teams to integrate analog solutions into larger systems.

What are the key skills and qualifications needed to thrive as an analog hardware engineer, and why are they important?

To thrive as an Analog Hardware Engineer, you need a solid background in electrical engineering principles, circuit design, and signal processing, typically supported by a relevant engineering degree. Familiarity with simulation tools like SPICE, PCB design software, and proficiency in using oscilloscopes and other lab instruments are essential. Strong problem-solving abilities, attention to detail, and effective teamwork and communication skills help set top performers apart. These competencies ensure accurate, reliable analog designs that meet complex technical requirements and project goals.

What are some common challenges faced by analog hardware engineers when designing circuits for high-speed or low-noise applications?

Analog Hardware Engineers often encounter challenges such as minimizing signal interference, managing power consumption, and ensuring signal integrity in high-speed or low-noise circuit designs. These tasks require careful layout planning, component selection, and precise simulation to predict real-world performance. Collaboration with PCB designers and firmware teams is essential to ensure design requirements are met and potential issues are identified early. Staying updated with the latest tools and industry best practices also helps engineers address these challenges effectively.

What is the difference between Analog Hardware Engineer vs Digital Hardware Engineer?

AspectAnalog Hardware EngineerDigital Hardware Engineer
Required CredentialsBachelor's in Electrical Engineering or related; certifications varyBachelor's in Electrical Engineering or related; certifications vary
Work EnvironmentDesigning and testing analog circuits, working in labs or R&DDesigning digital circuits, FPGA/ASIC development, testing in labs or R&D
Industry UsageConsumer electronics, telecommunications, audio equipmentComputers, embedded systems, digital communication devices

Analog Hardware Engineers focus on designing circuits that handle continuous signals, such as audio or RF signals. Digital Hardware Engineers work with discrete signals, like binary data in digital systems. Both roles require electrical engineering knowledge but differ in their focus on signal types and circuit design. They often collaborate in electronics development but serve distinct functions within the industry.

What job categories do people searching Analog Hardware Engineer jobs in Texas look for?

The top searched job categories for Analog Hardware Engineer jobs in Texas are:

What cities in Texas are hiring for Analog Hardware Engineer jobs?

Cities in Texas with the most Analog Hardware Engineer job openings:

Infographic showing various Analog Hardware Engineer job openings in Texas as of August 2026, with employment types broken down into 94% Full Time, 3% Part Time, and 3% Contract. Highlights an 85% Physical, 6% Hybrid, and 9% Remote job distribution, with an average salary of $127,685 per year, or $61.4 per hour.

Senior Hardware Engineer

Tellabs-Access-LLC

Dallas, TX • On-site

$110 - $140/hr

Other

Re-posted 2 days ago


Job description

If you are unable to complete this application due to a disability, contact this employer to ask for an accommodation or an alternative application process.

Senior Hardware Engineer

Full Time Dallas, TX, US

Senior Hardware Engineer

About the Role:

As a Senior Hardware Engineer in the telecommunications industry, you will lead the design, development, and optimization of carrier‑grade hardware platforms that support voice, data, and network access services, including legacy POTS and modern telecom infrastructure. Your expertise will drive innovation and ensure the reliability, efficiency, and manufacturability of hardware systems from concept through production. You will collaborate closely with cross‑functional teams including software engineers, product managers, and manufacturing specialists to align hardware solutions with overall product goals. This role demands a strategic thinker who can troubleshoot complex hardware issues and implement robust solutions that meet stringent quality and safety standards. Ultimately, your contributions will directly impact the performance and market success of our durable goods products, reinforcing our position as an industry leader in Texas and beyond.

Minimum Qualifications:

  • Bachelor’s degree in Electrical Engineering, Computer Engineering, or a related field.
  • At least 7 years of professional experience in hardware design and development within durable goods or a related manufacturing sector.
  • Proficiency in hardware design tools such as CAD software and circuit simulation programs.
  • Strong understanding of analog and digital circuit design, signal processing, and embedded systems.
  • Experience with hardware testing methodologies and compliance standards relevant to durable goods.

Preferred Qualifications:

  • Experience with FPGA design and programming.
  • Familiarity with manufacturing processes and supply chain considerations in durable goods production.
  • Knowledge of industry‑specific safety and quality certifications (e.g., UL, ISO standards).
  • Design knowledge of telecom industry technologies, including Plain Old Telephone Service (POTS) architecture, analog voice interfaces, subscriber line circuits, ringing and loop‑current requirements, on‑hook/off‑hook detection, impedance matching, surge/lightning protection, network infrastructure, carrier‑grade hardware requirements, and reliability considerations.

Responsibilities:

  • Design, prototype, and test hardware components and systems to meet product specifications and regulatory requirements.
  • Lead hardware development projects, managing timelines, resources, and cross‑team communication to ensure successful delivery.
  • Analyze and resolve complex hardware issues through root cause analysis and iterative testing.
  • Collaborate with manufacturing teams to optimize hardware designs for cost‑effective and scalable production.
  • Document design processes, test results, and technical specifications to maintain comprehensive project records.
  • Mentor junior engineers and provide technical guidance to foster team growth and knowledge sharing.
  • Stay current with emerging hardware technologies and industry trends to incorporate innovative solutions.

Skills:

The required skills enable the Senior Hardware Engineer to design, implement, simulate, and validate complex telecommunications hardware systems effectively, ensuring they meet functional, regulatory, reliability, and carrier‑grade requirements. Proficiency with schematic capture and hardware design tools such as Mentor Graphics Expedition xDX Designer supports accurate circuit definition and design documentation. Experience with Verilog, ModelSim SE, and FPGA development environments including Altera Quartus II, Quartus Prime, SignalTap II, Xilinx ISE, Vivado, Integrated Logic Analyzer/ChipScope, and Lattice Diamond is essential for modeling, simulation, implementation, timing analysis, debugging, and verification of programmable logic designs. Strong analytical and problem‑solving skills are applied daily to diagnose hardware and FPGA issues, validate designs through iterative testing, and develop solutions that enhance product reliability and manufacturability. Familiarity with IBM Rational ClearCase for Verilog source control further supports disciplined configuration management, design traceability, and collaboration across engineering teams. Collaboration and communication skills are critical for working with cross‑disciplinary teams and mentoring junior engineers, while preferred skills such as FPGA programming and familiarity with manufacturing processes further enhance the engineer’s ability to deliver optimized, scalable telecom hardware solutions that align with business objectives.

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