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Rf Drive Test Jobs in Texas (NOW HIRING)

Handset test experience with 5G/4G operators or with commercial handset OEM's 3.Understanding of ... Knowlege and exposure in one or more of the following areas - Telecommunication concepts and RF ...

Interface with Engineering, Quality, and other supporting functions to drive defect resolution to ... using RF measurement and test equipment including power meters, signal generators, spectrum ...

Interface with Engineering, Quality, and other supporting functions to drive defect resolution to ... using RF measurement and test equipment including power meters, signal generators, spectrum ...

Drive issues to root cause, implement corrective actions, and ensure full documentation in Jira * Assemble, maintain, and repair RF test hardware (load boards, test fixtures, test sockets, RF ...

Analyze drive test and walk test data using industry-standard tools. * Identify and resolve ... Knowledge of RF propagation, coverage planning, capacity planning, and interference analysis.

RF Engineer III

Plano, TX · On-site

$110 - $170/hr

Advanced proficiency with RF planning tools and drive test analysis tools Join Our Veteran-Friendly Team: Are you a veteran or a veteran spouse with expertise in telecommunications? Join our team at ...

Advanced proficiency with RF planning tools and drive test analysis tools Join Our Veteran-Friendly Team: Are you a veteran or a veteran spouse with expertise in telecommunications? Join our team at ...

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Rf Drive Test information

See Texas salary details

$11

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How much do rf drive test jobs pay per hour?

As of Aug 24, 2026, the average hourly pay for rf drive test in Texas is $30.34, according to ZipRecruiter salary data. Most workers in this role earn between $23.51 and $35.62 per hour, depending on experience, location, and employer.

What is an RF Drive Test engineer?

RF Drive Test Engineers are professionals who perform field tests on mobile networks to measure and optimize their performance. They use specialized equipment to collect data on signal strength, quality, and coverage while driving or walking through specific areas. Their work helps identify issues like dropped calls, poor coverage, or interference, enabling network providers to improve service quality. RF Drive Test Engineers play a critical role in the rollout and optimization of wireless communication networks.

What are the key skills and qualifications needed to thrive as an RF Drive Test engineer?

To thrive as an RF Drive Test Engineer, you need a solid understanding of wireless communication principles, RF propagation, and a degree in telecommunications or related fields. Proficiency with drive test tools such as TEMS, Nemo, or Agilent, as well as data analysis software, is typically required. Strong analytical skills, attention to detail, and effective communication are valuable soft skills in this role. These abilities ensure accurate network performance assessments and contribute to optimizing wireless coverage and quality.

What are some common challenges faced by RF Drive Test engineers during fieldwork, and how can they be managed?

RF Drive Test engineers often encounter challenges such as unpredictable weather conditions, difficult terrain, and varying traffic patterns, which can impact data collection quality. Managing these challenges involves thorough route planning, using reliable and well-calibrated test equipment, and maintaining clear communication with the network optimization team. Additionally, documenting anomalies in real-time and being adaptable to on-the-fly route or schedule changes are crucial for accurate network performance assessments.

What is the difference between Rf Drive Test vs Rf Field Engineer?

AspectRf Drive TestRf Field Engineer
CertificationsTypically includes RF, telecom, or wireless certificationsSimilar certifications, often with additional specialized training
Work EnvironmentPrimarily outdoors, driving to test locationsIndoor and outdoor, including site visits and equipment setup
Job FocusConducting drive tests to measure network performanceDesign, install, and troubleshoot RF systems

Rf Drive Test and Rf Field Engineer roles share certifications and industry usage but differ mainly in work environment and focus. Rf Drive Test involves outdoor driving to assess network coverage, while Rf Field Engineers handle broader RF system tasks, including installation and troubleshooting.

What are popular job titles related to Rf Drive Test jobs in Texas?

For Rf Drive Test jobs in Texas, the most frequently searched job titles are:

What job categories do people searching Rf Drive Test jobs in Texas look for?

The top searched job categories for Rf Drive Test jobs in Texas are:

What cities in Texas are hiring for Rf Drive Test jobs?

Cities in Texas with the most Rf Drive Test job openings:

Infographic showing various Rf Drive Test job openings in Texas as of August 2026, with employment types broken down into 94% Full Time, and 6% Contract. Highlights an 100% In-person job distribution, with an average salary of $63,099 per year, or $30.3 per hour.

Senior/Principal RF Test Engineer, Texas Institute for Electronics

Phase2 Technology

Austin, TX • On-site

$100 - $140/hr

Other

Posted 5 days ago


Job description

Senior/Principal RF Test Engineer – Texas Institute for Electronics

Location: Austin, TX

Responsibilities Senior RF Engineer
  • Develop and execute RF test plans for K-band (18-27 GHz), Ka-band (27-40 GHz), and W-band (75-110 GHz) microsystems at wafer, die, module, and system levels.
  • Perform S-parameter characterization, on-wafer probing, noise figure measurements, and power sweeps using vector network analyzers, spectrum analyzers, and signal generators.
  • Design and implement automated test sequences using Python, MATLAB, or LabVIEW to drive measurement instruments and collect production-grade data across process corners and temperature.
  • Develop de-embedding methodologies and calibration strategies for high-frequency measurements, including TRL, LRRM, and multi-line calibrations for on-wafer and package-level probing.
  • Correlate measured RF results against EM simulation models (HFSS, ADS, AWR, CST) to validate design intent and feed deviations back to the design and packaging teams.
  • Characterize passive and active RF components—including transmission lines, filters, LNAs, PAs, and T/R modules—within 3.0D heterogeneously integrated assemblies.
  • Support test infrastructure buildout, including fixture design, probe card specification, and lab setup for TIE's RF characterization capabilities.
  • Author test reports, standard operating procedures, and design-for-test guidelines to support ecosystem partners and internal engineering teams.
Principal RF Engineer
  • Define and own the RF test strategy for TIE's 3.0D heterogeneously integrated microsystems across K-band (18-27 GHz), Ka-band (27-40 GHz), and W-band (75-110 GHz), spanning wafer, die, module, and system levels.
  • Architect end-to-end test flows—from design-for-testability requirements through production screening—ensuring robust, repeatable, and scalable characterization of RF, mixed-signal, and antenna-in-package subsystems.
  • Lead development of advanced de-embedding, calibration, and measurement methodologies for novel 3DHI interconnect structures, including hybrid bonding interfaces, glass/Si interposers, and redistribution layers.
  • Drive test-to-model correlation across EM simulation (HFSS, ADS, AWR, CST) and measured data, establishing feedback loops with design, process, and packaging teams to accelerate yield learning and performance optimization.
  • Specify, procure, and commission RF test infrastructure—including probe stations, VNA configurations, automated handlers, and environmental chambers—for TIE's characterization lab buildout.
  • Establish and mentor the RF test engineering team, setting technical standards, review processes, and best practices for measurement automation, data management, and statistical analysis.
  • Engage with foundry, EDA, metrology, and defense-program partners to define and validate test enablement requirements for next-generation RF packaging technologies.
  • Author test strategies, reliability qualification plans, reference test procedures, and design-for-test guidelines that become part of TIE's Assembly Design Kit (ADK) deliverables.
Qualifications Senior RF Engineer
  • M.S. in Electrical Engineering, Microwave Engineering, Applied Physics, or a related discipline with emphasis on RF/microwave measurement and characterization.
  • 5+ years of hands‑on experience in RF/microwave testing, characterization, or validation of ICs, modules, or packaged systems operating at K‑band frequencies and above.
  • Deep working knowledge of S‑parameter measurement, VNA calibration techniques, de‑embedding, and on‑wafer probing methodologies.
  • Proficiency with RF test instruments (VNAs, spectrum analyzers, signal generators, power meters) and measurement automation using Python, MATLAB, or LabVIEW.
  • Familiarity with RF simulation tools such as Keysight ADS, Ansys HFSS, Cadence AWR, or CST Studio for test‑to‑model correlation.
  • Understanding of electromagnetic effects in advanced packaging—signal integrity, coupling, and loss across interposers, redistribution layers, and 3D stacked assemblies.
  • Ability to work cross‑functionally with design, packaging, EDA, and process teams in a fast‑paced R/D environment.
Principal RF Engineer
  • M.S. in Electrical Engineering, Microwave Engineering, Applied Physics, or a related discipline with emphasis on RF/microwave measurement, calibration science, or test methodology.
  • 10+ years of progressively responsible experience in RF/microwave test engineering, characterization, or validation—including at least 3 years in a technical leadership or principal role.
  • Expert‑level knowledge of S‑parameter characterization, advanced VNA calibration (TRL, LRRM, multi‑line), de‑embedding, and on‑wafer probing techniques at millimeter‑wave frequencies.
  • Proven ability to architect automated RF test frameworks for R/D characterization and production screening using Python, MATLAB, LabVIEW, or equivalent.
  • Deep understanding of electromagnetic effects in advanced packaging—signal integrity, coupling, loss, and thermal interactions across interposers, RDLs, and 3D stacked assemblies.
  • Strong proficiency with RF simulation tools (Keysight ADS, Ansys HFSS, Cadence AWR, CST Studio) for rigorous test‑to‑model correlation and root‑cause analysis.
  • Track record of building or scaling RF test organizations, including lab infrastructure planning, team development, and process definition.
  • Ability to influence cross‑functional roadmaps and partner with design, packaging, EDA, and program management teams in a defense‑adjacent R/D setting.
Salary Range

TIE pays industry‑competitive salaries.

Working Conditions
  • May work around standard office conditions
  • Repetitive use of a keyboard at a workstation
  • Use of manual dexterity (e.g., using a mouse)
Work Shift
  • Monday – Friday: 8am – 5pm.
Background Check

A criminal history background check will be required for finalists under consideration for this position.

Equal Opportunity Employer

The University of Texas at Austin, as an equal opportunity/affirmative action employer, complies with all applicable federal and state laws regarding nondiscrimination and affirmative action. The University is committed to a policy of equal opportunity for all persons and does not discriminate on the basis of race, color, national origin, age, marital status, sex, sexual orientation, gender identity, gender expression, disability, religion, or veteran status in employment, educational programs and activities, and admissions.

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