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Work From Home Rf Power Amplifier Design Engineer Jobs in Arizona

WORK FROM HOME

Gilbert, AZ · On-site +1

$300 - $500/wk

We are looking for individuals interested in working from home, remotely, as life insurance sales representatives. We are hiring coachable individuals comfortable with a 100% commission based income ...

WORK FROM HOME

Phoenix, AZ · On-site +1

$300 - $500/wk

We are looking for individuals interested in working from home, remotely, as life insurance sales representatives. We are hiring coachable individuals comfortable with a 100% commission based income ...

Staff Analog Design Engineer

Chandler, AZ · On-site +1

$198K/yr

We are seeking a Staff Analog Design Engineer to drive the design of complex Power Management ICs ... work option and Employee Resource Groups, will help you excel from the first day. Are you ready to ...

Staff Analog Design Engineer

Chandler, AZ · On-site +1

$198K/yr

We are seeking a Staff Analog Design Engineer to drive the design of complex Power Management ICs ... work option and Employee Resource Groups, will help you excel from the first day. Are you ready to ...

Principal Digital Design Engineer

Chandler, AZ · On-site +1

$200K - $250K/yr

Drive design tradeoffs across performance, power, area (PPA), and testability * RTL Development ... Work on scan insertion, test architecture, and coverage closure * Perform, review and debug logic ...

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Work From Home Rf Power Amplifier Design Engineer information

See Arizona salary details

$67.6K

$121.1K

$158K

How much do work from home rf power amplifier design engineer jobs pay per year?

As of Aug 4, 2026, the average yearly pay for work from home rf power amplifier design engineer in Arizona is $121,143.00, according to ZipRecruiter salary data. Most workers in this role earn between $102,500.00 and $136,100.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a work from home RF power amplifier design engineer?

To thrive as a Work From Home RF Power Amplifier Design Engineer, you need a solid background in electrical engineering, expertise in RF circuit design, and experience with power amplifier architectures, typically supported by a relevant degree. Proficiency in simulation tools like ADS or HFSS, PCB layout software, and measurement equipment such as network analyzers is crucial, along with familiarity with industry standards and certifications. Strong problem-solving skills, attention to detail, and effective remote communication abilities set top candidates apart in this role. These competencies ensure the delivery of high-performance, reliable RF solutions while collaborating effectively with distributed teams.

What does a work from home RF power amplifier design engineer do?

A Work From Home RF Power Amplifier Design Engineer is responsible for designing, testing, and optimizing radio frequency (RF) power amplifiers used in wireless communication systems. They work remotely to create amplifier circuits and layouts, evaluate performance, and ensure the designs meet required specifications. Their role often involves using simulation software, collaborating with teams virtually, and troubleshooting issues with prototypes to achieve efficient and reliable RF amplification.

What are some unique challenges of designing RF power amplifiers while working remotely, and how can they be addressed?

Working from home as an RF Power Amplifier Design Engineer presents unique challenges, such as limited access to specialized lab equipment and difficulties in real-time hardware debugging. To address these, many companies provide remote access to simulation tools, facilitate scheduled lab access, or ship hardware prototypes for home testing when feasible. Effective communication with cross-functional teams—such as PCB layout designers, test engineers, and project managers—is also essential, often supported by collaborative platforms and regular virtual meetings. By leveraging these resources, remote engineers can remain productive and maintain high design standards.
What job categories do people searching Work From Home Rf Power Amplifier Design Engineer jobs in Arizona look for? The top searched job categories for Work From Home Rf Power Amplifier Design Engineer jobs in Arizona are:
What cities in Arizona are hiring for Work From Home Rf Power Amplifier Design Engineer jobs? Cities in Arizona with the most Work From Home Rf Power Amplifier Design Engineer job openings:
Infographic showing various Work From Home Rf Power Amplifier Design Engineer job openings in Arizona as of July 2026, with employment types broken down into 74% Full Time, and 26% Contract. Highlights an 46% In-person, and 54% Remote job distribution, with an average salary of $121,143 per year, or $58.2 per hour.

Mechanical Design Engineer - Test Systems

AVTC Group

Tucson, AZ • On-site, Remote

Full-time

Medical, Dental, Vision, Retirement, PTO

Re-posted 2 days ago


Job description

All Qualified candidates will be responded to in 24 hours or less
Ability to obtain and maintain a Secret Security Clearance
Employment type: Full Time W-2 or Contract
Rate: open to Negotiation
Benefits: including Health, Dental Vision, PTO, Holidays, 401K,etc.
Mechanical Design Engineer - Test Systems
Location: Tucson, AZ
Work Type: Onsite
Clearance: U.S. Citizenship required; Secret clearance required or obtainable
Role Summary
We are seeking a Mechanical Design Engineer to support the design and development of mechanical test systems, fixtures, assemblies, and hardware used in aerospace and defense environments.
This role focuses on 3D CAD design, drawing package development, mechanical packaging, environmental test support, and hardware integration for production and engineering test systems.
Key Responsibilities
  • Design and develop mechanical test systems, fixtures, assemblies, and support hardware.
  • Create and maintain 3D CAD models, 2D drawings, and mechanical drawing packages.
  • Use Creo / ProE or similar CAD tools to support mechanical design and documentation.
  • Apply GD&T, tolerance analysis, and mechanical design principles to support manufacturability and performance.
  • Support test systems used in vibration, thermal, hydraulic, RF, electro-optical, and electro-mechanical environments.
  • Integrate and validate mechanical test hardware against accuracy, reliability, and performance requirements.
  • Troubleshoot design, fit, function, reliability, and production-support issues.
  • Recommend design updates to improve performance, reliability, manufacturability, and maintainability.
  • Work with electrical, systems, manufacturing, and test teams on hardware integration.
  • Evaluate production installations and support modifications to resolve equipment or hardware issues.
  • Support design reviews, documentation updates, configuration changes, and release activities.

Required Qualifications
  • Bachelor's degree in Mechanical Engineering or related STEM field.
  • 2+ years of mechanical design, product design, test equipment, or engineering support experience.
  • Experience with 3D CAD tools; Creo / ProE preferred.
  • Experience creating mechanical drawings, assemblies, and drawing packages.
  • Knowledge of GD&T, tolerance analysis, and mechanical design fundamentals.
  • Ability to support hardware design from concept through integration, validation, and production support.
  • Familiarity with manufacturability, fit/function, and design documentation requirements.
  • U.S. Citizenship required.
  • Ability to obtain and maintain a Secret security clearance.

Preferred Qualifications
  • Active Secret clearance.
  • Experience with mechanical test equipment, fixtures, tooling, or production-support hardware.
  • Experience with mechanical packaging, electronic packaging, chassis design, enclosures, or equipment layouts.
  • Familiarity with configuration management tools such as Windchill, cPDM, or similar.
  • Exposure to thermal, structural, vibration, shock, or environmental analysis.
  • Experience supporting environmental test systems, including vibration, shock, thermal, RF, or electro-mechanical testing.
  • Background in aerospace, defense, missile, avionics, or other high-reliability systems.
  • Exposure to model-based design, model-based engineering, or systems engineering concepts.
  • Experience working with manufacturing, production, test, or assembly teams.

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