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Labview Jobs in Arizona (NOW HIRING)

Senior Electrical Engineer

Tucson, AZ

$92.50K - $120.50K/yr

LabVIEW is a plus * Experience with motor systems design and implementation * Experience with schematic and layout capture (EDA) software, e.g., Altium or OrCad * Understanding of the use and ...

Systems Test Engineer

Tempe, AZ · On-site

$176K - $264K/yr

Proficiency with programming in one or more languages such as Python, C#, Java and LabView. * Tolerance for ambiguity, or the ability to work with an incomplete set of requirements. * Strong ...

Automation Technician

Marana, AZ

$37.10K/yr

... LabVIEW, or similar to simulate processes and identify problems. • Troubleshoot industrial network systems for real-time distributed control. • Test components such as servos, motors, drives ...

Test Technician - 1st Shift

Phoenix, AZ

$21.75 - $29.75/hr

... LabVIEW • IPC certifications or similar technical credentials • Lean Manufacturing or Six Sigma training • Experience working in ISO 9001 or AS9100 environments Benefits & Perks GTI Energy ...

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Labview information

See Arizona salary details

$11

$19

$30

How much do labview jobs pay per hour?

As of Jun 1, 2026, the average hourly pay for labview in Arizona is $19.74, according to ZipRecruiter salary data. Most workers in this role earn between $16.11 and $21.49 per hour, depending on experience, location, and employer.

What is a LabVIEW job?

A LabVIEW job typically involves developing, maintaining, and troubleshooting applications using LabVIEW, a graphical programming language from National Instruments. Professionals in this role design automation, control, and data acquisition systems for industries like manufacturing, aerospace, automotive, and research. Responsibilities may include writing code, integrating hardware, analyzing data, and optimizing system performance. Strong problem-solving skills and experience with instrumentation and hardware communication are often required.

What are the key skills and qualifications needed to thrive in the Labview position, and why are they important?

To thrive as a LabVIEW Engineer, you need a solid background in electrical engineering, software development, and hands-on experience with National Instruments’ LabVIEW programming environment. Familiarity with test automation tools, data acquisition systems, and relevant LabVIEW certifications (such as CLAD or CLD) is highly beneficial. Strong problem-solving skills, attention to detail, and effective teamwork are important soft skills for this role. These competencies are crucial for designing robust automated test solutions and ensuring seamless integration in complex engineering projects.

What does a typical day look like for someone working as a LabVIEW Engineer?

A typical day for a LabVIEW Engineer often involves designing and developing test automation software using the LabVIEW environment, collaborating with hardware engineers to integrate and validate systems, and troubleshooting any issues that arise during testing. You may also write test scripts, analyze data, and coordinate with cross-functional teams to ensure test systems meet project requirements. The role offers variety, as you could be working on new product introductions, supporting ongoing production, or optimizing existing test processes. Regular communication with both technical and non-technical team members is common, making teamwork and clear documentation key aspects of the job.
What are the most commonly searched types of Labview jobs in Arizona? The most popular types of Labview jobs in Arizona are:
What cities in Arizona are hiring for Labview jobs? Cities in Arizona with the most Labview job openings:
Infographic showing various Labview job openings in Arizona as of May 2026, with employment types broken down into 92% Full Time, 5% Part Time, and 3% Contract. Highlights an 97% Physical, 2% Hybrid, and 1% Remote job distribution, with an average salary of $41,059 per year, or $19.7 per hour.
Senior Electrical Engineer

$92.50K - $120.50K/yr

Other

Posted 7 days ago


Job description

Description

Essential Duties and Responsibilities

  • Maintain good documentation practices for all aspects of work, especially with regard to experimental work.
  • Design and layout both analog and digital circuits. 
  • Analyze analog and digital circuits, including circuits containing microprocessors. 
  • Maintain familiarity with all circuit components.
  • Lead and be responsible for product investigations for customer experiences associated with, but not limited to, electrical engineering items with full supporting documentation maintained throughout. 
  • Support research and development by leading EE projects and activities, responsible for all aspects of activities without limitation to engineering-specific tasks.
  • Evaluate and understand electrical circuits used in pneumatic Driver systems.
  • Create and revise requirement and component specifications in accordance with established design- and document control procedures.
  • Develop manufacturing test processes by designing and modifying equipment for product verification and final acceptance testing while maintaining full supporting documentation throughout.
  • Assure electrical system and product quality by designing and documenting testing methods and supporting execution thereof.
  • Prepare product reports by collecting, analyzing, and summarizing information and trends associated with electrical characteristics.
  • Provide engineering information by answering questions and requests in a complete and concise manner and authoring supporting documentation as applicable. 
  • Maintain product and company reputation by ensuring compliance with applicable regulations. 
  • Maintain system and product electrical schematics and printed circuit board assembly drawings as well as all supporting and associated documentation (e.g., DCRs, BOMs, design descriptions, work instructions, etc.).
  • Maintain professional and technical knowledge by attending educational workshops, reviewing professional publications, establishing personal networks, and participating in professional societies. 
  • Actively participate in new product transfer into manufacturing and ensure the team achieves engineering and quality documentation requirements.
  • Research and champion an understanding of regulatory requirements as related to electrical engineering for SynCardia products.
  • Participate in related company projects to gain a solid working understanding of SynCardia business and quality systems.
  • All other duties as assigned.


Responsibility and Authority Affecting Quality

  • Act to prevent nonconformities relating to the product, process, and Quality System.
  • Identify and record potential problems relating to the product, process and Quality System.
  • Initiate, recommend, or provide solutions through designated channels.
  • Record and/or report all instances of customer feedback on product.


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Requirements

Skills and Abilities (Required for the Job)

  • Electrical system analysis
  • Troubleshooting analog, power, and digital circuits, to the component level
  • Effective technical information presenting
  • Excellent documentation practices
  • Excellent communication skills
  • Excellent writing skills
  • Strong organizational skills
  • Detail-orientation
  • Ability to handle multiple tasks simultaneously and to learn quickly in a dynamic environment
  • Understanding of root-cause failure investigation methods
  • Strong professional ethics and team unity
  • Experience with product validation, failure modes effects analysis, and test system architecture
  • Experience with embedded microprocessor-based systems hardware and firmware (understanding of fundamentals of assembly language, familiarity with C); LabVIEW is a plus
  • Experience with motor systems design and implementation
  • Experience with schematic and layout capture (EDA) software, e.g., Altium or OrCad
  • Understanding of the use and limitations of test equipment including oscilloscopes, multimeters, current probes, and other similar equipment
  • Able to develop diagnostic methods and tools required to improve troubleshooting and repair
  • Design of lithium-ion polymer battery subsystems is a plus
  • Experience with remote programming and control of test equipment and with development of test fixtures is a plus

Education, experience and training (Required for the Job)

  • BS in Electrical Engineering and 10+ years of industry experience, with 2+ years of medical device or other regulated industry experience -OR- 
  • BS in Electrical Engineering and MS in Engineering and 8+ years of industry experience, with 2+ years of medical device or other regulated industry experience 

Working environment

  • Work Station Area: Office, Laboratory

Special Factors in the Work Area:

  • Occasionally required to: stand, climb, balance, bend, stoop, kneel or crawl, work near moving mechanical parts, be exposed to extreme heat or cold (non-weather), or lift and/or move more than 25 pounds
  • Frequently required: to walk, sit, utilize hand and finger dexterity, talk, or hear
  • The noise level in the work environment is occasionally moderate.

Skills and Abilities

  • Electrical system analysis
  • Troubleshooting analog, power, and digital circuits, to the component level
  • Effective technical information presenting
  • Excellent documentation practices
  • Excellent communication skills
  • Excellent writing skills
  • Strong organizational skills
  • Detail-orientation
  • Ability to handle multiple tasks simultaneously and to learn quickly in a dynamic environment
  • Understanding of root-cause failure investigation methods
  • Strong professional ethics and team unity
  • Experience with product validation, failure modes effects analysis, and test system architecture
  • Experience with embedded microprocessor-based systems hardware and firmware (understanding of fundamentals of assembly language, familiarity with C); LabVIEW is a plus
  • Experience with motor systems design and implementation
  • Experience with schematic and layout capture (EDA) software, e.g., Altium or OrCad
  • Understanding of the use and limitations of test equipment including oscilloscopes, multimeters, current probes, and other similar equipment
  • Able to develop diagnostic methods and tools required to improve troubleshooting and repair
  • Design of lithium-ion polymer battery subsystems is a plus
  • Experience with remote programming and control of test equipment and with development of test fixtures is a plus