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Solid State Physics Jobs in Wisconsin (NOW HIRING)

WI · On-site

$110 - $140/hr

... applied physics, electrical engineering, physics, materials science, chemistry, chemical ... of solid-state devices. 🔍 ATS Optimization Keywords Below are skills and terms extracted ...

Electrical Engineer II

La Crosse, WI · On-site

$85 - $119/hr

... solid state starters and wye-delta starters. This position will generate unit electrical designs ... Physics and at least 2-years of relevant electrical engineering work experience is required.

Electrical Engineer I

La Crosse, WI · On-site

$72.93 - $101.57/hr

... solid state starters, and wye-delta starters. This position will generate unit electrical designs ... or Engineering Physics is required.### **Key Competencies:*** ### Ability to effectively ...

... solid state starters and wye-delta starters.This position will generate unit electrical designs ... Bachelor's Degree in Electrical Engineering/Technology or Engineering Physics and at least 2-years ...

... solid state starters, and wye-delta starters. This position will generate unit electrical designs ... Bachelor's Degree in Electrical Engineering/Technology or Engineering Physics is required. Key ...

WI · On-site

$184 - $287.50/hr

Bachelor's degree or equivalent experience in Computer Science, Mathematics, Engineering, Physics ... Solid grasp of how HPC and AI factory systems fit together end to end, from network fabric through ...

WI · On-site

$152 - $287.50/hr

... Science, Applied Mathematics, Physics, or related experience (or equivalent experience ... state estimation, contingency and stability analysis, load and renewable forecasting, and grid ...

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Solid State Physics information

What is solid state physics?

A Solid State Physics job involves studying the physical properties of solid materials, such as semiconductors, metals, and insulators. Professionals in this field work in research, development, and application of materials for electronics, energy storage, and quantum technologies. They may be employed in academia, industry, or government labs, using theoretical and experimental techniques to understand and manipulate material properties.

What are the typical daily responsibilities of someone working in solid state physics?

As a solid state physicist, your daily responsibilities often include designing and conducting experiments to investigate material properties, analyzing experimental or simulation data, and preparing research findings for publication or presentation. You may work closely with engineers, materials scientists, and other physicists to develop new materials or electronic devices. Regular tasks also involve maintaining and calibrating complex laboratory equipment, writing grant proposals, and participating in research meetings. Collaboration and communication across interdisciplinary teams are key aspects of the role, and you’ll often engage with both academic and industrial partners depending on your work environment.

What are the key skills and qualifications needed to thrive in solid state physics, and why are they important?

To thrive in Solid State Physics, you need a strong background in physics, mathematics, and materials science, usually with an advanced degree (Master's or PhD) in physics or a related field. Expertise with laboratory instrumentation, data analysis software (such as MATLAB or LabVIEW), and experience in simulation tools are highly valued, along with published research or relevant industry certifications. Strong analytical thinking, attention to detail, problem-solving abilities, and effective communication are essential soft skills. These qualifications enable high-quality research, innovation, and clear collaboration within multidisciplinary scientific teams.

What is the scope of solid state physics?

Solid state physics is a branch of condensed matter physics that studies the properties and behavior of solid materials, including their electronic, magnetic, and structural characteristics. It underpins the development of electronic devices, semiconductors, and nanomaterials, making it essential for careers in research, materials science, and electronics engineering. Professionals in this field often work with techniques like microscopy, spectroscopy, and computational modeling.

What jobs can you get in solid state physics?

Jobs in solid state physics include research scientist, materials scientist, and condensed matter physicist, often requiring a Ph.D. or master's degree. These roles involve studying and developing new materials, semiconductors, and electronic devices, frequently utilizing tools like microscopy and spectroscopy. Employment can be found in academia, government labs, and industry sectors such as electronics, nanotechnology, and renewable energy.

What are popular job titles related to Solid State Physics jobs in Wisconsin?

For Solid State Physics jobs in Wisconsin, the most frequently searched job titles are:

What job categories do people searching Solid State Physics jobs in Wisconsin look for?

The top searched job categories for Solid State Physics jobs in Wisconsin are:

What cities in Wisconsin are hiring for Solid State Physics jobs?

Cities in Wisconsin with the most Solid State Physics job openings:

Infographic showing various Solid State Physics job openings in Wisconsin as of August 2026, with employment types broken down into 2% As Needed, 73% Full Time, 22% Part Time, and 3% Contract. Highlights an 96% Physical, 1% Hybrid, and 3% Remote job distribution.

Senior MEMS Sensor & Process Engineer

Jobtailor

WI • On-site

$110 - $140/hr

Other

This job post has expired today. Applications are no longer accepted.


Job description

• Develop and optimize processes for MEMS design and fabrication, focusing on innovative material solutions.
• Develop sensor chip design for pressure, air flow, liquid flow, magnetic, chemical, and electrochemical sensing.
• Conduct process development for semiconductor manufacturing, focusing on innovative techniques to enhance efficiency and performance.
• Oversee and collaborate with a cross-functional team including the Richardson fab engineering group, quality, planning, fab management, HSE, and packaged parts group to transition die from development into manufacturing.
• Ensure that products are delivered on time and meet customer specifications.
• Support scaling of processes from laboratory to pilot and production levels.
• Stay current with industry trends and advancements in MEMS technologies, materials science, and related fields.

Requirements

  • **MUST HAVE:*
  • - A minimum of a bachelor’s degree from an accredited institution in a technical discipline such as applied physics, electrical engineering, physics, materials science, chemistry, chemical engineering or related fields.
  • - Minimum 5 years of experience in engineering roles, with a focus on semiconductor sensor design, semiconductor process development, microelectromechanical systems (MEMS), or related technologies.
  • - Experience with Semiconductor manufacturing or design including 5 years of hands-on experience in an industrial fab.
  • - Knowledge of semiconductor materials and processes.
  • - Effective communication and interpersonal skills.
  • - Expertise in analyzing data leading to informed decision-making.
  • - Excellent written communication with proficiency in documenting processes and findings clearly.** *
  • **WE VALUE:*
  • - Understanding of physical principles relevant to semiconductor and/or MEMS technologies.
  • - Skills in designing and optimizing manufacturing processes.
  • - Ability to troubleshoot and offer technical solutions to complex issues in semiconductor design and manufacturing.
  • - Skills in diagnosing and resolving technical problems.
  • - Proficient in identifying issues and implementing solutions.
  • - Capability to develop new ideas and approaches in engineering.
  • - Ability to guide modelling of sensors with COMSOL, ANSYS, or other software tools.
  • - Familiarity with quality assurance in semiconductor manufacturing.
  • - Ability to work effectively in team settings across disciplines.
  • - Exceptional problem-solving skills and the ability to work both independently and as part of a team.
  • - Strong analytical skills to evaluate complex data and processes.** *
  • **Experience in some of the following is of value: ** *
  • - Experience in MEMS technology, with a solid understanding of sensor applications.
  • - Familiarity with process development methodologies and tools used in semiconductor fabrication. Especially experience with thin film deposition, epitaxy, plasma processing, deep reactive ion etching (DRIE), chemical vapor deposition, sputter deposition, photolithography, anisotropic etching, ion implantation, diffusion, and aerosol jet printing.
  • - Experience with thin films (metals, insulators, polymers, nanomaterials, polymers, or advanced composite materials) and interfaces.
  • - Background in material characterization techniques and analytical chemistry, in particular, AFM, SEM, EDX, SIMS, XPS, FTIR, Auger, contact angle, spectroscopic ellipsometry, viscosity.
  • - Experience with electrical characterization of solid-state devices.

🔍 ATS Optimization Keywords
Below are skills and terms extracted directly from this job posting to improve Applicant Tracking System (ATS) visibility. This unique feature helps candidates tailor their applications more effectively — a feature exclusive to JobTailor job listings.

Hard Skills

  • MEMS design
  • semiconductor sensor design
  • process development
  • thin film deposition
  • chemical vapor deposition
  • plasma processing
  • deep reactive ion etching
  • material characterization
  • electrical characterization
  • data analysis

Soft Skills

  • effective communication
  • interpersonal skills
  • problem-solving
  • analytical skills
  • team collaboration
  • decision-making
  • troubleshooting
  • creativity
  • documentation
  • independent work
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