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Home Based Ski Design Engineer Jobs in Phoenix, AZ

Competitive salary based on experience * Medical, Dental, and Vision coverage * 401(k) Program with ... POSITION OVERVIEW The Design Engineer position supports both the Engineering and Sales teams across ...

Provn is hiring a Senior Design Engineer to support a travel technology company building a highly ... Remote, US-based. Apply directly here: provn.co/org/arrivia/jobs/285eac4e -dec7-4734-8ac1 ...

Description Wilson Engineers is a respected Arizona-based consulting firm delivering innovative ... Proficient in the design of low voltage power distribution systems and lighting systems, including ...

Electrical Design Engineer Department: Electrical/Energy Employment Type: Full Time Location ... Tempe, AZ Description Wilson Engineers is a respected Arizona-based consulting firm delivering ...

Description Wilson Engineers is a respected Arizona-based consulting firm delivering innovative ... Perform detailed structural design, analysis, engineering calculations, and assist in the ...

Structural Design Engineer Department: Water/Wastewater Employment Type: Full Time Location: Tempe ... Chris Yarn Description Wilson Engineers is a respected Arizona-based consulting firm delivering ...

... based recommendations that inform decisions by architects, engineers, contractors, and operators ... Collaborates with design teams and technical disciplines to promote integrative sustainable ...

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Home Based Ski Design Engineer information

See Phoenix, AZ salary details

$40.2K

$110.7K

$163.3K

How much do home based ski design engineer jobs pay per year?

As of May 28, 2026, the average yearly pay for home based ski design engineer in Phoenix, AZ is $110,709.00, according to ZipRecruiter salary data. Most workers in this role earn between $83,400.00 and $138,000.00 per year, depending on experience, location, and employer.

What are the key skills and qualifications needed to thrive as a Home Based Ski Design Engineer, and why are they important?

To thrive as a Home Based Ski Design Engineer, you need a strong background in mechanical or materials engineering, proficiency in CAD software, and an understanding of ski dynamics and manufacturing processes. Familiarity with tools such as SolidWorks or AutoCAD, and experience with materials testing or prototyping, are typically required, along with relevant engineering certifications. Exceptional problem-solving, creativity, and self-motivation are crucial soft skills for innovating and working independently. These competencies ensure the effective design, testing, and development of high-performance skis while meeting project goals from a remote setting.

What are some common challenges faced by home-based ski design engineers, and how can they be effectively managed?

Home-based ski design engineers often face challenges such as limited access to prototyping facilities and the need for effective remote collaboration with manufacturing teams. Managing these challenges typically involves leveraging advanced digital design tools, participating in virtual meetings, and coordinating closely with test engineers and materials suppliers. Building a strong communication routine and utilizing cloud-based platforms for sharing designs can help maintain workflow efficiency. Staying proactive about seeking feedback and regularly reviewing industry trends are also helpful for continuous improvement.

What does a Home Based Ski Design Engineer do?

A Home Based Ski Design Engineer is responsible for designing and developing new ski products from a remote location, often from their own home office or workshop. They use computer-aided design (CAD) software to create ski prototypes, test materials, and optimize the performance of skis for different snow conditions and user preferences. Their work also involves collaborating virtually with manufacturers, product managers, and marketing teams to bring innovative ski designs to market. This role requires a strong background in engineering, materials science, and a passion for winter sports.

What is the difference between Home Based Ski Design Engineer vs Ski Manufacturing Technician?

AspectHome Based Ski Design EngineerSki Manufacturing Technician
CredentialsDegree in engineering, design, or related fieldTechnical diploma or vocational training in manufacturing or ski tech
Work EnvironmentHome office, design studios, or remote collaborationFactory floor, manufacturing plant, or production line
Industry UsageDesign, innovation, and product development in ski industryAssembly, quality control, and production of skis

The Home Based Ski Design Engineer focuses on designing and developing new ski models remotely, utilizing CAD software and industry knowledge. In contrast, the Ski Manufacturing Technician works directly in production facilities, handling the assembly and quality assurance of skis. Both roles are essential in the ski industry but differ mainly in their work environment and responsibilities.

What are the most commonly searched types of Ski Design Engineer jobs in Phoenix, AZ? The most popular types of Ski Design Engineer jobs in Phoenix, AZ are:
What job categories do people searching Home Based Ski Design Engineer jobs in Phoenix, AZ look for? The top searched job categories for Home Based Ski Design Engineer jobs in Phoenix, AZ are:
What cities near Phoenix, AZ are hiring for Home Based Ski Design Engineer jobs? Cities near Phoenix, AZ with the most Home Based Ski Design Engineer job openings:

Full-time

Posted 8 days ago


Job description

United Integrated Services (USA) Corp. was founded in Phoenix, Arizona in 2020. UIS is a U.S. subsidiary of United Integrated Services Co., Ltd. (UIS Taiwan) which was founded in Taiwan in 1982. UIS is a multidisciplinary engineering and construction company. We provide fully integrated design-build services to our clients in the high-technology industry for their manufacturing facility needs. Our scope of services includes engineering design, high-tech factory planning, and on-time equipment and material delivery in which clean-room systems, HVAC, electrical systems, and tool hook-up, are all vital parts in need of total coordination.

Summary: The Design Engineer will be responsible for designing, developing, and implementing facility systems for semiconductor projects, including Air Abatement Systems or Cleanrooms or Fire Protection or FMCS / I&C or Mechanical or PX & Structural Systems whichever is your area of expertise. This role involves creating detailed schematics, layouts, schedules, and calculations, ensuring compliance with industry standards and safety regulations, and collaborating with multidisciplinary teams to support project execution. The ideal candidate will possess strong analytical skills, proficiency in relevant design software, and the ability to oversee projects from concept to completion.

Essential Duties and Responsibilities based on specific background, education and experience include the following. Other duties may be assigned.

  • Design and develop facility systems such as air abatement or electrical or cleanroom or HVAC or piping, structural layouts and process utilities based on project requirements.
  • Process Engineering with a focus on the movement of fluids and gases used in manufacturing or laboratory environments.
  • Calculate flow rates, pressure drops, and thermal loads to ensure the systems meet the equipment requirements.
  • Sizing pumps, heat exchangers, and vacuum producers
  • Prepare and review schematics, layouts, equipment schedules, flow diagrams, piping & instrumentation diagrams (P&ID), panel schedules, cable tray layouts, and bills of materials (BOM).
  • Conduct system calculations such as load, flow rate, pressure drop, short-circuit analysis, and safety checks to ensure system reliability and efficiency.
  • Ensure designs comply with applicable codes, standards, and regulations (e.g., IMC, IBC, SMACNA, NEC, NFPA, IEEE, IEC).
  • Coordinate with architects, electrical engineers, mechanical engineers, structural engineers, and contractors to ensure seamless project integration.
  • Perform site visits, inspections, and evaluations to support design accuracy and troubleshoot installation issues.
  • Utilize AutoCAD, Revit, and other relevant design software to create and modify drawings.
  • Assist in selecting and specifying equipment (air handlers, pumps, scrubbers, fans, switchgear, control panels, fire suppression systems, etc.).
  • Review contractor submittals, RFIs, and shop drawings to ensure compliance with design specifications.
  • Participate in design reviews, value engineering exercises, and risk assessments.
  • Support procurement and construction teams with technical expertise, documentation, and troubleshooting.
  • Ensure quality control measures are met throughout the project lifecycle.
  • Stay up to date with industry trends, emerging technologies, and best practices in semiconductor facility design.
  • Other responsibilities as assigned.

Qualifications:

The requirements listed below are representative of the knowledge, skill, and/or ability required based on background, experience and education.

  • Design Engineer - Process/Piping or Design Engineer - Electrical or Design Engineer - Air Abatement System or Design Engineer - Mechanical

Education/Experience:

  • Bachelor's degree in mechanical or electrical or civil or Structural Engineering, or a related field.
  • 2+ years of experience in design engineering (experience in construction or semiconductor or industrial or commercial, or infrastructure projects is highly desirable).
  • Experience in construction coordination, facility systems design, highly desirable.

Skills and Competencies:

  • Knowledge of mechanical or electrical or structural and control systems.
  • Familiarity with IMC, IBC, NEC, NFPA, IEEE, IEC, SMACNA, and other relevant industry codes and standards desired
  • Proficiency in AutoCAD, Revit, Navisworks, 3D CAD, BIM workflows, or similar design programs desired
  • Experience with system calculations (flow, load, pressure, safety, etc.) and facility requirements studies.
  • Strong understanding of project lifecycle including design, procurement, construction, and commissioning.
  • Ability to read and interpret technical drawings, blueprints, and schematics.
  • Excellent problem-solving and troubleshooting skills for complex systems.
    Strong written and verbal communication skills for collaboration with clients, contractors, and internal teams.
  • Ability to manage multiple projects while meeting deadlines.
  • Detail-oriented with strong organizational and time-management skills.

Language Proficiency:

  • Excellent verbal and written communication skills in English, required.

Nice to have:

  • Experience with HVAC systems or construction background.
  • Experience with PLCs, SCADA, and automation systems.
  • Familiarity with BIM workflows and coordination

Additional Requirements:

  • Must have and maintain a valid driver's license and be willing to travel to project sites as required. International travel may be required.
  • May require occasional work outside standard business hours to meet project deadlines.

Physical Demands & Work Environment

The physical demands described here are representative of those that a candidate must meet to successfully perform the essential functions of this job.

  • Frequently stand and walk for extended periods throughout the workday.
  • Frequently lift, carry, push, and pull materials weighing up to 50 pounds, and occasionally lift heavier items with assistance or mechanical equipment.
  • Bend, stoop, kneel, crouch, and reach to perform assigned tasks.
  • Use hands and fingers to handle, feel, grasp, and operate tools, equipment, or materials.
  • Perform repetitive motions involving the hands, wrists, and arms.
  • Climb ladders, stairs, or elevated surfaces as required by the job.
  • Maintain visual acuity sufficient to read labels, instructions, safety signage, and documentation.
  • Maintain balance and coordination while moving materials or operating equipment.
  • Ability to work in physically demanding environments requiring frequent movement and manual labor.

Work Environment:

  • Exposure to dust, noise, vibration, and moving mechanical equipment.
  • Indoor and/or outdoor work environments, which may include varying temperatures and weather conditions.
  • Work in confined spaces, elevated areas, or active job sites, depending on project requirements.
  • Required use of personal protective equipment (PPE) such as hard hats, safety glasses, gloves, steel-toe boots, and high-visibility vests.
  • Interaction with powered industrial equipment, tools, and vehicles.

Disclaimer:

The above job description is not intended to be an all-inclusive list of duties and standards of the position. Incumbents will follow any other instructions, and perform any other related duties as assigned by their supervisor.