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Smart Motors Jobs (NOW HIRING)

ST2 - Welder

Tulsa, OK · On-site

$25.66/hr

International Motors does not anticipate providing employment related work sponsorship for this ... as smart as the people who drive them. We also develop Fleetrite ® aftermarket parts. In ...

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Smart Motors information

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$20.5K

$66.7K

$152.5K

How much do smart motors jobs pay per year?

As of Sep 7, 2026, the average yearly pay for smart motors in the United States is $66,697.00, according to ZipRecruiter salary data. Most workers in this role earn between $39,500.00 and $81,000.00 per year, depending on experience, location, and employer.

What is a smart motor?

Smart motors are electric motors integrated with sensors, controllers, and communication interfaces, allowing for real-time monitoring, control, and diagnostics. These motors are often used in industrial automation, robotics, and HVAC systems to increase efficiency, reliability, and connectivity. By providing feedback on performance and health, smart motors help reduce downtime, optimize energy consumption, and enable predictive maintenance. They are a vital component of modern Industry 4.0 and IoT-enabled manufacturing environments.

What skills and qualifications are needed to work as a smart motors engineer?

To thrive as a Smart Motors Engineer, you need a strong background in electrical engineering, motor control systems, and embedded programming, typically supported by a relevant engineering degree. Familiarity with tools such as MATLAB, Simulink, PLC programming, and industry certifications like Certified Automation Professional (CAP) are often required. Strong problem-solving skills, attention to detail, and effective collaboration are vital soft skills in this role. These skills ensure the efficient design, integration, and troubleshooting of advanced motor systems critical to automation and smart technologies.

What challenges do engineers at a smart motors company face, and how can they be addressed?

Engineers in smart motors companies often encounter challenges such as integrating advanced software with complex hardware, ensuring reliability and safety, and keeping up with rapid technological advancements. Collaboration across multidisciplinary teams—mechanical, electrical, and software engineering—is crucial to address these challenges. Staying proactive with ongoing training, open communication, and agile problem-solving helps engineers adapt and succeed in this fast-paced environment.

What is the difference between Smart Motors vs Electric Motor Technicians?

AspectSmart MotorsElectric Motor Technicians
Required CredentialsTechnical certifications, training in smart motor systemsElectrical certifications, motor repair training
Work EnvironmentManufacturing plants, automation settingsRepair shops, industrial facilities
Industry UsageAutomation, smart technology integrationMotor repair, electrical maintenance

Smart Motors specialists focus on the installation, programming, and maintenance of intelligent motor systems integrated with automation technology. Electric Motor Technicians primarily repair and maintain traditional electrical motors. While both roles require electrical knowledge, Smart Motors roles emphasize smart technology and automation, whereas Electric Motor Technicians focus on conventional motor repair.

More about Smart Motors jobs

What cities are hiring for Smart Motors jobs?

Cities with the most Smart Motors job openings:

Infographic showing various Smart Motors job openings in the United States as of August 2026, with employment types broken down into 70% Full Time, 26% Part Time, 1% Temporary, and 3% Contract. Highlights an 93% Physical, 2% Hybrid, and 5% Remote job distribution, with an average salary of $66,697 per year, or $32.1 per hour.

C# Software Development Engineer

3B Staffing LLC

Sunnyvale, CA • On-site

Full-time

This job post has expired 1 day ago. Applications are no longer accepted.


Job description

C# Software Development Engineer enable the manufacturing of new surgical robotic instruments and accessories

Location: Sunnyvale, CA 100% Onsite

Project Duration: 06 Months (Possibility of extension)

No of Position: 1 Position

Interview Process: 2 Round of Interviews (Zoom) Short coding round and in-person interview

This is not a typical web development role.

IMPORTANT: Suppliers should not submit workers whose physical residence is within the following states due to Intuitive tax and operating entity structure:

Alabama, Arkansas, Delaware, Florida, Indiana, Iowa, Louisiana, Maryland, Mississippi, Missouri, Oklahoma, Pennsylvania, South Carolina, and Tennessee.

Please interpret this as Intuitive policy to which all suppliers are required to comply

Onsite in Sunnyvale - 5 days a week.

Primary Function of Position:

The engineer in this position will play a key role in the Software Engineering team to enable the manufacturing of new surgical robotic instruments and accessories. This engineer will develop the software and algorithms that assure each instrument's kinematic performance and safety. The position will require close collaboration with product development teams, systems analysts, electrical engineers, mechanical engineers, manufacturing engineers, and quality engineers to build a coherent diagnostic strategy and develop software to implement the same.

Roles & Responsibilities:

  • Architect, design and develop software systems that control machines to streamline manufacturing process
  • Builds and maintain software infrastructures that enable value extraction from the data generated
  • Understand each new product's operation and control, and develop the means to ensure their integrity in volume production
  • Design, document, and qualify software for use in manufacturing new instruments and accessories
  • Follow good software development practices
  • Take ownership of manufacturing software and work with cross-functional teams to drive projects to completion
  • Support existing production software

•Skills, Experience, Education, & Training:

  • Understanding of OOA/OOD/OOP/Design Patterns
  • Detail oriented team player
  • Resourceful problem-solving machine
  • Excellent ability to communicate complex concepts to engineers
  • Preferred Skills:
  • Experience developing robotic or electro-mechanical systems, including control systems
  • Strong industry experience in architecture and development of scalable production quality systems
  • Experience with C#, .NET WPF application.
  • Fully understand Software Development Life Cycle (SDLC)
  • Strong analytical, time management, interpersonal, listening and communication skills
  • Familiarity with Statistical Analysis, Six Sigma, and/or Statistical Process Control are pluses Education/Experience:
  • TCP/IP Based equipment control.
  • The hiring manager is looking for a hands-on Software Development Engineer who can build software systems that control complex hardware on manufacturing lines like smart motors, PLCs, lasers, sensors, and robotic arms.
  • The engineer will take a manual process, study it, and write C# software to automate it, using WPF and ASP.NET on a custom in-house platform. The work involves deep integration with hardware, not web UI or frontend apps.
  • This is a control systems-focused software engineering role where understanding machine communication, TCP/IP equipment protocols, and automation is key.
  • Design and architect control systems for machines on the manufacturing floor.
  • Write C# software (WPF, ASP.NET) to automate hardware operations like sensors, motors, lasers, etc.
  • Work closely with hardware, manufacturing, and software teams to integrate systems.
  • Create software drivers to interface with data acquisition hardware (e.g., National Instruments devices).
  • Support and maintain existing production systems already in use.
  • Regularly travel to Mexico (40-45%) to support deployments and production lines.
  • 2-3 years of C# development experience (ideally with a Master's degree)
  • Strong understanding of automated systems, hardware integration, and equipment control
  • Experience with TCP/IP-based equipment control and machine communication
  • Familiar with data acquisition systems (like NI devices)
  • Ability to follow good software development practices
  • Has developed C# applications for robotic systems, automated testing platforms, or industrial equipment.
  • Comfortable with both software development and hardware control - not just UI/frontend/backend.
  • Experience in ATE (Automated Test Equipment), factory automation, or instrumentation software.
  • Has built or supported production-grade systems deployed in real-time manufacturing or test environments.
  • Exposure to National Instruments DAQs, PLCs, or similar automation hardware is a strong plus.
  • Will thrive in a highly collaborative environment where engineers work across hardware/software teams.