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Electronic Engineer Jobs in Missouri (NOW HIRING)

Support the maintenance department in electrical/electronic systems troubleshooting. Provide ... Utilize programming devices to analyze P.L.C. programs for failures or improvements.Maintain ...

Hardware Electronics Engineer I The Hardware Electronics Engineer I designs and develops motor control power electronics across the full product development lifecycle. In this role, you work closely ...

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Electronic Engineer information

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$38.5K

$83.4K

$129K

How much do electronic engineer jobs pay per year?

As of Sep 5, 2026, the average yearly pay for electronic engineer in Missouri is $83,385.00, according to ZipRecruiter salary data. Most workers in this role earn between $55,800.00 and $102,700.00 per year, depending on experience, location, and employer.

What does an electronic engineer do?

An Electronic Engineer designs, develops, tests, and supervises the manufacturing of electronic equipment such as communication systems, control systems, and electronic devices. They work on everything from microchips and circuit boards to larger systems like satellites and telecommunications networks. Their responsibilities often include researching new technologies, solving technical problems, and ensuring that products meet safety and quality standards. Electronic Engineers may work in industries such as telecommunications, consumer electronics, automotive, aerospace, and healthcare.

What are the key skills and qualifications needed to thrive as an electronic engineer, and why are they important?

To thrive as an Electronic Engineer, you need a solid background in circuit design, signal processing, and electronics theory, typically supported by a degree in electrical or electronic engineering. Familiarity with CAD tools like Altium Designer, simulation software such as SPICE, and industry certifications like PE or IPC are often required. Strong problem-solving, communication, and teamwork skills help electronic engineers excel in collaborative, project-driven environments. These skills and qualifications are vital for designing reliable electronic systems and ensuring innovation meets both technical and industry standards.

What are some common challenges electronic engineers face when working on multidisciplinary teams?

Electronic Engineers frequently collaborate with mechanical engineers, software developers, and project managers, which can introduce challenges such as aligning on technical terminology, timelines, and design constraints. Effective communication is crucial, as each discipline may prioritize different aspects of a project. Adapting to changing requirements and ensuring that electronic components integrate seamlessly with other system parts are also typical hurdles. Developing strong teamwork and project management skills can greatly ease these challenges and help ensure successful project outcomes.

What is the difference between Electronic Engineer vs Electrical Engineer?

AspectElectronic EngineerElectrical Engineer
CredentialsBachelor's in Electronic Engineering or related fieldBachelor's in Electrical Engineering or related field
Work EnvironmentDesigning and testing electronic circuits, embedded systems, consumer electronicsPower systems, electrical infrastructure, large-scale electrical equipment
Industry UsageConsumer electronics, telecommunications, aerospacePower generation, utilities, industrial machinery

Electronic Engineers focus on designing and developing electronic devices and circuits, while Electrical Engineers work on electrical power systems and large-scale electrical infrastructure. Both roles require similar educational backgrounds but differ in their specific applications and industries.

Are electronic engineers in demand?

Electronic engineers are in high demand due to the growth of industries such as telecommunications, consumer electronics, and aerospace. They often require skills in circuit design, embedded systems, and proficiency with tools like CAD software, with employment prospects generally strong in technology-driven regions.

What jobs can an electronic engineer do?

An electronic engineer can work in designing, developing, testing, and maintaining electronic systems and devices such as communication systems, consumer electronics, medical equipment, and embedded systems. They often work in industries like telecommunications, aerospace, automotive, and manufacturing, utilizing skills in circuit design, programming, and troubleshooting. Certifications like EIT or PE can enhance job prospects, and proficiency with tools such as CAD software and oscilloscopes is common.

What kind of work do electronic engineers do?

Electronic engineers design, develop, test, and supervise the manufacturing of electronic devices and systems such as circuit boards, communication equipment, and control systems. They often work with tools like schematic design software and may need knowledge of standards and certifications relevant to their industry. Their work environment can include laboratories, manufacturing facilities, and offices, with tasks requiring problem-solving and technical skills.

What are the most commonly searched types of Electronic Engineer jobs in Missouri?

The most popular types of Electronic Engineer jobs in Missouri are:

What job categories do people searching Electronic Engineer jobs in Missouri look for?

The top searched job categories for Electronic Engineer jobs in Missouri are:

What cities in Missouri are hiring for Electronic Engineer jobs?

Cities in Missouri with the most Electronic Engineer job openings:

Infographic showing various Electronic Engineer job openings in Missouri as of August 2026, with employment types broken down into 2% As Needed, 76% Full Time, 20% Part Time, and 2% Contract. Highlights an 96% Physical, 1% Hybrid, and 3% Remote job distribution, with an average salary of $83,385 per year, or $40.1 per hour.

Embedded Software Engineer, Electronics Engineering

Nidec Corporation

Saint Louis, MO • On-site

$100 - $130/hr

Other

Re-posted 20 days ago


Nidec rating

7.3

Company rating: 7.3 out of 10

Based on 52 frontline employees who took The Breakroom Quiz

314th of 499 rated machine equipment manufacturers


Job description

Job Summary

Serve as the technical authority for embedded motor control software, controls algorithms, and system behavior within C&I motor control and drive products. Lead the architecture, design, implementation, validation, and release of embedded motor control software, from concept through product launch, ensuring performance, real-time reliability, stability, safety, and compliance with applicable standards. Operate with a high degree of autonomy, providing technical leadership, design direction, and mentoring other engineers while partnering closely with power electronics, mechanical, manufacturing, quality, and supplier teams.

Responsibilities
  • Develop and implement motor control algorithms such as Field Oriented Control (FOC), six-step/trapezoidal control, sensorless back-EMF methods, observers and estimators, and torque, speed, and position control loops (PID, adaptive control).
  • Develop firmware on embedded platforms, including PWM generation, ADC synchronization, and real-time signal processing.
  • Develop control methods to improve efficiency and performance, including loss reduction and switching strategies.
  • Own motor control system performance from concept through validation, including requirements interpretation, design trade-offs, and issue resolution.
  • Develop and maintain MATLAB/Simulink models to simulate motor behavior, control design, and system stability.
  • Work closely with power electronics and hardware teams.
  • Interface with current and voltage sensing circuits, and validate signal scaling, offsets, and calibration.
  • Debug system-level issues across firmware and hardware, including control performance, sensing, and power stage behavior.
  • Implement communication interfaces such as Modbus, BACnet, UART, SPI, I2C, and wireless protocols (Bluetooth, Wi-Fi).
  • Implement protection features such as overcurrent, overvoltage/undervoltage, and stall/lock detection.
  • Ensure compliance with safety requirements (e.g., Class B software per UL 60730).
  • Write design documentation (control strategies, architecture), test plans, and validation reports.
  • Establish and lead processes for managing embedded motor control software across development, validation, and production, ensuring controlled changes, consistent configurations, and repeatable software releases.
  • Define and implement structured verification processes, including black box and white box testing, standardized validation methods, and formal peer reviews to ensure performance, stability, and quality.
Requirements
  • Bachelor’s degree in Electrical Engineering, Electronics Engineering, or related field. Master’s degree preferred.
  • 10+ years of experience in embedded systems, control systems, or electronics engineering.
  • 7+ years of experience in motor control systems for industrial equipment or drives applications.
  • Proven experience developing and implementing motor control algorithms (e.g., FOC, PID control, observers, sensorless methods) on embedded platforms.
  • Strong hands‑on experience in real‑time embedded firmware development (C/C++) for control applications.
  • Experience designing and optimizing control loops (current, speed, position) in real‑world systems.
  • Experience working with power electronics systems (inverters, motor drives) and understanding their interaction with control algorithms.
  • Practical experience with current and voltage sensing systems, including signal conditioning, scaling, and calibration in control applications.
  • Experience debugging system‑level issues involving firmware, control behavior, and hardware interaction.
  • Experience with MATLAB/Simulink or similar tools for control design, modeling, and validation.
  • Experience implementing or integrating communication protocols, including wired (UART, SPI, I2C, Modbus, BACnet) and wireless (Bluetooth, Wi-Fi).
  • Experience developing or supporting safety-critical embedded software (e.g., UL 60730 or similar standards).
  • Participation in full product lifecycle development, including prototyping, validation, and production support.
  • Participation in product industrialization activities, including prototype builds, pilot runs, and production ramp‑up support.
Skills
  • Clear written communication skills for technical documentation, design rationale, and engineering review.
  • Ability to communicate complex technical concepts clearly and concisely across diverse audiences, including non‑technical stakeholders.
  • Confidence to challenge assumptions and decisions constructively using data, experience, and engineering judgment.
  • Strong time‑management skills to balance deep technical work with cross‑functional engagement.
Internal Customers
  • Manufacturing
  • Quality
  • Regulatory
  • Supply Chain
  • Sales/Marketing
  • Service
External Customers
  • Electronics suppliers
  • Contract manufacturers
  • Certification bodies
Languages
  • Fluent English
Equal Employment Opportunity

Equal Employment Opportunity and affirmative action at Nidec. Nidec is an Equal Employment Opportunity (EEO) and affirmative action employer encouraging diversity in the workplace. All qualified applicants receive consideration for employment without regard to their age, gender, gender identity, sexual orientation, race, color, genetic information, religious creed, national origin, physical or mental disability, protected veteran status, or any other characteristic protected by law. For more information regarding your (EEO) rights as an applicant, please visit the following website: http://www1.eeoc.gov/employers/upload/eeoc_self_print_poster.pdf.

Dimensions

Geographic Scope: United States – Global Impact. Product Scope: Motor-mounted electronics, embedded controls and human-machine interfaces. Business Impact: Direct influence on NPD time to market, product performance, compliance, quality & cost.

KPI electronics: OTD > 80% for FY26. VAVE cost saving results. Product reliability, robustness and compliance metrics. Electronics components obsolescence risk mitigation. Mean time to resolution for electronics issues. Manufacturing yield and scrap related to electronics NPD.

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