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From Home Microcontroller Jobs (NOW HIRING)

... work, at home, or wherever you may go. Learn more about our benefits. As an Electrical Engineer ... Architect and develop embedded systems, including microcontroller/microprocessor-based designs ...

Embedded Software Engineer

Boulder, CO · Hybrid

$93K - $133K/yr

This role participates in our Hybrid Work Schedule (4 days in the office, 1day working from home) ... Demonstrated development with C, C++ programming languages in an embedded microcontroller and/or ...

Digital Design Engineer I

Austin, TX · On-site

$78K - $146K/yr

... home, industrial IoT, and smart cities markets. Learn more at www.silabs.com. Meet the Team You'll ... The team's work spans from architecture and design through verification, ensuring that each block ...

Experienced with microcontroller architecture, RTOS, and/or ARM architecture. * Familiarity with ... at work, at home, and at play. Your recruiter will be happy to discuss all that Qualcomm has to ...

... heading home? Do you thrive in fast-paced environments where you can own an entire product from ... Design and implement solutions for microcontroller platforms including ARM Cortex, STM32, AVR, and ...

Develop embedded firmware using C for microcontroller-based systems. * Design and maintain bare ... We invite resumes from all qualified, interested parties, regardless of race, gender, national ...

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From Home Microcontroller information

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How much do from home microcontroller jobs pay per hour?

As of Aug 21, 2026, the average hourly pay for from home microcontroller in the United States is $55.29, according to ZipRecruiter salary data. Most workers in this role earn between $38.46 and $69.71 per hour, depending on experience, location, and employer.

What is a from home microcontroller job?

'From Home Microcontroller' jobs involve designing, programming, and testing microcontroller-based systems remotely. Professionals in these roles typically work with embedded systems, writing code (often in C or C++) that runs on microcontrollers for applications such as IoT devices, automation, or other electronics projects. These jobs require a good understanding of electronics, firmware development, and often remote collaboration with hardware or product teams. Working from home allows microcontroller engineers to prototype and test using development kits and simulators, communicating with teams via online tools.

What are the key skills and qualifications needed to thrive as a microcontroller engineer working from home?

To thrive as a Microcontroller Engineer working from home, you need strong knowledge of embedded systems, programming languages like C/C++, and experience with microcontroller architectures, typically supported by a degree in electrical or computer engineering. Familiarity with development environments (e.g., Arduino IDE, MPLAB, Keil), debugging tools, and version control systems like Git is essential. Excellent problem-solving, self-motivation, and clear remote communication skills help you collaborate effectively and manage projects independently. These skills are crucial for delivering reliable embedded solutions and meeting project goals in a remote work setting.

What are some common challenges faced by remote microcontroller engineers when working from home, and how can they be overcome?

Remote microcontroller engineers often face challenges such as limited access to specialized hardware, difficulty in debugging without on-site tools, and potential communication barriers with team members. Overcoming these issues typically involves utilizing remote desktop solutions, investing in personal development boards or simulators, and maintaining regular, clear communication through collaborative platforms. Many teams also schedule virtual stand-ups and use shared repositories for code and documentation to ensure smooth workflow and knowledge sharing.

What is the difference between From Home Microcontroller vs From Home Embedded Systems Developer?

AspectFrom Home MicrocontrollerFrom Home Embedded Systems Developer
Required CredentialsAssociate's or Bachelor's in Electronics, Electrical Engineering, or related fieldsSimilar credentials, often with additional software or programming certifications
Work EnvironmentHome-based, focused on hardware prototyping and testingHome or office, involving both hardware and software development
Industry UsageManufacturing, IoT devices, consumer electronicsAutomotive, medical devices, industrial automation
Common Search/ComparisonYesYes

From Home Microcontroller and From Home Embedded Systems Developer roles share similar credentials and work environments, but the former emphasizes hardware-focused tasks, while the latter combines hardware and software development for embedded systems across various industries.

More about From Home Microcontroller jobs

What cities are hiring for From Home Microcontroller jobs?

Cities with the most From Home Microcontroller job openings:

What are the most commonly searched types of Microcontroller jobs?

The most popular types of Microcontroller jobs are:

What states have the most From Home Microcontroller jobs?

States with the most job openings for From Home Microcontroller jobs include:

Infographic showing various From Home Microcontroller job openings in the United States as of August 2026, with employment types broken down into 1% As Needed, 74% Full Time, 22% Part Time, and 3% Contract. Highlights an 75% Physical, 1% Hybrid, and 24% Remote job distribution, with an average salary of $115,000 per year, or $55.3 per hour.

Software Certification Engineer (Software Verification Engineer)

Mid-Continent Instruments and Avionics

Wichita, KS • On-site

$70K - $110K/yr

Full-time

Re-posted 2 days ago


Job description

COME JOIN MID-CONTINENT!

“Where your work is valued—above-market pay, real work-life balance, and a team that feels like home.”

THE POSITION…

As a Software Certification Engineer, you will provide engineering and technical support in the evaluation and testing of existing and emerging technologies, systems, and capabilities. You will plan and implement the RTCA DO-178C and DO-254 lifecycle processes for avionics, power electronics, and battery systems. You’ll verify complex microcontroller and FPGA designs to achieve coverage of functional and structural aspects. Product areas include cockpit displays and instruments, local and remote sensing, data conversion and storage, lithium battery management, AC/DC and DC/DC power conversion up to 8000W, in-seat power solutions, and various other components needed in aircraft systems. To be successful in this role, you’ll need to provide expert analysis to meet the highest level of safety and reliability, implementing safety-critical software design processes.

THIS POSITION MAY BE FOR YOU IF…

  • You have a bachelor’s degree in computer engineering or related field
  • You have a minimum of one year of experience with RTCA DO-178C or similar safety-critical software design process.
  • You are proficient in C programming.
  • You have the ability to work directly with target hardware, including lab bench equipment and other tools for debugging and analysis.
  • You are proficient with Microsoft Office.
  • You have strong attention to detail.
  • You are organized, focused and results oriented.
  • You are a problem-solver with critical thinking and prioritizing skills.
  • You have excellent verbal, written and interpersonal communication skills.

WE WOULD REALLY LIKE IT IF… (but it’s not a deal breaker)

  • You have experience with C#, or Python languages for a PC application software.
  • You have familiarity with VHDL and RTCA DO-254.
  • You have familiarity with formal coding standards and safety-critical design considerations.

WHAT YOU CAN EXPECT FROM ONE DAY TO THE NEXT…

  • Create and review design data within the software qualification lifecycle process. Practice safety-critical methods, create plans, requirements, design standards, coding standards, change tracking and verification, formal and functional verification
  • Test and troubleshoot prototype and certified code on target hardware. Includes working in a lab bench environment with the necessary test equipment
  • Design embedded software for microcontroller-based systems, as well as PC-based applications for verification and manufacturing
  • Support software design using current tools, design environments and documentation methods
  • Prototype and execute test programs to verify compliance with applicable performance, regulatory, and quality requirements

WE ARE ONE OF THE BEST PLACES TO WORK…

  • We provide competitive pay and a comprehensive benefits package.
  • We promote an environment where you can excel in your career while maintaining a healthy work-life balance.
  • Our facility is climate controlled, clean, organized, and safe. We operate in a professional, light manufacturing environment.
  • We believe anything worth doing is worth doing right – every time.
  • We have frequent events to keep work interesting. Our food drive is super impressive, we enjoy an annual food truck fest appreciation day, monthly fruit/donut day, employee luncheons throughout the year, wellness challenges with incentives, and frequent ticket raffles for local sporting and cultural events.
  • We have a small company feel – even though we’re doing big things!

WHO WE ARE…

Founded in 1964, Mid-Continent Instruments and Avionics provides superior instruments, avionics and power solutions to the global aerospace community. We operate one of the largest maintenance, overhaul and exchange programs in the world, and deliver safe and certified products, using innovative technologies and sophisticated clean sheet designs.

At Mid-Continent Instruments and Avionics, we are committed to quality, service, integrity, and professionalism. Our employees serve the best customers from all over the world in general, business and commercial, advanced air mobility, defense and special missions markets. In this role, you’ll be an important part of the reason our customers consider us a premier instrument, avionics, and aircraft power solutions provider.

This job description is intended to describe the general nature and level of work performed and is not intended to be an exhaustive list of all responsibilities, duties and skills required. Actual compensation offered within the targeted salary range will be determined by factors such as job-related knowledge, skills, and experience.