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Remote Embedded Systems Engineer Jobs in Utah (NOW HIRING)

Sr. Power Systems Engineer

Salt Lake City, UT · On-site +1

$101K - $138K/yr

Position Overview The Senior Power Systems Engineer will serve a foundational role, functioning as ... Define communication protocols, data acquisition requirements, alarm management, and remote ...

Remote Employment Type: Full-time Advertised Compensation: $60K - 125K About Embedded Insurance ... Comfortable using multiple systems simultaneously, including CRM, quoting, and rating tools. * Self ...

Your cameras become the sensors and our AI software embedded inside the Blackbox watches the ... Design systems for remote device provisioning, configuration, and software updates * Improve ...

C++ Tutor

Cedar City, UT · Remote

$18 - $40/hr

Emphasizes understanding memory management principles and connects C++ programming to operating systems, embedded systems, and high-performance computing applications. * Curriculum Awareness ...

Software Engineers work on multiple projects in an Agile environment, converting customer ... Contributes to system architecture decisions and leads the architecture of sub-systems. Provides ...

Remote Operations Engineer

Sandy, UT · On-site +1

$66K - $89K/yr

Reporting to the Remote Operations Supervisor, the Remote Operations Engineers are responsible for the continuous monitoring of control systems for select plant equipment, including but not limited ...

None Potential for Remote Work: ORA_ON_SITE Description SAIC is seeking an exceptional Mechanical ... This career-defining program involves designing and integrating advanced ballistic missile systems ...

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Remote Embedded Systems Engineer information

What are the key skills and qualifications needed to thrive as a Remote Embedded Systems Engineer, and why are they important?

To thrive as a Remote Embedded Systems Engineer, you need a solid background in electrical engineering, proficiency in C/C++ programming, and experience with embedded hardware and software design. Familiarity with development tools such as debuggers, oscilloscopes, version control systems (like Git), and RTOS platforms, as well as certifications like Certified Embedded Systems Engineer, are commonly required. Strong problem-solving abilities, self-motivation, and effective remote communication skills set top candidates apart in this role. These skills are essential for developing reliable, high-performance embedded solutions while collaborating efficiently in distributed teams.

How do Remote Embedded Systems Engineers typically collaborate with hardware teams when working off-site?

Remote Embedded Systems Engineers often collaborate with hardware teams through video conferencing, collaborative design tools, and remote access to development boards. Regular virtual meetings are scheduled for project updates, troubleshooting, and aligning on hardware-software integration requirements. To stay effective, engineers may use remote debugging tools and sometimes ship prototype hardware to their home office, ensuring they can test and validate firmware in real time. Clear documentation and proactive communication are essential for overcoming the physical distance and ensuring successful project outcomes.

What is a Remote Embedded Systems Engineer?

A Remote Embedded Systems Engineer is a professional who designs, develops, and maintains embedded systems—specialized computing systems that perform dedicated functions within larger mechanical or electrical systems—while working remotely. These engineers work with hardware and software, often programming microcontrollers or processors, to create solutions for products like smart devices, automotive systems, or industrial machines. Their remote role means they collaborate virtually with teams, using tools for code development, debugging, and communication. Strong knowledge of C/C++, Linux, and real-time operating systems (RTOS) is often required. Remote Embedded Systems Engineers play a crucial role in the growing fields of IoT, automation, and smart technologies.

What is the difference between Remote Embedded Systems Engineer vs Remote Firmware Developer?

AspectRemote Embedded Systems EngineerRemote Firmware Developer
Required CredentialsBachelor's in Electrical Engineering, Computer Engineering, or related field; knowledge of embedded C/C++Bachelor's in Computer Science, Electrical Engineering; proficiency in embedded C, assembly, and RTOS
Work EnvironmentDesigning and testing hardware-software integration, often in R&D labs or remote setupsDeveloping low-level code for hardware devices, often in embedded systems or IoT projects
Employer & Industry UsageElectronics, automotive, aerospace, IoT companiesConsumer electronics, industrial automation, IoT device manufacturers

While both roles involve working with embedded hardware and software, the Remote Embedded Systems Engineer typically focuses on system design, integration, and testing, whereas the Remote Firmware Developer specializes in writing low-level firmware code for specific hardware components. Both roles require similar technical skills and often overlap in industry applications.

What are the most commonly searched types of Embedded Systems Engineer jobs in Utah? The most popular types of Embedded Systems Engineer jobs in Utah are:
What job categories do people searching Remote Embedded Systems Engineer jobs in Utah look for? The top searched job categories for Remote Embedded Systems Engineer jobs in Utah are:
What cities in Utah are hiring for Remote Embedded Systems Engineer jobs? Cities in Utah with the most Remote Embedded Systems Engineer job openings:

Sr. Power Systems Engineer

rPlus Energies

Salt Lake City, UT • On-site, Remote

$101K - $138K/yr

Full-time

Re-posted 15 days ago


Job description

Company Overview
rPlus is a team of committed energy industry professionals working together to develop large-scale renewable energy generation and electric storage projects in the United States. rPlus is a market leader in the western US with a proven track record of delivering projects to utility and corporate customers on time and on budget. rPlus specializes in bringing projects to market through partnership with the private sector, municipalities, utilities, and industry-leading technology and service providers. Its portfolio consists of a strategic mix of solar, solar plus battery, wind, and pumped storage hydro facilities. rPlus is headquartered in Salt Lake City, Utah and is backed by Gardner Group and Sandbrook Capital.
Position Overview
The Senior Power Systems Engineer will serve a foundational role, functioning as in-house Owner’s Engineer and technical authority across the Company’s project pipeline. This role will own the design, engineering and performance capability of utility-scale solar and battery energy storage systems from early development through commercial operations. The position carries equal responsibility for performing key engineering management functions as well as driving continuous improvement and scalability of processes, standards, and technical infrastructure to support a growing pipeline.
Scope will span preliminary and detailed design, DC medium-voltage and AC high-voltage, equipment specifications, design calculations, EPC design review, and due diligence on greenfield and M amp;A project sites. The position carries particular emphasis on system architecture (e.g. SCADA, controls, metering, powerflow topology), high-voltage electrical systems (substations from 69kV up to 500kV, protection amp; controls, metering), and BESS design and integration. A defining responsibility will be ensuring design continuity and clean handoffs across the full project lifecycle, from basis of design through construction submittals to commissioning and operations. The position will report to the Chief Operating Officer and will work cross-functionally with the Development, Procurement, Construction and Asset Management teams, and manage third-party engineering consultants, owner’s engineers and independent engineers as needed. At any given time, the portfolio is expected to include approximately 3-4 projects actively in consctruction, alongside a broader pipeline in development and pre-constrcution phases.
Responsibilities
Engineering Process amp; Design Standards:
  • Establish and maintain technical design standards, including basis-of-design documents and specifications for use from early development through construction and operations.
  • Develop a formal EPC design-review protocol, including review of design change requests with cost and schedule impact analysis.
  • Support preliminary DC and AC design: substation layout, metering, PV configurations, single-line diagrams, and site output reports.
  • Coordinate Independent Engineer scopes of work; provide technical review of EPC contracts, PPAs, and interconnection agreements.
System Architecture amp; Controls:
  • Review project configurations for commercial and market alignment; e.g. evaluate and guide single-lines and facility configuration to ensure plant design supports intended offtake and market participation strategies from the earliest stages of development.
  • Own SCADA and plant controls architecture across all facilities, specification, design review, integration testing, and post-COD support.
  • Define communication protocols, data acquisition requirements, alarm management, and remote monitoring/control capabilities.
  • Review and approve EPC SCADA designs, ensuring interoperability across inverters, trackers, met stations, BESS controllers, and substation equipment.
High-Voltage Electrical:
  • Provide technical oversight for all HV electrical design: collector substations (up to 500kV), gen-tie lines, switchgear, transformers, protection and controls, and revenue metering.
  • Review single-line and three-line diagrams, protection coordination studies, grounding designs, relay settings, short circuit analysis, load flow studies, and arc flash analysis.
  • Support interconnection processes including system impact and facilities study review; ensure NERC, IEEE, NEC, and NESC compliance.
Battery Energy Storage:
  • Own technical evaluation, specification, and design review of BESS systems: DC architecture, power conversion, thermal management, and fire/life safety.
  • Define owner's requirements for BESS integration with solar and grid interconnection, including dispatch logic, state-of-charge management, and warranty-compliance operating envelopes.
  • Review BESS vendor submittals and EPC integration designs; support commissioning, performance testing, and degradation monitoring.
Construction amp; Coordination:
  • Serve as (or directly oversee) Owner's Engineer function during construction: site visits, QA/QC support, RFI resolution, change order review, and commissioning of HV, SCADA, and BESS systems.
  • Facilitate design meetings, technical workshops, and constructability reviews; track and resolve technical issues across disciplines.
  • Maintain equipment specifications across Development, Pre-Construction, Procurement, and Construction teams; manage OEM relationships for key electrical and BESS components.
Required Qualifications
  • B.S. in Electrical Engineering or related field
  • 7-10 years of experience in utility-scale solar and/or battery energy storage, with direct involvement across multiple project lifecycle stages (development, design, construction, commissioning)
  • Deep technical proficiency in the following: project engineering lifecycle, HV substation design (69kV–500kV), protection and controls, SCADA/plant controls architecture, solar and BESS design and integration, interconnection engineering
  • Experience must include direct involvement with minimum 2 constructed utility-scale ( gt;75 MW) solar and BESS projects or high voltage substations connected to renewable facility
  • Demonstrated experience functioning as or directly supporting an Owner's Engineer
  • Hands-on experience with EPC design review, construction submittals, and commissioning processes
  • Working knowledge of NERC, IEEE, NEC, and NESC standards as applied to generation facilities
  • Ability to translate between commercial objectives and engineering constraints; demonstrated ability to engaging with development, origination, procurement, and construction teams (not just engineering peers)
  • Superior information management and organizational skills
Preferred Qualifications
  • P.E. license (preferred Utah, Idaho, Washington, Arizona, Nevada, California, Oregon)
  • Experience with hybrid or co-located solar-plus-storage configurations and associated market participation structures
  • Experience managing or coordinating third-party engineers (IEs, owner's engineers, specialty consultants)
  • Background in establishing or formalizing engineering processes, standards libraries, or design review protocols within a growing organization
  • Familiarity with WECC and CAISO/EDAM market rules, settlement mechanics, or resource adequacy frameworks