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Remote Electrical Engineer Jobs in Bloomington, IN

Remote Electrical Engineer information

See Bloomington, IN salary details

$46.7K

$102.8K

$155.4K

How much do remote electrical engineer jobs pay per year?

As of Aug 11, 2026, the average yearly pay for remote electrical engineer in Bloomington, IN is $102,760.00, according to ZipRecruiter salary data. Most workers in this role earn between $76,800.00 and $122,100.00 per year, depending on experience, location, and employer.

What is a remote electrical engineer?

A remote electrical engineer is a professional who designs, develops, tests, and supervises electrical systems and equipment while working outside of a traditional office or lab environment, often from home or another remote location. They use digital tools to collaborate with teams, create schematics, and solve engineering problems. This role requires strong technical skills, effective communication, and the ability to use remote collaboration software to manage projects and interact with clients or colleagues.

What does a remote electrical engineer do?

The job duties of a remote electrical engineer focus on designing electrical systems for a variety of purposes. As a remote engineer, your responsibilities typically involve using a computer to develop electrical systems for equipment, industrial machines, construction projects, computer systems, or other projects. You assess customer needs and specifications and include these factors in your design. You may interface with a technician who uses your design to build the electrical components. A remote electrical engineer can collect data on electrical operations to assess the efficiency and stability of an existing electrical system and locate potential trouble areas.

How does a remote electrical engineer effectively collaborate with on-site teams and other remote colleagues?

As a Remote Electrical Engineer, you will regularly collaborate with on-site teams, project managers, and other engineers through digital platforms such as video conferencing, shared design software, and cloud-based project management tools. Clear communication and proactive updates are essential to ensure alignment on project goals, design specifications, and deadlines. While you might not be physically present at job sites, you’ll often participate in virtual walkthroughs, review digital schematics, and provide real-time input during meetings. Building strong relationships with both remote and on-site team members helps ensure that your contributions seamlessly integrate with the broader project workflow.

What are the key skills and qualifications needed to thrive as a remote electrical engineer, and why are they important?

To thrive as a Remote Electrical Engineer, you need a solid background in electrical engineering principles, circuit design, and a degree in electrical engineering or a related field. Proficiency with CAD software (such as AutoCAD or Altium), simulation tools, and familiarity with industry standards and certifications (like PE licensure) is important. Strong problem-solving abilities, self-motivation, and effective virtual communication skills help you excel when collaborating remotely. These competencies are crucial for delivering high-quality engineering solutions, maintaining project timelines, and ensuring seamless teamwork in a remote environment.

What is the difference between Remote Electrical Engineer vs Remote Electronics Engineer?

AspectRemote Electrical EngineerRemote Electronics Engineer
Required CredentialsBachelor's in Electrical Engineering, PE license often preferredBachelor's in Electronics Engineering or related field, certifications like IPC or FCC may be advantageous
Work EnvironmentDesigning electrical systems, power distribution, and control systems remotelyDeveloping electronic circuits, embedded systems, and device prototypes remotely
Employer & Industry UsageUtilities, manufacturing, renewable energy companiesConsumer electronics, telecommunications, embedded systems companies
Common Search & Comparison IntentYesYes

The main difference between Remote Electrical Engineer and Remote Electronics Engineer lies in their focus areas. Electrical engineers typically work on power systems, control systems, and large-scale electrical infrastructure, while electronics engineers focus on designing electronic circuits, embedded systems, and consumer devices. Both roles often require similar educational backgrounds and certifications but serve different industry needs and project types.

What are the most commonly searched types of Electrical Engineer jobs in Bloomington, IN? The most popular types of Electrical Engineer jobs in Bloomington, IN are:
What are popular job titles related to Remote Electrical Engineer jobs in Bloomington, IN? For Remote Electrical Engineer jobs in Bloomington, IN, the most frequently searched job titles are:
What cities near Bloomington, IN are hiring for Remote Electrical Engineer jobs? Cities near Bloomington, IN with the most Remote Electrical Engineer job openings:
Infographic showing various Remote Electrical Engineer job openings in Bloomington, IN as of August 2026, with employment types broken down into 82% Full Time, 10% Part Time, and 8% Contract. Highlights an 100% Remote job distribution, with an average salary of $102,760 per year, or $49.4 per hour.

Principal Microelectronics Architect

TAP Engineering

Bloomington, IN • Remote

Full-time

Medical, Dental, Vision, Retirement, PTO

Re-posted 21 days ago


Job description

Principal Microelectronics Architect (SME)

Remote (U.S.) | Full-Time | Secret Clearance Required

Position: Principal Microelectronics Architect (SME)
Location: Remote (Periodic On-site Support as Needed)
Category: Hardware Engineering / Systems Architecture
Clearance Requirement: U.S. Citizenship Required; Active Secret Clearance
Education Requirement: Bachelor's Degree in Electrical Engineering, Computer Engineering, or related discipline (Master's or PhD preferred)
Experience Requirement: 10+ Years in Microelectronics Design, Semiconductor Development, or IP Architecture


Position Overview

We are seeking an experienced Principal Microelectronics Architect to serve as a Subject Matter Expert (SME) supporting a critical government-sponsored microelectronics modernization initiative. This role will provide technical leadership in the development of a secure, collaborative design environment focused on advancing semiconductor innovation, intellectual property reuse, and next-generation design workflows.

The selected candidate will work within a highly technical team responsible for defining architecture, standards, and governance models that support the development and integration of advanced microelectronics technologies. This position offers the opportunity to influence long-term strategy while working closely with government stakeholders, industry partners, and engineering teams across the semiconductor ecosystem.

The ideal candidate brings deep expertise in microelectronics design, silicon IP, system-on-chip (SoC) architecture, FPGA technologies, and semiconductor design workflows, along with the ability to communicate complex technical concepts to both technical and executive audiences.


Key ResponsibilitiesStrategic Technical Leadership
  • Serve as a trusted technical advisor supporting the development of secure, cloud-enabled microelectronics design environments.
  • Provide expertise in semiconductor design methodologies, silicon IP reuse, and design ecosystem modernization.
  • Guide architectural decisions that support long-term scalability, interoperability, and sustainability.
Intellectual Property Management & Governance
  • Develop and validate standards for managing reusable design IP repositories.
  • Establish best practices for secure integration and lifecycle management of commercial and government-developed IP assets.
  • Assess technical risks, licensing considerations, and long-term sustainability of IP portfolios.
  • Support governance strategies that promote efficient IP sharing and collaboration.
Design Flow & Technology Integration
  • Evaluate and optimize semiconductor design workflows across modern engineering environments.
  • Support the integration of foundry-qualified design flows and advanced packaging technologies.
  • Promote interoperability across multiple vendors, toolchains, and semiconductor platforms.
  • Identify opportunities to accelerate development timelines and improve engineering productivity.
Technical Assessments & Program Execution
  • Conduct technology evaluations and produce technical assessment reports.
  • Deliver recommendations related to design infrastructure, tool interoperability, and ecosystem scalability.
  • Support milestone reviews and provide technical briefings to program leadership and stakeholders.
  • Contribute to strategic roadmaps that support future program growth and modernization efforts.
Stakeholder Collaboration
  • Coordinate requirements and technical activities across government organizations, industry partners, research institutions, and engineering teams.
  • Facilitate collaboration among stakeholders focused on semiconductor design, fabrication, packaging, and testing.
  • Build consensus around standards, processes, and technical direction.

Required Qualifications
  • Bachelor's degree in Electrical Engineering, Computer Engineering, or a related technical discipline
  • 10+ years of experience in microelectronics design, semiconductor development, FPGA design, or System-on-Chip (SoC) architecture
  • Deep understanding of silicon IP development, integration, validation, and reuse methodologies
  • Experience evaluating and managing third-party intellectual property within complex hardware environments
  • Familiarity with industry-standard Electronic Design Automation (EDA) tools, including:
    • Cadence
    • Synopsys
    • Siemens EDA
  • Understanding of cloud-enabled design environments and collaborative engineering workflows
  • Strong knowledge of semiconductor design processes and technology development lifecycles
  • Exceptional technical writing, documentation, and presentation skills
  • Ability to communicate complex technical concepts to both engineering teams and executive leadership
  • U.S. Citizenship with the ability to obtain and maintain a Secret security clearance

Preferred Qualifications
  • Active Secret clearance or higher preferred
  • Experience supporting government-sponsored microelectronics programs
  • Familiarity with trusted semiconductor manufacturing and supply chain assurance initiatives
  • Experience with advanced packaging technologies and chiplet architectures
  • Knowledge of modern semiconductor fabrication processes and foundry ecosystems
  • Familiarity with radiation-hardened, high-reliability, or mission-critical electronics
  • Experience supporting collaborative research and development initiatives involving government, industry, and academia
  • Knowledge of leading semiconductor foundries and advanced process technologies

Benefits Overview

TAP Engineering offers a comprehensive and highly competitive benefits package designed to support your health, financial well-being, professional growth, and work-life balance.

  • Paid Time Off: 15–25 days of PTO annually based on tenure, plus 11 paid holidays with no use-it-or-lose-it policy.
  • Retirement Benefits: Up to a 15% employer contribution to your 401(k) through a combination of company match and profit-sharing.
  • Comprehensive Medical Coverage: Employer-paid medical insurance for employees, with optional enhanced plans and dependent coverage available.
  • Dental & Vision Insurance: Employer-paid dental and vision coverage with optional buy-up plans.
  • Tuition Reimbursement: Up to $36,000 annually for approved degree programs, certifications, and continuing education opportunities.
  • Wellness & Employee Support Programs: Employee Assistance Program (EAP), wellness incentives, virtual healthcare services, prescription savings programs, and travel assistance resources.
  • Additional Employee Perks: Access to employee discount programs and other company-sponsored benefits.
  • Performance-Based Recognition: Merit increases, performance bonuses, and employee referral bonuses designed to reward contributions and success.

Why Join Us?

This is a unique opportunity to help shape the future of microelectronics design and collaboration within a highly visible national-level initiative. You'll work alongside industry and government leaders, influence next-generation design environments, and contribute to the development of technologies that will impact critical systems for years to come.

The role begins with an initial six-month technical engagement focused on architecture definition, standards development, and technology assessments. Successful completion of Phase 1 is expected to lead to a five-year follow-on effort, providing the opportunity to serve as a technical lead for a major microelectronics modernization initiative and help shape its long-term architecture, standards, and implementation strategy.

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