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Remote Fiber Laser Engineer Jobs in Washington (NOW HIRING)

Principal Electrical Systems Engineer

Herndon, VA ยท On-site +1

$142K - $174K/yr

You will work closely with multidisciplinary teams of optical, mechanical, software, and systems engineers to develop next-generation laser, sensing, and remote sensing technologies for demanding ...

Senior Network Engineer

Arlington, VA ยท On-site +1

$150K - $160K/yr

Lead the design, engineering, and administration of high-availability classified network ... fiber optic media. * Provide technical support for both local Washington, D.C. sites and remote ...

Design Engineer

Washington, DC ยท Remote

$40 - $55/hr

Description The Design Engineer specializes in fiber network and transport systems with over four ... remote position. Application Deadline This position is anticipated to close on Aug 3, 2026. About ...

Fusion Engineer

Washington, DC ยท On-site +1

$77K - $176K/yr

Remote Work: No Job Number: R0244132 Location: Washington,DC,US Share job via: Share Fusion ... energy lasers or pulsed power * Ability to travel up to 15% of the time * Ability to obtain and ...

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Remote Fiber Laser Engineer information

What is the difference between Remote Fiber Laser Engineer vs Remote Optical Engineer?

AspectRemote Fiber Laser EngineerRemote Optical Engineer
Required CredentialsBachelor's in Engineering, Physics, or related field; experience with laser systemsBachelor's in Optical Engineering, Physics, or related; knowledge of optical systems
Work EnvironmentDesign, testing, and troubleshooting fiber laser systems remotely or in labsDesign and analyze optical components and systems remotely or in labs
Industry UsageLaser manufacturing, telecommunications, medical devicesTelecommunications, defense, imaging, and sensor industries

The Remote Fiber Laser Engineer primarily focuses on designing and optimizing fiber laser systems, while the Remote Optical Engineer works on broader optical components and systems. Both roles require similar technical backgrounds and often operate in overlapping industries, but their specific focus areas differ, making them distinct yet related careers in the optical and laser technology fields.

What are some common challenges faced by remote fiber laser engineers, and how can they be addressed?

Remote Fiber Laser Engineers often face challenges related to troubleshooting complex laser systems without onsite access, requiring strong diagnostic and communication skills. Reliable remote monitoring tools and detailed documentation are essential to accurately identify and resolve issues with minimal downtime. Collaboration with local technicians and clear, structured communication help bridge the gap caused by physical distance. Engineers in this role also need to stay updated on the latest fiber laser technologies and remote support best practices to ensure optimal system performance.

What are the key skills and qualifications needed to thrive as a remote fiber laser engineer?

To thrive as a Remote Fiber Laser Engineer, you need a solid background in optical engineering, laser physics, and fiber optics, typically supported by a degree in engineering or physics. Experience with CAD software, laser simulation tools, and familiarity with industry standards and safety certifications are usually required. Strong problem-solving abilities, effective communication, and self-motivation are crucial soft skills for remote collaboration and troubleshooting. These competencies ensure high-quality laser system development, efficient remote support, and successful project outcomes in a specialized and evolving field.

What is a remote fiber laser engineer?

A Remote Fiber Laser Engineer is a technical specialist who designs, installs, maintains, and troubleshoots fiber laser systems while working remotely. Their responsibilities typically include system integration, performance optimization, and providing remote technical support to clients or internal teams. These engineers often work with advanced laser technologies used in industries such as manufacturing, telecommunications, and research. They rely on a strong background in optics, electronics, and software, and often use digital tools to collaborate and resolve issues from a distance.
What job categories do people searching Remote Fiber Laser Engineer jobs in Washington look for? The top searched job categories for Remote Fiber Laser Engineer jobs in Washington are:
What cities in Washington are hiring for Remote Fiber Laser Engineer jobs? Cities in Washington with the most Remote Fiber Laser Engineer job openings:
Infographic showing various Remote Fiber Laser Engineer job openings in Washington as of August 2026, with employment types broken down into 92% Full Time, 2% Part Time, and 6% Contract. Highlights an 87% Physical, 4% Hybrid, and 9% Remote job distribution.

Principal Electrical Systems Engineer

TalentRemedy

Herndon, VA โ€ข On-site, Remote

$142K - $174K/yr

Full-time

Re-posted 8 days ago


Job description

We are seeking a Principal Electrical Systems Engineer to join our Herndon, VA team and lead the development of advanced electro-optical and laser-based systems supporting NASA, DoD, and commercial space missions. In this role, you will serve as the technical lead for the electrical architecture of complex aerospace systems, guiding programs from concept development through integration, test, qualification, and mission deployment. You will work closely with multidisciplinary teams of optical, mechanical, software, and systems engineers to develop next-generation laser, sensing, and remote sensing technologies for demanding spaceflight applications.

This position is ideal for an experienced engineer who enjoys solving challenging technical problems, defining system architectures, mentoring engineers, and helping transition advanced research into operational aerospace systems. Responsibilities Lead the electrical architecture, design, and technical execution of complex electro-optical, laser, and sensing systems for spaceflight and defense applications. Define system-level electrical requirements, interfaces, performance budgets, and verification strategies.

Provide technical leadership for the development of high-reliability electronics, including power systems, control electronics, data acquisition systems, signal conditioning, and system interconnects. Lead electrical subsystem integration activities and ensure successful interface compatibility across multidisciplinary systems. Lead system integration, verification, validation, troubleshooting, and qualification activities.

Support customer interactions, technical proposals, design reviews, and program execution. Mentor and develop junior and mid-level engineers while helping establish engineering best practices. Participate in laboratory testing, environmental testing, and field demonstrations as required.

Support multiple concurrent R&D and production programs spanning NASA, DoD, and commercial space customers. Required Qualifications BSEE required; MSEE preferred. 15+ years of experience developing complex aerospace, defense, or spaceflight electrical systems.

Demonstrated experience serving as the technical lead, principal engineer, or system architect for complex electrical systems. Direct experience developing, integrating, testing, or qualifying electronics for spaceflight applications, including satellites, spacecraft, launch vehicles, scientific instruments, human-rated systems, or other high-reliability aerospace platforms. Strong background in system-level electrical architecture, integration, verification, troubleshooting, and qualification.

Experience with power distribution, control electronics, instrumentation, mixed-signal systems, and electrical interfaces. Experience working within multidisciplinary engineering teams and leading technical decision-making. Ability to work hands-on in laboratory environments and support system integration and test activities.

Preferred Qualifications MSEE or PhD in Electrical Engineering. Experience supporting NASA, DoD, NRO, SDA, Space Force, or commercial space programs. Experience with radiation-tolerant, radiation-hardened, or other high-reliability electronics technologies.

Familiarity with spaceflight design standards, mission assurance processes, and environmental qualification testing. Experience with electro-optical systems, laser systems, remote sensing, or LIDAR technologies. Experience leading technical teams and mentoring engineers.

Active security clearance or ability to obtain one.