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Remote Das Rf Engineer Jobs in Massachusetts (NOW HIRING)

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Remote Das Rf Engineer information

What does a Remote DAS RF engineer do?

A Remote DAS RF Engineer is responsible for designing, implementing, and optimizing Distributed Antenna Systems (DAS) to enhance wireless coverage in buildings and other structures. They focus on radio frequency (RF) engineering tasks, such as signal testing, troubleshooting, and system integration, often working remotely to support multiple locations. These engineers collaborate with project managers, field technicians, and clients to ensure seamless wireless connectivity and compliance with industry standards. Their work helps improve mobile signal quality in areas where traditional coverage is weak or unavailable.

What are the key skills and qualifications needed to thrive as a Remote DAS RF engineer?

To thrive as a Remote DAS RF Engineer, you need a strong background in wireless communications, RF engineering principles, and experience with Distributed Antenna Systems (DAS), often supported by a degree in electrical engineering or a related field. Familiarity with RF design tools (such as iBwave, Atoll, or DAS OEM software), network analyzers, and relevant certifications like iBwave Level 1 or 2 is typically required. Excellent problem-solving abilities, attention to detail, and effective remote communication skills help distinguish top performers in this role. These skills ensure reliable wireless coverage, efficient troubleshooting, and seamless coordination with clients and team members from remote locations.

What are some common challenges faced by Remote DAS RF engineers, and how can they be addressed?

Remote DAS RF Engineers often encounter challenges such as troubleshooting signal issues without being physically present on-site and coordinating with on-site teams or vendors. Effective communication skills and the ability to interpret remote monitoring data are essential for diagnosing and resolving issues efficiently. Utilizing advanced network management tools and maintaining organized documentation can help streamline remote collaboration and problem resolution. Regular virtual meetings and clear reporting structures also support smooth workflows in a distributed team environment.

What is the difference between Remote Das Rf Engineer vs Remote Rf Engineer?

AspectRemote Das Rf EngineerRemote Rf Engineer
CertificationsFCC, CE, or industry-specific RF certificationsFCC, CE, or industry-specific RF certifications
Work EnvironmentDesigning and testing Distributed Antenna Systems (DAS) in various locationsDesigning, testing, and troubleshooting RF systems, including cellular and wireless networks
Industry UsageTelecommunications, cellular networks, public safety networksTelecommunications, wireless service providers, network infrastructure

The Remote Das Rf Engineer specializes in designing and deploying Distributed Antenna Systems (DAS) for improved wireless coverage, often working on large-scale infrastructure projects. The Remote Rf Engineer has a broader focus on RF systems, including cellular and wireless network testing and troubleshooting. Both roles require similar certifications and industry knowledge but differ in their specific applications and project types.

What are the most commonly searched types of Das Rf Engineer jobs in Massachusetts?

The most popular types of Das Rf Engineer jobs in Massachusetts are:

What are popular job titles related to Remote Das Rf Engineer jobs in Massachusetts?

For Remote Das Rf Engineer jobs in Massachusetts, the most frequently searched job titles are:

What job categories do people searching Remote Das Rf Engineer jobs in Massachusetts look for?

The top searched job categories for Remote Das Rf Engineer jobs in Massachusetts are:

What cities in Massachusetts are hiring for Remote Das Rf Engineer jobs?

Cities in Massachusetts with the most Remote Das Rf Engineer job openings:

Head of Education - Photonics & EM Simulation

Flexcompute Inc.

Watertown, MA • Remote

Full-time

Medical, Dental, Vision, Retirement

This job post has expired today. Applications are no longer accepted.


Job description

Flexcompute is the physics company. We scale first-principles physics into neural physics foundation models to redefine the boundaries of industrial simulation and design.

Our core technology features the world's fastest GPU solvers, delivering orders-of-magnitude speedups over traditional tools. By integrating these solvers with our proprietary AI models, we enable engineers to explore design spaces that were previously computationally inaccessible. At Flexcompute, we don't just make simulations faster; we make the "impossible" solvable, helping our partners tackle the most critical challenges in 3D-IC design, aerospace, and beyond.

About the Role

We need someone who will put Tidy3D in front of every photonics researcher, professor, and grad student in the country.

This is a hands-on, high-travel, high-visibility role. You'll spend most of your time presenting - giving talks at CLEO and Photonics West, running live simulation demos at university labs, teaching workshops where students build their first ring resonator in Tidy3D, and sitting down with professors to show them why this belongs in their syllabus.

You are not managing a team or writing strategy decks. You are the person in the room making the product click for people. You'll demo, teach, troubleshoot, write tutorials, record walkthroughs, answer questions on forums, and fly to the next campus. If a professor emails asking how to set up a grating coupler simulation for their photonics course, that's your inbox.

You'll start in photonics and EM, but as we expand into multi-physics (thermal, structural, RF), the scope grows with you.

This is a remote position based in the US or Canada. Expect frequent travel - 30-50% of your time will be at conferences, campuses, and research labs. We have an office in the Boston area if you prefer a home base.

What You'll Do

Present and Teach

  • Give talks, demos, and workshops at conferences (CLEO, Photonics West, IEEE Photonics, OFC, SPIE), universities, and company R&D groups
  • Run hands-on sessions where researchers go from zero to a working Tidy3D simulation
  • Visit university photonics, EE, and physics departments to demonstrate the platform to professors, postdocs, and grad students
  • Present at seminars, lab meetings, and departmental colloquia

Create Content

  • Write tutorials, example notebooks, and application notes (silicon photonics, optical interconnects, metasurfaces, waveguide design, etc.)
  • Record video walkthroughs and short-form demos
  • Build course-ready materials that professors can drop into their syllabi
  • Write blog posts, technical notes, and social content that drive awareness

Build Community

  • Become the face of Tidy3D in the academic photonics community
  • Grow a base of student users, faculty champions, and research group adopters
  • Engage on forums, GitHub, social media - wherever users have questions
  • Bring feedback from the field back to the product team: what's working, what's confusing, what's missing

Requirements

  • PhD or Masters in photonics, optics, electrical engineering, or a closely related field
  • You can explain the difference between TE and TM modes, design a directional coupler, and discuss dispersion engineering without checking your notes. You've worked with electromagnetic simulation in your own research.
  • Fluent in Python - You can write and debug simulation scripts live in front of an audience. You've used Jupyter notebooks for research. You can walk a student through their first API call.
  • Hands-on photonic simulation experience - You've designed and simulated photonic devices - waveguides, resonators, couplers, gratings, or similar. You've used tools like Lumerical, COMSOL, Ansys HFSS, RSoft, Meep, or similar, and you understand FDTD, FEM, or eigenmode solvers at a working level, not just conceptually.
  • A natural presenter - You're the person who volunteered to give the group meeting talk. You enjoy being in front of a room. You can make a complex topic accessible without dumbing it down. People leave your talks wanting to try the thing you showed them.
  • Energized by travel - Conferences, campus visits, and lab tours are the parts of the job you look forward to, not the parts you tolerate. You see face time as the highest-leverage activity.
  • Self-directed - Nobody is going to hand you a list of universities to visit or talks to submit. You'll identify the opportunities, pitch the abstracts, book the travel, and show up prepared. You thrive with autonomy.
Nice to Have
  • Experience in technical evangelism, developer relations, or academic outreach
  • Existing relationships within university photonics/EE departments
  • Background in silicon photonics, optical interconnects, or AI datacenter architecture
  • Experience with Tidy3D
  • Published research using electromagnetic simulation
  • Experience creating video tutorials or technical content
  • Familiarity with agentic AI, LLM-based tools, or AI-assisted design workflows
  • Experience with multi-physics simulation (thermal, structural, RF)
What We Offer
  • A leadership role at the intersection of AI and photonics, two of the fastest-moving fields in tech
  • A clear growth path as we expand into multi-physics products and new academic markets
  • The chance to become the most recognized name in photonics simulation education
  • A team of deeply technical people who care about getting this right
  • The chance to shape how an entire generation of engineers learns to work with AI-driven simulation
  • A team that is serious about its mission to advance science and technology education
  • A collaborative, technically deep culture that values curiosity and initiative

If you read this and thought "this is exactly what I want to do," we want to hear from you.

Benefits

  • Competitive compensation with equity of a fast-growing startup.
  • Medical, dental, and vision health insurance.
  • 401(k) Contribution.
  • Gym allowance.
  • Friendly, thoughtful, and intelligent coworkers.