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Optoelectronics Jobs in New Jersey (NOW HIRING)

Develop and implement testbeds to evaluate the performance of optoelectronic chips, components, and modules * Provide test engineering support for the design, prototyping, and delivery of proof-of ...

Develop and implement testbeds to evaluate the performance of optoelectronic chips, components, and modules * Provide test engineering support for the design, prototyping, and delivery of proof-of ...

Design and develop test methods, processes, and hardware for optoelectronic packages, modules and subassemblies. * Identify, design, develop and procure interfaces and/or specialized equipment ...

Design and develop test methods, processes, and hardware for optoelectronic packages, modules and subassemblies. * Identify, design, develop and procure interfaces and/or specialized equipment ...

$141K - $182K/yr

The successful candidate will have a strong background in optical engineering, photonics, quantum optics, and optoelectronics, along with experience testing and troubleshooting optical systems and ...

... optoelectronic devices. The successful candidate will operate autonomously, representing QCi at a senior level and collaborating with engineering to shape and close opportunities. Our team develops ...

... optoelectronic devices. The successful candidate will operate autonomously, representing QCi at a senior level and collaborating with engineering to shape and close opportunities. Our team develops ...

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Optoelectronics information

See New Jersey salary details

$46.2K

$87.5K

$138.1K

How much do optoelectronics jobs pay per year?

As of Sep 5, 2026, the average yearly pay for optoelectronics in New Jersey is $87,461.00, according to ZipRecruiter salary data. Most workers in this role earn between $71,100.00 and $101,500.00 per year, depending on experience, location, and employer.

What is optoelectronics?

Optoelectronics is a branch of electronics that involves devices and systems that source, detect, and control light. This includes technologies such as LEDs, laser diodes, photodetectors, and solar cells, which are used in applications like fiber optic communications, lighting, medical equipment, and imaging systems. Professionals in optoelectronics design, develop, and test these light-based components and systems. The field combines principles from physics, electronics, and materials science to innovate and improve light-based technologies.

What are the key skills and qualifications needed to thrive as an optoelectronics engineer?

To thrive as an Optoelectronics Engineer, a strong background in physics, electrical engineering, and optics, often supported by a degree in a related field, is essential. Familiarity with simulation software, optical design tools (such as Zemax or COMSOL), and relevant industry certifications is typically required. Strong problem-solving abilities, attention to detail, and effective teamwork help professionals excel in this highly technical field. These skills are crucial for developing innovative optoelectronic devices and ensuring their reliability and performance in practical applications.

What are some typical challenges faced by professionals working in optoelectronics, and how can they be addressed?

Professionals in optoelectronics often encounter challenges such as rapid technological advancements, the need for precise alignment and calibration of optical components, and stringent quality standards. Keeping up with new materials and fabrication techniques can require continuous learning. Collaboration with multidisciplinary teams—including engineers, physicists, and manufacturing specialists—is vital to address these issues efficiently. Engaging in ongoing training, attending industry conferences, and leveraging simulation tools can help professionals stay ahead and maintain high-quality results in their projects.

What is the difference between Optoelectronics vs Photonics Engineer?

AspectOptoelectronicsPhotonics Engineer
Required CredentialsBachelor's or higher in Electrical Engineering, Physics, or related fieldsBachelor's or higher in Optical Engineering, Physics, or related fields
Work EnvironmentResearch labs, manufacturing, telecommunicationsResearch and development, fiber optics, laser systems
Industry UsageOptical communication, display technology, sensorsLaser systems, optical sensors, imaging systems

Optoelectronics focuses on devices that convert electrical signals into optical signals and vice versa, such as LEDs and photodetectors. Photonics engineers work on the broader science of light manipulation, including laser systems and optical communications. While overlapping in optical technologies, optoelectronics emphasizes device development, whereas photonics covers the science and engineering of light-based systems.

What are popular job titles related to Optoelectronics jobs in New Jersey?

For Optoelectronics jobs in New Jersey, the most frequently searched job titles are:

Infographic showing various Optoelectronics job openings in New Jersey as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution, with an average salary of $87,461 per year, or $42 per hour.

Optoelectronic Integration Researcher

Nokia

Murray Hill, NJ • On-site

Full-time

Re-posted 15 days ago


Nokia rating

7.9

Company rating: 7.9 out of 10

Based on 6 frontline employees who took The Breakroom Quiz

30th of 101 rated telecommunications companies


Job description

We are seeking an Optoelectronic Engineer to perform leading research and development in next-generation optoelectronic integration technologies enabling high-bandwidth electrical and optical interconnects, heterogeneous integration, and co-packaged optical systems. This role sits at the intersection of high-frequency electrical packaging, photonic integration, heterogeneous assembly, and advanced interconnect design. The successful candidate will define how EICs, PICs, advanced substrates, and optical interfaces are co-packaged to push the boundaries of performance and efficiency.

You have:

  • Ph.D. degree in Electrical Engineering, Applied Physics, or related field with minimum of 2 years of industry experience (or MSEE with 6 years)
  • Experience with the design and characterization of high-speed optoelectronic interfaces (drivers/TIAs and detectors/modulators)
  • Expertise in 3D EM design and Signal Integrity principles, including high-speed interconnect and transitions using EDA software (ANSYS HFSS, Keysight ADS) and Photonic simulation tools (ANSYS Lumerical FDTD, Mode)
  • Knowledge of IC packaging materials and techniques (wire-bond and flip-chip), substrate design, and microelectronics assembly process flows
  • Knowledge of high-speed test and measurement equipment (network analyzer, oscilloscope)
  • Strong technical writing skills for publication

It would be nice if you also had:

  • Experience with heterogeneous integration or co-packaged optics (CPO)
  • Familiarity with EIC (SiGe, RFSOI) and/or PIC platforms (InP, SiPh, TFLN)
  • Understanding of optical coupling structures (grating, evanescent)
  • Experience with scripting/automation (Python, MATLAB)
  • The candidate will work directly with other Nokia Bell Labs researchers and Nokia business units to help define integration architectures, advanced substrates, and assembly processes for optical subassemblies. As part of Nokia Bell Labs, you will contribute to forward-looking research while shaping practical integration approaches for next-generation optical systems.
  • The candidate will have expertise in the design and optimization of high-speed (>100 GHz) electrical and optical I/O, including EIC-PIC (driver-modulator and detector-TIA), substrate and package transitions, and optical interconnects (waveguides, couplers and fiber interfaces).
  • The candidate will define and evaluate integration architectures for co-packaged and heterogeneous subsystems, including substrate materials, assembly techniques, and high-density electrical and optical routing strategies.
  • The candidate will conduct high-frequency test and measurement, including network analysis and time-domain characterization, and have familiarity with wireline modulation formats (PAM, QAM).
  • The candidate will work well and efficiently within a larger team with strong interpersonal skills and collaborate with other research groups in Nokia Bell Labs.

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