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Transceivers Jobs (NOW HIRING)

Staff Embedded Software Engineer

Boston, MA · On-site

$142K - $187K/yr

Define diagnostics and monitoring architecture for photonic transceivers. * Integrate with DataCenter administration capabilities using environments such as CMIS, OpenBMC and DMTF. * Debug and ...

DSP Algorithm Engineer

Austin, TX · On-site

$141K - $165K/yr

As an Algorithm Engineer you will be part of the R&D group developing next generation coherent optical transceivers for DCI with data rates of 800Gbps and 1600Gbps. You will design, simulate, and ...

Demonstrated experience with GPS/GNSS receivers, Satellite transceivers, and cellular transceivers is a major plus * Highly familiar with VNAs, Spec Analyzers, Sig Gens, Noise-figure test ...

Acacia's coherent transceivers are also being used in space applications and are expected to be used inside data centers as interconnect speeds continue to increase. Acacia is also entering the PAM4 ...

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Transceivers information

What can you do with a degree in optics?

A degree in optics can prepare transceivers professionals to design, develop, and test optical communication systems, including fiber optics and laser components. Skills in optics, electronics, and photonics are essential, and certifications in optical networking can enhance job prospects in research, manufacturing, or telecommunications environments.

What are some common challenges faced by professionals working with transceivers, and how can they be addressed?

Professionals working with transceivers often encounter challenges such as managing signal interference, ensuring compatibility across different communication protocols, and troubleshooting hardware failures. Staying updated on industry standards and regularly calibrating equipment can help mitigate these issues. Additionally, collaborating closely with network engineers and system integrators ensures smoother integration and problem resolution. Continuous learning and hands-on experience are key to successfully overcoming these challenges.

What do transceivers do?

Transceivers are devices that both transmit and receive communication signals, commonly used in telecommunications, networking, and radio systems. They enable data exchange over various media such as fiber optics, radio waves, or cables, often requiring technical skills and knowledge of signal processing and protocols.

What is the difference between Transceivers vs Network Technicians?

AspectTransceiversNetwork Technicians
Required CredentialsCertifications like Cisco CCNA, CompTIA Network+Certifications like Cisco CCNA, CompTIA Network+
Work EnvironmentData centers, telecommunications, hardware manufacturingNetwork installation, troubleshooting, maintenance in various settings
Industry UsageNetworking hardware, telecommunications, data transmissionNetwork setup, troubleshooting, and support

Transceivers and Network Technicians often share similar certifications and work environments, but transceivers focus on hardware components for data transmission, while network technicians handle overall network setup and troubleshooting. Understanding these differences helps clarify career paths and job expectations in the networking industry.

What are transceivers in the context of networking and telecommunications?

Transceivers are electronic devices that both transmit and receive signals, enabling communication between different parts of a network. They are commonly used in networking hardware, such as switches and routers, to convert electrical signals to optical signals and vice versa for data transmission over fiber optic or copper cables. Transceivers come in various types, including SFP, QSFP, and GBIC, each designed for specific data rates and distances. Their modular nature allows for flexibility and scalability in building and upgrading network infrastructures.

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

To thrive as a Transceiver Engineer, you need strong expertise in RF/microwave engineering, signal processing, and a degree in electrical or electronics engineering. Familiarity with simulation tools like MATLAB, RF design software, and compliance with relevant industry standards and certifications is important. Analytical thinking, problem-solving, and effective teamwork are standout soft skills in this role. These skills ensure reliable design, testing, and optimization of transceiver systems that meet performance and regulatory requirements.

Who uses transceivers?

Transceivers are used by professionals in telecommunications, radio broadcasting, military, aviation, and emergency services to transmit and receive signals. These devices are essential for communication systems and often require technical skills and certifications for operation.

Where do transceivers go?

Transceivers are typically installed in electronic devices such as radios, communication equipment, or networking hardware. They are often mounted inside enclosures, racks, or cabinets and require proper placement for optimal signal transmission and reception, with considerations for cooling and accessibility.
More about Transceivers jobs
What are the most commonly searched types of Transceivers jobs? The most popular types of Transceivers jobs are:
What states have the most Transceivers jobs? States with the most job openings for Transceivers jobs include:
Infographic showing various Transceivers job openings in the United States as of July 2026, with employment types broken down into 93% Full Time, and 7% Contract. Highlights an 93% In-person, and 7% Remote job distribution.
Coherent Systems Architect - Optical Modem Development and Optimization

Coherent Systems Architect - Optical Modem Development and Optimization

Nokia

San Jose, CA • On-site

$159K - $295K/yr

Full-time

Re-posted 27 days ago


Nokia rating

8.6

Company rating: 8.6 out of 10

Based on 5 frontline employees who took The Breakroom Quiz

6th of 82 rated telecommunications companies


Job description


Imagine being part of a team that is fundamentally changing the way people communicate, the way they collaborate, the way they watch TV and explore the universe through the internet. Utilizing our uniquely differentiated technology, we have created an Intelligent Transport Network with more speed, capacity and scalability than ever before. Imagine a world with unlimited bandwidth. The network of tomorrow will allow for content and creativity limited only by the imaginations of its users.
If this is something that interests you, that excites you, come take a look at a team not bound by large company obstacles and bureaucracy, where an idea today can be set in motion tomorrow. Come take a look at Nokia!
Nokia is seeking a Coherent Optical Systems Engineer to join our Optical Systems Group (OSG). The engineer will be responsible for contributing to the design, characterization, and development of leading coherent optical transceivers based on Nokia's next-generation coherent photonic integrated circuit (PIC) and digital signal processor (DSP) technologies. The ideal candidate should be prepared to work with early prototype PIC, DSP, and analog ASIC hardware; to perform digital-optical integration, develop robust calibration and controls methodologies, and carry out performance characterization. Performance characterization will include transceiver SNR, OSNR tolerance, sensitivity studies, etc. OSG works closely with many parts of the company and the candidate should anticipate frequent interactions with the coherent ASIC team on coherent signal processing issues and ADC/DAC ENOB, with optical, high-speed analog ASIC, and systems engineering teams. A key component of this role is the ability to understand and make tradeoffs between optical, electrical, and digital capabilities in order to optimize the overall system performance.
Responsibilities
  • Digital-optical integration of next-generation coherent optical transceivers
  • Development of calibration and controls algorithms to maximize system level performance
  • Performance characterization of coherent pluggable transceivers, which will include detailed experimental validation of the constituent sub-components that comprise the pluggable, such as the analog, controls, and DSP ASICs
  • Active member of the cross-functional product development team involving software, electronics, optics, and test

Qualifications
  • Ph.D. in Electrical Engineering or Applied Physics with experience in optical communications, photonics, high-speed electronics or systems
  • New Ph.D. graduates, as well as experienced professionals, are encouraged to apply.
  • Fundamental understanding of optical communication systems, DWDM transmission systems, fiber transmission penalties, photonic integrated components, electronic (integrated) circuits, and signal analysis and processing
  • Hands-on experience working with system-level optical communication hardware and components
  • Extensive understanding of coherent communications systems, including experience with QPSK, 16QAM, and 64QAM, as well as coding and forward error correction algorithms
  • Experience characterizing high-speed RF and mm-wave interconnects, amplifiers, and components
  • Characterization of RF/mm-wave systems, such as S parameter measurements, jitter measurements, ADC/DAC performance and ENOB
  • Hands-on experience with high-speed optical and electrical tests, measurement equipment control, and data acquisition
  • Programming experience in Matlab, Python, VB.net, or C desired

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