Nokia

Coherent Systems Architect - Optical Modem Modeling and Specification

Nokia$130K — $155K *
Telecommunications & Hardware
Less than 5 years of experience
Job Overview by Ladders

Qualifications

  • PhD in Electrical Engineering or Applied Physics with 0-3 years experience in optical communications or related fields.
  • Basic knowledge of optical communication systems and DWDM transmission.
  • Strong mathematical skills for modeling optical communication systems and components.
  • Familiarity with coherent communications systems and their modulation formats (QPSK, 16QAM, 64QAM).
  • Understanding of high-speed RF and mm-wave components and system performance implications.
  • Experience in modeling linear and nonlinear signal impairments.
  • Proficiency in programming with Matlab, Python, VB.net, or C.

Responsibilities

  • Develop and maintain simulation environments for coherent MODEM design and testing.
  • Guide design decisions from initial product definition to manufacturing with simulation results.
  • Evaluate digital signal processing algorithms and their transistor-level circuit impacts.
  • Project performance based on optical channel impairments and line-systems.
  • Collaborate with design teams to optimize system-level performance based on hardware specifications.
  • Document electrical and optical performance specifications for next-generation platforms.
  • Engage with customers on performance improvements and discuss vendor agreements.

Benefits

  • Work in a leading-edge technology environment with a focus on innovation.
  • Collaborate with cross-functional teams and industry experts.
  • Opportunity for direct customer engagement and impact on networking solutions.
Full Job Description
Nokia is seeking a Coherent Optical System Architect to join our Optical Systems Group (OSG). The engineer will be responsible for contributing to the development of leading coherent MODEMs based on Nokia's next-generation coherent photonic integrated circuits (PICs). The ideal candidate will develop and maintain state-of-the-art simulation environments that guide Nokia's MODEM design including its digital, analog and optical sub-systems. This involves the modeling and systematic breakdown of all MODEM impairments with continuous alignment to experimental measurements of early prototype hardware. Sophisticated simulation platforms guide major design decisions and serve as invaluable feedback to cross-functional design teams throughout the entire development cycle of Nokia's next generation optical engines. OSG works closely with many parts of the company and the candidate should anticipate frequent interactions with the digital ASIC team on digital signal processing aspects and with photonic integrated circuit, high-speed analog ASIC, and line-systems engineering teams. Additionally, OSG frequently works with customers and internal networking groups on performance projections and network level impact of our coherent MODEMs. 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 vertically integrated system performance. Responsibilities 37Nokia's next generation communications platforms are defined, developed, and optimized based on sophisticated, end-to-end simulation platforms that are continuously fed with measurements of early prototypes and mature hardware. 37As the design space of modern optical engines is infinitely vast compared to prototype development and timescales of semiconductor device fabrication, your simulation results will guide our design and lead key design decisions from initial product definition to early design phases of MODEM development to configuration optimization in the final stages of manufacturing and production. This requires a detailed and deep understanding of all MODEM impairments in the digital, analog and optical domain. 37You will be evaluating the effectiveness of state-of-the-art digital signal processing algorithms, estimating the impact of transistor-level design choices in analog circuits and predict the MODEM performance penalties of integrated optical components such as Mach-Zehnder modulators and semiconductor optical amplifiers. Furthermore, you will be projecting the reach of our optical engines based on various linear and nonlinear impairments of the optical fiber channel and deployed line-systems. 37Through frequent interaction with the relevant design teams, you will assist in design, finding relationships between low level hardware specifications and its system level impact and optimizing performance-critical aspects to maximize overall modem performance. 37Results will be presented internally and documented as electrical and optical performance specifications for next-generation platforms. 37Some external and customer-facing interactions may be required, such as expected improvements of our next-generation engines on customer networks and contributing to forums discussing multi-source vendor agreements. Qualifications Expertise on all points simultaneously is not required. 37PhD. in Electrical Engineering or Applied Physics with 0- 3 years of industrial or academic experience in optical communications, photonics, high speed electronics or systems. 37Fundamental understanding of optical communication systems, DWDM transmission systems, fiber transmission penalties, photonic integrated components, electronic (integrated) circuits, and signal analysis and processing. 37Experience and a strong mathematical understanding of the analytical and numerical modelling of system-level optical communication systems and components. 37Extensive understanding of coherent communications systems, including experience with QPSK, 16QAM, and 64QAM, as well as coding and forward error correction algorithms. 37Experience characterizing high-speed RF and mm-wave interconnects, amplifiers, and components such as S parameter, jitter, ENOB, nonlinear compression and their system implications 37Experience in the characterization and modeling of various linear and nonlinear signal impairments, e.g., filtering, noise, nonlinear amplitude and phase distortions, dispersion etc. 37Programming experience in Matlab, Python, VB.net, or C desired. NION2026

About Nokia

Nokia is a Finnish multinational telecommunications, information technology, and consumer electronics company. The company was founded in 1865 and has since grown to become one of the largest telecommunications equipment manufacturers in the world. Nokia's products include mobile phones, smartphones, and network equipment, among others. The company is committed to innovation and has a strong focus on research and development. Nokia is also committed to sustainability and has set ambitious targets for reducing its environmental impact. The company operates in over 100 countries and has a strong presence in Europe, Asia, and North America.
Learn more about Nokia
Size
87,927 employees
Market Cap
$25.8 billion
Industry
Net Income
-$2.5 billion
Founded
1865
5 Year Trend
-1.2%
Revenue
$21.8 billion
NASDAQ

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