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Re: Xrouter post# 2411

Wednesday, 01/08/2020 6:29:17 PM

Wednesday, January 08, 2020 6:29:17 PM

Post# of 6213
I’m with you strik, I want to see the $13 mil and the OI status, the now.

Funny, I said the same thing about jobs they are posting, but then I saw this one today and posted it myself. Last and third last paragraphs are interesting, reference to major global players and system on a chip (probably OI)

New job
posted on Jan 08, 2020 03:47PM
Use the IP Check tool [?]

https://www.indeed.com.sg/viewjob?jk=38cc34a7f0f232e9&q=Denselight&tk=1du1po916nhmu800&from=ja&alid=5d5a0dfa795f0008d4e82e44&utm_campaign=job_alerts&utm_medium=email&utm_source=jobseeker_emails&rgtk=1du1po916nhmu800

My bold below

Roles & Responsibilities

Design and develop both optoelectronics devices and integrated photonics sub-system platforms. Devices includes but not limited to FP lasers, DFB lasers (CW and DML), gain chips, SLEDs and semiconductor optical amplifier. Photonics integrated platforms includes but not limited to photonics integrated circuits, Silicon-based integrated platforms, standard/custom packaged modules, as well as optoelectronics sub-systems (i.e. includes both optical and electronics sub-modules) to meet design goals and requirements.




Perform simulation of optoelectronic devices (CrossLight, ALDS, Optiwave), optical ray tracing (Zemax, Optalix), thermal (Solidworks) and electrical (5Spice) properties of optoelectronics devices
Analysis of optoelectronics device epi growth, participate in wafer fabrication process integration, mask design integration, device functionality and reliability performance characterization and test results.
With reference to state-of-art competitors, simulated performance and data-mining internal test-results data-base, you will refine the design, fabrication specifications, and simulation model and parameters to optimize fit between design and measured outcomes.
Report generation of design and simulation outcome with support of experimental data, where available
Build up database of optoelectronics device design white papers, and management of all design documentation repository
Responsible for the development and optimisation of Denselight’s ILM (Integrated Laser Module) sub-systems. This includes the development of both the ILM’s optical (i.e. linewidth optimisation, stability, wavelength and power tuning, etc.) and electronics (i.e. user interface, digital control, etc.) performance.
———-
Responsible for leading/co-leading programs with a number of major global players in the development of photonic integration solutions to support the Silicon Photonics platform for datacom and sensing applications.
— —- -
Development will be beyond simplex monolithic integration with regrowth for spot size converters and array devices, towards multiple functionality PICs incorporating active devices of lasers, modulators and detectors with passive devices of waveguides, polarizers, MMI splitters and optical filters.
—- - —
Development of multiple functionality PICs designed to be compatible to Silicon Photonics to form a larger scale integrated System-on-a-Chip component.
— - ——



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