Design and simulation of silicon photonic schematics and layouts
Проектирование и моделирование принципиальных схем и топологий кремниевой фотоники
2016-05-13
SCID: 54.1/g5b58nza
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fabrication variability modelingnetlist extractionpost-layout extractionring resonator circuitsilicon photonics design kit
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Abstract (AI)
Electronic circuit designers commonly start their design process with a schematic, namely an abstract representation of the physical circuit. In integrated photonics on the other hand, it is common for the design to begin at the physical component level, and create a layout by connecting components with interconnects. In this paper, we discuss how to create a schematic from the physical layout via netlist extraction, which enables circuit simulations. Post-layout extraction can also be used to predict how fabrication variability and non-uniformity will impact circuit performance. This is based on the component position information, compact models that are parameterized for dimensional variations, and manufacturing variability models such as a simulated wafer thickness map. This final step is critical in understanding how real-world silicon photonic circuits will behave. We present an example based on treating the ring resonator as a circuit. A silicon photonics design kit, as described here, is available for download at http://github.com/lukasc-ubc/SiEPIC_EBeam_PDK.
Key Findings
1
A method to create schematics from physical silicon photonic layouts via netlist extraction, enabling circuit-level simulations.
2
A silicon photonics design kit implementing these ideas is publicly available at http://github.com/lukasc-ubc/SiEPIC_EBeam_PDK.
3
Demonstration treating a ring resonator as a circuit to illustrate the approach.
4
Manufacturing variability models, such as simulated wafer thickness maps, are integrated with layout-based extraction to evaluate real-world device behavior.
5
Post-layout extraction can predict impacts of fabrication variability and non-uniformity on circuit performance using component positions and parameterized compact models.
Research Object
Silicon photonic circuit layouts and their extracted schematics (netlists) for integrated photonic designs
Research Subject
Method and process of netlist extraction from physical layouts to create schematics enabling circuit simulation and predicting impact of fabrication variability (dimensional variations, wafer thickness non-uniformity) on circuit performance, exemplified by ring resonator treated as a circuit
Publication Details
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2016-05-13
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