Tagged: Lumerical
-
-
October 17, 2025 at 12:08 pm
SolutionParticipantFrequency Modulation Continuous wave (FMCW) is a leading technology in the field of optical LiDAR. FMCW LiDAR offers several advantages, such as improved range resolution, better dynamic range, and the ability to measure both speed and distance simultaneously. In this example, we will demonstrate a LiDAR system using INTERCONNECT, incorporating a FMCW laser source with homodyne detection to measure both distance and speed of a moving object.
Read the full article here: https://optics.ansys.com/hc/en-us/articles/40617631207955
-
Introducing Ansys Electronics Desktop on Ansys Cloud
The Watch & Learn video article provides an overview of cloud computing from Electronics Desktop and details the product licenses and subscriptions to ANSYS Cloud Service that are...
How to Create a Reflector for a Center High-Mounted Stop Lamp (CHMSL)
This video article demonstrates how to create a reflector for a center high-mounted stop lamp. Optical Part design in Ansys SPEOS enables the design and validation of multiple...
Introducing the GEKO Turbulence Model in Ansys Fluent
The GEKO (GEneralized K-Omega) turbulence model offers a flexible, robust, general-purpose approach to RANS turbulence modeling. Introducing 2 videos: Part 1 provides background information on the model and a...
Postprocessing on Ansys EnSight
This video demonstrates exporting data from Fluent in EnSight Case Gold format, and it reviews the basic postprocessing capabilities of EnSight.
- Spontaneous Parametric Down-Conversion (SPDC) Photon Source
- Spontaneous Four-Wave Mixing (SFWM) Microring Resonator Photon Source
- Multi-Mode Interference (MMI) Coupler
- Photonic Crystal Slab (RCWA)
- Traveling Wave Mach-Zehnder Modulator
- Calculation of SPAD Photon Detection Efficiency
- Small-Scale Metalens – Field Propagation
- Diffraction-Based Overlay Metrology System Design
- Ring Modulator
- Integrated microlens and grating coupler for photonic integrated circuits
© 2026 Copyright ANSYS, Inc. All rights reserved.