Optiwave software can be used in different industries and applications, including Fiber Optic Communication, Sensing, Pharma/Bio, Military & Satcom, Test & Measurement, Fundamental Research, Solar Panels, Components / Devices, etc..
OptiSystem is a comprehensive software design suite that enables users to plan, test, and simulate optical links in the transmission layer of modern optical networks.
OptiSPICE is the first circuit design software for analysis of integrated circuits including interactions of optical and electronic components. It allows for the design and simulation of opto-electronic circuits at the transistor level, from laser drivers to transimpedance amplifiers, optical interconnects and electronic equalizers.
OptiFDTD is a powerful, highly integrated, and user friendly CAD environment that enables the design and simulation of advanced passive and non-linear photonic components.
OptiBPM is a comprehensive CAD environment used for the design of complex optical waveguides. Perform guiding, coupling, switching, splitting, multiplexing, and demultiplexing of optical signals in photonic devices.
OptiFiber The optimal design of a given optical communication system depends directly on the choice of fiber parameters. OptiFiber uses numerical mode solvers and other models specialized to fibers for calculating dispersion, losses, birefringence, and PMD.
Emerging as a de facto standard over the last decade, OptiGrating has delivered powerful and user friendly design software for modeling integrated and fiber optic devices that incorporate optical gratings.
OptiConverge is a collaborative integration framework that seamlessly combines two or more Optiwave products (e.g., OptiSystem, OptiSPICE, OptiFDTD, etc.) and other third party products into unified solutions. Designed to streamline complex workflows, it empowers users to achieve their goals faster by harnessing the collective power of our trusted Optiwave tools.
Optiwave software can be used in different industries and applications, including Fiber Optic Communication, Sensing, Pharma/Bio, Military & Satcom, Test & Measurement, Fundamental Research, Solar Panels, Components / Devices, etc..
OptiSystem is a comprehensive software design suite that enables users to plan, test, and simulate optical links in the transmission layer of modern optical networks.
OptiSPICE is the first circuit design software for analysis of integrated circuits including interactions of optical and electronic components. It allows for the design and simulation of opto-electronic circuits at the transistor level, from laser drivers to transimpedance amplifiers, optical interconnects and electronic equalizers.
OptiFDTD is a powerful, highly integrated, and user friendly CAD environment that enables the design and simulation of advanced passive and non-linear photonic components.
OptiBPM is a comprehensive CAD environment used for the design of complex optical waveguides. Perform guiding, coupling, switching, splitting, multiplexing, and demultiplexing of optical signals in photonic devices.
OptiFiber The optimal design of a given optical communication system depends directly on the choice of fiber parameters. OptiFiber uses numerical mode solvers and other models specialized to fibers for calculating dispersion, losses, birefringence, and PMD.
Emerging as a de facto standard over the last decade, OptiGrating has delivered powerful and user friendly design software for modeling integrated and fiber optic devices that incorporate optical gratings.
OptiConverge is a collaborative integration framework that seamlessly combines two or more Optiwave products (e.g., OptiSystem, OptiSPICE, OptiFDTD, etc.) and other third party products into unified solutions. Designed to streamline complex workflows, it empowers users to achieve their goals faster by harnessing the collective power of our trusted Optiwave tools.
I got the output when I run it on matlab.(Standalone code)I’m entirely new with this channel modelling in optisystem, even in matlab cosimulation there is nothing related to channel model.So please explain me whether I need to write a code seperately for this standalone code or any interface functions i need to mention.The project I need to develop is Ocdma architecture.
I even tried with this component,I got the output for that component.But my panel is expecting to do with matlab,in this matlab I can define room dimensions and can differentiate Los and Nlos channels.Please help me to modify this standalone code to optisystem based code.
Hello Sir,
I tried with your code but I didn’t got output.I tried with all the basic examples,I’m not get into it.I didn’t know what i need to give the input for output port1. Please help me with this project.This is my first project on optisystem with matlab interface So please help me out sir.
1.Tried ocdma with optical fiber component,I’m getting the ber result.
2.When I need to try it out with the Channel models(Los and Nlos ),I’m not getting out the output.atleast for three users I need to get the output sir.
I’m trying to construct a healthcare monitoring system with medical nodes upto 10, considering the date rate lower than 1Mbps with the help of Ir technology.When I tried to simulate my network I’m not getting any response from the matlab component.I’ve posted my LOS channel matlab code few days back to check interface problems in the code.
I’m getting output when I tried the same code on matlab, but if I insert the same file in the matlab component of the optisystem,I’m not getting the output.
Sir I don’t have any syntax error, when I run in the matlab software it is working, but when I tried to use it in matlab component with same matlab code in optisystem I’m not getting output.So please help me out
Hello sir,
I need to construct a wireless channel using matlab component.When I tried to add the normal matlab code I’m not getting output. Please help me out
Thanks and Regards
Gopi