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.
Hello Aabid,
I was trying this example (http://staging.optiwave.com/resources/applications-resources/optical-system-digital-modulation-dpsk/) according files which you’ve attached (DPSK Step xx) and if I run the project, the output behind DPSK sequence decoder is zero (I made screen, I’ve attached screen below). Maybe the same error will be in my 32QAM project that output behind decoder is all zero.
Regards
Hello Aabid,
We have version 14 but I see examples only from old version (12). If it possible upload all files i will be glad. Thank you very much! 🙂
Regards
Hello,
I’ve looked again and we have examples only in directory Optisystem 12 and in Optisystem 14 isn’t any examples. I’Ve attached screen with qam examples which I have. Are examples in version 14 different or better? It is pity that 8PSK and 16PSK above are coherent detection. Thanks
Regards
Hello Aabid,
Thank you for files. I have looked to examples folders but we haven’t this files and I don’t know why. Once again thank you, i will look at it.
Regards
Hello Aabid,
Thank you very much for your interest to help me. Yes, I need QAM and as well PSK because I’m working with these modulations schemes at laboratory at school and I have to simulate also. Thanks.
Regards
Hi Aabid,
Yes, I did. I have tried to increase power upto 15mW but still the same. Is good to use BER Test or not? I will be very glad if you are going to check this tomorrow. Thanks.
Regards
Hi Aabid,
I have set power 5mW, FSO distance 1km with 0 dB/km attenuation because we have at university simulation box for create atmospheric effects (lenght 5 m) and I have to try simulation in Optisystem but I have null experience with Optisystem. So I have tried change bit rate and symbol rate but still the same results. Thanks.
Regards
Hi Damian,
Could you to attach examples for 8QAM and 16QAM, please? Now we have Optisystem 14 but examples of modulation scheme I see from Optisystem 12 where are the old examples. I have done 4QAM but now I don’t know how to set up M-ary threshold detectors for higher QAM modulation. If it’s possible, you could send also 8-PSK. Thank you very much..
Regards