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<body><h1>hfss training manual</h1><table class="table" border="1" style="width: 60%;"><tbody><tr><td>File Name:</td><td>hfss training manual.pdf</td></tr><tr><td>Size:</td><td>1469 KB</td></tr><tr><td>Type:</td><td>PDF, ePub, eBook, fb2, mobi, txt, doc, rtf, djvu</td></tr><tr><td>Category:</td><td>Book</td></tr><tr><td>Uploaded</td><td>27 May 2019, 13:55 PM</td></tr><tr><td>Interface</td><td>English</td></tr><tr><td>Rating</td><td>4.6/5 from 737 votes</td></tr><tr><td>Status</td><td>AVAILABLE</td></tr><tr><td>Last checked</td><td>18 Minutes ago!</td></tr></tbody></table><p><h2>hfss training manual</h2></p><p>Discover everything Scribd has to offer, including books and audiobooks from major publishers. Start Free Trial Cancel anytime. Report this Document Download Now Save Save HFSS for Antenna-RF Training Guide v12 For Later 100% (4) 100% found this document useful (4 votes) 2K views 458 pages HFSS for Antenna-RF Training Guide v12 Uploaded by Nui Computercenter Swu Onk Description: Full description Save Save HFSS for Antenna-RF Training Guide v12 For Later 100% 100% found this document useful, Mark this document as useful 0% 0% found this document not useful, Mark this document as not useful Embed Share Print Download Now Jump to Page You are on page 1 of 458 Search inside document Browse Books Site Directory Site Language: English Change Language English Change Language. It integrates simulation, \nvisualization, solid modeling, and automation in an easy-to-learn environment where solutions to your 3D EM problems \nare quickly and accurately obtained. Ansoft HFSS employs the Finite Element Method(FEM), adaptive meshing, and \nbrilliant graphics to give you unparalleled performance and insight to all of your 3D EM problems. Ansoft HFSS can be \nused to calculate parameters such as S-Parameters, Resonant Frequency, and Fields. In industry, Ansoft HFSS \nis the tool of choice for high-productivity research, development, and virtual prototyping. \n\n \n Introduction\n \n 1-5\nANSYS, Inc. Click HFSS 11.\n2. Or Double click on the HFSS 11 icon on the Windows Desktop\n \n NOTE: You should make backup copies of all HFSS projects created with a \n \n previous version of the software before opening them in HFSS v11 \n\n \n Introduction\n \n 1-6\nANSYS, Inc. This feature automatically \nscans your system to find any Ansoft software, and then allows you to download any updates if they are available. \n\n \n Introduction\n \n 1-7\nANSYS, Inc. An icon appears in the lower part of the Ansoft HFSS window. If the icon is not visible, \nit may be behind another open document.<a href="http://ap116.ru/userfiles/harvest-royal-air-mattress-manual.xml">http://ap116.ru/userfiles/harvest-royal-air-mattress-manual.xml</a></p><ul><li><strong>ansys hfss training manual, hfss training manual, hfss training manual pdf, hfss training manual software, hfss training manual download, hfss training manual instructions, hfss training manual instruction, hfss training manual model, hfss training manual tool, hfss training manual user.</strong></li></ul> <p> Resize any open documents as necessary. You are prompted to Save unsaved designs.\n \n Design icons\n \n Iconize\n \n Symbol \n\n \n Introduction\n \n 1-16\nANSYS, Inc. Most of the available toolbars are displayed in this \nillustration of the Ansoft HFSS initial screen, but your Ansoft HFSS window probably will not be arranged this way. The toolbars with a check mark beside them are visible; the toolbars without \na check mark are hidden. See Customize and Arrange Toolbars \n on the next page. \n\n \n Introduction\n \n 1-17\nANSYS, Inc. The Solution Type defines the type of results, how the excitations \nare defined, and the convergence. The following Solution Types are available:\n \n 1. Driven Modal - calculates the modal-based S-parameters. The S-matrix solutions will be expressed in terms of \nthe incident and reflected powers of waveguide modes.\n \n 2. Driven Terminal - calculates the terminal-based S-parameters of multi-conductor transmission line ports. Port properties can be accessed by double clicking on Waveport1 in Project tree \n\n \n Introduction\n \n 1-30\nANSYS, Inc. Model Analysis was used here and allows the user to \n \n manually select which geometry features are removed. The Ansoft Support Pages provide additional \n \n documentation, training, and application notes. The best \n \n performance is achieved at normal incidence. By performing a Boolean \n \n subtraction, the resulting geometry is a ring.\n \n For this model, two sets of rings are necessary. It should be noted that order of the editing is important. The size \n \n of the port is determined by the physical dimensions of the waveguide. \n \n Because the waveguide is circular, we must Polarize the E-Field for the \n \n port definition.\n \n Free Space\n \n Since we are evaluating a radiating structure, we need to create a free \n \n space environment for the device to operate in. This can be achieved by \nusing the Radiation Boundary condition or a Perfectly Matched Layer \n \n (PML).<a href="http://iucecb.com/files/harvest-trees-manually.xml">http://iucecb.com/files/harvest-trees-manually.xml</a></p><p> The analytical solution is only \n \n invoked for canonical waveguide structures like rectangular \n \n waveguide, circular waveguide and coaxial waveguide. For \n \n all other port geometries HFSS will enforce the polarization \nwith out the analytical solution. Any mode that is not defined in the Modes Setup \nTab will be short circuited at the port and reflected back toward the array. The modes with the least attenuation are going to occur at the highest \n \n simulation frequency and at locations in the scan volume that are close to grating \n \n lobes.The TE00 and TM00 modes correspond to the main beams of the x \n \n and y polarized patterns. Although these modes are propagating for this instance, they may not be \n \n propagating for other cases where the frequency is lower or the scan angle as \n \n extreme. The cases where any of these modes are heavily attenuated can cause an \n \n unusually dense mesh concentrated at the port. This will significantly decrease the \n \n simulation efficiency and in many phased array cases there is more interest in \nterminating these modes than exciting them. Which modes affect the \n \n adaptive meshing process is controlled by checking the box under the Affects \n \n Refinement column on the 3D Refinement Tab. This exercise is only interested in \nexciting the problem from the waveguide side.The main beams (TE00 and \n \n TM00) are the 3rd and 4th Floquet Modes.This is not a requirement for defining ports. This is not a requirement for defining ports. For this simple \n \n design with only a single variable we could use the design curves to make \n \n educated guesses at performance targets that are not contained in the \n \n Parametric Sweep. Ansoft HFSS and Optimetrics with Optimization takes the \n \n guess work out of achieving performance targets. To demonstrate this we will \ntarget a minimum S12 at 13GHz.</p><p> The dimensions of the rectangle are roughly \n \n ten times the width of the transmission line by eight times the height of the \n \n substrate.\n \n REMEMBER: These are only guidelines !!!\n \n The height of the port will be affected by the permittivity of the substrate. The narrower the width (image on \n \n right), the more the fields will couple to the side walls of \nthe port. This effect may not be physical. The LVDS technology is used for multi-point \n \n communications and uses a bus similar to the system shown below. Lets reduce the model to 100 mils and use \n \n de-embedding to add the extra length.\n \n Material Properties\n \n To start with, lets make an engineering assumption that the material \n \n properties are constant over frequency. In addition, we will assume that \n \n modeling the traces as perfect conductors will not have an impact on the \nperformance of the device. This will speed up the simulation. As an \n \n additional exercise, the model can be modified to include frequency \n \n dependent materials and lossy conductors.\n \n Ground Planes\n \n Since we are ignoring the metal conductivity, we do not need to create \n \n objects for the ground planes. Instead, we will utilize the background \n \n (Perfect Conductor) boundary. Stop: 12mil\n \n 11. This \nwill speed up the simulation.\n \n Free Space\n \n We should expect some radiation to occur because of the slot in the ground, \nhowever, it should not be very strong. Because there is limited radiation the \nseparation from the device and the free-space boundary can be kept to a \nminimum. The incidence angle of the radiation is unknown, therefore we \nshould use a PML.ANSYS, Inc. ProprietaryAll other product names mentioned in this manual are trademarks or registered trademarks of their Documentation Review and Approval Procedures. “This ANSYS Inc. software product (the. Program) and program documentation (Documentation) are furnished by ANSYS, Inc. under an.</p><p> ANSYS Software License Agreement that contains provisions concerning non-disclosure, copying, Program and Documentation may be used or copied only in accordance with the terms of that. License Agreement.”. Proprietary data. Unauthorized use, distribution, or duplication is prohibited.It integrates simulation, Ansoft HFSS employs the Finite Element Method(FEM), adaptive meshing, and Typical uses include:This allows you to solve any Ansoft pioneered the use of the Finite Element Today, HFSS continues to lead the industry with. In industry, Ansoft HFSS IntroductionClick HFSS 11.This feature automatically IntroductionWhen you hold the The Ansoft Support Pages provide additional IntroductionProperty VertexAlso, you can have multiple views of the Horizontally.An icon appears in the lower part of the Ansoft HFSS window. If the icon is not visible, Resize any open documents as necessary. Select the menu item Window. You are prompted to Save unsaved designs.Most of the available toolbars are displayed in this The toolbars with a check mark beside them are visible; the toolbars without Click the toolbar name to turn its display on or off. See Customize and Arrange Toolbars Creating designs, involves the following:IntroductionAnalysisSolveIntroductionThe Solution Type defines the type of results, how the excitations The following Solution Types are available:The S-matrix solutions will be expressed in terms of The Eigenmode solver finds the resonant This was the only convergence method available for Driven However, once the file has been opened and saved, HFSS v11 format. ANSYS, Inc. ProprietaryHFSS is widely used for Finite Element MethodIntroductionMicrowave Devices in Three Dimensions, IEEE Trans Magnetics, pp 1596-1599, Vol. 36, N.</p><p>4, July 2000Hence, the final SimulatorOperationsSolution SetupRefinementVertexThe S-matrix The Eigenmode solver finds the resonant Default RotationPress the appropriate Port properties can be accessed by double clicking on Waveport1 in Project tree IntroductionNote: Dialog Remembers Reference ConductorsThis method fits s-This information can be directly used in the Equation Based Surface. Sphere, Torus, Helix, Spiral, Bond WireTo select the object simply click the left mouse button.This can be a local or global CSThis does not apply to sheet objectsFor healing, all SolveANSYS, Inc. ProprietaryIn addition, the Port 3Constant Zo IntroductionA different excitation field pattern Determines:Port1 Port2Picture courtesy of Tektronix IntroductionReturn PathResultsANSYS, Inc. ProprietaryResonator Pyramidal Antenna IntroductionLAuLNiLCuLAuLNiLCuBoundaryBoundaryMeshLambda Refinement Volumetric Port 3H boundariesIf meeting height When in doubt, run a ports-only Zpv for impedance calculationWaveguideUser-defined ZoThis example is intended to show you how to create, simulate, and analyze a Training ManualThe following features of the Ansoft HFSS Design Environment are used to Click HFSS 11.By performing a Boolean Instead of manually creating If you make Training ManualUse the rotate button in between To select the object p1:Conductor listSphereFar fields are calculated by integrating the fields on the radiation surface. To ObjectsRadiation PatternThis example is intended to show you how to create, simulate, and analyze a Training ManualThe following features of the Ansoft HFSS Design Environment are used to This can be achieved by Click HFSS 11Training ManualSphereRadiation PatternCurve InfoSetup1: LastAdaptiveSetup1: LastAdaptiveSetup1: LastAdaptiveSetup1: LastAdaptiveThis example is intended to show you how to create, simulate, and analyze a Click HFSS 11.Training ManualTraining ManualTraining ManualTraining ManualSphereManager.All to remove the marker.</p><p>Setup1: Sweep1Radiation PatternCurve InfoSetup1: Sweep1Setup1: Sweep1This example is intended to show you how to create, simulate, and analyze a Click HFSS 11To set the default material:To create the air:SphereTraining ManualTo create an analysis setup. SetupTo add a frequency sweep. SweepSetup1: Sweep1Radiation PatternCurve InfoSetup1: Sweep1Setup1: Sweep1Setup1: Sweep1Setup1: Sweep1This example is intended to show you how to create, simulate, and analyze a The following features of the Ansoft HFSS Design Environment are used to To access Ansoft HFSS, click the Microsoft Start button, select Programs, and. Click HFSS 11To set the tool options:To open a new project:To set the solution type:To set the units:To set the default material:To create the waveguide:To create the airbox:To select the Master boundary faceTo select the Master boundary faceTo select the Slave boundary faceTo select the Slave boundary faceTo create Slave boundaryTo select the Waveport faceLine Column and select New LineThe analytical solution is only HFSS still performs a To select the FloquetPort faceAny mode that is not defined in the Modes Setup. Tab will be short circuited at the port and reflected back toward the array. For We will then restrict the The TE00 and TM00 modes correspond to the main beams of the x This will significantly decrease the To improve the simulation’s efficiency Which modes affect the This exercise is only interested in Therefore none of the Floquet Modes To create an analysis setup:To create an analysis setup:To save the project:To validate the model:Manager.</p><p>To start the solution process:To view the Solution Data:Select the To create a Rectangular plot:This is caused by the TE10 waveguide mode Training ManualFor this array design, we want to see the effect of scan angle on the input match Create an analysis setup:To create a parametric setupTo save the project:To start the solution process:To view the Optimetrics Results:To create a report:The main beams (TE00 and These modes propagate to the edge of real space.To create a report:Curve InfoSetup2: LastAdaptiveSetup2: LastAdaptiveSetup2: LastAdaptiveTo create a report:Curve Info. Setup2: LastAdaptiveThis example is intended to show you how to create, simulate, and analyze a Click HFSS 11.This makes it easier to see the boundary Adaptive PassS e t u p 1: A d a p t ive P a s sS e t u p 1: A d a p t ive P a s sS e t u p 1: A d a p t ive P a s sThis example is intended to show you how to create, simulate, and analyze a Training ManualThe following features of the Ansoft HFSS Design Environment are used to Click HFSS 11.Training ManualTraining ManualTraining ManualGraphical face selection can Graphical face selection can Manager.Adaptive PassThis example is intended to show you how to create, simulate, and analyze a ring Training ManualClick HFSS 11.We could use The shape of the The shape of the Training ManualWave Port Face Training ManualTraining ManualAdaptive PassManager.Adaptive PassThis example is intended to show you how to create, simulate, and optimize a Training ManualThe following features of the Ansoft HFSS Design Environment are used to Click HFSS 11.Conductor in Conducting Objects. Click OK Training ManualTraining ManualManager.All to remove the marker. Training ManualDuring the design of a microwave device, it is common practice to develop Ansoft HFSS with Optimetrics The Parametric Sweep was useful for generating design curves.</p><p> For this simple To demonstrate this we will Since this device has a very high Q, we will This will reduce the amount of simulation time required to achieve the Setup2:LastAdaptive from the list of solutionsPlot 1. Training ManualThis example is intended to show you how wave port size can influence the Training ManualThe following features of the Ansoft HFSS Design Environment are used to Click HFSS 11.The dimensions of the rectangle are roughly The wider the Training ManualTraining ManualManager.Training ManualFrom the plot You probably shouldn’t even try as the higher order Training ManualPort Width at a fixed frequencyThis example is intended to show you how to create, simulate, and analyze a Click Maxwell 12.Enter 200A for the variable value, including the unit Training ManualAssign Insulating Boundary conditionTo assign boundary form selected faces:To setup solution for analysis:To save the project:To run project validation before simulation:To create a field overlay plot of the static bias field:To copy an object to the clipboardClick HFSS 11.This makes it easier to see the boundary Adaptive PassTraining ManualThis example is intended to show you how to create, simulate, and analyze a Click HFSS 11.Return Selection mode to “Object”Training ManualManager.Select the PlotCurve InfoSetup1: Sweep1Setup1: Sweep1Setup1: Sweep1Setup1: Sweep1 Training ManualTraining ManualThis differential pair example is intended to show you how to create, simulate, The LVDS technology is used for multi-point The following features of the Ansoft HFSS Design Environment are used to Before we jump into setting up this device lets review the design. Lets reduce the model to 100 mils and use In addition, we will assume that This will speed up the simulation. As an Instead, we will utilize the background If we need to investigate the effects of Training ManualSince we are going to use the model for SPICE simulation, the frequency range The minimum frequency should Click HFSS 11.</p><p>Select the object Port1. Wave Port, a window appears and click OK. The wave port and terminals are Then add a new diff pair. Training ManualTraining ManualManager.Training ManualTraining ManualDuring the design of a device, it is common practice to develop design trends based on W ? 12 milsS ? 21 milsSetup1: LastAdaptiveSetup1: LastAdaptiveSetup1: LastAdaptiveSetup1: LastAdaptiveSetup1: LastAdaptiveSetup1: LastAdaptiveUsing the project tree, expand the Field Overlay, E Field.To save the project:To Exit HFSS:Ansoft and select the Designer 4 program group. Click Ansoft Designer 4.Model.Place the HFSS model in the schematicTo finish hit Esc key.Vdiff as shown below. Training ManualAnalysisRectangular Plot This example is intended to show you how to create, simulate, and analyze a Trace:The following features of the Ansoft HFSS Design Environment are used to create Before we jump into setting up this device lets review the design. Because there is limited radiation the Click HFSS 11.Training ManualTraining ManualTraining Manual. To browse Academia.edu and the wider internet faster and more securely, please take a few seconds to upgrade your browser. You can download the paper by clicking the button above. Course Antennas and Radiation. The S-matrix solutions will be expressed in terms of the incident and reflected powers of waveguide modes. Generalized S-parameters Driven Terminal - calculates the terminal-based S-parameters of multi-conductor transmission line ports. The Smatrix solutions will be expressed in terms of terminal voltages and currents. Eigenmode calculate the eigenmodes, or resonances, of a structure. The Eigenmode solver finds the resonant frequencies of the structure and the fields at those resonant frequencies. Convergence Driven Modal Delta S for modal S-Parameters. Driven Terminal Delta S for the single-ended or differential nodal S-Parameters. All rights reserved.</p><p> All other product names mentioned in this manual are trademarks or registered trademarks of their respective manufacturers. Disclaimer Notice: This document has been reviewed and approved in accordance with the ANSYS, Inc. Documentation Review and Approval Procedures. “This ANSYS Inc. Software product (the Program) and program documentation (Documentation) are furnished by ANSYS, Inc. Under an ANSYS Software License Agreement that contains provisions concerning non-disclosure, copying, length and nature of use, warranties, disclaimers and remedies, and other provisions. Proprietary data. Unauthorized use, distribution, or duplication is prohibited. All Rights Reserved. Document Directory Database Online Ansoft Hfss 13 User Manual Ansoft Hfss 13 User Manual - In this site is not the same as a answer directory you purchase in a wedding. The philosophy behind the design of suitable high frequency device is required for day to day knowledge of next generation students. Our aim is to perform a retrospective review of the current literature, studying simulation use in EM theory for the students. The workshop was conducted by Mr. Bishu, Mind Box, Noida.Trainer engaged the participants in working and designing different kinds of antennas and demonstrated on how to position the antenna in the boxes. The experts also exhaustively touched upon the subjects of EMC and EMI and elaborated on the process of testing the equipment that emits radiations and also measure the extent and intensity of radiation emissions. The workshop proved to be a wonderful platform for participants where they obtained ample exposure and familiarity to the designing. Once you are comfortable with the Rescale platform, you can tailor the workflow to suit your needs. For basics on Rescale batch, please refer to our guide. The study is a single frequency sweep to calculate the S-parameters of the section edges. Next, click the Save icon to have a copy of the files in your Rescale cloud files.</p><p> We are cloning the job in order to import the simulation input file ansys-hfss-electronics-example.aedtz into your account. You can also obtain the results of the job by clicking on Get Job Results. You can create this file on your local ANSYS Electronics desktop. Rescale also offers the Remote Desktop option, where you can launch an ANSYS HFSS desktop to use the software as it's explained in the next section below. If you have an archived simulation.aedtz file in your local environment ready for batch submission, feel free to skip the next few sections. You can go ahead and begin the batch submission section. Or if you want to just create the packed.aedtz from the ANSYS HFSS GUI, you can skip to this section before going on to batch submission. Otherwise, please continue: Launching a Remote Desktop on Rescale This should take you to the Desktop Configuration page. Give the Desktop a name. Here we've named this desktop ANSYS HFSS Desktop. Enter your appropriate ANSYS license information and click Ok to continue. We will choose 2. 19.0 for this tutorial. Again, you can search for or select from the menu the job you cloned: ANSYS HFSS Tutorial. Click 3. Add under actions. This should bring up a confirmation dialog. This process should take approximately 5-10 minutes to spin up a new Windows server instance. Please refresh the page every few minutes to update the status of the server. In the Logs menu once the message Server(s) Started is reported the desktop should be ready to use. You can choose to connect using your own Windows RDP client or an the In-Browser Desktop that we will use in this case.Select the Input folder. Finally select the simulation file.aedt to open. Please refer to the File Transfer section for Uploading to Rescale Cloud Files and Downloading from Rescale Cloud Files. Select the option to Upload from this computer. Navigate to the path of the file and select the newly archived.aedtz. We can now shutdown this Desktop instance.</p><p> You can choose to keep the instance running to perform post-processing after the simulation is completed. This instance should be easily identified if you provided it a name earlier. For more information on launching a basic job, please refer to the tutorial here. For the ANSYS HFSS case, we need to include the.aedtz file which we created as shown in the previous section. If you have the input file on the Rescale cloud, click on Use files from cloud storage and search for the file you created. After including the input files, click on software settings option. In the command line, Replace the placeholder with your HFSS.aedtz file. Please refer to the HFSS FAQs for additional command lines. Please refer to the HFSS FAQs for more information about design options. If you don't wish to specify any design option, simply delete the placeholder. Please refer to the HFSS FAQs for more information on manual vs automatic task distribution. If you discover that during frequency sweeps the memory usage is low, then switch to a lower memory coretype such as Onyx or Emerald. Monitoring your Job You can also launch another Desktop and attach this job to perform post-processing. 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