Ansys 2020 R1

Total Page:16

File Type:pdf, Size:1020Kb

Ansys 2020 R1 CAD Support Release 2020 R1 ANSYS Workbench Platform Reader/Plug-Ins (SP2, SP3 & SP4) Operating SystemOperating 10 Windows Enterprise 7 Hat Red SuSE Enterprise Server Linux & 12 Desktop 7CentOS (Community Enterprise OS 7.4, OS 7.5, 7.6 & 7.7) Enterprise (Community (Professional, Enterprise & Education) & Education) Enterprise (Professional, Channel Service Term Long and Channel Semi-Annual supported are releases (7.4,& 7.5, 7.6 7.7) CAD Package Supported Versions Reader / Plug-In VERSION NOTES: ACIS 2019 Reader* P P P P 2020 Reader* P 2020 Plug-In* P3 3 Requires operating system's version 1803 or higher AutoCAD 4 Requires operating system's Anniversary Update version 4 2019 Plug-In* P 1607 or higher CATIA V4 4.2.4 Reader* P CATIA V5 V5-6R2019 Reader* P P P P CATIA V6 R2019x Reader* P CATIA V5 - (CADNexus CAPRI V5-6R2017, V5-6R2018, Reader* P CAE Gateway V3.60.0) V5-6R2019 Creo Elements / 20.2 Plug-In* P Direct Modeling 20.1 Plug-In* P 6.0 Reader* P 6.0 Plug-In* P Creo Parametric 5.0 Plug-In* P 4.0 Plug-In* P IGES 4.0, 5.2, 5.3 Reader* P P P P 2020 Reader* P 2020 Plug-In* P3 3 Requires operating system's version 1803 or higher Inventor 4 Requires operating system's Anniversary Update version Plug-In* 4 2019 P 1607 or higher JT 10.3 Reader* P Monte Carlo N-Particle2 Reader P P P P (SP2, SP3 & SP4) Operating SystemOperating 10 Windows Enterprise 7 Hat Red SuSE Enterprise Server Linux & 12 Desktop 7CentOS (Professional. Enterprise & Education) & Education) Enterprise (Professional. Channel Service Term Long and Channel Semi-Annual supported are releases (7.4, 7.5, 7.6 & 7.7) 7.4, 7.5 , 7.6 & OS 7.7) Enterprise (Community 1847 Reader* P 1872 Plug-In* P NX 1847 Plug-In* P 12.0 5 Plug-In* P P P 5 Not supported with ANSYS Fluent Parasolid 30.0 Reader* P P P P Rhinoceros v6.0 Reader* P SketchUp V2018 Reader* P 2019 Reader* P Solid Edge 2020 Plug-In* P 2019 Plug-In* P 2019 Reader* P SOLIDWORKS 2019 Plug-In* P 2018 Plug-In* P SpaceClaim1 2020 Plug-In P STEP AP203, AP214 Reader* P P P P Package Footnotes: Reader / Plug-In Footnotes: 1 Not supported for ICEM CFD * Includes support using Workbench Readers for ICEM-CFD 2 Support limited to DesignModeler CAD Support Release 2020 R1 ANSYS ICEM CFD Direct Interface Support (SP2, SP3 & SP4) Operating SystemOperating 10 Windows Enterprise 7 Hat Red SuSE Enterprise Linux Server & 12 Desktop 7CentOS (Professional. Enterprise & Education) & Education) Enterprise (Professional. Channel Service Term Long and Channel Semi-Annual supported are releases (7.4, 7.5, 7.6 & 7.7) 7.4, 7.5, OS 7.6 & 7.7) Enterprise (Community CAD Package Supported Versions Reader VERSION NOTES: ACIS 18.0.1 Reader P P P CATIA V4 4.2.4 Reader P P P P 1 DWG Reader P P P P GEMS Reader P P P P 1 IDI MS 8/9 Reader P 1 IGES 4.0, 5.2, 5.3 Reader P P P P 1 Parasolid 30.0 Reader P P P P Plot3d Reader P Rhinoceros Reader P P P P 1 STEP AP203, AP214 Reader P P P P 1 STL Reader P P P P Product Footnotes: 1 Requires supplemental install CAD Support Release 2020 R1 Optical (ANSYS SPEOS for CAD Integration) (SP2, SP3 & SP4) Operating SystemOperating 10 Windows Enterprise 7 Hat Red SuSE Enterprise Server Linux & 12 Desktop 7CentOS (7.4, 7.5, 7.6 & 7.7) 7.4, 7.5, OS 7.6 & 7.7) Enterprise (Community ANSYS SPEOS for: Supported Versions Supported Service Packs: 5.0 P Creo Parametric 4.0 P up to M110 3.0 P up to M190 1888 P 1872 P NX 1847 P 12 P NX 12.0.2.9 MP 10 11 P from NX 11.0.0.33 MP0 to NX 11.0.2.7 MP12 CAD Support Release 2020 R1 ANSYS Mechanical APDL Connections (SP2, SP3 & SP4) Operating SystemOperating 10 Windows Enterprise 7 Hat Red SuSE Enterprise Server Linux & 12 Desktop 7CentOS (Professional. Enterprise & Education) & Education) Enterprise (Professional. Channel Service Term Long and Channel Semi-Annual supported are releases (7.4, 7.5, 7.6 & 7.7) 7.7) 7.6 & (Community Enterprise 7.5, 7.4, OS CAD Package Supported Versions Connection VERSION NOTES: ACIS 2019 Connection P P P P CATIA V4 4.2.4 Connection P P P P CATIA V5 V5-6R2019 Connection P 4.0 Connection P Creo Parametric 5.0 Connection P 6.0 Connection P IGES 4.0, 5.2, 5.3 Connection P P P P 12.0 Connection P P P NX 1847 Connection P 1872 Connection P Parasolid 30.0 Connection P P P P.
Recommended publications
  • Crtech TD Direct User's Guide
    CRTech TD Direct® User’s Guide Instructions for TD Direct and Introduction to SpaceClaim Engineer® For C&R Thermal Desktop® Version 6.0 February 2017 C&R Thermal Desktop® is a registered trademark of Cullimore and Ring Technologies, Inc. SpaceClaim Engineer® is a registered trademark of SpaceClaim Corporation. This manual, as well as the software described in it, is furnished under license and may be used or copied only in accordance with the terms of such license. The content of this manual is furnished for informational use only, is subject to change without notice, and should not be construed as a commitment by Cullimore & Ring Technologies. Cullimore & Ring Technologies assumes no responsibility or liability for any errors or inaccuracies that may appear in this book. Prepared, distributed, and supported by: Cullimore and Ring Technologies, Inc. (303) 971-0292 [email protected] www.crtech.com Authors: Timothy D. Panczak Mark J. Schmidt Douglas P. Bell Brent A. Cullimore Table of Contents 1 Introduction.......................................................................................... 1-1 1.1 Purpose.............................................................................................................. 1-3 1.2 Important Concepts........................................................................................... 1-3 1.3 Software Modules ............................................................................................. 1-5 1.4 What’s New .....................................................................................................
    [Show full text]
  • Development of a Coupling Approach for Multi-Physics Analyses of Fusion Reactors
    Development of a coupling approach for multi-physics analyses of fusion reactors Zur Erlangung des akademischen Grades eines Doktors der Ingenieurwissenschaften (Dr.-Ing.) bei der Fakultat¨ fur¨ Maschinenbau des Karlsruher Instituts fur¨ Technologie (KIT) genehmigte DISSERTATION von Yuefeng Qiu Datum der mundlichen¨ Prufung:¨ 12. 05. 2016 Referent: Prof. Dr. Stieglitz Korreferent: Prof. Dr. Moslang¨ This document is licensed under the Creative Commons Attribution – Share Alike 3.0 DE License (CC BY-SA 3.0 DE): http://creativecommons.org/licenses/by-sa/3.0/de/ Abstract Fusion reactors are complex systems which are built of many complex components and sub-systems with irregular geometries. Their design involves many interdependent multi- physics problems which require coupled neutronic, thermal hydraulic (TH) and structural mechanical (SM) analyses. In this work, an integrated system has been developed to achieve coupled multi-physics analyses of complex fusion reactor systems. An advanced Monte Carlo (MC) modeling approach has been first developed for converting complex models to MC models with hybrid constructive solid and unstructured mesh geometries. A Tessellation-Tetrahedralization approach has been proposed for generating accurate and efficient unstructured meshes for describing MC models. For coupled multi-physics analyses, a high-fidelity coupling approach has been developed for the physical conservative data mapping from MC meshes to TH and SM meshes. Interfaces have been implemented for the MC codes MCNP5/6, TRIPOLI-4 and Geant4, the CFD codes CFX and Fluent, and the FE analysis platform ANSYS Workbench. Furthermore, these approaches have been implemented and integrated into the SALOME simulation platform. Therefore, a coupling system has been developed, which covers the entire analysis cycle of CAD design, neutronic, TH and SM analyses.
    [Show full text]
  • What's New in EDGECAM 2022.0
    WHAT’S NEW IN EDGECAM 2022.0 This document highlights new product features and enhancements in EDGECAM 2022.0. To run EDGECAM 2022.0, the maintenance expiry date in the license must be March 2021 or later. 17 May 2021 Contents Contents ‘What’s New’ Document Overview ............................................................................................ 4 Purpose of this Document and Other Sources of Information ................................................ 4 Targeted Information inside EDGECAM and Other Programs ............................................... 4 The Development History of EDGECAM ............................................................................... 4 Important Information ................................................................................................................ 5 Windows 7 and 8.1 Support Removed .................................................................................. 5 EWS Retirement ................................................................................................................... 5 Old AutoCAD DWG/DXF Loader retired ................................................................................ 5 Network License Manager Upgrade ...................................................................................... 5 Manufacture Enhancements ..................................................................................................... 6 EWS Retirement ..................................................................................................................
    [Show full text]
  • Ansys Elastic Licensing
    Ansys Elastic Licensing - Software Consumption Rate Table Version 3.17 5.5 Geometry Interfaces Rate (AEU/hr) Rate (AEC/hr) ANSYS Distributed Solve (DSO) 1.0 2.5 ANSYS Geometry Interface for Autodesk 1.0 2.5 ANSYS Geometry Interface for CATIA V5 1.0 2.5 ANSYS Geometry Interface for Creo Elements/Direct Modeling 1.0 2.5 ANSYS Geometry Interface for Creo Parametric 1.0 2.5 ANSYS Geometry Interface for Parasolid 1.0 2.5 ANSYS Geometry Interface for SAT 1.0 2.5 ANSYS Geometry Interface for Solid Edge 1.0 2.5 ANSYS Geometry Interface for SolidWorks 1.0 2.5 ANSYS JT Open Reader for SpaceClaim 1.0 2.5 ANSYS SpaceClaim CATIA V5 Interface 1.0 2.5 ANSYS SPEOS Far Infrared Extension 1.0 2.5 ANSYS SPEOS HUD Design & Analysis 1.0 2.5 ANSYS SPEOS Optical Part Design 1.0 2.5 ANSYS SPEOS Optical Sensor Test 1.0 2.5 Geometry Interface for JT 1.0 2.5 SPEOS for Creo Parametric Far Infrared Extension 1.0 2.5 SPEOS for Creo Parametric Optical Sensor Test 1.0 2.5 Optimization Rate (AEU/hr) Rate (AEC/hr) ANSYS ALinks for EDA 2.0 5.0 ANSYS DesignXplorer 2.0 5.0 ANSYS Optimetrics 2.0 5.0 SPEOS for Creo Parametric Optical Design Optimizer 2.0 5.0 Pre/Post Rate (AEU/hr) Rate (AEC/hr) ANSYS CFD PrepPost 4.0 10.0 ANSYS Discovery 4.0 10.0 ANSYS DesignModeler 4.0 10.0 ANSYS Electronics Desktop PrepPost 4.0 10.0 ANSYS Electronics Desktop 2D Solver 4.0 10.0 ANSYS Electronics Enterprise Prep/Post 4.0 10.0 ANSYS Icepak Pre/Post 4.0 10.0 ANSYS Mechanical Enterprise PrepPost 4.0 10.0 ANSYS SIwave Pre/Post Processor 4.0 10.0 ANSYS SpaceClaim 4.0 10.0 HPC (n is the number of
    [Show full text]
  • Studentveiledning for Undervisning I Solidworks®- Programvare
    Konstruksjonsdesign og teknologi-serien Studentveiledning for undervisning i SolidWorks®- programvare Dassault Systèmes - SolidWorks Corporation Utenfor USA: +1-978-371-5011 300 Baker Avenue Faks: +1-978-371-7303 Concord, Massachusetts 01742 USA E-post: [email protected] Tlf.: +1-800-693-9000 Internett: http://www.solidworks.com/education © 1995-2010, Dassault Systèmes SolidWorks Corporation, et KOMMERSIELT DATAPROGRAMVARE - Dassault Systèmes SA-selskap, 300 Baker Avenue, Concord, PROPRIETÆRT Mass. 01742 USA. Med enerett. Begrensede rettigheter iht. amerikanske myndigheter. Bruk, duplisering eller offentliggjøring ved myndighetene er Informasjonen og programvaren som omtales i dette underlagt begrensninger som er angitt i FAR 52.227-19 dokumentet, kan endres uten varsel og er ikke forpliktelser gitt (Commercial Computer Software - Begrensede rettigheter), av Dassault Systèmes SolidWorks Corporation (DS DFARS 227.7202 (Commercial Computer Software og SolidWorks). Commercial Computer Software Documentation) og i lisensavtalen der det er aktuelt. Intet materiale kan reproduseres eller overføres i noen form eller med noen midler, elektronisk eller manuelt, for noe Entreprenør/produsent: formål uten uttrykkelig skriftlig tillatelse fra DS SolidWorks. Dassault Systèmes SolidWorks Corporation, 300 Baker Programvaren som omtales i dette dokumentet, er underlagt en Avenue, Concord, Massachusetts 01742 USA lisens og kan bare brukes eller kopieres i henhold til vilkårene Copyright-merknader for SolidWorks Standard, i denne lisensen. Alle garantier gitt av DS SolidWorks Premium, Professional og Education Products vedrørende programvaren og dokumentasjonen er fremsatt i lisensavtalen, og ingenting som er oppgitt i eller implisert av Deler av denne programvaren © 1986-2010 Siemens Product dette dokumentet eller dets innhold, er å anse som en endring Lifecycle Management Software Inc. Med enerett.
    [Show full text]
  • Chapter 18 Solidworks
    Chapter 18 SolidWorks As much as any company in the CAD industry, SolidWorks was inspired by the vision of a single individual, Jon Hirschtick. He received both a BS and an MS degree in mechanical engineering from MIT in 1983 and subsequently worked at the MIT CAD Laboratory under Dr. David Gossard. Hirschtick had a strong entrepreneurial streak in him from an early age including a period as a self-employed magician during high school. While working at the CAD Laboratory, he enrolled in an entrepreneurship class in 1987 where he teamed up with Axel Bichara to write a business plan for a new CAD software company they called Premise. Bichara was a graduate student from Germany who was also working at the CAD Laboratory at the time.1 The class business plan for Premise was submitted in mid-May, 1987 and in a little over a month the two founders had $1.5 million in venture funding from Harvard Management Company. It was no surprise that the company set up shop in Cambridge. Figure 18.1 Jon Hirschtick2 Premise’s initial software product, DesignView, was a two-dimension conceptual design tool that ran on IBM-compatible PCs and interfaced with Microsoft software packages such as Word and Excel. Users could sketch geometry, assign constraints and define dimensional relationships. If a dimension changed, the design would adapt to this new information. Since it could be interfaced to Excel, spreadsheets could be used to 1 Bygrave, William D. and D’Heilly, Dan – editors, The Portable MBA in Entrepreneurship Case Studies, Pg.
    [Show full text]
  • Additive Manufacturing Resource Sheet
    November 2020, v.2 School of Engineering, Deakin University Resource Sheet 3D printing particles for calibration of DEM simulations 3D Powders Group Professor Karen Hapgood (Group leader), Professor David Morton, Dr Jun Zhang, Dr Negin Amini (Co-author), Dr Rechana Remadevi, Mr Shishir Shekhar, Mr Danni Suhaidi, Mr Josh Tuohey (Co-author). *Please kindly cite this document if used for research publications* Overview This overview provides the steps to creating particles suitable for calibration of DEM simulations using 3D printing technology. Conceptualisation of a digital source into a physical particle with tuneable properties is explained. According to the International Organisation for Standardisation and American Society for Testing and Materials International standard (ISO/ASTM 52900:2015) there are seven (7) main categories of 3D printing processes (Standard 2012). The general process for all categories are alike, printing in a layer-by-layer fashion. The specific method in which this is achieved varies for each category, whether that be by extrusion, lamination, jetting, photo-curing, or fusion of the materials (Wohlers, Campbell et al. 2018). A summary of the process descriptions are summarised in Table 1. Table 1. 3D printing process categories as outlined by the ISO/ASTM 52900:2015 standard (International 2015) 3D Printing category Process Description 1 Binder jetting The process where a liquid bonding agent is strategically deposited onto a powder bed to join the powder materials 2 Directed energy deposition The process where
    [Show full text]
  • Spaceclaim® Engineer and Spaceclaim Style Product Fact Sheet
    SPACECLAIM® ENGINEER AND SPACECLAIM STYLE PRODUCT FACT SHEET About SpaceClaim represents the most significant technology advancement in 3D engineering in more than 10 years, having been created from the ground up specifically to give engineers and industrial designers the freedom and flexibility to capture ideas easily, edit solid models regardless of origin, and prepare designs for analysis, prototyping, and manufacturing. SpaceClaim enables an extended design team to work concurrently, finish projects at a fraction of the cost, and accelerate time-to-market. SpaceClaim Engineer is the world’s fastest and most innovative 3D direct modeler, enabling engineers to easily create concepts and prepare 3D designs for prototyping, top-down design, analysis, and manufacturing. The product interoperates with major CAD systems and many analysis tools, providing a solution to bridge the gap in typical design and engineering workflows. SpaceClaim Engineer broadens access to 3D models and data across the engineering team and helps build consensus by sharing concept models. This capability enables CAD teams to build detailed models right the first time, reducing costly iterations. SpaceClaim Style brings the freedom of direct solid modeling to industrial design, accelerating product ideation by providing flexible tools to create, edit, and validate design concepts. The product is tailored to the needs of designers working in industrial design, product styling, furniture design, jewelry design, and architectural detailing. SpaceClaim Style provides designers in these and other segments with a rapid creation environment for visualizing new ideas and converting hand-drawn, 2D and surface data to accurate solid models, enabling designers to experience the benefits of 3D Direct Modeling with solids.
    [Show full text]
  • New Math the Hidden Cost of Swapping CAD Kernels
    New Math The Hidden Cost of Swapping CAD Kernels Schnitger Corporation Schnitger Corporation Page 2 of 11 When we first wrote about the costs of switching CAD kernels a decade ago, we profiled a company that had twenty years’ worth of legacy designs to refresh. They could either find copies of the old software (and the hardware to run it on) or convert the parts to a new format and use a modern CAD system to move the designs forward. Old CAD on old hardware was a non-starter, leaving migrating everything to a new CAD system. But what to convert to? They already used SolidWorks in part of their business and considered moving the legacy parts to that platform. One big problem: Many of SolidWorks’ newest features rely on Dassault Systèmes’ 3DEXPERIENCE platform. The traditional desktop SolidWorks is built on the Parasolid kernel, while the 3DEXPERIENCE platform uses the CGM kernel. This reliance on two kernels leads many users to worry that building parts in SolidWorks will eventually mean a wholesale conversion from Parasolid to CGM. If you migrate everything today, will you have to do it again in a few years? As you’ll see later, converting from one kernel to another can be tricky so, if there is an opportunity to avoid a kernel change, you should investigate this possibility. The company we wrote about decided that it couldn’t afford the risk, disruption, and uncertainty an unclear future might cause. They chose Siemens Solid Edge, which also uses the Parasolid kernel. Sticking with the same kernel simplified moving their Parasolid-based models from one CAD tool to another.
    [Show full text]
  • Automatic 3D Design Tool for Fitted Spools in Shipbuilding Industry
    Conference Proceedings of INEC 2 – 4 October 2018 Automatic 3D design tool for fitted spools in shipbuilding industry F Uzcategui, MSca, Dr. A Paz-Lopez, MScb, J Vilar, MScc, A Mallo, MScd, A Brage, MScc, Dr. H Moro, MScc, Dr. F Bellas, MCsd aUMI UDC-Navantia, Ferrol, A Coruña, Spain; bMytech IA, A Coruña, Spain; cNavantia, Ferrol, A Coruña, Spain; dUniversity of A Coruña, A Coruña Spain * Corresponding author. Email: [email protected] Synopsis The objective of this paper is to show the initial research results obtained with an automatic 3D design software tool we have developed for spool fitting in the pipe workshop of the Navantia Ferrol shipyard. This software tool requires, as input, a CAD file containing the scene with the two pipes to connect, and provides, as output, a CAD file with the fitted spool design. The software detects the features of the spool, and a heuristic pipe routing algorithm generates the output by computing several routes and providing one solution that is near to the optimal one. This output design considers the characteristics and capacities of the manufacturing process, as well as the library of materials used in the shipyard, so it is possible to use it for direct manufacturing. The preliminary results presented here were obtained using real data captured with different commercial 3D scanners over a test setup. Keywords: Automatic design; Pipe routing; 3D scanning; Spool fitting; Marine systems 1. Introduction Pipe assembly is a process that is carried out in different stages throughout the construction of a ship. This task is part of the outfitting of products such as the module, sub-block or block.
    [Show full text]
  • „Wir Haben Ein Paradigma Geschaffen“
    SOFTWARE, ENGINEERING-TOOLS & HARDWARE Interview mit Chris Randles, SpaceClaim Chris Randles ist President und Chief Executive Officer von SpaceClaim, einem Anbieter von 3D-Direktmodellierung. Technik im Detail Anwendungsschwerpunkte der SpaceClaim-Software O Konzept-Modellierung O Modellerstellung für Angebote O Modellvorbereitung für CAE/Simulation O Additive Fertigung und Rapid Prototyping O De-Featuring und Anpassungen für NC-Programmierung O Blechfertigung O Formenbau O 3D-Datenaustausch mit Zulieferern und Kunden O Industriedesign O Lean-Produktentwicklung SpaceClaim www.spaceclaim.com/de „Wir haben ein Paradigma geschaffen“ CAD-Software. SpaceClaim wurde 2005 gegründet und ist einer der jüngsten Anbieter von Software für die Volumenmodellierung. Chris Randles, President und Chief Executive Officer des US-Unternehmens, erläutert im exklusiven ke-Interview die Vorteile der Anwendung. Würden Sie zum Einstieg den heutigen CAD-Markt kurz skizzieren? Synchrontechnik oder SpaceClaim ist – das sind die Werkzeu- Wir befinden uns seit 25 Jahren in einem feature-basierten, ge, die die Leute dazu bringen werden, Direktmodellierung parametrischen CAD-Experiment. PTC veränderte die Welt zu nutzen. mit Pro/Engineer, und SolidWorks übertrug dies auf Win- dows, aber seitdem hat sich – von vielen Weiterentwicklun- Doch wie unterscheidet sich SpaceClaim von den anderen Anwen- gen im Detail einmal abgesehen – nicht viel geändert. Inzwi- dungen? schen gibt es knapp eine Million 3D-CAD-Arbeitsplätze unter SpaceClaim hat den 3D-CAD-Markt verändert, seit wir im Wartung. Das ist wirklich nicht viel in Anbetracht der riesigen Jahr 2007 unseren 3D-Direktmodellierer einführten. All die Zahl von Ingenieuren, die tatsächlich an der Produktentwick- beschriebenen Neuerungen der Mitbewerber entstanden als lung beteiligt sind. Folge des Markteintritts von SpaceClaim.
    [Show full text]
  • Designing New Age Disruptive Engineering Solutions
    Designing New Age Disruptive Engineering Solutions Corporate Profile I January 2020 Copyright © 2020 nCircle Tech Pvt. Ltd. All Rights Reserved. www.ncircletech.com Envision. Enhance. Endure. Since 2012, nCircle Tech has empowered passionate innovators in the AEC and Manufacturing industry to create impactful 3D engineering & construction solutions. Leveraging our domain expertise in CAD-BIM, we provide disruptive solutions that reduce time to market and meet business goals. Our team of dedicated engineers, partner ecosystem and industry veterans are on a mission to redefine how you design, collaborate and visualize. 50+ Customers | 150+ Solutions I 15+ Countries Copyright © 2020 nCircle Tech Pvt. Ltd. All Rights Reserved. www.ncircletech.com Collaboration Embrace the power of many Robust ecosystem including experts from leaders in CAD, PLM, ML/AI Experience Impact Founded in 2012 with collective 5 million lines of code team of 130+ technologists and developed & 1 million hours of subject matter experts testing delivered with 30x Across CAD-BIM Lifecycle ROI Leading To An World of nfinite Disruptions www.ncircletech.com Step Into A World Of nfinite Possibilities Differentiating nCircle Copyright © 2020 nCircle Tech Pvt. Ltd. All Rights Reserved. www.ncircletech.com Industry Footprint Made in India | For Global Standards AEC Manufacturing 3D Visualization Copyright © 2020 nCircle Tech Pvt. Ltd. All Rights Reserved. www.ncircletech.com www.ncircletech.com Embracing The Power of Many Industry Partnerships Copyright © 2020 nCircle Tech Pvt.
    [Show full text]