EUROPRACTICE About EUROPRACTICE... 4

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1 Design Tools A short guide to design tools and design methodology support services for academic institutes and publicly funded research laboratories throughout Europe 2019

2 EUROPRACTICE About EUROPRACTICE... 4 EUROPRACTICE Design Tools ANSYS... 5 Cadence... 6 ClioSoft... 8 Design Workshop Technologies... 8 Coventor... 9 HDL Works Imperas Intel Mentor IntelliSense Luceda Lumerical SoftMEMS Synopsys Xilinx XJTAG EUROPRACTICE Membership Membership Overview List of current EUROPRACTICE members EUROPRACTICE Training About EUROPRACTICE Training Courses About STFC Microelectronics Support Centre This project has received funding from the European Union s H2020 programme for research, technological development and demonstration under grant agreement number STFC Rutherford Appleton Laboratory 3

3 European Academic Institutes have a strong reputation for conducting state-of-the-art research and for producing graduates who have knowledge and skills that are relevant to industry. It is important for Europe that this strength in microelectronics is supported and allowed to flourish. The EUROPRACTICE design tool portfolio offers best-in-class design tools from the world s leading EDA vendors to universities and qualifying research laboratories for their student education and non-commercial research. ANSYS HFSS is 3D full-wave electromagnetic field solver appropriate for a wide range of microwave, RF and high-speed digital applications. HFSS provides engineers designing high-frequency and high-speed electronic components with accurate solutions for steadystate and transient electromagnetic fields, scattering parameters, reflection loss, parasitic coupling, and near- and far-field radiation patterns. The EUROPRACTICE portfolio features many of the same design tools that are in daily use in industry. This common platform ensures that European university graduates are highly skilled and useful to industry quickly, and that collaborative projects between universities and industry have a common basis on which to work. Through the access to the most advanced design tools and technologies, the European academic sector has affordable one-stop access to the design flows and IC processes normally only available to the largest multi-national corporations. Graduates entering industry from European universities are more appropriately trained and are more able to meet the future challenges of industry. EUROPRACTICE supplied design tools can be used by universities in their student education and non-commercial research programmes, taking design far beyond a simple paper exercise to a fully tested and working prototype. The European academic sector is noted for the quality of its student education built upon the breadth of its research interests; and this is reflected in the scope of tools available via EUROPRACTICE. The portfolio not only features tools covering analogue, digital, RF and mixed signal IC design but also in the related areas such as photonics, semiconductor device modelling, MEMS, embedded software design, printed circuit boards and systems. STFC Rutherford Appleton Laboratory, a national research laboratory in the UK, operates and manages the EUROPRACTICE design tool and configurable platform portfolio. STFC works in close cooperation with CMP of Grenoble, France, imec of Leuven, Belgium, Fraunhofer IIS of Erlangen, Germany, and Tyndall National Institute of Cork, Ireland,who provide access to affordable IC, Photonic IC and MEMS MPW prototypes, and system integration services. This booklet is a short guide to the EUROPRACTICE design tool and configurable platform portfolio. For further details please contact: Microelectronics Support Centre STFC Rutherford Appleton Laboratory, Didcot, Oxfordshire, OX11 0QX, United Kingdom. MicroelectronicsCentre@stfc.ac.uk ANSYS HFSS is available in a bundle that also includes SIwave, Q3D extractor, Nexxim and Optimetrics. Integrating directly with layout design tools of leading EDA vendors, as well as via the ANSYS SIwave interface, HFSS can be used to accurately evaluate the signal integrity and EM interference for critical sections of PCB, package and IC designs. Mixed- electromagnetic/circuit simulation using the ANSYS Designer framework, incorporating HFSS and the ANSYS Nexxim circuit solver, is supported for the design of gigabit communication channels and memory applications, providing a route to extract signal-integrity metrics, including time-domain reflectometry (TDR), bit-error rate (BER), timing analysis, and eye diagrams. Optimetrics is an optimiser capable of efficiently identifying design parameters, for example for a matching network, subject to userspecified constraints. ANSYS Redhawk NX provides advanced power signoff and power rail signoff (power integrity analysis) for full-chip IC designs. Redhawk NX supports both static and dynamic power analysis with both vector and vector less analysis flows. ANSYS PowerArtist XP is a complete RTL low power analysis platform, which enables early analysis of the power consumption of RTL designs. It enables designers to explore techniques for power reduction, including clock gating, multi- Vt optimization, power gating, and multi-voltage design STFC Rutherford Appleton Laboratory 5

4 Cadence offers a broad spectrum of tools from high level system design and verification to physical design and silicon implementation. In addition to comprehensive design tools, Cadence also offers access to an extensive range of Cadence Internet Learning Series training classes (Cadence ils). The IC suite consists of the latest tools for design, simulation, verification and implementation of analogue, digital and mixed signal ICs. The 2019 portfolio includes Genus RTL Synthesis Solution, Innovus Implementation System and Modus Test Solution as part of the IC Suite. These are complemented by Tempus & Voltus for signoff STA and power analysis. On the analogue side, Virtuoso tools provide full-custom IC design, simulation and layout. PVS and Quantus provide DRC, LVS, parasitic extraction and manufacturability signoff. The Xcelium tool provides digital simulation, functional verification, verification planning and management. Several optional add-ons are available to extend the functionality of the IC suite further. The Virtuoso Advanced Node Option offers Implementation Aware front-end and layout tools for 20nm and below. The Liberate AMS optional add-on extends Liberate s library characterisation and validation for analogue mixed signal blocks. The Jasper Gold platform is an optional add-on including formal verification apps with a powerful debug and what-if analysis environment. The Transaction Level Modelling (TLM) suite consists of tools for high-level system design and verification, targeting ASICs and FPGAs. It includes synthesis tools together with Xcelium verification tool and Verification IP catalogue. Cadence s next generation High Level Synthesis platform Stratus HLS is available as an optional add-on to the IC or TLM suites. The ils courses are self-paced, online training courses. Unlike the conventional instructor led courses, each course can be undertaken at the end-user s normal working location, over an extended period of time. The ils courses include dynamic course content, downloadable labs, instructor notes and bulletin boards. More than 130 courses are available on a range of topics that provide training on tools within each of the EUROPRACTICE Cadence packages: IC, Systems, TLM and PCBStudio. Qualifying institutes receive a number of ils tokens as part of their Cadence licenses and further tokens can be requested if required. Group bookings can be made for mass training of junior students. Over 1670 students have used these courses via EUROPRACTICE. Full details of the access mechanisms for EUROPRACTICE members can be found on the EUROPRACTICE web site. The Systems suite for PCB design is based on the Allegro platform and includes tools for PCB layout and routing, library management, and power and signal integrity analysis, alongside digital simulation and verification tools. The SIP Optional add-on enables design and exploration of die stacks and IC package design for RF and Digital System In Package STFC Rutherford Appleton Laboratory 2019 STFC Rutherford Appleton Laboratory 7

5 ClioSoft Design Management Suite provides a sophisticated environment that supports design team collaboration, design reuse, IP blocks, and efficient management of design data from concept through to tape-out for analogue, digital and mixed signal IC design. The SOS platform provides an ecosystem where designers can manage their design data during the whole development cycle. SOS analogue & mixed signal is seamlessly integrated with full custom IC design flows including Cadence s Virtuoso, Synopsys Galaxy Custom Compiler and Mentor. SOS digital provides a collaboration platform for digital design teams and includes an easy to use interface incorporating version control and management of files generated by digital EDA tools at all levels of abstraction from concept to GDSII. SOS IP Management system provides a mechanism by which designers can easily create or update IPs and deposit them into a central repository with revision control and bug tracking systems. The IP management system monitors and controls IP usage including internally developed IP blocks and third party IP. SEMulator3D is a powerful 3D semiconductor and MEMS process modelling platform that offers wide ranging technology development capabilities. Based on physics-driven voxel modelling technology, SEMulator3D has the ability to model complex integrated process flows across large silicon areas. SEMulator3D Viewer shows a 3D rendering of the virtual device model at every step in the process. Step-by-step visualisation can aid in understanding process failure modes and other complex process phenomena. Crosssectioning and dimensional measurements can be performed anywhere on the 3D model. Two further modules are also available. Advanced Modelling provides accurate physics-driven process models for advanced processes and Automation which enables automated parameter variation studies and related data analysis. CoventorWare is an integrated suite of simulation software for accurately and efficiently simulating MEMS devices. Field solvers provide comprehensive coverage of MEMSspecific multi-physics at the finite element level. The Console provides a single convenient window to create and manage MEMS simulations. The dw-2000 Photonic Bundle is a fully integrated framework optimized for the design of photonic, optoelectronic and other microstructures. The dw-2000 layout platform with true all-angle capability is specifically designed to support complex curve linear structures found in these fields. To ease the design process a Photonics Element Library provides a number of prebuilt parametric optical elements including a selection of bends, tapers and lenses. A P-Cell Development Kit equips users with the ability to create their own specific parametric cells. The Extended Design Rule Checker provides an expanded DRC capability ranging from simple width and spacing checks to more complex rules such as misalignment and nonconforming bend radii in waveguides. MEMS+ provides a standard methodology for MEMS+ IC design. Interfacing to the Cadence Virtuoso and the Mathworks MATLAB and Simulink environments, it provides a common platform and efficient methodology for MEMS and IC designers. The parametric nature and speed advantages of MEMS+ models enables users to solve problems that traditional approaches cannot address. As an optional extra to MEMS+ the Advanced Sensor Modelling package enables the export of simplified models in Verilog-A or MROM format. These models can then be analysed in simulators such as Virtuoso/Spectre or MATLAB/ Simulink. Also included in this bundle is the ability to import Finite Element models into MEMS STFC Rutherford Appleton Laboratory 2019 STFC Rutherford Appleton Laboratory 9

6 HDL Works offers tools to assist with VHDL or Verilog development cycles. EASE is a graphical HDL design entry tool that combines block diagrams, truth tables and HDL code, allowing designs to be entered using a mixture of graphics and text. EASE automatically generates optimised VHDL or Verilog code. The Intel FPGA (formerly Altera) tool suite Quartus Prime Pro includes Platform Designer, DSP Builder and SignalTap logic analyser. Quartus Prime Pro is a complete FPGA environment for design entry, synthesis, place and route, and verification of designs. Also included with new licenses is the Intel HLS Compiler, High Level Synthesis tool. HDL Companion is an analysis and navigation environment that allows designs and design hierarchies to be navigated via a graphical user interface. Complete design directories and design files can be dragged into HDL Companion allowing the overall design to be navigated in a number of ways. Quartus Prime Pro has full support for the Stratix 10 heterogeneous multi-die packages which integrate FPGA fabric with transceivers and High Bandwidth Memory (HBM) DRAM within a single package using the Embedded Multi-Die Interconnect Bridge. Imperas provides fast processor models, simulation tools, and IPs for the creation of virtual platforms that can be used for embedded software development before RTL/hardware availability and for increased debug and verification capability. Imperas offers OVPsim, the fast simulator required for single- or multi-core simulation of OVP virtual platforms. The simulator includes a Just-In-Time Code Morphing engine and uses the ToolMorphing TM algorithm for maximum performance. M*DEV is the professional version of the simulator, which provides simulation and debug support for the full range of single-core, and homogeneous and heterogeneous multi-core processors. M*DEV can be used in conjunction with third party tools such as Cadence System Creator. Also available is the QuantumLeap option, which offers further software execution acceleration with parallel engine execution using the SlipStreamer TM capability. The Imperas tools include a wide variety of models including ARM, MIPS, PowerPC, MicroBlaze, Nios, Renesas, OpenCores, RISC-V and ARC. In H-Tile devices, there is a configurable hardened protocol stack for Ethernet that is compatible with the IEEE High Speed Ethernet Standard and the 25G & 50G Ethernet Specification. This means that you can implement Ethernet at 50Gbps or 100Gbps using only a small amount of the FPGA s resources. The Stratix 10 MX family include an embedded quad core ARM A53 processor, H-Tile or E-Tile transceivers as well as up to 16 GBytes of HBM2 memory in package. Quartus Prime Pro is only compatible with 10 Series devices (Stratix 10, Arria 10 and Cyclone 10 GX), but all EUROPRACTICE licenses include the Quartus Prime licenses required to use older devices. Intel CoFluent Studio allows modelling and simulation of the behaviour of mixed hardware/software multiprocessor systems at an extremely high level of abstraction. System behaviours are described using a mix of graphical notations and ANSI C/C++ code. Platforms can be built using generic models for common components such as processors, memories, buses and interfaces that can be parameterised to match the behaviour of the target hardware STFC Rutherford Appleton Laboratory 2019 STFC Rutherford Appleton Laboratory 11

7 Mentor offers a broad range of tools, encompassing a wide spectrum of microelectronics design. These tools are available in three packages, the FPGA & Board Design suite, the Full suite and the PADS suite. The Full Suite contains all of the tools from the FPGA & Board Design suite, plus a range of advanced tools for full custom IC design and analysis; the Catapult HLS Suite and the tools from the former Tanner Suite are now also included as part of the Full Suite bundle. This enhanced tool suite allows for mixed signal and RF design, advanced digital place and route, system modelling, test and verification. (S-Edit), through circuit simulation (T-Spice) and waveform analysis (Waveform Viewer) through to physical layout (L-Edit). The S-Edit schematic environment provides schematic entry and import/export support across a wide range of formats along with design aids including hierarchical net highlighting and electrical rule checking. The L-Edit layout environment accelerates the physical design process with parameterized cells, schematic driven layout, coupled with intelligent routing tools. Included within Full Suite for the first time are Oasys-RTL and Nitro-SoC. Oasys-RTL is a physical RTL synthesis solution for full chip designs with a gate capacity of 100+ million gates to process them into placed gates in a single pass. It integrates full chiplevel physical synthesis and RTL floorplanning with optimisation to enable RTL designers to accurately identify and resolve timing, routability and power issues early in the design cycle. Oasys-RTL has a comprehensive set of power aware synthesis features supporting multi-threshold libraries, automatic clock gating and UPF based Multi-VDD flows. Key products include: Questa Formal for formal verification, the Questa VIP library for design verification, Vista for TLM system level modelling and simulation, Visual Elite for advanced TLM-RTL design, Tessent suite for advanced test and ATPG, FormalPro for formal equivalence, HyperLynx 3DEM for Electro-Magnetic design and analysis, Questa AMS suite for analogue, RF, digital and mixed signal simulation, and the Calibre suite of tools for comprehensive physical signoff verification. Catapult HLS is a C/C++/SystemC High Level Synthesis tool for ASIC and FPGA design. The algorithm, or functional intent of the design, is described in C, C++ or SystemC without any detailed timing or micro-architectural information. Implementation details are then automatically added during the Catapult synthesis process through the use of constraints. This separation of functional description from implementation allows designers to quickly and easily evaluate different micro-architectures for given performance/area requirements. The Tanner IC Design Flow, now part of Full Suite, contains a complete set of tools for Full Custom IC design, suitable for the design of analogue, mixed signal, RF and MEMS integrated circuits. The tools form an integrated design flow from schematic capture Nitro-SoC is a comprehensive modern place and route system designed for the complex multi-patterning and FinFET requirements at advanced process technologies. Low power capabilities enable both leakage and dynamic power reduction as part of the integrated Mentor flow. The Nitro-SoC tools are integrated with the Mentor Calibre engines to minimise physical verification ECOs with foundry support through TSMC and GlobalFoundries down to the smallest available processes. The PADS Suite offers an easy to adopt PCB design flow, and is well suited for teaching and academic research environments. It provides a complete PCB design flow, from schematic capture to layout, with integrated HyperLynx tools for simulation, analysis and verification. Key analysis capabilities include: DC Drop, DDR, DRC, signal integrity, power integrity, manufacturability and thermal compliance STFC Rutherford Appleton Laboratory 2019 STFC Rutherford Appleton Laboratory 13

8 IntelliSuite contains a wide range of closely integrated tools to seamlessly go from schematic capture and optimisation to design verification and tapeout. A flexible design flow allows the designer to start at either the schematic, layout or 3D level. IntelliSuite includes a comprehensive material database which contains material properties such as conductivity, film stress and mechanical strength as a function of processing parameters. IntelliFAB is used to debug the process flow and mask set enabling the creation of realistic virtual prototypes. IntelliSuite comes with all the modules needed to perform fully coupled thermal, electrostatic, fluidic and mechanical simulation and piezo simulation of the MEMS device. An optional module for BioMEMS and Microfluidics analysis is available. SYNPLE allows the capture of a MEMS design at the schematic level. The design can be quickly iterated and optimised at different granularities. Sophisticated synthesis algorithms will automatically convert the schematic into mask layout, 3D or a meshed structure for full multi- physics analysis. SYNPLE includes a large multidomain library of electrical, mechanical, thermal and MEMS components. Lumerical provides an integrated suite of tools for photonic component and circuit design. FDTD Solutions is a high performance 3D finite-difference time-domain Maxwell solver for the design, analysis and optimisation of nanophotonic devices, processes and materials. MODE Solutions is a comprehensive waveguide design environment for the analysis and optimisation of integrated optical waveguides, components and fibres. DEVICE CT, DEVICE HT and DEVICE DGTD are advanced finite element multiphysics simulation environments for modelling charge transport (CT), heat transfer (HT) and optical (DGTD). INTERCONNECT is a photonic integrated circuit design and analysis environment, supporting design-entry via a hierarchical schematic editor, and simulation using a time and frequency-domain circuit solver, featuring multi-mode and multichannel support, and mixed signal representation. IPKISS.eda is a design framework for photonic integrated circuit design. Built upon L-Edit and Python scripting, combined with the IPKISS library of parameterised photonic components and process development kits (PDK s), it allows designers to drag and drop photonic components into a layout and connect through waveguides while having full control over cross-section shapes, bends and trajectories. Post-layout effects, such as reflections and attenuation, are taken into account through simulation. DRC facilities ensure the quality of the design prior to fabrication. MEMS Pro can be combined with Mentor L-Edit to create a tool suite for the design and analysis of micro-electro-mechanical systems (MEMS). Functionality includes mixed MEMS/IC schematic capture, simulation, full custom mask layout and verification, 3D model generation, behavioural model creation and links to 3D analysis packages. MEMS Xplorer can be combined with Cadence Virtuoso to create a solution for mixed MEMS/IC design. MEMS devices are represented with multi-physics signals in mechanical, thermal, magnetic, fluidic, optical, and electro-static domains in Verilog-A. The MEMS Verilog-A library contains models for popular MEMS devices. MEMS Xplorer enhances Virtuoso capabilities for MEMS mask design, offering automatic generation of curved shapes such as torii, splines, fillets, and general equation-based curves STFC Rutherford Appleton Laboratory 2019 STFC Rutherford Appleton Laboratory 15

9 Synopsys offers a wide range of design tools, from system design through to digital and full-custom ASIC design and from FPGA design to Photonic ICs and TCAD. The Front End and Verification suite is a range of high performance tools for the design and development of digital circuits from RTL to gatelevel netlist in both ASIC and FPGA technologies. The FEV suite includes Design Compiler Graphical for advanced ASIC logic synthesis, supporting low-power design and advanced test strategies, whilst for FPGA designers it includes the Synplify FPGA synthesis tools to effectively target the latest high density FPGAs. The suite also includes extensive verification and signoff capabilities. The SpyGlass tools offer a range of verification capabilities for RTL signoff, providing a measurable way of assessing the quality and completeness of RTL designs early in the design cycle. VCS and Verdi for HDL verification interface with Synopsys analogue simulators for mixed signal design simulation. The PrimeTime family of tools provide extensive sign-off capability. The Implementation suite comprises a range of tools for the physical implementation and verification of digital ASICs down to the smallest geometries. IC Compiler II is included for placement and routing, StarRC for parasitic extraction and IC Validator for physical verification. The System Tools suite is a collection of tools for higher level design and architectural exploration. Platform Architect is a SystemC modelling and development environment, that when linked with Virtualizer, creates virtual prototypes for hardware/ software co-design. ASIP Designer is suite of tools for creation of Application-specific instruction-set processors for applications benefitting from highly specialized processing elements that are programmable in C. The Analogue Simulation and Modelling suite comprises tools for full custom ASIC design. Custom Compiler is a comprehensive full-custom design environment suitable for advanced geometry technologies coupled with a range of simulators for analogue and mixed signal circuit analysis, HSPICE, CustomSim and FineSim for circuit simulation and Saber for simulation and modelling of physical systems. Photonic IC (PIC) design is supported by OptSim Circuit and OptoDesigner. OptSim Circuit provides an environment for schematic capture and simulation which links with OptoDesigner for photonic-aware layout and verification. The Advanced TCAD suite (Sentaurus) is a collection of tools for semiconductor process modelling and semiconductor device modelling, with a unified interface for the coordination, parameterisation and analysis of multiple simulations. In addition to comprehensive design tools, Synopsys also offers access to an extensive range of curriculum and teaching support materials. Synopsys curriculum materials can be used to quickly and easily implement new courses or supplement content in existing courses. These curriculum materials range from whole semester courses to shorter specific technical presentations and these may be used as courseware for teaching purposes by University members. A range of Generic Libraries and ipdks are also available. These libraries are not designed for fabrication but are ideal for teaching in digital, mixed signal and full custom design flows. They are fully compatible with Synopsys tools, based on a typical process and contain rich content not necessarily found within commercial design kits, for example, standard cell contents and generic IP blocks. EUROPRACTICE members who license Synopsys tools through EUROPRACTICE will automatically receive access to these additional materials STFC Rutherford Appleton Laboratory 2019 STFC Rutherford Appleton Laboratory 17

10 Xilinx s Vivado HLx System Edition provides a complete hardware design flow for all modern Xilinx FPGA devices. In addition to the core functionality, System Edition has DSP synthesis, embedded tools, hardware debug and C based High Level Synthesis. SDSoC, the software driven flow for Zynq designs is available as a further option. XJTAG is a JTAG boundary scan development and testing product. XJTAG s powerful and easy-to-use Development System provides the design engineer with early prototype testing of their circuits. The XJTAG Development System comprises the XJDeveloper software for JTAG chain configuration and test, XJAnalyser for real-time visual analysis of devices and the XJLink USB JTAG interface. Also included is the XJDemo board, a PCB that is used in conjunction with tutorial material to demonstrate the operation of the XJTAG system. XJEase is a language that allows complex test patterns to be developed using loops, variables and flow control. The debugger environment also allows the user to step through test, set breakpoints and change values on the fly. The latest version of the Vivado HLx tools has full support for the new UltraScale+ RFSoC family. UltraScale+ RFSoC devices offer a complete platform for software defined radio. While previous Xilinx families have contained ADC s, the RFSoC devices have RF quality ADCs, RF-DACs and Soft-Decision Forward Error Correction (SD-FEC) blocks that combine to create a SoC for multiband, multimode cellular radios and cable infrastructure (DOCSIS). The largest devices incorporate 16 channels of RF-ADCs and RF-DACs, all with excellent noise spectral density. As with other parts of the Ultrascale+ range, UltraScale+ RFSoC devices feature a quad Arm Cortex-A53 and dual-core Arm Cortex-R5 processor subsystem. The Single-Chip Adaptable radio platform now includes full sub-6ghz support STFC Rutherford Appleton Laboratory 2019 STFC Rutherford Appleton Laboratory 19

11 Join a Community. EUROPRACTICE membership is open to academic institutes and qualifying research laboratories from the wider European region. When an institute joins EUROPRACTICE it is joining a community of 460 universities and 170 publicly funded research laboratories from 44 countries (Europe, Middle East, Africa and Russia); a community that has existed for more than twenty five years. EUROPRACTICE members may be spread over a wide geographic area, but they are united by a common design infrastructure provided by EUROPRACTICE. This common infrastructure creates a perfect platform for Europe-wide project collaborations. EUROPRACTICE membership is managed by STFC Rutherford Appleton Laboratory on behalf of the EUROPRACTICE project partners. Algeria R21350 Centre de Développement des Technologies Avancées Austria A00500 Fachhochschule Kärnten A13020 Fachochschulstudiengange Oberösterreich A13470 TU Wien Institute of Telecommunications A14240 Fachhochschule Techhnikum Wien A14480 Fachhochschule Joanneum A15350 Fachhochschule Wiener Neustadt A15640 Universität Innsbruck A15880 Johannes Kepler Universität Linz - NTHFS A15980 HTL - Rankweil A35090 Technische Universität Wien A36470 Technische Universität Graz A38430 Johannes Kepler Universität Linz R21070 AIT Austrian Institute of Technology R21210 Österreichische Akademie der Wissenschaften - Wien R21590 Österreichische Akademie der Wissenschaften - Graz R22330 Joanneum Research Forschungsgesellschaft mbh Belarus A47550 Belarusian State University A47630 Belarusian State University of Inf. and Radioelectronics Czech Republic A40060 Ceske vysoke uceni technicke v Praze A40070 Vysoke uceni technicke v Brne A48100 Univerzita obrany v Brne R47460 Akademie ved Ceske republiky R49000 Ustav teorie informace a automatizace AV CR Denmark A13030 Københavns Universitet A14520 Syddansk Universitet A15510 Aarhus Universitet A36040 Danmarks Tekniske Universitet Egypt A14550 Ain Shams University A14670 Cairo University A15090 The German University in Cairo A15160 The American University in Cairo A15170 Egypt-Japan University of Science & Technology A16020 Zewail City of Science & Technology Estonia A40110 Tallinna Tehnikaülikool Belgium A35651 Université Catholique de Louvain A35880 Universiteit Gent A37190 Universiteit Antwerpen A37210 Vrije Universiteit Brussel A37220 Katholieke Universiteit Leuven A38160 Université de Mons A38190 Université Libre de Bruxelles R00040 imec R21440 SCK-CEN Finland A15740 Satakunnan ammattikorkeakoulu A15800 Lappeenrannan teknillinen yliopisto A35040 Aalto-yliopisto A35610 Tampereen teknillinen yliopisto A35820 Oulun yliopisto A39360 Turun yliopisto R14360 Fysiikan tutkimuslaitos R21240 VTT Technical Research Centre of Finland Bulgaria A40090 Technical University of Sofia Croatia A47680 Sveuciliste u Zagrebu A47920 Sveuciliste J.J. Strossmayera A48090 Sveuciliste u Splitu Cyprus A07090 University of Cyprus France A00100 Institut Supérieur de l Aéronautique et de l Espace A13800 Université de Lorraine A14410 École des Hautes Etudes d Ingénieur A14440 Laboratoire de Physique Corpusculaire de Caen A15600 Université Pierre et Marie Curie - Institut de la Vision A16400 Ecole Nationale Superieure des Techniques A35020 Sorbonne Université A35290 Université de Montpellier 2 A35370 ENSEA A35800 Institut Supérieur d Electronique et du Numérique A36061 CIME Nanotech A36311 Institut National des Sciences Appliquées de Lyon STFC Rutherford Appleton Laboratory 2019 STFC Rutherford Appleton Laboratory 21

12 A36312 CPE Lyon A36410 Atelier Interuniversitaire de Microélecronique A37470 Université de Strasbourg A37590 Aix Marseille Université A37670 LPNHE A37710 IMT Atlantique Bretagne-Pays de la Loire A37950 Université Claude Bernard Lyon 1 A37980 Université Joseph Fourier A39060 LAPP A39400 Université Clermont Auvergne R00210 Laboratoire d Analyse et d Architectures des Systèmes R14140 Laboratoire ICube R15140 XLIM Université de Limoges R20490 European Synchrotron Radiation Facility R20810 Observatoire de Paris (Nançay) R20980 Laboratoire des Plasmas et de Conversion d Energie R21010 LPCE R21020 Synchrotron SOLEIL R21030 IM2NP R21140 Institut Laue-Langevin R21170 Laboratoire de l Accélérateur Linéaire R21270 CEA (Gif-sur-Yvette) R21290 Spintronique et Technologie des Composants R21380 Laboratoire de Physique des Plasmas R21410 Laboratoire Leprince-Ringuet R21420 ONERA - Châtillon R21560 ONERA - Toulouse R21960 Institut de recherche en astrophysique et planétologie R22060 Institut d Astrophysique Spatiale R22130 Observatoire de Paris - LESIA R22190 LSIS R22210 Centre de Microélectronique OMEGA R22220 CEA (Grenoble) R22240 Laboratoire PROMES R22280 IRCICA R22310 Grand Accélérateur National d Ions Lourds R22360 IRT Antoine de Saint Exupéry R22380 GeePs R37850 Laboratoire de l Accélérateur Linéaire R38290 Laboratoire de l Intégration du Matérieu au Système Germany A00110 Johannes Gutenberg Universität Mainz A00240 Fachhochschule Köln A00510 HTWG Konstanz A00670 Hochschule Bremen A00850 Justus Liebig-Universität Gießen A12140 Technische Universität München - Physik A12270 Hochschule Albstadt-Sigmaringen A12410 Fachhochschule Schmalkalden A12440 Hochschule Pforzheim A12540 Brandenburgische Technische Universität Cottbus A12840 Bergische Universität Wuppertal A13060 Albert-Ludwigs-Universität Freiburg - IMTEK A13610 Fachhochschule Aachen A13650 Technische Universität Darmstadt - IHT A13660 Universität Bremen - Informatik A13680 Hochschule Aschaffenburg A13880 Hochschule für Technik und Wirtschaft des Saarlandes A13890 Technische Universität Berlin - TIME A14130 Fachhochschule Brandenburg A14310 Universität Kassel - FB Elektrotechnik/Informatik A14740 Universität Kassel A14920 Universität Konstanz A15030 Universität Bielefeld A15230 Hochschule für Angewandte Wissenschaften Hamburg A15330 Carl von Ossietzky Universität Oldenburg - EHF A15410 Technische Hochschule Mittelhessen - Friedberg A15500 Hochschule RheinMain A15840 Hochschule Rosenheim A15930 Fachhochschule Südwestfalen A15950 Beuth Hochschule für Technik Berlin A16030 RWTH Aachen - Institute of Integrated Photonics A16040 RWTH Aachen - ISEA A16060 RWTH Aachen - ITHE A16090 Westfälische Hochschule A16100 Hochschule fuer Technik und Wirtschaft Berlin A16310 Technische Universität Bergakademie Freiberg A16320 RWTH Aachen, Physikalisches Institut B A16330 Hochschule Hannover A16420 Heilbronn University of Applied Sciences A35320 Technische Universität Hamburg-Harburg A35400 Hochschule Ulm A35420 Georg-Simon-Ohm Hochschule Nürnberg A35430 Karlsruher Institut für Technologie A35450 Technische Universität Darmstadt - IES A35500 Eberhard Karls Universität Tübingen A35590 Joh.-Wolfgang-Goethe-Universität Frankfurt am Main A35600 Technische Universität Braunschweig A35620 Universität Bremen - ITEM A35640 RWTH Aachen - ICE A35710 Hochschule Augsburg A35810 Technische Universität Kaiserslautern A35830 Universität Hamburg A35990 Universität Duisburg-Essen A36070 Carl von Ossietzky Universität Oldenburg - Informatik A36440 Universität des Saarlandes A37090 Technische Universität Dortmund A37240 Hochschule Furtwangen A37290 Leibniz Universität Hannover A37310 Technische Universität Berlin A37380 Friedrich-Alexander-Universität Erlangen-Nürnberg A37390 Technische Universität München - Elektrotechnik A37440 Universität der Bundeswehr München A37450 Hochschule Esslingen A37500 Universität Paderborn A37510 Hochschule für Angewandte Wissenschaften München A37530 Humboldt-Universität zu Berlin A37540 Universität Ulm A37760 Technische Universität Dresden A37800 Hochschule Offenburg A37810 RWTH Aachen - IDS A37880 Hochschule Aalen A37920 Hochschule Ravensburg-Weingarten A37930 Hochschule Mannheim A38010 Hochschule Heilbronn A38030 Hochschule Darmstadt A38080 Ruhr-Universität Bochum A38090 Otto-von-Guericke-Universität Magdeburg A38220 Universität Siegen A38240 Technische Universität Ilmenau A38340 Technische Universität Chemnitz A38390 Ruprecht-Karls-Universität Heidelberg - Mannheim A38550 Ostfalia Hochschule für angewandte Wissenschaften A38650 Fachhochschule Dortmund A38890 Rheinische Friedrich-Wilhelms-Universität Bonn A38940 Ernst-Abbe-Fachhochschule Jena A39000 Technische Hochschule Mittelhessen - Gießen A39110 Universität Stuttgart A39220 Universität Rostock A39250 Ruprecht-Karls-Universität Heidelberg - Heidelberg A39260 Albert-Ludwigs-Universität Freiburg A39320 Jade Hochschule A39330 Hochschule Reutlingen A39340 Martin-Luther-Universität Halle-Wittenberg A39460 Christian-Albrechts-Universität zu Kiel A39580 Hochschule Osnabrück A39660 Friedrich-Schiller-Universität Jena A39770 Universität zu Lübeck R00150 Max-Planck-Institut für Physik R20300 IIMMS R20330 Deutsches Elektronen-Synchrotron R20460 Institut für Mobil- und Satellitenfunktechnik GmbH R20510 IIHP Leibniz-Institut für innovative Mikroelektronik R20720 Offis R20880 GSI Helmholtzzentrum für Schwerionenforschung R20890 Fraunhofer-Institut für Siliziumtechnologie R20900 Fraunhofer-Institut für Biomedizinische Technik R20920 Fraunhofer IIS (Erlangen) R20930 Fraunhofer IIS (Dresden) R21050 Max-Planck-Institut für Chemie R21060 Forschungszentrum Jülich R21090 Fraunhofer Heinrich-Hertz-Institut R21120 Max-Planck-Institut für extraterrestrische Physik R21150 Physikalisch-Technische Bundesanstalt - Braunschweig R21220 Fraunhofer IISB R21260 Hochschule für Technik und Wirtschaft Dresden R21310 Fraunhofer-Institut für Photonische Mikrosysteme R21320 Fraunhofer-Institut für Solare Energiesysteme R21510 Deutsches Zentrum für Luft- und Raumfahrt - Berlin R21530 Deutsches Zentrum für Luft- und Raumfahrt - Bremen R21540 Max-Planck-Institut für biophysikalische Chemie R21580 Deutsches Zentrum für Luft- und Raumfahrt IIP - Berlin R21610 Helmholtz-Zentrum Berlin für Materialien und Energie R21620 Fraunhofer AISEC R21630 Fraunhofer-Institut für Zerstörungsfreie Prüfverfahren R21650 Fraunhofer FHR R21660 Fraunhofer ESK R21770 Konrad-Zuse-Zentrum für Informationstechnik Berlin R21780 Deutsches Zentrum für Luft- und Raumfahrt - Wessling R21790 NaMLab ggmbh R21860 DLR-Institut für Vernetzte Energiesysteme e.v. R21900 Max-Planck-Institut für Radioastronomie R21970 PNSensor ggmbh R22020 European XFEL R22080 Fraunhofer COMEDD R22110 Physikalisch-Technische Bundesanstalt - Berlin R22150 Fraunhofer Institute SIT R22160 Halbleiterlabor der Max Planck Gesellschaft R22260 Helmholtz-Zentrum Geesthact R22290 Fraunhofer-EMFT R22300 Max-Planck-Institut für Informatik R22340 Optotransmitter-Umweltschutz-Technologie e.v R22370 CIS Forschungsinstitut fuer Mikrosensorik GmbH R22420 Paul-Drude-Institut für Festkörperelektronik R22440 Hahn-Schickard-Gesellschaft Ghana A14770 Kwame Nkrumah University of Science & Technology Greece A00530 University of Ioannina A13550 University of Thessaly A13690 Technological Educational Institute Stereas Elladas A14150 Athens University of Economics and Business A14340 University of the Peloponnese A15110 TEI of Western Macedonia A35140 National Technical University of Athens A35960 University of Patras - ECE A37550 National and Kapodistrian University of Athens A37680 University of Patras A39280 Aristotle University of Thessaloniki A39490 Technical University of Crete R20790 Demokritos, National Center for Scientific Research R21080 Foundation for Research and Technology Hellas Hungary A40010 Budapesti Muszaki és Gazdaságtudományi Egyetem A47540 Pázmány Péter Katolikus Egyetem Ireland A01190 Cork Institute of Technology A13410 Institute of Technology, Carlow A15730 University College Dublin A35300 University College Cork A36490 Trinity College Dublin A36510 University of Limerick A39310 Institute of Technology, Tallaght R21720 Tyndall National Institute R22400 Dublin Institute for Advanced Studies STFC Rutherford Appleton Laboratory 2019 STFC Rutherford Appleton Laboratory 23

13 Israel A13240 The Hebrew University of Jerusalem A13330 Technion - Israel Institute of Technology A13910 Ben-Gurion University of the Negev A13920 Bar-Ilan University A14070 Ort Braude College of Engineering A14380 Tel-Aviv University A14540 Kinneret College on the Sea of Galilee A14690 Holon Institute of Technology A15190 Jerusalem College of Technology Italy A00120 Università Politecnica delle Marche A00520 Università di Modena e Reggio Emilia (Modena) A00560 Università degli Studi di Siena A00680 Università della Calabria A12000 Università di Bologna - DEIS A12370 Università degli Studi di Napoli Federico II - DIETI A12390 Università degli Studi di Brescia A12530 Università degli Studi di Verona A12640 Università degli Studi di Milano A12770 Università del Salento A12990 Università degli Studi di Bergamo A13280 Università degli Studi di Udine A14220 Università degli Studi di Trento A14800 Università degli Studi di Milano-Bicocca A14820 Università degli Studi di Salerno A14860 Università di Modena e Reggio Emilia (Reggio Emilia) A15070 Scuola Superiore Sant Anna A15750 Università Degli Studi di Cassino del Lazio Meridionale A15900 Università di Bologna - DEI (Cesena) A16130 Università degli Studi Roma Tre A35210 Università degli Studi di Parma A35530 Politecnico di Torino A35660 Università di Pisa A35690 Politecnico di Milano A35910 Università degli Studi di Genova A36380 Università di Bologna - DEI (Bologna) A37280 Università degli Studi di Pavia A37460 Università degli Studi di Catania A38380 Politecnico di Bari A38620 Università degli Studi di Torino A38840 Università degli Studi di Roma La Sapienza A39200 Università degli Studi di Padova A39410 Università degli Studi dell Aquila A39550 Università degli Studi di Firenze A39570 Università degli Studi di Cagliari R00140 Fondazione Bruno Kessler R00270 INFN Sezione di Genova R00300 INFN Sezione di Pisa R20310 INFN Sezione di Roma R20320 INFN Sezione di Roma II R20400 INFN Sezione di Bologna R20420 INFN Sezione di Trieste R20440 INFN Sezione di Torino R20450 INFN Laboratori Nationali di Frascati R20470 INFN Sezione di Padova R20550 Elettra-Sincrotrone Trieste R20560 INFN Sezione di Roma III R20580 INFN Laboratori Nationali di Legnaro R20630 INFN Sezione di Milano R20670 INFN Sezione di Cagliari R20710 INFN Sezione di Bari R20990 INFN Sezione di Ferrara R21100 INFN Sezione di Napoli R21160 INAF Osservatorio Astrofisico di Arcetri R21190 INFN Laboratori Nationali del Gran Sasso R21300 IMM-CNR Bologna R21450 Istituto Nazionale di Fisica Nucleare, Sezione di Pavia R21570 IINAF Istituto di Radioastronomia R21600 Istituto Italiano di Technologia R21800 IMM-CNR - Roma R21940 ICTP R22010 INAF - Osservatorio Astronomico di Cagliari R22040 Istituto Nazionale di Astrofisica - IASF, Milano R22070 Instituto per lo Studio dei Materiali Nanostrutturati R22120 INAF IRA Radiotelescopi di Medicina R22200 Radio Analog Micro Electronics srl R22390 INFN Sezione di Perugia R22410 INFN Sezione di Catania R22430 INFN Laboratori Nazionali Del Sud R22450 European Gravitational Observatory R22490 Istituto Nazionale di Fisica Nucleare Jordan A15990 Princess Sumaya University for Technology A16080 Yarmouk University A16140 Jordan University of Science & Technology Kazakhstan A48080 Nazarbayev University Lebanon A15720 Lebanese American University A47650 American University of Beirut Latvia R49020 Institute of Electronics & Computer Science Lithuania A40230 Kauno Technologijos Universitetas A47980 Vilniaus Universitetas Malta A38720 University of Malta Norway A12750 Høgskolen i Sørøst-Norge A13580 NTNU - Institutt for datateknologi og informatikk A37360 Universitetet i Oslo A37560 NTNU - Institutt for elektroniske systemer A37820 Universitetet i Bergen R21460 SINTEF Stiftelsen for industriell og teknisk forskning Palestine A16240 Birzeit University A16370 An-Najah National University Poland A40100 Uniwersytet Zielonogórski A40120 Politechnika Warszawska A40130 Politechnika Lódzka - DMCS A40140 Akademia Górniczo-Hutnicza im. Stanislawa Staszica A40150 Instytut Fizyki Jadrowej im Henryka Niewodniczanskiego A40160 Politechnika Wroclawska A40530 Politechnika Slaska A47300 Politechnika Gdanska A47400 Politechnika Poznanska - Inzynierii Komputerowej A47580 Wojskowej Akademii Technicznej A47670 Politechnika Poznanska - Radiokomunikacji A47740 Politechnika Lódzka R40030 Instytut Technologii Elektronowej R49030 IIPPT-PAN R49050 Bioinfobank Institute R49080 Centrum Badan Kosmicznych PAN R49100 Norodowe Centrum Badan Jadrowych Portugal A12310 Universidade Nova de Lisboa A12550 Universidade do Minho A13710 Instituto Superior de Engenharia de Lisboa A35540 Universidade do Porto A35670 Universidade de Aveiro A35970 Instituto Superior Técnico A37230 INESC-ID R14120 Instituto de Telecomunicações - Lisboa R21710 LIP Lisboa R21750 International Iberian Nanotechnology Laboratory R21890 Instituto de Telecomunicações - Aveiro R22170 Instituto de Sistemas Robótica (ISR-UC) Romania A15520 Universitatea Politehnica din Bucuresti A16070 Universitatea Transilvania Brasov A16430 Aurel Vlaicu University of Arad A48070 Universitatea Tehnica din Cluj-Napoca R49010 IFIN-HH - Nuclear Hadrons R49060 IFIN-HH - Particle Physics Russia A40240 Vladimir State Technical University A47330 St. Petersburg State Polytechnical University A47520 MIET A47790 SSt. Petersburg State Univ. of Aerospace Inst. A47810 Lomonosov Moscow State University A47850 Moscow Institute of Physics & Technology - Wireless A47990 St. Petersburg Electrotechnical University LETI A48030 Omsk State Technical University A48040 Moscow Institute of Physics & Technology - Control A48110 Far Eastern State Transport University A60020 State University-Education-Science-Production Complex A60030 Tomsk State University A60040 Tomsk State Univ. of Control Syst. and Radioelect. A60060 Mordovian State University named after N.P.Ogarev A60080 Novosibirsk State Technical University A60100 Moscow State Inst. of Electronics and Mathematics A60110 National Research Nuclear University MEPHI A60160 Bauman Moscow State Technical University - Kaluga A60170 MIREA A60190 Bauman Moscow State Technical University - Moscow A60200 Rzhanov Institute of Semiconductors Physics A60220 Voronezh State Academy of Forestry Engineering A60230 Samara National Research University A60240 National University of Science & Technology MISiS R21930 Scientific Manufacturing Complex MIET (SMCTC) R47900 Budker Institute of Nuclear Physics R49070 Space Research Institute (IKI) Serbia A47510 Univerzitet u Nišu A47600 Univerzitet u Novom Sadu A48010 Univerzitet u Beogradu Slovakia A40050 Slovenská technická univerzita v Bratislave A47930 Technická univerzita v Kosiciach Slovenia A40280 Univerza v Ljubljani A47690 Institut Jožef Stefan A47820 Univerza v Mariboru STFC Rutherford Appleton Laboratory 2019 STFC Rutherford Appleton Laboratory 25

14 South Africa A14560 University of Pretoria Spain A12320 Universidad Politécnica de Cartagena A12590 Universidad de Castilla - La Mancha A13150 Universitat de València A13340 Universidad de Alcalá A13860 Universidad de Salamanca A14720 Universidad de La Laguna A15100 Universitat Politècnica de Catalunya - Manresa A15370 Universidad de Deusto A16290 Universitat Pompeu Fabra A16340 University of Vigo - AtlanTTic A35130 Universidad Politécnica de Madrid - DIE A35190 Universitat Politècnica de València A35870 Universidad de Sevilla - IMSE CNM A35891 Universidad de Cantabria A36250 Universitat Autònoma de Barcelona A36390 Universidad de Las Palmas de Gran Canaria - IUMA A37060 Universidad de Zaragoza - Dpto.Ingenieria Electronica A37080 Universidad de Santiago de Compostela A37330 Universidad Complutense de Madrid A37580 Universidad de Malaga A37690 Universidad del Pais Vasco A38330 Universidad de Vigo A38360 Universitat de les Illes Balears A38580 Universidad de Sevilla - Ingenieria Electronica A38590 Universidad de Granada A38600 Universidad de Navarra A38660 Universitat de Barcelona A38780 Universidad de Las Palmas de Gran Canaria - DIS A38790 Universidad de Zaragoza - Facultad de Ciencias A38820 Universidad Politécnica de Madrid - CEI A39080 Universidad de Extremadura A39100 Universidad Pública de Navarra A39150 UPC Dep. de Ingeniería Electrónica (Campus Nord) A39180 Universitat Rovira i Virgili A39300 Escola Universitàta Salesiana de Sarrià A39390 Universitat Autónoma de Madrid A39540 Universidad Carlos III de Madrid R00060 CNM - Instituto de Microelectrónica de Barcelona R20700 Ikerlan R20850 Centre Tecnològic de Telecomunicacions de Catalunya R21230 Instituto de Fisica Corpuscular R21520 Institut de Ciències de L Espai R21550 Institut de Ciènces Fotòniques R21740 CIEMAT R21910 CAEND R22100 Centro Nacional de Supercomputación, Barcelona R22460 Consorcio ESS Bilbao R22470 Asociacion Centro Tecnológico Sweden A00260 Luleå tekniska universitet A13720 Uppsala universitet A16350 Stockholms universitet A16360 Kungliga Tekniska Hogskolan, Stockholm A37350 Linköpings universitet A37370 Lunds universitet A38180 Kungliga Tekniska högskola, Kista A38670 Chalmers Tekniska högskola A39840 Mittuniversitetet R20690 Acreo Swedish ICT AB R20910 Totalförsvarets forskningsinstitut FOI R21990 European Spallation Source R22050 Institutet för Rymdfysik R22140 European Spallation Source ESS AB Switzerland A05000 SUPSI-DIE A12730 EPFL Laboratoire de Physique des Hautes Energies A12920 Universität Zürich A13090 Università della Svizzera Italiana A13630 Université de Genève A13780 Hochschule Luzern A14780 École d Ingénieurs et d Architectes de Fribourg A14930 Haute École Spécialisée de Suisse Occidentale A15050 HEIG-VD A15480 Universität Basel A15530 Universität Bern A36110 École Polytechnique Fédérale de Lausanne (Lausanne) A37340 École Polytechnique Fédérale de Lausanne (Neuchâtel) A38100 Hochschule für Technik Rapperswil A38310 Eidgenössische Technische Hochschule Zürich A38410 Berner Fachhochschule A38800 Eidgenössische Technische Hochschule Zürich - Basel A39760 HEPIA - Genève A39820 Fachhochschule Nordwestschweiz R20350 Organisation Européenne pour la Recherche Nucléaire R20680 CSEM (Neuchâtel) R20800 Paul Scherrer Institut R20970 Centre Suisse d Electronique et Microtechnique - Zürich R22180 EMPA The Netherlands A00170 Universiteit Twente - CAES A12010 Vrije Universiteit Amsterdam A12650 Radboud Universiteit Nijmegen A14510 Rijksuniversiteit Groningen A15420 Erasmus Universitair Medisch Centrum Rotterdam A15960 Universiteit van Amsterdam A35491 Universiteit Twente - Electrical Engineering A35701 Technische Universiteit Delft A38050 Technische Universiteit Eindhoven R00280 Nikhef R20370 TNO-FEL R20430 European Space Agency - ESTEC Microelectronics R20520 NWO-I /ASTRON R20540 European Space Agency - ESTEC Payload Technology R21200 Stichting imec Nederland R21250 SRON Netherlands Institute for Space Research STFC Rutherford Appleton Laboratory 2019 STFC Rutherford Appleton Laboratory 27 Tunisia A12930 École Nationale d ingénieurs de Sfax A15300 École Nationale d ingénieurs de Tunis Turkey A13010 Sabanci Üniversitesi A13270 Hacettepe Üniversitesi A13530 TC Kocaeli Üniversitesi A14250 Yeditepe Üniversitesi A14730 TOBB Ekonomi ve Teknoloji Üniversitesi A15260 T.C. Okan Üniversitesi A15280 Orta Dogu Teknik Üniversitesi Kuzey Kibris Kampusu A15610 Istanbul Sehir Üniversitesi A15680 Ankara Yildirim Beyazit Üniversitesi A15870 Istanbul Bilgi Üniversitesi A15970 Özyegin Üniversitesi A16250 Istanbul Medipol Üniversitesi A16280 Adana Bilim ve Teknoloji Üniversitesi A37960 Istanbul Teknik Üniversitesi A38270 Ihsan Dogramaci Bilkent Üniversitesi A38440 Orta Dogu Teknik Üniversitesi A39170 Bogaziçi Üniversitesi R20360 TÜBITAK Uzay Teknolojileri Arastırma Enstitüsü R38860 Türkiye Bilimsel ve Teknik Arastirma Kurumu -BILGEM United Kingdom A12260 University of Dundee A12480 University of Bath A13480 Imperial College London A13510 Royal Holloway University of London A13520 University College London A13620 University of Manchester Jodrell Bank Observatory A14030 Staffordshire University A14580 University of Lincoln A14760 University of Leicester A14980 Queen Mary College of London A15390 The Open University A15450 Cardiff University A15790 City University London A15850 Nottingham Trent University A16000 Coventry University A16050 Cranfield University A35030 Sheffield Hallam University A35053 University of Bolton A35080 University of Manchester A35111 University of Sussex A35160 Heriot-Watt University A35180 University of Nottingham A35250 University of Westminster A35330 Newcastle University A35410 University of Hull A35440 University of Essex A35470 University of Sheffield A35520 University of Northumbria at Newcastle A35630 University of Kent A35780 University of Cambridge A35920 University of Bradford A36000 University of Bristol A36090 University of Ulster A36120 University of Strathclyde A36280 Brunel University A36341 University of Liverpool A36342 Liverpool John Moores University A37300 University of Birmingham A37320 University of Oxford A37400 University of Huddersfield A37420 University of Edinburgh A37430 University of the West of England A37490 Queen s University of Belfast A37570 University of Surrey A37600 University of Hertfordshire A37610 University of Southampton A37630 University of Warwick A37660 Swansea Metropolitan University A37730 University of Leeds A37780 University of South Wales A37840 University of Durham A37870 Swansea University A37900 Manchester Metropolitan University A38040 Oxford Brookes University A38450 Loughborough University A38810 University of York A39440 University of Glasgow A39450 Aston University A39650 University of Salford R00050 STFC Rutherford Appleton Laboratory R20600 STFC Daresbury Laboratory R20950 Diamond Light Source R22030 STFC UK Astronomy Technology Centre R22090 Culham Centre for Fusion Energy Ukraine A47610 National Technical University of Ukraine United Arab Emirates A15860 Heriot-Watt University - Dubai Uzbekistan A16380 Urganch State University A16390 Andizhan State University

15 EUROPRACTICE also offers training courses which explain selected design flows, enabling delegates to better understand and address the challenges of successful design by appropriate use of design tools and design methodologies. EUROPRACTICE training courses are open to Professors, Lecturers, Academic Staff and Postgraduate Students from established academic sites who are either Academic or Research Laboratory members of EUROPRACTICE. EUROPRACTICE training courses are provided by expert staff from the partners and held at the partners dedicated training facilities in Cork (Ireland), Didcot (UK), Erlangen (Germany), Grenoble (France) and Leuven (Belgium). Booking and administration of EUROPRACTICE training courses is provided by STFC Rutherford Appleton Laboratory for all courses. For details of the courses available and online booking: Current Course Highlights include Comprehensive Digital IC Implementation & Sign-Off (using either a Cadence or Synopsys design tool flow (two courses) and a UMC 65nm process) Advanced Low Power Digital IC Implementation (using either a Cadence or Synopsys design tool flow (two courses) and a 40nm GlobalFoundries technology) Advanced digital physical implementation flow with emphasis on low power VHDL Language and Design Flow Hardware Security Introduction to Analogue IC Design, Simulation, Layout and Verification (using Synopsys Custom Compiler or Cadence Virtuoso tool flows) Advanced Analogue IC Design (using Cadence tools and a UMC 65 process Introduction to Analogue and Mixed Signal IC Design (using a multi-vendor design tool flow and a UMC 65nm process) Digital mixed signal design and implementation (using a multi-vendor design tool flow and a UMC 65nm process) Verilog and SystemVerilog for Digital Design (illustrated with a choice of tools from Cadence, Synopsys and Mentor) Verification for Digital Designs (illustrated with Cadence tools) Essential verification with SystemVerilog and UVM Photonic Integrated Circuits (PIC) IHP SG25H4EPIC Technology for Electronic-Photonic ICs Photonic component, circuit and systems design (using Lumerical Tools) Introduction to Technology CAD (TCAD) (using Synopsys Sentaurus TCAD Tools) Introduction to MEMS-IC co-design (using Coventor MEMS+, Cadence Virtuoso, MEMSCAP) Introduction to GLOBALFOUNDRIES 22nm FDSOI technology Introduction to STMicroelectronics technologies (28nm FDSOI and 55nm BiCMOS) 2019 STFC Rutherford Appleton Laboratory 29

16 The Microelectronics Support Centre is located at STFC s Rutherford Appleton Laboratory and specialises in providing academic institutes from the UK and Europe with the design tools, design flows, training and support that they require to enhance their microelectronic, microsystem, photonic and electronic system design research and teaching. This essential role enables the universities to conduct industry relevant research and to train the next generation of highly-skilled engineers that form the lifeblood of the microelectronics and electronic systems design industry in Europe. STFC (Science and Technology Facilities Council) is part of UKRI (United Kingdom Research and Innovation) reporting to the UK Government via the Department of Business, Energy and Industrial Strategy. STFC funds research and manages the UK s subscription to many international scientific collaborations. STFC aids advances in science and technology by providing the research community with access to advanced facilities and the expertise of its staff, and operates several world-class United Kingdom National Laboratories including Rutherford Appleton Laboratory, near Oxford in the UK. Microelectronics Support Centre STFC Rutherford Appleton Laboratory, Didcot, Oxfordshire, OX11 0QX, United Kingdom. MicroelectronicsCentre@stfc.ac.uk STFC Rutherford Appleton Laboratory

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