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ANSYS PowerArtist 2024R2.3 Linux64

PowerArtist is the industry-leading RTL power analysis and reduction software with the most comprehensive features to enable power-efficient design early in the design flow. Ansys PowerArtist is the comprehensive RTL design-for-power platform of choice of leading low-power semiconductor companies for early power analysis and reduction. PowerArtist includes physically-aware RTL power accuracy, interactive power debug, analysis-driven power reduction, unique metrics for tracking power efficiency and vector coverage, rapid power profiling of real workloads, and seamless enablement of RTL-to-physical power grid integrity.

ANSYS Redhawk-SC Electrothermal 2024R2.2 Linux64

Ansys RedHawk-SC Electrothermal features multiphysics power integrity, signal integrity, thermal integrity, and mechanical stress simulation and analysis for 2.5D/3D multi-die systems. The Ansys RedHawk-SC Electrothermal is a Multiphysics simulation platform. It delivers a complete solution for analyzing multi-die chip packages and interconnects for power integrity, layout parasitic extraction, thermal profiling, thermo-mechanical stress, and signal integrity. Integrated within the cloud-native SeaScape platform enables high-capacity electrothermal analysis for early-design exploration, post-layout design verification, and silicon signoff of stacked-die system. It is foundry certified for integrated fanout and silicon interposer technologies.

ANSYS PathFinder-SC 2024R2.2 Linux64

Ansys cloud-native solutions provide unparalleled capacity to speed up completion times for even the largest finFET integrated circuits (IC) and 3D/2.5D multi-die systems. These powerful multiphysics analysis and verification tools reduce power consumption, improve performance and reliability, and lower project risk with foundry-certified golden signoff verification. Features Power integrity (EM/IR) analysis and modeling with RedHawk-SC for digital, and Totem-SC for analog designs Electrothermal analysis of 2.5D/3D multi-die systems Variability-aware path timing with Path FX Electrostatic discharge (ESD) and reliability analysis with PathFinder-SC RTL power analysis and reduction with PowerArtist On-silicon electromagnetic analysis and modeling with RaptorH, Pharos, Exalto, and VeloceRF Cloud-native elastic compute architecture for full-chip capacity  

EMIT Maxwell CSIRO 4.0

The Maxwell CSIRO interface is not part of the standard Maxwell functionality. Users are required to purchase a licence that enables them to interface the modules with Maxwell. All users who purchase the CSIRO interface are given access via their existing website login for convenience. Furthermore, EMIT actively maintains the suite of CSIRO applications, correcting errors and adding additional functionality in response to user feedback and requests. Maxwell allows the user to define, display and edit model parameters through drag and drop mouse operation. Layered earth, thin-sheet, prism and mesh models can be built in Maxwell’s 3-D visualisation environment. Requires Maxwell version 5 or later Ground system configurations tested include drill-hole, fixed, coincident and in-loop systems and MT Airborne modules...

Fullagar Geophysics VPem3D 3.400-Engsofts

Fullagar Geophysics VPem3D 3.400

VPem3D performs fast approximate 3D inversion (both “unconstrained” and geologically-constrained) of airborne, ground, and downhole transient electromagnetic (TEM) data. Decays are converted to TEM moments in order to achieve run times 10 times faster than conventional 3D TEM programs. VPem3D uses the same model formats and inversion styles as the VPem1D 1D TEM inversion software and the VPmg gravity & magnetic software.It include VPview v3.8.0. Fullagar Geophysics VPem3D 3.400 Tested Picture New conductive host (half-space) options When including a conductive host (half-space) ground or downhole TEM response, the user can now elect to compute either “complete” (all-time) or “incomplete” (finite time range) moments in almost all cases. VPem3D reads the integration limits for incomplete moments, if required, from the moment...

Crosslight CSuprem 2024-Engsofts

Crosslight CSuprem 2024

CSUPREM (Crosslight-SUPREM) is a process simulation software package based on the SUPREM.IV.GS code developed at the Integrated Circuits Laboratory of Stanford University. SUPREM.IV.GS (2D) has long been recognized as the industry standard in process simulation for integrated circuit (IC) design for over a decade. Crosslight greatly enhances the capability of the original code from Stanford and extends it from 2D to 3D. Please refer to our full and mini CSUPREM product brochures for more details… Available versions: 2024.x , 2022.x ,… Crosslight CSuprem 2024 Tested Picture A brief introduction to Crosslight TCAD is also available in the following presentation and pamphlet. Features Reliable and flexible next-generation 2D/3D process simulator 2D, Quasi-3D, Hybrid-3D and Full 3D process simulation 2D and Full 3D device simulation when combined with APSYS GPU-accelerated solver Full...

Deltares D-Settlement 23.2-Engsofts

Deltares D-Settlement 23.2

D-Settlement(以前称为 MSettle)提供路堤设计和土壤沉降预测所需的所有必要手段。 可用版本: 23.x ,… Deltares D-Settlement 23.2 D-Settlement 的一些具体功能包括: 设计:自动确定沉降补偿所需的额外土体体积。 竖向排水:根据实际项目参数和布局输入条形排水管、立柱和砂墙。提供强制排水的实用选项。 自动转换为模型参数。 固结周期:轻松确定不同竖向排水配置的固结周期。 安全性:借助耦合的D-Geo Stability模型,确定安全稳定施工所需的最小周期。 沉降应力:输出分阶段施工和其他类型荷载(2D/3D)作用下沿竖向和时间方向的沉降、应力分量和水头分量。 临时预压和排水:分析临时预压和/或强制排水对沉降和孔隙水压力的影响。 带宽:输出总带宽和残余沉降。 沉降板拟合:沉降板拟合(自动或手动),影响沉降和带宽。 水平变形:输出沿竖向的近似水平变形。 D-Settlement模型可以导入土体数据从中央项目数据库获取参数,并与其他 Deltares 程序共享其(变形的)几何形状,并直接为 D-Geo Stability 程序生成输入,包括超孔隙水压力和变形几何形状。 More Information in English: Deltares D-Settlement 23.2

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Deltares D-Geo Pipeline 24.1.2-Engsofts

Deltares D-Geo Pipeline 24.1.2

D-Geo Pipeline 提供用于设计沟槽式和非开挖式管道安装的工具,包括微隧道技术和水平定向钻 (HDD) 技术。D-Geo Pipeline 使用户能够最大限度地降低安装过程中和安装后的风险。 可用版本: 24.x ,… Deltares D-Geo Pipeline 24.1.2 功能 几何形状和三维管道配置:图形用户界面可实现土层轻松快速的输入。上层土层可指定为沉降计算的荷载。三维管道配置可通过快速表格输入。 拱效应:对于非开挖安装,D-Geo Pipeline 会应用降低的中性土荷载来考虑拱效应。 减薄量取决于安装方法、管道埋深、直径和土壤特性。 水平定向钻井安装的管道应力分析:D-Geo Pipeline 可计算管道在安装阶段的轴向和切向应力。综合报告中会提供每种管道材料的应力验证。 高级沉降计算:管道安装后下方土壤的垂直位移是评估管道应力的重要因素。如果已知垂直沉降数据,则可以手动输入管道沉降量。为了获得更精确的结果,D-Geo Pipeline 可以使用 D-Settlement 计算机程序,无需额外输入。 高级管道应力分析:高级管道应力分析需要使用专用程序。这些程序需要 D-Geo Pipeline 提供的一组高级土壤力学参数。 这些程序将生成管道周围的完整弹簧模型,以供进一步分析。D-Geo Pipeline 提供的土壤力学参数包括: – 中性、被动和减小的垂直土壤荷载 – 垂直和水平地基反力模量 – 极限垂直和水平承载力 – 中性水平土壤荷载 – 垂直位移 – 最大轴向摩擦力 – 摩擦位移。 gōngnéng More Information in English: Deltares D-Geo Pipeline 24.1.2

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Deltares D-Sheet Piling 24.1-Engsofts

Deltares D-Sheet Piling 24.1

D-Sheet Piling 是一款用于设计挡土墙和水平荷载桩的工具。D-Sheet Piling 的图形化交互界面只需短暂的培训即可上手,使用户能够专注于输入可靠的岩土工程数据,并进行后续的挡土墙或单桩设计。 可用版本: 24.x ,… Deltares D-Sheet Piling 24.1 D-Sheet Piling 的特点 除了其他挡土墙设计软件通常具备的功能外,D-Sheet Piling 还提供以下几项独特的设计功能: CPT 数据自动解读:所有输入所需的岩土参数均由 CPT 数据解读得出。 长度优化:通过逐步缩短挡土墙长度,直至出现不稳定或不可接受的位移,自动检查挡土结构的临界长度。 安全性:D-Sheet Piling 通过应用根据欧洲规范 7(包括荷兰和比利时的欧洲规范附录)定义的局部安全系数,验证板桩墙在选定施工阶段的安全性。 用户还可以自定义部分安全系数。 锚固墙稳定性:锚固墙的稳定性根据克兰兹理论进行检验。 整体稳定性:采用毕肖普滑移圆分析法检验墙体和土体的整体稳定性。 可行性比较:可将项目与所谓的NVAF经验线进行比较,以确定此类板桩墙的安装/振动是否可行。 More Information in English: Deltares D-Sheet Piling 24.1

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Siemens IC-Custom 2024.3

Siemens.com IC-Custom 2024.3 is an enterprise-ready, custom IC design flow for innovative designs supporting both FinFET and planar analog, analog mixed-signal. With over 30 years of experience and thousands of design tape outs, this platform is well suited for “More than Moore” designs. Custom IC Design 2024 Release Highlights  

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