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Silvaco中国邀您同聚IFWS&SSLCHINA2024

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2024年11月18-21日,第十届国际第三代半导体论坛(IFWS2024)&第二十一届中国国际半导体照明论坛(SSLCHINA2024)、先进半导体技术应用创新展(CASTAS)将在苏州国际博览中心G馆举办。

Silvaco将携多款产品亮相此次展会。值此,诚挚邀请第三代半导体产业同仁共聚论坛,莅临A30号展位参观交流、洽谈合作。

公司简介

 

Silvaco(纳斯达克股票代码: SVCO)于1984年在美国硅谷成立,是全球领先的 TCAD、EDA 和 SIP 供应商,致力于通过软件和创新推动半导体设计和人工智能发展。公司拥有从原子级到系统级的完整解决方案:从影响半导体器件的材料行为模拟,到晶体管级电路的设计和分析,再到为 SoC 设计提供 IP 核。公司产品和服务已应用于多个行业,包括显示面板、功率器件、汽车、存储器、高性能计算机、光子、物联网和 5G/6G 通讯中的复杂 SoC 设计。Silvaco 总部位于美国加州圣克拉拉,在北美、欧洲和亚洲均设有分公司,中国区域总部位于上海浦东张江。

Silvaco is a provider of software solutions for semiconductor design, including TCAD, EDA software, and SIP solutions that enable semiconductor design and AI through software and innovation. The company’s innovative software and IP is used in the development of complex semiconductor manufacturing and SoC designs across a variety of market segments, including display, power devices, automotive, memory, high-performance computing, photonics, IoT, and 5G/6G mobile markets. We offer a wide range of solutions as well as support for engineers and researchers worldwide. Our expertise covers a broad range of semiconductor design, from simulating devices at the atomic level to designing and analyzing transistor-level circuits and providing semiconductor IP blocks and creation tools for advanced SoC designs. 

产品1

Silvaco Victory TCAD解决方案助力碳化硅、氮化镓和硅基功率器件快速开发,为了满足汽车、5G、工业、消费电子、高性能计算、航空航天和国防市场对功率器件的需求,基于碳化硅 (SiC)、氮化镓 (GaN)和硅基材料的宽禁带半导体正在快速推动功率器件的发展。

Wide-bandgap semiconductors based on Silicon Carbide (SiC), Gallium Nitride (GaN), and Silicon are driving a rapid transition in Power Devices to meet the requirements of Automotive, 5G, Industrial, Consumer, High Performance Computing, Aerospace and Defense markets.

产品2

Silvaco以TCAD为核心的功率器件开发和建模解决方案可以帮助客户大幅缩短开发时间和成本,加快产品上市周期。Silvaco帮助工程师在功率器件开发过程中对器件工作条件、器件工艺技术或半导体技术进行探索和虚拟更改,定性和定量地理解器件。然后,再通过迭代仿真,工程师就可以优化器件的性能和工作范围,从而大大减少实现批量生产所需的时间和成本。 

Silvaco TCAD driven power device development and modeling solutions are key to dramatically reducing development time and costs, while accelerating time to market. This exploration builds qualitative and then quantitative understanding of the target power device under development. Iterative simulation then allows engineers to optimize device performance and operating parameters dramatically reducing the time and costs needed to reach volume production. 

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