当前位置:首页 > 报告详情

SystemVerilog&XMODEL 中的硅光子系统建模与仿真.pdf

上传人: 芦苇 编号:651807 2025-05-01 42页 2.69MB

1、Modeling and Simulation of Silicon Photonics Systemsin SystemVerilog&XMODELProf.Jaeha KimSeoul National University&Scientific Analog,Inc.CEDA/CASS/SSCS Joint Session on Silicon PhotonicsASP-DAC 20252Modeling&Simulation of Si Photonics Systems in SystemVerilog/XMODELSilicon PhotonicsIntegration of ph

2、otonic and electronic components to realize dense,high-bandwidth I/Os with low powerSilicon photonics switch IC based on Mach-Zehnder interferometers(MZI)F.G.de Magalhaes,et al.,“Silicon Photonic Interconnects:Minimizing the Controller Latency”GLSVLSI,20183Modeling&Simulation of Si Photonics Systems

3、 in SystemVerilog/XMODELChallenge with Verifying SiPh SystemsC.Sun,et al.,“A 45nm SOI Monolithic Photonics Chip-to-Chip Link with Bit-Statistics-Based Resonant Mirroring Thermal Tuning,VLSI Symp.2015.Photonics(100THz)Analog/MS(110GHz)Digital(Complex)4Modeling&Simulation of Si Photonics Systems in Sy

4、stemVerilog/XMODELGoal:Model SiPh in SystemVerilogWant to run efficient simulation of silicon photonics,analog,and digital electronics in one unified platformCant verify the system by simulating each of them separately Want that platform to be SystemVerilogThe established platform for verifying most

5、 chips(UVM)Validated digital models can be directly synthesized5Modeling&Simulation of Si Photonics Systems in SystemVerilogXMODEL by Scientific AnalogA plug-in extension that enables fast and accurate analog/mixed-signal simulation in SystemVerilog Event-driven:10100 x faster than Real-Number Veril

6、og Analog:supporting both functional and circuit-level models SystemVerilog:enabling analog verification in UVM6Modeling&Simulation of Si Photonics Systems in SystemVerilogEvent-Driven Simulation of AnalogHow do we extend the Verilogs event-driven algorithm to simulating analog circuits?DigitalAnalo

word格式文档无特别注明外均可编辑修改,预览文件经过压缩,下载原文更清晰!
三个皮匠报告文库所有资源均是客户上传分享,仅供网友学习交流,未经上传用户书面授权,请勿作商用。
本文介绍了如何将SystemVerilog与XMODEL相结合,用于模拟硅光子系统。硅光子学是将光子和电子组件集成在一起,实现高带宽、低功耗的密集型I/O。文中提到,传统的验证方法无法满足硅光子系统的需求,因为这些系统无法通过单独模拟各个部分来验证。作者提出了一种基于SystemVerilog的统一平台,使用XMODEL插件扩展了Verilog的事件驱动算法,使其能够模拟光学和数字电子电路。XMODEL支持功能级和电路级模型,并可以通过事件驱动的方式进行模拟。此外,文章还讨论了如何使用XMODEL模拟光学波导、多端口波导、Y分支和定向耦合器等光学元件,以及如何通过调整延迟来模拟相位移位器。最后,作者展示了使用XMODEL和SystemVerilog成功模拟的4通道WDM传输接收器、PAM4传输器、眼图、以及微环调制器的温度控制环等实例。
"硅光子学模拟新方法" "XMODEL如何加速光电子仿真?" "光波导中的非典型现象建模"
客服
商务合作
小程序
服务号
折叠