培訓(xùn)方式以講課和實(shí)驗(yàn)穿插進(jìn)行。
NanoSim集成了業(yè)界最優(yōu)秀的電路仿真技術(shù),支持Verilog-A和對(duì)VCS仿真器的接口,能夠進(jìn)行高級(jí)電路仿真的工具,其中包括存儲(chǔ)器仿真和混合信號(hào)的仿真。通過(guò)Hierarchical Array?
Reduction (HAR)技術(shù),NanoSim 幾乎可以仿真無(wú)限大的仿真 存儲(chǔ)器陣列。?
NanoSim 是一個(gè)整合體,可大致分為如下幾個(gè)模塊:?
Graphic User Interface (GUI)?
TimeMill (timing diagnostics)?
PowerMill (power diagnostics)?
Hierarchical Array Reduction (HAR)?
Co-simulation with VCS (NIV)?
Verilog-A?
Analog Digital Functional Model Interface (ADFMI)?
Linear Network Solver (LNS)?
Block Delay Calculator (BDC)
NanoSim training goal:?
The goal of this NanoSim training is to provide the basic information needed to run a NanoSim simulation, plusa detailed understanding of its operation.
The training agenda?
NanoSim Overview Introduction?
Simulation Algorithms?
Simulation Modes?
Interactive Mode Debug?
Ease of Use Commands?
Additional Features?
NanoSim Timing Functional Vector Comparison Checking?
Dynamic Timing Checks?
X Propagation?
NanoSim Power?
Power Features Power Diagnostics?
Power Budgeting?
·?Overview?
·?Simulation algorithms?
·?Simulation modes?
·?Interactive debug?
·?Ease of use commands?
·Additional features?
·?Timing checks?
·?Power diagnostics
Objectives
At the end of this workshop the student should be able to:?
·?Learn the fundamentals of NanoSim?
·?Learn how to set up a basic simulation?
·?Learn timing check commands?
·?Learn power analysis features?
·?Acquire hands on experience from course lab exercises
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