longlong-zhang Goto Github PK
Type: User
Company: Nanjing University-Electronic department
Location: Jiang Su Province
Type: User
Company: Nanjing University-Electronic department
Location: Jiang Su Province
Design a 32bit adder using HSpice
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This a final project for electronics circuit course
CMOS Op Amp. Low power, high gain, 65nm technology. Simulated in HSPICE.
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Data science Python notebooks: Deep learning (TensorFlow, Theano, Caffe, Keras), scikit-learn, Kaggle, big data (Spark, Hadoop MapReduce, HDFS), matplotlib, pandas, NumPy, SciPy, Python essentials, AWS, and various command lines.
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HSPICE project.
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This repository contains all my hspice projects.
A classic problem in digital circuit design is determining the proper fanout and number of stages to use when driving a large external capacitor from an on-chip minimum sized inverter. The goal of this project is to achieve the fastest rise time on the capacitor.If one puts a large inverter in front of the capacitor, the original tiny inverter cannot drive the large inverter quickly. The aim was to sequentially vary the fanout and number of stages of an Hspice netlist. After the code launches Hspice each time, it parses the output and makes a decision on how to create the next Hspice input file. Overall, the code is run only once and it automatically proceeds to launch Hspice, parses the output and rewrites the given input netlist consecutively until an optimum solution is found.
This repository includes two HSPICE models for circuit-level simulation for Perpendicular Magnetic Tunnel Junction (P-MTJ) and Complementary-Polarizer Magnetic Tunnel Junction(CP-MTJ).
HSPICE scripts from CMOSedu
You will find HSPICE related documentation, tutorials or design files here.
Book: Introduction to Python for Computational Science and Engineering
Github repo for the MDN Learning Area.
Warmly welcome to my website:https://www.zengqiang.org |目录:
A project of MDN
There are some note of machine learning .2020-3-21
Micromagnetic simulations
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