SZ-330·B.S. Electrical & Computer Engineering·Univ. of Washington·47.655°N 122.308°W

张斯柏

Sibo Zhang

I'm an electrical & computer engineering student at the University of Washington, focused on VLSI design, computer architecture, and embedded systems. I love learning new things — both in and out of the classroom.

不要人夸好颜色,

只留清气满乾坤。

王冕《墨梅》

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01About

A little about me.

I'm an ECE student at the University of Washington with a soft spot for hardware design and computer architecture. My work runs from low-level VLSI circuit layout up to system-level architecture, with hands-on time in several research labs along the way.

When I'm not working on something school related, I'm probably watching motorsports, practicing flute or piano, or cooking something new. I like learning things both in and out of the classroom — feel free to say hi.

School
University of Washington
Program
Electrical & Computer Engineering
Focus
VLSI · architecture · embedded
Currently
researching at PNCEL Lab
Elsewhere
GitHub · LinkedIn

02Toolbox

01 Languages

  • SystemVerilog
  • Python
  • Java
  • C / C++

02 VLSI & CAD

  • Cadence
  • HSPICE
  • ModelSim
  • Quartus

03 Everything else

  • KiCAD
  • Linux / Unix
  • Git & GitHub
  • NumPy · Matplotlib · Pandas

03Coursework

EE 478

Capstone Integrated Digital Design Projects

MiniDICE, a 16-thread SIMT accelerator that replaces a traditional SIMD backend with a 4×4 CGRA for spatial, dataflow-oriented execution.

EE 477

Digital VLSI: Gates to Systems

Explores the design of IC-based memory and datapath circuits using CMOS, with hands-on experience in industry-standard tools.

EE 476

Introduction to VLSI

CMOS logic, delay and power analysis, IC layout, gate sizing, and core digital building blocks.

EE 469

Computer Architecture I

Assembly, processor datapaths and control, memory systems, caching, and performance modeling.

EE 271

Digital Circuits and Systems

Logic design, Boolean algebra, programmable devices, ALUs, memory, and I/O.

EE 280

Exploring Devices

Physics, chemistry, and modeling principles of semiconductor basics and optical devices.

EE 242

Signals, Systems, and Data I

Introduction to continuous- and discrete-time signals, convolution, Fourier analysis, and linear time-invariant systems.

EE 241

Programming for Signal and Information Processing

Python fundamentals, data handling, and visualization for processing signals.

EE 215

Fundamentals of Electrical Engineering

Circuit theory, components, Kirchhoff's laws, and differential equation analysis.

EE 201

Computer Hardware Skills

Hands-on circuit building, lab tools, Arduino, and PCB design.

CSE 373

Data Structures and Algorithms

Key algorithms and data structures, memory management, and problem-solving strategies.

IND E 315

Probability and Statistics for Engineers

Probability theory and statistics applied to engineering, quality control, and data analysis.

MATH 207

Introduction to Differential Equations

First and second-order differential equations, along with Laplace transforms.

MATH 208

Matrix Algebra with Applications

Systems of linear equations, vector spaces, eigenvalues, eigenvectors, and applications.

MATH 224

Advanced Multivariable Calculus

Double and triple integrals, vector fields, and theorems of Green, Stokes, and Divergence.

04Contact

Say hello.

Whether it's about research, chip design, a project idea, or the latest race weekend — my inbox is open.

sz330@uw.edu