Learning Programs

Hardware

Development of circuits, hardware components and devices.

HDLs
Specialized programming languages used to describe the structure and behavior of digital electronic circuits for simulation and automated hardware synthesis.
Verilog

Modeling and digital hardware simulation for FPGA and ASIC development.

VHDL

Describing complex digital systems for synthesis and reliable hardware implementation.

SystemVerilog

Advanced verification and robust hardware design.

SystemC

High-level modeling of hardware-software co-design systems.

Verilog-A

Analog and mixed-signal integrated circuit simulation.

Circuits
Connected network of electronic components that process and control electrical signals to perform a specific logic or provide functionality.
Introduction

Fundamental electrical and electronic circuit principles.

Digital

Designing of high-speed logic and digital chip architectures.

Analog

Development of amplifiers and analog signal processing.

Mixed-Signal

Integration of analog and digital circuits on chips.

FPGAs

Rapid prototyping and reconfigurable digital hardware.

Microprocessors

Integration of processors with memory and peripherals.

Logic Design

Optimized combinational and sequential digital circuits.

IC Testing

Functionality and quality verification of integrated circuits.

IC Reliability

Long-term stability and robustness of semiconductor devices.

Design Flow
Step-by-step methodologies that guide the complete process of specifying, verifying, synthesizing, and implementing electronic hardware systems.
Custom Design Flow

Manual optimization for full-custom IC layouts.

Digital Design Flow

Synthesis and physical design automation of digital ASICs.

FPGA Design

Digital logic implementation on reconfigurable hardware platforms.

PCB Design

Creation printed circuit boards for electronic component integration.

Design Kits

Building libraries and PDKs for chip fabrication flows.

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