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Lead Design Engineer - Physical Design

Cadence Design Systems, Inc.

BEIJING3 months ago
77 views20 saves2 applies

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Job Type

full time

Description

At Cadence, we hire and develop leaders and innovators who want to make an impact on the world of technology.

About the team:

Our team deliver many high-performance products based on the industry’s advanced technology with high frequencies up to 6400MHz. Our product processes include TSMC 3nm/5nm/7nm/12nm and Samsung 4nm/5nm/7nm/8nm/10nm, etc. In the team you will face great challenges such as FP, CTS, STA, etc. At the same time, you will get rich experience and advanced methodology.

Job Responsibilities:

Focus on high speed digital DDR and HBM IP physical implementation, develop necessary scripts or tools to enhance current PD design flow.

Work in product projects, including but not limited to: complete the project tasks; solve design issue and provide flow to check and avoid similar issue; analyze and summarize PPA optimization methodologies and results, implement optimal design parameters and flows for different projects.

Job Requirement:

-MS in EE with at least 3 years relevant IC design experience

-Good physical design experience in the digital implementation domain including Floorplan, CTS, STA, Physical verification, Power analysis.

-Solid background in circuits, electronics, physics, be willing to learn new technology for cutting edge process node and advanced design methodology.

-Skilled in scripting language, such as Perl, C shell, TCL, Makefile, Python.

-Familiar with EDA tools like Innovus, ICC, Calibre, Tempus, PrimeTime, etc.

We’re doing work that matters. Help us solve what others can’t.

This job is found at InterviewStack.io

Skills

node.jsperlevent-driven architecture

About Cadence Design Systems, Inc.

Cadence Design Systems is a leading global provider of electronic design automation (EDA) software, hardware, and intellectual property (IP) solutions. Founded in 1988, the company specializes in helping engineers design and verify semiconductor products, systems-on-chips, and printed circuit boards across diverse industries including consumer electronics, telecommunications, automotive, aerospace, and industrial applications.

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