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Asic Design Engineer India, Bangalore Jobs

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ASIC Principal Design Engineer
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India , Bangalore
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Hewlett Packard Enterprise
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ASIC Engineer Intern, Design
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India , Bangalore
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Meta
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Asic engineer intern, design verification
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Join Meta's Infrastructure team in Bangalore as an ASIC Engineer Intern, specializing in Design Verification. You will verify advanced IPs using SystemVerilog/UVM, contributing to "Green" data center accelerators. This 12-16 week internship requires a background in Electrical/Computer Engineering...
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India , Bangalore
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Meta
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ASIC RTL Design Engineer
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Join SanDisk in Bangalore as an ASIC RTL Design Engineer. Leverage your 14-18 years of expertise in Verilog/SystemVerilog, SoC architecture, and AMBA protocols. Innovate on cutting-edge flash controllers using advanced tools like GitHub Copilot. Collaborate with cross-functional teams to deliver ...
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India , Bangalore
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Sandisk
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Staff Engineer, ASIC Development Engineering (Physical Design, Pnr, Floor Planning)
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Join our team in Bangalore as a Staff Engineer for ASIC Physical Design. You will own block-level floorplanning, place & route (PNR) for high-performance, low-power designs using tools like Fusion Compiler or Innovus. We seek an expert with 5+ years of PNR experience and knowledge of advanced nod...
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India , Bangalore
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Sandisk
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Explore a world of opportunity in ASIC Design Engineer jobs, a critical and highly specialized field at the heart of modern technology. ASIC (Application-Specific Integrated Circuit) Design Engineers are the master architects behind the custom silicon chips that power everything from smartphones and data centers to automotive systems and AI accelerators. Their work involves transforming abstract concepts and system requirements into tangible, high-performance, and power-efficient integrated circuits. A career in ASIC design is typically segmented into two primary, interconnected domains: front-end and back-end design. Front-end engineers focus on the logical creation of the chip. They work closely with system architects to define specifications, then use Hardware Description Languages (HDLs) like Verilog or SystemVerilog to code the chip's functionality at the Register Transfer Level (RTL). A significant part of their role involves rigorous simulation and verification to ensure the design is logically flawless before it moves to the physical implementation stage. They develop complex testbenches and use advanced methodologies like UVM to catch bugs early, which is crucial given the immense cost of respinning a physical chip. Back-end engineers, often called Physical Design Engineers, take the verified RTL and turn it into a physical blueprint ready for manufacturing. This intricate process involves synthesis, which converts the RTL into a gate-level netlist, followed by floorplanning, where the chip's layout is strategically mapped out. They then perform placement and clock tree synthesis (CTS) to optimize timing and power distribution, and routing, which connects all the millions of transistors. Throughout this process, they must continuously analyze and fix challenges related to timing, power integrity (EM/IR), and signal integrity to meet all performance and reliability goals, culminating in a final GDSII file sent for fabrication. Typical responsibilities across these roles include collaborating with cross-functional teams including verification, architecture, and packaging; performing timing analysis; implementing design changes (ECOs); and running physical verification checks (DRC, LVS) to ensure the design is manufacturable. Professionals in this field are expected to have a strong foundation in digital logic design, computer architecture, and semiconductor physics. Proficiency with industry-standard EDA tools from vendors like Synopsys and Cadence is essential, as is experience with scripting languages like TCL, Perl, or Python to automate workflows. A bachelor's or master's degree in Electrical or Computer Engineering is a standard requirement, with senior positions demanding extensive experience and a proven track record of successful tape-outs, especially in advanced process nodes like 7nm and below. The search for ASIC Design Engineer jobs leads to a rewarding career for those who are detail-oriented, adept at problem-solving, and passionate about building the foundational technology of tomorrow. If you have a blend of creative engineering and analytical rigor, this profession offers a challenging and impactful path in shaping the future of electronics.

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