SI
Senior Staff Engineer - SRAM
Accepting applicationsSynopsys Inc · Noida, Uttar Pradesh, India
Full-Time Mid_senior AICMOSFinFETMentorPerl
Estimated market salary
₹45-81 LPA
This is a SiliconBoard market estimate, not an employer-posted salary.
Posted
2d ago
Category
Eda
Experience
Mid_senior
Country
India
Senior Staff Memory Design Engineer
We Are
Synopsys is the leader in engineering solutions from silicon to systems, enabling customers to rapidly innovate AI-powered products. We deliver industry-leading silicon design, IP, simulation and analysis solutions, and design services. We partner closely with our customers across a wide range of industries to maximize their R&D capability and productivity, powering innovation today that ignites the ingenuity of tomorrow.
You Are
You have spent a decade building memory circuits that do not just pass simulation, they survive silicon. You know that an SRAM bitcell is not just six transistors, it is a balancing act between read stability, write margin, leakage, and yield, and you have made those tradeoffs enough times to know which corners will bite you at 0.6V and which ones only look scary in Monte Carlo.
When a sense amplifier fails timing at the worst-case corner, you do not panic, you pull up HSPICE, trace the critical path, and figure out whether it is a device issue, a layout parasitics problem, or a floorplan decision someone made two months ago. You have debugged silicon that came back wrong and figured out what the test data was actually telling you, not what you hoped it was saying.
You are comfortable sitting with a layout engineer to optimize a bitcell for another 2% density without breaking read margin, and you can explain to a product manager why that extra 50mV of assist voltage matters for their automotive customer. At Synopsys, you will work on SRAM IP that powers AI accelerators, mobile SoCs, and networking chips used across the industry.
What You'll Be Doing
Design and optimize SRAM bitcells and peripheral circuits including sense amplifiers, write drivers, precharge circuits, row and column decoders, and read/write assist blocks for advanced FinFET nodes (7nm, 5nm, 3nm)
Drive transistor-level circuit simulations using HSPICE and PrimeSim, running Monte Carlo, variability, SNM, and reliability analysis across PVT corners to ensure design closure
Develop and enhance SRAM compiler capabilities, building automated memory generation flows that balance power, performance, area, and yield
Collaborate with layout teams on custom cell design and parasitic closure, working through LVS, DRC, and PEX iterations to hit timing and power targets
Support silicon bring-up and debug, correlating lab measurements with simulation models and identifying root causes when characterization data does not match expectations
Automate design and validation workflows using Python, Perl, TCL, and shell scripting to improve efficiency and repeatability across memory development projects
Mentor junior engineers on circuit design techniques, simulation methodologies, and design-for-manufacturing principles
The Impact You Will Have
Your SRAM designs will be integrated into AI, HPC, mobile, networking, and automotive SoCs used by customers worldwide, directly affecting performance and power efficiency of next-generation chips
The memory compilers you develop will enable faster time-to-market for Synopsys IP customers, giving them flexible, high-quality SRAM solutions across multiple process nodes
Your circuit optimizations will push the boundaries of memory density, speed, and low-power operation in advanced FinFET technologies
The design methodologies and automation scripts you build will be reused across future memory IP projects, improving team productivity and design quality
Your silicon debug work will close the loop between design intent and real-world performance, improving correlation models and making future designs more predictable
The technical leadership you provide will raise the bar for circuit design excellence within the memory IP team
Your contributions to technical reviews and design discussions will shape architecture decisions that affect product roadmaps and customer engagements
What You'll Need
Bachelor's or Master's degree in Electrical Engineering, Electronics Engineering, VLSI Design, Microelectronics, or related field
10+ years of hands-on experience designing SRAM memory circuits and custom analog/mixed-signal blocks in production environments
Deep expertise in SRAM bitcell design, peripheral circuits (sense amps, write drivers, decoders, assist circuits), and memory architecture
Strong proficiency with Synopsys tools including HSPICE/PrimeSim, Custom Compiler, StarRC, IC Validator, and PrimeTime
Solid understanding of CMOS device physics, FinFET technology, and design challenges in advanced nodes (16nm/7nm/5nm/3nm)
Experience with Monte Carlo analysis, PVT validation, SNM analysis, and reliability simulations to ensure robust designs across corners
Scripting skills in Python, Perl, TCL, or shell for design automation and flow development; experience developing SRAM compilers or memory generators is a strong plus
Who You Are
You can look at a failing Monte Carlo run and quickly isolate whether it is a statistical outlier, a corner case that needs circuit tuning, or a fundamental architecture problem that requires a different approach
When layout parasitics break your timing budget, you work directly with the layout team to understand the routing bottleneck and propose circuit or floorplan changes that actually solve it
You know how to explain a complex circuit tradeoff to a product architect in two sentences without losing the technical nuance, and you can defend your design choices with data
You do not wait for perfect specs, you ask the right questions early, align with cross-functional teams on priorities, and make progress even when requirements are still evolving
You have debugged silicon that did not behave as expected and worked backward from lab data to figure out what the design missed, what the model missed, or what the test setup missed
You take ownership of your designs from schematic through silicon validation, and you care about whether they actually work in production, not just in simulation
The Team You'll Be Part Of
Your recruiter will share more about the team structure and mission during the interview process.
Rewards and Benefits
We offer a comprehensive range of health, wellness, and financial benefits to cater to your needs. Our total rewards include both monetary and non-monetary offerings. Your recruiter will provide more details about the salary range and benefits during the hiring process.
Show more Show less
We Are
Synopsys is the leader in engineering solutions from silicon to systems, enabling customers to rapidly innovate AI-powered products. We deliver industry-leading silicon design, IP, simulation and analysis solutions, and design services. We partner closely with our customers across a wide range of industries to maximize their R&D capability and productivity, powering innovation today that ignites the ingenuity of tomorrow.
You Are
You have spent a decade building memory circuits that do not just pass simulation, they survive silicon. You know that an SRAM bitcell is not just six transistors, it is a balancing act between read stability, write margin, leakage, and yield, and you have made those tradeoffs enough times to know which corners will bite you at 0.6V and which ones only look scary in Monte Carlo.
When a sense amplifier fails timing at the worst-case corner, you do not panic, you pull up HSPICE, trace the critical path, and figure out whether it is a device issue, a layout parasitics problem, or a floorplan decision someone made two months ago. You have debugged silicon that came back wrong and figured out what the test data was actually telling you, not what you hoped it was saying.
You are comfortable sitting with a layout engineer to optimize a bitcell for another 2% density without breaking read margin, and you can explain to a product manager why that extra 50mV of assist voltage matters for their automotive customer. At Synopsys, you will work on SRAM IP that powers AI accelerators, mobile SoCs, and networking chips used across the industry.
What You'll Be Doing
Design and optimize SRAM bitcells and peripheral circuits including sense amplifiers, write drivers, precharge circuits, row and column decoders, and read/write assist blocks for advanced FinFET nodes (7nm, 5nm, 3nm)
Drive transistor-level circuit simulations using HSPICE and PrimeSim, running Monte Carlo, variability, SNM, and reliability analysis across PVT corners to ensure design closure
Develop and enhance SRAM compiler capabilities, building automated memory generation flows that balance power, performance, area, and yield
Collaborate with layout teams on custom cell design and parasitic closure, working through LVS, DRC, and PEX iterations to hit timing and power targets
Support silicon bring-up and debug, correlating lab measurements with simulation models and identifying root causes when characterization data does not match expectations
Automate design and validation workflows using Python, Perl, TCL, and shell scripting to improve efficiency and repeatability across memory development projects
Mentor junior engineers on circuit design techniques, simulation methodologies, and design-for-manufacturing principles
The Impact You Will Have
Your SRAM designs will be integrated into AI, HPC, mobile, networking, and automotive SoCs used by customers worldwide, directly affecting performance and power efficiency of next-generation chips
The memory compilers you develop will enable faster time-to-market for Synopsys IP customers, giving them flexible, high-quality SRAM solutions across multiple process nodes
Your circuit optimizations will push the boundaries of memory density, speed, and low-power operation in advanced FinFET technologies
The design methodologies and automation scripts you build will be reused across future memory IP projects, improving team productivity and design quality
Your silicon debug work will close the loop between design intent and real-world performance, improving correlation models and making future designs more predictable
The technical leadership you provide will raise the bar for circuit design excellence within the memory IP team
Your contributions to technical reviews and design discussions will shape architecture decisions that affect product roadmaps and customer engagements
What You'll Need
Bachelor's or Master's degree in Electrical Engineering, Electronics Engineering, VLSI Design, Microelectronics, or related field
10+ years of hands-on experience designing SRAM memory circuits and custom analog/mixed-signal blocks in production environments
Deep expertise in SRAM bitcell design, peripheral circuits (sense amps, write drivers, decoders, assist circuits), and memory architecture
Strong proficiency with Synopsys tools including HSPICE/PrimeSim, Custom Compiler, StarRC, IC Validator, and PrimeTime
Solid understanding of CMOS device physics, FinFET technology, and design challenges in advanced nodes (16nm/7nm/5nm/3nm)
Experience with Monte Carlo analysis, PVT validation, SNM analysis, and reliability simulations to ensure robust designs across corners
Scripting skills in Python, Perl, TCL, or shell for design automation and flow development; experience developing SRAM compilers or memory generators is a strong plus
Who You Are
You can look at a failing Monte Carlo run and quickly isolate whether it is a statistical outlier, a corner case that needs circuit tuning, or a fundamental architecture problem that requires a different approach
When layout parasitics break your timing budget, you work directly with the layout team to understand the routing bottleneck and propose circuit or floorplan changes that actually solve it
You know how to explain a complex circuit tradeoff to a product architect in two sentences without losing the technical nuance, and you can defend your design choices with data
You do not wait for perfect specs, you ask the right questions early, align with cross-functional teams on priorities, and make progress even when requirements are still evolving
You have debugged silicon that did not behave as expected and worked backward from lab data to figure out what the design missed, what the model missed, or what the test setup missed
You take ownership of your designs from schematic through silicon validation, and you care about whether they actually work in production, not just in simulation
The Team You'll Be Part Of
Your recruiter will share more about the team structure and mission during the interview process.
Rewards and Benefits
We offer a comprehensive range of health, wellness, and financial benefits to cater to your needs. Our total rewards include both monetary and non-monetary offerings. Your recruiter will provide more details about the salary range and benefits during the hiring process.
Show more Show less
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