Responsibilities Exciting opportunity to work on Digital Flows/Methodologies architecture and development in EDA team at MaxLinear, Bangalore. Enable EDA flows and qualify tools on cutting edge IPs before rolling them to…
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Full-time
bachelor degree, postgraduate degree
Posted 112d ago
Apply by Apr 7
~40 hrs/week
Responsibilities
Develop, maintain, and debug SOC design methodologies and EDA flows from RTL to GDS. Collaborate with IT and database teams to optimize engineering compute infrastructure and support design engineers with tool setup.
Requirements
Requires a BS or MS in Electrical/Computer Engineering with 2-3+ years of experience in CAD or EDA tool development. Must possess strong scripting skills in Python, Perl, Tcl, and Shell, along with proficiency in industry-standard EDA tools.
Full job description
Responsibilities
Exciting opportunity to work on Digital Flows/Methodologies architecture and development in EDA team at MaxLinear, Bangalore. Enable EDA flows and qualify tools on cutting edge IPs before rolling them to the wider community. In this role, you will focus on the following:
Develops, maintains, debugs and tests SOC Design Methodologies using Commercial EDA tools
Implements flows/scripts, defined by experts, to help design teams execute Front-End (RTL) to Back-End (GDS) flows seamlessly
Verify EDA flows are generating correct results (flow signoff) and setup tool regressions
Work closely with Engg IT and Database Mgmt teams to setup flows which work well with the Engineering Compute Infra in MaxLinear Datacenters
Support design engineers on the flow setup and resolve their queries
Qualifications
MS in Electrical/Computer Engineering with 2+ years or BS in Electrical/Computer Engineering with 3+ years of demonstrated experience in design, CAD or EDA tools support and development
Must have strong scripting abilities in Python and/or Perl, Shell and Tcl. Experience in using AI tools effectively for productivity enhancement
Experience with Front-end Digital Design and/or PD and/or Digital Verification methodologies
Must have experience with Cadence/Synopsys/Siemens EDA Tools in these domains
Should be very good in data structures, algorithms and logical interpretation
Strong skills in debugging and analyzing techniques to understand existing scripts/flows; Ability to work independently and explore new domains
Must have UNIX knowledge and experience with data-management (version control) software
Familiarize with hands-on usage with IDEs Eclipse/PyCharm or any equivalent
Ability to document design methodologies & provide training on tools and workflows to design teams
Demonstrated experience with various EDA software, flows and architectures
Strong written and verbal interpersonal skills and track record of success in a collaborative team environment
Company Overview
MaxLinear is a global, NASDAQ-traded company (MXL) where the entrepreneurial spirit is alive and well. We are a fabless system-on-chip product company, striving to improve the world’s communication networks for everyone through our highly integrated radio-frequency (RF), analog, digital, and mixed-signal semiconductor solutions for access and connectivity, wired and wireless infrastructure, and industrial and multi-market applications.
We hire the best people in the industry and engage them in some of the most exciting opportunities that connect the world we live in today. Our growth has come from innovative, bold approaches to solving some of the world’s most challenging communication technology problems in the most efficient and effective manner.
MaxLinear began by developing the world’s first high-performance TV tuner chip using standard CMOS process technology. Others said we couldn’t achieve the extremely high-performance requirements using CMOS, but we proved them wrong and achieved enduring global market leadership with our designs. Since then, we’ve developed a full line of products that drive 4G and 5G infrastructure; enable data center, metro and long-haul optical interconnects; bring 10Gbit to the home; power the IoT revolution; and enable robust and reliable communication in harsh industrial environments. Over the years, we’ve expanded through organic growth and through several acquisitions that have perfectly complemented our existing portfolio and enabled us to deliver complete end-to-end solutions in our target markets. One such example was the acquisition of Intel’s Home Gateway Platform Division that added Wi-Fi, Ethernet, and Broadband Gateway Processor SoC technology to our connected home portfolio creating a complete and scalable platform of connectivity and access solutions to fully address our customers’ needs.
Our headquarters are in Carlsbad, near San Diego, California. We also have major design centers in Irvine and San Jose, California; Valencia, Spain; Bangalore, India; Munich, Germany; Israel; and Singapore.
We have approximately 1,200 employees, a substantial majority of whom have engineering degrees and include masters and Ph.D. graduates from many of the premiere universities around the world. Our employees thrive on innovation, outstanding execution, outside-the-box thinking, nimbleness, and collaboration. Together, we form a high-energy business team that is focused on building the best and most innovative products on the market.
MaxLinear is a fabless semiconductor company that provides systems-on-chip (SoC) solutions used for broadband, mobile and wireline infrastructure, data center, and industrial and multi-market applications.
We bring our customers a competitive advantage through engineering excellence, innovation and execution. Due to exceptional levels of integration, performance, and optimized power consumption, our solutions make our customers more competitive by enabling shorter design cycles, significant design flexibility, and low system-level cost.
MaxLinear’s highly integrated semiconductor devices and platform-level solutions are primarily manufactured using low-cost CMOS process technology. CMOS processes are ideally suited for large digital logic implementations targeting high-volume and low-cost consumer applications. Importantly, our ability to design analog and mixed-signal circuits in CMOS allows us to efficiently combine analog functionality and complex digital signal processing logic in the same integrated circuit. As a result, our solutions have exceptional levels of functional integration and performance, low manufacturing cost, and reduced power consumption. In addition, our proprietary CMOS-based radio and digital system architectures also enable shorter design cycles, significant design flexibility and low system-level cost across a wide range of broadband communications, wired and wireless infrastructure, and industrial and multi-market customer applications.
Our vision is to revolutionize the way the world connects and communicates.
Offices: 5966 La Place Ct, #100, Carlsbad, California 92008, US · 1060 Rincon Circle, San Jose, California 95131, US · 50 Parker, Irvine, California 92618, US · 4370 Still Creek Dr, Suite 110, Burnaby, British Columbia V5C 0G5, CA · Ronda de Narcís Monturiol, 11D, Paterna, Valencia 08349, ES
semiconductorsanalogdigitalRFmixed-signal and signal processingDOCSISWi-FiGPONRadio Access Network (RAN)microwave & mmWave backhaul and fronthaul
MaxLinear is a fabless semiconductor company that provides systems-on-chip (SoC) solutions used for broadband, mobile and wireline infrastructure, data center, and industrial and multi-market applications.
We bring our customers a competitive advantage through engineering excellence, innovation and execution. Due to exceptional levels of integration, performance, and optimized power consumption, our solutions make our customers more competitive by enabling shorter design cycles, significant design flexibility, and low system-level cost.
MaxLinear’s highly integrated semiconductor devices and platform-level solutions are primarily manufactured using low-cost CMOS process technology. CMOS processes are ideally suited for large digital logic implementations targeting high-volume and low-cost consumer applications. Importantly, our ability to design analog and mixed-signal circuits in CMOS allows us to efficiently combine analog functionality and complex digital signal processing logic in the same integrated circuit. As a result, our solutions have exceptional levels of functional integration and performance, low manufacturing cost, and reduced power consumption. In addition, our proprietary CMOS-based radio and digital system architectures also enable shorter design cycles, significant design flexibility and low system-level cost across a wide range of broadband communications, wired and wireless infrastructure, and industrial and multi-market customer applications.
Our vision is to revolutionize the way the world connects and communicates.
Offices: 5966 La Place Ct, #100, Carlsbad, California 92008, US · 1060 Rincon Circle, San Jose, California 95131, US · 50 Parker, Irvine, California 92618, US · 4370 Still Creek Dr, Suite 110, Burnaby, British Columbia V5C 0G5, CA · Ronda de Narcís Monturiol, 11D, Paterna, Valencia 08349, ES
semiconductorsanalogdigitalRFmixed-signal and signal processingDOCSISWi-FiGPONRadio Access Network (RAN)microwave & mmWave backhaul and fronthaul