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The complete GUIDE for VLSI Freshers | Mistake a freshwoman/man must avoid | Finding Happiness :)
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About the GUEST :
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Kritika Rampal is a Senior SoC Design Engineer at Intel India.
She is a Young Professional & STEM mentor and motivational speaker from the heart.
Ever since her childhood, She began playing with Electronics.
She fell in love with Electronics Design Engineering owing to her passion for Physics and Mathematics.
She started her professional career with Cypress Semiconductor (now Infineon Technologies) as a Design Engineer and worked on the Frontend SoC Design - RTL Design, Lint, Clock Domain Crossing (CDC), Timing Constraints, Synthesis, UPF, and ECOs. She has contributed significant productivity improvement through process automation using TCL & Perl in IP Integration into the SoC timeline.
Currently, working in Intel India as Senior SoC Design Engineer, working on Frontend Low Power Challenges across Client, Server, and IoT SoCs.
To know more about her you can follow her on The LinkedIn
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MY WFH setup :
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About myself: Hi, I am Rajdeep Mazumder,I done my MTech from IIT Delhi in Radiofrequency design and technology. Presently I am working as a hardware engineer with Intel. I am an engineering enthusiast daily meditator and want to build hardcore engineering teaching as my profession.
follow me on
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Time Stamps
00:00. Introduction
00:43 When we can get out of VLSI fresher Zone
04:57 Why should a Women should join the VLSI industry
08:21 Is bengaluru is safe for Women ?
10:11 Mistake Kritka did as a fresher .
14:23 How to find is Happiness in this too competitive VLSI ind. ?
19:20 How to use the power of LinkedIN ?
24:36 Most common mistake of VLSI engineer
28:38 Why you should subscribe to whyRD ?
Disclaimer: All the views and information shared in this video are as of my best knowledge but please counter verify all information again. Here I am representing myself only. All the Guest have their own responsibility for any view taken forward on this platform. I made all my effort to share only the information which is already publicly available. No confidential information is being shared.
#whyRD #VLSI #semiconductor
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