G-Number 1 Challenges and Opportunities for Technion and the Israeli Chip Industry Avinoam Kolodny EE Department Technion – Israel Institute of Technology.

Slides:



Advertisements
Similar presentations
Boundaries, Social Capital and Cyberinfrastructure Vince Kellen CIO, University of Kentucky February 21, 2010.
Advertisements

Design and Implementation of VLSI Systems (EN0160) Sherief Reda Division of Engineering, Brown University Spring 2007.
Spring 08, Jan 15 ELEC 7770: Advanced VLSI Design (Agrawal) 1 ELEC 7770 Advanced VLSI Design Spring 2007 Introduction Vishwani D. Agrawal James J. Danaher.
Spring 07, Jan 16 ELEC 7770: Advanced VLSI Design (Agrawal) 1 ELEC 7770 Advanced VLSI Design Spring 2007 Introduction Vishwani D. Agrawal James J. Danaher.
MICRO-MODEM RELIABILITY SOLUTION FOR NOC COMMUNICATIONS Arkadiy Morgenshtein, Evgeny Bolotin, Israel Cidon, Avinoam Kolodny, Ran Ginosar Technion – Israel.
LOW-LEAKAGE REPEATERS FOR NETWORK-ON-CHIP INTERCONNECTS Arkadiy Morgenshtein, Israel Cidon, Avinoam Kolodny, Ran Ginosar Technion – Israel Institute of.
Trevor Burton6/19/2015 Multiprocessors for DSP SYSC5603 Digital Signal Processing Microprocessors, Software and Applications.
Digital Design Haldun Hadimioglu Computer and Information Science 3/30/2003 CS 2204 Laboratory.
Assignment II Integrated Circuits Design Ping-Hsiu Lee Reagan High School, Houston I. S. D. Deborah Barnett Tidehaven High School, Tidehaven I. S. D. Faculty.
8/18/05ELEC / Lecture 11 ELEC / (Fall 2005) Special Topics in Electrical Engineering Low-Power Design of Electronic Circuits.
1 Link Division Multiplexing (LDM) for NoC Links IEEE 2006 LDM Link Division Multiplexing Arkadiy Morgenshtein, Avinoam Kolodny, Ran Ginosar Technion –
King Fahd University of Petroleum & Minerals Department of Electrical Engineering.
EE314 Basic EE II Silicon Technology [Adapted from Rabaey’s Digital Integrated Circuits, ©2002, J. Rabaey et al.]
1 E. Bolotin – The Power of Priority, NoCs 2007 The Power of Priority : NoC based Distributed Cache Coherency Evgeny Bolotin, Zvika Guz, Israel Cidon,
1 Evgeny Bolotin – ICECS 2004 Automatic Hardware-Efficient SoC Integration by QoS Network on Chip Electrical Engineering Department, Technion, Haifa, Israel.
G-Number 1 The Innovation Paradox - Applied Creativity in Organizations The Innovation Paradox - Applied Creativity in Organizations Avinoam Kolodny Technion.
G-Number 1 Challenges and Opportunities for Technion and the Israeli Chip Industry Avinoam Kolodny EE Department Technion – Israel Institute of Technology.
The History of Computers By: Casey Walsh. Introduction Computer history can be broken down into five generations of change. Computer history can be broken.
ENEE 644 Dr. Ankur Srivastava Office: 1349 A.V. Williams URL: Computer-Aided Design of.
EE141 © Digital Integrated Circuits 2nd Introduction 1 The First Computer.
Center for Embedded Systems | An NSF Industry/University Cooperative Research Center CONFIDENTIAL CENTER FOR EMBEDDED SYSTEMS A NSF Industry University.
Computer performance.
Computer Architecture (Hardware Engineering) Dr. BEN CHOI Ph.D. in EE (Computer Engineering), The Ohio State University System Performance Engineer, Lucent.
EE414 VLSI Design Design Metrics in Design Metrics in VLSI Design [Adapted from Rabaey’s Digital Integrated Circuits, ©2002, J. Rabaey et al.]
Humanities and High Performance Computing: The New Age Mark Lawrence Kornbluh Cyberinfrastructure Days in Kentucky February 23, 2010.
© Prentice Hall THE EVOLUTION OF COMPUTER AGE 1. First Generation ( ) - computers were built with vacuum tubes. (electronic tubes that.
Architecture Examples And Hierarchy Samuel Njoroge.
Computer Engineering Department College of Computer Sciences and Engineering.
VLSI & ECAD LAB Introduction.
High-Performance Computing An Applications Perspective REACH-IIT Kanpur 10 th Oct
Grad Student Visit DayUniversity of Wisconsin-Madison Wisconsin Computer Architecture Guri SohiMark HillMikko LipastiDavid WoodKaru Sankaralingam Nam Sung.
CSE 494: Electronic Design Automation Lecture 2 VLSI Design, Physical Design Automation, Design Styles.
EE3A1 Computer Hardware and Digital Design
Professor Peter Landshoff 1 If you are trained as a physicist you can do anything!
Department of Electrical and Electronic Engineering The micro group The micro group is formed by academic staff from the EE and the CS department that.
Present – Past -- Future
Industry Outlook November Manufacturing Matters in Canada  A $620 billion industry  12% of GDP (18% in 2004)  1.7.
“Politehnica” University of Timisoara Course Advisor:  Lucian Prodan Evolvable Systems Web Page:   Teaching  Graduate Courses Summer.
National Strategic Computing Initiative
1 WORKSHOP ON RESULTS OF IMPLEMENTATION OF COMPUTER SCIENCE EDUCATION Innovation of Computer Science Curriculum in Higher Education TEMPUS project CD-JEP.
An Introduction to VLSI (Very Large Scale Integrated) Circuit Design
EE586 VLSI Design Partha Pande School of EECS Washington State University
Assoc. Prof. Dr. Ahmet Turan ÖZCERİT.  What is engineer,  What is Computer Engineering  The topics in Computer Engineering You will learn: 2.
Transistor Counts 1,000, ,000 10,000 1, i386 i486 Pentium ® Pentium ® Pro K 1 Billion Transistors.
EE141 © Digital Integrated Circuits 2nd Introduction 1 Principle of CMOS VLSI Design Introduction Adapted from Digital Integrated, Copyright 2003 Prentice.
1 Switching Theory & Logic Design Laboratory Debdeep Mukhopadhyay Associate Professor Dept of Computer Science and Engineering IIT Kharagpur.
Main memory Processor Bus Cache memory Figure 1.5.The processor cache.
Integrated Microsystems Lab. EE372 VLSI SYSTEM DESIGNE. Yoon 1-1 Panorama of VLSI Design Fabrication (Chem, physics) Technology (EE) Systems (CS) Matel.
EE141 © Digital Integrated Circuits 2nd Introduction 1 EE5900 Advanced Algorithms for Robust VLSI CAD Dr. Shiyan Hu Office: EERC 731 Adapted.
Computer Architecture
CS203 – Advanced Computer Architecture
CC311 Computer Architecture Chapter 1 Computer Abstraction & Technology.
M V Ganeswara Rao Associate Professor Dept. of ECE Shri Vishnu Engineering College for Women Bhimavaram Hardware Architecture of Low-Power ALU using Clock.
EE141 © Digital Integrated Circuits 2nd Introduction 1 EE4271 VLSI Design Dr. Shiyan Hu Office: EERC 731 Adapted and modified from Digital.
Centre of Excellence in Physics at Extreme Scales Richard Kenway.
SUBJECT : DIGITAL ELECTRONICS CLASS : SEM 3(B) TOPIC : INTRODUCTION OF VHDL.
Penn State Center for e-Design Site Vision and Capabilities
ELEC 7770 Advanced VLSI Design Spring 2016 Introduction
Chapter 15 Technological Change
Architecture & Organization 1
ELEC 7770 Advanced VLSI Design Spring 2014 Introduction
Israel Cidon, Ran Ginosar and Avinoam Kolodny
Architecture & Organization 1
ELEC 7770 Advanced VLSI Design Spring 2012 Introduction
ELEC 7770 Advanced VLSI Design Spring 2010 Introduction
ECNG 1014: Digital Electronics Lecture 1: Course Overview
Chapter 1 Introduction.
HIGH LEVEL SYNTHESIS.
NetPerL Seminar Hardware/Software Co-Design
1.Introduction to Advanced Digital Design (14 marks)
Presentation transcript:

G-Number 1 Challenges and Opportunities for Technion and the Israeli Chip Industry Avinoam Kolodny EE Department Technion – Israel Institute of Technology July 2010

G-Number 2

3 EE CS

4 Evolution of an industry - Personal Viewpoint Between Technion and Intel Between Technion and Intel

G-Number : Graduated with EE

G-Number 6 My First task at Intel Ported simulator to Technion’s big IBM computer Ported simulator to Technion’s big IBM computer

G-Number 7 First trip to Intel Santa Clara Intel Israel acquired a minicomputer Intel Israel acquired a minicomputer Needed a software person Needed a software person I was still a Technion graduate student… I was still a Technion graduate student… … I asked my advisor… … I asked my advisor…

G-Number 8

9 Post Doc at Intel’s Non-Volatile Memory Group 1980’s: Intel moved from memories to processors 1980’s: Intel moved from memories to processors

G-Number 10 Design Automation for Processors RTL modeling Timing Analysis Cell libraries Logic Synthesis

G-Number 11 Intel’s CAD History

G-Number 12 Synthesis-Based Chip Design Logic designers became programmers Logic designers became programmers Israel became “Land of chips and software” Israel became “Land of chips and software” The 486 Processor

G-Number 13 It was all implied by Moore’s Law: From memories to processors to systems From memories to processors to systems Digital revolution: changed the world Digital revolution: changed the world

G-Number 14 Contribution to Education

G-Number 15 The Positive Spiral Intel Technion Israeli Industry Economy

G-Number 16 Technion and the Israeli Chip Industry Technion Israeli Chip IndustryPast Present

G-Number 17

G-Number 18 Back to Technion

G-Number 19 Current Research Challenges Interconnect Interconnect Energy efficiency Energy efficiency Programming of ‘many-core’ systems Programming of ‘many-core’ systems

G-Number 20 Interconnect and Complexity

G-Number 21 Adding metal Layers in Chips Wires dominate: Wires dominate: –Speed –Power –Noise –Reliability –Cost

G-Number 22 Intel’s Pentium-M (designed in Haifa) Intel’s Pentium-M (designed in Haifa) Energy Consumption: Energy Consumption: – Bit-Transportation > computation ! Interconnect Power: 2004 case study * N. Magen, A. Kolodny, U. Weiser and N. Shamir, “Interconnect-Related Energy dissipation in a Low-Power Microprocessor”, Proc. SLIP, Interconnect 51 % Gate 34% Diffusion 15%

G-Number 23 Bits as Cars on the Information highway Energy efficiency in chip design Energy efficiency in chip design

G-Number 24 paradigm shift in VLSI: Network on Chip (NoC) From: Dedicated signal wires to: Shared network From: Dedicated signal wires to: Shared network Computing Resource Network switch Network link * E. Bolotin, I. Cidon, R. Ginosar and A. Kolodny., “QNoC: QoS architecture and design process for Network on Chip”, JSA special issue on NoC, 2004.

G-Number 25 ACRC opening ceremony, 2008 Advanced Circuit Research Center MellanoxTIZoranMarvellIntel A Technion/Industry joint effort A Technion/Industry joint effort

G-Number 26 Beyond 10 Years Ahead: Future Challenges and Opportunities MOS Device Scaling will slow down MOS Device Scaling will slow down – New ways for system integration – Back to basic sciences – Interdisciplinary solutions – New architectures

G-Number 27 Long Term Issues for the Industry Flat world Flat world – Competition with Asia Imperatives for Technion and the industry Imperatives for Technion and the industry – Israel can win by innovation – Education: more Ph.D.’s – Need stronger research collaboration

G-Number 28 Mythical Academia-Industry Mismatch Industry Industry – Working results – Secret IP – Tight schedule – Low Risk – Control – Money Academia Academia – Paper results – Publish – Slow – High risk – Freedom – Fame

G-Number 29 The Innovation Paradox - Applied Creativity in Organizations The Innovation Paradox - Applied Creativity in Organizations * F. Chu, A. Kolodny, S. Maital and D. Perlmutter, “The innovation paradox: Reconciling creativity & discipline – How winning organizations combine inspiration with perspiration,” Proceedings of IEEE International Engineering Management Conference, October Dadi Perlmutter (Intel( Dadi Perlmutter (Intel( Shlomo Maital (TIM) Shlomo Maital (TIM) Avi Kolodny (Technion( Avi Kolodny (Technion(

G-Number 30 “Head in the Clouds, Feet on the Ground” Let’s apply this for academia-industry joint research! Let’s apply this for academia-industry joint research!

G-Number 31 Technion and the Industry – Summary of Opportunities

G-Number 32 1) Research Partnership Technion enabled Israeli hi-tech Mostly as an engineering school Mostly as an engineering school Industry will need research to innovate - More Ph.D.’s - More Ph.D.’s - Collaboration in research - Collaboration in research

G-Number 33 2) Industry Funded Research Technology driven by defense Government funded research Government funded research Economic developments lead Industry must fund academic research

G-Number 34 3) Culture Transformation Technion: theory and individual research Industry: practical short term results Industry: practical short term results Joint research in computer engineering - Long and short terms - Long and short terms - Teamwork - Teamwork

G-Number 35 A Specific Plan: Computer Engineering Research Center

G-Number 36 Hardware Physics Electronic devices Computer hardware High Performance Computing Need for integrated view: Hardware and software Software Theory Algorithms Software

G-Number 37 The center as a focal point for collaboration Research in Israel, centered at the Technion, including Academia, R&D from Hi-Tech industry, as well as R&D from leading international companies (Microsoft, Intel, Google, etc.) Create a focal point

G-Number 38 The Technion gave invaluable leverage to The Technion gave invaluable leverage to – Israel – Israeli hi-tech industry – Individual Alumni Let’s work together for future success! Let’s work together for future success!