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MULTI-CORE COMPUTING IN EMBEDDED APPLICATIONS: GLOBAL MARKET OPPORTUNITY AND REQUIREMENTS ANALYSIS

Product Type: Market Research Report Publication Date: Sep 04, 2007
 
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SUMMARY

RESEARCH OVERVIEW:

  • Pages: 162
  • Exhibits: 130
  • Profiled Companies: 14
  • Primary Sources/Telephone Sample Size: 80
  • Primary Sources/Web Survey Sample Size: 350
  • Market Forecast Coverage: 2006-2011
  • Regional Market Coverage: Global

DETAILED OVERVIEW:

This report, Multi-Core Computing in Embedded Applications: Global Market Opportunity and Requirements Analysis, comprises an examination of the present and future markets for the emerging embedded multi-core processor technology. Included are current market sizes and forecasts through year 2011, along with brief descriptions of the technologies involved. Trends are identified, markets analyzed, and strategies recommended.

TABLE OF CONTENTS

I. EXECUTIVE SUMMARY

  • GENERAL OVERVIEW
  • Processors
  • Software
  • STUDY FINDINGS
  • Multi-Core Processors
  • Multi-Core Software
  • Multi-Core Users
  • CONCLUSION

II. SCOPE AND METHODOLOGY

  • SCOPE
  • DEFINITONS OF TERMS AND MARKET SIZING
  • SEGMENTATION
  • OTHER REPORT CONTENT
  • METHODOLOGY

III. EMBEDDED MULTI-CORE PROCESSOR ANALYSIS

  • MARKET OVERVIEW
  • EMBEDDED MULTI-CORE CPUS
  • Market Overview
  • Architectures
  • Number of Cores
  • Core Configuration
  • Multi-Processing Methodology
  • Distribution Channels and Customer Classes
  • CPU Fabrication
  • Geographic Distribution
  • Vertical Markets
  • Applications
  • Memory Configurations
  • OS/RTOSs
  • Leading Vendors
  • EMBEDDED MULTI-CORE PROCESSOR IP
  • Market Overview
  • Number of Cores
  • Core Configurations
  • Multi-Processing Methodologies
  • Distribution Channels and Customer Classes
  • Geographic Distribution
  • Vertical Markets
  • Applications
  • Memory Configurations
  • OS/RTOSs
  • Leading Vendors
  • EMBEDDED MULTI-CORE DSPS
  • Market Overview
  • Core Configurations
  • Distribution Channels and Customer Classes
  • DSP Fabrication
  • Geographic Distribution
  • Vertical Markets
  • Applications
  • Leading Vendors

IV. EMBEDDED SOFTWARE ANALYSIS

  • MARKET OVERVIEW
  • Why Multi-Core?
  • Software Challenges for Multi-core Architectures
  • PREPAREDNESS FOR MULTI-CORE
  • Embedded Software Industry
  • Embedded Software Products
  • GEOGRAPHIC DISTRIBUTION
  • VERTICAL MARKET DISTRIBUTION
  • SOFTWARE SERVICES
  • MULTI-CORE PROCESSOR SUPPORT
  • PRODUCT CATEGORIES
  • STANDARDIZATION
  • TOTAL EMBEDDED MULTI-CORE SOFTWARE MARKET
  • EDA

V. EMBEDDED BOARDS ANALYSIS

  • MARKET OVERVIEW
  • MULTI-CORE PROCESSOR ADOPTION BY BUS ARCHITECTURE AND
  • FORM FACTOR
  • VME
  • CompactPCI
  • PCI
  • ATCA
  • MicroTCA
  • Mini-ITX
  • ATX
  • PC/104
  • EPIC/EBX/3.5"
  • PMC/XMC
  • AMC
  • Computer-On-Modules (COMs)
  • VERTICAL MARKETS
  • APPLICATIONS
  • SOFTWARE

VI. EMBEDDED MULTI-CORE USER ANALYSIS

  • CURRENT MULTI-CORE ADOPTION PLANS
  • Multi-Processing Implementation
  • VERTICAL MARKETS AND APPLICATIONS
  • MULTI-CORE IMPLEMENTATION TRENDS
  • PROCESSOR POWER REQUIREMENTS
  • PRIMARY MULTI-CORE PROCESSOR VENDORS
  • RATINGS OF CURRENT PROCESSORS
  • MAIN REASONS FOR EVALUATING MULTI-CORE PROCESSORS
  • MULTI-CORE PRICE PREMIUMS
  • TIME-TO-MARKET IMPACT
  • MULTI-CORE UNIT VOLUMES
  • MULTI-CORE PROCESSOR LEADERS
  • MULTI-CORE CHALLENGES
  • PROGRAMMING MODELS/LANGUAGES
  • MULT-THREADING UTILIZATION
  • TRAINING SUPPORT SERVICES
  • MULTI-CORE SOFTWARE ENVIRONMENT CONFIGURATION
  • MULTI-CORE SOFTWARE PRICE PREMIUMS
  • USER REQUIREMENTS AND PERCEPTIONS FOR MULTI-CORE
  • SOFTWARE TOOLS
  • SOFTWARE DEVELOPMENT TOOLS BUDGETS
  • SOFTWARE DEVELOPMENT TOOLS LEADERS
  • USERS NEITHER USING NOR EVALUATING MULTI-CORE PROCESSORS
  • Vertical Markets
  • Reasons for Not Adopting Multi-Core
  • Ratings of Current Processor Requirements
  • Development Tools

VII. SUMMARY AND OBSERVATIONS

  • CURRENT MARKET
  • PROCESSOR DIVIDE
  • PRODUCT ROADMAPS
  • SCALABILITY
  • BOTTLENECKS
  • A DOUBLE-PRONGED APPROACH TO PARALLELIZING SOFTWARE
  • Making C/C++ More Expressive
  • Higher Level Programming Languages
  • VIRTUALIZATION
  • STANDARDS
  • AVOID THE "DO NOTHING" APPROACH

VIII. VENDOR PROFILES

  • VIII-A PROCESSOR PROFILES
    • AMBRIC, INC
    • ADVANCED MICRO CIRCUITS CORPORATION
    • ADVANCED MICRO DEVICES, INC
    • ANALOG DEVICES, INC
    • ARC INTERNATIONAL
    • ARM HOLDINGS PLC
    • CAVIUM NETWORKS
    • FREESCALE SEMICONDUCTOR, INC
    • IBM CORPORATION
    • IMAGINATION TECHNOLOGIES GROUP PLC
    • INTEL CORPORATION
    • INTELLASYS
    • MIPS TECHNOLOGIES, INC.
    • P.A. SEMI, INC.
    • PICOCHIP DESIGNS LIMITED
    • PLURALITY
    • RAZA MICROELECTRONICS, INC.
    • STREAM PROCESSORS, INC.
    • SUN MICROSYSTEMS, INC.
    • TENSILICA, INC.
    • TEXAS INSTRUMENTS, INC.
    • XMOS SEMICONDUCTOR LTD.
  • VIII-B SOFTWARE PROFILES
    • ALLINEA SOFTWARE
    • CODEPLAY SOFTWARE LTD.
    • ENEA AB
    • GREEN HILLS SOFTWARE, INC.
    • IMPERAS, INC
    • MICROSOFT CORPORATION
    • NATIONAL INSTRUMENTS CORPORATION
    • POLYCORE SOFTWARE, INC.
    • QNX SOFTWARE SYSTEMS LTD
    • RADISYS CORPORATION
    • RAPIDMIND, INC.
    • VIRTUALLOGIX, INC.
    • VIRTUTECH, INC.
    • WIND RIVER SYSTEMS, INC.

LIST OF EXHIBITS

I. EXECUTIVE SUMMARY

  • I-1 Total Market, Multi-Core CPUs Used in Embedded Applications, 2006-2011 (US$ in Millions)
  • I-2 Multi-Core CPUs Used in Embedded Applications, Number of Cores, 2007 & 2009 (% of US Dollar Volume Shipments)
  • I-3 Multi-Core CPUs Used in Embedded Applications, Core Configuration, 2007 & 2009 (% of US Dollar Volume Shipments)
  • I-4 Multi-Core CPUs Used in Embedded Applications, Multi-Processing Methodology, 2007 & 2009 (% of US Dollar Volume Shipments)
  • I-5 Total Market, Embedded Multi-Core Processor IP, 2006-2011 (US$ in Millions)
  • I-6 Embedded Multi-Core Processor IP, Number of Cores, 2007 & 2009 (% of US Dollar Volume Shipments)
  • I-7 Embedded Multi-Core Processor IP, Core Configuration, 2007 & 2009 (% of US Dollar Volume Shipments)
  • I-8 Embedded Multi-Core Processor IP, Multi-Processing Methodology, 2007 & 2009 (% of US Dollar Volume Shipments)
  • I-9 Total Market, Multi-Core DSPs Used in Embedded Applications, 2006-2011 (US$ in Millions)
  • I-10 Multi-Core DSPs Used in Embedded Applications, Core Configuration, 2007 & 2009 (% of US Dollar Volume Shipments)
  • I-11 Projections of Percentage of Total Commercial Embedded Software Enabled for Multi-Core Processing, 2006-2011 (Aggregated Percentages of Total Embedded Software Market as Collected from Embedded Software Vendors)
  • I-12 Perception of the Current Level of Maturity with Respect to Multi-Core Support of Embedded Software Product Categories, 2007 (Average Rating on a Scale of 1 to 5 Where 1 is Least Mature and 5 is Most Mature)
  • I-13 Current Adoption Plans for Multi-Core Processors, 2007 (Percentage of Survey Respondents Identifying)
  • I-14 Perceived Price Premium Over Single-Core Processors that Multi-Core Processors are Currently Worth (Percentage of Survey Respondents Identifying Each)
  • I-15 Biggest Challenges/Gaps Encountered Using Multi-Core Processors (Percentage of Survey Respondents Identifying Each)
  • I-16 Programming Models/Languages Currently Being Used/Evaluated (Percentage of Survey Respondents Identifying Each)
  • I-17 Rating of User's Own Experience with Parallel Programming (Average Rating on a Scale of 1 to 5 Where 1 is the Least Experienced)

III. EMBEDDED MULTI-CORE PROCESSOR ANALYSIS

  • III-1 Total Market, Multi-Core CPUs Used in Embedded Applications, 2006-2011 (US$ in Millions)
  • III-2 Multi-Core CPUs Used in Embedded Applications, Normalized Growth Curve, 2006-2011 (Dollar Volume Shipments Normalized to Year 2006 Value)
  • III-3 Multi-Core CPUs Used in Embedded Applications, Architectures, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-4 Multi-Core CPUs Used in Embedded Applications, Number of Cores, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-5 Multi-Core CPUs Used in Embedded Applications, Core Configuration, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-6 Multi-Core CPUs Used in Embedded Applications, Multi-Processing Methodology, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-7 Multi-Core CPUs Used in Embedded Applications, Sales/Distribution Channels, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-8 Multi-Core CPUs Used in Embedded Applications, Customer Classes, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-9 Multi-Core CPUs Used in Embedded Applications, Fabrication, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-10 Multi-Core CPUs Used in Embedded Applications, Geographic Distribution of Shipments, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-11 Multi-Core CPUs Used in Embedded Applications, Vertical Markets, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-12 Multi-Core CPUs Used in Embedded Applications, Applications, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-13 Multi-Core CPUs Used in Embedded Applications, Memory Configuration, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-14 Multi-Core CPUs Used in Embedded Applications, OS/RTOS Use , 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-15 Leading Vendors of Multi-Core CPUs for Embedded Applications, 2007 Projections
  • III-16 Total Market, Embedded Multi-Core Processor IP, 2006-2011 (US$ in Millions)
  • III-17 Embedded Multi-Core Processor IP, Normalized Growth Curve, 2006-2011 (Dollar Volume Shipments Normalized to Year 2006 Value)
  • III-18 Embedded Multi-Core Processor IP, Number of Cores, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-19 Embedded Multi-Core Processor IP, Core Configuration, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-20 Embedded Multi-Core Processor IP, Multi-Processing Methodology, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-21 Embedded Multi-Core Processor IP, Sales Channels, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-22 Embedded Multi-Core Processor IP, Customer Classes, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-23 Embedded Multi-Core Processor IP, Geographic Distribution of Shipments, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-24 Embedded Multi-Core Processor IP, Vertical Markets, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-25 Embedded Multi-Core Processor IP, Applications, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-26 Embedded Multi-Core Processor IP, Memory Configurations, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-27 Embedded Multi-Core Processor IP, OS/RTOS Use, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-28 Leading Vendors of Embedded Multi-Core Processor IP, 2007 Projections
  • III-29 Total Market, Multi-Core DSPs Used in Embedded Applications, 2006-2011 (US$ in Millions)
  • III-30 Multi-Core DSPs Used in Embedded Applications, Core Configuration, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-31 Multi-Core DSPs Used in Embedded Applications, Sales/Distribution Channels, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-32 Multi-Core DSPs Used in Embedded Applications, Customer Classes, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-33 Multi-Core DSPs Used in Embedded Applications, Fabrication, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-34 Multi-Core DSPs Used in Embedded Applications, Geographic Distribution of Shipments, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-35 Multi-Core DSPs Used in Embedded Applications, Vertical Markets, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-36 Multi-Core DSPs Used in Embedded Applications, Applications, 2007 & 2009 (% of US Dollar Volume Shipments)
  • III-37 Leading Vendors of Multi-Core DSPs for Embedded Applications, 2007 Projections

IV. EMBEDDED SOFTWARE ANALYSIS

  • IV-1 Multi-Core Processor Core Configurations Supported by Embedded Software Vendors, 2007 (Percent of Embedded Software Vendor Respondents
  • Supporting Each Core Configuration)
  • IV-2 Multiprocessing Methodologies Supported by Embedded Software Vendors, 2007 (Percent of Embedded Software Vendor Respondents Supporting Each Multiprocessing Methodology)
  • IV-3 Perception of the Current Preparedness of the Commercial Embedded Software Industry as a Whole to Deal with Multi-Core Processing, 2007 (Average Rating on a Scale of 1 to 5 Where 1 is Least Prepared and 5 is Most Prepared)
  • IV-4 Perception of the Current Level of Maturity with Respect to Multi-Core Support of Embedded Software Product Categories, 2007 (Average Rating on a Scale of 1 to 5 Where 1 is Least Mature and 5 is Most Mature)
  • IV-5 Geographic Distribution of Interest in Multi-Core Processing from the Perspective of Embedded Software Vendors, 2007 & 2009 (Weighted Average Percent Breakdown of Geographic Distribution as Rated by Software Vendor Respondents)
  • IV-6 Vertical Market Distribution of Interest in Multi-Core Processing from the Perspective of Embedded Software Vendors, 2007 & 2009 (Weighted Average Percent Breakdown of Vertical Market Distribution as Rated by Software Vendor Respondents)
  • IV-7 Training and Consulting/System Engineering Services Offered by Embedded Software Vendors in Support of Multi-Core Device Development, 2007 (Percent of Embedded Software Vendor Respondents Offering Training or Consulting/System Engineering Services)
  • IV-8 Multi-Core Processor Suppliers Supported by Embedded Software Development Solutions, 2007 (Percent of Embedded Software Vendor Respondents Identifying Multi-Core Software Support for Processor Supplier)
  • IV-9 Device & Application Development Product Categories Supported by Multi- Core Embedded Software Solutions, 2007 (Percent of Embedded Software Vendor Respondents Supporting Each Device & Application Development Product Category)
  • IV-10 Embedded Software Product Categories Offered in Support of Multi-Core Device Development by Embedded Software Vendors, 2007 (Percent of Embedded Software Vendor Respondents Offering each Software Product Category)
  • IV-11 Projections of Percentage of Total Commercial Embedded Software Enabled for Multi-Core Processing, 2006-2011 (Aggregated Percentages of Total Embedded Software Market as Collected from Embedded Software Vendors)

V. EMBEDDED BOARDS ANALYSIS

  • V-1 Multi-Core Processor Adoption on VME Single Board Computers, Projected First Year of Implementation (% of VME SBC Suppliers Interviewed)
  • V-2 Multi-Core Processors used on VME Single Board Computers, Segmented by Processor Manufacturer (% of VME SBC Suppliers Interviewed that Plan to Implement Multi-Core Processors)
  • V-3 Multi-Core Processor Adoption on CompactPCI Single Board Computers, Projected First Year of Implementation (% of CompactPCI SBC Suppliers Interviewed)
  • V-4 Multi-Core Processors used on cPCI Single Board Computers, Processor Manufacturer (% of CompactPCI SBC Suppliers Interviewed that Plan to Implement Multi-Core Processors)
  • V-5 Multi-Core Processor Adoption on PCI Single Board Computers, Projected First Year of Implementation (% of PCI SBC Suppliers Interviewed)
  • V-6 Multi-Core Processors used on PCI Single Board Computers, Processor Manufacturer (% of PCI SBC Suppliers Interviewed that Plan to Implement Multi-Core Processors)
  • V-7 Multi-Core Processor Adoption on ATCA Processor Blades, Projected First Year of Implementation (% of ATCA CPU Blade Suppliers Interviewed)
  • V-8 Multi-Core Processors used on ATCA Processor Blades, Processor Manufacturer (% of ATCA CPU Blade Suppliers Interviewed that Plan to Implement Multi-Core Processors)
  • V-9 Multi-Core Processor Adoption on MicroTCA Processor Blades, Projected First Year of Implementation (% of MicroTCA Suppliers Interviewed)
  • V-10 Multi-Core Processors used on MicroTCA Processor Blades, Processor Manufacturer (% of MicroTCA Suppliers Interviewed that Plan to Implement Multi-Core Processors)
  • V-11 Multi-Core Processor Adoption on Mini-ITX Family Motherboards, Projected First Year of Implementation (% of Mini-ITX Family Motherboard Suppliers Interviewed)
  • V-12 Multi-Core Processors used on Mini-ITX Family Motherboards, Processor Manufacturer (% of Mini-ITX Family Motherboard Suppliers Interviewed that Plan to Implement Multi-Core Processors)
  • V-13 Multi-Core Processor Adoption on ATX Family Motherboards, Projected First Year of Implementation (% of ATX Family Motherboard Suppliers Interviewed)
  • V-14 Multi-Core Processors used on ATX Family Motherboards, Processor Manufacturer (% of ATX Family Motherboard Suppliers Interviewed that Plan to Implement Multi-Core Processors)
  • V-15 Multi-Core Processor Adoption on PC/104 Family Processor Boards, Projected First Year of Implementation (% of PC/104 Family Suppliers Interviewed)
  • V-16 Multi-Core Processors used on PC/104 Family Processor Boards, Processor Manufacturer (% of PC/104 Family Suppliers Interviewed that Plan to Implement Multi-Core Processors)
  • V-17 Multi-Core Processor Adoption on EPIC/EBX/3.5" Family Processor Boards, Projected First Year of Implementation (% of EPIC/EBX/3.5" Board Suppliers Interviewed)
  • V-18 Multi-Core Processors used on EPIC/EBX/3.5" Family Processor Boards, Processor Manufacturer (% of EPIC/EBX/3.5" Board Suppliers Interviewed that Plan to Implement Multi-Core Processors)
  • V-19 Multi-Core Processor Adoption on PMC/XMC Processor Cards, Projected First Year of Implementation (% of PMC/XMC Card Suppliers Interviewed)
  • V-20 Multi-Core Processors used on PMC/XMC Processor Cards, Processor Manufacturer (% of PMC/XMC Card Suppliers Interviewed that Plan to Implement Multi-Core Processors)
  • V-21 Multi-Core Processor Adoption on AMC Processor Cards, Projected First Year of Implementation (% of AMC Card Suppliers Interviewed)
  • V-22 Multi-Core Processors used on AMC Processor Cards, Processor Manufacturer (% of AMC Card Suppliers Interviewed that Plan to Implement Multi-Core Processors)
  • V-23 Multi-Core Processor Adoption on Computers-On-Modules, Projected First Year of Implementation (% of COM Suppliers Interviewed)
  • V-24 Multi-Core Processors used on Computers-On-Modules, Processor Manufacturer (% of COM Suppliers Interviewed that Plan to Implement Multi- Core Processors)
  • V-25 Likelihood of Vertical Markets as Early Adopters of Multi-Core Processors (Average Rating for each Vertical Market on a Scale of 1 to 5 Where 1 is Least Likely and 5 is Most Likely)
  • V-26 Likelihood of Embedded Applications as Early Drivers of Multi-Core Processor Adoption (Average Rating for each Application on a Scale of 1 to 5 Where 1 is Least Likely and 5 is Most Likely)
  • V-27 Adequacy of the Software Development Tools Available for Multi-Core Processors (Percentage of Embedded Board Supplier Respondents Answering Yes or No)
  • V-28 Adequacy of On-Chip Software such as Operating Systems and Middleware Available for Multi-Core Processors (Percentage of Embedded Board Supplier Respondents Answering Yes or No)

VI. EMBEDDED MULTI-CORE USER ANALYSIS

  • VI-1 Current Adoption Plans for Multi-Core Processors, 2007 (Percentage of Survey Respondents Identifying)
  • VI-2 Current and Projected 2009 Multiple Processor Implementation (Percentage of Respondents Identifying Each)
  • VI-3 Vertical Markets, segmented by Multiple Processor Implementation, 2007 & 2009 (Percentage of Respondents Identifying Each)
  • VI-4 Applications Driving the Need for Multiple Processor Implementation, 2007 (Percentage of Survey Respondents Identifying Each)
  • VI-5 Number of Cores Used, segmented by Multiple Processor Implementation, 2007 & 2009 (Percentage of Respondents Identifying Each)
  • VI-6 Core Configuration of Multiple Processors Being Used/Evaluated (Percentage of Survey Respondents Identifying Each)
  • VI-7 Multiprocessing Methodology for Multiple Processors Being Used/Evaluated (Percentage of Survey Respondents Identifying Each)
  • VI-8 Code/Data Models Currently Used (Percentage of Survey Respondents Identifying Each)
  • VI-9 Current Project Processor Power Requirements (Percentage of Survey Respondents Identifying Each)
  • VI-10 Primary Multi-Core Processor Vendor Used in User's Company, 2007 & 2009 (Number of Mentions)
  • VI-11 Survey Respondents' Ratings of Current Primary Processor (Average Rating of Respondents, Where 1 is the Lowest)
  • VI-12 Main Reasons for Utilizing/Evaluating the Capabilities of Multi-Core Processors (Percentage of Survey Respondents Identifying Each)
  • VI-13 Perceived Price Premium Over Single-Core Processors that Multi-Core Processors are Currently Worth (Percentage of Survey Respondents Identifying Each)
  • VI-14 Estimated Impact of Multi-Core Implementation on Time-to-Market (Percentage of Survey Respondents Identifying Each)
  • VI-15 Total Multi-Core Project Timeline (Percentage of Survey Respondents Identifying Each)
  • VI-16 Estimated Unit Volume Consumption of Multi-Core Processors by User's Business Unit (Percentage of Survey Respondents Identifying Each)
  • VI-17 Processor/Processor IP Suppliers Perceived as Early Leaders in Providing Multi-Core Processors for the Embedded Market, 2007 & 2009 (Number of Mentions)
  • VI-18 Biggest Challenges/Gaps Encountered Using Multi-Core Processors (Percentage of Survey Respondents Identifying Each)
  • VI-19 Programming Models/Languages Currently Being Used/Evaluated (Percentage of Survey Respondents Identifying Each)
  • VI-20 Rating of User's Own Experience with Parallel Programming (Average Rating on a Scale of 1 to 5 Where 1 is the Least Experienced)
  • VI-21 Users' Utilization of Multi-threading in Their Current Application (Percentage of Survey Respondents Identifying Each)
  • VI-22 Training Support Services Needed to Parallelize/Thread Code for Multi-Core Processors as Identified by Users (Percentage of Survey Respondents Identifying Each)
  • VI-23 Users' Willingness to Pay for Parallel Programming Training Services (Percentage of Survey Respondents Identifying Each)
  • VI-24 Configuration of Multi-Core Software Environment (Percentage of Survey Respondents Identifying)
  • VI-25 Perceived Price Premium that a Multi-Core Specific Development Environment is Currently Worth (Percentage of Survey Respondents Identifying)
  • VI-26 Perceived Price Premium that Commercial Run-time Software Written to Execute on Multi-Core Processors is Currently Worth (Percentage of Survey Respondents Identifying)
  • VI-27 Perceived Level of Importance of Software Development Tools for Multi-Core Processors (Average Rating on a Scale of 1 to 5 Where 1 is the Least Important)
  • VI-28 Current Level of Maturity of Software Development Tools for Multi-Core Processors (Average Rating on a Scale of 1 to 5 Where 1 is the Least Mature)
  • VI-29 Respondents Requiring Designs Specifically for Multi-Core Processors, Segmented by Product Category (Percentage of Survey Respondents Identifying)
  • VI-30 Current Perceived Level of Capability for Multi-Core Software Product Categories (Average Rating on a Scale of 1 to 5 Where 1 is the Least Capable)
  • VI-31 Estimated Budgets per Developers Seat for Development Tools for Multi-Core Processors (Percentage of Survey Respondents Identifying)
  • VI-32 Perceived Embedded Software (Development Tool & OS/RTOS) Supplier Early Leaders in Providing Solutions Supporting Multi-Core Processors, 2007 & 2009 (Number of Mentions)
  • VI-33 Vertical Market Focus of User Respondents Not Using/Evaluating Multi-Core Processors (Percentage of Respondents Identifying Each)
  • VI-34 Main Reasons for Not Considering Multi-Core Processors in Current Applications (Percentage of Respondents Identifying Each)
  • VI-35 Current Project Processor Power Requirements for Users Not Using/Evaluating Multi-Core Processors (Percentage of Survey Respondents Identifying)
  • VI-36 Survey Respondents Not Using/Evaluating Multi-Core Rating of Current Primary Processor (Average Rating of Respondents)
  • VI-37 Development Tools Used in Current Development Project by Users Not Using/Evaluating Multi-Core (Percentage of Survey Respondents Identifying)

MULTI-CORE COMPUTING IN EMBEDDED APPLICATIONS: GLOBAL MARKET OPPORTUNITY AND REQUIREMENTS ANALYSIS

Publisher: Venture Development Corporation

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