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DATASHEETS.COM | DESIGNCON | DESIGN EAST & DESIGN WEST | EBN | EDN |
EE TIMES | EMBEDDED | PLANET ANALOG | TECHONLINE | TEST & MEASUREMENT WORLD
2013 EMBEDDED MARKET STUDY
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2013 Embedded Market Study 2
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UBM Tech Electronics’ Brands
UBM Tech Electronics is the media and marketing services solution for the design engineering
and electronics industry.
Unparalleled Reach & Experience
Our audience of over 2,358,928 (as of March 5, 2013) are the executives and engineers
worldwide who design, develop, and commercialize technology. We provide them with theessentials they need to succeed: news and analysis, design and technology, product data,
education, and fun.
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2013 Embedded Market Study 5
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Purpose and Methodology
• Purpose: To profile the findings of the 2013 results of EE Times Group annual comprehensive
survey of the embedded systems markets worldwide. Findings include types of technology
used, all aspects of the embedded development process, tools used, work environment,
applications, methods and processes, operating systems used, reasons for using and not using
chips and technology, and brands and chips currently used by or being considered by
embedded developers. Many questions in this survey have been trended over two to five
years.
• Methodology: A web-based online survey instrument based on the previous year’s survey was
developed and implemented by independent research company Wilson Research Group from
January 18, 2013 to February 13, 2013 by email invitation
• Sample: E-mail invitations were sent to subscribers to UBM/EE Times Group Embedded Brands
with one reminder invitation. Each invitation included a link to the survey.
• Returns: 2,098 valid respondents for an overall confidence of 95% +/- 2.13%.
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2013 Embedded Market Study 6
Copyright © 2013 by UBM. All rights reserved.
The following information is the property of UBM Tech, a division of UnitedBusiness Media, LLC. UBM retains ownership of all rights, including intellectualproperty rights, in and to the Database, the Survey questionnaires and theSurvey results.
No claims are allowed without the expressed written permission of either AlexWolfe ([email protected]) or David Blaza ([email protected])at UBM, LLC.
Disclaimer
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2013 Embedded Market Study 7
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61.1%
20.0%
12.7%
3.0%
1.8%
1.3%
US & Canada
Europe
Asia
Middle/South America
Australia
Africa and Near East2013 (N = 1,914)
In which region of the world do you reside?
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2013 Embedded Market Study 8
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43.7
16.0
6.1
10.2
5.4
4.3
12.1
2.1
42.4
15.6
6.3
10.0
6.9
3.5
13.3
2.0
Under 100
100-499
500-999
1,000-4,999
5,000-9,999
10,000-19,999
20,000 or more
Don't know
2013 N=2025
2012 N=1547
Average Number of Employees
2013 = 3,965
2012 = 4,856
How many employees does your company have at all locations?
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2013 Embedded Market Study 9
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56.9%
56.6%
55.3%
50.8%
45.4%
45.0%
43.2%
39.9%
39.7%
39.1%
36.9%
33.7%
26.7%
24.9%
19.0%
8.9%
6.8%
3.4%
Writing firmware/sftwr for embedded systems
Hardware/software integration
Debugging firmware/software
Architecture selection/specification
Firmware/software design or analysis
Project management
Debugging hardware
Prototype testing
Firmware/software testing
Device programming
Designing hardware for embedded systems
System design
Hardware/software co-design
Board layout/design
Hardware/software co-verification
Connected device design
SoC (system-on-chip) design
Other
My job function includes:
2013: Average numberof years out of school =
19.7 years
2013 (N = 2,020)
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2013 Embedded Market Study 10
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33%
23%
23%
17%
17%
17%
16%
11%
9%
8%
8%
7%
6%
6%
6%
7%
33%
23%
25%
16%
15%
15%
17%
12%
10%
7%
9%
7%
7%
10%
31%
24%
26%
17%
18%
15%
17%
14%
8%
6%
10%
6%
6%
8%
Industrial cntrls & automation
Consumer electronics
Communications/networking
Medical
Automotive
Electronic instruments
Aero/Military (Net)
Computers and peripherals
Security
Power generation and utilities
Video & imaging
Transportation
Audio
Government & municipal
M2M
Other
2013 (N=2080)
2012 (N=1670)
2011 (N=1885)
For what types of applications are your embedded projects developed?
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CURRENT EMBEDDED
DESIGN ENVIRONMENT
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2013 Embedded Market Study 12
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My current embedded project is:
44%
56%
44%
56%
43%
57%
43%
57%
42%
58%
New to the
world; a new
project from
scratch
An upgrade or
improvement
to an earlier or
existing project
2013 (N = 2091)
2012 (N = 1,704)
2011 (N = 1,883)
2010 (N = 1,559)
2009 (N = 1,550)
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2013 Embedded Market Study 13
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What does the upgrade or improvement include?
55%
40%
22%
15%
12%
21%
58%
44%
21%
14%
13%
22%
New or different software features
New or different processor
New or different system logic
New or different analog components
New or different operating system
Mandatory changes because of discontinued
hardware or software
2013 (N = 1,159)
2012 (N = 941)
Base = Those whose current project is an
upgrade/improvement
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2013 Embedded Market Study 14
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Which of the following capabilities are included
in your current embedded project?
68%
55%
52%
40%
40%
36%
7%
70%
58%
43%
38%
37%
9%
72%
58%
42%
38%
37%
8%
73%
59%
42%
38%
38%
8%
75%
59%
44%
33%
35%
Real-time capability
Networking capability
Analog signal processing (added 2013)
Project rugged / envirnmntly resistant
Wireless capability
Battery-powered
Other
2013 (N = 2,090)
2012 (N = 1,704)2011 (N = 1,886)
2010 (N = 1,559)
2009 (N = 1,550)
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2013 Embedded Market Study 15
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54%
24%
24%
20%
17%
10%
9%
8%
8%
7%
5%
5%
5%
5%
3%
55%
22%
25%
24%
15%
9%
8%
10%
11%
7%
7%
6%
7%
3%
53%
29%
23%
11%
12%
7%
7%
7%
7%
4%
Wi-Fi
Bluetooth Classic
Cellular
Zigbee
Bluetooth LE/Smart
Unlicensed 2.4-GHz band
NFC
900 MHZ
Proprietary
Wi-Fi Direct
AM or FM radio
Infrared
315/433 MHZ
Custom
ANT
2013 (N = 817)
2012 (N = 640)
2011 (N = 714)
Only answers 3% or above are shown
If wireless, what wireless interfaces does your current embedded project include?
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2013 Embedded Market Study 16
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How many people are on your embedded project team?
2013 (N = 2,041)
2012 (N = 1,625)
Team 2013 =
- Software Engineer =- Hardware Engineer =
- Firmware Engineer =
- QA/Test Engineer =
- Systems/Integrator =
- Other Engineer =
14.6
4.02.9
2.7
2.0
1.5
1.5
Team 2012 =
- Software Engineer =
- Hardware Engineer =
- Firmware Engineer =
- QA/Test Engineer =
- Systems Engineer =
15.9
4.9
3.7
3.1
2.4
1.8
Note: Data excludes outliers 1000+
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2013 Embedded Market Study 17
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What is your development team’s ratio of total resources (including
time/dollars/manpower) spent on software vs. hardware for your
embedded projects?
60.6%
39.4%
61.9%
38.1%
62.0%
38.0%
61.3%
38.7%
62.4%
37.6%
Average total resources
devoted to software
Average total resources
devoted to hardware
2013 (N = 2,075)
2012 (N = 1,675)
2011 (N = 1,878)
2010 (N = 1,542)
2009 (N = 1,536)
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2013 Embedded Market Study 18
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How long did the last project you completed take to finish?
35%
35%
15%
9%
6%
33%
35%
15%
9%
8%
33%
35%
15%
9%
7%
36%
33%
15%
9%
7%
30%
35%
17%
10%
8%
6 months or less
7 – 12 months
13 – 18 months
19 – 24 months
25 months or more
2013 (N = 1,985) Avg: 12.4 mos
2012 (N = 1,634) Avg: 12.5 mos
2011 (N = 1,822) Avg: 12.2 mos
2010 (N = 1,494) Avg: 12.2 mos2009 (N = 1,514) Avg: 13.2 mos
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2013 Embedded Market Study 19
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Was that project completed . . .
5%
38%
28%
18%
5%
2%
2%
3%
4%
38%
29%
17%
6%
1%
2%
3%
4%
39%
26%
19%
6%
1%
1%
3%
4%
40%
29%
17%
5%
2%
1%
3%
Ahead of schedule
On schedule
Late by 1 – 2 months
Late by 3 – 6 months
Late by 6 – 12 months
Late by 13 – 18 months
Late by more than 18 months
Canceled
2013 (N = 2,055)2012 (N = 1,658)
2011 (N = 1,859)
2010 (N = 1,525)
•In 2013, 43% of all projects
finished “ahead of ” or
“on” schedule, and 57%
finished late or cancelled --
almost the same as the
previous 3 years.
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2013 Embedded Market Study 20
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60%
21%
5%
3%
2%
2%
2%
1%
1%
4%
65%
20%
5%
2%
1%
1%
2%
3%
62%
22%
5%
2%
2%
1%
1%
3%
60%
20%
6%
3%
2%
2%
3%
3%
C
C++
Assembly language
Java
C#
MATLAB
LabVIEW
Python
.NET
Other
2013 (N = 2,075)
2012 (N = 1,675)
2011 (N = 1,876)
2010 (N = 1,542)
My current embedded project is programmed mostly in:
Note: C#, Python and Ada were added in 2013. Ada was under 1%.
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2013 Embedded Market Study 21
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55%
22%
4%
4%
3%
2%
2%
2%
1%
1%
4%
60%
24%
4%
3%
2%
2%
4%
58%
25%
3%
3%
1%
2%
3%
56%
23%
4%
4%
2%
4%
4%
C
C++
Java
Assembly language
C#
LabVIEW
MATLAB
Python
.NET
UML or other modeling…
Other
2013 (N = 2,071)
2012 (N = 1,667)
2011 (N = 1,871)
2010 (N = 1,537)
My next embedded project will likely be programmed mostly in:
Note: C#, Python and Ada were added in 2013. Ada was under 1%.
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2013 Embedded Market Study 22
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14
79
25
1515
78
25
1413
80
25
1514
78
24
17
11
84
2117
%
10%
20%
30%
40%
50%
60%
70%
80%
90%
No, all new software,no code reuse
Yes, reused codedeveloped in-house
Yes, reused open-source, shareware
code
Yes, reused purchasedcode
A very slight change in usage of RTOS, kernels, execs, schedulers over past 5 years
2013 (N = 2,065) 2012 (N = 1,659) 2011 (N = 1,862) 2010 (N = 1,540) 2009 (N = 1,534)
In 2013, 86% reused code.
In 2012, 85% reused code.
In 2011, 87% reused code.
In 2010, 86% reused code.
In 2009, 89% reused code.
Does your current project reuse code from a previous
embedded project?
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EMBEDDED DESIGN PROCESS
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2013 Embedded Market Study 24
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14%
11%
30%
7%
21%
10%
6%
1%
15%
11%
22%
8%
23%
12%
6%
2%
15%
12%
22%
8%
24%
12%
6%
2%
Developing overall system specs
Conceptual design stage
Detailed design stage
Simulation stage
Testing and debugging
Prototyping
Sending to production
Documentation/coding/mtgs
2013 (N = 1,928)
2012 (N = 1,535)
2011 (N = 1,679)
What percentage of your design time is spent on
each of the following stages?
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If you could improve one thing about your embedded design
activities, what would it be?
21%
16%
16%
7%
7%
7%
6%
6%
5%
3%
22%
15%
16%
8%
8%
6%
5%
6%
5%
3%
29%
14%
9%
9%
8%
8%
5%
7%
5%
28%
15%
8%
10%
7%
8%
7%
8%
5%
Debugging tools
Schedule
Engineering team skill level
Programming tools
Microprocessor
Interfaces
IDE
Other hardware
Operating system
The Compiler
2013 (N = 2,056)
2012 (N = 1,667)
2011 (N = 1,868)
2010 (N = 1,541)
2013 E b dd d M k t St d
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83%
61%
54%
51%
48%
34%
31%
28%
26%
25%
24%
25%
18%
17%
12%
11%
8%
86%
61%
55%
53%
50%
33%
34%
29%
25%
27%
26%
24%
19%
19%
11%
6%
11%
86%
59%
61%
57%
38%
31%
25%
30%
31%
24%
23%
17%
9%
Websites of vendors or manufacturers
Search engine
Colleagues
Technical whitepapers
Websites of Industry publication
Technical communities (like…
Print publications
Webinars/net seminars
Distributor websites
Conferences and trade shows
Industry newsletters
In-person seminars
Catalogs and brochuresBlogs
Video (YouTube, etc.)
Social networks/Linked-in/Twitter
Virtual conferences
2013 (N = 2,074)
2012 (N = 1,674)
2011 (N = 1,878)
In general, what sources of information do you consult to
research your embedded design decisions?
Top 17 Sources
2013 E b dd d M k t St d
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28%
23%
16%
15%
14%
13%
12%
12%
11%
11%
8%
6%
6%
5%
4%
2%
5%
22%
14%
11%
14%
6%
7%
5%
12%
7%
5%
3%
4%
4%
2%
1%
2%
4%
24.2%
15.5%
10.6%
11.0%
11.9%
9.0%
8.7%
3.9%
7.4%
7.4%
2.3%
1.0%
1.6%
3.9%
Integrating new technology or tools
Managing code size/complexity
Software tools
Processors
Improving the debugging process
Dealing with low power
Programmable logic
OS/RTOS
Security concerns
Integrating external IPs into designs
Connecting to the cloud
Hardware tools
SoC's/ASSP's
Buses/interconnects
Memories and standard cells
IDE*
Other
2013 (N = 723)
2012 (N = 377)
2011 (N = 310)
Thinking about the next year, what areas will be your greatest
technology challenges?
Managers Only
2013 E b dd d M k t St d
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46%
46%
44%
35%
23%
22%
14%
12%
11%
9%
8%
8%
8%
8%
7%
7%
5%
4%
51%
41%
52%
37%
20%
24%
15%
11%
13%
7%
12%
9%
8%
9%
9%
3%
10%
53%
36%
54%
33%
17%
23%
15%
8%
12%
8%
10%
8%
6%
6%
7%
3%
8%
Debugger
Oscilloscope
Compiler/assembler
IDE
Logic analyzer
JTAG/BDM
ICE
Software libraries
Linux tools
Simulation modeling tools
Configuration management tools
Automatic code generation
Software testing tools
Graphical Design tools
Source code analysis/timing analysis tools
FPGA-based prototypes
Trace
Codevelopment tools
2013 (N = 1,946)
2012 (N = 1,564)
2011 (N = 1,752)
Which of the following are your favorite/most important
software/hardware tools? (Top 18 shown)
2013 E b dd d M k t St d
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2013 Embedded Market Study 29
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Which of the following conferences did you attend in the past 2 years, and
which do you plan to next year?
Conferences
2013
Have
Attended
2013
Plan to
Attend
Plus
4% or
moreTraining/seminars of distributors 40.3% 35.5%
DESIGN WEST/Embedded Systems Conference (Silicon Valley) 16.7% 21.6% +5%
ARM TechCon 16.6% 19.9%
Freescale Technology Forum 11.0% 14.1% +4%
DesignCon 10.8% 12.8%
DESIGN EAST/Embedded Systems Conference (Boston) 10.4% 11.9%
CES (Las Vegas) 9.9% 14.2% +4%Embedded World (Nuremberg) 8.9% 13.1% +4%
Electronica 8.5% 9.9%
Real Time Computer Show (RTECC) 8.3% 9.9%
Microchip MASTERs Conference 7.8% 10.9%
Intel Developer Forum 7.0% 10.2%
CeBIT 6.4% 7.3%
Embedded Systems Conference (India) 6.4% 9.6%
DAC 4.7% 5.0%
Embedded Linux Conference (ELC) 4.0% 12.5% +8%
Convergence: Transportation Electronics 2.1% 3.9%
Embedded Systems Conference (Brazil) 2.1% 3.9%
Android Builders Summit 1.6% 9.1% +8%
Embedded Systems Technology (Japan) 1.4% 4.3%
Total Attending / Planning to Attend 1,045 1,146
2013 E b dd d M k t St d
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43.5%
42.4%
36.6%
32.4%
30.0%
20.9%
18.4%
18.2%
17.6%
15.0%
8.0%
8.0%
6.5%
7.3%
42%
42%
37%
34%
31%
21%
19%
21%
18%
12%
12%
8%
6%
7%
24%
47%
41%
29%
22%
25%
25%
22%
21%
15%
15%
16%
5%
Training courses offered online
Technical white papers by vendors
Webinars provided by vendors
Webinars by publications, media orgs
Books
Professional devlpmnt courses by private co.
Conferences provided by vendorsUniversity professional dev. courses
On-site seminars given by vendors
Webinars by profsnl assocns
Conference seminars by publctns, media orgs
Conference seminars by profsnl assocns
Certification training
Other
2013 (N = 2,067)
2012 (N = 1,662)
2011 (N = 1,872)
What are the most effective ways that you systematically or formally
maintain, educate, and advance your professional skills?
Average Number of Days Per Year Spent on Training
2013 = 9.0 days per year
2012 = 11.7 days per year
2011 = 11.2 days per year
2010 = 11.7 days per year
2013 Average number of years out of school
2013 Hours per week reading technical pubs
19.7
4.8
2013 Books per year read in full or substantially 3.9
Other Relevant Schooling and Reading
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OPERATING SYSTEMS
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68%
32%
68%
32%
70%
30%
70%
30%
72%
28%
0
10
20
30
40
50
60
70
80
Yes No
Only slight changes in usage of RTOS, kernels, execs, schedulers over past 5 years
2013 (N = 2,082) 2012 (N = 1,712) 2011 (N = 1,882) 2010 (N = 1,552) 2009 (N = 1,546)
Does your current embedded project use an operating system, RTOS,
kernel, software executive, or scheduler of any kind?
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79%
5%
4%
4%
2%
79%
4%
4%
4%
4%
82%
14%
11%
6%
9%
81%
11%
9%
8%
9%
80%
12%
11%
7%
10%
Current project doesn’t need it
OS / RTOS uses too much
memory
OS / RTOS requires too much
processor power
OS / RTOS is too complicated
to use
OS / RTOS is too expensive
2013 (N = 669)
2012 (N = 541)
2011 (N = 561)
2010 (N = 458)
2009 (N = 434)
If current embedded project does not use an operating system, RTOS,
kernel, software executive, or scheduler of any kind, why not?
2013 Embedded Market Study 34
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29%
37%
20%
14%
31%
37%
19%
13%
30%
37%
19%
15%
31%
31%
23%
16%
34%
27%
26%
13%
Commercial OS/RTOS
Open-source OS/RTOS without
commercial support
Internally developed or in-house
OS/RTOS
Commercial distribution of open-
source OS/RTOS
2013 (N = 1992)2012 (N = 1620)
2011 (N = 1809)
2010 (N = 1458)
2009 (N = 1432)
My current embedded
project uses:
My next embedded
project will likely use:
35%
34%
19%
13%
40%
31%
20%
9%
41%
34%
23%
15%
38%
29%
32%
14%
47%
27%
26%
14%
Commercial OS/RTOS
Open-source OS/RTOS,
without commercial support
Internally developed or in-
house OS/RTOS
Commercial distribution of
an open-source OS/RTOS
2013 (N = 1402)2012 (N = 1152)
2011 (N = 1307)
2010 (N = 1358)
2009 (N = 1346)
2013 Embedded Market Study 35
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44%
35%
35%
32%
28%
26%
26%
26%
24%
21%
21%
20%
15%
15%
Real-time capability
Good software tools
Processor or hardware compatibility
Ease of future maintenance
Support for processor & drivers
Technical support
Code size/memory usage
Documentation
Royalty-free
Networking capability
Supplier's reputation
Overall cost
Customer's desire
Scheduling efficiency
2013 (N = 479)
Which factors most influenced your decision to use
a commercial operating system? (Top 12 choices.)
Base = Those who
currently use a
“Commercial” OS/RTOS
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61%
36%
28%
20%
15%
12%
11%
7%
8%
Current solution works fine
Commercial alternatives too expensive
Avoid reliance on commercial supplier
No need for multitasking
Incompatible with existing SW apps or drivers
Commercial alternatives use too much memory
Too much trouble to learn commercial alternative
Commercial alternatives lack an features I need
Other
2013 (N = 1503)
What are your reasons for not using a
commercial operating system?
Base = Those who do not
currently use a “Commercial”
OS/RTOS
2013 Embedded Market Study 37
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32%
30%
30%
17%
15%
15%
14%
13%
12%
11%
6%
5%
34%
30%
29%
17%
16%
14%
13%
12%
12%
11%
7%
4%
Software engineering staff
Software engineering manager
Group decision within engineering
Corporate management
Same OS as previous project
Hardware engineering manager
Hardware engineering staff
Systems engineering manager
Outside influence/…
Systems engineering staff
Marketing manager or department
Purchasing manager or department
2013 (N = 1,989)
2012 (N = 1,596)
Base: Those who use
operating systems
Who were the greatest influences on
the choice of operating system?
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62%
38%
57%
43%
58%
42%
64%
36%
63%
37%
Yes, used same OS, RTOS or kernel No, didn't use same OS, RTOS or
kernel
2013 (N = 2,015) 2012 (N = 1,644) 2011 (N = 1,840) 2010 (N = 1,492) 2009 (N = 1,501)
Base: Those who use
operating systems
Did you use the same operating system, RTOS,
or kernel as in your previous project?
2013 Embedded Market Study 39
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Why did you use the same operating system?
63%
40%
36%
33%
23%
23%
10%
9%
6%
3%
57%
41%
36%
34%
24%
26%
9%
6%
6%
3%
Happy with current one, no reason to switch
Wanted to maintain software compatibility
Wanted to make use of expertise/familiarity
Wanted to maintain the same tools or software
Wanted to keep same Operating System
Switching OS too expensive / time-consuming
Happy with supplier
Not my choice/operating system chosen for me
No other suitable alternatives available
Other
2013 (N = 1,238)
2012 (N = 929)
Base = Those who are using
the same operating system
as in previous project
2013 Embedded Market Study 40
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Why did you switch operating systems?
33%
22%
20%
13%
13%
12%
10%
9%
7%
5%
17%
37%
20%
21%
13%
11%
14%
10%
6%
4%
6%
18%
Hardware or processor changed
New OS had better features
Not my choice/OS chosen for me
New OS had better SW/dev tools
New OS is cheaper
New OS had better growth path
New OS had OTS modules (apps, tools)
Previous OS too slow
Previous OS no longer available
Unhappy with previous OS supplier
Other
2013 (N = 724)
2012 (N = 658)
Base = Those who did
not use the same
operating system as inprevious project
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What are the most important factors in choosing an operating system.
42%
34%
30%
29%
27%
26%
24%
20%
16%
15%
14%
13%
12%
10%
9%
9%
7%
6%
41%
30%31%
31%
27%
28%
22%
21%
17%
17%
16%
15%
14%
11%
10%
10%
6%
6%
Availability of full source code
Availability of tech support
No royalties
Real-time performance
Compatibility w/ other software, systems
Freedom to customize or modify
Open-source availability
My familiarity with the operating systemThe processors it supports
Purchase price
Simplicity / ease of use
Software-development tools available
Small memory footprint
Commercial supportThe other software, middleware, drivers,…
Successful prior use for similar applications
Popularity
The other hardware it supports
2013 (N = 2017)
2012 (N = 1628)
Base: Currently
using an operating
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Please select ALL of the operating systems you are currently using.
24%
16%
13%
13%
11%
8%
8%
7%
7%
6%
5%
5%
4%
4%
4%
4%
4%
3%
3%
2%
2%
2%
2%
22%
13%
12%
12%
10%
8%
9%
11%
8%
10%
5%
5%
4%
3%
4%
4%
4%
3%
2%
2%
2%
Inhouse/custom
Android
Ubuntu
FreeRTOS
Microsoft Windows Embedded 7 earlier
Debian (Linux)
Microsoft Windows 7 Compact earlier
Wind River (VxWorks)
Texas Instruments (DSP/BIOS)
Micrium (uC/OS-II, III) Net
Red Hat (IX Linux)
Freescale MQX
Keil (RTX)
Wind River (Linux)
Analog Devices (VDK)
Angstrom (Linux)
Texas Instruments RTOS
QNX (QNX)
Green Hills (INTEGRITY)
Express Logic (ThreadX)
LynuxWorks (LynxOS)
eCos
OSEK
2013 (N = 1,696)
2012 (N = 1,302)
Base: Currently using
an operating system
Only Operating Systems that had 2% or more are shown.
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Please select ALL of the operating systems you are considering
using in the next 12 months.
28%
21%
19%
13%
10%
9%
8%
8%
8%
7%
7%
6%
6%
5%
5%
4%
4%
4%
3%
3%
3%
3%
34%
23%
17%
13%
16%
10%
10%
8%
10%
7%
5%
6%
7%
6%
4%
7%
4%
3%
4%
3%
AndroidFreeRTOS
Inhouse/custom
Ubuntu
Micrium (uC/OS-II, III) Net
Microsoft (Win 7 Embedded/Standard)
Debian (Linux)
TI (DSP/BIOS)
Texas Instruments RTOS
Wind River (VxWorks)
Freescale MQX
Microsoft (Win 7 Compact)
Keil (RTX)
Red Hat (IX Linux)
Wind River (Platform neLinux)
Green Hills (INTEGRITY)
Angstrom (Linux)
QNX (QNX)
Express Logic (ThreadX)
Analog Devices (VDK)
eCos
LynuxWorks (LynxOS)
2013 (N = 1,572)
2012 (N = 1,227)
Base: Those who are
considering an operating
system in any project in the
next 12 months
Only Operating Systems over 3% are shown.
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Are you considering using embedded Linux?
54%
27%
6%
20%
47%
56%
27%
7%
22%
44%
56%
27%
7%
21%
44%
57%
28%
7%
22%
43%
Yes (Net)
Yes, using it now
Yes, likely to use it in next 6 months
(soon)
Yes, likely to use in next 12 months
No, not interested in using it
2013 (N = 2,060)
2012 (N = 1,661)
2011 (N = 1,857)
2010 (N = 1,524)
2013 Embedded Market Study 45
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y
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Why are you interested in embedded Linux?
66%
52%
40%
38%
32%
29%
16%
14%
72%
54%
44%
37%
33%
30%
16%
17%
72%
58%
40%
39%
34%
33%
18%
65%
53%
38%
37%
36%
30%
18%
Low cost
Adaptability/extensibility
Built-in drivers/network…
Performance
Control of features/…
Avoid commercial…
Memory requirements
Career development
2013 (N = 1093)
2012 (N = 929)
2011 (N = 1026)
2010 (N = 862)
Base = Those who use or are
considering using Linux
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y
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Why are you not interested in embedded Linux?
72%
18%
15%
12%
9%
8%
6%
5%
4%
4%
8%
No need for it
Incompatible w/ existing software, apps, drivers
Performance or real-time capability
Memory usage
Development tools
Support
Legal ambiguity
Reliability issues
Cost (after deployment)
Security issues
Other*
2013 (N = 955)Base = Those who are not
considering using Linux
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y
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Are you currently using embedded virtualization/hypervisors or
will you likely use this in the next 12 months?
17.8%
4.6%
3.6%
9.6%
82.2%
Yes (Net)
Yes, using it now
Yes, will likely use in next 6 months
Yes, will likely use in next 12 months
No, not using it and not planning to
2013 (N = 2049)
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y
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Why are you interested in embedded
vitualization/hypervisors?
48%
37%
35%
26%
23%
17%
4%
Separation of multiple applications
Support for multiple guest OSes (Android, VxWorks,
Linux)
Support for hard real-time application(s)/ guest OS
Processor consolidation
Support legacy & new apps on same system
Want to load balance across multicore system
Other
2013 (N = 364)
Base = Those who use or
are considering using
Linux
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MICROPROCESSORS
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Who were the greatest influences on the choice of the
processor for your current project?
33%
29%
28%
23%
19%
16%
15%
13%
10%
9%
6%
5%
4%
33%
30%
29%
26%
21%
11%
16%
11%
11%
16%
6%
6%
4%
HW engineering staff
Group decision in engineering
HW engineering mgr.
SW engineering staff
SW engineering mgr.
Systems engineering mgr.
Corporate mgmt.
Systems engineering staff
Outside influence/ customer/stndrds
Same processor as in previou project
Purchasing mgr. or dept.
Marketing mgr. or dept.
Other
2013 (N = 2,048)
2012 (N = 1,664)
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My current embedded project contains:
52%
24%
16%
4%
4%
53%
25%
16%
3%
4%
53%
27%
15%
3%
3%
50%
24%
17%
5%
5%
A single microprocessor/
microcontroller
2 processors/ microcontrollers
3 – 5 processors/ microcontrollers
6 – 10 processors/
microcontrollers
>10 processors/ microcontrollers
2013 (N = 2,047)2012 (N = 1,659)
2011 (N = 1,858)
2010 (N = 1,518)
The average number of microcontrollers per
project was:
2.4 in 20132.3 in 2012
2.3 in 20112.6 in 2010
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Does your embedded project contain . . .
58%
36%
22%
18%
9%
6%
9%
62%
23%
10%
5%
64%
21%
8%
6%
60%
25%
8%
7%
Multiple different processor chips (Net)*
Multiple different processor chips from different
vendors*
Multiple different processor chips from same
vendor*
Multiple identical processor chips
Single chip with multiple identical processor cores
Single chip with multiple different processor cores
FPGA with hard/soft processor cores
2013 (N = 979)
2012 (N = 773)
2011 (N = 874)
2010 (N = 759)
Base: Those who use
multiple microprocessor/
microcontrollers for current project
In 2013, multiple different processor
chips were broken out into “same
vendor” vs “different vendor” groups.
Freescale and TI are substantially
more likely to be included when
different vendors are used.
Microchip is more likely to be the
selection when the same vendor is
used, followed by Atmel, TI and
Freescale in that order.
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My current embedded project's main processor is a:
3%
12%14%
63%
8%
2%
13%16%
63%
7%
2%
13%16%
62%
6%
2%
14%16%
61%
7%
1%
16%17%
60%
6%
Don’t know8-bit processor16-bit processor32-bit processor64-bit processor
2013 (N = 2,056)
2012 (N = 1,666)
2011 (N = 1,864)
2010 (N = 1,527)
2009 (N = 1,533)
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My current embedded project's main processor clock rate is:
7%
38%
13%
10%
15%
16%
10%
7%
5%
13%
4%
6%
39%
14%
10%
15%
16%
11%
8%
5%
11%
3%
Under 10 MHz
10 – 99 MHz (Net)
10 - 24 MHz
25 - 49 MHz50 - 99 MHz
100 – 249 MHz
250 – 499 MHz
500 – 749 MHz
750 – 999 MHz
1 GHz
2GHz+
2013 (N = 2039)
2012 (N = 1659)
The average processor
clock rate was:
485 MHz in 2013
425 MHz in 2012
c
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Did you use the same processor as in
your previous embedded project?
45%
55%
45%
55%
44%
56%
48%
52%
48%52%
Yes, used the same processor as in previous
embedded project
No, did not use the same processor as in
previous project
2013 (N = 2,047) 2012 (N = 1,654) 2011 (N = 1,859) 2010 (N = 1,516) 2009 (N = 1,533)
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Why did you use the same processor?
62%
57%
49%
43%
29%
23%
9%
4%
2%
59%
50%
47%
41%
28%
27%
8%
3%
3%
Happy with current processor/supplier
To maintain software compatibility
To maintain the same tools or software
To make use of expertise/familiarity
To use same operating system
Switching is too expensive/time-consuming
Not my choice/processor chosen for me
No other suitable processors available
Other
2013 (N = 909)
2012 (N = 749)
Base = Those who are currently
using the same processor as in
previous project
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What were your reasons for switching processors?
46%
31%
24%
15%
14%
13%
12%
10%
8%
3%
9%
46%
31%
27%
15%
18%
13%
9%
9%
2%
11%
New processor had better features
Previous processor too slow
New processor had better future growth…
Not my choice/processor chosen for me
New processor had better SW/dev tools
Previous processor no longer available
Needed a lower power processor
Previous processor too expensive
To change operating system
Unhappy with previous processor's supplier
Other
2013 (N = 1112)
2012 (N = 888)
Base = Those who did not use
the same processor as in
previous project
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Did you . . .
56%
44%
58%
42%
55%
45%
52%48%
57%
43%
Choose a processor from a different family,architecture, or instruction set
Choose a different processor from thesame family, architecture, or instruction set
2013 (N = 1088) 2012 (N = 862) 2011 (N = 1003) 2010 (N = 761) 2009 (N = 768)
Base = Those who did not use the same processor as in previous project
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What’s most important when choosing a microprocessor?
42%45%
13%
30%
61%
9%
43%46%
11%
45%43%
13%
48%
41%
10%
The chip itself The ecosystem surrounding
the chip (software, tools,
support, etc.)
The chip's supplier/vendor
2013 (N = 2034) 2012 (N = 1,662) 2011 (N = 1,859) 2010 (N = 1,501) 2009 (N = 1,530)
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19%
12%
10%
9%
7%
5%
5%
3%
2%
2%
19%
11%
10%
8%
8%
8%
2%
4%
2%
2%
14%
12%
10%
11%
8%
6%
2%
2%
1%
1%
Texas Instruments
Freescale
Microchip
ARM
Atmel
Intel
ST Microelectronics
NXP
IAR
Xilinx
2013 (N = 753) Unaided
2012 (N = 665) Unaided
2011 (N = 669) Unaided
If you selected "ecosystem," please write in ONE vendor
that has the best ecosystem for your needs. (Unaided)
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What are the most important factors in choosing a processor?
72%
46%
35%
34%
32%
29%
28%
21%
15%
13%
11%
7%
5%
71%
48%
40%
35%
33%
32%
29%
22%
14%
14%
13%
8%
4%
71%
49%
41%
33%
31%
35%
33%
24%
13%
15%
14%
8%
Software development tools available
The chip's performance
The chip's cost
Available middleware, drivers, existing code
HW development tools available
The operating systems it supports
The on-chip I/O or peripherals
The chip's power consumption
The supplier's reputation
Familiarity w/ architecture/chip family
Chip family's future growth path
The processor’s debug support
Programmable logic on chip
2013 (N = 2,033)
2012 (N = 1,648)
2011 (N = 1,843)
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52%
51%
50%
48%
42%
33%
33%
31%
30%
28%
28%
24%
22%
19%
16%
15%
15%
50%
44%
50%
47%
43%
34%
26%
29%
26%
26%
27%
23%
20%
19%
13%
13%
12%
Texas Instruments
Atmel
Freescale
Microchip
Intel
STMicroelectronics
Altera
AMDXilinx
Analog Devices
NXP
Renesas/NEC
Cypress Semiconductor
Zilog
Maxim
Infineon
Broadcom
2013 (N = 1,912)
2012 (N = 1,555)
Please select the processor vendors you are familiar with.
14%
14%
14%
13%
13%
13%
12%
12%
11%
11%
10%
9%
9%
7%
6%
4%
2%
3%
14%
14%
12%
9%
12%
14%
13%
10%
9%
8%
9%
14%
6%
4%
1%
2%
Silicon Labs
NVIDIA
IBM
Qualcomm
Samsung
Marvell
Digi/Rabbit…
Cirrus Logic
Lattice Semiconductor
Fujitsu
Applied Micro
Toshiba
Microsemi
Energy Micro
VIA
PMC-Sierra
Stretch
Other
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29%
27%
26%
23%
17%
14%
13%
11%
10%
8%
8%
6%
5%
4%
4%
4%
4%
29%
25%
25%
22%
18%
12%
14%
9%
11%
7%
9%
5%
4%
3%
5%
4%
3%
Texas Instruments
MicrochipFreescale
Atmel
Intel
Xilinx
STMicroelectronics
AlteraNXP
Analog Devices
Renesas/NEC
AMD
Cypress Semiconductor
MaximMarvell
Silicon Labs
Broadcom
2013 (N = 1,850)
2012 (N = 1,494)
Please select the processor vendors you are currently using.
3%
3%
3%
2%
2%
2%
2%
2%
1%
1%
1%
1%
1%
1%
1%
1%
%
2%
3%
2%2%
2%
2%
2%
3%1%
2%
1%
1%
1%
1%
1%
%
2%
Infineon
Qualcomm
NVIDIA
Samsung
Digi/Rabbit
Lattice Semiconductor
IBM
Microsemi
Cirrus Logic
Zilog
Fujitsu
Applied Micro
Energy Micro
Toshiba
VIA
PMC-Sierra
Stretch
Other
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41%
34%
26%
24%
22%
19%
18%
17%
15%
12%
39%
31%
26%
23%
23%
16%
20%
16%
13%
13%
Texas Instruments
Freescale
Microchip
Atmel
STMicroelectronics
Xilinx
Intel
NXP
Altera
Renesas / NEC
2013 (N = 1609)
2012 (N = 1327)
Please select the processor vendors you areconsidering using on your next project (Top 20).
10%
9%
8%
6%
5%
5%
5%
5%
4%
4%
9%
6%
8%
5%
4%
5%
3%
5%
6%
Analog Devices
Cypress
AMD
Silicon Labs
Qualcomm
NVIDIA
Samsung
Energy Micro
Broadcom
Marvell
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4%
4%
3%
3%
3%
2%
2%
2%
4%
3%
5%
3%
2%
2%
2%
Maxim
Infineon
Lattice Semiconductor
Microsemi
Zilog
IBM
Fujitsu
Toshiba
2013 (N = 1609)
2012 (N = 1327)
(Continued) Please select the processor vendors you areconsidering using on your next project.
2%
2%
1%
1%
1%
1%
2%
3%
2%
2%
1%
1%
1%
3%
Digi/Rabbit
Applied Micro
Cirrus Logic
PMC-Sierra
VIA
Stretch
Other
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23%
22%
21%
17%
17%
16%
14%
14%
14%
13%
13%
13%
21%
24%
21%
20%
15%
15%
16%
14%
14%
11%
6%
Microchip PIC 32-bit (MIPS)
STMicroelectronics STM32 (ARM)
TI Stellaris (ARM)
TI OMAP (ARM)
NXP ARM
Intel Atom, Pentium, Celeron,
Core IX
Atmel (AVR32)
Atmel SAMxx (ARM)
Freescale i.MX (ARM)
FreescaleKinetis (ARM/Cortex-
M4/M0)
TI Sitara (ARM)
Xilinx Zynq (with dual ARM
Cortex-A9)
2013 (N = 1,887)
2012 (N = 1,548)
Which of the following 32-bit chip families would you consider for
your next embedded project?
10%
10%
10%
9%
9%
9%
7%
7%
7%
7%
7%
6%
6%
6%
9%
9%
17%
11%
8%
9%
7%
9%
7%
7%
6%
8%
7%
6%
Altera Nios II (soft core)
Arduino
Atmel AT91xx
Xilinx MicroBlaze (soft-core)
TI C2000 MCUs
Altera SoC-FPGA (ARM)
Renesas SuperH, H8SX, M32C, M32R
Freescale 68K, ColdFire
Cypress PSOC 5 (ARM)
Freescale PowerPC 7xx, 8xx
TI Hercules (ARM)
Freescale PowerPC 55xx
Freescale PowerQUICC
Xilinx Virtex-5 (with PowerPC 405)
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5%
5%
5%
5%
5%
5%
4%
4%
4%
4%
3%
3%
3%
3%
6%
6%
5%
3%
3%
4%
5%
4%
3%
Qualcomm (any)
AMD Fusion, Athlon, Opteron, Geode
Freescale PowerPC 5xx, 6xx
NVIDIA Tegra
Energy Micro EFM32
Intel Itanium
Freescale Vybrid (ARM)
Broadcom (any)
Marvell
Xilinx Virtex-4 (with PowerPC 405)
SiLABS Precision32 (ARM)
IBM PowerPC 4xx, 7xx
Microsemi SmartFusion2 SoC FPGA (Cortex-M3)
2013 (N = 1887)
2012 (N = 1548)
(Continued) Which of the following 32-bit chip families would you
consider for your next embedded project?
3%
2%
2%
2%
2%
2%
2%
2%
1%
1%
1%
%
4%
2%
2%
3%
2%
2%
1%
1%
%
6%
Infineon XMC4000 (ARM)
Microsemi SmartFusion SoC
FPGA (Cortex-M3)
Microsemi FPGA (Cortex-M1,
soft)
AMD Alchemy (MIPS)
Infineon Tricore
NEC V850
Fujitsu FM3 (ARM)
Cirrus Logic EP73xx, EP93xx
(ARM)
AMCC PowerPC 4xx
SPARC (any)
Fujitsu FR series
IDT 32xxx
Other
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43%
43%
20%
16%
15%
14%
12%
9%
5%
4%
4%
6%
44%
43%
19%
17%
14%
14%
15%
9%
4%
4%
4%
9%
Microchip PIC24 / dsPIC
TI MSP430
Freescale HC16
STMicroelectronics ST9, ST10
Intel 8086, '186, '286
Freescale HC12
Renesas H8/300H, H8S, H8S/2000, M16C
AMD 186, '188
Infineon XE166, XC2000, XC166, C166
Zilog Z180, Z380
Maxim
Other
2013 (N = 1,427)
2012 (N = 1,141)
Which of the following 16-bit chip families would you consider for
your next embedded project?
*
*
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43%
35%
18%
17%
16%
15%
14%
11%
10%
10%
10%
9%
9%
7%
6%
3%
3%
3%
2%
2%
1%
5%
41%
36%
20%
15%
14%
16%
14%
11%
11%
9%
10%
8%
10%
7%
6%
4%
3%
3%
3%
1%
4%
6%
Microchip PIC
Atmel AVR
Freescale HC05, HC08, HC11
Arduino
TI TMS370, 7000
STMicroelectronics ST6, ST7, ST8
Intel 80xx, '251
Xilinx PicoBlaze
Renesas H8, R8Cypress PSoC
NXP/Philips P80x, P87x, P89x
Altera soft core
Atmel 80xx
SiLabs 80xx
Zilog Z8, Z80, Z180, eZ80
Digi / Rabbit 2000, 3000
Maxim 80xxParallax
Infineon XC800, C500
Toshiba
NEC K0
Other
2013 (N = 1,544)
2012 (N = 1,293)
Which of the following 8-bit chip families would you consider for
your next embedded project?
*Renesas H8/300, 3800, 7200,
7600, R8C/Tiny, 38000, 7200,
7600, 740
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Which of the following DSP chip families would you
consider for your next embedded project?
29%
27%
24%
22%
21%
18%
17%
15%
11%
11%
9%
5%
8%
29%
27%
25%
22%
23%
16%
16%
12%
10%
10%
8%
3%
9%
TI 'C6000
Microchip dsPIC
TI DaVinci
TI 'C5000
Analog Devices Blackfin
NXP Cortex M4 LPC4000
Freescale 563xx, 566xx, 568xx, 96xxx
Analog Devices SHARC
Analog Devices ADSP-21xx
Analog Devices TigerSHARC
Freescale StarCore 71xx, 81xx
LatticeECP3
Other
2013 (N = 1,333)
2012 (N = 1,054)
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FPGA’s and Programmable Logic
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Does your current embedded project contain FPGAs/programmable logic?
31%
69%
35%
65%
38%
62%
42%
58%
45%
55%
0
10
20
30
40
50
60
70
80
Yes No
2013 (N = 2,073) 2012 (N = 1,669) 2011 (N = 1,870) 2010 (N = 1,540) 2009 (N = 1,536)
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If project doesn’t contain any FPGAs, will the trend towards FPGAs with built in
multicore processors change your mind?
36%
64%
37%
63%
0
10
20
30
4050
60
70
Yes No
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Which of the following vendors does your
current embedded projects use for FPGAs?
64%
42%
10%
6%
6%
4%
4%
3%
3%
64%
41%
11%
7%
7%
10%
4%
2%
3%
62%
42%
8%
6%
5%
11%
5%
2%
3%
65%
42%
12%
6%
5%
9%
5%
4%
3%
Xilinx
Altera
Lattice
Atmel
Mentor Graphics
Microsemi
Cypress
Cadence
Synopsys/Synplicity
2013 Currently use (N = 626)
2012 Currently use (N = 567)
2011 Currently use (N = 690)
2010 Currently use (N = 624)
Tabula and Achronix were both less than one percent.
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Will your next embedded project likely contain FPGAs/programmable logic?
41%
59%
43%
57%
42%
58%
45%
55%50% 51%
Yes No
2013 (N = 2,022) 2012 (N = 1,642) 2011 (N = 1,846) 2010 (N = 1,517) 2009 (N = 1,519)
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Why won’t your next project include customizable chips?
60%
29%
16%
13%
11%
4%
3%
2%
9%
63%
31%
16%
14%
4%
2%
4%
10%
Don't need this functionality
They're too expensive
They consume too much power
They're too difficult to program (in HDL)
We don't understand this functonality
They're not fast enough for our purposes
They're not big enough for our purposes
They're not reliable enough
Don't know
2013 (N = 1171)
2012 (N = 929)
Base = Those who will not be
using customizable chips
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If yes, which of the following vendors will you
consider in your next embedded project for FPGAs?
74%
58%
17%
15%
9%
9%
7%
5%
4%
1%
%
3%
75%
55%
17%
16%
14%
9%
8%
5%
4%
1%
1%
3%
73%
58%
15%
12%
19%
9%
5%
4%
3%
4%
Xilinx
Altera
Lattice
Atmel
Microsemi
Cypress
Mentor Graphics
Synopsys/Synplicity
Cadence
Achronix
Tabula
Other
2013 (N = 801)
2012 Will consider (N = 675)
2011 Will consider (N = 759)
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For 2013 only -- which of the following vendors does your
current embedded projects use for FPGAs,
and which will you consider in your next embedded project?
64%
42%
10%
6%
6%
4%
4%
3%
3%
2%
74%
58%
17%
15%
7%
9%
9%
4%
5%
3%
Xilinx
Altera
Lattice
Atmel
Mentor Graphics
Microsemi
Cypress
Cadence
Synopsys/Synplicity
Other
2013 Currently use (N = 626)
2013 Will Consider (N = 801)
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HARDWARE IPs,
SYSTEM LEVEL DESIGN,
& USE OF GUIs
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Does your current embedded project reuse hardware or
hardware IP from a previous project?
30%
62%
6%3%
29%
61%
7%3%
27%
62%
7%3%
27%
62%
7%3%
No, all new hardware, no
hardware or IP reuse
Yes, reused some
hardware or IP that was
developed in-house
Yes, reused some
commercial (purchased)
hardware or IP
Yes, reused some public
domain hardware IP
2013 (N = 2041)
2012 (N = 1515)
2011 (N = 1827)
2010 (N = 1498)
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Which of the following design techniques will become more important to
your designs in the future?
63%
36%
32%
31%
63%
39%
33%
32%
Simulation
Modeling in a high level language
Virtual prototyping
Graphical system design
2013 (N = 1743)
2012 (N = 1401)
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What system level design tools do you or your organization currently use?
54%
35%
24%
28%
19%
4%
3%
2%
2%
12%
51%
30%
23%
36%
26%
11%
MATLAB
LabVIEW
Simulink
System C or other "hardware C"…
UML
Cadence Virtual System Platform
Synopsys Virtualizer
HAPS FPGA-based prototypes
Mentor Vista
Other
2013 (N = 1509)
2012 (N = 1200)
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Who were the three greatest influencers on the choice of the
system-level tools for your current project?
33%
27%
25%
23%
20%
19%
19%
18%
10%
6%
3%
4%
Software engineering staff
Software engineering manager
Hardware engineering staff
Systems engineering staff
Hardware engineering manager
Systems engineering manager
Hardware architects
Corporate management
Outside influence, customer, stndrds
Purchasing manager
Marketing manager
Other
2013 (N = 1,771)
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Which of the following project management software packages
do you currently use?
50%
49%
28%
23%
9%
7%
3%
8%
40%
44%
26%
25%
11%
6%
2%
1%
Microsoft Excel
Microsoft Project
Visio
Open Source tools
IBM Telelogic DOORS
Simulink
TeamCenter
Other software package
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Which of the following Version Control software systems
do you currently use?
41%
21%
20%
14%
9%
20%
Subversion
Git
CVS
Clearcase
Perforce
Other*
2013 (N = 1,660)
*Other mentions
Mercurial 38
Serena PVCS 23 Microsoft Source Safe 21
MKS 18
Team Foundation Server (TFS) 16
Tortoise 16
Visual SourceSafe 12
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Does your current design use a graphical user interface?
41.1%
58.9%
40.4%
59.6%
Yes No
2013 (N = 1993) 2012 (N = 1613)
Touch 40% Color 36%
Hi res 10%
Haptic 2%
3D 1%
Other 11%
2012 (N = 645)
Color 42%Touch 34%
Hi-res 11%
3D 2%
Haptic 1%
Other 10%
2013 (N = 804)
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Essential to Engineers
Thank you | See you at DESIGN West!
David Blaza, VP of UBM Tech, Electronics
415-947-6929
Alex Wolfe, Brand Director, EE Times, Embedded, & EBN
[email protected] • 516-562-7386