Portable Analysis Instrumentation


January 1, 2013
223 Pages - SKU: WA4936292
License type:
This report provide:

An overview of several identified categories of portable analysis instrumentation and several application areas in which field-based portable analysis instrumentation can effectively be used

Analyses of global market trends, with data from 2012, estimates for 2013, and projections of compound annual growth rates (CAGRs) through 2018

Discussion of the industry on a worldwide basis, from a product perspective as well as a technology perspective

Examination of regulations in the U.S. and global markets to identify consumer safety, product introduction, and product safety regulatory issues for stakeholders and potential stakeholders in this industry

Consideration of current trends and other available data indicating company, product, and application stability or instability

Comprehensive company profiles of major players.


Additional Information

INTRODUCTION

STUDY GOALS AND OBJECTIVES

Since the creation of the sensor and integrated circuit (IC) industries both have steadily delivered greater value to their customers by increasing the functionality of their products while reducing unit costs. In so doing both industries recognized the enormous potential of integrating sensors into microprocessor-controlled devices. Today, we see the results of the convergence of sensors with new products in the form of video games that replace controllers with hand motions, blood-sugar monitoring devices that requires diabetics to draw less blood and a host of less visible industrial products. This BCC Research study examines one important class of those industrial products that have benefited from the sensor-microdevice convergence: portable analysis instrumentation (PAI).

This is the second examination of the global (PAI) market conducted by BCC Research. In its 2009 study titled Portable Analysis Instrumentation: The Global Market (IAS028A), BCC Research concluded PAIs were rapidly making it possible to rapidly acquire laboratory-quality analytical results in the field. In this study, motivated by the speed of recent developments, we have added greater specificity to that earlier work, by:

Distinguishing among basic types of PAIs based, on their fundamental analytical capabilities, chromatography, spectroscopy, etc.

Forecasting country-level demand for 51 national economies, including China-Hong Kong as a separate national economy from China-Mainland.

REASONS FOR DOING THIS STUDY

As pointed out in our 2009 study, improvements in PAI that occurred in the early years of the 21st century arose from the maturation of sensor and integrated circuit (IC)technologies. In many applications PAIs held the promise of being truly transformational, although not all applications would see the technology mature at the same rate. In environmental monitoring PAI technology rapidly reached its natural plateau, offering sufficient selectivity and sensitivity for intended end-users. A field ecologist’s instrumentation does not require 10-digit precision. In other cases—instrumentation on planetary space probes offer an excellent example—the core technology itself runs ahead of the end-users’ understanding. To use a sports analogy: Not every everyone playing junior varsity (JV) football can fit into the varsity team’s shoulder pads, but it is reasonable to predict that one day everyone member of the JV team will. Technologically progress motivates a reexamination of the topic. The speed of that progress is evident in the final chapter of this study that provides abstracts of some 200 inventions related to PAIs that received patents between the spring of 2009 and summer of 2012. Second, the economic situation has changes profoundly since 2009.

INTENDED AUDIENCE

This study will interest these groups of professionals:

Managers responsible for field-level data collection activities related to manufacturing, scientific research, and regulatory enforcement and compliance.

Executives responsible for improving their organization’s field data acquisition activities.

Design engineers specializing in sensors, application-specific integrated circuits and instrument packaging.

Manufacturers of portable instrumentation.

Sensor manufacturers.

Integrated Circuit (IC) suppliers.

Application-Specific Integrated Circuit ASIC service providers.

Investors exploring opportunities in the activities described above.

SCOPE AND FORMAT

The scope of this study is the PAI market, a subset of the larger analysis equipment market. The diverse nature of the PAI market paradoxically requires that to be useful its forecasts need to be specific for both for types of devices for which demand is forecast and also in identifying the geographic markets in which those devices are used. In most cases, technologically drives technological markets. In the case of PAIs the situation is more nuanced, with broader economic and political circumstances also influencing demand. For example, the demand for PAIs for environmental monitoring is influenced both by the expansion of industries that create discharges into the air and water and also by national laws that seek to mitigate the depredation of those resources.

The broad scope of the PAI market requires that forecasts show demand for both types of PAIs and the demand for those devices at the country level. In this study, we provide that data with a set of 17 devices by country forecast tables and 52 countries by device tables. To aid readers in better understanding the areas in which technology will exert its greatest influence we have included two additional sets of information: comprehensive patent data consisting of the abstracts of 189 recent inventions directly related to PAIs, with more detailed patent information on three devices that rise to the level of disruptive technologies. All forecast tables use the format in presenting values in current U.S. dollars for 2013 through 2018. A set of informational tables place the forecasts in context of the distribution of national manufacturing activity and the number potential PAI-using personnel.

METHODOLOGY

There are numerous methods of defining and classifying analytical instruments, the two broadest divisions being between stationary and mobile equipment and between those which manufacturers can freely sell and those requiring prior governmental approval, for example, medical devices. While distinctions between stationary and mobile instrumentation may be self-evident distinguishing mobile and portable instruments remains open to interpretation. In this study BCC Research applies a simple bright-line test similar to the one flight attendants use in enforcing the no personal electronics rule during takeoffs and landings: If it has a battery, it is PAI.

To maintain uniformity in our discussion of PAIs we distinguish among the 17 generic types of PAIs covered in this study by adopting the same descriptions that national taxation authorities have agreed upon when identifying PAIs for tariff purposes, the 2007 version of the Harmonized System (HS) product coding system. Using HS2007 nomenclature, the 17 types of PAIs examined in this study are:

Electrochemical Instruments and Apparatus.

Electrophoresis Instruments, Electrical.

Gas Chromatographs.

Gas or Smoke Analysis Apparatus.

Ionizing Radiation Measuring and Detecting Instruments.

Liquid Chromatographs.

Mass Spectrometers.

Nuclear Magnetic Resonances Instruments and Apparatus, Nonmedical.

Photometers.

Physical or Chemical Analysis Instruments and Apparatus Using Optical Radiations, Not Elsewhere Specified.

Spectrometers and Spectrographs Using Optical Radiations, Electrical.

Spectrophotometers Using Optical Radiations, Nonelectrical.

Spectroscopes Using Optical Radiations, Nonelectrical.

Thermal Analysis Instruments and Apparatus.

Chemical Analysis Instruments and Apparatus, Not Elsewhere Specified.

Chromatographs and Electrophoresis Instruments, Not Elsewhere Specified.

Spectrometers and Spectrographs Using Optical Radiations, Not Elsewhere Specified, Nonelectrical.

Because the focus of this study is the industrial market we have, with one exception, omitted PAIs that fall within the U. S. Food and Drug Administration definition of a medical device. The exception is in the inventions included in the last chapter that addresses patents, as the testing methodologies adopted for use in medical devices tend to have applications beyond healthcare.

Total forecast values presented in this report reflect demand in the 52 economies for which we have furnished forecasts. We use the term “economy” rather than “county” because China-Mainland and China-Hong Kong operate under different economic systems. Due to insufficient verifiable product value data China-Taiwan and other, mostly small economies have been excluded from this study. The 52 economies for which we furnish forecasts are:

Argentina.

Australia.

Belarus.

Belgium.

Brazil.

Canada.

Chile.

China-Hong Kong.

China-Mainland.

Colombia.

Costa Rica.

Czech Republic.

Denmark.

Ecuador.

Egypt.

Estonia.

Finland.

France.

Germany.

Greece.

Hungary.

Iceland.

India.

Indonesia.

Ireland.

Israel.

Italy.

Japan.

Korea-South.

Lithuania.

Malaysia.

Mexico.

New Zealand.

Norway.

Pakistan.

Peru.

Poland.

Portugal.

Romania.

Russia.

Singapore.

Slovakia.

Slovenia.

South Africa.

Sweden.

Switzerland.

Thailand.

Turkey.

Ukraine.

United Kingdom.

United States.
CHAPTER 1 INTRODUCTION
STUDY GOALS AND OBJECTIVES
REASONS FOR DOING THIS STUDY
INTENDED AUDIENCE
SCOPE AND FORMAT
METHODOLOGY
INFORMATION SOURCES
ABOUT THE AUTHOR
RELATED BCC REPORTS
BCC ONLINE SERVICES
DISCLAIMER
CHAPTER 2 SUMMARY
SUMMARY TABLE GLOBAL DEMAND FOR PORTABLE ANALYSIS INSTRUMENTATION ($ MILLIONS)
SUMMARY FIGURE GLOBAL DEMAND FOR PORTABLE ANALYSIS INSTRUMENTATION ($ MILLIONS)
CHAPTER 3 OVERVIEW OF THE PORTABLE ANALYSIS INSTRUMENTATION MARKET
INSTRUMENT DEFINITIONS
TABLE 1 THE 17 PAIS FORECAST IN THIS STUDY (BY COMMON NAME AND 2007 HARMONIZED TARIFF SCHEDULE CODE)
DEFINING PORTABILITY
TABLE 2 PAPERS PUBLISHED ON PORTABLE INSTRUMENTS, 1945-2012
TECHNOLOGY DRIVERS
NATIONAL CONSIDERATIONS
CHAPTER 4 WORLDWIDE DEMAND FOR PORTABLE ANALYSIS INSTRUMENTATION
TABLE 3 MANUFACTURING, VALUE-ADDED IN MAJOR PAI-USING ECONOMIES, BY GROWTH RATE, THROUGH 2018 (% OF GDP)
TABLE 4 RELATIVE DEMAND FOR PAIS IN THE CHEMICAL INDUSTRY (% OF ALL INDUSTRIAL DEMAND)
TABLE 5 RELATIVE DEMAND FOR PAIS IN THE CLAY AND GLASS INDUSTRY (% OF ALL INDUSTRIAL DEMAND)
TABLE 6 RELATIVE DEMAND FOR PAIS IN THE FOOD INDUSTRY (% OF ALL INDUSTRIAL DEMAND)
TABLE 7 RELATIVE DEMAND FOR PAIS IN THE METAL INDUSTRY (% OF ALL INDUSTRIAL DEMAND)
TABLE 8 RELATIVE DEMAND FOR PAIS IN THE PAPER AND PULP INDUSTRY (% OF ALL INDUSTRIAL DEMAND)
TABLE 9 RELATIVE DEMAND FOR PAIS IN THE TEXTILE INDUSTRY (% OF ALL INDUSTRIAL DEMAND)
TABLE 10 RELATIVE DEMAND FOR PAIS IN THE WOOD MANUFACTURING INDUSTRY (% OF ALL INDUSTRIAL DEMAND)
TABLE 11 RELATIVE DEMAND FOR PAIS IN OTHER INDUSTRIES (% OF ALL INDUSTRIAL DEMAND)
PAIS FOR ENVIRONMENTAL REMEDIATION
TABLE 12 ORGANIC WATER POLLUTANT EMISSIONS IN MAJOR PAI-USING ECONOMIES, BY GROWTH RATE, THROUGH 2018 (KG OF BIOCHEMICAL OXYGEN DEMAND PER DAY)
TELECOMMUNICATION: THE CRITICAL LINK
TABLE 13 MAJOR PAI-USING ECONOMIES FORECAST TO HAVE GREATER THAN 90% MOBILE CELL PHONE COVERAGE BY 2018
TABLE 14 MAJOR PAI-USING ECONOMIES FORECAST TO HAVE LESS THAN 90% MOBILE CELL PHONE COVERAGE BY 2018 (% OF POPULATION COVERED BY MOBILE CELLULAR NETWORK)
PRESENCE OF A PAI-CAPABLE WORKFORCE
TABLE 15 TOTAL LABOR FORCE IN MAJOR PAI-USING ECONOMIES, BY GROWTH RATE, THROUGH 2018 (MILLIONS OF WORKERS)
TABLE 16 SCIENTISTS AND ENGINEERS ENGAGED IN R&D IN MAJOR PAI-USING
ECONOMIES, BY GROWTH RATE, THROUGH 2018 (RESEARCHERS PER MILLION OF POPULATION)
TABLE 17 R&D TECHNICAL SUPPORT PERSONNEL IN MAJOR PAI-USING ECONOMIES, BY GROWTH RATE, THROUGH 2018 (TECHNICIANS PER MILLION OF POPULATION)
THE FUTURE PAI-CAPABLE WORKFORCE
TABLE 18 LABOR FORCE WITH TERTIARY EDUCATION IN MAJOR PAI-USING ECONOMIES, BY GROWTH RATE, THROUGH 2018 (% OF LABOR FORCE)
TABLE 19 EXPENDITURE PER TERTIARY STUDENT IN MAJOR PAI-USING ECONOMIES, BY GROWTH RATE, THROUGH 2018 (% OF GDP PER CAPITA)
PAI FORECASTS AT THE NATIONAL ECONOMY LEVEL
TABLE 20 WORLDWIDE DEMAND FOR PORTABLE ANALYSIS INSTRUMENTATION, BY ECONOMY, THROUGH 2018 ($ MILLIONS)
TABLE 21 WORLDWIDE DEMAND FOR PORTABLE ANALYSIS INSTRUMENTATION, BY 2008 VALUE ($ MILLIONS)
TABLE 22 WORLDWIDE DEMAND FOR PORTABLE ANALYSIS INSTRUMENTATION, BY GROWTH RATE, THROUGH 2018 ($ MILLIONS)
ECONOMY-LEVEL PAI FORECASTS
TABLE 23 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING ALGERIA, THROUGH 2018 ($ MILLIONS)
TABLE 24 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN ARGENTINA, THROUGH 2018 ($ MILLIONS)
TABLE 25 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN AUSTRALIA, THROUGH 2018 ($ MILLIONS)
TABLE 26 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN BELARUS, THROUGH 2018 ($ MILLIONS)
TABLE 27 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN BELGIUM, THROUGH 2018 ($ MILLIONS)
TABLE 28 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN BRAZIL, THROUGH 2018 ($ MILLIONS)
TABLE 29 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN CANADA, THROUGH 2018 ($ MILLIONS)
TABLE 30 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN CHILE, THROUGH 2018 ($ MILLIONS)
TABLE 31 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN CHINA-HONG KONG, THROUGH 2018 ($ MILLIONS)
TABLE 32 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN CHINA-MAINLAND, THROUGH 2018 ($ MILLIONS)
TABLE 33 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN COLUMBIA, THROUGH 2018 ($ MILLIONS)
TABLE 34 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN COSTA RICA, THROUGH 2018 ($ MILLIONS)
TABLE 35 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN THE CZECH REPUBLIC, THROUGH 2018 ($ MILLIONS)
TABLE 36 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN DENMARK, THROUGH 2018 ($ MILLIONS)
TABLE 37 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN ECUADOR, THROUGH 2018 ($ MILLIONS)
TABLE 38 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN EGYPT, THROUGH 2018 ($ MILLIONS)
TABLE 39 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN ESTONIA, THROUGH 2018 ($ MILLIONS)
TABLE 40 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN FINLAND, THROUGH 2018 ($ MILLIONS)
TABLE 41 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN FRANCE, THROUGH 2018 ($ MILLIONS)
TABLE 42 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN GERMANY, THROUGH 2018 ($ MILLIONS)
TABLE 43 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN GREECE, THROUGH 2018 ($ MILLIONS)
TABLE 44 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN HUNGARY, THROUGH 2018 ($ MILLIONS)
TABLE 45 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN ICELAND, THROUGH 2018 ($ MILLIONS)
TABLE 46 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN INDIA, THROUGH 2018 ($ MILLIONS)
TABLE 47 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN INDONESIA, THROUGH 2018 ($ MILLIONS)
TABLE 48 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN IRELAND, THROUGH 2018 ($ MILLIONS)
TABLE 49 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN ISRAEL, THROUGH 2018 ($ MILLIONS)
TABLE 50 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN ITALY, THROUGH 2018 ($ MILLIONS)
TABLE 51 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN JAPAN, THROUGH 2018 ($ MILLIONS)
TABLE 52 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN KOREA-SOUTH, THROUGH 2018 ($ MILLIONS)
TABLE 53 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN LITHUANIA, THROUGH 2018 ($ MILLIONS)
TABLE 54 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN MALAYSIA, THROUGH 2018 ($ MILLIONS)
TABLE 55 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN MEXICO, THROUGH 2018 ($ MILLIONS)
TABLE 56 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN NEW ZEALAND, THROUGH 2018 ($ MILLIONS)
TABLE 57 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN NORWAY, THROUGH 2018 ($ MILLIONS)
TABLE 58 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN PAKISTAN, THROUGH 2018 ($ MILLIONS)
TABLE 59 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN PERU, THROUGH 2018 ($ MILLIONS)
TABLE 60 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN POLAND, THROUGH 2018 ($ MILLIONS)
TABLE 61 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN PORTUGAL, THROUGH 2018 ($ MILLIONS)
TABLE 62 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN ROMANIA, THROUGH 2018 ($ MILLIONS)
TABLE 63 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN RUSSIA, THROUGH 2018 ($ MILLIONS)
TABLE 64 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN SINGAPORE, THROUGH 2018 ($ MILLIONS)
TABLE 65 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN SLOVAKIA, THROUGH 2018 ($ MILLIONS)
TABLE 66 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN SLOVENIA, THROUGH 2018 ($ MILLIONS)
TABLE 67 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN SOUTH AFRICA, THROUGH 2018 ($ MILLIONS)
TABLE 68 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN SWEDEN, THROUGH 2018 ($ MILLIONS)
TABLE 69 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN SWITZERLAND, THROUGH 2018 ($ MILLIONS)
TABLE 70 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN THAILAND, THROUGH 2018 ($ MILLIONS)
TABLE 71 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN TURKEY, THROUGH 2018 ($ MILLIONS)
TABLE 72 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN THE UKRAINE, THROUGH 2018 ($ MILLIONS)
TABLE 73 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN THE UNITED KINGDOM, THROUGH 2018 ($ MILLIONS)
TABLE 74 PORTABLE ANALYSIS INSTRUMENT DEMAND ORIGINATING IN THE UNITED STATES, THROUGH 2018 ($ MILLIONS)
CHAPTER 5 PORTABLE ANALYSIS INSTRUMENTATION FORECASTS
TABLE 75 PORTABLE PHYSICAL ANALYSIS INSTRUMENTATION FORECAST IN THIS CHAPTER, GROUPED BY SIX-DIGIT HS CODES, THROUGH 2018 (MILLIONS)
FORECAST FOR PORTABLE GAS OR SMOKE ANALYSIS APPARATUS
TABLE 76 FORECAST FOR PORTABLE GAS OR SMOKE ANALYSIS APPARATUS, BY COUNTRY, THROUGH 2018 ($ MILLIONS)
GAS CHROMATOGRAPHS
TABLE 77 FORECAST FOR GAS CHROMATOGRAPHS APPARATUS, BY ECONOMY ($ MILLIONS)
ELECTROPHORESIS INSTRUMENTS
TABLE 78 FORECAST FOR ELECTROPHORESIS INSTRUMENTS APPARATUS, BY ECONOMY, THROUGH 2018 (MILLIONS)
LIQUID CHROMATOGRAPHS
TABLE 79 FORECAST FOR LIQUID CHROMATOGRAPHS APPARATUS, BY ECONOMY, THROUGH 2018 ($ MILLIONS)
CHROMATOGRAPHS AND ELECTROPHORESIS INSTRUMENTS, NOT ELSEWHERE
SPECIFIED
TABLE 80 FORECAST FOR NOT ELSEWHERE SPECIFIED APPARATUS, BY ECONOMY, THROUGH 2018 ($ MILLIONS)
SPECTROPHOTOMETERS USING OPTICAL RADIATIONS, NONELECTRICAL
TABLE 81 SPECTROPHOTOMETERS USING OPTICAL RADIATIONS, NONELECTRICAL APPARATUS, BY ECONOMY, THROUGH 2018 ($ MILLIONS)
SPECTROMETERS AND SPECTROGRAPHS USING OPTICAL RADIATIONS, ELECTRICAL
TABLE 82 FORECAST FOR SPECTROMETERS AND SPECTROGRAPHS USING OPTICAL RADIATIONS, ELECTRICAL APPARATUS, BY ECONOMY, THROUGH 2018 ($ MILLIONS)
SPECTROSCOPES USING OPTICAL RADIATIONS, NONELECTRICAL
TABLE 83 FORECAST FOR SPECTROSCOPES USING OPTICAL RADIATIONS, NONELECTRICAL APPARATUS, BY ECONOMY, THROUGH 2018 ($ MILLIONS)
SPECTROMETERS AND SPECTROGRAPHS USING OPTICAL RADIATIONS, NOT
ELSEWHERE SPECIFIED, NONELECTRICAL
TABLE 84 FORECAST FOR SPECTROMETERS AND SPECTROGRAPHS USING OPTICAL RADIATIONS, NOT ELSEWHERE SPECIFIED, NONELECTRICAL APPARATUS, BY ECONOMY, THROUGH 2018 ($ MILLIONS)
ELECTROCHEMICAL INSTRUMENTS AND APPARATUS
TABLE 85 FORECAST FOR ELECTROCHEMICAL INSTRUMENTS AND APPARATUS, BY ECONOMY, THROUGH 2018 ($ MILLIONS)
THERMAL ANALYSIS INSTRUMENTS AND APPARATUS
TABLE 86 FORECAST FOR THERMAL ANALYSIS INSTRUMENTS AND APPARATUS, BY ECONOMY, THROUGH 2018 ($ MILLIONS)
PHOTOMETERS
TABLE 87 FORECAST FOR PHOTOMETERS APPARATUS, BY ECONOMY, THROUGH 2018 ($ MILLIONS)
PHYSICAL OR CHEMICAL ANALYSIS INSTRUMENTS AND APPARATUS USING OPTICAL RADIATIONS, NOT ELSEWHERE SPECIFIED
TABLE 88 FORECAST FOR PHYSICAL OR CHEMICAL ANALYSIS INSTRUMENTS AND APPARATUS USING OPTICAL RADIATIONS, NOT ELSEWHERE SPECIFIED APPARATUS, BY ECONOMY, THROUGH 2018 ($ MILLIONS)
NUCLEAR MAGNETIC RESONANCES INSTRUMENTS AND APPARATUS, NONMEDICAL
TABLE 89 FORECAST FOR NUCLEAR MAGNETIC RESONANCES INSTRUMENTS AND APPARATUS, NONMEDICAL APPARATUS, BY ECONOMY, THROUGH 2018 ($ MILLIONS)
MASS SPECTROMETERS
TABLE 90 FORECAST FOR MASS SPECTROMETERS APPARATUS, BY ECONOMY ($ MILLIONS)
CHEMICAL ANALYSIS INSTRUMENTS AND APPARATUS, NOT ELSEWHERE SPECIFIED
TABLE 91 FORECAST FOR CHEMICAL ANALYSIS INSTRUMENTS AND APPARATUS, NOT ELSEWHERE SPECIFIED APPARATUS, BY ECONOMY, THROUGH 2018 ($ MILLIONS)
IONIZING RADIATION MEASURING AND DETECTING INSTRUMENTS
TABLE 92 FORECAST FOR IONIZING RADIATION MEASURING AND DETECTING INSTRUMENTS APPARATUS, BY ECONOMY, THROUGH 2018 ($ MILLIONS)
CHAPTER 6 COMPANY PROFILES
AGILENT TECHNOLOGIES INC.
AHURA SCIENTIFIC INC.
AIRSENSE ANALYTICS GMBH
AMERISOURCEBERGEN
AVANTES BV
AZIMUTH INC.
BAR-ILAN UNIVERSITY
BIOMETRX INC.
B&W TEK INC.
BRIMROSE CORP. OF AMERICA
BRUKER OPTIK GMBH
CARNEGIE MELLON UNIVERSITY
CELIGHT INC.
COLUMBIA UNIVERSITY
DELTANU
DRAGER SAFETY AG & CO. KGAA
DUBLIN CITY UNIVERSITY
ENENIA BIOMETRICSINC. (EBI)
GE SECURITY INC.
GRAYWOLF SENSING SOLUTIONS LLD
HARVARD UNIVERSITY
HORIBA JOBIN YVON INC.
INPHOTONICS INC.
INSTITUTE OF MATERIALS RESEARCH AND ENGINEERING
INSTITUTE OF MICROELECTRONICS SINGAPORE
JASCO INC.
LAURUS SYSTEMS INC.
LIGHTOUCH MEDICAL INC.
NATIONAL INSTITUTE OF STANDARDS AND TECHNOLOGY, INC.
OCEAN OPTICS
OHIO STATE UNIVERSITY
OREGON NANOSCIENCE AND MICROTECHNOLOGIES INSTITUTE (ONAMI)
OWR AG
OXFORD INSTRUMENTS
PHOTOVAC INC.
POLYCHROMIX
RAE SYSTEMS INC.
SEMICONDUCTOR RESEARCH CORPORATION
SMITHS DETECTION
STELLARNET INC.
TSI INC.
CHAPTER 7 PATENT REVIEW
TABLE 93 U.S. PATENTS REFERENCING PORTABLE ANALYTICAL INSTRUMENTATION (ISSUED 2 APRIL 2009 THROUGH 27 AUGUST 2012)
THREE DISRUPTIVE PAI PATENTS
THE WEST PATENT
FIGURE 1 PERSPECTIVE VIEW OF THE WEST PATENT
THE CULLUM PATENT
FIGURE 2 SCHEMATIC OF THE CULLUM PATENT
THE GRATTON PATENT
FIGURE 3 SCHEMATIC OF THE GRATTON PATENT
PATENT ABSTRACTS
UNITED STATES PATENT: 8,249,824
UNITED STATES PATENT: 8,248,611
UNITED STATES PATENT: 8,247,784
UNITED STATES PATENT: 8,247,240
UNITED STATES PATENT: 8,244,745
UNITED STATES PATENT: 8,240,142
UNITED STATES PATENT: 8,235,071
UNITED STATES PATENT: 8,234,129
UNITED STATES PATENT: 8,227,610
UNITED STATES PATENT: 8,227,260
UNITED STATES PATENT: 8,220,312
UNITED STATES PATENT: 8,217,344
UNITED STATES PATENT: 8,206,974
UNITED STATES PATENT: 8,206,946
UNITED STATES PATENT: 8,202,573
UNITED STATES PATENT: 8,198,039
UNITED STATES PATENT: 8,194,813
UNITED STATES PATENT: 8,185,325
UNITED STATES PATENT: 8,178,355
UNITED STATES PATENT: 8,174,700
UNITED STATES PATENT: 8,174,691
UNITED STATES PATENT: 8,173,417
UNITED STATES PATENT: 8,173,073
UNITED STATES PATENT: 8,168,223
UNITED STATES PATENT: 8,165,661
UNITED STATES PATENT: 8,150,502
UNITED STATES PATENT: 8,148,515
UNITED STATES PATENT: 8,148,168
UNITED STATES PATENT: 8,148,057
UNITED STATES PATENT: 8,147,668
UNITED STATES PATENT: 8,137,444
UNITED STATES PATENT: 8,127,595
UNITED STATES PATENT: 8,106,352
UNITED STATES PATENT: 8,105,849
UNITED STATES PATENT: 8,101,431
UNITED STATES PATENT: 8,101,393
UNITED STATES PATENT: 8,097,419
UNITED STATES PATENT: 8,093,065
UNITED STATES PATENT: 8,089,628
UNITED STATES PATENT: 8,082,015
UNITED STATES PATENT: 8,080,407
UNITED STATES PATENT: 8,077,311
UNITED STATES PATENT: 8,075,767
UNITED STATES PATENT: 8,071,869
UNITED STATES PATENT: 8,071,035
UNITED STATES PATENT: 8,052,822
UNITED STATES PATENT: 8,048,628
UNITED STATES PATENT: 8,048,377
UNITED STATES PATENT: 8,043,810
UNITED STATES PATENT: 8,040,494
UNITED STATES PATENT: 8,039,269
UNITED STATES PATENT: 8,036,929
UNITED STATES PATENT: 8,030,057
UNITED STATES PATENT: 8,022,832
UNITED STATES PATENT: 8,013,602
UNITED STATES PATENT: 8,012,328
UNITED STATES PATENT: 8,012,328
UNITED STATES PATENT: 8,011,224
UNITED STATES PATENT: 8,010,309
UNITED STATES PATENT: 8,008,067
UNITED STATES PATENT: 7,999,541
UNITED STATES PATENT: 7,998,546
UNITED STATES PATENT: 7,995,196
UNITED STATES PATENT: 7,992,424
UNITED STATES PATENT: 7,989,198
UNITED STATES PATENT: 7,988,839
UNITED STATES PATENT: 7,985,716
UNITED STATES PATENT: 7,977,282
UNITED STATES PATENT: 7,973,294
UNITED STATES PATENT: 7,968,761
UNITED STATES PATENT: 7,964,022
UNITED STATES PATENT: 7,955,840
UNITED STATES PATENT: 7,955,681
UNITED STATES PATENT: 7,948,041
UNITED STATES PATENT: 7,943,026
UNITED STATES PATENT: 7,939,278
UNITED STATES PATENT: 7,939,021
UNITED STATES PATENT: 7,931,788
UNITED STATES PATENT: 7,930,924
UNITED STATES PATENT: 7,927,883
UNITED STATES PATENT: 7,924,031
UNITED STATES PATENT: 7,914,442
UNITED STATES PATENT: 7,912,685
UNITED STATES PATENT: 7,908,908
UNITED STATES PATENT: 7,906,962
UNITED STATES PATENT: 7,904,285
UNITED STATES PATENT: 7,899,518
UNITED STATES PATENT: 7,898,665
UNITED STATES PATENT: 7,898,494
UNITED STATES PATENT: 7,897,032
UNITED STATES PATENT: 7,892,819
UNITED STATES PATENT: 7,890,285
UNITED STATES PATENT: 7,888,292
UNITED STATES PATENT: 7,888,043
UNITED STATES PATENT: 7,879,621
UNITED STATES PATENT: 7,879,552
UNITED STATES PATENT: 7,878,071
UNITED STATES PATENT: 7,869,965
UNITED STATES PATENT: 7,863,552
UNITED STATES PATENT: 7,860,895
UNITED STATES PATENT: 7,852,472
UNITED STATES PATENT: 7,850,912
UNITED STATES PATENT: 7,839,432
UNITED STATES PATENT: 7,837,871
UNITED STATES PATENT: 7,835,000
UNITED STATES PATENT: 7,833,801
UNITED STATES PATENT: 7,830,962
UNITED STATES PATENT: 7,825,376
UNITED STATES PATENT: 7,822,967
UNITED STATES PATENT: 7,822,510
UNITED STATES PATENT: 7,822,468
UNITED STATES PATENT: 7,815,574
UNITED STATES PATENT: 7,801,591
UNITED STATES PATENT: 7,794,994
UNITED STATES PATENT: 7,790,383
UNITED STATES PATENT: 7,787,924
UNITED STATES PATENT: 7,784,502
UNITED STATES PATENT: 7,784,501
UNITED STATES PATENT: 7,784,495
UNITED STATES PATENT: 7,781,228
UNITED STATES PATENT: 7,781,226
UNITED STATES PATENT: 7,781,218
UNITED STATES PATENT: 7,777,476
UNITED STATES PATENT: 7,773,749
UNITED STATES PATENT: 7,773,722
UNITED STATES PATENT: 7,772,546
UNITED STATES PATENT: 7,771,985
UNITED STATES PATENT: 7,769,562
UNITED STATES PATENT: 7,769,420
UNITED STATES PATENT: 7,762,118
UNITED STATES PATENT: 7,759,132
UNITED STATES PATENT: 7,749,768
UNITED STATES PATENT: 7,742,167
UNITED STATES PATENT: 7,741,615
UNITED STATES PATENT: 7,737,397
UNITED STATES PATENT: 7,736,890
UNITED STATES PATENT: 7,734,427
UNITED STATES PATENT: 7,731,910
UNITED STATES PATENT: 7,724,867
UNITED STATES PATENT: 7,722,820
UNITED STATES PATENT: 7,718,440
UNITED STATES PATENT: 7,705,339
UNITED STATES PATENT: 7,705,280
UNITED STATES PATENT: 7,704,457
UNITED STATES PATENT: 7,702,066
UNITED STATES PATENT: 7,691,642
UNITED STATES PATENT: 7,684,966
UNITED STATES PATENT: 7,675,624
UNITED STATES PATENT: 7,674,631
UNITED STATES PATENT: 7,674,627
UNITED STATES PATENT: 7,670,843
UNITED STATES PATENT: 7,667,010
UNITED STATES PATENT: 7,660,678
UNITED STATES PATENT: 7,653,173
UNITED STATES PATENT: 7,651,868
UNITED STATES PATENT: 7,640,793
UNITED STATES PATENT: 7,638,915
UNITED STATES PATENT: 7,635,842
UNITED STATES PATENT: 7,635,425
UNITED STATES PATENT: 7,630,063
UNITED STATES PATENT: 7,621,171
UNITED STATES PATENT: 7,619,214
UNITED STATES PATENT: 7,613,576
UNITED STATES PATENT: 7,604,599
UNITED STATES PATENT: 7,600,689
UNITED STATES PATENT: 7,595,023
UNITED STATES PATENT: 7,586,105
UNITED STATES PATENT: 7,582,867
UNITED STATES PATENT: 7,579,589
UNITED STATES PATENT: 7,578,972
UNITED STATES PATENT: 7,576,324
UNITED STATES PATENT: 7,576,321
UNITED STATES PATENT: 7,576,319
UNITED STATES PATENT: 7,570,989
UNITED STATES PATENT: 7,569,393
UNITED STATES PATENT: 7,569,129
UNITED STATES PATENT: 7,562,239
UNITED STATES PATENT: 7,558,976
UNITED STATES PATENT: 7,557,917
UNITED STATES PATENT: 7,552,350
UNITED STATES PATENT: 7,544,506
UNITED STATES PATENT: 7,541,586
UNITED STATES PATENT: 7,538,869
UNITED STATES PATENT: 7,530,257
UNITED STATES PATENT: 7,528,952
UNITED STATES PATENT: 7,528,384
UNITED STATES PATENT: 7,524,672
UNITED STATES PATENT: 7,522,162
UNITED STATES PATENT: 7,513,936

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