About Transmission Electron Microscope Microscopes were invented to look at objects which could not be seen by naked human eye. It was claimed to be invented by Hans Lippershey, a German scientist, in the 1590s. The capacity of a microscope is limited by the wavelength of the light used to see the object. The human eye can see objects of size up to 0.2mm. Electron microscopes are broadly categorized as TEM and SEM. This report covers the market size, growth opportunities, challenges, and trend of the global TEM market. TEMs use a beam of electrons that are transmitted through an ultra-thin specimen, which then interact with the specimen as they pass through it. From the interaction, an image is formed, which is then magnified and focused on a fluorescent screen upon a layer of photographic film, for getting detected by a sensor; for example, a charge-coupled device. Technavio’s analysts forecast the global transmission electron microscope market to grow at a CAGR of 8.56% during the period 2017-2021. Covered in this report The... Research Beam Model: Research Beam Product ID: 1697045 3500 USD New
Global Transmission Electron Microscope Market 2017-2021
 
 

Global Transmission Electron Microscope Market 2017-2021

  • Category : Semiconductor and Electronics
  • Published On : July   2017
  • Pages : 71
  • Publisher : Technavio
 
 
 
About Transmission Electron Microscope
Microscopes were invented to look at objects which could not be seen by naked human eye. It was claimed to be invented by Hans Lippershey, a German scientist, in the 1590s. The capacity of a microscope is limited by the wavelength of the light used to see the object. The human eye can see objects of size up to 0.2mm. Electron microscopes are broadly categorized as TEM and SEM. This report covers the market size, growth opportunities, challenges, and trend of the global TEM market. TEMs use a beam of electrons that are transmitted through an ultra-thin specimen, which then interact with the specimen as they pass through it. From the interaction, an image is formed, which is then magnified and focused on a fluorescent screen upon a layer of photographic film, for getting detected by a sensor; for example, a charge-coupled device.


Technavio’s analysts forecast the global transmission electron microscope market to grow at a CAGR of 8.56% during the period 2017-2021.

Covered in this report
The report covers the present scenario and the growth prospects of the global transmission electron microscope market for 2017-2021. To calculate the market size, the report considers the sales market and do not include sales from the components used in the manufacture of TEM.

The market is divided into the following segments based on geography:
• Americas
• APAC
• EMEA

Technavio's report, Global Transmission Electron Microscope Market 2017-2021, has been prepared based on an in-depth market analysis with inputs from industry experts. The report covers the market landscape and its growth prospects over the coming years. The report also includes a discussion of the key vendors operating in this market.

Key vendors
• JEOL
• Thermo Fisher Scientific
• Hitachi High-Technologies
• Delong America

Market driver
• Increasing focus on nanotechnology
• For a full, detailed list, view our report

Market challenge
• Complicated and time-consuming sample preparation process
• For a full, detailed list, view our report

Market trend
• Development of newer forms of TEMs
• For a full, detailed list, view our report

Key questions answered in this report
• What will the market size be in 2021 and what will the growth rate be?
• What are the key market trends?
• What is driving this market?
• What are the challenges to market growth?
• Who are the key vendors in this market space?
• What are the market opportunities and threats faced by the key vendors?
• What are the strengths and weaknesses of the key vendors?

You can request one free hour of our analyst’s time when you purchase this market report. Details are provided within the report.




PART 01: Executive summary
PART 02: Scope of the report
PART 03: Research Methodology
PART 04: Introduction
• Market outline
PART 05: Market landscape
• Market overview
• Market size and forecast
• Five forces analysis
PART 06: Market segmentation by application
• Global TEM market by application
• Material science
• Life science
• Nanotechnology
• Semiconductors
• Others
PART 07: Market segmentation by end-user
• Global TEM market by end-users
• Industries
• Academic institutions
• Others
PART 08: Geographical segmentation
• Global TEM market by geography
• APAC
• Americas
• EMEA
PART 09: Decision framework
PART 10: Drivers and challenges
• Market drivers
• Market challenges
PART 11: Market trends
PART 12: Vendor landscape
• Competitive scenario
PART 13: Key vendor analysis
PART 14: Appendix
• List of abbreviations

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