A turbomolecular pump is a type of vacuum pump, superficially similar to a turbopump, used to obtain and maintain high vacuum. These pumps work on the principle that gas molecules can be given momentum in a desired direction by repeated collision with a moving solid surface. In a turbomolecular pump, a rapidly spinning fan rotor ‘hits’ gas molecules from the inlet of the pump towards the exhaust in order to create or maintain a vacuum.
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This report provides detailed analysis of worldwide markets for Turbomolecular Pump from 2011-2015 and provides extensive market forecasts 2016-2021 by region/country and subsectors. It covers the key technological and market trends in the Turbomolecular Pump market and further lays out an analysis of the factors influencing the supply/demand for Turbomolecular Pump, and the opportunities/challenges faced by industry participants. It also acts as an essential tool to companies active across the value chain and to the new entrants by enabling them to capitalize the opportunities and develop business strategies.
GCCs report, Global Turbomolecular Pump Market Outlook 2016-2021, has been prepared based on the synthesis, analysis, and interpretation of information about the global Turbomolecular Pump market collected from specialized sources. The report covers key technological developments in the recent times and profiles leading players in the market and analyzes their key strategies. The competitive landscape section of the report provides a clear insight into the market share analysis of key industry players. The major players in the global Turbomolecular Pump market are Pfeiffer (Germany), Oerlikon (Germany), Shimadzu Corporation (Japan), Osaka Vacuum (Japan), Edwards Ltd (UK), Agilent (USA), ULVAC (USA), EBARA Technologies (USA), among others.
The report provides separate comprehensive analytics for the North America, Europe, Asia-Pacific, Middle East and Africa and Rest of World. In this sector, global competitive landscape and supply/demand pattern of Turbomolecular Pump industry has been provided.
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Table of Content:
Part 1. Exclusive Summary
Part 2. Methodology
2.1 Research Methodology
2.2 Geographic Scope
2.3 Years Considered
Part 3. Introduction
3.1 Definition
3.2 Supply Chain Structure
3.2.1 Raw Material Supply
3.2.2 Traders & Distributors
3.2.3 Key Customers
3.3 Manufacture
3.3.1 Manufacturing Process
3.3.2 Production Cost
Part 4. Market Landscape
4.1 Global Turbomolecular Pump Market Size (Volume) 2011-2016
4.1.1 Overview
4.1.2 Global Turbomolecular Pump Production
4.1.3 Top 10 Turbomolecular Pump Companies (Volume Share)
4.2 Global Turbomolecular Pump Market Size (Value) 2011-2016
4.2.1 Overview
4.2.2 Global Turbomolecular Pump Production Value
4.2.3 Top 10 Turbomolecular Pump Companies (Revenue Share)
Part 5. Segmentation by Products
5.1 Type 1
5.2 Type 2
5.3 Type 3
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Part 6. Segmentation by End-users
6.1 Customer Segment 1
6.2 Customer Segment 2
6.3 Customer Segment 3
6.4 Customer Segment 4
Part 7. Geographical Segmentation
7.1 North America Turbomolecular Pump Market
7.1.1 North America Market Overview
7.1.2 North America Price & Margin
7.1.3 North America Trade Balance
7.2 EMEA Turbomolecular Pump Market
7.2.1 EMEA Market Overview
7.2.2 EMEA Price & Margin
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