Global Electron Multiplier Market Research Report 2023-Competitive Analysis, Status and Outlook by Type, Downstream Industry, and Geography, Forecast to 2029

Global Electron Multiplier Market Research Report 2023-Competitive Analysis, Status and Outlook by Type, Downstream Industry, and Geography, Forecast to 2029

An electron multiplier is a vacuum-tube structure that multiplies incident charges. In a process called secondary emission, a single electron can, when bombarded on secondary-emissive material, induce emission of roughly 1 to 3 electrons. If an electric potential is applied between this metal plate and yet another, the emitted electrons will accelerate to the next metal plate and induce secondary emission of still more electrons. This can be repeated a number of times, resulting in a large shower of electrons all collected by a metal anode, all having been triggered by just one.

Market Overview:

The latest research study on the global Electron Multiplier market finds that the global Electron Multiplier market reached a value of USD 73.14 million in 2022. It’s expected that the market will achieve USD 111.06 million by 2028, exhibiting a CAGR of 7.21% during the forecast period.

Tight supply of raw materials

Affected by COVID-19, logistics will be suspended, and the supply of raw materials for Electron Multiplier will be tight. Production was stagnant, the company's inventory increased, and the production of related enterprises in the severely affected areas was greatly affected. The short-term epidemic has less impact on the supply of raw materials for enterprises, mainly consuming stock materials, and the long-term epidemic will cause incalculable losses. If the epidemic develops further and logistics is always unsatisfactory, small and medium-sized Electron Multiplier enterprises are likely to be shut down due to insufficient raw material supply, and even large enterprises will face the same problem.

Long-term Impact

In the long run, in the post-epidemic era, countries will pay more attention to the health of the masses and the health of the human habitat. As people pay more and more attention to environmental protection, food safety and other issues, in the future, the market demand for mass spectrometers will become more and more urgent. The mass spectrometer has the essential characteristics of directly measuring substances, as well as the characteristics of high resolution, high sensitivity, large throughput and high accuracy. Its application fields are very wide, involving almost all of high-end medical equipment, environmental testing, biomedicine, food safety, etc. The field of analysis and testing is a ten billion of industries and can promote trillions of industries. Therefore, in the post-epidemic era, with the enhancement of people's health awareness, the market demand for mass spectrometers and related Electron Multiplier will steadily increase.

High performance and large downstream applications

The main function of electron multiplier is to amplify weak signals, it can be used to detect electrons, ions, alpha, beta, X-ray, vacuum ultraviolet, sub-stable molecules, etc. Its advantages are small size, simple structure, high gain, low noise, fast response and low power consumption. Electron multiplier tubes are widely used in various mass spectrometers to detect ions after they have been ionized and passed through the analyzer. Usually electron multiplier tubes and Faraday cups are included in the mass spectrometer. Faraday cups are used when the signal is strong and electron multiplier tubes are used when the signal is weak. Electron multiplier tubes are also used in electron microscopy, surface analysis, X-ray photoelectron spectroscopy and many other applications where trace ions or electrons need to be detected. For example, in the Residual gas analyzer application, RGAs may be found in high vacuum applications such as research chambers, surface science setups, accelerators, scanning microscopes, etc. RGAs are used in most cases to monitor the quality of the vacuum and easily detect minute traces of impurities in the low-pressure gas environment.

Technology iteration risk

The process technology and production management level of an enterprise directly affects product quality and production efficiency, and directly determines the production capacity of the enterprise and its cost advantage in market competition.
If the company fails to accurately grasp the industry technology development trend, major R&D projects fail to make breakthroughs as scheduled, or a large number of technical personnel leave, core technology leaks, and various urgently needed talents cannot be introduced in time, the company may gradually lose its technological advantage. Thereby affecting the company's core competitiveness.

Region Overview:

In 2022, the share of the Electron Multiplier market in North America stood at 34.89%.

Company Overview

Adaptas is one of the major players operating in the Electron Multiplier market, holding a share of 54.79% in 2022.

Adaptas

Founded in 1983 as Detector Technology, Inc., DeTech developed core technology for manufacturing continuous dynode electron multipliers for the mass spectrometry market. It expanded its business in 1988, adding a Glass Division to include specialty glass extrusions and glass-coated wire for the fiber optic community. In 1996, DeTech split its two divisions into separate companies to better serve its customer base and fuel further growth. DeTech maintained its focus on the multiplier product line and the Glass Division was renamed Pegasus Glassworks. Based in Palmer, Massachusetts, USA, Adaptas has facilities in the U.S. and Australia. In addition to its contract manufacturing services, the company sells proprietary products under the DeTech, Scientific Instrument Services, and ETP Ion Direct brand names.

Hamamatsu

Hamamatsu Corporation manufactures electron tubes. The Company offers medical treatment, chemical analysis, measurement, information & communications, and office automation services.

Segmentation Overview:

By type, Vacuum electron multiplier segment accounted for the largest share of market in 2022.

Application Overview:

The market's largest segment by application is the segment Matrix assisted laser analysis, with a market share of 38.98% in 2022.

Key Companies in the global Electron Multiplier market covered in Chapter 3:

SHIMADZU
Detector Technology Inc.
Adaptas
Agilent
PHOTONIS
RESTEK
BCP
Hamamatsu
SGE

In Chapter 4 and Chapter 14.2, on the basis of types, the Electron Multiplier market from 2018 to 2029 is primarily split into:

Vacuum electron multiplier
Gas electron multiplier

In Chapter 5 and Chapter 14.3, on the basis of Downstream Industry, the Electron Multiplier market from 2018 to 2029 covers:

Matrix assisted laser analysis
Lonization time of flight mass spectrometer
Residual gas analyzer
GC or LC MS
Electron spectrometer
Scanning electron microscope
Others

Geographically, the detailed analysis of consumption, revenue, market share and growth rate, historic and forecast (2018-2029) of the following regions are covered in Chapter 8 to Chapter 14:

North America (United States, Canada)
Europe (Germany, UK, France, Italy, Spain, Russia, Netherlands, Turkey, Switzerland, Sweden)
Asia Pacific (China, Japan, South Korea, Australia, India, Indonesia, Philippines, Malaysia)
Latin America (Brazil, Mexico, Argentina)
Middle East & Africa (Saudi Arabia, UAE, Egypt, South Africa)


Chapter 1 Market Definition and Statistical Scope
Chapter 2 Research Findings and Conclusion
Chapter 3 Key Companies’ Profile
Chapter 4 Global Electron Multiplier Market Segmented by Type
Chapter 5 Global Electron Multiplier Market Segmented by Downstream Industry
Chapter 6 Electron Multiplier Industry Chain Analysis
Chapter 7 The Development and Dynamics of Electron Multiplier Market
Chapter 8 Global Electron Multiplier Market Segmented by Geography
Chapter 9 North America
Chapter 10 Europe
Chapter 11 Asia Pacific
Chapter 12 Latin America
Chapter 13 Middle East & Africa
Chapter 14 Global Electron Multiplier Market Forecast by Geography, Type, and Downstream Industry 2023-2029
Chapter 15 Appendix

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