Global Microporous glass technology (TGV) Market Research Report 2024-Competitive Analysis, Status and Outlook by Type, Downstream Industry, and Geography, Forecast to 2030

Global Microporous glass technology (TGV) Market Research Report 2024-Competitive Analysis, Status and Outlook by Type, Downstream Industry, and Geography, Forecast to 2030


Micropore glass technology (TGV) is a technology for making vertical electrical connections on glass substrates. Microporous glass substrate is a new type of glass substrate that can make holes in thin glass without destroying the shape of the glass. TGVs are used in advanced packaging solutions such as glass interposers and wafer-level packaging of microelectromechanical systems (MEMS).

Market Overview:

The latest research study on the global Microporous glass technology (TGV) market finds that the global Microporous glass technology (TGV) market reached a value of USD 111.28 million in 2023. It’s expected that the market will achieve USD 533.33 million by 2029, exhibiting a CAGR of 29.85% during the forecast period.

The level of production control is complex

The production and manufacturing process of microporous glass technology (TGV) is complex and has many procedures. Small deviations in any link will lead to quality problems in the end product. In order to ensure that the products meet the processing accuracy requirements in each processing process, engaging in batch production of TGV wafers not only requires internationally advanced precision processing equipment, but also requires targeted integration, optimization and improvement of various types of equipment. Higher production equipment and The control level of the process flow is the prerequisite to ensure the orderly and smooth completion of the microporous glass technology (TGV) processing process and the stable product quality. In addition, TGV chip manufacturing companies mostly adopt an order-based customized production model, and customers have diversified needs. The orderly cooperation of each production line is a prerequisite for ensuring safe and orderly production, stable product quality and punctual delivery. Enterprises need It is continuously accumulated and formed in long-term production practice. It is difficult for new companies entering the industry to master this capability in a short period of time, thus forming a barrier to production control levels.

Region Overview:

In 2022, the share of the Microporous glass technology (TGV) market in North America stood at 44.14%.

Company Overview:

Corning has a diversified business scope and good collaboration capabilities to meet the evolving market needs and help customers capture more opportunities in the dynamic market. Today, Corning's products involve optical communications, mobile consumer electronics, display technology, automotive applications and life sciences. Corning's industry-leading products include damage-resistant cover glass for mobile devices; precision glass for advanced displays; fiber optics, wireless technologies and connector solutions for modern communications networks; and trusted solutions to enable drug development and delivery. products; and air purification technology for cars and trucks.

LPKF is a leading supplier dedicated to developing innovative laser solutions. At present, it has successfully developed special technologies and equipment for the electronics industry, semiconductor field, solar photovoltaic industry, medical industry, and automobile industry, and provided innovative solutions to manufacturers and service providers. As a sub-brand of LPKF, Vitrion launches LPKF LIDE laser-induced deep etching technology to achieve deep microstructure processing of thin glass.

Corning is one of the major players operating in the Microporous glass technology (TGV) market, holding a share of 25.80% in 2023.

Segmentation Overview:

By type, 8 inch wafer segment accounted for the largest share of market in 2022.

Application Overview:

The market's largest segment by application is the segment RF devices, with a market share of 35.80% in 2022.

Key Companies in the global Microporous glass technology (TGV) market covered in Chapter 3:

LPKF(Vitrion)
Corning
NSC
Samtec
Xiamen Sky Semiconductor Technology Co.,Ltd.
Sai MicroElectronics Inc.
Tecnisco
Chengdu Maike Technology Co., Ltd.
Plan Optik
Schott AG
Zhejiang Lante Optics Co.,Ltd.

In Chapter 4 and Chapter 14.2, on the basis of types, the Microporous glass technology (TGV) market from 2019 to 2030 is primarily split into:

6 inch wafer
8 inch wafer
12 inch wafer
other sizes

In Chapter 5 and Chapter 14.3, on the basis of Downstream Industry, the Microporous glass technology (TGV) market from 2019 to 2030 covers:

RF devices
Microelectromechanical systems (MEMS) packaging
Optoelectronic system integration
display panel
other

Geographically, the detailed analysis of consumption, revenue, market share and growth rate, historic and forecast (2019-2030) 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 Microporous glass technology (TGV) Market Segmented by Type
Chapter 5 Global Microporous glass technology (TGV) Market Segmented by Downstream Industry
Chapter 6 Microporous glass technology (TGV) Industry Chain Analysis
Chapter 7 The Development and Dynamics of Microporous glass technology (TGV) Market
Chapter 8 Global Microporous glass technology (TGV) 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 Microporous glass technology (TGV) Market Forecast by Geography, Type, and Downstream Industry 2024-2030
Chapter 15 Appendix

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