Global Ion Implanter Market 2017-2021

  • ID: 4143891
  • Report
  • Region: Global
  • 60 pages
  • TechNavio
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FEATURED COMPANIES

  • Applied Materials
  • Axcelis Technologies
  • Invetac
  • Nissin Ion Equipment
  • MORE
About Ion Implanter

Ion implantation is a major process carried out to introduce dopants in a semiconductor. Implanters bombard wafers with foreign atoms to modify material properties such as conductivity or crystal structure. The main part of an implanter system is the beam path, wherein the ions are generated, concentrated, accelerated, and passed at high speed to the wafer. The conductivity of semiconductor devices such as silicon, germanium, and III-VI compounds (e.g., gallium arsenate) is altered by doping them with n or p type dopants. Out of the two methods used for doping semiconductors, diffusion and ion implantation, the diffusion was the most preferred method before the 1970s. However, doping processes by ion implantation are being preferred for IC fabrication currently.

The analysts forecast the global ion implanter market to grow at a CAGR of 4.01% during the period 2017-2021.

Covered in this report
The report covers the present scenario and the growth prospects of the global ion implanter market for 2017-2021. To calculate the market size, the report considers the revenue generated from the sales of ion implanters.

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

The report, Global Oscilloscope 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
- Applied Materials
- Axcelis Technologies

Other prominent vendors
- Nissin Ion Equipment
- SEN (formerly Sumitomo Heavy Industries Ion Technology)
- Invetac

Market drivers
- Dependence of semiconductor industry on silicon substrates
- For a full, detailed list, view the full report

Market challenges
- Need for high initial capital investment
- For a full, detailed list, view the full report

Market trends
- Growth in IT sector and increasing use of ion implantation in industrial application
- For a full, detailed list, view the full 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?

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Note: Product cover images may vary from those shown
2 of 5

FEATURED COMPANIES

  • Applied Materials
  • Axcelis Technologies
  • Invetac
  • Nissin Ion Equipment
  • MORE
PART 01: Executive summary

PART 02: Scope of the report

PART 03: Research Methodology

PART 04: Introduction
  • Key market highlights
PART 05: Market landscape
  • Market overview
  • Market size and forecast
  • Five forces analysis
PART 06: Market segmentation by technology
  • High-current implanter
  • Medium-current implanter
  • High-energy implanter
PART 07: Geographical segmentation
  • APAC
  • Americas
  • EMEA
PART 08: Key leading countries

PART 09: Market drivers
  • Increasing demand for electronic devices
  • Dependence of semiconductor industry on silicon substrates
  • Increasing demand for ion implants for fabrication of plasmonic nanocomposites
  • Controlled growth of noble metal nanoparticles through ion-implantation
  • Growth in IT sector and increasing use of ion implantation in industrial application
PART 10: Impact of drivers

PART 11: Market challenges
  • Transition in transistor architecture
  • Need for high initial capital investment
  • High cost of characterization equipment
  • Consolidation in semiconductor industry
PART 12: Impact of drivers and challenges

PART 13: Market trends
  • Improvement in design structure of ion implanter
  • Development in plasma doping technology
  • Improvement in high-current dosimetry
  • Advances in transistor technology
PART 14: Vendor landscape
  • Competitive scenario
  • Other prominent vendors
PART 15: Key vendor analysis
  • Applied Materials
  • Axcelis Technologies
PART 16: Appendix
  • List of abbreviations
List of Exhibits
Exhibit 01: Advantages and disadvantages of ion implant
Exhibit 02: Global ion implanter market
Exhibit 03: Global ion implanter market 2016- 2021 ($ millions)
Exhibit 04: Axcelis Technologies' strategy for capital investment for implants
Exhibit 05: Five forces analysis
Exhibit 06: Global ion implanter market by technology 2016-2021 (%)
Exhibit 07: Global high-current implanter market 2016-2021 ($ millions)
Exhibit 08: Global medium-current implanter market 2016-2021 ($ millions)
Exhibit 09: Global high-energy implanter market 2016-2021 (millions)
Exhibit 10: Segmentation of global ion implanter market by geography 2016 and 2021
Exhibit 11: Ion implanter market in APAC 2016-2021 ($ millions)
Exhibit 12: Ion implanter market in Americas 2016-2021 ($ millions)
Exhibit 13: Ion implanter market in EMEA 2016- 2021 ($ millions)
Exhibit 14: Key leading countries
Exhibit 15: Impact of drivers
Exhibit 16: Impact of drivers and challenges
Exhibit 17: Intel’s tri-gate manufacturing roadmap
Exhibit 18: Comparison of 14-nm technology with traditional technology
Exhibit 19: Normalized cost of transistor on per unit basis (nm)
Note: Product cover images may vary from those shown
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FEATURED COMPANIES

  • Applied Materials
  • Axcelis Technologies
  • Invetac
  • Nissin Ion Equipment
  • MORE
New Report Released: – Global Ion Implanter Market 2017-2021

The author of the report recognizes the following companies as the key players in the global ion implanter market: Applied Materials and Axcelis Technologies

Other Prominent Vendors in the market are: Nissin Ion Equipment, SEN (formerly Sumitomo Heavy Industries Ion Technology), and Invetac

Commenting on the report, an analyst from the research team said: “Exceed 2000A, one of the earliest and traditional ion implanter, consisted of an ion source, analyzer magnet, acceleration tube, beam sweep magnet (BSM), collimator magnet (COL), and end station. Its end station had a single pattern type end station. Exceed 2000, the first ion implanter among the Exceed series, adopted this common configuration structure and had a common drawback of poor and operational reliability at the end station, despite having a dual platen structure, and embodied a fixed position implantation through wafer scanning. Vendors have been striving to improve the quality by changing the design structure. New designs such as Exceed 2000A achieved better productivity and effectiveness by using a single platen structure that allowed significant ameliorated operational reliability and maintainability.”

According to the report, the demand for electronic devices such as digital cameras, gaming consoles, notebooks, tablets, smartphones, network switches, and set top boxes will grow at a moderate rate during the forecast period, though the overall market demand was stagnated in 2016. This moderate demand will be stemming from the developing countries in APAC like India, Bangladesh, Thailand, Nepal, and others.

Further, the report states that earlier, transistors were developed in the planar format. With the introduction of FinFET in 2011, the planar FET was replaced for the devices, having a size of 22 nm. Also, all core logic transistors were converted from planar to FinFET architecture by the 16-nm node in 2014. A transistor acts as a digital switch, which regulates the current flow from the source and drain terminal, depending on the controlling voltage applied to the gates of the transistor. For a transistor to be effective as a switch, the ratio of the current flow when the transistor is on and when the transistor is off must be high. However, as the size of the transistors shrinks, this ratio of the current flow fell significantly in planar transistor devices, thereby making it desirable to introduce FinFET transistors. FinFETs have a design architecture different from planar transistors, such as the channel of source, and the drain current is rotated, allowing the gate of the transistor to be directly adjacent to three out of four sides of the channel.

The study was conducted using an objective combination of primary and secondary information including inputs from key participants in the industry. The report contains a comprehensive market and vendor landscape in addition to a SWOT analysis of the key vendors.
Note: Product cover images may vary from those shown
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  • Applied Materials
  • Axcelis Technologies
  • Nissin Ion Equipment
  • SEN (formerly Sumitomo Heavy Industries Ion Technology)
  • Invetac
Note: Product cover images may vary from those shown
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Note: Product cover images may vary from those shown
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