The research firm Contrive Datum Insights has just recently added to its database a report with the heading global Semiconductor Assembly Equipments Market .Both primary and secondary research methodologies have been utilised in order to conduct an analysis of the worldwide Semiconductor Assembly Equipments Market . In order to provide a comprehensive comprehension of the topic at hand, it has been summed up using appropriate and accurate market insights. According to Contrive Datum Insights, this worldwide comprehensive report is broken up into several categories in order to present the data in a way that is understandable, succinct, and presented in a professional manner. To ensure the quality of various semiconductor devices, semiconductor assembly is a difficult procedure. Wafer processing, semiconductor component assembly production, and overall device testing all employ semiconductor assembly equipment. The semiconductor assembly equipment industry has expanded tremendously due to rising consumer demand for electronics and gadget services. An appropriate medium for current regulation is a semiconductor, which is a crystalline or amorphous substance that can conduct electricity under specific circumstances. Semiconductors are substances with free electrons in their structure, allowing electricity to move between atoms more easily. Silicon is the most widely used substance for semiconductors. Equipment for wafer processing is used in the initial phases of the semiconductor manufacturing process, and equipment for testing and assembly is used in the latter stages.
Semiconductor Assembly Equipments Market Competitive Research And Precise Outlook 2023 To 2030
1. Sample on Global Semiconductor Assembly Equipments Market -
Global Industry Analysis, Size, Share, Growth Opportunities, Future
Trends, Covid-19 Impact, SWOT Analysis, Competition and Forecasts
2022 to 2030
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Global Semiconductor Assembly Equipments Market, 2023-2030
Research Methodology
Methodology/Research Approach
Our research methodology implements a mix of primary as well as secondary research. Our
projects are initiated with secondary research, where we refer to a variety of sources including
trade databases; government published documents, investor presentations, company annual
reports, white papers, and paid databases.
Research Programs/Design
Requirement
collection
Feasibility check of
client requirements
Draft of
deliverables
(iterative step)
Approval from
client
Projectinitiation
Secondary
research
Data collection Primary research
Data validation Data analysis
Cross verification
with panel of
experts
Projectdelivery to
the client
Post-delivery
support
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Global Semiconductor Assembly Equipments Market, 2023-2030
Market Size Estimation
Post the initial data mining stage, we gather our findings and analyse them, Wearable Patch/ Data
Recordering out relevant insights. These are evaluated across teams and by our in-house
Medical. Along with data mining, we also initiate the primary research phase in which we interact
with companies operating within the market space.
To evaluate the wholeness of the market, we interact (via email or telephone) with players who
are responsible in adding value to the final product. Additionally, we interact with related industries
to understand the external factors that can drive/hamper a market. We also make it a point to
evaluate various economic parameters, which typically, have an impact on the purchasing choices
of individuals as well as companies.
Post these stages, data are cross-verified with the companies that operate in a market space. It
is important for us to study these companies in detail, to understand their existing performance
and future strategies which will define the market in the coming years.
All this data is collected and evaluated by our analysts. Post the preparation of the report and
data analysis, the findings are presented to our in-house experts who then eliminate
discrepancies (if any).
The key players in the industry and markets have been identified through extensive
secondary research.
The industry’s supply chain and market size, in terms of value, have been determined
through primary and secondary research processes.
All percentage shares, splits, and breakdowns have been determined using secondary
sources and verified through primary sources.
Data Source
Secondary Sources
In the secondary research process, various secondary sources, such as D&B Hoovers,
Bloomberg Business Week, and Factiva, have been referred to, for identifying and collecting
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Global Semiconductor Assembly Equipments Market, 2023-2030
information for this study. Secondary sources included annual reports, press releases, and
investor presentations of companies; whitepapers, certified publications, and articles by
recognized authors; gold standard and silver standard websites; regulatory bodies; trade
directories; and databases.
List of secondary sources include but are not limited to:
Academic Journals
Census.gov
Bloomberg
Company Annual Report
Hoovers
Preliminary data mining
Raw market data is obtained and collated on a broad front. Data is continuously Wearable Patch/
Data Reordered to ensure that only validated and authenticated sources are considered. In
addition, data is also mined from a host of reports in our repository, as well as a number of reputed
paid databases. For comprehensive understanding of the market, it is essential to understand the
complete value chain and in order to facilitate this; we collect data from raw material suppliers,
distributors as well as buyers.
Technical issues and trends are obtained from surveys, technical symposia and trade journals.
Technical data is also gathered from intellectual property perspective, focusing on white space
and freedom of movement. Operation Industry Vertical dynamics with respect to drivers,
restraints, pricing trends is also gathered. As a result, the material developed contains a wide
range of original data that is then further cross-validated and authenticated with published
sources.
Primary Sources
This is the final step in estimating and forecasting for our reports. Exhaustive primary interviews
are conducted, on face to face as well as over the phone to validate our findings and assumptions
used to obtain them. Interviewees are approached from leading companies across the value chain
including suppliers, Component providers, domain experts and buyers so as to ensure a holistic
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and unbiased picture of the market. These interviews are conducted across the globe, with
language barriers overcome with the aid of local staff and interpreters. Primary interviews not only
help in data validation, but also provide critical insights into the market, current business scenario
and future expectations and enhance the quality of our reports. All our estimates and forecast are
verified through exhaustive primary research with Key Operation Industry Vertical Participants
(KIPs) which typically include:
Market leading companies
Raw material suppliers
Operating System distributors
Buyers
The key objectives of primary research are as follows:
To validate our data in terms of accuracy and acceptability
To gain an insight in to the current market and future expectations
Some of the KIPs are mentioned as below:
Medtronic
Olympus
Otsuka Holdings Co., Ltd.
Etcetera
Others
Statistical model
Our market estimates and forecasts are derived through simulation models. A unique model is
created customized for each study. Gathered information for market dynamics, Component
landscape, Sensor Type development and pricing trends is fed into the model and analyzed
simultaneously. These factors are studied on a comparative basis, and their impact over the
forecast period is quantified with the help of correlation, regression and time series analysis.
Market forecasting is performed via a combination of economic tools, technological analysis, and
industry experience and domain expertise.
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Global Semiconductor Assembly Equipments Market, 2023-2030
Econometric models are generally used for short-term forecasting, while technological market
models are used for long-term forecasting. These are based on an amalgamation of Component
landscape, regulatory frameworks, economic outlook and business principles. A bottom-up
approach to market estimation is preferred, with key regional markets analyzed as separate
entities and integration of data to obtain global estimates. This is critical for a deep understanding
of the industry as well as ensuring minimal errors. Some of the parameters considered for
forecasting include:
Market drivers and restrains, along with their current and expected impact
Raw material scenario and supply v/s price trends
Regulatory scenario and expected developments
Current capacity and expected capacity additions up to 2026
We assign weights to these parameters and quantify their market impact using weighted average
analysis, to derive an expected market growth rate.
Data Triangulation
Contrive Datum Insights also leverages three Industry Verticals of data triangulation approaches
as follows:
Data Triangulation Techniques
Source: Secondary Literature, Expert Interviews, and Contrive Datum Insights Analysis 2023
Data Source Triangulation
• Extracting data and validation
from multiple type of
secondary and primary
sources
Methodology Triangulation
• Combining various
methodologies to validate
data inputs
Theory Triangulation
• Applying different theories to
check credibility of data sets
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Contrive Datum Insights data modeling tool is an in-house developed tool, which is based on the
fundamental Top Down and Bottom Up approach.
Bottom Up Approach
Source: Secondary Literature, Expert Interviews, and Contrive Datum Insights Analysis 2023
After arriving at the overall market size using the market size estimation processes as explained
above, the market was split into several segments and sub segments. To complete the overall
market engineering process and arrive at the exact statistics of each market segment and sub
segment, the data triangulation and market breakdown procedures were employed, wherever
applicable. The data was triangulated by studying several factors and trends from both the
demand and supply sides.
Global
Market
Value
Add up all Country Market Sizes
to Derive Regional Market Size
Market Size for a Country = Add up of Total
Company Revenues
Primary: Demand and Supply Side Experts
Secondary: Annual Reports, Presentations,
Press Release, Journals, Paid Databases,
and A2Z Market Research database
Primary: Demand & Supply Side Experts
Secondary: Annual Reports, Presentations,
Press Releases, Journals, Paid Databases,
and A2Z Market Research database
Bottom-upApproach (Segmental Analysis) Global Market
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Global Semiconductor Assembly Equipments Market, 2023-2030
Top Down Approach
Source: Secondary Literature, Expert Interviews, and Contrive Datum Insights Analysis 2023
Report Objectives
To define, describe, and forecast the {Keyword} Market by segments, and region
To provide detailed information about the major factors (drivers, restraints, opportunities,
and challenges) influencing the growth of the market
To analyze the sub-segments with respect to individual growth trends, prospects, and
contributions to the total market
To analyze opportunities in the market for stakeholders and provide the competitive
landscape of the market
To forecast the revenues of the market segments with respect to the major regions, such
as North America, Europe, Asia Pacific (APAC), Middle East & Africa and South America.
To profile the key players and comprehensively analyze their recent developments and
positioning in {Keyword} market.
Global Market ($ Million)
Geographical Split
Percent Split for Type and
Application Segments for
Market
Country Split
Global Market Size Through Primaries(Demand and
Supply Side Experts)
Secondary: Annual Reports, Presentations, Press
Release, Journals, Paid Databases, and A2Z Market
Research
Primary: Demand and Supply Side Experts
Secondary: Annual Reports, Presentations, Press
Release, Journals, Paid Databases, and A2Z Market
Research database
Primary: Demand &and Supply Side Experts
Primary: Demand and Supply Side Experts
Secondary: Company Websites, Press Releases, and
News Articles
Top-Down Approach (SegmentalAnalysis) Global Market
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To analyze competitive developments, such as mergers and acquisitions, new product
developments, and Research and Development (R&D) activities, in the market
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Global Semiconductor Assembly Equipments Market, 2023-2030
Market Overview
Market Synopsis
Semiconductor assembly is a demanding process to ensure the quality of various
semiconductor devices. Semiconductor assembly equipment is used for semiconductor
component assembly manufacturing, overall device testing, and wafer processing. Growing
demand for electronics and gadget services has significantly aided the growth of the
semiconductor assembly equipment market.
A semiconductor is a crystalline or amorphous material capable of conducting electricity under
certain conditions, making it an ideal medium for current control. Semiconductors are materials
that have free electrons in their structure, allowing electricity to flow more freely between atoms.
The most common semiconductor material is silicon. Wafer processing equipment is used in the
early stages of the semiconductor manufacturing process, and test and assembly equipment is
used in the later stages.
Semiconductor Assembly Equipments market size, estimates and forecasts are provided in
terms of sales volume (K units) and revenue (million USD), with historical and forecast data for
the period 2017 to 2030, with 2022 being considered as the base year. This report segments
the global Semiconductor Assembly Equipments market in detail. Regional market sizes related
to products by type, by application, and by player are also delivered. In estimating the size of
the market, we took into account the impact of COVID-19 and the Russian-Ukraine war.
Request Sample Copy of Report “Semiconductor Assembly Equipments Market - Global Industry
Analysis, Size, Share, Growth Opportunities, Future Trends, Covid-19 Impact, SWOT Analysis,
Competition and Forecasts 2022 to 2030”, published by Contrive Datum Insights.
Market Dynamics
5G technology has been pushing the boundaries of wireless communications, enabling use
cases that rely on ultra-fast speeds, low latency, and high reliability. The necessity of higher
data rates, better coverage, greater spectral efficiency demands 5G network infrastructure
development. According to the Global System for Mobile Communications Association (GSMA),
the number of 5G connections in North America is expected to reach 272 million by 2025. 5G-
enabled smartphones play a crucial role in raising the demand for advanced semiconductors.
According to GSMA, the 5G smartphone adoption would witness an increase from 82% in 2021
to 85% by 2025 in North America. In this, the US 5G smartphone market will reach 118.1 million
units shipped in 2022, up by 27.3% from the 92.8 million units shipped in 2021.
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A cleanroom and clean equipment is essential for the fabrication of semiconductors. Tiny dust
particles can hinder the overall semiconductor manufacturing setup. As a result, the owner
plant owner had to face a substantial financial loss. The reduced size and increased density of
semiconductor chips have resulted in the complexity of wafers, which decreases lithography
wavelength. Moreover, the reduction in node size makes photomasks and wafers more
complex, resulting in the need for new semiconductor manufacturing equipment. All these
factors inhibit the growth of the semiconductor manufacturing equipment industry.
Semiconductors are critical components that power all kinds of electronics. Their production
involves a complex network of firms that design the chips, companies that manufacture them
as well as those that supply the required technologies, materials, and machinery. As the
worldwide semiconductor crisis continues to disrupt supply chains and create widespread
uncertainty in the automotive and consumer electronics sectors, some manufacturers have
announced their expansion plans.
The semiconductor manufacturing challenges persist after the completion of semiconductor
facilities. One such challenge is the lack of a skilled workforce. The production of semiconductor
chips necessitates specialized expertise; it requires professionals with the knowledge and skills
to transform raw materials into finished goods utilizing specialized equipment, such as CNC
machines. The global talent gap in the semiconductor industry is a widespread concern, as
major semiconductor hubs are facing shortages of qualified personnel in varying degrees.
According to the Workforce Development Survey, among 95% of the overall graduates, hiring
engineering professionals for critical fields in the semiconductor industry proved to be highly
challenging.
Regional Outlook:
Asia Pacific holds a significant share and growth of the semiconductor assembly equipment
market at a relatively high CAGR during the forecast period. Concentration of IC manufacturers
in the region is expected to drive demand for semiconductor assembly equipment in Asia
Pacific. ICs are widely used in a variety of industries including consumer electronics, industrial,
telecommunications, data centers, and automotive. For example, ICs are utilized for sensing
and processing applications in high-density storage devices such as solid state drives (SSDs) and
vehicles. The semiconductor industry in Asia is expected to witness growth during the forecast
period, owing to the increasing number of chip manufacturing facilities worldwide.
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Market Scope
On the basis of By Type, the market has been segmented as follows:
Inspection & dicing equipment
Die-attach equipment
Wire bonding equipment
Plating equipment
On the basis of By Supply Chain Process, the market has been segmented as follows:
IDM
OSAT
Foundry
On the basis of By Application, the market has been segmented as follows:
Consumer electronics
Healthcare
Automotive
IT & telecommunication
Others
On the basis of Companies
AlsilMaterial, Applied Materials Inc., ASML Holdings N.V., Intel Corporation, Micron Technology
Inc., Qualcomm Technologies, Inc., Samsung Group, Screen Holdings Co., Ltd., Teradyne Inc.,
Tokyo Electron Limited
On the basis of Geography
NORTH AMERICA
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EUROPE
ASIA PACIFIC
MIDDLE EAST AFRICA
SOUTH AMERICA
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