Summary
As the world continues to deal with COVID-19, economies are moving into recession, under multiple adverse factors, the GDP of European and American countries in the second quarter suffered a historical contraction. At an annualized rate, the US GDP fell by 32.9% month on month, while the overall GDP of the euro zone fell by 12.1%.
Moreover, the economic prospects of Europe and the United States in the third quarter under the epidemic situation are hardly optimistic. The resumption of work and production not only brought economic data back, but also triggered a rebound in the epidemic situation. At present, the United States is still the 'epicenter' of the global epidemic. The total number of confirmed cases has exceeded 4.8 million, and the epidemic situation in some European countries has also rebounded. Affected by this, more than 20 states in the United States have announced the suspension or withdrawal of part of the economic restart plan. Britain and Italy have also decided to extend the state of emergency. The rebound of the epidemic situation has posed considerable risks to the economic prospects of Europe and the United States.
In the second quarter of this year, US GDP shrank by 9.5% on a month on month basis, or 32.9% at an annual rate, the largest decline since the 1940s. Data show that the sharp decline in personal consumption is the main drag on the U.S. GDP growth in the second quarter.
Compared with the United States, Europe's economic contraction in the second quarter was smaller, but it was also the lowest on record, with Germany and France contracting more than 10%. According to the data released by the Federal Bureau of statistics, Germany's GDP fell by 10.1% in the second quarter after adjusting for prices, seasons and working days, the largest decline since the quarterly economic data were available in 1970.
Thanks to the effective control and policy support of the new epidemic, China's economy rebounded sharply in the second quarter. The growth rate of manufacturing industry, which accounted for about 28% of GDP, rebounded sharply to 4.4% from the negative value in the first quarter. Chinese original equipment manufacturers (OEMs) and suppliers are ramping up production. And there are increased investments in digital footprints in manufacturing. OEMs in other parts of the world are offering incentives to drive sales. XYZResearch published a report for global OPERATIONAL AMPLIFIER (OP AMP) market in this environment.
In terms of revenue, this research report indicated that the global OPERATIONAL AMPLIFIER (OP AMP) market was valued at USD XXX million in 2019, and it is expected to reach a value of USD XXX million by 2026, at a CAGR of XX % over the forecast period 2021-2026. Correspondingly, the forecast analysis of OPERATIONAL AMPLIFIER (OP AMP) industry comprises of China, USA, Japan, India, Korea and South America, with the production and revenue data in each of the sub-segments.
The Texas Instruments aims at producing XX OPERATIONAL AMPLIFIER (OP AMP) in 2020, with XX % production to take place in global market, Analog Devices Inc. accounts for a volume share of XX %.
Regional Segmentation (Value; Revenue, USD Million, 2015 - 2026) of OPERATIONAL AMPLIFIER (OP AMP) Market by XYZResearch Include
China
EU
USA
Japan
India
Southeast Asia
South America
Competitive Analysis; Who are the Major Players in OPERATIONAL AMPLIFIER (OP AMP) Market?
Texas Instruments
Analog Devices Inc.
Maxim Integrated
STM
Microchip Technology Inc.
Intersil Corporation
On Semiconductor
New Japan Radio
...
Major Type of OPERATIONAL AMPLIFIER (OP AMP) Covered in XYZResearch report:
General Purpose Amplifier
Low-power Amplifier
Low-voltage Amplifier
High-speed Amplifier
Low Noise Amplifier
High-precision Amplifier
Application Segments Covered in XYZResearch Market
Automatic Control System
Test and Measurement Instruments
Medical Instruments
Vehicle Electronics
Others
For any other requirements, please feel free to contact us and we will provide you customized report.
Table of Contents
Global OPERATIONAL AMPLIFIER (OP AMP) Market Analysis 2020, With Top Companies, Production, Revenue, Consumption, Price and Growth Rate
1 Market Scope
1.1 Product Details and Introduction
1.1.1 General Purpose Amplifier -Product Introduction and Major Manufacturers
1.1.2 Low-power Amplifier -Product Introduction and Major Manufacturers
1.1.3 Low-voltage Amplifier -Product Introduction and Major Manufacturers
1.1.4 High-speed Amplifier -Product Introduction and Major Manufacturers
1.1.5 Low Noise Amplifier -Product Introduction and Major Manufacturers
1.1.6 High-precision Amplifier -Product Introduction and Major Manufacturers
1.2 Market Snapshot
1.2.1 Major Companies Overview
1.2.2 Market Concentration
1.2.3 Six-Year Compound Annual Growth Rate (CAGR)
2 Global OPERATIONAL AMPLIFIER (OP AMP) Market Assessment, by Segmentation
2.1 Type Breakdown Estimates & Forecast, Sales Volume (2015-2026)
2.2 Type Breakdown Estimates & Forecast, Sales Value (2015-2026)
2.3 Application Breakdown Estimates & Forecast, by Application (2015-2026)
3 Regional Market Analysis
3.1 China OPERATIONAL AMPLIFIER (OP AMP) Market
3.1.1 Top Companies leading OPERATIONAL AMPLIFIER (OP AMP) Development in China (2015-2020)
3.1.2 Sales Value of Major Company in China Market (2015-2020)
3.1.3 China OPERATIONAL AMPLIFIER (OP AMP) Price (USD/Unit), by Type (2019-2020)
3.1.4 Sales in China Market, by Type (2015-2026)
3.2 EU OPERATIONAL AMPLIFIER (OP AMP) Market
3.2.1 Top Companies leading OPERATIONAL AMPLIFIER (OP AMP) Development in EU (2015-2020)
3.2.2 Sales Value of Major Company in EU Market (2015-2020)
3.2.3 EU OPERATIONAL AMPLIFIER (OP AMP) Price (USD/Unit), by Type (2019-2020)
3.2.4 Sales in EU Market, by Type (2015-2026)
3.3 USA OPERATIONAL AMPLIFIER (OP AMP) Market
3.3.1 Top Companies leading OPERATIONAL AMPLIFIER (OP AMP) Development in USA (2015-2020)
3.3.2 Sales Value of Major Company in USA Market (2015-2020)
3.3.3 USA OPERATIONAL AMPLIFIER (OP AMP) Price (USD/Unit), by Type (2019-2020)
3.3.4 Sales in USA Market, by Type (2015-2026)
3.4 Japan OPERATIONAL AMPLIFIER (OP AMP) Market
3.4.1 Top Companies leading OPERATIONAL AMPLIFIER (OP AMP) Development in Japan (2015-2020)
3.4.2 Sales Value of Major Company in Japan Market (2015-2020)
3.4.3 Japan OPERATIONAL AMPLIFIER (OP AMP) Price (USD/Unit), by Type (2019-2020)
3.4.4 Sales in Japan Market, by Type (2015-2026)
3.5 India OPERATIONAL AMPLIFIER (OP AMP) Market
3.5.1 Top Companies leading OPERATIONAL AMPLIFIER (OP AMP) Development in India (2015-2020)
3.5.2 Sales Value of Major Company in India Market (2015-2020)
3.5.3 India OPERATIONAL AMPLIFIER (OP AMP) Price (USD/Unit), by Type (2019-2020)
3.5.4 Sales in India Market, by Type (2015-2026)
3.6 Southeast Asia OPERATIONAL AMPLIFIER (OP AMP) Market
3.6.1 Top Companies leading OPERATIONAL AMPLIFIER (OP AMP) Development in Southeast Asia (2015-2020)
3.6.2 Sales Value of Major Company in Southeast Asia Market (2015-2020)
3.6.3 Southeast Asia OPERATIONAL AMPLIFIER (OP AMP) Price (USD/Unit), by Type (2019-2020)
3.6.4 Sales in Southeast Asia Market, by Type (2015-2026)
3.7 South America OPERATIONAL AMPLIFIER (OP AMP) Market
3.7.1 Top Companies leading OPERATIONAL AMPLIFIER (OP AMP) Development in South America (2015-2020)
3.7.2 Sales Value of Major Company in South America Market (2015-2020)
3.7.3 South America OPERATIONAL AMPLIFIER (OP AMP) Price (USD/Unit), by Type (2019-2020)
3.7.4 Sales in South America Market, by Type (2015-2026)
4 Value Chain (Impact of COVID-19)
4.1 OPERATIONAL AMPLIFIER (OP AMP) Value Chain Analysis
4.1.1 Upstream
4.1.2 Downstream
4.2 COVID-19 Impact on OPERATIONAL AMPLIFIER (OP AMP) Industry
4.2.1 Industrial Policy Issued Under the Epidemic Situation
4.3 Cost-Under the Epidemic Situation
4.3.1 Cost of Raw Material
4.4 Channel Analysis
4.4.1 Distribution Channel-Under the Epidemic Situation
4.4.2 Distributors
5 Regional Market Forecast (2021-2026)
5.1 Global OPERATIONAL AMPLIFIER (OP AMP) Sales and Growth Rate (2021-2026)
5.2 Global OPERATIONAL AMPLIFIER (OP AMP) Sales Value and Growth Rate (2021-2026)
6 OPERATIONAL AMPLIFIER (OP AMP) Competitive Analysis
6.1 Texas Instruments
6.1.1 Texas Instruments Company Profiles
6.1.2 Texas Instruments Product Introduction
6.1.3 Texas Instruments OPERATIONAL AMPLIFIER (OP AMP) Production, Revenue (2015-2020)
6.1.4 SWOT Analysis
6.2 Analog Devices Inc.
6.2.1 Analog Devices Inc. Company Profiles
6.2.2 Analog Devices Inc. Product Introduction
6.2.3 Analog Devices Inc. OPERATIONAL AMPLIFIER (OP AMP) Production, Revenue (2015-2020)
6.2.4 SWOT Analysis
6.3 Maxim Integrated
6.3.1 Maxim Integrated Company Profiles
6.3.2 Maxim Integrated Product Introduction
6.3.3 Maxim Integrated OPERATIONAL AMPLIFIER (OP AMP) Production, Revenue (2015-2020)
6.3.4 SWOT Analysis
6.4 STM
6.4.1 STM Company Profiles
6.4.2 STM Product Introduction
6.4.3 STM OPERATIONAL AMPLIFIER (OP AMP) Production, Revenue (2015-2020)
6.4.4 SWOT Analysis
6.5 Microchip Technology Inc.
6.5.1 Microchip Technology Inc. Company Profiles
6.5.2 Microchip Technology Inc. Product Introduction
6.5.3 Microchip Technology Inc. OPERATIONAL AMPLIFIER (OP AMP) Production, Revenue (2015-2020)
6.5.4 SWOT Analysis
6.6 Intersil Corporation
6.6.1 Intersil Corporation Company Profiles
6.6.2 Intersil Corporation Product Introduction
6.6.3 Intersil Corporation OPERATIONAL AMPLIFIER (OP AMP) Production, Revenue (2015-2020)
6.6.4 SWOT Analysis
6.7 On Semiconductor
6.7.1 On Semiconductor Company Profiles
6.7.2 On Semiconductor Product Introduction
6.7.3 On Semiconductor OPERATIONAL AMPLIFIER (OP AMP) Production, Revenue (2015-2020)
6.7.4 SWOT Analysis
6.8 New Japan Radio
6.8.1 New Japan Radio Company Profiles
6.8.2 New Japan Radio Product Introduction
6.8.3 New Japan Radio OPERATIONAL AMPLIFIER (OP AMP) Production, Revenue (2015-2020)
6.8.4 SWOT Analysis
7 Conclusion
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