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市場調查報告書
商品編碼
1383421
2030 年類比示波器市場預測:按類型、應用和地區分類的全球分析Analogue Oscilloscope Market Forecasts to 2030 - Global Analysis By Type, Application and By Geography |
根據Stratistics MRC預測,2023年全球類比示波器市場規模將達615億美元,預計2030年將達到1,155億美元,預測期內年複合成長率為9.4%。
示波器是一種用於檢測和監控電子設備發送和接收的電壓和電流的檢查設備。它的工作原理是捕獲電訊號,放大它們,並將它們以圖表的形式顯示在螢幕上。橫軸表示時間,縱軸表示電壓。這使您可以檢查訊號形狀、頻率和振幅等特徵。它是電子、通訊、汽車、航太等各行業的工程師、技術人員和研究人員的必備工具。
模擬示波器已廣泛使用多年,許多工程師和技術人員熟悉它們的工作原理以及如何解釋其模擬顯示。由於類比示波器已經存在很長時間,因此已經獲得了很大的市場佔有率。類比示波器已成為經驗豐富的工程師和技術人員在整個職業生涯中的常用工具。類比示波器掌握類比檢測儀器的使用,包括訊號分析、波形解釋和電路故障排除。我喜歡使用類比示波器,因為它們提供了豐富的知識並且易於使用。這支撐了市場需求。
與數位示波器相比,類比示波器的功能較少。類比示波器可以進行的基本檢測是電壓和時間檢測。然而,它們不具備數位示波器的先進檢測功能。類比示波器沒有內建波形記憶體。使用者無法儲存或呼叫波形以供以後分析或比較。對於需要進階檢測和分析技能的使用者來說,這種限制可能是一個重大障礙。
由於技術進步,模擬示波器的性能和容量已顯著提高。先進的觸發選項、自動檢測、數位儲存功能和方便用戶使用的用戶介面是現代類比示波器的標誌。此外,還提供內建任意波形產生器和頻譜分析儀的版本。這些因素正在推動市場擴張。
科技日新月異,各產業的訊號越來越數位化。數位示波器非常適合直接處理這些數位訊號,因為它們可以更輕鬆地收集和解釋數位資料。另一方面,類比示波器只能分析類比訊號,因此需要進行訊號轉換才能分析數位訊號。類比示波器市場受到數位訊號趨勢的威脅。
COVID-19大流行示波器市場帶來了挑戰和機會。疫情早期階段的全球供應鏈中斷影響了類比示波器的製造和分銷。由於製造工廠關閉和產能減少,產品供應延遲。疫情也減少了企業資本支出和研發支出,從而減少了對模擬示波器等測試和測量工具的需求。此次疫情增加了醫療保健、通訊和遠距工作解決方案等領域對示波器的需求,凸顯了電子和通訊基礎設施之間的關鍵連結。
500MHZ 段預計將佔據最大佔有率。 500MHz的頻率相當於5億赫茲。最受歡迎的示波器頻寬是 500MHz,它為標準實驗室應用提供高效能多通道功能。類比示波器最常見的頻寬是 0 MHz,它們用於各種行業,包括通訊和消費性電子產品。 500MHz頻寬大約在 20 年前首次推出,至今仍廣泛用於日常檢測任務。
預計家用電子電器領域在預測期內將出現良好的成長。對類比示波器的需求主要由家用電子電器產業推動。家用電子電器製造商在產品開發和品管的各個階段都使用示波器。此外,類比示波器也用於製造和品質保證程序,以檢查電子零件和子系統的性能和操作。由於家用電子電器日益複雜和小型化,模擬示波器提供了對訊號行為的有用洞察,並幫助檢測和解決問題。
亞太地區在預測期內獲得了最大的佔有率,因為該地區擁有蓬勃發展的技術和電子產業,並且是示波器製造商和供應商的重要市場。學術機構、大型科技公司以及對示波器等電氣測量和測試工具的高需求促成了這個巨大的產業。由於各種應用對類比示波器的需求強勁,該地區的市場潛力仍然廣闊。許多國內外示波器製造商和供應商都在北美開展業務。
由於歐洲由許多工業化和技術發展水平不同的國家組成,預計在預測期內將實現盈利成長。市場核心為德國、英國、法國、義大利等西歐國家。許多頂尖大學、研究機構、汽車和科技公司都位於歐洲。這些組織和部門始終需要示波器用於研發、品管和教育目的。
According to Stratistics MRC, the Global Analogue Oscilloscope Market is accounted for $61.5 billion in 2023 and is expected to reach $115.5 billion by 2030 growing at a CAGR of 9.4% during the forecast period. An oscilloscope is a kind of testing device which is utilized for measuring and monitoring the voltage or current sent or received from an electronic device. Electrical signals are captured, amplified, and then displayed on the screen as a graph to make it function. The horizontal axis represents time, and the vertical axis illustrates voltage. This enables users to study the signals' form, frequency, amplitude, and other properties. It is an essential tool for engineers, technicians, and researchers working in various industries such as electronics, telecommunications, automotive, and aerospace.
Analog oscilloscopes have been used extensively for many years, and many engineers and technicians are familiar with how they work and how to interpret their analog displays. Since they have been in use for so long, analog oscilloscopes have developed a significant market share. Analog oscilloscopes have been a common tool for seasoned engineers and technicians throughout their careers. Professionals have mastered the use of analog instruments for signal analysis, waveform interpretation, and circuit troubleshooting. They favour using analog oscilloscopes because of their extensive knowledge and comfort with them. This factor enables the market demand.
Analog oscilloscopes are less functional than digital oscilloscopes. Measurements of voltage and time are among the fundamental measurements that analog oscilloscopes can do. However, they lack the advanced measurement features available in digital oscilloscopes. Waveform-storing memory is not integrated into analog oscilloscopes. Users cannot save or recall the waveform for later analysis or comparison; they can only view it when it is presented on the screen. For users who demand advanced measurement and analytical skills, this constraint may be a serious hindrance.
The performance and capacity of analog oscilloscopes have substantially improved because of technological breakthroughs. Advanced triggering options, automatic measurements, digital storage capabilities, and user-friendly user interfaces are now features of modern analog oscilloscopes. Additionally, certain versions are provided with integrated arbitrary waveform generators and spectrum analyzers. These factors propel the market expansion.
Technology is advancing quickly, and signals across a range of industries are becoming increasingly digital in character. Since they can more easily acquire and interpret digital data, digital oscilloscopes are better equipped to handle these digital signals directly. On the other hand, analog oscilloscopes can only analyze analog signals and need extra signal conversion for digital signal analysis. The market for analog oscilloscopes is threatened by the trend toward digital signals.
The COVID-19 pandemic has presented both challenges and opportunities for the analog oscilloscope market. An interruption in the worldwide supply chain during the early stages of the pandemic had an impact on the manufacture and distribution of analog oscilloscopes. Product availability was delayed as a result of closures or reduced capacity at manufacturing plants. The epidemic also caused businesses to spend less money on capital projects and on research and development, which decreased demand for test and measurement tools like analog oscilloscopes. The pandemic increased demand for oscilloscopes in sectors like healthcare, telecommunications, and remote work solutions by highlighting the crucial relevance of electronics and telecommunications infrastructure.
The 500MHZ segment is estimated to hold the largest share. Frequency of 500 MHz is equivalent to 500 million Hz. One of the most well-liked oscilloscope frequency ranges is 500 MHz, which provides high-performance multi-channel capability for standard lab applications. The most typical bandwidth for analogue oscilloscopes is 0 MHz it is used in a variety of industries, including communications and consumer electronics. The 500 MHz bandwidth was first made available about 20 years ago and is still often employed for everyday measuring work today.
The consumer electronics segment is anticipated to have lucrative growth during the forecast period. Demand for analog oscilloscopes is mostly driven by the consumer electronics sector. Oscilloscopes are used by producers of consumer electronics at different stages of product development and quality control. Additionally, analog oscilloscopes are utilized in the manufacturing and quality assurance procedures to check the performance and operation of electronic parts and subsystems. Analog oscilloscopes offer useful insights into signal behavior and aid in problem detection and resolution as a result of the complexity and reduction in size of consumer electronic devices.
Asia Pacific commanded the largest market share during the extrapolated period due to its significant presence of technology and electronics industries, making it a substantial market for oscilloscope manufacturers and suppliers. Academic institutions, large technical companies, and a high demand for electrical measurement and testing tools like oscilloscopes all contribute to this sizeable industry. The market potential for the region is still promising due to the persistent demand for analog oscilloscopes across a range of applications. Numerous domestic and foreign oscilloscope producers and suppliers are located in North America.
Europe is expected to witness profitable growth over the projection period as it consists of numerous nations with different levels of industrialization and technological development. The core of the market is comprised of nations like Germany, the UK, France, and Italy in Western Europe. Numerous top colleges, research organizations, and automobile and technology firms are based in Europe. Oscilloscopes are constantly needed for research, development, quality control, and educational purposes by these organizations and sectors.
Some of the key players in the Analogue Oscilloscope Market include: Tektronix, Pico Technology, Tecpel, Tie Pie Engineering, LeCroy, SMT Max, HAMEG Instruments, Madell Technology, Keysight Technologies and B&K Precision.
In April 2023, Keysight Collaborates with Future Technologies to Deploy and Operate 5G Private Networks Across US. Collaboration addresses expanding market with solutions encompassing the design, deployment, delivery, and operations of dedicated 5G private networks.
In December 2020, Tektronix releases Tek Drive, groundbreaking data collaboration software to facilitate global data collaboration directly on an oscilloscope, PC, phone or tablet. Created to enable ultimate ease and accuracy in data accessibility and collaboration, Tek Drive provides engineers the ability to instantaneously share and recall data directly on an oscilloscope, eliminating the need for cumbersome data-sharing practices.