![]() |
市場調查報告書
商品編碼
1371907
到 2030 年聲光偏轉器市場預測:按產品類型、用途、最終用戶和地區進行的全球分析Acousto-Optic Deflector Market Forecasts to 2030 - Global Analysis By Product Type (UV Acousto-optical Deflectors, NIR Acousto-optical Deflectors and Visible Acousto-optical Deflectors), Application, End User and By Geography |
根據Stratistics MRC的數據,2023年全球聲光偏轉器市場規模為5.131億美元,預計在預測期內將以9.2%的年複合成長率成長,到2030年達到9.625億美元。
聲光偏轉器是一種利用聲光效應引導雷射光束的光學元件。它是一種靈活的設備,經常用於涉及雷射操縱的許多應用中。該裝置的主要特點是光束引導。透過改變射頻訊號的頻率,可以精確控制雷射光束的偏轉角度。因此,它可用於雷射掃描、雷射列印和基於雷射的成像等系統,並且是非機械的。
聲光偏轉器(AOD)的研究發展和應用深受雷射技術發展的影響,是雷射光束管理和調節的重要光學工具。從紫外線 (UV) 到紅外線(IR) 等不同電磁波譜波長的雷射的出現,是雷射技術進步的結果。聲光偏轉器可以適應這些不同的雷射光源,從而可以在各種應用中進行光束轉向和光束脩改。這些雷射光源與 AOD 配合使用,可在通訊和材料加工等行業中實現精確的光束控制,從而擴大聲光偏轉器的市場。
聲光偏轉器(AOD)市場受到其他技術競爭的嚴重限制。用於雷射光束轉向和控制的聲光偏轉器的現有替代技術可能會威脅其持續發展和霸主地位。此外,電光偏轉器利用電光效應來控制雷射光束的方向,可用於調變和光束轉向,且響應時間快。高速運轉和無射頻要求等特性可能會使電光偏轉器在某些用途中不太受青睞,從而阻礙了市場成長。
聲光偏轉器在生物光子學和醫學影像處理應用中發揮著重要作用,在這些應用中,需要精確快速地控制雷射光束以實現各種診斷和治療目的。聲光偏轉器經常用於共焦雷射掃描顯微鏡,這是生物光子學中強大的成像技術。在這種方法中,用雷射光束照射樣品,透過聲光偏轉器在樣品上掃描雷射光束。這使得收集生物材料的3D高解析度照片成為可能,這在組織學、神經學和細胞生物學領域非常有用。
由於聲光偏轉元件 (AOD) 的製造成本較高,製造商和潛在客戶都可能面臨重大困難。這些設備所需的品質聲光結晶,例如二氧化碲 (TeO2) 和石英,價格相當昂貴。這些結晶的價格包含在總生產成本中。此外,由於它們是精密光學零件,因此結晶、表面和光學塗層的品質必須處於極其嚴格的公差範圍內。實現並保持如此高的準確性需要專門的工具和知識,這可能非常昂貴。
COVID-19大流行影響了電氣和光學零件(尤其是聲光偏轉器)的生產和分銷,擾亂了全球供應線。由於製造商難以取得原料和零件並維持生產計劃,成品交付可能會延遲。因此,疫情期間對這些設備的需求可能較低。為因應醫療危機,一些企業已將生產重點轉向醫療設備和用品。由於優先事項的這種變化,聲光偏轉器和其他非必要零件的製造可能會暫時受到影響。
預計紫外線聲光偏轉器領域將出現良好的成長。紫外線聲光偏轉器的工作原理是改變施加在晶體上的 RF(射頻)訊號的頻率和幅度,從而使紫外線雷射光束快速而精確地偏轉。因此,紫外光可以以毫秒響應時間快速定位和掃描。與鏡子和振鏡掃描器等機械光束控制設備相比,這些設備是非機械的,沒有移動零件。這使得它們適合長期、高通量應用,磨損風險低、機械震動和維護要求低,從而成為市場領導者。
聲光偏轉器可以在需要微米級精度的應用中操縱和控制雷射光束。聲光偏轉器可以透過快速改變雷射方向,以亞微米精度瞄準樣品或工件上的特定點。材料的燒蝕或切割是聲光偏轉器在微加工上的典型用途。此外,透過小心地將聚焦雷射光束引導到材料表面上,可以去除或切割材料層,同時最大限度地減少熱影響區。因此,上述所有要素都在推動市場。
預計亞太地區在預測期內將佔據最大的市場佔有率。這可能是因為雷射系統和光學儀器中經常使用的聲光偏轉器的需求受到了這種成長的影響。亞太地區有許多聲光偏轉器製造商和供應商,這些公司可能為國內和國際市場製造聲光偏轉器。此外,它還受到聲光技術發展的影響,包括設備性能和小型化的改進。這些進步是透過韓國、中國和日本等國家的研究人員和生產商的努力得以實現的,這些國家正在推動該地區的市場。
預計北美在預測期內將經歷最高的年複合成長率。這是因為聲光偏轉器在該領域的許多應用中都有使用,包括雷射掃描、雷射成像、光譜學和材料加工。聲光偏轉器是半導體、生物光子學和通訊設備製造中使用的雷射系統的重要組成部分。在北美,光子學和光學的研究在美國很活躍。該地區的研究機構、學術機構和商業公司正在積極致力於開發尖端光學技術,包括聲光裝置。
According to Stratistics MRC, the Global Acousto-Optic Deflector Market is accounted for $513.1 million in 2023 and is expected to reach $962.5 million by 2030 growing at a CAGR of 9.2% during the forecast period. An acousto-optic deflector is an optical device that directs a laser beam using the acousto-optic effect. It is a flexible instrument frequently utilized in numerous applications involving the manipulation of laser light. The main function of these devices is beam guiding. The laser beam's deflection angle can be precisely controlled by varying the RF signal's frequency. They are hence useful in systems like laser scanning, laser printing, and laser-based imaging and are non-mechanical.
Acousto-Optic Deflectors (AODs) research and application have been significantly impacted by developments in laser technology and are optical tools that are essential for managing and adjusting laser beams. The availability of lasers at different wavelengths across the electromagnetic spectrum, from ultraviolet (UV) to infrared (IR), is a result of advances in laser technology. Acousto-optic deflectors are adaptable instruments for beam steering and modification across a variety of applications since they can operate with these various laser sources. These laser sources work with AODs, making it possible for precise beam control in industries like communications and material processing which enhances the market for acousto optical deflectors.
The Acousto-Optic Deflector (AOD) market is significantly restrained by competition from other technologies. Existing alternatives to acousto-optic deflector for laser beam steering and control could represent a threat to their continued development and hegemony. Additionally, electro-optic deflectors employ the electro-optic effect to control the direction of a laser beam and can be utilized for modulation and beam steering and have quick response times. Due to its traits, like high-speed operation and the lack of RF needs, electro-optic deflectors may occasionally be preferable for particular applications which hamper the growth of the market.
In biophotonics and medical imaging applications, where accurate and quick control of laser beams is necessary for various diagnostic and therapeutic objectives, acousto-optic deflectors play a significant role. They are frequently employed in confocal laser scanning microscopy, a potent biophotonics imaging method. In this method, a specimen is illuminated by a laser beam, which is then scanned across the specimen by acousto-optic deflectors. This makes it possible to gather three-dimensional, high-resolution photographs of biological material, which is extremely useful in the fields of histology, neurology, and cell biology.
Both manufacturers and potential customers may face substantial difficulties as a result of the high manufacturing costs of acousto-optic deflectors (AODs). High-quality acousto-optic crystals, like tellurium dioxide (TeO2) or quartz, are necessary for these devices can be quite pricey. The price of these crystals goes into the total cost of production. Moreover, their high-precision optical components that need crystal, surface, and optical coating quality to be within extremely tight tolerances. These high levels of precision must be attained and maintained with specialized tools and knowledge, which can be expensive.
The COVID-19 pandemic affected the manufacture and distribution of electrical and optical components, particularly acousto-optical deflectors, and interrupted worldwide supply lines. Deliveries of the finished goods may have been delayed as a result of difficulties manufacturers may have had obtaining raw materials, components, and keeping production schedules. As a result, there was probably less of a demand for these devices during the pandemic. In response to the healthcare crisis, some firms have moved their production emphasis to medical equipment and supplies. The manufacturing of acousto-optical deflectors or other non-essential components may have momentarily suffered as a result of this change in priorities.
The UV acousto-optical deflectors segment is estimated to have a lucrative growth, as they work by altering the frequency and amplitude of the RF (radio frequency) signal supplied to the crystal, UV acousto-optical deflectors can quickly and precisely deflect UV laser beams. Due to this, UV light can be positioned and scanned at high speeds with millisecond response times. These devices are non-mechanical, which means they don't have any moving components, in contrast to mechanical beam steering devices like mirrors and galvanometer scanners. This makes them suited for long-term and high-throughput applications by lowering the danger of wear and tear, mechanical vibrations, and the requirement for maintenance which drives the market.
The micro processing segment is anticipated to witness the highest CAGR growth during the forecast period, because they are very accurate and adaptable method for microprocessing, acousto-optical deflectors enable the manipulation and control of laser beams in applications demanding microscale accuracy. They are able to target particular spots on a sample or workpiece with sub-micron accuracy by quickly changing the laser's direction. Material ablation and cutting is a typical use of acousto-optical deflectors in microprocessing. Moreover, they are capable of removing or cutting through layers of material with a minimum amount of heat-affected zones by carefully aiming a focused laser beam onto a material surface. Thus, all the above factors boost the market.
Asia Pacific is projected to hold the largest market share during the forecast period owing to the demand for acousto-optic deflectors, which are frequently employed in laser systems and optical instruments, has probably been impacted by this rise. The Asia-Pacific is home to a number of acousto-optic deflector producers and suppliers and these businesses might create acousto-optic deflectors for both home and foreign markets. Moreover, it has been impacted by developments in acousto-optic technology, including better device performance and downsizing. These advancements have been made possible because of the work of researchers and producers in nations like South Korea, China, and Japan, which are propelling the regions market.
North America is projected to have the highest CAGR over the forecast period, because numerous applications, such as laser scanning, laser-based imaging, spectroscopy, and materials processing, make use of acousto-optic deflectors in this region. They are essential components of laser systems used in the production of semiconductors, biophotonics, and telecommunications equipment. The region of North America renowned for having a significant presence in photonics and optics research is the United States, in particular. The region's research facilities, academic institutions, and commercial businesses are actively engaged in the development of cutting-edge optical technology, including acousto-optic devices.
Some of the key players profiled in the Acousto-Optic Deflector Market include: Brimrose, Isomet, Gooch&Housego, IntraAction Corp., CASTECH, AA Opto Electronic, Coherent, Inc., A*P*E Angewandte Physik & Elektronik GmbH, AA Opto Electronic, Harris Corporation, AMS Technologies AG, Lightcomm Technology Co., Ltd. , IntraAction Corp., Hudson Robotics Inc., MVM Electronics Inc, Lambda Photometrics Ltd, Quanta Tech Inc and Opto Science Inc
In October 2023, Coherent and Faraday 1867 partner to scale manufacturing of superconducting tape to enable mass deployment of fusion reactors, with the objective of scaling up manufacturing of high-temperature superconducting (HTS) tape to enable mass deployment of nuclear fusion reactors and support the green energy transition.
In September 2023, Coherent Unveils Industry's First 140 Gbaud Optical Subassembly to Enable 800g In Ultracompact Pluggable Form Factors for Optical Communications Networks. This solution lowers the total cost of network ownership for hyperscalers and service providers by eliminating an entire layer of transponder equipment.
In September 2023, coherent and kinetic extend partnership to enable 100g services leveraging the industry's first 100g qsfp28 0 dbm dco transceiver. The 100G QSFP28 DCO transceiver with 0 dBm output power is the industry's first, and it enables Kinetic to deploy 100 Gbps coherent transceiver technology in the access aggregation networks efficiently and sustainably