![]() |
市場調查報告書
商品編碼
1551243
到 2030 年電波暗室市場預測:按類型、組件、頻率範圍、應用、最終用戶和地區進行的全球分析Anechoic Chamber Market Forecasts to 2030 - Global Analysis By Type (Fully Anechoic Chambers, Semi-Anechoic Chambers and Compact Anechoic Chambers), Component, Frequency Range, Application, End User and By Geography |
根據Stratistics MRC預測,2024年全球電波暗室市場規模將達11.8億美元,預計2030年將達到18.2億美元,預測期內複合年成長率為6.8%。
消音室是一種特殊的測試環境,旨在完全吸收聲音和電磁波的反射。消音室內襯有吸音材料和無線電波吸收材料,創造了一個沒有迴聲或外部噪音的「自由音場」條件。這樣可以使用隔離的設備進行準確的測試和測量。
中國工業協會資料顯示,2022年7月中國汽車銷量與前一年同期比較%至242萬輛。
越來越關注聲學性能
隨著汽車、航太和消費性電子等行業優先考慮減少噪音污染和提高音質,對精確聲學測量的需求不斷增加。消音室提供了一個受控環境來測試和最佳化產品的聲學性能,而不受外部噪音的干擾。專注於提供卓越的聲學體驗和滿足監管標準推動了對消音室的投資,推動市場成長和創新。
設計和安裝複雜性
消音室設計和安裝的複雜性源於對精確聲學控制的需要,包括用於吸聲的特殊材料和嚴格的結構以最大限度地減少噪音反射。這種複雜性需要詳細的工程、客製化零件並遵守嚴格的規範。這些要求可能會導致計劃時間更長且成本更高,從而打擊潛在買家並最終阻礙市場成長。
擴大研發活動
隨著產業投資於研發以創新和開發先進產品,對受控環境來評估聲音品質、噪音排放和電磁相容性的需求不斷增加。電波暗室為精確測試提供了必要的條件,並確保新技術符合性能和監管標準。人們對研發的興趣不斷成長,推動了電波暗室的採用,推動市場成長,並推動汽車、航太和電子等多個領域的進步。
維護和營運成本高
電波暗室的維護和操作成本很高,因為它們需要專門的材料、定期維護和校準以確保最佳性能。這些成本包括維護吸音材料、控制溫度和濕度以及處理消耗品。因此,儘管各行業的技術進步和需求旺盛,但經濟負擔可能會限制電波暗室的採用並阻礙市場擴張。
COVID-19 的影響
由於供應鏈中斷和建設計劃延誤,COVID-19 大流行最初擾亂了消音室市場。然而,隨著遠距工作的轉變以及人們對安全和健康的興趣的增加,各個領域對精確噪音測試的需求也隨之增加。這引起了人們對用於產品開發和研究的消音室的新興趣。此外,疫情加速了數位化和技術進步,增加了對高品質聲學測試解決方案的需求。
預計聲學測試行業在預測期內將是最大的
聲學測試領域預計將出現良好的成長。在聲學測試中,消音室提供了一個受控環境來測量和分析聲音,而沒有外部噪音干擾或聲音反射。消音室設計,包括吸音材料和與外部噪音的隔離,確保了準確的測試條件。這使工程師能夠最佳化設計、遵守監管標準並提高產品性能,從而使消音室對於有效的聲學評估和創新至關重要。
預計電子業在預測期內複合年成長率最高
預計電子業在預測期內將以最高複合年成長率成長。電波暗室對於評估和最佳化設備的聲學性能和電磁相容性至關重要。消音室提供了一個受控環境,用於測量噪音發射、訊號干擾和聲音質量,消除外部干擾和反射。使用消音室可以讓工程師微調設計、提高產品耐用性並確保符合行業規範,從而為市場提供更高品質、更可靠的電子設備。
在亞太地區,由於汽車、航太和電子產業投資的增加,電波暗室市場正在迅速擴大。該地區對研發的日益重視,加上更嚴格的噪音法規和標準,正在推動對高精度聲學測試解決方案的需求。快速的工業化和技術進步進一步促進了市場的成長。此外,政府支持技術創新和環境永續性的努力正在推動消音室的採用。
在北美,航太、汽車和電子產業的強勁成長正在推動電波暗室市場的發展。該地區嚴格的噪音法規以及對研發的日益重視正在推動對精密聲學測試的需求。技術進步和研發設施的擴大進一步支持市場擴張。此外,對產品品質和行業標準合規性的日益重視也推動了對電波暗室的需求。
According to Stratistics MRC, the Global Anechoic Chamber Market is accounted for $1.18 billion in 2024 and is expected to reach $1.82 billion by 2030 growing at a CAGR of 6.8% during the forecast period. An anechoic chamber is a specialized testing environment designed to completely absorb reflections of sound or electromagnetic waves. The chamber is lined with sound-absorbing materials or radio-frequency absorbers to create a "free-field" condition, simulating an open space without echoes or external noise. This allows for accurate testing and measurements of devices in isolation.
According to data from the China Association of Automobile Manufacturers, auto sales in China increased by 29.7% year over year to 2.42 million units in July 2022.
Increased focus on acoustic performance
As industries such as automotive, aerospace and consumer electronics prioritize reducing noise pollution and enhancing sound quality, the need for accurate acoustic measurements intensifies. Anechoic chambers provide a controlled environment to test and optimize product acoustic performance without external noise interference. This focus on delivering superior acoustic experiences and meeting regulatory standards fuels investments in anechoic chambers, fostering market growth and innovation.
Complexity in design and installation
The complexity in designing and installing an anechoic chamber arises from the need for precise acoustic control, including specialized materials for sound absorption and rigorous construction to minimize noise reflections. This complexity requires detailed engineering, custom-built components, and adherence to strict specifications. Such requirements can lead to extended project timelines and higher costs, which may deter potential buyers and consequently hamper the market growth.
Expansion of research and development activities
When industries invest in R&D to innovate and develop advanced products, the need for controlled environments to evaluate sound quality, noise emissions, and electromagnetic compatibility intensifies. Anechoic chambers offer the necessary conditions for accurate testing, ensuring that new technologies meet performance and regulatory standards. This heightened focus on R&D drives the adoption of anechoic chambers, fueling market growth and leading to advancements in various sectors, including automotive, aerospace, and electronics.
High maintenance and operational costs
High maintenance and operational costs in anechoic chambers arise from the need for specialized materials, regular upkeep, and calibration to ensure optimal performance. These expenses include maintaining sound-absorbing materials, controlling temperature and humidity, and addressing wear and tear. As a result, the financial burden can restrict the adoption of anechoic chambers, hindering the expansion of the market despite its technological advancements and demand in various industries.
Covid-19 Impact
The covid-19 pandemic initially disrupted the anechoic chamber market due to supply chain interruptions and delayed construction projects. However, the shift towards remote work and increased focus on health and safety heightened the need for precise noise testing in various sectors. This led to renewed interest in anechoic chambers for product development and research. Additionally, the pandemic accelerated digital and technological advancements, driving demand for high-quality acoustic testing solutions.
The acoustic testing segment is expected to be the largest during the forecast period
The acoustic testing segment is estimated to have a lucrative growth. In acoustic testing, an anechoic chamber provides a controlled environment to measure and analyze sound without external noise interference or sound reflections. The chamber's design, including sound-absorbing materials and isolation from external noise, ensures precise testing conditions. This enables engineers to optimize designs, comply with regulatory standards, and enhance product performance, making anechoic chambers essential for effective acoustic evaluation and innovation.
The electronics segment is expected to have the highest CAGR during the forecast period
The electronics segment is anticipated to witness the highest CAGR growth during the forecast period. An anechoic chamber is vital for evaluating and optimizing the acoustic performance and electromagnetic compatibility of devices. It provides a controlled environment to measure noise emissions, signal interference, and sound quality without external disturbances or reflections. By using anechoic chambers, engineers can fine-tune designs, enhance product durability, and ensure compliance with industry specifications, leading to higher quality and more reliable electronic devices in the market.
In the Asia-Pacific region, the anechoic chamber market is expanding rapidly due to increased investments in automotive, aerospace, and electronics industries. The region's growing focus on research and development, coupled with stricter noise regulations and standards, is driving demand for high-precision acoustic testing solutions. Rapid industrialization and technological advancements further contribute to market growth. Additionally, government initiatives supporting innovation and environmental sustainability are boosting the adoption of anechoic chambers.
In North America, the anechoic chamber market is driven by robust growth in aerospace, automotive, and electronics industries. The region's stringent noise regulations and increasing focus on research and development fuel demand for precise acoustic testing. Advancements in technology and the expansion of R&D facilities further support market expansion. Additionally, the emphasis on product quality and compliance with industry standards enhances the need for anechoic chambers.
Key players in the market
Some of the key players profiled in the Anechoic Chamber Market include Rohde & Schwarz, TDK Corporation, Lynx Pro, Albatross Projects GmbH, MVG Industries, ETS-Lindgren, Frankonia Group, Panashield, Comtest Engineering, Microwave Vision Group (MVG), Anritsu, Stabond, Cuming Microwave Corporation, AP Americas and Holland Shielding Systems BV.
In July 2024, Stabond launched the Stabond C-148B, a new adhesive designed specifically for applications in anechoic chambers. This product is characterized by its fast-drying formula, which allows for quick application and reduced downtime during the construction or maintenance of anechoic chambers. The adhesive boasts high strength, ensuring robust and durable bonding of materials used within these specialized environments.
In December 2022, Anritsu has developed a new Compact Antenna Test Range (CATR) Anechoic Chamber (MA8172B) configuration for its New Radio RF Conformance Test System ME7873NR to support 5G millimeter wave (mmWave) Angle of Arrival (2 AoA) Radio Resource Management (RRM) tests. The ME7873NR is an automated system to enable 3GPP TS 38.521/TS 38.533 5G NR RF and RRM testing.
Note: Tables for North America, Europe, APAC, South America, and Middle East & Africa Regions are also represented in the same manner as above.