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2030 年固态冷却市场预测:按产品类型、技术、最终用户和地区分類的全球分析Solid State Cooling Market Forecasts to 2030 - Global Analysis By Product (Cooling System, Refrigeration System and Other Products), Type (Thermocycler, Multi Stage, Single Stage and Other Types), Technology, End User and By Geography |
根据 Stratistics MRC 的数据,2023 年全球固态冷却市场规模为 5.205 亿美元,预计到 2030 年将达到 14.534 亿美元,预测期内复合年增长率为 15.8%。
固态冷却市场涵盖多种技术,旨在提供高效且环保的冷却解决方案,而不使用传统冷媒或移动部件。这项创新技术利用珀尔帖效应来传递热量,无需移动部件或冷媒即可提供高效、精确的温度控制。此外,固态冷却在医疗设备中很有用,可以保持检体储存和设备操作的稳定温度。
对节能冷却解决方案的需求不断增长
随着人们对气候变迁和能源消耗的日益关注,工业界和消费者都在寻找传统冷却方法的替代方案,而传统冷却方法因其高能耗和环境影响而闻名。固态冷却系统是一种很有前途的解决方案,它利用半导体技术提供冷却,而不使用有害的冷媒或移动部件,从而提高能源效率和环境永续性。此外,固态冷水机结构紧凑且扩充性,使其适用于广泛的应用,包括各行业的电子冷却、冷冻和温度控管。
初始投资高
安装固态冷却系统的初始成本往往让许多潜在买家望而却步。该成本不仅包括购买固态冷水机本身,还包括安装、整合以及现有基础设施的潜在修改。此外,改善技术和降低生产成本的研发成本也增加了整体投资负担。因此,企业和产业可能会犹豫是否采用固态冷却解决方案,而是选择更便宜但效率较低的替代方案。
绿色能源意识不断增强
随着个人、企业和政府优先考虑永续性,对能够最大限度地减少能源消耗和减少温室气体排放的冷却技术的需求日益增长。固态冷却系统利用半导体材料冷却,而不使用冷媒或移动部件,与这些永续性目标密切相关。与传统冷却方法相比,其优点包括更高的能源效率、更低的维护要求以及更低的环境影响。
符合监管标准
由于严格的要求会抑制创新并增加生产成本,因此遵守监管标准是固态冷却市场的重大挑战。旨在提供高效且环保的冷却解决方案的固态冷却技术在满足不同的法律规范经常遇到障碍。这些标准旨在确保安全、能源效率和环境永续性,规定了严格的测试、认证流程和材料限制。因此,投资固态冷却技术的公司面临更长的开发週期、更高的合规性测试成本以及有限的材料可用性。
最初,全球供应链中断导致製造和分销延迟,导致固态冷却系统的关键组件短缺。再加上消费者支出下降和各行业计划延迟,市场成长暂时放缓。然而,随着疫情的发展,对疫苗和医疗用品的温控储存和运输解决方案的需求增加,导致医疗保健领域采用固态冷却技术的激增。
热迴圈仪部分预计将在预测期内成为最大的部分
预计热迴圈仪领域在预测期内将是最大的。热迴圈仪是聚合酵素链锁反应(PCR) 过程中的重要工具,广泛应用于分子生物学研究、遗传分析和诊断测试。传统的热迴圈仪通常依赖笨重且低效的珀耳帖冷却系统,该系统成本高且不可靠。固态冷却技术的进步显着提高了效率、可靠性和紧凑性。与传统方法相比,固态热电冷却器可提供精确的温度控制、快速的热循环并降低能耗。
预计半导体和电子产业在预测期内的复合年增长率最高。
预计半导体和电子产业在预测期内复合年增长率最高。使用热电冷却器和珀耳帖效应模组等技术的固态冷却系统严重依赖半导体元件。半导体技术的进步,包括开发更有效率的材料(如碲化铋)和改进的製造技术(如薄膜沉淀),正在改善固态冷却系统的性能、缩小尺寸并提高可靠性。
在预测期内,亚太地区占据了最大的市场份额。随着电动车因其环保性和政府鼓励其使用的激励措施而变得越来越受欢迎,对高效温度控管解决方案的需求也相应增加。与传统冷却系统相比,固态冷却技术具有尺寸较小、环境影响较小的优势,使其对全部区域的电动车製造商越来越有吸引力。这些系统在维持电动车内敏感电子元件和电池的最佳动作温度方面发挥关键作用。这些因素正在推动该地区的成长。
预计亚太地区在预测期内将保持良好的成长。亚太地区的政府法规在加强固态冷却市场方面发挥关键作用。随着人们对气候变迁和能源消耗的日益关注,各国政府正在透过各种政策(包括补贴、税收优惠和严格的能源效率标准)来奖励采用环保冷却系统。此外,促进排放淘汰消耗臭氧层物质和减少温室气体排放的法规进一步推动了固态冷却解决方案的采用。
According to Stratistics MRC, the Global Solid State Cooling Market is accounted for $520.5 million in 2023 and is expected to reach $1,453.4 million by 2030 growing at a CAGR of 15.8% during the forecast period. The solid-state cooling market encompasses a range of technologies aimed at providing efficient and environmentally friendly cooling solutions without the use of traditional refrigerants or moving parts. This innovative technology utilizes the Peltier effect to transfer heat, offering efficient and precise temperature control without the need for moving parts or refrigerants. Additionally, solid-state cooling finds utility in medical devices, maintaining stable temperatures for specimen storage and equipment operation.
Rising demand for energy efficient cooling solutions
As concerns over climate change and energy consumption intensify, industries and consumers alike are seeking alternatives to traditional cooling methods known for their high energy consumption and environmental impact. Solid-state cooling systems offer a promising solution by leveraging semiconductor technology to achieve cooling without the use of harmful refrigerants or moving parts, leading to greater energy efficiency and environmental sustainability. Additionally, the compact size and scalability of solid-state cooling devices make them suitable for a wide range of applications, including electronics cooling, refrigeration, and thermal management in various industries.
High initial investment
The upfront costs associated with implementing solid-state cooling systems are often prohibitive for many potential buyers. These costs include not only the purchase of the solid-state cooling equipment itself but also the installation, integration, and potential modifications to existing infrastructure. Moreover, research and development costs for improving the technology and reducing production expenses add to the overall investment burden. Consequently, businesses and industries may hesitate to adopt solid-state cooling solutions, opting instead for cheaper but less efficient alternatives.
Rise in awareness of green energy
As individuals, businesses, and governments increasingly prioritize sustainability, there's a growing need for cooling technologies that minimize energy consumption and reduce greenhouse gas emissions. Solid state cooling systems, which utilize semiconductor materials to generate cooling effects without refrigerants or moving parts, align closely with these sustainability objectives. They offer advantages such as higher energy efficiency, reduced maintenance requirements, and lower environmental impact compared to traditional cooling methods.
Compliance with regulatory standards
Compliance with regulatory standards poses a significant challenge to the Solid State Cooling Market due to the stringent requirements that can stifle innovation and increase production costs. Solid state cooling technologies, which aim to provide efficient and environmentally friendly cooling solutions, often encounter hurdles in meeting diverse regulatory frameworks. These standards, set to ensure safety, energy efficiency, and environmental sustainability, impose rigorous testing, certification processes, and material restrictions. As a result, companies investing in solid state cooling technologies face extended development cycles, higher expenses for compliance testing, and limitations on the materials they can use.
Initially, disruptions in the global supply chain caused delays in manufacturing and distribution, leading to a shortage of components crucial for solid-state cooling systems. This, coupled with reduced consumer spending and project delays across industries, resulted in a temporary slowdown in market growth. However, as the pandemic progressed, there was an increased demand for temperature-controlled storage and transportation solutions for vaccines and medical supplies, driving a surge in the adoption of solid-state cooling technologies within the healthcare sector.
The thermocycler segment is expected to be the largest during the forecast period
Thermocycler segment is expected to be the largest during the forecast period. Thermocyclers are essential tools in polymerase chain reaction (PCR) processes, utilized extensively in molecular biology research, genetic analysis, and diagnostic testing. Traditional thermocyclers often rely on bulky and inefficient Peltier cooling systems, which can be costly and less reliable. Advancements in solid-state cooling technology offer significant improvements in efficiency, reliability, and miniaturization. Solid-state thermoelectric coolers provide precise temperature control, rapid thermal cycling, and reduced energy consumption compared to conventional methods.
The semiconductor & electronics segment is expected to have the highest CAGR during the forecast period
Semiconductor & Electronics segment is expected to have the highest CAGR during the forecast period. Solid-state cooling devices, utilizing technologies such as thermoelectric coolers and Peltier effect modules, rely heavily on semiconductor components. Advancements in semiconductor technology, such as the development of more efficient materials like bismuth telluride and improved manufacturing techniques like thin-film deposition, have led to enhanced performance, smaller form factors, and increased reliability in solid-state cooling systems.
Asia Pacific region commanded the largest share of the market over the forecast period, as electric vehicles gain prominence due to their eco-friendliness and governmental incentives promoting their use, the demand for efficient thermal management solutions rises in tandem. Solid-state cooling technology, with its advantages of compactness and reduced environmental impact compared to traditional cooling systems, becomes increasingly attractive for EV manufacturers across the region. These systems play a crucial role in maintaining optimal operating temperatures for sensitive electronic components and batteries within EVs. These elements are boosting the regional growth.
Asia Pacific region is poised to hold lucrative growth during the projection period. Government regulations in the Asia Pacific region are playing a crucial role in bolstering the Solid State Cooling Market. With increasing concerns over climate change and energy consumption, governments are incentivizing the adoption of eco-friendly cooling systems through various policies, such as subsidies, tax incentives, and stringent energy efficiency standards. Additionally, regulations promoting the phase-out of ozone-depleting substances and the reduction of greenhouse gas emissions further encourage the adoption of solid-state cooling solutions.
Key players in the market
Some of the key players in Solid State Cooling market include Alphabet Energy, Crystal Ltd, European Thermodynamics Limited, Ferrotec, Kryotherm, Laird Thermal Systems, Merit Technology Group, Nextreme Thermal Solutions, Phononic, RMT Ltd, TEC Microsystems, Thermion Company, Thermoelectric Cooling America Corporation and Thermonamic Electronics.
In October 2023, CUI Devices announced the official launch of its new thermal design services. CUI Devices' industry-leading thermal design services employ advanced simulation tools and decades of expertise to identify potential hotspots, optimize airflow, and design effective cooling systems tailored to a customer's specific needs.
In June 2023, Laird Thermal Systems has developed the new OptoTEC MSX Series of micro multistage thermoelectric coolers. The multistage MSX Series TECs offer micro footprints on the cold side down to 2.0 x 4.0 mm with thicknesses down to 3.3 mm for 2-stage, 3.8 mm for 3-stage and 4.9 mm for 4-stage coolers.
In June 2023, Solid State Cooling Systems introduced the next generation of our legendary ThermoCube chiller - ThermoCube II. ThermoCube II is identical in size to the original ThermoCube, with a more powerful controller and a redesigned power architecture for even longer life.
In April 2023, Laird Thermal Systems has expanded its capabilities by offering micro thermoelectric coolers. The compact OptoTEC MBX Series is designed for next-generation LiDAR systems for autonomous vehicles, pluggable optical transceivers for telecom and Indium Phosphide VCSELs used in various high-performance applications.