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市场调查报告书
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1617207
2030年半导体汽车冰箱市场预测:按类型、产能、电源、应用和地区分類的全球市场分析Semiconductor Car Refrigerator Market Forecasts to 2030 - Global Analysis By Type (Compressor, Absorption and Thermoelectric), Capacity (Below 20 Liters, 20-30 Liters, 30-50 Liters and 50 Liters and Above), Power Source, Application and By Geography |
根据Stratistics MRC的数据,2024年全球半导体汽车冰箱市场规模为8,451万美元,预计到2030年将达到1.0817亿美元,预测期内复合年增长率为4.2%。半导体汽车冰箱采用基于半导体的热电技术,为汽车应用提供先进的冷却解决方案。这些冰箱体积小、可靠且节能,非常适合在汽车中使用。基本技术基于珀耳帖效应,透过电流在两种半导体材料之间产生温差来实现冷却。
据美国能源局(DOE) 称,基于半导体的冷冻技术比传统的基于压缩机的系统更加节能,可减少高达 30%的消费量。
对汽车舒适性和便利性的需求日益增长
舒适性和便利性正在成为决定购买哪辆车的重要因素,现代消费者越来越多地寻找增强车内体验的方法。固态汽车冰箱透过提供一种小型、有效且安静的方式来满足这一需求,在您的日常通勤或长途驾驶中保持食物和饮料的低温。与传统冰箱相比,半导体装置提供的冷却系统不会产生噪音或振动,使其成为豪华和高端汽车的理想选择。因此,它们被安装在豪华车和定制车上,并且要求高功能性和便利性。
昂贵的初始价格
半导体汽车冰箱的初始成本普遍高于传统压缩机冰箱。这是由于该系统采用了先进的半导体和热电材料。儘管能源效率降低了营业成本,但一些消费者和汽车製造商可能对是否进行初始投资犹豫不决。此外,传统冷冻系统可以以较低的成本提供相当的冷却性能,因此对于大众市场车辆或预算紧张的消费者来说,整合基于半导体的冷却系统的成本可能不合理。
冷却技术和热电材料的开发
透过碲化铋等热电材料的开发和热电模组的新设计,可以显着提高基于半导体的冷却系统的性能。随着这些材料变得更加经济和高效,汽车製造商将发现固态冷冻更具吸引力。改进的冷却性能、更小的系统尺寸和更节能的设计可能是热电技术改进的结果。此外,固态冷冻的效率和可靠性也可以透过散热技术的进步来提高,例如先进散热器、液体冷却系统和更小的风扇的开发。
与传统压缩机冷冻系统的竞争
传统的基于压缩机的冷冻系统已在汽车中使用多年,并对基于半导体的系统的广泛采用构成严重威胁。这些系统因其声誉、可靠性和较低的初始成本而受到许多客户和汽车製造商的欢迎。儘管半导体系统具有能源效率优势,但压缩机冰箱的舒适性、经济性和良好的记录仍然是障碍。此外,在中低阶汽车中,当目前基于压缩机的系统已经满足其需求时,汽车製造商可能会犹豫是否广泛部署基于半导体的系统。
半导体汽车冰箱市场受到 COVID-19 大流行的严重影响,主要原因是生产延迟、全球供应链中断以及危机最严重时消费者需求下降。由于半导体和汽车零件製造厂的停工和营运限制,半导体冷冻系统的生产和交付被推迟。此外,疫情造成的经济不确定性影响了消费者支出,导致汽车产业本身放缓,汽车生产和销售减少。
热电部分预计将在预测期内成为最大的部分
由于其环保设计、小尺寸和能源效率,热电领域预计将主导半导体汽车冰箱市场。热电冷冻系统利用电流通过半导体材料产生的珀耳帖效应,不需要有害的冷媒。轻量化设计和无振动使该技术非常适合汽车应用,包括电动车和其他现代车辆。此外,对低维护和环保冷冻选项日益增长的需求也推动了热电系统的使用。
预计 20-30 公升细分市场在预测期内复合年增长率最高。
由于其便携性和储存容量之间的完美平衡,20-30公升细分市场预计将在半导体汽车冰箱市场中展现出最高的复合年增长率。由于其适应性,越来越多的客户选择这种尺寸类别,这使得它不仅适合乘用车的日常使用,而且也适合驾驶和户外活动。这个市场是由对紧凑、节能的冷却系统不断增长的需求所推动的,这些系统占用空间小,并能完美地融入现代汽车内装。此外,热电冷却技术的发展使製造商能够提供具有更高性能、更低功耗和环保设计的 20-30 公升冰箱。
由于领先汽车製造商的存在、电动车(EV)的快速普及以及消费者对节能技术不断增长的需求,预计亚太地区将占据半导体汽车冰箱市场的最大份额。中国、日本、韩国和印度等国家的主要汽车製造商正在大力投资尖端汽车技术,包括基于半导体的冷冻系统。作为推动更永续和更节能的汽车发展的一部分,中国汽车工业(尤其是电动车产业)的扩张正在推动对固态冰箱的强劲需求。
半导体汽车冰箱市场预计将以北美地区最高的复合年增长率成长。对电动车(EV)的需求不断增长以及汽车行业越来越多地使用节能技术是这一增长的主要驱动力。随着美国和加拿大主要汽车製造商专注于永续性并提供更先进、更环保的车辆功能,例如基于半导体的冷冻系统,市场正在快速成长。此外,节能汽车技术的采用也得到了政府支持清洁能源和电动车的政策和奖励的支持。
According to Stratistics MRC, the Global Semiconductor Car Refrigerator Market is accounted for $84.51 million in 2024 and is expected to reach $108.17 million by 2030 growing at a CAGR of 4.2% during the forecast period. Semiconductor car refrigerators use semiconductor-based thermoelectric technology to provide sophisticated cooling solutions for automotive applications. These refrigerators are perfect for use in cars because they are small, dependable, and energy-efficient, especially in settings where conventional compressor-based refrigerators might not be as practical. The fundamental technology is based on the Peltier effect, which allows cooling by producing a temperature differential between two kinds of semiconductor materials through the flow of electric current
According to the U.S. Department of Energy (DOE), semiconductor-based refrigeration technology is more energy-efficient compared to traditional compressor-based systems, reducing energy consumption by up to 30%.
Growing need for comfort and convenience in cars
Comfort and convenience are becoming important factors in determining which car to buy, and modern consumers are searching more and more for ways to improve their in-car experience. Semiconductor car refrigerators meet this need by offering a small, effective, and silent way to keep food and drinks cold on daily commutes or during lengthy road trips. In contrast to conventional refrigerators, semiconductor units provide a cooling system that produces no noise or vibration, which makes them a perfect complement to luxury and high-end automobiles. Additionally, these refrigerators are therefore becoming a desirable feature in high-end and customized car models, where buyers anticipate a high degree of functionality and convenience.
Expensive starting price
The initial cost of semiconductor car refrigerators is typically higher than that of conventional compressor-based refrigerators. The sophisticated semiconductor and thermoelectric materials employed in these systems are to blame for this. Some consumers and automakers may be put off by the initial investment, even though their energy efficiency lowers operating costs. Furthermore, since traditional refrigeration systems can provide comparable cooling performance at a lower cost, the cost of integrating semiconductor-based cooling systems may not be justified for mass-market vehicles or consumers on a tight budget.
Developments in cooling technology and thermoelectric materials
The performance of semiconductor-based refrigeration systems can be significantly enhanced by ongoing developments in thermoelectric materials, such as bismuth telluride, and new designs for thermoelectric modules. Automakers will find semiconductor refrigerators even more appealing as these materials become more economical and efficient. Better cooling performance, smaller system sizes, and even more energy-efficient designs could be the outcomes of improved thermoelectric technology. Moreover, the efficiency and dependability of semiconductor refrigerators can also be increased by advancements in heat dissipation technologies, such as the creation of sophisticated heat sinks, liquid cooling systems, or miniature fans.
Competition from traditional refrigeration systems with compressors
Traditional compressor-based refrigeration systems pose a serious threat to the broad adoption of semiconductor-based systems because they have been utilized in cars for many years. These systems are favored by many customers and automakers due to their established reputation, dependability, and lower initial costs. The comfort, affordability, and track record of compressor-based refrigerators remain obstacles despite the energy efficiency benefits of semiconductor systems. Additionally, in mid-range and low-cost vehicles, automakers may be hesitant to implement semiconductor-based systems extensively if their needs are already satisfied by current compressor-based systems.
The market for semiconductor car refrigerators was significantly impacted by the COVID-19 pandemic, mostly because of production delays, global supply chain disruptions, and a decline in consumer demand at the height of the crisis. Production and delivery of semiconductor-based refrigeration systems were delayed as a result of shutdowns or restrictions at manufacturing facilities for both semiconductor and automotive components. Furthermore, the economic uncertainty brought on by the pandemic affected consumer spending, which resulted in a slowdown in the automotive industry itself, with fewer vehicles being produced and sold.
The Thermoelectric segment is expected to be the largest during the forecast period
Due to its eco-friendly design, small size, and energy efficiency, the thermoelectric segment is anticipated to be dominated in the semiconductor car refrigerator market. By using the Peltier effect, which is produced by passing an electric current through semiconductor materials, thermoelectric refrigeration systems do not require hazardous refrigerants. Because of its lightweight design and vibration-free operation, this technology is perfect for automotive applications, including electric vehicles and other contemporary automobiles. Moreover, the use of thermoelectric systems has been accelerated by the rising need for low-maintenance, environmentally friendly refrigeration options.
The 20-30 Liters segment is expected to have the highest CAGR during the forecast period
Due to it striking the perfect balance between portability and storage capacity, the 20-30 liter segment is anticipated to show the highest CAGR in the semiconductor car refrigerator market. Customers are choosing this size category more and more because of its adaptability, which makes it ideal for daily use in passenger cars as well as road trips and outdoor activities. The market is boosted by the growing need for small, energy-efficient cooling systems that blend in perfectly with contemporary automobile interiors without taking up too much room. Furthermore, manufacturers are now able to provide 20-30 liter refrigerators with improved performance, lower power consumption, and environmentally friendly designs owing to developments in thermoelectric cooling technology.
Due to the presence of major automakers, the quick uptake of electric vehicles (EVs), and rising consumer demand for energy-efficient technologies, the Asia-Pacific region is anticipated to hold the largest share of the semiconductor car refrigerator market. Leading automakers in nations like China, Japan, South Korea, and India are making significant investments in cutting-edge automotive technologies, such as refrigeration systems based on semiconductors. As part of the larger movement toward more sustainable and energy-efficient vehicle features, China's expanding automotive industry, especially in the EV sector, has greatly increased demand for semiconductor refrigerators.
The semiconductor car refrigerator market is anticipated to grow at the highest CAGR in the North American region. The rising demand for electric vehicles (EVs) and the expanding use of energy-efficient technologies in the automotive sector are the main drivers of this growth. The market is growing quickly as a result of major automakers in the US and Canada emphasizing sustainability and providing more sophisticated, environmentally friendly car features, such as refrigeration systems based on semiconductors. Additionally, the adoption of energy-efficient automotive technologies is also being aided by government policies and incentives that support clean energy and electric vehicles.
Key players in the market
Some of the key players in Semiconductor Car Refrigerator market include Kemin, Heson Electric, Beper, Thermo Fisher, Phononic, Ezetil, Koolatron and Dometic Group.
In June 2024, Kemin Industries has acquired Archangel Inc., a company specializing in antimicrobials for fermentative biofuel production. With the acquisition of Archangel Inc., Kemin enhances its portfolio of antimicrobial solutions with the NOVA(TM) EZL and NOVA(TM) EZP products that support biofuel production. The acquisition also transfers four full patent applications from Archangel to Kemin.
In September 2023, Phononic announced a strategic supply agreement to provide thermoelectric cooling devices and related design and engineering services to Luminar, a global automotive technology company ushering in a new era of vehicle safety and autonomy.
In February 2023, Thermo Fisher Scientific Inc. entered into a definitive agreement to acquire CorEvitas, a provider of regulatory-grade, real-world evidence for approved medical treatments and therapies, from Audax Private Equity, for $912.5 million in cash. CorEvitas will become part of Thermo Fisher's Laboratory Products and Biopharma Services segment.