Ultracapacitor (Supercapacitor) Cells Industry Research: the global market size is projected to grow from USD 1.02 billion in 2024 to USD 1.47 billion by 2030

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Published: 2024-07-10

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According to the new market research report "Ultracapacitor (Supercapacitor) Cells- Global Market Share and Ranking, Overall Sales and Demand Forecast 2024-2030", published by QYResearch, the global Ultracapacitor (Supercapacitor) Cells market size is projected to grow from USD 1.02 billion in 2024 to USD 1.47 billion by 2030, at a CAGR of 6.27% during the forecast period (2024-2030).

 

 Ultracapacitor (Supercapacitor) Cells

Source: QYResearch, "Ultracapacitor (Supercapacitor) Cells- Global Market Share and Ranking, Overall Sales and Demand Forecast 2024-2030”

 

 

  • Global Ultracapacitor (Supercapacitor) Cells Top 19Players Rankingand Market Share (Ranking is based on the revenue of 2023, continually updated)

Ultracapacitor (Supercapacitor) Cells
Source: QYResearch, "Ultracapacitor (Supercapacitor) Cells- Global Market Share and Ranking, Overall Sales and Demand Forecast 2024-2030”

This report profiles key players of Ultracapacitor (Supercapacitor) Cells such as Maxwell Technologies, Inc., Panasonic Holdings Corporation, VINATech Co., Ltd., Nippon Chemi-Con Corporation, Skeleton Technologies, Man Yue Technology Holdings Limited, LS Materials Co., Ltd., KYOCERA AVX Components Corporation, ELNA Co., Ltd., Ningbo CRRC New Energy Technology Co., Ltd., Nantong Jianghai Capacitor Co., Ltd., Beijing HCC Energy Technology Co., Ltd., Eaton Corporation plc, KEMET Corporation, Jinzhou Kaimei Power Co., Ltd., Cornell Dubilier Electronics, Inc., Ioxus, Shanghai Aowei Technology Development Co., Ltd., Shandong Goldencell Electronics Technology Co., Ltd., etc.

In 2023, the global top five Ultracapacitor (Supercapacitor) Cells players account for 30.28% of market share in terms of revenue. Above figure shows the key players ranked by revenue in Ultracapacitor (Supercapacitor) Cells.

 

  • Ultracapacitor (Supercapacitor) Cells, Global Market Size, Split by Product Segment

Ultracapacitor (Supercapacitor) Cells
Source: QYResearch, "Ultracapacitor (Supercapacitor) Cells- Global Market Share and Ranking, Overall Sales and Demand Forecast 2024-2030”

 

 

In terms of product type, Radial Type is the largest segment, hold a share of 58.90%.


  • Ultracapacitor (Supercapacitor) Cells, Global Market Size, Split by Application Segment

Ultracapacitor (Supercapacitor) Cells
Source: QYResearch, "Ultracapacitor (Supercapacitor) Cells- Global Market Share and Ranking, Overall Sales and Demand Forecast 2024-2030”

 

In terms of product application, Transportation is the largest application, hold a share of 56.02%.


  • Ultracapacitor (Supercapacitor) Cells, Global Market Size, Split by Region

 Ultracapacitor (Supercapacitor) Cells

Source: QYResearch, "Ultracapacitor (Supercapacitor) Cells- Global Market Share and Ranking, Overall Sales and Demand Forecast 2024-2030”



Market Drivers:

D1: As an emerging energy storage technology, Ultracapacitor (Supercapacitor) Cells has always attracted much attention. Many governments have introduced a number of incentive policies to promote the healthy and rapid development of the Ultracapacitor (Supercapacitor) Cells industry. Ultracapacitor (Supercapacitor) Cells is listed as an important part of the long-term development plan of the national energy field.

D2: Electric double layer capacitors EDLC are relatively environmentally friendly and are in great demand in trams, electric and hybrid vehicles, and energy. Downstream demand is the direct driving force for market development.

D3: Due to issues such as energy density, the utilization rate of Ultracapacitor (Supercapacitor) Cells in the market is not high. The market space in the future is relatively large.

 

Challenge:

C1: Compared with batteries and other capacitors, although it has the characteristics of fast charging and fast discharging, as well as good temperature characteristics, it is green and environmentally friendly and has a long service life. However, its energy density is low, making it difficult to use it alone as an energy storage device, and its actual application penetration rate is low. This is also one of the main reasons why we were optimistic about this industry before 2016, but its development was slow in the later period. Due to low power and low energy density, the application scenarios of the product are limited. With the development of materials and technologies in the future, high-power, high-energy-density Ultracapacitor (Supercapacitor) Cellss will be a major trend in the future.

C2: Different application fields have different needs for product technology research and development. There are currently no monopolies in the market, and downstream demand is widely distributed. Focusing on competitive advantages in specific areas is a better way forward. For example, Ningbo CRRC New Energy Technology mainly focuses on the rail transportation field. Shanghai Aowei Technology mainly focuses on rail transit trams, tunnel locomotives, new energy buses and other fields.

C3: Theoretically, the greater the specific surface area, the greater the capacity. Research has found that although the surface specific area of high-ratio carbon materials is larger, the actual utilization rate is not high because the pores in porous carbon materials are different, which are divided into micropores (<2Nm), mesopores (<2Nm), and mesopores (<2Nm). 2Nm), 2~50nm (2~50nm)), large pores (>50nm), only pores larger than 2nm (water system) or 5nm (non-aqueous system) are conducive to the formation of dual motors, so the pore size distribution should increase the surface area at the same time Make adjustments. In addition, the surface properties (functional groups), conductivity, apparent density, etc. of carbon materials also affect the performance of capacitors.

C4: Develop low-resistance composite materials and improve the conductive properties of materials. It has good compatibility with electrolyte and improves the cycle life of Ultracapacitor (Supercapacitor) Cells. Research on Ultracapacitor (Supercapacitor) Cells electrode materials will focus on the development of existing material preparation processes and structural optimization. Cost and performance require stable mobile power technology.

C5: Although the Ultracapacitor (Supercapacitor) Cells industry maintains rapid development, industry standards need to be improved urgently, which will play a positive role in standardizing Ultracapacitor (Supercapacitor) Cells production and quality control and promoting the development of the Ultracapacitor (Supercapacitor) Cells industry.

C6: For example, hybrid Ultracapacitor (Supercapacitor) Cellss, also known as lithium-ion capacitors, have developed rapidly in recent years. Representative companies include JM Energy, Jianghai Holdings, Taiyo Yuden, VINATech, Cap Energy, etc. If this type of capacitor can be known to the public in the future, its market development will be faster. The factors currently restricting its development include high cost and low familiarity.


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