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【国信电子胡剑团队】江海股份:超级电容、铝电解电容有望在AI服务器中广泛应用
JHCCJHCC(SZ:002484) 剑道电子·2025-09-12 14:20

Core Viewpoint - The report highlights the potential for aluminum electrolytic capacitors and supercapacitors to be widely used in AI servers, driven by increasing demand for high voltage and compact components in the AI sector [4] Financial Performance - In 1H25, the company achieved revenue of 2.694 billion yuan (YoY +13.96%) and a net profit attributable to shareholders of 358 million yuan (YoY +3.19%). The net profit after deducting non-recurring items was 344 million yuan (YoY +8.96%) [5] - For 2Q25, the company reported revenue of 1.536 billion yuan (YoY +17.02%, QoQ +32.69%) and a net profit of 206 million yuan (YoY -1.92%, QoQ +35.82%). The net profit after deducting non-recurring items was 207 million yuan (YoY +10.54%, QoQ +51.01%) [5] - The company's gross margin for 1H25 was 24.93% (YoY -0.01 percentage points), and the net margin was 13.42% (YoY -1.46 percentage points) [5] Aluminum Electrolytic Capacitors - In 1H25, revenue from aluminum electrolytic capacitors reached 2.229 billion yuan (YoY +16.70%) with a gross margin of 26.75% (YoY +0.19%). Growth was driven by increased demand in the photovoltaic sector and robust needs in UPS and communication power supply sectors [6] - The introduction of new products, such as MLPC for AI servers and solid-liquid hybrid capacitors for the automotive sector, is expected to enhance growth. The shift towards higher voltage requirements in AI servers will significantly increase the demand for horn-shaped capacitors [6] - The manufacturing process for horn-shaped aluminum electrolytic capacitors will transition from traditional chemical etching to atomic deposition technology, leading to higher product prices [6] Supercapacitors - In 1H25, supercapacitor revenue was 162 million yuan (YoY +48.93%) with a gross margin of 16.86% (YoY -3.71%). The decline in gross margin is attributed to the company's efforts to explore new application areas [7] - Supercapacitors are expected to become standard components in AI computing clusters due to their ability to provide instantaneous power compensation during significant power fluctuations caused by AI chip power consumption [7] - The company's EDLC and LIC products have received certifications from several leading domestic and international companies, with EDLC expected to achieve scale due to its lower heat generation and cost advantages [7] - The supercapacitor market is anticipated to experience explosive growth driven by increasing demand across various sectors, including AI servers, energy storage, smart meters, and controlled nuclear fusion [7]