新一代直流驅動平台|Next-Generation DC Drive Platform

氫燃料電池 × 直流有刷馬達 × 40% 功率放大器

Hydrogen Fuel Cell × DC Brushed Motor × 40% Power Enhancement Module

重塑電動車與全球工業馬達市場的新架構

新一代直流驅動平台,我們已完成此設計,結合氫燃料電池、直流有刷馬達、40% 功率放大器、變軸器發電與簡化動能回收系統,為電動車與全球工業馬達市場提供更低成本、更輕量、更安全、更容易維護的新型動力解決方案。

新一代直流驅動平台|Next-Generation DC Drive Platform

此架構以更簡單的直流系統取代傳統複雜電控架構,讓動力系統回歸更直接、更容易維護、更具成本優勢的設計方向。

We have completed the design of a next-generation DC drive platform that integrates hydrogen fuel cells, DC brushed motors, a 40% power enhancement module, variable-axis power generation, and a simplified kinetic energy recovery system. This platform provides a lower-cost, lighter-weight, safer, and easier-to-maintain power solution for electric vehicles and the global industrial motor market.

產業的核心問題 Industry Challenges

  1. 實測功率提升 30~40%:本平台的功率放大器已實測應用於直流有刷馬達,可有效提升約 30% 至 40% 的功率表現。在相同輸出需求下,可降低能源消耗;在相同能源條件下,則有機會提升動力輸出與續航表現。
  2. 減少大型鋰電池重量:傳統電池電動車的大型鋰電池組重量通常相當高,對車輛能耗、成本與安全都有直接影響。本平台以氫燃料電池取代大型鋰電池系統,可大幅減少車輛重量,預估可降低約 500 至 700 公斤車重,讓車輛更輕、更省能,也更有利於提升行駛效率。
  3. 不需長時間充電:傳統電動車需要等待充電時間,快充也會增加電池壓力與基礎建設需求。氫燃料系統可採用快速補氫或更換氣瓶方式補能,大幅縮短等待時間,提高車輛使用效率。
  4. 氫氣安全擴散特性:氫氣具有極輕的特性,若發生外洩,會快速向上擴散至空氣中,不會像大型鋰電池熱失控一樣在車底長時間高溫燃燒。透過適當的氣瓶設計、感測器與排氣導流結構,可進一步提升系統安全性。
  5. 直流疊加控制,系統更簡單:直流電具備容易疊加與調控的特性,可讓車輛加速控制更直接。相較於高頻逆變與複雜三相控制,本平台可減少高階控制晶片、複雜演算法與高成本逆變器的依賴,使整體系統更簡單、更穩定,也更容易維護。
  6. 建立可持續的保養模式:直流有刷馬達的碳刷可設計為快拆式耗材。透過半年或 5000 公里定期更換碳刷,可讓車輛維持穩定輸出,也讓原廠、經銷商與保養廠建立長期穩定的售後服務收入。這不僅解決電動車保養項目減少的產業痛點,也創造新的商業模式。
  1. Tested Power Improvement of 30–40%:The power enhancement module of this platform has been tested on DC brushed motors and has demonstrated an effective power performance improvement of approximately 30% to 40%.Under the same output demand, it can reduce energy consumption. Under the same energy conditions, it can improve power output and driving range performance.
  2. Reduced Large Lithium Battery Weight:Large lithium battery packs in conventional battery electric vehicles are heavy and directly affect vehicle energy consumption, manufacturing cost, and safety risk.By replacing large lithium battery systems with hydrogen fuel cells, this platform can significantly reduce vehicle weight, with an estimated reduction of approximately 500 to 700 kilograms. This makes the vehicle lighter, more energy-efficient, and more favorable for improving driving efficiency.
  3. No Long Charging Time Required:Conventional electric vehicles require charging time, and fast charging can increase battery stress and infrastructure demand. A hydrogen fuel system can be refueled through fast hydrogen filling or cylinder replacement, significantly reducing waiting time and improving vehicle utilization efficiency.
  4. Safe Hydrogen Dispersion Characteristics:Hydrogen is extremely light. If leakage occurs, it rapidly disperses upward into the air and does not remain under the vehicle in prolonged high-temperature burning like thermal runaway in large lithium battery systems. With proper cylinder design, sensors, and exhaust-guiding structures, system safety can be further improved.
  5. DC Power Stacking Control for a Simpler System:Direct current is easier to stack and control, allowing vehicle acceleration control to become more direct. Compared with high-frequency inverters and complex three-phase control systems, this platform can reduce reliance on advanced control chips, complex algorithms, and high-cost inverters, making the overall system simpler, more stable, and easier to maintain.
  6. Sustainable Maintenance Model:The carbon brushes in DC brushed motors can be designed as quick-release consumable parts. By replacing the carbon brushes every six months or every 5,000 kilometers, the vehicle can maintain stable output while enabling OEMs, dealers, and service centers to establish long-term and stable after-sales service revenue. This not only addresses the industry pain point of reduced maintenance items in electric vehicles, but also creates a new business model.

對電動車產業:The EV Industry

本平台可降低整車製造成本、減少大型鋰電池使用量、降低車身重量、縮短補能時間、減少高階晶片與逆變器需求,並建立新的售後維護收入模式。

This platform can reduce vehicle manufacturing costs, decrease reliance on large lithium batteries, reduce vehicle weight, shorten refueling time, lower the need for advanced chips and inverters, and create a new after-sales maintenance revenue model.

對全球工業馬達市場: The Global Industrial Motor Market

本平台不只適用於電動車,也可延伸至工業馬達、水泵、風扇、空壓機、輸送帶、冰水主機、AGV 無人搬運車、電動堆高機與自動化設備。透過直流有刷馬達與功率放大器架構,可降低能耗、簡化控制系統,並讓維護流程更標準化。

This platform is not limited to electric vehicles. It can also be applied to industrial motors, pumps, fans, air compressors, conveyor systems, chillers, AGVs, electric forklifts, and automation equipment. Through the DC brushed motor and power enhancement architecture, energy consumption can be reduced, control systems can be simplified, and maintenance procedures can become more standardized.

從電動車到全球工業馬達市場,本平台不只是單一動力系統的改良,而是一套可協助企業升級能源效率、降低製造與維護成本、提升設備安全性的直流驅動解決方案。

透過氫燃料電池、直流有刷馬達、40% 功率放大器、變軸器發電與簡化動能回收系統的整合,企業可導入更輕量、更高效率、更容易維護的新型動力架構,為未來交通工具、工業設備與自動化應用建立更具競爭力的能源基礎。

From electric vehicles to the global industrial motor market, this platform is more than an improvement to a single power system. It is a DC drive solution designed to help companies upgrade energy efficiency, reduce manufacturing and maintenance costs, and improve equipment safety.

By integrating hydrogen fuel cells, DC brushed motors, a 40% power enhancement module, variable-axis power generation, and a simplified kinetic energy recovery system, companies can adopt a lighter, more efficient, and easier-to-maintain power architecture, creating a more competitive energy foundation for future transportation, industrial equipment, and automation applications.

產品展示影片:Product Demonstration Video

本影片展示新一代直流驅動平台的核心架構與運作概念,包含氫燃料電池供電、直流有刷馬達驅動、40% 功率放大器、氫氣瓶快速補能、氫氣向上擴散安全特性、怠速直流供電、變軸器發電、碳刷快拆保養,以及電動車與工業馬達應用場景。

透過視覺化動畫,可清楚呈現本平台如何降低大型鋰電池依賴、減少車輛重量、簡化電控系統、提升能源效率,並建立更容易維護的新型動力解決方案。

This video demonstrates the core architecture and operating concept of the next-generation DC drive platform, including hydrogen fuel cell power supply, DC brushed motor drive, the 40% power enhancement module, fast hydrogen cylinder refueling, upward hydrogen dispersion safety characteristics, idle DC power supply, variable-axis power generation, quick-release carbon brush maintenance, and applications in electric vehicles and industrial motor systems.

Through visualized animation, the video clearly shows how this platform can reduce dependence on large lithium batteries, lower vehicle weight, simplify the electronic control system, improve energy efficiency, and create a new power solution that is easier to maintain.