Delivering Extended Flight Time, Enhanced Stability, and Optimized Cost Efficiency
As FPV applications continue expanding across racing, aerial cinematography, industrial inspection, and long-range missions, pilots and integrators are increasingly seeking battery solutions that balance performance, reliability, and cost efficiency.
Xupernova proudly introduces its next-generation Tabless FPV Battery, engineered to provide longer endurance, improved thermal stability, enhanced safety performance, and competitive cost advantages, offering a new alternative to traditional FPV LiPo batteries.
The new FPV battery adopts advanced tabless cell technology, significantly improving current distribution and internal resistance performance compared with conventional tab-based LiPo batteries.
By eliminating traditional current concentration points, tabless architecture enables:
• More uniform current flow across the cell
• Reduced internal heat generation
• Improved discharge stability under continuous load
• Enhanced long-term cycle consistency
This design makes the battery particularly suitable for demanding FPV flight scenarios that require sustained power output.
Compared with traditional FPV LiPo batteries, Xupernova’s tabless FPV battery delivers longer effective flight time through improved energy efficiency and reduced energy loss during discharge.
The optimized cell structure allows more usable energy within the same capacity range, helping pilots achieve extended mission duration without increasing system weight or battery volume.
In addition to performance improvements, the new tabless FPV battery is designed with optimized manufacturing efficiency, enabling more competitive pricing compared to traditional high-performance FPV LiPo batteries.
This makes the battery particularly attractive for:
• Professional FPV racing teams
• Aerial photography operators
• Industrial drone fleets
• Training and large-scale FPV deployment programs
By balancing performance and cost efficiency, Xupernova helps customers achieve better overall operational value.
Safety remains a core focus in FPV battery design.
The tabless architecture reduces localized heat accumulation, improving thermal dissipation and lowering the risk of overheating under high-load discharge conditions.
Combined with optimized material selection and structural design, the battery delivers enhanced operational stability and improved safety reliability during aggressive flight operations.
The new battery series offers a 25C discharge rate, providing stable and consistent power delivery suitable for most FPV flight profiles, including long-range cruising, aerial filming, and freestyle flying.
Rather than focusing solely on peak discharge bursts, the battery is engineered to prioritize sustained output stability, helping maintain predictable flight performance throughout the discharge cycle.
Compared with certain high-burst LiPo batteries, the tabless FPV battery features a more balanced voltage discharge profile.
This characteristic contributes to smoother power output and improved overall system stability, particularly during extended flight operations where consistent energy delivery is critical.
By prioritizing stable voltage behavior and energy utilization efficiency, the battery supports reliable flight performance across a wide range of operating conditions.
The Xupernova Tabless FPV Battery is developed to support a broad range of FPV platforms, including racing, cinematic, and long-range applications, providing pilots with a dependable and efficient power solution.
With its combination of tabless cell innovation, extended endurance, enhanced safety, and competitive cost positioning, the Xupernova next-generation FPV battery represents a new step forward in FPV power system evolution.
Xupernova — Powering Tomorrow, Today