ุจุทุงุฑูุฉ ุงูุทุงุฆุฑุฉ ุจุฏูู ุทูุงุฑ
Herewin UAV battery series is built for industrial drones that require lightweight design, high energy density and stable power output. With optimized lightweight structural design and high-performance cell technology, the series supports 15Cโ25C continuous discharge, up to 30C pulse output, 24Sโ32S smart UAV battery systems and high-power fast charging solutions.
ุฃุจุฑุฒ ุงูู
ูุงู
ุญ:
ยท Lightweight structural design for longer flight endurance
ยท High energy density cell platform with up to 400Wh/kg mass-production capability
ยท High-rate discharge performance, supporting up to 30C pulse output
ยท 67Ah high-capacity single-cell platform for long-endurance UAVs
ยท 18S 47Ah smart plug-in battery with 500A high-current output
ยท Custom voltage, capacity, connector, structure and smart BMS options
Applications:
Agricultural drones, logistics delivery drones, high-altitude cleaning drones, emergency firefighting drones, mapping and inspection UAVs, VTOL platforms and heavy-lift transport drones.
ยท 53.2V 14S1P configuration with 30000mAh capacity and 1596Wh nominal energy
ยท Stable 15C discharge supports takeoff, route adjustment and changing UAV loads
ยท Up to 3C charging supports practical battery rotation for repeated operations
ยท 7930g soft pack design balances energy capacity with UAV integration requirements
ยท Cycle life of at least 750 cycles under specified operating conditions
ยท 22.8V 6S1P configuration with 30000mAh capacity and 684Wh nominal energy
ยท Stable 15C continuous discharge supports takeoff and changing UAV loads
ยท Up to 3C charging supports practical battery rotation for repeated operations
ยท 3430g soft pack design balances capacity with UAV installation requirements
ยท Cycle life of at least 750 cycles under specified operating conditions
ยท 68.4V 18S1P configuration with 30000mAh capacity and 2052Wh nominal energy
ยท 25C continuous discharge supports demanding takeoff and changing UAV loads
ยท Up to 5C charging enables faster battery rotation for intensive operations
ยท 10200g soft pack design for high-voltage professional UAV integration
ยท Cycle life of at least 1000 cycles under specified operating conditions
ยท 68.4V 18S1P configuration with 30000mAh capacity and 2052Wh nominal energy
ยท Stable 15C continuous discharge supports takeoff and changing UAV loads
ยท Up to 3C charging supports practical battery rotation for repeated operations
ยท 10200g soft pack design balances high-voltage energy with UAV integration
ยท Cycle life of at least 750 cycles under specified operating conditions
ยท 68.4V 18S1P configuration with 47000mAh capacity and 3214.8Wh nominal energy
ยท 20C continuous discharge supports demanding takeoff and changing payload conditions
ยท Up to 4C charging improves battery rotation for intensive UAV operations
ยท 16100g high-voltage soft pack design for large heavy-duty UAV integration
ยท Cycle life of at least 600 cycles under specified operating conditions
ยท 53.2V 14S1P configuration with 47000mAh capacity and 2500.4Wh nominal energy
ยท 20C continuous discharge supports demanding takeoff and changing UAV loads
ยท Up to 4C charging improves battery rotation for intensive field operations
ยท 12500g high-voltage soft pack design for large industrial UAV integration
ยท Cycle life of at least 600 cycles under specified operating conditions
ยท 45.6V 12S1P configuration with 47000mAh capacity and 2143.2Wh nominal energy
ยท 20C continuous discharge supports high-current takeoff and changing UAV loads
ยท Up to 4C charging improves battery rotation for repeated industrial operations
ยท 10650g large-capacity soft pack design for heavy-duty UAV integration
ยท Cycle life of at least 600 cycles under specified operating conditions
ยท 200000W high-power charging platform for industrial UAV batteries
ยท Supports 14S to 28S LiPo and LiHV drone battery packs
ยท Dual-channel output with up to 200A maximum current per channel
ยท AC 260-520V high-voltage input for industrial power environments
ยท QS10 output connector for high-current UAV battery charging
ุงูุชุทุจููุงุช
For 100โ200kg heavy-lift drones, Herewin batteries deliver longer flight time, stable high-power output and faster turnaround for cargo transport and industrial UAV missions.
Robust, weather-resistant batteries supporting prolonged crop spraying missions with intelligent power management.
High-voltage battery systems engineered for sustained power delivery, empowering industrial drones to effortlessly lift and transport heavy equipment.
High energy density to support frequent flights in fire scenes, high-temperature resistant packaging for complex environments, ideal for emergency takeoff, landing, and supply delivery during rescue operations.
The ultra-long cycle life battery enables drones to continuously perform large-scale terrain surveying and high-precision 3D modeling tasks in extreme temperatures.
The lightweight design enhances drone maneuverability, enabling efficient thermal imaging detection of high-voltage power grids and comprehensive inspection of complex pipeline networks.
FREE DESIGN
Customized exclusive battery plans! Professional engineers plan battery programs one-on-one.
Maximize Drone Effect with Our Tailored Battery Solutions
Explore Herewin Factory: The Source of Quality
Founded in 2019, Shenzhen Jarwin Time Technology Co., Ltd. is backed by a founding and operational team with over 20 years of extensive experience in the battery industry. It specializes in developing and producing high-performance lithium-ion polymer batteries.
Gain a comprehensive insight into who we are and what we stand for. By exploring the meticulous precision of our
production lines, the efficient management of our factories, and the genuine feedback from our satisfied customers,
youโll see how we ensure excellence at every step of the process
Different Services For Clients With Different Patterns
FOR OFFLINE CLIENTS
Flexible Delivery Time
Reliable delivery schedules and warehousing support.
High Cost-Effectiveness
Competitive pricing to maximize overall value.
Wide Product Selection
Diverse options to cater to all market segments.
FOR ONLINE CLIENTS
Low MOQ
Flexible MOQ with mixed product options.
Custom Logo
Personalized logo customization for small batches.
One-Stop Marketing Package
Provide quality images, videos to enhance sales revenue.
FOR BRAND CLIENTS
Exclusive Regional Rights
Provide all of herewin's resources and capabilities
R&D Resources
Custom sample within 7 days with R&D capabilities.
Fast Delivery
Efficient production and ship within 25 days at the fastest.
Production Flow of Drone Battery
Open packaging and sort materials.
Full inspection of grouped cells for defects: leakage, scratches, dents, punctures, swelling, improper foam alignment (exposed tabs or missing bottom foam).
Measure cell voltage and internal resistance; screen and rebalance cells with excessive deviations.
Trim electrode tabs to specification using a tab-cutting machine.
Weld tabs with an ultrasonic welder and trim to ensure flush alignment.
Trim tabs flush with weld points and press flat onto foam padding.
Solder wires using an electric iron.
Place kraft paper for insulation and cover with high-temperature adhesive tape.
Install battery module into casing per assembly specs and connect wiring.
Connect module to charger, switch to standard voltage mode, activate slow charge, and initiate charging.
Apply sealant to screw holes, install groove-down silicone plugs, and reinforce sealing at designated points.
Verify communication, output voltage, temperature sensing, discharge curves, and leakage.
Inspect for scratches, adhesive residue, stripped screws, and ensure labels are legible/undamaged.
Label units, place in foam-lined boxes, seal in PE bags with desiccant, and secure with top foam padding.
Box approved units and dispatch.
LEARN MORE DETAIL
Learn more about production details and manufacturing process
Testing Process
Fair&Certification
Certifications are herewin’s greatest strength.
Meets the needs of all markets, and the source factories are fully certified to ensure quality
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FAQs
Drone batteries must align with mission-specific demands:
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Agricultural Spraying Drones: Require high-capacity batteries (8,000mAh+) for extended operation, paired with fast-charging capabilities, high-current discharge, and lightweight design.
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Aerial Photography Drones: Prioritize compact, lightweight pouch-type polymer Li-ion batteries with extended flight time.
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High-Speed Acrobatic Drones: Demand high discharge-rate batteries to sustain rapid acceleration bursts and stable power output.
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Security/Mapping/Firefighting Drones: Focus on batteries with long endurance, temperature resilience, and durability across repeated cycles.
Reduced Performance in Cold Weather
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Pre-warm batteries before use.
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Limit flight time to half of normal duration in low temperatures.
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Raise voltage alarm thresholds to prevent premature shutdowns.
Short Circuit Risks
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Transport batteries in explosion-proof cases.
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Avoid simultaneous contact of tools with positive/negative terminals during maintenance.
Casing Damage
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Handle with care; secure straps before flight.
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Retire batteries immediately if outer layers are compromised.
Mixing Batteries/Improper Charging
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Never combine old and new batteries.
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Avoid parallel charging of mismatched battery models.
Charging Protocol
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Use manufacturer-approved chargers.
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Prevent overcharging; perform balance charging periodically.
Storage Guidelines
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Maintain 40-60% charge for long-term storage.
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Store in a cool, dry environment (15-25ยฐC / 59-77ยฐF).
Usage Precautions
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Avoid deep discharges (never drain below 20%).
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Inspect for swelling, leaks, or damage post-flight.
Protective Measures
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Keep batteries dry and shielded from corrosive substances.
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Clean contacts and surfaces after each mission.
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