Commercial and industrial energy storage
Stockage d'énergie commercial et industriel
Herewin Home Energy Storage Battery
Stockage de l'énergie à domicile
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Drones
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Alimentation de secours pour les télécommunications
Low-Speed Electric Vehicles
Véhicules électriques à faible vitesse
Compact RV Travel
Alimentation des véhicules récréatifs
forklift
Chariot élévateur à fourche
Lead To Lithium Conversion
Conversion du plomb en lithium

High Energy Density UAV Battery

Herewin high energy density UAV batteries use advanced semi-solid NMC pouch cell technology to deliver more usable energy with less battery weight. With cell-level energy density platforms from 320 Wh/kg to 400 Wh/kg, these lightweight UAV batteries help extend flight endurance, improve payload efficiency and increase overall aircraft performance.

Designed for mapping, inspection, surveillance, logistics, VTOL and other endurance-focused UAV missions, each battery pack can be customized according to voltage, average current, peak current, battery compartment, weight limit and target flight time.

· 320–400 Wh/kg cell-level energy density platforms
· Lightweight battery design for longer UAV flight time
· Improved payload-to-battery weight ratio
· Stable discharge performance for endurance-focused missions
· Multiple voltage and capacity configurations
· Custom dimensions, connector, enclosure and BMS available

high energy density UAV battery
Herewin 12S1P 45.6V 33000mAh Semi-Solid UAV Battery | 350Wh/kg

· 350Wh/kg high energy density for extended flight time
· Semi-solid NMC-based energy platform for lightweight UAV integration
· 10C discharge for stable industrial drone output
· 12S1P 45.6V 33000mAh platform with only 4680g pack weight
· Cycle life ≥100 with operating temperature range of -20~60℃

Herewin 14S1P 51.8V 22000mAh Semi-Solid UAV Battery | 320Wh/kg

· 320Wh/kg high energy density for extended flight time
· Semi-solid NMC-based energy platform for lightweight UAV integration
· 10C discharge for stable industrial drone output
· 14S1P 51.8V 22000mAh platform with only 4000g pack weight
· Cycle life ≥500 with operating temperature range of -20~60℃

Herewin 12S1P 44.4V 22000mAh Semi-Solid UAV Battery | 320Wh/kg

· 320Wh/kg high energy density for extended flight time
· Semi-solid NMC-based energy platform for lightweight UAV integration
· 10C discharge for stable industrial drone output
· 12S1P 44.4V 22000mAh platform with only 3320g pack weight
· Cycle life ≥500 with operating temperature range of -20~60℃

Herewin 14S1P 51.8V 10500mAh Semi-Solid UAV Battery | 310Wh/kg

· 310Wh/kg high energy density for longer usable endurance
· Semi-solid battery structure for lightweight professional UAV integration
· 10C discharge for stable industrial drone output
· 14S1P 51.8V 10500mAh platform with only 2070g pack weight
· Recommended connector options: XT60 / XT90S / AS150U, final connector can be customized

18S2P 66.6V 70000mAh High Capacity UAV Battery | 10C

· 70000mAh large-capacity reserve for longer usable mission time
· 10C discharge for stable heavy-duty UAV output
· 18S2P 66.6V high-voltage platform for large industrial drone systems
· 15000g pack weight for practical large-platform integration
· Recommended connector options: QS9 / QS10 / AS150U, final connector can be customized

24S2P 88.8V 90000mAh Semi-Solid UAV Battery | 15C 320Wh/kg

· 320Wh/kg high energy density for longer usable endurance
· 15C discharge for stable heavy-duty UAV output
· 24S2P 88.8V high-voltage platform for large industrial drone systems
· 90000mAh large-capacity reserve with 26300g pack weight
· Recommended connector options: QS10 / QS12 / AS150U, final connector can be customized

12S1P 44.4V 10500mAh Lightweight UAV Battery | 310Wh/kg

· Lightweight pack design for better airframe efficiency
· 10C discharge for stable industrial UAV output
· 12S1P 44.4V platform for compact professional drone systems
· 10500mAh capacity with only 1780g pack weight
· Recommended connector options: XT60 / XT90S / AS150U, final connector can be customized

6S1P 22.2V 10500mAh High Energy Density UAV Battery | 310Wh/kg

· 310Wh/kg high energy density for longer usable endurance
· Lightweight 950g pack for compact UAV integration
· 10C discharge for stable industrial drone output
· 6S1P 22.2V 10500mAh platform for lightweight mission drones
· Recommended connector options: XT60 / XT90S / AS150U, final connector can be customized

Catégories de produits
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High Energy Density UAV Battery Applications

Fixed-Wing Long-Endurance UAVs
Fixed-Wing Long-Endurance UAVs

Lightweight battery solutions provide higher total mission energy for fixed-wing and hybrid UAVs operating over long distances.

Drone-Express-Logistics
Logistics Delivery Drone

Lightweight design increases payload capacity per trip and reduces overall operating costs.

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Heavy-Lift Industrial Drone

For 100–200kg heavy-lift drones, Herewin batteries deliver longer flight time, stable high-power output and faster turnaround for cargo transport and industrial UAV missions.

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Emergency Rescue Drone

Semi-solid-state batteries provide extended endurance and high payload capacity—ideal for long-range rescue missions and safe personnel transport.

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VTOL Aircraft

High-specific-energy batteries support vertical takeoff, transition, cruise, and landing while reducing total battery mass.

high-altitude-reconnaissance-drone-768x512
High-Altitude Reconnaissance Drone

Ultra-high energy density batteries enable continuous surveillance missions exceeding 48 hours at high altitudes.

Find the Right High Energy Density Battery for Your UAV

Share your UAV voltage, average current, peak current, target flight time, maximum battery weight, battery compartment dimensions, connector, and estimated quantity. Our engineering team will evaluate a suitable cell and battery pack configuration.

ees-propose-requests
Proposer des demandes
customized-solution
Solutions personnalisées
end-to-end-controlled-production-testing
Production et essais contrôlés de bout en bout
warehouse-and-shipped-out
Entrepôt et expédition

High Energy Density UAV Battery Manufacturing

Herewin integrates pouch cell manufacturing, cell grading, battery pack design, BMS development, pack assembly, testing, and final quality control.

For high energy density UAV batteries, production control focuses on cell capacity consistency, internal resistance matching, voltage matching, welding quality, current-path design, insulation, structural reinforcement, thermal behavior, and pack-level electrical protection.

Each customized project is evaluated according to the aircraft’s real operating data, including voltage platform, average current, peak current, flight profile, target endurance, battery weight, installation space, and communication requirements.

Différents services pour des clients aux habitudes différentes

POUR LES CLIENTS HORS LIGNE

Délai de livraison flexible

Des calendriers de livraison fiables et un soutien à l'entreposage.

Rapport coût-efficacité élevé

Des prix compétitifs pour maximiser la valeur globale.

Large choix de produits

Diverses options pour répondre à tous les segments du marché.

POUR LES CLIENTS EN LIGNE

Faible MOQ

MOQ flexible avec des options de produits mixtes.

Logo personnalisé

Personnalisation du logo pour les petites séries.

Kit de marketing à guichet unique

Fournir des images et des vidéos de qualité pour améliorer le chiffre d'affaires.

POUR LES CLIENTS DE MARQUE

Droits régionaux exclusifs

Fournir toutes les ressources et capacités d'Herewin

R&D Resources

Custom sample within 7 days with R&D capabilities.

Livraison rapide

Production efficace et expédition dans les 25 jours au plus tard.

step1:unpacking
Étape 1:Unpacking

Ouvrir les emballages et trier les matériaux.

step2:cell-visual-inspection
Étape 2:Cell Inspection visuelle

Inspection complète des cellules groupées pour détecter les défauts : fuites, rayures, bosses, perforations, gonflement, mauvais alignement des mousses (languettes exposées ou mousse inférieure manquante).

step3:voltageresistance-testing
Étape 3:Test de tension/résistance

Mesurer la tension et la résistance interne des cellules ; contrôler et rééquilibrer les cellules présentant des écarts excessifs.

step4:tab-cutting
Étape 4:Tab Cutting

Découper les languettes des électrodes selon les spécifications à l'aide d'une machine à découper les languettes.

step5:tin-application
Étape 5:Tin Application

Souder les languettes à l'aide d'une soudeuse à ultrasons et les ajuster pour garantir un alignement parfait.

step6:tab-trimming
Étape6:Tab Trimming

Ajuster les languettes au niveau des points de soudure et les presser à plat sur le rembourrage en mousse.

step7:wire-soldering
Étape7:Soudure des fils

Souder des fils à l'aide d'un fer à repasser électrique.

step8:insert-insulation
Étape8:Insérer l'isolant

Placer du papier kraft pour l'isolation et recouvrir d'un ruban adhésif haute température.

step9:casing-assembly
Étape9:Assemblage du boîtier

Installer le module de batterie dans le boîtier conformément aux spécifications d'assemblage et connecter le câblage.

step10:chargedischarge-test
Étape10:Test de charge/décharge

Connecter le module au chargeur, passer en mode tension standard, activer la charge lente et lancer la charge.

step11:sealing
Étape 11:Scellement

Appliquer un produit d'étanchéité sur les trous de vis, installer des bouchons de silicone à rainure et renforcer l'étanchéité aux points désignés.

step12:final-functional-test
Étape 12:Essai fonctionnel final

Vérifier la communication, la tension de sortie, la détection de la température, les courbes de décharge et les fuites.

step13:final-visual-check
Étape 13:Contrôle visuel final

Vérifier qu'il n'y a pas de rayures, de résidus d'adhésif, de vis dénudées et que les étiquettes sont lisibles et intactes.

step14:packaging
Étape 14:Packaging

Étiqueter les unités, les placer dans des boîtes doublées de mousse, les sceller dans des sacs en PE avec un déshydratant et les fixer avec un rembourrage en mousse sur le dessus.

step15:shipping
Étape15:Shipping

Mettre en boîte les unités approuvées et les répartir.

PLUS DE DÉTAILS

Developing a new UAV or upgrading an existing battery system? Send us the current battery specification and actual flight data. Herewin can evaluate whether the project should prioritize higher energy density, lower battery weight, longer endurance, higher payload, or a customized voltage platform.

Equitable&Certification

Les certifications sont la plus grande force d'Herewin.
Répond aux besoins de tous les marchés et les usines d'origine sont entièrement certifiées pour garantir la qualité.

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Need Longer Flight Time Without Adding Battery Weight?

Increasing battery capacity alone may also increase aircraft weight and power consumption. Our engineers evaluate specific energy, battery weight, discharge performance, voltage sag, thermal behavior, and propulsion-system compatibility together to identify a more effective UAV battery solution.

Catégorie apparentée

Herewin lipo battery cell
Herewin LFP Battery
Herewin Semi-Solid Drone Battery
Herewin Semi-Solid LFP Battery_
Herewin Off-grid Power

FAQ

What is a high energy density UAV battery?

A high energy density UAV battery stores more energy per unit of weight or volume than a conventional drone battery. Higher specific energy can help extend flight endurance, reduce battery mass, or increase available payload.

How is energy density measured for UAV batteries?

Gravimetric energy density is normally measured in watt-hours per kilogram, or Wh/kg. It can refer either to the cell level or the complete battery pack level. Pack-level energy density is lower because the enclosure, cable, connector, BMS, insulation, and structural components add weight.

What energy density can Herewin UAV batteries provide?

Herewin currently provides cell-level energy density platforms ranging from approximately 320 Wh/kg to 400 Wh/kg, depending on the cell technology and product configuration. The final pack-level energy density must be calculated according to the enclosure, BMS, connector, cable, and structural design.

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