Commercial and industrial energy storage
Penyimpanan Energi Komersial dan Industri
Herewin Home Energy Storage Battery
Penyimpanan Energi Rumah
488642711_1278865830906565_7716202339252007488_n
Drone
pexels-cookiecutter-1148820
Daya Cadangan Telekomunikasi
Low-Speed Electric Vehicles
Kendaraan Listrik Berkecepatan Rendah
Compact RV Travel
Daya RV
forklift
Truk forklift
Lead To Lithium Conversion
Konversi Timbal ke Lithium

Standard High Rate Battery

Flexible packaging, lightweight design, high discharge rate (15C-25C), cost-effective, customizable capacity and voltage.

Ringan
Lightweight and Flexible

12Ah-42Ah
High Discharge Rate

Customizable
Modular & Cost-Effective

Applications include:
training drones, agricultural drones, high-altitude cleaning drones, emergency firefighting drones, transport drones, aerial photography drones, surveying drones, and more.

14S 30000mAh 53.2V 15C LiHV Drone Battery

· 53.2V 14S1P configuration with 30000mAh capacity and 1596Wh nominal energy
· Stable 15C discharge supports takeoff, route adjustment and changing UAV loads
· Up to 3C charging supports practical battery rotation for repeated operations
· 7930g soft pack design balances energy capacity with UAV integration requirements
· Cycle life of at least 750 cycles under specified operating conditions

6S 30000mAh 22.8V 15C LiHV Drone Battery

· 22.8V 6S1P configuration with 30000mAh capacity and 684Wh nominal energy
· Stable 15C continuous discharge supports takeoff and changing UAV loads
· Up to 3C charging supports practical battery rotation for repeated operations
· 3430g soft pack design balances capacity with UAV installation requirements
· Cycle life of at least 750 cycles under specified operating conditions

18S 30000mAh 68.4V 25C Fast-Charging LiHV Drone Battery

· 68.4V 18S1P configuration with 30000mAh capacity and 2052Wh nominal energy
· 25C continuous discharge supports demanding takeoff and changing UAV loads
· Up to 5C charging enables faster battery rotation for intensive operations
· 10200g soft pack design for high-voltage professional UAV integration
· Cycle life of at least 1000 cycles under specified operating conditions

18S 30000mAh 68.4V 15C LiHV Drone Battery

· 68.4V 18S1P configuration with 30000mAh capacity and 2052Wh nominal energy
· Stable 15C continuous discharge supports takeoff and changing UAV loads
· Up to 3C charging supports practical battery rotation for repeated operations
· 10200g soft pack design balances high-voltage energy with UAV integration
· Cycle life of at least 750 cycles under specified operating conditions

18S 47000mAh 68.4V 20C Fast-Charging LiHV Drone Battery

· 68.4V 18S1P configuration with 47000mAh capacity and 3214.8Wh nominal energy
· 20C continuous discharge supports demanding takeoff and changing payload conditions
· Up to 4C charging improves battery rotation for intensive UAV operations
· 16100g high-voltage soft pack design for large heavy-duty UAV integration
· Cycle life of at least 600 cycles under specified operating conditions

14S 47000mAh 53.2V 20C Fast-Charging LiHV Drone Battery

· 53.2V 14S1P configuration with 47000mAh capacity and 2500.4Wh nominal energy
· 20C continuous discharge supports demanding takeoff and changing UAV loads
· Up to 4C charging improves battery rotation for intensive field operations
· 12500g high-voltage soft pack design for large industrial UAV integration
· Cycle life of at least 600 cycles under specified operating conditions

12S 47000mAh 45.6V 20C Fast-Charging LiPo Drone Battery

· 45.6V 12S1P configuration with 47000mAh capacity and 2143.2Wh nominal energy
· 20C continuous discharge supports high-current takeoff and changing UAV loads
· Up to 4C charging improves battery rotation for repeated industrial operations
· 10650g large-capacity soft pack design for heavy-duty UAV integration
· Cycle life of at least 600 cycles under specified operating conditions

Herewin 15C 12S1P 44.4V 12000mAh Pouch UAV Battery

· 15C discharge for stable output in small and medium UAV platforms
· 12S1P 44.4V power system for professional drone integration
· 12000mAh capacity with compact 113 × 77 × 186mm structure
· Supports up to 2C charging for more flexible field operation
· Cycle life ≥600 for training testing and regular UAV use

Drone Express & Logistics

Power Line Inspection Drones
Drone Inspeksi Saluran Listrik

Low-temperature self-heating and fault warning systems ensure stable operations in cold climates.

FPV racing Drone
Racing FPV Drone

High-discharge soft packs deliver instant bursts of power for competitive performance.

Aerial-Surveying-Modeling
Drone Survei

Custom soft pack batteries support precise installation with specialized equipment.

Agricultural-Drone-Spraying
Drone Penyemprotan Pertanian

Cost-effective soft packs strike a balance between performance and affordability.

emergency-firefighting-drones
Firefighting & Emergency Response Drones

High-temperature protection mechanism automatically adjusts output power during fire zone missions.

Logistics & Delivery Drones
Drone Logistik & Pengiriman

Real-time battery monitoring and route optimization guarantee accurate and efficient deliveries.

DESAIN GRATIS

Paket baterai eksklusif yang disesuaikan! Insinyur profesional merencanakan program baterai satu per satu.

Maksimalkan Efek Drone dengan Solusi Baterai Khusus Kami

EES-Propose-Requests
Mengusulkan Permintaan
Customized-Solution
Solusi Khusus
End-to-End-Controlled-Production-Testing
Produksi & Pengujian Terkendali dari Ujung ke Ujung
Warehouse-and-shipped-out
Gudang dan dikirim keluar

Jelajahi Pabrik Herewin: Sumber Kualitas

Didirikan pada tahun 2019, Shenzhen Jarwin Time Technology Co, Ltd didukung oleh tim pendiri dan operasional dengan lebih dari 20 tahun pengalaman luas dalam industri baterai. Perusahaan ini mengkhususkan diri dalam mengembangkan dan memproduksi baterai polimer lithium-ion berkinerja tinggi.
Dapatkan wawasan yang komprehensif tentang siapa kami dan apa yang kami perjuangkan. Dengan mengeksplorasi ketelitian yang cermat dari
lini produksi, manajemen pabrik yang efisien, dan umpan balik yang tulus dari para pelanggan yang puas,
Anda akan melihat bagaimana kami memastikan keunggulan di setiap langkah proses

Layanan Berbeda Untuk Klien Dengan Pola Berbeda

UNTUK KLIEN OFFLINE

Waktu Pengiriman Fleksibel

Jadwal pengiriman dan dukungan pergudangan yang andal.

Efektivitas Biaya Tinggi

Harga yang kompetitif untuk memaksimalkan nilai keseluruhan.

Pilihan Produk yang Luas

Pilihan yang beragam untuk memenuhi semua segmen pasar.

UNTUK KLIEN ONLINE

MOQ rendah

MOQ fleksibel dengan opsi produk campuran.

Logo Khusus

Kustomisasi logo yang dipersonalisasi untuk jumlah kecil.

Paket Pemasaran Satu Atap

Menyediakan gambar dan video berkualitas untuk meningkatkan pendapatan penjualan.

UNTUK KLIEN MEREK

Hak Eksklusif Regional

Menyediakan semua sumber daya dan kemampuan yang dimiliki Herewin

R&D Resources

Custom sample within 7 days with R&D capabilities.

Pengiriman Cepat

Produksi yang efisien dan dikirim dalam waktu paling cepat 25 hari.

Alur Produksi Baterai Drone

Step1:Unpacking
Langkah 1: Membongkar kemasan

Buka kemasan dan sortir bahan.

Step2:Cell-Visual-Inspection
Langkah 2: Inspeksi Visual Sel

Pemeriksaan penuh sel yang dikelompokkan untuk mengetahui adanya cacat: kebocoran, goresan, penyok, tusukan, pembengkakan, penyelarasan busa yang tidak tepat (tab yang terbuka atau busa bagian bawah yang hilang).

Step3:VoltageResistance-Testing
Langkah 3: Pengujian Tegangan / Resistensi

Mengukur tegangan sel dan resistansi internal; menyaring dan menyeimbangkan kembali sel yang memiliki deviasi yang berlebihan.

Step4:Tab-Cutting
Langkah 4 : Pemotongan Tab

Potong tab elektroda sesuai spesifikasi dengan menggunakan mesin pemotong tab.

Step5:Tin-Application
Langkah 5: Aplikasi Timah

Las tab dengan tukang las ultrasonik dan rapikan untuk memastikan keselarasan yang rata.

Step6:Tab-Trimming
Langkah 6 : Pemangkasan Tab

Potong tab yang rata dengan titik las dan tekan rata ke bantalan busa.

Step7:Wire-Soldering_
Langkah 7: Penyolderan Kawat

Solder kabel menggunakan setrika listrik.

Step8:Insert-Insulation
Langkah 8 : Masukkan Isolasi

Tempatkan kertas kraft untuk isolasi dan tutup dengan pita perekat suhu tinggi.

Step9:Casing-Assembly-
Langkah 9: Perakitan Casing

Pasang modul baterai ke dalam casing sesuai spesifikasi perakitan dan sambungkan kabel.

Step10:ChargeDischarge-Test
Langkah 10: Uji Pengisian/Pengosongan

Hubungkan modul ke pengisi daya, alihkan ke mode voltase standar, aktifkan pengisian daya lambat, dan mulai mengisi daya.

Step11:Sealing
Langkah 11 : Penyegelan

Oleskan sealant pada lubang sekrup, pasang sumbat silikon dengan alur ke bawah, dan perkuat penyegelan pada titik-titik yang ditentukan.

Step12:Final-Functional-Test
Langkah12 : Uji Fungsional Akhir

Verifikasi komunikasi, tegangan output, penginderaan suhu, kurva pelepasan, dan kebocoran.

Step13:Final-Visual-Check
Langkah 13 : Pemeriksaan Visual Akhir

Periksa apakah ada goresan, sisa perekat, sekrup yang terlepas, dan pastikan label terbaca/tidak rusak.

Step14:Packaging
Langkah 14:Pengemasan

Beri label pada unit, tempatkan dalam kotak berlapis busa, segel dalam kantong PE dengan pengering, dan amankan dengan bantalan busa bagian atas.

Step15:Shipping
Langkah 15 : Pengiriman

Kotak unit yang disetujui dan pengiriman.

PELAJARI LEBIH DETAIL

Pelajari lebih lanjut tentang detail produksi dan proses manufaktur

Proses Pengujian

Adil & Sertifikasi

Sertifikasi adalah kekuatan terbesar Herewin.
Memenuhi kebutuhan semua pasar, dan pabrik sumbernya telah tersertifikasi penuh untuk memastikan kualitas

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Kategori terkait

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Pertanyaan Umum

How is a drone battery different from a regular lithium battery?

Drone batteries are designed for high power output, prioritizing burst discharge capability dan lightweight structure to meet the demands of quick takeoff, hovering, and agile maneuvers. Regular lithium batteries focus more on energy storage and are not suitable for high-power flight scenarios.

Why did my drone suddenly lose power mid-flight?

This could be due to loose or faulty connectors, overcurrent protection triggering (from rapid acceleration or heavy payload), or battery degradation. Check for secure connections and assess battery condition for signs of aging.

How can I extend flight time?

Reduce the drone’s payload (remove unnecessary accessories), fly in calm weather, avoid rapid acceleration or hovering, and keep the flight altitude low. Ensure the battery is fully charged and at an optimal temperature before takeoff.

Blog Terkait

A compact inspection drone flying inside a dark steel oil-and-gas storage tank with a telemetry overlay
Why the real bottleneck for oil & gas confined-space drone inspection is battery power, not payload — endurance, safety documentation, and turnaround.
A lithium pouch cell on a lab bench with thermocouples at its tabs and center, connected to a data logger displaying temperature and DCIR readouts during a fast-charge test
Learn how to verify a lithium battery cell’s 3C–5C fast-charging capability: test conditions, temperature rise, DCIR growth, capacity retention, and cycle-life acceptance for UAV batteries.
Lithium-ion battery self-discharge voltage drop diagnostic illustration comparing normal and abnormal cell behavior
How to tell normal lithium battery voltage drop from abnormal self-discharge or cell leakage — a 4-level diagnostic framework, cell vs pack causes, and a supplier checklist.
Commercial & industrial ESS total installed cost evaluation - engineering schematic of a BESS container site with grid connection
Battery price per kWh is only part of a commercial ESS project. Safety, grid, EPC, certification, and O&M really drive total installed cost.
Lithium battery discharge curve chart for cell selection showing three C-rate curves with voltage plateau and voltage sag
Read a lithium battery discharge curve to judge voltage stability, usable capacity, and voltage sag under real load — and compare cells on matched test conditions.
A commercial drone window cleaning system hovering against a glass high-rise facade, with an industrial lithium battery pack visible on the airframe
Usable cleaning time, not flight time, decides if drone window cleaning works commercially. See the 5 operating bottlenecks and what to ask a battery supplier.

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