Commercial and industrial energy storage
Almacenamiento de energรญa comercial e industrial
1737451508966
Almacenamiento de energรญa en el hogar
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Drones
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Energรญa de reserva para telecomunicaciones
Low-Speed Electric Vehicles
Vehรญculos elรฉctricos de baja velocidad
Compact RV Travel
Potencia para vehรญculos recreativos
forklift
Carretilla elevadora
Lead To Lithium Conversion
Conversiรณn de plomo en litio

Pilas de baterรญa

Battery cell is the smallest energy unit of the battery system, realizing the storage and release of electric energy through electrochemical reactions. Its performance directly determines the energy density, life and safety of the battery module and system, which can be categorized into lithium ternary (NCM/NCA), lithium iron phosphate (LFP), lithium cobalt oxide (LCO),ย  Lithium manganese iron phosphate(LTO) and other types according to the material system.

Battery-Cells-1
T11105212GH 3.8V 25Ah

Maximum continuous discharge:15C

Maximum continuous charging: 4C

Cycle life: โ‰ฅ 750 times

Cell weight:~455g

T9280215SH 3,8V 20Ah

Maximum continuous discharge: 20C

Maximum continuous charging: 4C

Cycle life: โ‰ฅ 300 times

Cell weight:~355g

P1190190S4 3,7V 22Ah

Maximum continuous discharge: 20C

Maximum continuous charging: 3C

Cycle life: โ‰ฅ 600 times

Cell weight:~430g

T1174170GH 3,8V 16Ah

Maximum continuous discharge: 15C

Maximum continuous charging: 3C

Cycle life: โ‰ฅ 600 times

Cell weight:~300g

P1174170S4 3,7V 16Ah

Maximum continuous discharge: 20C

Maximum continuous charging: 3C

Cycle life: โ‰ฅ 600 times

Cell weight:~315g

P9574170S 3,7V 12Ah

Maximum continuous discharge: 20C

Maximum continuous charging: 2C

Cycle life: โ‰ฅ 600 times

Cell weight:~250g

Categorรญas de productos
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Aplicaciones

Agricultural-Drone-Spraying
Agricultural Drone Spraying

Crop spraying operations requiring extended flight time, fast charging, and support for frequent takeoffs/landings in high-intensity environments.

Drone-Surveillance-Inspection-1
Drone Surveillance & Inspection

Environmental monitoring, security patrols, or equipment checks; requires weather-resistant operation and persistent endurance.

Home-Energy-Storage_
Almacenamiento de energรญa en el hogar

Stores solar/grid power for household use, prioritizing safety and stable long-term charge/discharge cycles.

Electric-Forklift-Power
Electric Forklift Power

Replaces lead-acid batteries for longer runtime and rapid charging in warehouse logistics.

Electric-Vehicles-scaled_
Electric Vehicle Power

High-density battery cells provide longer range and ultra-fast charging to optimize EV efficiency and quickly replenish power.

DISEร‘O GRATUITO

Planes de baterรญas exclusivos y personalizados Ingenieros profesionales planifican programas de baterรญas uno a uno.

Maximice el efecto del dron con nuestras soluciones de baterรญas a medida

EES-Propose-Requests
Proponer solicitudes
Customized-Solution
Soluciones a medida
End-to-End-Controlled-Production-Testing
Producciรณn y pruebas controladas de principio a fin
Warehouse-and-shipped-out
Almacenamiento y envรญo

Explore la fรกbrica Herewin: La fuente de la calidad

Fundada en 2019, Shenzhen Jarwin Time Technology Co., Ltd. estรก respaldada por un equipo fundador y operativo con mรกs de 20 aรฑos de amplia experiencia en la industria de las baterรญas. Se especializa en el desarrollo y la producciรณn de baterรญas de polรญmero de iones de litio de alto rendimiento.
Descubra quiรฉnes somos y quรฉ representamos. Explorando la meticulosa precisiรณn de nuestros
lรญneas de producciรณn, la gestiรณn eficaz de nuestras fรกbricas y la opiniรณn genuina de nuestros clientes satisfechos,
verรก cรณmo garantizamos la excelencia en cada paso del proceso

Distintos servicios para clientes con distintos patrones

PARA CLIENTES OFFLINE

Plazo de entrega flexible

Plazos de entrega fiables y apoyo al almacenamiento.

Alta rentabilidad

Precios competitivos para maximizar el valor global.

Amplia selecciรณn de productos

Diversas opciones para todos los segmentos del mercado.

PARA CLIENTES EN LรNEA

MOQ bajo

MOQ flexible con opciones de productos mixtos.

Logotipo personalizado

Personalizaciรณn del logotipo para lotes pequeรฑos.

Paquete integral de marketing

Proporcionar imรกgenes y vรญdeos de calidad para aumentar los ingresos por ventas.

PARA CLIENTES DE MARCA

Derechos regionales exclusivos

Proporcionar todos los recursos y capacidades de herewin

R&D Resources

Custom sample within 7 days with R&D capabilities.

Entrega rรกpida

Producciรณn eficiente y envรญo en 25 dรญas como mรกximo.

Production Flow of Battery Cells

Mixingโ€‹
Step 1 :Mixingโ€‹

Blends active materials, binders, and solvents into a uniform slurry to ensure consistent electrochemical performance.

Coating
Step 2 :Coating

Spreads the slurry onto metal foils (anode/cathode) with precise thickness control for optimal energy density.

Drying
Step 3 :Drying

Removes solvents from coated electrodes to stabilize material adhesion and prevent cracking.

Coating&Winding
Step 4 :Coating & Winding

Combines anode/cathode layers with separators and winds them into a compact jellyroll structure.

Pressuring Film
Step 5 :Pressuring Film

Compresses electrodes to enhance density and conductivity while maintaining porosity for ion flow.

Making Filmโ€‹
Step 6 :Making Filmโ€‹

Trims electrodes into precise dimensions to fit battery cell specifications.

Stacking
Step 7 :Stacking

Aligns anode/separator/cathode layers in a Z-fold pattern to maximize space efficiency.

Welding
Step 8 :Welding

Joins electrode tabs using laser welding to minimize resistance and ensure current stability.

Encapsulationโ€‹
Step 9 :Encapsulationโ€‹

Seals cells in aluminum-plastic film to protect against moisture, dust, and mechanical stress.

Baking
Step 10 :Baking

Removes residual moisture from cells under vacuum to prevent electrolyte degradation.

Injection
Step 11 :Injection

Fills electrolyte into cells to enable ion transport between electrodes.

Charging
Step 12 :Charging

Activates cells with initial charging to form a stable solid-electrolyte interface (SEI).

Extracting Airโ€‹
Step 13 :Extracting Airโ€‹

Evacuates gas from cells to eliminate air pockets and ensure full electrolyte penetration.

Charging and Dischargingโ€‹
Step 14 :Charging and Dischargingโ€‹

Cycles cells to stabilize performance and screen out defects before final assembly.

Testing
Etapa 15 : Pruebas

Valida la capacidad, la impedancia y la seguridad (por ejemplo, sobrecarga, cortocircuito) segรบn protocolos estrictos.

Assemblingโ€‹
Etapa 16 :Montaje

Integra las cรฉlulas en mรณdulos o paquetes con BMS, cableado y sistemas de gestiรณn tรฉrmica.

MรS DETALLES

Mรกs informaciรณn sobre los detalles de producciรณn y el proceso de fabricaciรณn

Proceso de prueba

Feria&Certificaciรณn

Las certificaciones son el punto fuerte de herewin.
Satisface las necesidades de todos los mercados, y las fรกbricas de origen estรกn totalmente certificadas para garantizar la calidad.

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PONERSE EN CONTACTO

ยฟQuiere saber quรฉ credenciales necesita su mercado? Pรณngase en contacto conmigo para enviarle una imagen de alta resoluciรณn

Categorรญa relacionada

Drone-Battery-
Home-Energy-Storage-Solutions-2
Semi-solid-Battery
Industrial-EV-Battery-Packs
Commercial-Industrial-Energy-Storage-Solutions-4

Preguntas frecuentes

What distinguishes Li-ion polymer cells from traditional lithium batteries?

Li-ion polymer cells utilize gel polymer electrolyte technology, offering key differences compared to traditional liquid lithium batteries:

Electrolyte Composition

  • Hybrid gel polymer + liquid electrolyte (vs. pure liquid electrolyte in traditional cells).

Safety Improvements

  • 60% lower leakage risk and 40% reduced combustion potential.

Structural Advantages

  • 30% smaller volume, 20% lighter weight, and support for flexible/custom shapes.

Performance Metrics

  • Densidad energรฉtica: 170-350 Wh/kg
    (Traditional liquid: 160-170 Wh/kg; Semi-solid energy storage series: 170-190 Wh/kg; High-density semi-solid series: 300-350 Wh/kg).

  • Charging Efficiency: 50% faster than traditional batteries.

  • Ciclo de vida: โ‰ฅ2,000 cycles.

What are the core advantages of polymer cells?
  1. Safety

    • Passes nail penetration and crush tests.

    • Stable operation at 70-80ยฐC (158-176ยฐF).

    • UL/CE certified.

  2. Charging Performance

    • 30-minute fast charging (up to 80% capacity).

    • Compatible with mainstream fast-charging protocols.

  3. Sustainability

    • โ‰ฅ2,000-cycle lifespan.

    • 95% material recyclability rate.

  4. Diseรฑo compacto

    • 30% smaller size and 20% lighter weight vs. traditional cells.

Where are polymer cells commonly used?

Mainstream Applications

  • Consumer Electronics: Smartphones, TWS earbuds (prioritizing slim designs + fast charging).

  • New Energy Vehicles: Power batteries (20% range increase), flexible in-car displays.

  • Industrial Energy Storage: Residential energy storage systems (safety + longevity), backup power units.

Emerging Applications

  • IoT sensors (flexible integration), vaping devices (miniaturization), wearables.

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