Commercial and industrial energy storage
Armazenamento de energia comercial e industrial
Herewin Home Energy Storage Battery
Armazenamento de energia residencial
488642711_1278865830906565_7716202339252007488_n
Drones
pexels-cookiecutter-1148820
Energia de backup para telecomunicações
Low-Speed Electric Vehicles
Veículos elétricos de baixa velocidade
Compact RV Travel
Energia para veículos recreativos
forklift
Empilhadeira
Lead To Lithium Conversion
Conversão de chumbo em lítio

Bateria com vida útil ultralonga

Usando uma fórmula e um processo especiais de material, a vida útil do ciclo pode exceder 3.000 vezes. A vida útil do calendário é significativamente ampliada, reduzindo o custo total de propriedade. Isso o torna especialmente adequado para uso de longo prazo em aplicações como sistemas de armazenamento de energia e equipamentos industriais.

High Voltage Semi-Solid 18S1P 66.6V 35000mAh UAV Battery | 350Wh/kg

· 350Wh/kg semi-solid high energy density
· 10C discharge for stable high-voltage UAV output
· 35Ah capacity with 7.70 kg lightweight pack
· 1C charging for standard charging workflows
· Suitable for route logistics, higher-voltage cleaning, and selective agricultural spraying

Semi-Solid 14S1P 51.8V 31000mAh UAV Battery | 320Wh/kg

320Wh/kg High Energy Density Semi-Solid UAV Battery
14S1P 51.8V 31000mAh Long-Endurance Power
Lightweight Battery Design for Industrial Drone Platforms
Suitable for Surveillance, Patrol, Inspection, and Route Missions
Ideal for Lightweight Logistics and Delivery UAV Applications

Herewin High Voltage Semi-Solid 12S1P 47.4V 67000mAh UAV Battery | 300Wh/kg

· 300Wh/kg semi-solid high energy density
· 12S 47.4V high-voltage platform for stable UAV power delivery
· 67000mAh large-capacity reserve for long-duration working cycles
· 1C charging for standard charging workflows
· Recommended connector options: QS8 / QS10 / AS150, final connector can be customized

Herewin High Voltage Semi-Solid 18S1P 71.1V 55000mAh UAV Battery | 320Wh/kg

· 320Wh/kg semi-solid high energy density
· 18S 71.1V high-voltage platform for stronger UAV system matching
· 55000mAh large-capacity reserve for heavy-duty working cycles
· 1C charging for standard charging workflows
· Recommended connector options: AS150 / QS10 / QS8, final connector can be customized

High Voltage Semi-Solid 14S1P 55.3V 55000mAh UAV Battery | 320Wh/kg

· High-voltage semi-solid structure for longer usable endurance
· 14S 55.3V platform for stronger UAV system matching
· 55000mAh large-capacity reserve for loaded working cycles
· 1C charging for standard charging workflows
· Recommended connector options: AS150 / QS8 / QS10, final connector can be customized

High Voltage Semi-Solid 12S1P 47.4V 55000mAh UAV Battery | 320Wh/kg

· 320Wh/kg semi-solid high energy density
· 12S 47.4V high-voltage platform for stable UAV power delivery
· 55Ah capacity with 8.70 kg lightweight pack structure
· 1C charging for standard charging workflows
· Suitable for payload-oriented drones, route logistics, and cleaning UAV systems

High Voltage Semi-Solid 18S1P 69.3V 41000mAh UAV Battery | 290Wh/kg

· 290Wh/kg semi-solid high energy density
· 18S 69.3V high-voltage platform for stronger UAV system matching
· 41Ah capacity with 9.98 kg lightweight pack structure
· 1C charging for standard charging workflows
· Suitable for route logistics, cleaning UAV systems, and payload-oriented industrial drones

High Voltage Semi-Solid 12S1P 46.2V 41000mAh UAV Battery | 290Wh/kg

· 290Wh/kg semi-solid high energy density
· High-voltage 12S platform for stable UAV power delivery
· 41Ah capacity with 6.70 kg lightweight pack
· 1C charging for standard charging workflows
· Suitable for payload-oriented drones, route logistics, and cleaning UAV systems

Obter uma cotação gratuita
Demonstração do formulário de contato (#3)

Aplicativos

Solar Energy Storage Systems
Solar Energy Storage Systems

Ultra-durable batteries perfectly match the long-term operational needs of solar power stations.

Grid-side Energy Storage
Grid-side Energy Storage

High-endurance battery systems designed to handle frequent daily charge-discharge cycles with ease.

Transport-oriented AGV
Warehouse AGVs

Long-cycle batteries ensure 24/7 uninterrupted logistics operations in automated storage environments.

shared electric bicycle
Shared E-scooters

Maintenance-free battery design significantly reduces operating and service costs for fleet operators.

Smart Street Lighting
Smart Street Lighting

Long-lasting and stable batteries provide reliable nighttime illumination for years with minimal intervention.

Subsea Cable Monitoring
Subsea Cable Monitoring

Corrosion-resistant, ultra-long-life batteries deliver consistent power to deep-sea monitoring systems over extended deployments.

FREE DESIGN

Customized exclusive battery plans! Professional engineers plan battery programs one-on-one.

Maximize Drone Effect with Our Tailored Battery Solutions

EES-Propose-Requests
Propose Requests
Customized-Solution
Customized Solutions
End-to-End-Controlled-Production-Testing
End-to-End Controlled Production & Testing
Warehouse-and-shipped-out
Warehouse and shipped out

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,
you’ll 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 Semi-solid State Battery

Mixing​
Step 1 :Slurry Mixing

Active materials, conductive agents, and binders are uniformly dispersed in solvent to form electrode slurry.

Coating
Step 2 :Electrode Coating

Homogenized slurry is coated onto aluminum foil and dried to form electrode sheets.

Drying
Step 3 :Calendering

Coated electrodes are compressed to specified thickness under controlled pressure.

Coating&Winding
Step 4 :Primary Vacuum Drying

Post-calendering electrodes undergo vacuum drying to remove residual moisture.

Pressuring Film
Step 5 :Electrode Slitting

Electrode sheets are precision-cut to required dimensions.

Making Film​
Step 6 :Z-Stack Assembly

Anodes, cathodes, and separators are stacked in “Z” configuration to form cell cores.

Stacking
Step 7 :Tab Welding

Multi-layer electrode tabs are aligned, ultrasonic-welded, and insulated with adhesive tape.

Welding
Step 8 :Pouch Cell Encapsulation

Cell cores are housed in pre-formed aluminum laminate pouches with top/seal side sealing.

Encapsulation​
Step 9 :Secondary Vacuum Drying

Final moisture removal from assembled cells prior to electrolyte filling.

Baking
Step 10 :Electrolyte Filling

Precise injection of electrolyte solution into dry cells.

Injection
Step 11 :Pre-Sealing

Initial closure of electrolyte injection port.

Charging
Step 12 :Formation

Electrochemical activation to establish Solid Electrolyte Interphase (SEI) layer on anode.

Extracting Air​
Step 13 :Final Sealing

Gas pocket removal and hermetic terminal sealing.

Charging and Discharging​
Step 14 :Capacity Grading

Charge-discharge cycling for capacity measurement and performance binning.

Testing
Step 15 :Testing

Validates capacity, impedance, and safety (e.g., overcharge, short-circuit) under strict protocols.

Assembling​
Step 16 :Assembling​

Integrates cells into modules or packs with BMS, wiring, and thermal management systems.

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.

Default Title
Default Title
Default Title
Default Title
Default Title
Default Title
Default Title
Default Title
Default Title
Default Title
Default Title
Default Title
Default Title
Default Title
Default Title
Default Title
Default Title
Default Title
Default Title
Default Title
Default Title
Default Title
Default Title
Default Title
Default Title

GET IN TOUCH

Want to know what credentials your market needs? Contact me to send you a high resolution image

Related category

Drone-Battery-
Battery-Cells-1
Home-Energy-Storage-Solutions-2
Industrial-EV-Battery-Packs
Commercial-Industrial-Energy-Storage-Solutions-4

FAQs

Are semi-solid-state batteries more expensive than conventional batteries?

Due to more complex materials and production processes, semi-solid-state batteries currently cost more than traditional liquid cells. However, costs are expected to decline as the technology matures.

Will semi-solid-state batteries replace liquid lithium-ion batteries in the future?

Not in the short term. Semi-solid-state batteries are seen as a transitional technology and will likely coexist with liquid batteries across various applications. In the long run, they serve as a stepping stone toward fully solid-state batteries.

Related Blog

Commercial drone batteries under high heat with thermal diagnostics overlay
Hot-climate, multi-sortie missions turn thermal stress into flight-time variance, voltage sag, cooling delays, and higher fleet operating costs.
AI load volatility is blurring diesel/UPS/BESS boundaries. Assign time-scale roles, avoid misalignment, and validate stability by behavior.
German field operations and precision agriculture Germany priorities in 2026
German farmers don’t buy ag-tech. They buy outcomes: lower inputs, compliance, soil protection, and consistent operations. Here’s what matters in 2026.
Lead-acid vs lithium battery choice reframed as a fleet uptime system decision for electric three-wheelers (2026)
In 2026, battery choice shifts from lowest CAPEX to highest uptime. Use an ops-first framework to pick the right fleet energy system.
Agricultural drone spraying over a German crop field, illustrating agricultural drone operations in Germany.
Why Germany is Europe’s test market for agricultural drones—and why scaling now depends on ground time, charging rhythm, and hectares/day.

When discussing UAV batteries, most conversations revolve around two familiar specifications: Capacity (Ah) Energy density (Wh/kg) Those metrics certainly matter. […]

Our New Catalogue

Learn more about Semi-solid batteries, and the full range of products

pt_BRPortuguês do Brasil
Role até o topo

Obtenha uma cotação gratuita agora!

Demonstração do formulário de contato (#3)
Se tiver alguma dúvida, não hesite em entrar em contato conosco.