Commercial and industrial energy storage
Commercial and Industrial Energy Storage
Herewin Home Energy Storage Battery
Home Energy Storage
488642711_1278865830906565_7716202339252007488_n
Drones
pexels-cookiecutter-1148820
Telecom Backup Power
Low-Speed Electric Vehicles
Low-Speed Electric Vehicles
Compact RV Travel
RV Power
forklift
Forklift Truck
Lead To Lithium Conversion
Lead To Lithium Conversion

High Energy Density Battery

Supports 4C-6C fast charging technology, reaching 80% charge in just 30 minutes. The smart temperature control system ensures safe fast charging, significantly reducing charging wait times and improving overall efficiency.

25C 18S1P 68.4V 40000mAh LiPo UAV Battery

25C High Discharge Rate LiPo UAV Battery
5C Fast Charging High Voltage Platform
18S1P 68.4V 40000mAh Large Capacity Output
Suitable for Heavy Lift, Cargo, Logistics, and Agricultural Drones
High Cycle Life for Repeated Industrial UAV Operations

25C 6S1P 22.8V 16000mAh LiPo UAV Battery

· 25C High Discharge LiPo UAV Battery
· 4C Fast Charging for High-Frequency Operations
· 6S1P 22.8V 16000mAh Compact Power Platform
· Suitable for Small Agricultural Drones with Dual-Battery Setup
· Practical for Training, Testing, and Repeated Takeoff Missions

25C 6S1P 22.8V 22000mAh LiPo UAV Battery

· 25C High Discharge Agricultural Drone Battery
· 3C Charging for Faster Daily Field Rotation
· 6S1P 22.8V 22000mAh High-Capacity LiPo UAV Power
· Suitable for 5L–20L Dual-Battery Spraying Drones
· Practical for Training, Flight Testing, and Lightweight Survey Platforms

25C 12S1P 45.6V 40000mAh LiPo UAV Battery

· 25C Peak Discharge Agricultural Drone Battery
· 5C Charging for Faster Daily Rotation
· 12S1P 45.6V 40000mAh High-Capacity LiPo UAV Power
· Suitable for Crop Spraying and Plant Protection UAVs
· Practical for Training, Testing, and Lightweight Survey Platforms

25C 6S1P 22.8V 20000mAh LiPo UAV Battery

· 25C High Discharge Agricultural Drone Battery
· 5C Charging for Faster Spraying Rotation
· 6S1P 22.8V 20000mAh Compact LiPo UAV Power
· Suitable for Crop Spraying and Plant Protection UAVs
· Practical for Training, Testing, and Lightweight Survey Platforms

25C 14S1P 53.2V 16000mAh LiPo UAV Battery

· 25C Peak Discharge Industrial UAV Battery
· 4C Charging for Faster Daily Rotation
· 14S1P 53.2V 16000mAh High-Voltage LiPo UAV Power
· Suitable for Cleaning, Inspection, Patrol, and Training Drones
· Practical for Light Delivery and Mapping Platforms

25C 14S1P 53.2V 20000mAh LiPo UAV Battery

· 25C Peak Discharge Industrial UAV Battery
· 5C Charging for Faster Daily Rotation
· 14S1P 53.2V 20000mAh High-Voltage LiPo UAV Power
· Suitable for Cleaning, Delivery, Patrol, and Inspection Drones
· Practical for Training, Testing, and Mapping Platforms

25C 14S1P 53.2V 22000mAh LiPo UAV Battery

· 25C Peak Discharge Agricultural Drone Battery
· 3C Charging for Practical Daily Rotation
· 14S1P 53.2V 22000mAh High-Voltage LiPo UAV Power
· Suitable for Crop Spraying and Plant Protection UAVs
· Popular for Main-Use Agricultural Drone Platforms

Applications

Disaster Relief Drone
Disaster Relief Drone

Equipped with ultra-fast charging batteries to ensure uninterrupted aerial support in disaster zones.

Medical Delivery Robot
Medical Delivery Robot

Designed with rapid charging capability to guarantee timely delivery of critical medical supplies during emergencies.

Electric Sightseeing Vehicle
Electric Sightseeing Vehicle

Powered by high-efficiency fast-charging batteries to enhance operational turnaround for tourism fleets.

Port AGV (Automated Guided Vehicle)
Port AGV

Integrated with lightning-fast charging technology to enable 24/7 automated logistics operations in port environments.

Mobile Charging Station
Mobile Charging Station

High-power fast-charging and energy storage system designed to meet emergency charging needs for electric vehicles on the move.

Outdoor Camping Power Supply
Outdoor Camping Power Supply

Rapid-charging battery system allows short charging time while delivering days of reliable power for off-grid camping.

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

How is a semi-solid-state battery different from a fully solid-state cell?

The main difference lies in the electrolyte. Semi-solid-state cells still contain some liquid electrolyte, while fully solid-state cells rely solely on solid electrolytes. Although fully solid-state batteries offer higher theoretical performance, semi-solid versions are currently more practical and scalable for mass production.

What is the energy density of a semi-solid-state battery cell?

Semi-solid-state batteries typically offer higher energy density than conventional liquid batteries. This enables longer driving range in electric vehicles or extended runtime in portable electronics.

Related Blog

Why telecom sites are shifting from VRLA to LiFePO4 backup—space, thermal limits, lifetime trade-offs, and how to choose a 48V system.
A practical decision guide for UAV OEMs: when soft pack (pouch) packs improve CG, packaging, and integration vs cylindrical architectures.
Agricultural spray drone battery workflow showing battery swap and refill—why hectares per hour matters more than flight time.
Stop over-optimizing flight time. Use cycle-time metrics to evaluate agricultural drone batteries and increase hectares per hour.
Agricultural drone battery ROI — ground time and field turnaround constraints
Flight time doesn’t define ROI. Ground time limits cycles, hectares/day, and cost per hectare—here’s the evaluation framework.
Best storage charge for UAV batteries shown as ~50% SOC and 3.8V per cell in controlled storage
Store UAV batteries at 30–60% SOC (about 3.8V per cell) to reduce storage aging, preserve capacity, and extend service life.
Prototype UAV batteries vs production variance affecting pack performance
Why prototype UAV batteries pass tests but fail at production scale—and how to evaluate suppliers on variation control, EOL testing, and traceability.

Our New Catalogue

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

en_USEnglish
Scroll to Top

Get A Free Quote Now !

Contact Form Demo (#3)
If you have any questions, please do not hesitate to contact us.