بوليمر الليثيوم LiPo (ليثيوم بوليمر)
A lithium-ion battery using polymer electrolyte, characterized by ultra-thin and lightweight properties. Supports customized shape designs with excellent energy density, widely used in portable devices like consumer electronics and drones.
الموديل: 3.2 فولت 30 أمبير LFP
الحد الأقصى للتفريغ المستمر: 0.5C
الحد الأقصى للشحن المستمر: 0.5C
عمر الدورة: ≥2000 مرة
وزن الخلية: 585 جرام تقريباً
الموديل: 3.7 فولت 45 أمبير/ساعة ثلاثي 3.7 فولت 45 أمبير/ساعة
الحد الأقصى للتفريغ المستمر: 5C
الحد الأقصى للشحن المستمر: 1C
عمر الدورة: ≥800 مرة
وزن الخلية: 550 جم تقريبًا
الموديل: 3.7 فولت 35 أمبير/ساعة ثلاثي 3.7 فولت 35 أمبير/ساعة
الحد الأقصى للتفريغ المستمر: 5C
الحد الأقصى للشحن المستمر: 1C
عمر الدورة: ≥800 مرة
وزن الخلية: 405 جم تقريبًا
الموديل: 3.8 فولت 40 أمبير كوبالت + ثلاثي 3.8 فولت 40 أمبير
الحد الأقصى للتفريغ المستمر: 20 درجة مئوية
الحد الأقصى للشحن المستمر: 5C
عمر الدورة: ≥1000 مرة
وزن الخلية: حوالي 765 جرام
الموديل: 3.8 فولت 20 أمبير كوبالت + ثلاثي 3.8 فولت 20 أمبير
الحد الأقصى للتفريغ المستمر: 20 درجة مئوية
الحد الأقصى للشحن المستمر: 4C
عمر الدورة: ≥600 مرة
وزن الخلية: حوالي 380 جرام
Maximum continuous discharge: 0.5C
Maximum continuous charging: 0.5C
Cycle life: ≥ 1500 times
Cell weight:~1850g
Maximum continuous discharge: 0.5C
Maximum continuous charging: 0.5C
Cycle life: ≥ 2000 times
Cell weight:~940g
Maximum continuous discharge: 0.5C
Maximum continuous charging: 0.5C
Cycle life: ≥ 2000 times
Cell weight:~1870g
التطبيقات
Engineered for long-endurance missions, precise spraying power, and adaptability to complex farmland environments.
Ultra-thin, high-energy batteries enable lightweight designs and extended flight durations.
Tailored for high-frequency delivery, challenging road conditions, and compact structural integration.
Long-lifespan batteries support reliable, all-day operations across expansive golf course terrains.
High-density cells deliver stable outdoor mobile power for off-grid use.
Customizable battery shapes adapt to various vehicle configurations for seamless integration.
FREE DESIGN
Customized exclusive battery plans! Professional engineers plan battery programs one-on-one.
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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
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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 Battery Cells
Blends active materials, binders, and solvents into a uniform slurry to ensure consistent electrochemical performance.
Spreads the slurry onto metal foils (anode/cathode) with precise thickness control for optimal energy density.
Removes solvents from coated electrodes to stabilize material adhesion and prevent cracking.
Combines anode/cathode layers with separators and winds them into a compact jellyroll structure.
Compresses electrodes to enhance density and conductivity while maintaining porosity for ion flow.
Trims electrodes into precise dimensions to fit battery cell specifications.
Aligns anode/separator/cathode layers in a Z-fold pattern to maximize space efficiency.
Joins electrode tabs using laser welding to minimize resistance and ensure current stability.
Seals cells in aluminum-plastic film to protect against moisture, dust, and mechanical stress.
Removes residual moisture from cells under vacuum to prevent electrolyte degradation.
Fills electrolyte into cells to enable ion transport between electrodes.
Activates cells with initial charging to form a stable solid-electrolyte interface (SEI).
Evacuates gas from cells to eliminate air pockets and ensure full electrolyte penetration.
Cycles cells to stabilize performance and screen out defects before final assembly.
Validates capacity, impedance, and safety (e.g., overcharge, short-circuit) under strict protocols.
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
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FAQs
A battery cell is the core unit of a battery—responsible for storing and releasing energy. It’s the smallest energy module inside battery packs and is widely used in phones, EVs, power banks, and more.
By chemistry: lithium-ion (e.g. NMC, LFP), nickel-metal hydride, etc.
By shape: cylindrical, prismatic, pouch.
Each type suits different needs—LFP is safer; NMC has higher energy density.
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