Commercial and industrial energy storage
์ƒ์—…์šฉ ๋ฐ ์‚ฐ์—…์šฉ ์—๋„ˆ์ง€ ์Šคํ† ๋ฆฌ์ง€
Herewin Home Energy Storage Battery
ํ™ˆ ์—๋„ˆ์ง€ ์Šคํ† ๋ฆฌ์ง€
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๋“œ๋ก 
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ํ†ต์‹  ๋ฐฑ์—… ์ „์›
Low-Speed Electric Vehicles
์ €์† ์ „๊ธฐ ์ž๋™์ฐจ
Compact RV Travel
RV ํŒŒ์›Œ
forklift
์ง€๊ฒŒ์ฐจ
Lead To Lithium Conversion
๋ฆฌํŠฌ ์ „ํ™˜์œผ๋กœ ๋ฆฌ๋“œ

Semi-solid Battery

Semi-solid state battery is a new type of energy storage technology between traditional liquid lithium batteries and all-solid state batteries , the electrolyte part of which consists of gel-like or solid-liquid hybrid electrolyte materials . It maintains the safety characteristics of solid-state batteries, but also has the high energy density and processing compatibility of liquid batteries.Its electrolyte is solid-liquid mixed state (liquid electrolyte accounted for 5-15%), both high energy density (300-450Wh/kg) and high safety (pinpoint resistance, resistance to thermal runaway).

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

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

18S 30000mAh 68.4V 15C LiHV Drone Battery

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

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

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

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

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

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

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

Herewin 18S1P 66.6V 31000mAh Semi-Solid UAV Battery | 320Wh/kg

ยท 320Wh/kg high energy density for extended flight time
ยท Semi-solid NMC-based energy platform for high-voltage UAV integration
ยท 18S1P 66.6V 31000mAh LiHV platform with 6900g pack weight
ยท 10C discharge for stable cruising and endurance-focused drone output
ยท Cycle life โ‰ฅ500 with operating temperature range of -20~60โ„ƒ

Herewin 14S1P 53.2V 33000mAh Semi-Solid UAV Battery | 350Wh/kg

ยท 350Wh/kg high energy density for extended flight time
ยท Semi-solid NMC-based energy platform for high-voltage UAV integration
ยท 14S1P 53.2V 33000mAh LiHV platform with 5520g pack weight
ยท 10C discharge for stable cruising and endurance-focused drone output
ยท Cycle life โ‰ฅ100 with operating temperature range of -20~60โ„ƒ

6S1P 22.2V 22000mAh Semi-Solid UAV Battery | 320Wh/kg

ยท 320Wh/kg high energy density for extended flight time
ยท Semi-solid NMC-based energy platform for lightweight UAV integration
ยท 6S1P 22.2V 22000mAh platform with only 1720g pack weight
ยท 10C discharge for stable cruising and endurance-focused drone output
ยท Cycle life โ‰ฅ500 with operating temperature range of -20~60โ„ƒ

์ œํ’ˆ ์นดํ…Œ๊ณ ๋ฆฌ
๋ฌด๋ฃŒ ๊ฒฌ์  ๋ฐ›๊ธฐ
๋ฌธ์˜ ์–‘์‹ ๋ฐ๋ชจ(#3)

์• ํ”Œ๋ฆฌ์ผ€์ด์…˜

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Power battery

With a compact and lightweight soft pack power battery, electric two-wheelers achieve efficient energy use, longer travel distances, and enhanced safety, providing riders with dependable power on busy city roads.

Aviation Industry
Aviation Industry

Semi-solid batteries provide aviation devices with lightweight, high energy density power, ensuring safe and reliable operation under extreme temperatures and demanding flight conditions.

Healthcare Industry
Healthcare Industry

Semi-solid batteries offer ultra-long lifespan and enhanced safety, delivering stable, reliable power for portable healthcare devices, ensuring continuous operation and protection in critical medical applications.

A woman charges her smartphone from a power bank, a small white power bank in a woman's hand.
Mobile Energy Storage

Designed for portable energy storage, semi-solid batteries offer lightweight, fast-charging, and durable power solutions, ensuring stable and safe operation in various mobile environments.

Portable-Power-Tools
Portable Power Tools

A high discharge rate battery powers portable tools with instant torque and stable performance, ensuring reliable output under heavy-duty operation while remaining lightweight and impact-resistant.

Wearable-Electronics
Wearable Electronics

A flexible soft pack lithium battery powers the wearable device, allowing for a slim, lightweight design that fits naturally around the wrist. It ensures extended battery life with enhanced safety and durability.

๋ฌด๋ฃŒ ๋””์ž์ธ

๋งž์ถคํ˜• ์ „์šฉ ๋ฐฐํ„ฐ๋ฆฌ ํ”Œ๋žœ! ์ „๋ฌธ ์—”์ง€๋‹ˆ์–ด๊ฐ€ ์ผ๋Œ€์ผ๋กœ ๋ฐฐํ„ฐ๋ฆฌ ํ”„๋กœ๊ทธ๋žจ์„ ๊ณ„ํšํ•ฉ๋‹ˆ๋‹ค.

๋งž์ถคํ˜• ๋ฐฐํ„ฐ๋ฆฌ ์†”๋ฃจ์…˜์œผ๋กœ ๋“œ๋ก  ํšจ๊ณผ ๊ทน๋Œ€ํ™”

EES-Propose-Requests
์š”์ฒญ ์ œ์•ˆ
Customized-Solution
๋งž์ถคํ˜• ์†”๋ฃจ์…˜
End-to-End-Controlled-Production-Testing
์—”๋“œํˆฌ์—”๋“œ ์ œ์–ด ์ƒ์‚ฐ ๋ฐ ํ…Œ์ŠคํŠธ
Warehouse-and-shipped-out
์ฐฝ๊ณ  ์ž…๊ณ  ๋ฐ ๋ฐฐ์†ก

ํ—ค๋ ˆ์œˆ ํŒฉํ† ๋ฆฌ ์‚ดํŽด๋ณด๊ธฐ: ํ’ˆ์งˆ์˜ ์›์ฒœ

2019๋…„์— ์„ค๋ฆฝ๋œ ์‹ฌ์ฒœ ์ž์œˆ ํƒ€์ž„ ํ…Œํฌ๋†€๋กœ์ง€๋Š” ๋ฐฐํ„ฐ๋ฆฌ ์—…๊ณ„์—์„œ 20๋…„ ์ด์ƒ์˜ ํญ๋„“์€ ๊ฒฝํ—˜์„ ๊ฐ€์ง„ ์„ค๋ฆฝ ๋ฐ ์šด์˜ ํŒ€์˜ ์ง€์›์„ ๋ฐ›๊ณ  ์žˆ์Šต๋‹ˆ๋‹ค. ๊ณ ์„ฑ๋Šฅ ๋ฆฌํŠฌ ์ด์˜จ ํด๋ฆฌ๋จธ ๋ฐฐํ„ฐ๋ฆฌ์˜ ๊ฐœ๋ฐœ ๋ฐ ์ƒ์‚ฐ์„ ์ „๋ฌธ์œผ๋กœ ํ•ฉ๋‹ˆ๋‹ค.
Facebook์ด ๋ˆ„๊ตฌ์ด๋ฉฐ ๋ฌด์—‡์„ ์ง€ํ–ฅํ•˜๋Š”์ง€์— ๋Œ€ํ•œ ํฌ๊ด„์ ์ธ ์ธ์‚ฌ์ดํŠธ๋ฅผ ์–ป์œผ์„ธ์š”. ์„ธ์‹ฌํ•œ ์ •ํ™•์„ฑ์„ ์ž๋ž‘ํ•˜๋Š” ์ €ํฌ์˜
์ƒ์‚ฐ ๋ผ์ธ, ๊ณต์žฅ์˜ ํšจ์œจ์ ์ธ ๊ด€๋ฆฌ, ๋งŒ์กฑํ•œ ๊ณ ๊ฐ๋“ค์˜ ์ง„์ •ํ•œ ํ”ผ๋“œ๋ฐฑ์ด ์žˆ์—ˆ๊ธฐ์— ๊ฐ€๋Šฅํ–ˆ์Šต๋‹ˆ๋‹ค,
ํ”„๋กœ์„ธ์Šค์˜ ๋ชจ๋“  ๋‹จ๊ณ„์—์„œ ์šฐ์ˆ˜์„ฑ์„ ๋ณด์žฅํ•˜๋Š” ๋ฐฉ๋ฒ•์„ ํ™•์ธํ•  ์ˆ˜ ์žˆ์Šต๋‹ˆ๋‹ค.

๋‹ค์–‘ํ•œ ํŒจํ„ด์˜ ๊ณ ๊ฐ์„ ์œ„ํ•œ ๋‹ค์–‘ํ•œ ์„œ๋น„์Šค

์˜คํ”„๋ผ์ธ ๊ณ ๊ฐ์šฉ

์œ ์—ฐํ•œ ๋ฐฐ์†ก ์‹œ๊ฐ„

์•ˆ์ •์ ์ธ ๋ฐฐ์†ก ์ผ์ • ๋ฐ ์ฐฝ๊ณ  ์ง€์›.

๋†’์€ ๋น„์šฉ ํšจ์œจ์„ฑ

์ „์ฒด ๊ฐ€์น˜๋ฅผ ๊ทน๋Œ€ํ™”ํ•˜๋Š” ๊ฒฝ์Ÿ๋ ฅ ์žˆ๋Š” ๊ฐ€๊ฒฉ.

๋‹ค์–‘ํ•œ ์ œํ’ˆ ์„ ํƒ

๋ชจ๋“  ์‹œ์žฅ ๋ถ€๋ฌธ์„ ์ถฉ์กฑํ•˜๋Š” ๋‹ค์–‘ํ•œ ์˜ต์…˜.

์˜จ๋ผ์ธ ๊ณ ๊ฐ์šฉ

๋‚ฎ์€ MOQ

ํ˜ผํ•ฉ ์ œํ’ˆ ์˜ต์…˜์œผ๋กœ ์œ ์—ฐํ•œ MOQ.

์‚ฌ์šฉ์ž ์ง€์ • ๋กœ๊ณ 

์†Œ๊ทœ๋ชจ ๋ฐฐ์น˜๋ฅผ ์œ„ํ•œ ๋งž์ถคํ˜• ๋กœ๊ณ  ์‚ฌ์šฉ์ž ์ง€์ •.

์›์Šคํ†ฑ ๋งˆ์ผ€ํŒ… ํŒจํ‚ค์ง€

๊ณ ํ’ˆ์งˆ ์ด๋ฏธ์ง€, ๋™์˜์ƒ์„ ์ œ๊ณตํ•˜์—ฌ ํŒ๋งค ์ˆ˜์ต์„ ๋†’์ผ ์ˆ˜ ์žˆ์Šต๋‹ˆ๋‹ค.

๋ธŒ๋žœ๋“œ ๊ณ ๊ฐ์šฉ

์ง€์—ญ ๋…์  ๊ถŒํ•œ

ํ—ค๋ฆฌ์œˆ์˜ ๋ชจ๋“  ๋ฆฌ์†Œ์Šค ๋ฐ ๊ธฐ๋Šฅ ์ œ๊ณต

R&D Resources

Custom sample within 7 days with R&D capabilities.

๋น ๋ฅธ ๋ฐฐ์†ก

ํšจ์œจ์ ์ธ ์ƒ์‚ฐ์œผ๋กœ ์ตœ๋‹จ 25์ผ ์ด๋‚ด์— ๋ฐฐ์†กํ•ฉ๋‹ˆ๋‹ค.

๋ฐ˜๊ณ ์ฒด ๋ฐฐํ„ฐ๋ฆฌ์˜ ์ƒ์‚ฐ ํ๋ฆ„

Mixingโ€‹
1๋‹จ๊ณ„: ์Šฌ๋Ÿฌ๋ฆฌ ํ˜ผํ•ฉ

ํ™œ์„ฑ ๋ฌผ์งˆ, ์ „๋„์„ฑ ์ œ์ œ ๋ฐ ๋ฐ”์ธ๋”๋ฅผ ์šฉ๋งค์— ๊ท ์ผํ•˜๊ฒŒ ๋ถ„์‚ฐ์‹œ์ผœ ์ „๊ทน ์Šฌ๋Ÿฌ๋ฆฌ๋ฅผ ํ˜•์„ฑํ•ฉ๋‹ˆ๋‹ค.

Coating
2๋‹จ๊ณ„: ์ „๊ทน ์ฝ”ํŒ…

๊ท ์งˆํ™”๋œ ์Šฌ๋Ÿฌ๋ฆฌ๋ฅผ ์•Œ๋ฃจ๋ฏธ๋Š„ ํ˜ธ์ผ ์œ„์— ์ฝ”ํŒ…ํ•˜๊ณ  ๊ฑด์กฐ์‹œ์ผœ ์ „๊ทน ์‹œํŠธ๋ฅผ ๋งŒ๋“ญ๋‹ˆ๋‹ค.

Drying
3๋‹จ๊ณ„: ์ผ์ • ์˜ˆ์•ฝ

์ฝ”ํŒ…๋œ ์ „๊ทน์€ ์ œ์–ด๋œ ์••๋ ฅ ํ•˜์—์„œ ์ง€์ •๋œ ๋‘๊ป˜๋กœ ์••์ถ•๋ฉ๋‹ˆ๋‹ค.

Coating&Winding
4๋‹จ๊ณ„: 1์ฐจ ์ง„๊ณต ๊ฑด์กฐ

์บ˜๋ฆฐ๋”๋ง ํ›„ ์ „๊ทน์€ ์ž”๋ฅ˜ ์ˆ˜๋ถ„์„ ์ œ๊ฑฐํ•˜๊ธฐ ์œ„ํ•ด ์ง„๊ณต ๊ฑด์กฐ ๊ณผ์ •์„ ๊ฑฐ์นฉ๋‹ˆ๋‹ค.

Pressuring Film
5๋‹จ๊ณ„: ์ „๊ทน ์Šฌ๋ฆฌํŒ…

์ „๊ทน ์‹œํŠธ๋Š” ํ•„์š”ํ•œ ์น˜์ˆ˜์— ๋งž๊ฒŒ ์ •๋ฐ€ํ•˜๊ฒŒ ์ ˆ๋‹จ๋ฉ๋‹ˆ๋‹ค.

Making Filmโ€‹
6๋‹จ๊ณ„: Z-Stack ์–ด์…ˆ๋ธ”๋ฆฌ

์–‘๊ทน, ์Œ๊ทน, ๋ถ„๋ฆฌ๋ง‰์„ 'Z' ๊ตฌ์„ฑ์œผ๋กœ ์Œ“์•„ ์…€ ์ฝ”์–ด๋ฅผ ํ˜•์„ฑํ•ฉ๋‹ˆ๋‹ค.

Stacking
7๋‹จ๊ณ„: ํƒญ ์šฉ์ ‘

๋‹ค์ธต ์ „๊ทน ํƒญ์€ ์ •๋ ฌ, ์ดˆ์ŒํŒŒ ์šฉ์ ‘, ์ ‘์ฐฉ ํ…Œ์ดํ”„๋กœ ์ ˆ์—ฐ๋˜์–ด ์žˆ์Šต๋‹ˆ๋‹ค.

Welding
8๋‹จ๊ณ„: ํŒŒ์šฐ์น˜ ์…€ ์บก์Аํ™”

์…€ ์ฝ”์–ด๋Š” ์ƒ๋‹จ/๋ด‰์ธ ์ธก๋ฉด์ด ๋ฐ€๋ด‰๋œ ์‚ฌ์ „ ์„ฑํ˜•๋œ ์•Œ๋ฃจ๋ฏธ๋Š„ ๋ผ๋ฏธ๋„ค์ดํŠธ ํŒŒ์šฐ์น˜์— ๋ณด๊ด€๋ฉ๋‹ˆ๋‹ค.

Encapsulationโ€‹
9๋‹จ๊ณ„: 2์ฐจ ์ง„๊ณต ๊ฑด์กฐ

์ „ํ•ด์งˆ์„ ์ฑ„์šฐ๊ธฐ ์ „์— ์กฐ๋ฆฝ๋œ ์…€์—์„œ ์ตœ์ข…์ ์œผ๋กœ ์ˆ˜๋ถ„์„ ์ œ๊ฑฐํ•ฉ๋‹ˆ๋‹ค.

Baking
10๋‹จ๊ณ„: ์ „ํ•ด์งˆ ์ถฉ์ „

์ „ํ•ด์งˆ ์šฉ์•ก์„ ๊ฑด์‹ ์ „์ง€์— ์ •๋ฐ€ํ•˜๊ฒŒ ์ฃผ์ž…ํ•ฉ๋‹ˆ๋‹ค.

Injection
11๋‹จ๊ณ„: ์‚ฌ์ „ ๋ฐ€๋ด‰

์ „ํ•ด์•ก ์ฃผ์ž… ํฌํŠธ์˜ ์ดˆ๊ธฐ ํ์‡„.

Charging
12๋‹จ๊ณ„ : ํ˜•์„ฑ

์–‘๊ทน์— ๊ณ ์ฒด ์ „ํ•ด์งˆ ๊ฐ„์ƒ(SEI) ์ธต์„ ํ˜•์„ฑํ•˜๊ธฐ ์œ„ํ•œ ์ „๊ธฐ ํ™”ํ•™์  ํ™œ์„ฑํ™”.

Extracting Airโ€‹
13๋‹จ๊ณ„: ์ตœ์ข… ๋ด‰์ธ

๊ฐ€์Šค ํฌ์ผ“ ์ œ๊ฑฐ ๋ฐ ๋ฐ€ํํ˜• ๋‹จ์ž ๋ฐ€๋ด‰.

Charging and Dischargingโ€‹
14๋‹จ๊ณ„: ์šฉ๋Ÿ‰ ์ฑ„์ 

์šฉ๋Ÿ‰ ์ธก์ • ๋ฐ ์„ฑ๋Šฅ ๋น„๋‹์„ ์œ„ํ•œ ์ถฉ์ „-๋ฐฉ์ „ ์ฃผ๊ธฐ.

Testing
15๋‹จ๊ณ„: ํ…Œ์ŠคํŠธ

์—„๊ฒฉํ•œ ํ”„๋กœํ† ์ฝœ์— ๋”ฐ๋ผ ์šฉ๋Ÿ‰, ์ž„ํ”ผ๋˜์Šค ๋ฐ ์•ˆ์ „(์˜ˆ: ๊ณผ์ถฉ์ „, ๋‹จ๋ฝ)์„ ๊ฒ€์ฆํ•ฉ๋‹ˆ๋‹ค.

Assemblingโ€‹
16๋‹จ๊ณ„: ์กฐ๋ฆฝ

BMS, ๋ฐฐ์„  ๋ฐ ์—ด ๊ด€๋ฆฌ ์‹œ์Šคํ…œ์„ ํ†ตํ•ด ์…€์„ ๋ชจ๋“ˆ ๋˜๋Š” ํŒฉ์— ํ†ตํ•ฉํ•ฉ๋‹ˆ๋‹ค.

์ž์„ธํžˆ ์•Œ์•„๋ณด๊ธฐ

์ƒ์‚ฐ ์„ธ๋ถ€ ์ •๋ณด ๋ฐ ์ œ์กฐ ๊ณต์ •์— ๋Œ€ํ•ด ์ž์„ธํžˆ ์•Œ์•„๋ณด๊ธฐ

ํ…Œ์ŠคํŠธ ํ”„๋กœ์„ธ์Šค

๊ณต์ • ๋ฐ ์ธ์ฆ

์ธ์ฆ์€ ํ—ค๋ฆฌ์œˆ์˜ ๊ฐ€์žฅ ํฐ ๊ฐ•์ ์ž…๋‹ˆ๋‹ค.
๋ชจ๋“  ์‹œ์žฅ์˜ ์š”๊ตฌ ์‚ฌํ•ญ์„ ์ถฉ์กฑํ•˜๋ฉฐ, ์†Œ์Šค ๊ณต์žฅ์€ ํ’ˆ์งˆ์„ ๋ณด์žฅํ•˜๊ธฐ ์œ„ํ•ด ์™„์ „ํ•œ ์ธ์ฆ์„ ๋ฐ›์•˜์Šต๋‹ˆ๋‹ค.

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์—ฐ๋ฝํ•˜๊ธฐ

์‹œ์žฅ์— ํ•„์š”ํ•œ ์ž๊ฒฉ ์ฆ๋ช…์ด ๋ฌด์—‡์ธ์ง€ ์•Œ๊ณ  ์‹ถ์œผ์‹ ๊ฐ€์š”? ๊ณ ํ•ด์ƒ๋„ ์ด๋ฏธ์ง€๋ฅผ ๋ณด๋‚ด๋“œ๋ฆฌ๋ ค๋ฉด ์—ฐ๋ฝ์ฃผ์„ธ์š”.

๊ด€๋ จ ์นดํ…Œ๊ณ ๋ฆฌ

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

์ž์ฃผ ๋ฌป๋Š” ์งˆ๋ฌธ

What is a semi-solid-state lithium battery?

A semi-solid-state lithium battery is a transitional technology between liquid lithium-ion batteries and fully solid-state batteries. It uses a hybrid electrolyte system (solid content โ‰ฅ50%) combining solid and liquid components.

Key Advantages

  • ๋†’์€ ์—๋„ˆ์ง€ ๋ฐ€๋„: Achieves 275-300 Wh/kg (vs. 170-190 Wh/kg in traditional liquid batteries).

  • Enhanced Safety: Reduced liquid electrolyte minimizes flammability risks.

  • Production Feasibility: Lower cost than fully solid-state batteries with higher technical maturity.

What are the core features of semi-solid-state lithium batteries?
  • ๋†’์€ ์—๋„ˆ์ง€ ๋ฐ€๋„: Utilizes graphite anodes (current mainstream design) and optimized electrode materials for improved energy storage efficiency.

  • Compact Design: Solid electrolytes partially replace traditional separators + liquid electrolytes, reducing volume by 30%+.

  • Superior Safety: Suppresses lithium dendrite growth and offers better thermal stability than liquid batteries.

What applications are most suitable for semi-solid-state battery cells?
  • Electric Vehicles: Enhanced safety and increased range under complex usage.

  • Heavy-Duty Drones: Lightweight yet powerful for demanding flight conditions.

  • Energy Storage Systems: Long-term, stable performance with grid-level safety.

  • Consumer Electronics: Higher energy density for longer battery life.

  • Wearables: Compact energy solutions with strong safety performance.

๊ด€๋ จ ๋ธ”๋กœ๊ทธ

Why telecom sites are shifting from VRLA to LiFePO4 backupโ€”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 refillโ€”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 โ€” ground time and field turnaround constraints
Flight time doesnโ€™t define ROI. Ground time limits cycles, hectares/day, and cost per hectareโ€”hereโ€™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 30โ€“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 scaleโ€”and how to evaluate suppliers on variation control, EOL testing, and traceability.

์ƒˆ๋กœ์šด ์นดํƒˆ๋กœ๊ทธ

๋ฐ˜๊ณ ์ฒด ๋ฐฐํ„ฐ๋ฆฌ ๋ฐ ์ „์ฒด ์ œํ’ˆ๊ตฐ์— ๋Œ€ํ•ด ์ž์„ธํžˆ ์•Œ์•„๋ณด๊ธฐ

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๋งจ ์œ„๋กœ ์Šคํฌ๋กค

์ง€๊ธˆ ๋ฌด๋ฃŒ ๊ฒฌ์  ๋ฐ›๊ธฐ!

๋ฌธ์˜ ์–‘์‹ ๋ฐ๋ชจ(#3)
๊ถ๊ธˆํ•œ ์ ์ด ์žˆ์œผ์‹œ๋ฉด ์–ธ์ œ๋“ ์ง€ ๋ฌธ์˜ํ•ด ์ฃผ์„ธ์š”.