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

ํ†ต์‹  ๋ฐฑ์—… ์ „์›

A lithium battery backup solution designed for telecom base stations. Automatically switches to backup power during outages to ensure uninterrupted operation. Supports remote monitoring and adapts to harsh environmental conditions.

ํ†ต์‹  ๋ฐฑ์—… ์ „์› ์‹œ์Šคํ…œ

๊ณต์นญ ์ „์••: 48V

์—๋„ˆ์ง€ ์šฉ๋Ÿ‰: 2.4kWh

์น˜์ˆ˜ ํฌ๊ธฐ: 450 ร— 447 ร— 132.5mm

๋ฌด๊ฒŒ: ~25kg

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

์• ํ”Œ๋ฆฌ์ผ€์ด์…˜

5G Base Station Energy Storage
5G Base Station Energy Storage

Long-lasting backup power ensures uninterrupted operation of signal towers in remote areas.

Data Center Backup Power
Data Center Backup Power

Zero-delay switchover protects server stability and data integrity.

Island Communication Towers
Island Communication Towers

Off-grid storage paired with solar/wind power enables full energy self-sufficiency.

Emergency Communication Vehicles
Emergency Communication Vehicles

Mobile and rapid-deployment telecom backup power supports disaster relief operations.

Subway Tunnel Signal Systems
Subway Tunnel Signal Systems

Moisture- and shock-resistant batteries maintain smooth signal transmission in rail environments.

Border Surveillance Equipment
Border Surveillance Equipment

Telecom backup systems that operate reliably under extreme temperaturesโ€”guarding the frontier without interruption.

๋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.

Production Flow of Commercial &Industrial Energy Batteryโ€‹

Cell Incoming Inspection
Step1๏ผšCell Incoming Inspection

Verify all incoming cell parameters to ensure they meet quality standards and determine whether the cells are suitable for subsequent production.

OCV Sorting
Step2๏ผšOCV Sorting

Test and classify cells based on open-circuit voltage (OCV) and internal resistance parameters.

Plasma Cleaning
Step3๏ผšPlasma Cleaning

Remove dirt, dust, and surface impurities from cells to ensure a clean surface condition for assembly.

Module Stacking
Step4๏ผšModule Stacking

Stack cells in sequence to form modules, apply compression, and install steel bands at the top and bottom of the module.

Busbar Laser Welding
Step5๏ผšBusbar Laser Welding

Install insulated busbar plates onto the module, then perform laser welding and inspect weld quality.

Wire Harness Welding
Step6๏ผšWire Harness Welding

Assemble sampling wire harnesses sequentially, perform laser welding, and conduct visual inspection to ensure welding and assembly quality.

Module Performance Testing
Step7๏ผšModule Performance Testing

Conduct performance testing on the module to evaluate whether it meets all required technical specifications.

Pre-Assembly Processing
Step8๏ผšPre-Assembly Processing

Pre-process components including the connector mounting plate, maintenance cover seal strips, and mounting brackets.

Enclosure Cleaning
Step9๏ผšEnclosure Cleaning

Clean the battery enclosure to remove dust, debris, and other contaminants, keeping both the interior and exterior clean.

Module Installation into Enclosure
Step10๏ผšModule Installation into Enclosure

Place the module into the enclosure and arrange the wire harnesses neatly to ensure an orderly layout.

Step11๏ผšEOL (End-of-Line) Testing

Conduct end-of-line testing to verify overall performance and ensure compliance with product standards.

Top Cover Installation
Step12๏ผšTop Cover Installation

Position and install the top cover securely to complete final assembly.

Sealing and Final Inspection
Step13๏ผšSealing and Final Inspection

Perform airtightness testing on the enclosure to verify sealing integrity, followed by final offline product inspection to confirm full compliance with release criteria.

์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
Semi-Solid State Drone Battery
Industrial-EV-Battery-Packs

์ž์ฃผ ๋ฌป๋Š” ์งˆ๋ฌธ

What is a Commercial & Industrial (C&I) Energy Storage Battery?

A C&I energy storage battery is specifically designed for commercial and industrial use. It stores electricity to balance peak and off-peak usage, provides backup power during outages, helps reduce energy costs, and ensures power stability for businesses.

Whatโ€™s the difference between a C&I energy storage battery and a home energy storage battery?

C&I batteries have significantly larger capacity and higher power output, making them suitable for factories, shopping centers, and other high-demand environments. They often integrate with enterprise-level power distribution systems and focus on intelligent load management. In contrast, home storage batteries are typically used for smaller-scale backup and daily energy supplementation.

๊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

Learn more about Commercial &Industrial Energy Storage Solutions, and the full range of products

ko_KRํ•œ๊ตญ์–ด
๋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”.