501040 3.7V 배터리
Reliable 501040 lithium polymer battery with stable voltage and low self-discharge. Built-in overcharge, over-discharge, overcurrent, and short circuit protection. Supports up to 20C discharge for high-power needs. Ideal for e-cigarettes, headphones, POS terminals, beauty devices, toys, and medical equipment. Customizable with wires, PCBs, or connectors.
- 모델: KYS 501040
- Cell Size: 5×10×40 mm
- Finished Size: 5×10×42 mm
- 작동 전압: 3.7V
- 용량: 130mAh
- Internal Resistance: 160 mΩ
- 적용 범위: 전자 제품
- 충전 전압: 4.25V
제품 목록으로 돌아가기
개요
501040 3.7V Battery Structural Overview
Engineers construct the 501040 3.7V lithium polymer battery using a compact pouch-cell geometry with a defined dimensional standard. First, they align the electrode stack in a flat layered format, ensuring consistent thickness across the cell body. Then, technicians position the cathode, separator, and anode in a controlled stacking sequence to maintain uniform internal spacing. Meanwhile, insulation films are inserted at boundary zones to reduce mechanical stress during sealing. After stacking, the structure moves into lamination and pouch forming processes. (Model specification reference: 501040 size approx. 5×10×40 mm cylindrical naming standard system)
전극 재료 및 내부 화학
Manufacturers build the cathode using lithium metal oxide coated on aluminum foil, while the anode uses graphite-based carbon material applied on copper foil. In addition, a microporous polymer separator is placed between electrodes to enable ion transport while preventing direct contact. Furthermore, the electrolyte consists of lithium salts dissolved in organic carbonate solvents, and moisture control is strictly maintained during preparation and filling. Meanwhile, the aluminum-plastic laminated film forms the external enclosure, replacing rigid metal housing with a flexible sealed structure.
Manufacturing Process and Cell Forming
Technicians begin by preparing electrode slurries using active materials, conductive additives, and polymer binders, mixing them into a uniform paste. Next, automated coating equipment applies the slurry onto metal foils with controlled thickness accuracy. After drying, calendaring rollers compress the electrodes to achieve stable density. Subsequently, the electrodes are cut into precise dimensions matching the 501040 form factor and stacked into layered assemblies. Meanwhile, alignment systems continuously verify positioning accuracy before sealing.
형성 시험 및 준수 기준
Engineers perform initial charge-discharge cycling to activate electrochemical stability and balance internal interfaces. Afterwards, aging tests evaluate voltage consistency and internal resistance drift over time. Finally, sealing inspection, electrical verification, and safety testing are completed. Throughout production, the 501040 3.7V battery follows IEC safety requirements and UN38.3 transport standards, ensuring structural reliability, electrical stability, and shipping compliance.
제품 세부사항
제품 특징
- 🛠️ 유연한 커스터마이징
고객 요구에 따라 와이어, 보호 PCB, 터미널 커넥터 및 기타 맞춤화 추가를 지원합니다 - ⚡ 하이파워
최대 20C 방전 가능 가능 - ⏱️ 긴 주기 수명
장기적인 제품 사용 요구를 충족합니다 - 🛡️ 높은 안전성
종합 안전 시험 통과 - 🔋 진정격 용량
제품 설계 역량에 부합합니다 - ⚛️ 다중 화학 옵션
LCO, NCM, NCA 및 LFP 시스템을 다룹니다 - 🧰 다중 보호 메커니즘
과충전, 과방전, 과전류 및 단락 방지 기능이 포함된 내장 보호 보드
제품 적용 분야
이 제품은 다양한 휴대용 및 전원형 전자 장치에 적합하며, 일반적인 응용 분야는 다음과 같습니다:
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개인 관리 및 건강: 전동 칫솔, 미용 기기, 피트니스 트래커, 의료기기
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스마트 디지털 및 오디오: 헤드폰, 스피커, 네뷸라이저, 장난감, 조명
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재정 지급 및 사무실: POS 기계, USB 토큰, 휴대용 프린터
기술 매개변수
| 모델 | KYS 501040 |
| 셀 크기 | 5×10×40 mm |
| 완성된 크기 | 5×10×42 mm |
| 작동 전압 | 3.7 V |
| 수용 인원 | 130 mAh |
| 내부 저항 | 160 mΩ |
| 처리 방법 | 커스텀 |
| 적용 범위 | 전자 제품 |
| 충전 전압 | 4.2 V |