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18250 3,7V große Superkondensatorzellen

The 18250 3.7V lithium capacitor battery boasts stable voltage output, ultra-low self-discharge and reliable multi-protection safety system. It supports customizable specifications, high 20C discharge rate and long service life, widely matching various portable smart electronic devices.

  • Model: 18250 Lithium-Ion Capacitor
  • Cell Size: 18(Diameter)×25 mm
  • Nennspannung: 3,7 V
  • Entladungsstrom: 3 A
  • Leistung: 600 mAh
  • Innenwiderstand: 60 mΩ
  • Anwendungsbereich: Elektronische Produkte
  • Ladespannung: 4,2 V
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Große Superkondensatorzellen
Supercapacitor Battery Module
High Capacitance Battery Cell
Große Superkondensatorzellen
Supercapacitor Battery Module
High Capacitance Battery Cell

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Produktdetails

Technische Parameter

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Überblick

Large Supercapacitor Cells Structural Overview

Engineers construct large supercapacitor cells by organizing electrochemical double-layer structures inside a sealed cylindrical or prismatic enclosure. First, they stack activated carbon electrodes with a high-surface-area separator membrane, and they assemble the layers into a tightly compressed electrode roll or stacked block. Meanwhile, technicians maintain precise pressure control during assembly to ensure uniform pore distribution across the electrode interface. After that, they place the electrode assembly into a rigid metal housing and stabilize mechanical alignment before electrolyte filling begins.

Electrode Material System and Ionic Medium

Manufacturers prepare electrodes using porous activated carbon mixed with conductive carbon additives and polymer binders, and they coat this mixture onto aluminum current collectors. In addition, they introduce an organic electrolyte system containing quaternary ammonium salts dissolved in carbonate solvents, enabling rapid ionic movement across the porous network. Furthermore, they incorporate microporous separator films to prevent internal short circuits while maintaining ion diffusion pathways. Meanwhile, the enclosure uses aluminum or steel casing materials to preserve structural integrity under repeated charge-discharge stress cycles.

Cell Fabrication and Assembly Process

Technicians begin electrode production by dispersing carbon powder, conductive agents, and binder systems into a uniform slurry, and they apply this slurry onto metal foils using precision coating lines. Then, they dry the coated electrodes under controlled thermal conditions to remove residual solvents. After that, they compress the electrode layers through calendaring to optimize density and surface uniformity. Subsequently, they cut and assemble the electrodes into cylindrical or stacked configurations and wind or press them into a compact core structure. Meanwhile, they install current collectors and terminal interfaces using resistance welding or mechanical compression bonding.

Formation Testing and Industrial Standards Compliance

Engineers conduct initial charge conditioning cycles to stabilize electrode-electrolyte interfaces and ensure uniform charge distribution across the cell. Then, they perform long-duration cycling tests to evaluate capacitance retention and internal resistance stability under controlled temperature conditions. Finally, quality teams execute dimensional inspection, electrical parameter validation, and sealing verification. Throughout production, manufacturers align with IEC energy storage safety guidelines and industrial reliability standards commonly applied to high-capacitance supercapacitor systems used in high-power electronic designs.

Produktdetails

Produktmerkmale

  1. 🛠️ Anpassbar
    Anpassbar, um Kundenanforderungen zu erfüllen
  2. Hochleistung
    Maximal 20°C verfügbare Entladungsrate
  3. ⏱️ Lange Zykluszeit
    Erfüllt langfristige Produktnutzungsbedürfnisse
  4. 🛡️ Hohe Sicherheit
    Umfassende Sicherheitstests bestanden
  5. 🔋 Wahre Nennkapazität
    Entspricht der Produktdesignkapazität
  6. ⚛️ Multi-Chemie-Optionen
    Deckt LCO-, NCM-, NCA- und LFP-Systeme ab
  7. 🧰 Mehrfachschutzmechanismus
    Eingebaute Schutzplatte mit Überladungs-, Überentladungs-, Überstrom- und Kurzschlussschutz

Produktanwendungsgebiete

Dieses Produkt eignet sich für eine Vielzahl tragbarer und elektrischer elektronischer Geräte mit typischen Anwendungen darunter:

  • Körperpflege & Gesundheit: Elektrische Zahnbürsten, Schönheitsgeräte, Fitnesstracker, medizinische Geräte

  • Smart Digital & Audio: Kopfhörer, Lautsprecher, Vernebler, Spielzeug, Lichter

  • Finanzzahlung & Büro: POS-Maschinen, USB-Token, tragbare Drucker

Technische Parameter

Modell KYS 18250
Zellgröße 18(Diameter)×25 mm
Entladungsstrom 3 A
Betriebsspannung 3,7 V
Kapazität 600 mAh
Innerer Widerstand 60 mΩ
Verarbeitungsmethode Angepasst pro Anfrage
Anwendungsbereich Elektronische Produkte
Ladespannung 4,25 V

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