Electric Double Layer Capacitors (EDLC), Supercapacitors

Image Part Number Description / PDF Quantity Rfq
MAL223051003E3

MAL223051003E3

Vishay BC Components/Beyshlag/Draloric

CAP ALUM 20F 3V 2000H

0

MAL223531015E3

MAL223531015E3

Vishay BC Components/Beyshlag/Draloric

CAP ALUM 12F 3V 1500H

0

MAL223051004E3

MAL223051004E3

Vishay BC Components/Beyshlag/Draloric

CAP ALUM 25F 3V 2000H

0

MAL222051012E3

MAL222051012E3

Vishay BC Components/Beyshlag/Draloric

CAP ALUM 7F 2.7V 1000H

0

MAL222050004E3

MAL222050004E3

Vishay BC Components/Beyshlag/Draloric

CAP ALUM 20F 2.7V 1000H

0

MAL223091009E3

MAL223091009E3

Vishay BC Components/Beyshlag/Draloric

CAP 60F -20% +50% 3V T/H

134

MAL222551013E3

MAL222551013E3

Vishay BC Components/Beyshlag/Draloric

CAP 10F -20% +50% 2.7V T/H

3555

MAL219690102E3

MAL219690102E3

Vishay BC Components/Beyshlag/Draloric

CAP 90F -20% +80% 5.6V T/H

1453

MAL222031012E3

MAL222031012E3

Vishay BC Components/Beyshlag/Draloric

CAP ALUM 7F 2.7V 1000H

0

MAL223551015E3

MAL223551015E3

Vishay BC Components/Beyshlag/Draloric

CAP ALUM 12F 3V 1500H

0

MAL222051008E3

MAL222051008E3

Vishay BC Components/Beyshlag/Draloric

CAP ALUM 50F 2.7V 1000H

0

MAL222531003E3

MAL222531003E3

Vishay BC Components/Beyshlag/Draloric

CAP ALUM 20F 2.7V 2000H

0

MAL219691214E3

MAL219691214E3

Vishay BC Components/Beyshlag/Draloric

CAP 15F -20% +80% 5.6V T/H

388

MAL222031007E3

MAL222031007E3

Vishay BC Components/Beyshlag/Draloric

CAP ALUM 30F 2.7V 1000H

0

MAL222591001E3

MAL222591001E3

Vishay BC Components/Beyshlag/Draloric

CAP 40F -20% +50% 2.7V T/H

0

MAL223531008E3

MAL223531008E3

Vishay BC Components/Beyshlag/Draloric

CAP ALUM 50F 3V 2000H

0

MAL223091008E3

MAL223091008E3

Vishay BC Components/Beyshlag/Draloric

CAP 50F -20% +50% 3V T/H

75

MAL219691203E3

MAL219691203E3

Vishay BC Components/Beyshlag/Draloric

CAP 15F -20% +80% 4.2V T/H

137

MAL222551015E3

MAL222551015E3

Vishay BC Components/Beyshlag/Draloric

CAP ALUM 12F 2.7V 1500H

0

MAL223531012E3

MAL223531012E3

Vishay BC Components/Beyshlag/Draloric

CAP ALUM 7F 3V 1000H

0

Electric Double Layer Capacitors (EDLC), Supercapacitors

1. Overview

Electric Double Layer Capacitors (EDLC), commonly referred to as supercapacitors, are electrochemical energy storage devices that bridge the gap between conventional capacitors and batteries. They store energy through electrostatic charge separation at the electrode-electrolyte interface, offering high power density, rapid charge/discharge cycles, and exceptional cycle life (up to 1 million cycles). Their importance in modern technology lies in enabling energy-efficient systems for applications requiring burst power, energy recovery, and backup power solutions.

2. Main Types and Functional Classification

Type Functional Features Application Examples
EDLC (Carbon-based) High power density, long cycle life, low energy density Regenerative braking systems, UPS
Pseudocapacitors Higher energy density via redox reactions, moderate cycle life Portable electronics, grid energy storage
Hybrid Supercapacitors Combines EDLC and battery materials for balanced energy/power density Electric vehicles, renewable energy systems

3. Structure and Composition

A typical supercapacitor consists of two activated carbon electrodes separated by a porous membrane, immersed in an electrolyte (aqueous, organic, or ionic liquid). The electrodes are coated on current collectors (usually aluminum foil), and the entire assembly is enclosed in a hermetically sealed metal or polymer casing. Advanced designs incorporate graphene or carbon nanotubes to enhance surface area and conductivity.

4. Key Technical Specifications

Parameter Description & Importance
Capacitance (F) Determines charge storage capacity (range: 1 F to 5000 F)
Rated Voltage (V) Limits operational voltage (2.5 V 3.0 V per cell)
Equivalent Series Resistance (ESR) Affects power delivery efficiency (low ESR enables high pulse currents)
Energy Density (Wh/kg) Typical range: 5 50 Wh/kg
Power Density (kW/kg) Typical range: 1 10 kW/kg
Cycle Life Exceeds 100,000 cycles with minimal degradation

5. Application Fields

  • Consumer Electronics: Smart meters, LED flashlights
  • Automotive: Start-stop systems, kinetic energy recovery systems (KERS)
  • Industrial: Robotics, backup power for PLCs
  • Renewable Energy: Solar/wind energy storage, grid frequency regulation
  • Transportation: Trams, buses, and hybrid vehicles

6. Leading Manufacturers and Representative Products

Manufacturer Product Series Key Specifications
Maxwell Technologies (Tesla) BoostCap BC Series 10 F 3400 F, 2.7 V, ESR < 0.5 m
Panasonic Gold Capacitor Series 5 F 1000 F, 3.0 V, 10-year lifespan
Skeleton Technologies SkelCap Series 1200 F 5000 F, 2.85 V, 40 kW/kg power density
Samsung SDI
Supercapacitor Modules 50 F 2000 F, automotive-grade durability

7. Selection Recommendations

Key considerations include:

  • Application Requirements: Prioritize power density for pulse applications or energy density for long-duration backup
  • Voltage Matching: Use cell-balancing circuits for multi-cell stacks
  • Operating Environment: Select electrolytes suitable for temperature extremes (e.g., ionic liquids for -40 C to 85 C)
  • Lifetime Cost: Evaluate cycle life versus initial cost (e.g., EDLCs outlast batteries in cycling applications)

 

Industry Trends and Future Outlook

Emerging trends include:

  • Development of graphene-based electrodes to double energy density
  • Integration with IoT devices for smart energy management
  • Growth in automotive applications driven by EV and 48V micro-hybrid systems
  • Adoption of aqueous electrolytes for safer, low-cost energy storage
  • Hybrid supercapacitor-battery systems for renewable energy grids

The global supercapacitor market is projected to grow at 20% CAGR (2023 2030), driven by demand in transportation and renewable energy sectors.

 

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