BCAP2000 P270 K05 Allicdata Electronics
Allicdata Part #:

1182-1025-ND

Manufacturer Part#:

BCAP2000 P270 K05

Price: $ 26.26
Product Category:

Capacitors

Manufacturer: Maxwell Technologies Inc.
Short Description: CAP 2000F 2.7V WELD
More Detail: 2000F (EDLC) Supercapacitor 2.7V Axial, Can - Sold...
DataSheet: BCAP2000 P270 K05 datasheetBCAP2000 P270 K05 Datasheet/PDF
Quantity: 1000
Moisture Sensitivity Level (MSL): 1 (Unlimited)
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
15 +: $ 23.86800
Stock 1000Can Ship Immediately
$ 26.26
Specifications
ESR (Equivalent Series Resistance): 0.35 mOhm
Operating Temperature: -40°C ~ 65°C
Height - Seated (Max): 4.028" (102.30mm)
Size / Dimension: 2.390" Dia (60.70mm)
Lead Spacing: --
Package / Case: Axial, Can - Solder Terminals
Mounting Type: Chassis Mount
Termination: Weld Stud
Lifetime @ Temp.: 1500 Hrs @ 65°C
Series: K2
Voltage - Rated: 2.7V
Tolerance: --
Capacitance: 2000F
Moisture Sensitivity Level (MSL): --
Part Status: Active
Lead Free Status / RoHS Status: --
Packaging: Bulk 
Description

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Electric Double Layer Capacitors, popularly known as EDLC, are devices that combine the properties of a battery with those of a conventional capacitor. This type of capacitor has three main components: the negative electrode, the positive electrode, and the electrolyte. The negative and positive electrodes are two plates that are made from porous carbon material, which is impregnated with a conducting material such as graphite and then sealed in a container that is filled with an inert electrolyte. The electrodes are separated by an electrical barrier, such as Ruthenium, that allows the capacitor to store electrical charge.

The working principle of an EDLC is relatively straightforward. When current is applied to the capacitor, a process known as ionization occurs, producing what is known as an Electrical Double Layer (EDL) at the interface between the electrodes and the electrolyte. This EDL consists of positively and negatively charged ions that form an immobilized electrical charge on the surface of the electrodes. This charge is stored in the capacitor and can be used to generate a voltage in the circuit. The capacitance, or the amount of charge that can be stored in the capacitor, is determined by the surface area of the electrodes, the distance between the electrodes, and the properties of the electrolyte. Although EDLCs can store less energy than batteries, they have faster charging and discharging times, allowing them to be used in applications such as wind turbines, solar power systems, and electric vehicles.

Supercapacitors, also known as ultracapacitors or high-energy capacitors, are similar to EDLCs in that they are also composed of two electrodes with an electrolyte, but they differ in a number of ways. The most obvious distinction is that supercapacitors have significantly larger capacitance values than EDLCs. This increased capacitance is achieved by using electrodes made from highly porous materials, such as activated carbon and metal oxides, which increase the surface area of the electrodes and allow for more charge to be stored. Another key difference between EDLCs and supercapacitors is that the charging and discharging times of supercapacitors are much faster than those of EDLCs. This makes them ideal for applications where quick response times are needed, such as automotive starters, UPS systems, and energy storage systems.

BCAP2000 P270 K05 is an example of a supercapacitor. It features two electrodes made from highly conductive activated carbon and an electrolyte composed of a proprietary alkaline/cyanide solution. The electrodes have a large surface area, which allows them to store an impressive amount of energy. The K05 is designed for applications that require quick response times and high power, such as automotive engine starters, UPS systems, and energy storage systems. The K05 is a highly reliable and robust supercapacitor that is capable of withstanding high temperatures, shock, and vibration.

In conclusion, EDLCs and supercapacitors are two types of capacitors that are used for a variety of applications. EDLCs are capable of storing low levels of energy, while supercapacitors can store higher levels of energy thanks to their highly porous electrodes. BCAP2000 P270 K05 is a type of supercapacitor that is designed for high power applications, such as automotive starters, UPS systems, and energy storage systems.

The specific data is subject to PDF, and the above content is for reference

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BCAP1500 P270 K04 Maxwell Tech... 27.8 $ 1 CAP 1500F 2.7V THREADED15...
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BCAP0010 P270 X01 Maxwell Tech... 2.23 $ 3000 CAP SUPER 10F 2.7V WIRE L...
BCAP0025 P270 X01 Maxwell Tech... 2.99 $ 1500 CAP SUPER 25F 2.7V WIRE L...
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BCAP1200 P270 K05 Maxwell Tech... 20.59 $ 1000 CAP 1200F 2.7V WELD1200F ...
BCAP2000 P270 K05 Maxwell Tech... 26.26 $ 1000 CAP 2000F 2.7V WELD2000F ...
BCAP0050 P270 T01 Maxwell Tech... 0.0 $ 1000 CAP 50F 2.7V THROUGH HOLE...
BCAP0650 P270 K05 Maxwell Tech... 0.0 $ 1000 CAP 650F 2.7V WELD650F (E...
BCAP1500 P270 K05 Maxwell Tech... 0.0 $ 1000 CAP 1500F 2.7V WELD1500F ...
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