DBJ-5R5D105T Allicdata Electronics
Allicdata Part #:

604-1166-ND

Manufacturer Part#:

DBJ-5R5D105T

Price: $ 1.97
Product Category:

Capacitors

Manufacturer: Elna America
Short Description: CAP 1F -20% +80% 5.5V T/H
More Detail: 1F (EDLC) Supercapacitor 5.5V Radial, Can 75 Ohm @...
DataSheet: DBJ-5R5D105T datasheetDBJ-5R5D105T Datasheet/PDF
Quantity: 755
Moisture Sensitivity Level (MSL): 1 (Unlimited)
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
1 +: $ 1.79100
10 +: $ 1.44495
100 +: $ 1.12707
500 +: $ 0.83807
1000 +: $ 0.78028
2500 +: $ 0.75138
5000 +: $ 0.73693
Stock 755Can Ship Immediately
$ 1.97
Specifications
ESR (Equivalent Series Resistance): 75 Ohm @ 1kHz
Operating Temperature: -10°C ~ 85°C
Height - Seated (Max): 0.315" (8.00mm)
Size / Dimension: 0.846" Dia (21.50mm)
Lead Spacing: 0.197" (5.00mm)
Package / Case: Radial, Can
Mounting Type: Through Hole
Termination: PC Pins
Lifetime @ Temp.: 1000 Hrs @ 85°C
Series: DBJ
Voltage - Rated: 5.5V
Tolerance: -20%, +80%
Capacitance: 1F
Moisture Sensitivity Level (MSL): --
Part Status: Active
Lead Free Status / RoHS Status: --
Packaging: Bulk 
Description

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Electric Double Layer Capacitors (EDLC) and Supercapacitors are two distinct groups of energy storage components. They offer a variety of advantages over traditional batteries, such as a longer lifespan, quicker charge and discharge speeds, and greater energy density. The DBJ-5R5D105T is an electric double layer capacitor, which can be used as an efficient energy storage device in a variety of applications. This article will discuss the application fields and working principle of this DBJ-5R5D105T device.

One of the most common applications of DBJ-5R5D105T electric double layer capacitors is in regenerative braking systems for electric vehicles (EVs). In EVs, energy in the form of kinetic energy is captured and converted into electrical energy as the vehicle decelerates. This regenerative braking system can be supplemented with an EDLC device such as DBJ-5R5D105T, which would store this energy until it is needed again. This can be beneficial for accelerating or recharging the vehicle, reduce deviation from ideal driving condition by enabling quick energy supply and more.

Capacitors such as DBJ-5R5D105T could also be used to support the energy needs of renewable energy sources. Renewable sources such as solar or wind typically fluctuate, meaning that the current produced is not always available when needed. A capacitor such as DBJ-5R5D105T could be used to store the generated energy until it is needed later. This could reduce the amount of energy waste that can occur due to fluctuations in renewable sources.

In addition, the DBJ-5R5D105T electric double layer capacitor can be used in microgrid applications. In a microgrid, multiple low-voltage power sources are connected together to form a system with optimal power supply. By incorporating energy storage components such as EDLC devices in the microgrid, the system can quickly respond to fluctuations in power supply and\'store\' energy for use in any emergency situations. This could be especially beneficial when dealing with hazardous environments, such as war zones and mining sites.

The DBJ-5R5D105T device consists of two carbon electrodes that are immersed into an organic electrolyte. When a voltage is applied to the device, an electric double layer is formed on the surfaces of the electrodes. This double layer provides a high capacitance and enables efficient energy storage. The DBJ-5R5D105T has a wide operating temperature range of -20 to +85℃, which makes it suitable for a variety of application fields.

In summary, the DBJ-5R5D105T electric double layer capacitor is a versatile energy storage component that can be used in various application fields. Its ability to store large amounts of energy quickly makes it an ideal choice for regenerative braking, renewable energy sources, and microgrid systems. By understanding the working principle of this device, users can better optimize their applications and ensure optimal energy storage.

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

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