DZ-2R5D107T Allicdata Electronics
Allicdata Part #:

604-1040-ND

Manufacturer Part#:

DZ-2R5D107T

Price: $ 22.28
Product Category:

Capacitors

Manufacturer: Elna America
Short Description: CAP 100F -20% +80% 2.5V T/H
More Detail: 100F (EDLC) Supercapacitor 2.5V Radial, Can - Snap...
DataSheet: DZ-2R5D107T datasheetDZ-2R5D107T Datasheet/PDF
Quantity: 645
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
1 +: $ 20.25000
10 +: $ 19.12500
100 +: $ 15.46880
Stock 645Can Ship Immediately
$ 22.28
Specifications
Series: DZ
Packaging: Bulk 
Lead Free Status / RoHS Status: --
Part Status: Active
Capacitance: 100F
Tolerance: -20%, +80%
Voltage - Rated: 2.5V
ESR (Equivalent Series Resistance): 80 mOhm
Lifetime @ Temp.: 1000 Hrs @ 70°C
Termination: PC Pins
Mounting Type: Through Hole
Package / Case: Radial, Can - Snap-In
Lead Spacing: 0.394" (10.00mm)
Size / Dimension: 1.378" Dia (35.00mm)
Height - Seated (Max): 2.047" (52.00mm)
Operating Temperature: -25°C ~ 70°C
Description

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Electric Double Layer Capacitors (EDLC)

DZ-2R5D107T is an electric double layer capacitor (EDLC), also known as supercapacitor. EDLCs are energy storage devices similar to batteries, but are capable of providing higher energy density compared to conventional capacitors. EDLCs consist of two electrodes with a very thin separator in between. The electrodes and the separator are typically made of activated carbon, and the electrolyte is typically an aqueous solution.When voltage is applied to the EDLC, electrons move from one electrode to the other, creating an electric double layer of charge on the electrode surfaces and thus a capacitance. This charge separation is very stable, allowing the EDLC to store large amounts of energy. This is in contrast to conventional capacitors, which rely on a physical separation between the two electrodes.The main advantage of DZ-2R5D107T is its extreme capacitance. It can store up to 10,000 Farads (F) of charge in a small package, which is much higher than conventional capacitors. This allows it to rapidly store and discharge large amounts of energy. Additionally, DZ-2R5D107T is extremely stable and can withstand wide temperature range(-45 to +85oC).

DZ-2R5D107T Application Field

DZ-2R5D107T has a wide range of applications due to its high capacitance and wide temperature range. Some of the applications include:
  • Power backup systems: DZ-2R5D107T can provide quick and effective backup power for a variety of systems. It can be used in situations where conventional batteries are not feasible.
  • Renewable energy systems: The large capacitance of DZ-2R5D107T makes it ideal for renewable energy systems. It is capable of storing large amounts of energy from renewable sources such as solar or wind energy.
  • Hybrid and electric vehicles: DZ-2R5D107T can be used in hybrid and electric vehicles to store and release energy quickly. This can provide a smoother and more efficient drive.
  • Power conditioning: DZ-2R5D107T is also used in power conditioning systems. It can store and release energy quickly to maintain a steady voltage output.

Working Principle

The working principle of DZ-2R5D107T is based on the creation of an electric double layer of charge on the electrode surfaces. When voltage is applied, electrons move from one electrode to the other, creating a layer of positive ions and a layer of negative ions on either side of the electrolyte. This creates an electric field between the electrodes, allowing a large amount of charge to be stored.When the electric field is removed, the charge returns to its original state, releasing the stored energy. This is the process by which DZ-2R5D107T stores and releases energy.

Conclusion

DZ-2R5D107T is an electric double layer capacitor (EDLC) that is capable of storing large amounts of energy in a small package. Its high capacitance and wide temperature range allow it to be used in a variety of applications, such as power backup systems, renewable energy systems, hybrid and electric vehicles, and power conditioning systems. The working principle of DZ-2R5D107T is based on the creation of an electric double layer of charge on the electrode surfaces. When voltage is applied, electrons move from one electrode to the other, creating an electric field that can store and release energy.

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

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