ESHSR-0400C0-002R7 Allicdata Electronics
Allicdata Part #:

589-1006-ND

Manufacturer Part#:

ESHSR-0400C0-002R7

Price: $ 0.00
Product Category:

Capacitors

Manufacturer: NessCap Co Ltd
Short Description: CAP 400F 10% 2.7V THROUGH HOLE
More Detail: 400F (EDLC) Supercapacitor 2.7V Radial, Can - Snap...
DataSheet: ESHSR-0400C0-002R7 datasheetESHSR-0400C0-002R7 Datasheet/PDF
Quantity: 1000
Moisture Sensitivity Level (MSL): 1 (Unlimited)
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
ESR (Equivalent Series Resistance): 3.2 mOhm
Operating Temperature: -40°C ~ 65°C
Height - Seated (Max): 2.520" (64.00mm)
Size / Dimension: 1.378" Dia (35.00mm)
Lead Spacing: --
Package / Case: Radial, Can - Snap-In
Mounting Type: Through Hole
Termination: PC Pins
Lifetime @ Temp.: 1000 Hrs @ 85°C
Series: ESHSR
Voltage - Rated: 2.7V
Tolerance: ±10%
Capacitance: 400F
Moisture Sensitivity Level (MSL): --
Part Status: Obsolete
Lead Free Status / RoHS Status: --
Packaging: Bulk 
Description

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Electric Double Layer Capacitors (EDLCs) are capacitors with high storage capacity that are constructed with two double layers made of activated carbon. EDLCs are known for their very long life span and their ability to operate at high temperatures. They also have the advantage of being able to quickly absorb and release very large amounts of electrical energy, making them suitable for applications that require rapid charging and discharging. The EDLCs have a wide range of applications, including automotive, medical, portable electronics, and renewable energy.

ESHSR-0400C0-002R7 is an Electric Double Layer Capacitor (EDLC) from Electrostandard Ltd. It consists of two layers of porous carbon materials on opposite sides of a separator made of paper or aluminum. The two layers are polarized and connected with electrodes, which allow for an electric current to pass through the device. The capacitance of the ESHSR-0400C0-002R7 is 400F and the rated working voltage is 2.7V. The device has a low resistance to leakage and comes with a temperature range of -40 to 85°C. Additionally, the device is resistant to vibration and shock.

The working principle of EDLCs is based on storing electrical energy in an electric double layer at the interface between two electrodes and an electrolyte. The double layer is formed by two charged layers of ions that form a capacitor. These ions have a strong affinity for the charged particles in the electrolyte. When an electric field is applied, the ions move within the layers and induce a charge in the adjacent surface, creating an opposing electric field and resulting in an electrochemical reaction.

The main advantage of EDLCs is their high energy density compared to other capacitors. They are able to absorb and release a large amount of energy in a short amount of time, making them ideal for applications that need fast charging and discharging. Additionally, they have a long lifespan and are able to withstand high temperatures, making them suitable for applications that require safe and reliable operation. Lastly, EDLCs are resistant to vibration and shock, making them suitable for applications where reliability is essential.

The ESHSR-0400C0-002R7 EDLC can be used in a variety of applications. Its long life span and high energy density make it suitable for automotive, medical, portable electronics, and renewable energy applications. Additionally, its wide temperature range and high shock and vibration resistance makes it suitable for harsh or unstable environments. The device can be used in applications such as uninterruptible power supplies, energy recycling, wireless communications, and electric vehicles.

In conclusion, the ESHSR-0400C0-002R7 is an EDLC with a high energy density and a long life span. Its working principle is based on the use of two layers of porous carbon electrodes and an electrolyte. The device is suitable for a wide range of applications, including automotive, medical, portable electronics, and renewable energy. Its wide temperature range and high shock and vibration resistance makes it suitable for harsh or unstable environments.

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

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