Nichicon JUWT1155MPD
- JUWT1155MPD
- Nichicon
- CAP 1.5F 20% 2.7V T/H
- Electric Double Layer Capacitors (EDLC), Supercapacitors
- JUWT1155MPD Datasheet
- Radial, Can
- Cut Tape (CT)
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Lead free / RoHS Compliant - 2863
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What is JUWT1155MPD
Nichicon Part Number JUWT1155MPD(Electric Double Layer Capacitors (EDLC), Supercapacitors), developed and manufactured by Nichicon, distributed globally by Jinftry. We distribute various electronic components from world-renowned brands and provide one-stop services, making us a trusted global electronic component distributor.
JUWT1155MPD is one of the part numbers distributed by Jinftry, and you can learn about its specifications/configurations, package/case, Datasheet, and other information here. Electronic components are affected by supply and demand, and prices fluctuate frequently. If you have a demand, please do not hesitate to send us an RFQ or email us immediately [email protected] Please inquire about the real-time unit price, Data Code, Lead time, payment terms, and any other information you would like to know. We will do our best to provide you with a quotation and reply as soon as possible.
JUWT1155MPD Specifications
- Part NumberJUWT1155MPD
- CategoryElectric Double Layer Capacitors (EDLC), Supercapacitors
- ManufacturerNichicon
- DescriptionCAP 1.5F 20% 2.7V T/H
- PackageCut Tape (CT)
- SeriesEVerCAP® JUW
- Operating Temperature-25°C ~ 70°C
- Mounting TypeThrough Hole
- Package / CaseRadial, Can
- Tolerance±20%
- Size / Dimension0.315\" Dia (8.00mm)
- TerminationPC Pins
- Voltage - Rated2.7 V
- Lead Spacing0.138\" (3.50mm)
- Height - Seated (Max)0.512\" (13.00mm)
- Capacitance1.5 F
- ESR (Equivalent Series Resistance)3Ohm @ 1kHz
- Lifetime @ Temp.1000 Hrs @ 70°C
Application of JUWT1155MPD
JUWT1155MPD Datasheet
JUWT1155MPD Datasheet , Cut Tape (CT),EVerCAP® JUW,-25°C ~ 70°C,Through Hole,Radial, Can,±20%,0.315\" Dia (8.00mm),PC Pins,2.7 V,0.138\" (3.50mm),0.512\" (13.00mm),1.5 F,3Ohm @ 1kHz,1000 Hrs @ 70°C
JUWT1155MPD Classification
Electric Double Layer Capacitors (EDLC), Supercapacitors
FAQ about Electric Double Layer Capacitors (EDLC), Supercapacitors
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1. What is an edl capacitor?
An EDL capacitor, also known as a supercapacitor, is a device that rapidly stores and releases energy through physical adsorption and desorption of ions in an electrolyte between electrodes. Its basic structure consists of electrodes coated in a porous material, usually a carbon-based material, separated by an electrolyte, which itself is separated by a membrane.
Working Principle
The working principle of an EDL capacitor is based on the double layer effect. When two different solid and liquid phases come into contact, positive and negative charges are distributed over a short distance at the interface, forming a double layer. The charge layer along this boundary surface stores energy, similar to how conventional capacitors store energy. Advances in modern carbon-based materials have enabled porous electrodes to have large surface areas, resulting in high capacitance density and small physical form factors. -
2. What is the difference between an EDLC and a supercapacitor?
There are some differences between EDLC (Electrochemical Double Layer Capacitor) and supercapacitors in terms of definition, working principle, and application scenarios.
Definition and Basic Concepts
EDLC: EDLC is a capacitor that uses the electrochemical double layer effect to store electrical energy. It stores charge by forming a double electric layer on the electrode surface and has the characteristics of high specific capacitance and fast charging and discharging.
Supercapacitor: Supercapacitor usually refers to EDLC, which is an electrochemical element that stores energy by polarizing electrolytes and has the characteristics of high power density and long cycle life.
Working Principle
EDLC: The working principle of EDLC is based on the electrochemical double layer theory, which stores charge by forming a double electric layer on the electrode surface. This structure enables EDLC to complete the charging and discharging process in a very short time and has a high energy density.
Supercapacitor: The energy storage mechanism of supercapacitor is the same as that of EDLC, which uses the electrochemical double layer effect to store electrical energy. Its working principle is to store and release charge by polarizing electrolytes. -
3. What is the difference between EDLC and supercapacitor?
There are some differences between EDLC (Electrochemical Double Layer Capacitor) and supercapacitor in definition, working principle and application scenarios.
Definition and basic concepts
EDLC: EDLC is a capacitor that uses the electrochemical double layer effect to store electrical energy. It stores charge by forming a double layer on the electrode surface and has the characteristics of high specific capacitance and fast charging and discharging.
Supercapacitor: Supercapacitor usually refers to EDLC, which is an electrochemical element that stores energy by polarizing electrolytes and has the characteristics of high power density and long cycle life.
Working principle
EDLC: The working principle of EDLC is based on the electrochemical double layer theory, which stores charge by forming a double layer on the electrode surface. This structure enables EDLC to complete the charging and discharging process in a very short time and has a high energy density.
Supercapacitor: The energy storage mechanism of supercapacitor is the same as that of EDLC, both of which use the electrochemical double layer effect to store electrical energy. Its working principle is to store and release charge by polarizing electrolytes.
Application Scenarios
EDLC: Due to the characteristics of fast charging and discharging and high energy density, EDLC is widely used in situations that require fast energy release and recovery, such as car starting systems, electronic equipment backup power supplies, etc.
Supercapacitors: Supercapacitors are also suitable for application scenarios that require fast charging and discharging and high energy density, such as electric vehicles, solar power generation systems, uninterruptible power supplies (UPS), etc.
In addition, supercapacitors are also commonly used in situations that require high power output, such as hybrid vehicles and peak power devices.
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