RN114-0.3-02 Allicdata Electronics
Allicdata Part #:

817-1536-ND

Manufacturer Part#:

RN114-0.3-02

Price: $ 0.00
Product Category:

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Manufacturer: Schaffner EMC Inc.
Short Description: CMC 47MH 300MA 2LN TH
More Detail: 47mH @ 10kHz 2 Line Common Mode Choke Through Hole...
DataSheet: RN114-0.3-02 datasheetRN114-0.3-02 Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Voltage Rating - AC: 250V
Package / Case: Horizontal, 4 PC Pin
Height (Max): 0.531" (13.50mm)
Size / Dimension: 0.886" L x 0.846" W (22.50mm x 21.50mm)
Mounting Type: Through Hole
Features: --
Approvals: UR, VDE
Ratings: --
Operating Temperature: -40°C ~ 125°C
Series: RN
Voltage Rating - DC: --
DC Resistance (DCR) (Max): 1.75 Ohm (Typ)
Current Rating (Max): 300mA (Typ)
Inductance @ Frequency: 47mH @ 10kHz
Number of Lines: 2
Filter Type: Power Line
Part Status: Obsolete
Packaging: Tray 
Description

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Common Mode Chokes are widely used in many electrical applications. One of the most popular Common Mode Choke products is the RN114-0.3-02. This product is designed for various electrical applications such as reducing noise and interference on power lines, filtering out unwanted transient signals, and protecting motors and inverters from transients. In this article, we will discuss the application fields and working principles of the RN114-0.3-02 Common Mode Choke.

Applications of the RN114-0.3-02 Common Mode Choke

The RN114-0.3-02 Common Mode Choke is suitable for applications such as power line filters, motor and inverter protection, and noise control. In power line filters, the choke prevents the interference of transients with the power line, reducing noise and interference. It also filters out unwanted transient signals, helping to avoid interference with other electrical systems. In motor and inverter protection, the choke provides isolation from transients, helping to shield the motor and inverter from unexpected power variations. The choke also helps to reduce electromagnetic interference (EMI) so that the motor and inverter can continue to operate at a steady state. The noise control application is the most important use of the RN114-0.3-02 Common Mode Choke, as it helps to reduce crosstalk interference from other electrical devices, thus preventing interference between systems.

Working Principle of the RN114-0.3-02 Common Mode Choke

The RN114-0.3-02 Common Mode Choke works by using an inductance element. The inductance element in the RN114-0.3-02 Common Mode Choke helps to suppress transients on the power line. There are two types of transients – common mode and differential mode transients. Common mode transients occur when two lines are affected by the same external signal. Differential mode transients occur when two lines are affected by different external signals. The inductance element in the RN114-0.3-02 Common Mode Choke helps to suppress both common mode and differential mode transients, reducing interference on the power line.

The RN114-0.3-02 Common Mode Choke also works by providing isolation between the power line and other electrical systems. The choke provides a separation between high-voltage signals and low-voltage signals, which helps to protect the motor and inverter from transients. It also works to reduce the coupling of electric fields between the power line and other electrical systems, helping to reduce interference between multiple power systems.

Finally, the RN114-0.3-02 Common Mode Choke helps to reduce electromagnetic interference (EMI). The choke filters out unwanted high-frequency signals on the power line, thus preventing interference with other electrical systems. It also helps to reduce the noise originating from the power line, helping to reduce crosstalk interference between systems.

Conclusion

The RN114-0.3-02 Common Mode Choke is suitable for a variety of applications, such as power line filters, motor and inverter protection, and noise control. The choke works by using an inductance element to suppress both common mode and differential mode transients. It also provides isolation between the power line and other electrical systems, helping to reduce the coupling of electric fields. Lastly, it helps to reduce electromagnetic interference (EMI), helping to reduce crosstalk interference between systems.

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

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