X3C26P1-03S RF/IF and RFID |
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Allicdata Part #: | 1173-1114-2-ND |
Manufacturer Part#: |
X3C26P1-03S |
Price: | $ 1.03 |
Product Category: | RF/IF and RFID |
Manufacturer: | |
Short Description: | COUPLER 90DEG 2650-2800MHZ 3DB |
More Detail: | RF Directional Coupler LTE, WiMAX 2.3GHz ~ 2.9GHz ... |
DataSheet: | X3C26P1-03S Datasheet/PDF |
Quantity: | 8000 |
2000 +: | $ 0.92925 |
Series: | Xinger III® |
Packaging: | Tape & Reel (TR) |
Part Status: | Active |
Coupler Type: | Standard |
Frequency: | 2.3GHz ~ 2.9GHz |
Coupling Factor: | 3dB |
Applications: | LTE, WiMAX |
Insertion Loss: | 0.2dB |
Power - Max: | 80W |
Isolation: | 20dB |
Return Loss: | 20.1dB |
Package / Case: | 2520 (6450 Metric) |
Supplier Device Package: | SMD |
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X3C26P1-03S RF Directional Coupler Applications and Working Principles
The X3C26P1-03S RF directional coupler is an essential component of most radio frequency (RF) systems due to its ability to measure signal power without interfering with the RF system. It is widely used in radio, television, and satellite systems for signal gain and signal detection purposes. This article will cover the application fields and working principles of the X3C26P1-03S RF directional coupler.
Applications of the X3C26P1-03S RF Directional Coupler
The X3C26P1-03S RF directional coupler is widely used in radio, television, and satellite systems for signal gain and signal detection. It is a type of coupler that is designed to measure the power of an RF signal by transferring a portion of the RF energy from the main line to a secondary line without interfering with the original signal. This allows for accurate readings of the signal power without having to disrupt the system itself.
The X3C26P1-03S is a popular choice in radio stations, especially for wide-band operation, for its immunity to RF interference. These couplers have the ability to provide a level of control of the signal power in the secondary line that is not available with other types of couplers. The X3C26P1-03S is also used in television and satellite systems for signal strength and signal detection purposes.
Working Principle of X3C26P1-03S RF Directional Coupler
The X3C26P1-03S RF directional coupler works by transferring a portion of the RF energy from the main line to the secondary line with minimal interference. This is accomplished using a combination of transformer and capacitor elements which are arranged in what is known as a "H" configuration. The H configuration allows for the transfer of energy between the primary and secondary lines, while also providing a high level of isolation between the two.
The transformer is a key part of the X3C26P1-03S and it is responsible for maintaining the isolation between the primary and the secondary lines. The transformer is a two-winding device that converts the RF frequency into a lower voltage, which is then used to drive the capacitor. The capacitor is then used to store and transfer the energy from the primary to the secondary line.
The X3C26P1-03S is also known for its low insertion loss and high return loss which helps to maintain the isolation between the primary and secondary lines. The directional coupler also provides a high level of isolation between the primary and secondary lines which prevents interfering signals from entering the secondary line. The directional coupler also provides a high degree of accuracy in terms of measuring signal power and strength.
Conclusion
The X3C26P1-03S RF directional coupler is a widely used component in radio, television, and satellite systems for signal gain and signal detection. It is a type of coupler that is able to measure signal strength without interfering with the system. The working principle of the X3C26P1-03S is based on using a transformer and capacitor to transfer energy between the primary and secondary lines, while also providing a high level of isolation between the two. The X3C26P1-03S is known for its low insertion loss and high return loss which make it an ideal choice for a variety of RF systems.
The specific data is subject to PDF, and the above content is for reference
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