
Allicdata Part #: | ATT-0298-04-SMA-02-ND |
Manufacturer Part#: |
ATT-0298-04-SMA-02 |
Price: | $ 89.38 |
Product Category: | RF/IF and RFID |
Manufacturer: | Cinch Connectivity Solutions Midwest Microwave |
Short Description: | ATTENUATOR 4 DB DC 26.5GHZ |
More Detail: | RF Attenuator 4dB ±0.3dB 0Hz ~ 26.5GHz 2W SMA In-... |
DataSheet: | ![]() |
Quantity: | 1000 |
5 +: | $ 81.25740 |
Series: | -- |
Packaging: | Bulk |
Part Status: | Active |
Attenuation Value: | 4dB |
Frequency Range: | 0Hz ~ 26.5GHz |
Power (Watts): | 2W |
Package / Case: | SMA In-Line Module |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
Attenuators are electronic components used to reduce and control the power of an input signal. The ATT-0298-04-SMA-02 is a type of attenuator designed for use in a wide range of applications from communications, audio, video, and other electronics. This attenuator is a chip that is surface-mounted on a board to reduce a signal’s power level. It offers a wide operating range from 0 to 40 dB attenuation with low imbalance and low VSWR. Here, we discuss the application field and working principle of the ATT-0298-04-SMA-02 attenuator.
Application Fields
The ATT-0298-04-SMA-02 provides excellent performance in transmissions lines operating from 0 to 500 MHz and is ideal for use in a wide range of radio and audio applications. It is well suited for use in communications gear, base stations, mobile phones, receivers, transceivers, antennas, and aircraft and automotive audio systems. It is also useful in distributed amplifiers, splitters, broadband amplifiers, and other applications that require power level control and low VSWR.
The ATT-0298-04-SMA-02 offers high isolation and low insertion loss, making it ideal for use in front ends of amplifiers, mobile signal boosters, and other radio frequency (RF) signal processing systems. It can also be used in combination with multiplexers and power splitters to optimize and fine-tune signal levels and reduce distortion. This attenuator also has a high signal-to-noise ratio, making it ideal for use in applications that demand maximum performance without noise.
Working Principle
The ATT-0298-04-SMA-02 attenuator operates on the principle of a four-pole, single-mode signal path. It consists of a central core, a dielectric and two metal conductors that are separated by the core. As the signal passes through the core, it is affected by the dielectric\'s resistivity and that of the conductors. This creates a resistive attenuation of the signal. The signal strength is determined by the resistance of the core and the conductors, which is determined by their dielectric and impedance.
The core of the ATT-0298-04-SMA-02 is constructed from metal strips. The dielectric material is a thin film of plastic or metal and acts as a conductor for the signal. The conductors are electrically connected and form an electrical circuit. When the signal passes through the core, it is affected by the dielectric and resistor. The signal is reduced by an amount determined by the resistance and the dielectric’s resistivity.
The ATT-0298-04-SMA-02 can be adjusted to provide any level of attenuation from 0 to 40 dB. This is done by changing the resistance of the dielectric and the impedance of the conductors. This allows the attenuator to provide a wide range of attenuation levels. The attenuator also offers a wide frequency range and low VSWR, making it ideal for use in a variety of applications.
Conclusion
The ATT-0298-04-SMA-02 is a high-performance attenuator designed for a wide range of transmission lines. It offers high isolation and low insertion loss, making it ideal for use in communications gear, base stations, receivers, transceivers, and other applications requiring power level control and low VSWR. It operates on the principle of a four-pole, single-mode circuit, and can be adjusted to provide any level of signal attenuation from 0 to 40 dB. The ATT-0298-04-SMA-02 attenuator is an ideal choice for use in a variety of radio and audio applications.
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