Allicdata Part #: | 320160016-ND |
Manufacturer Part#: |
320160016 |
Price: | $ 17.30 |
Product Category: | RF/IF and RFID |
Manufacturer: | Seeed Technology Co., Ltd |
Short Description: | 6GHZ 2W SMA ATTENUATOR 10DB |
More Detail: | RF Attenuator 10dB 0Hz ~ 6GHz 50 Ohms 1W SMA In-L... |
DataSheet: | 320160016 Datasheet/PDF |
Quantity: | 1000 |
2 +: | $ 15.71850 |
Series: | -- |
Packaging: | Bulk |
Part Status: | Discontinued at Digi-Key |
Attenuation Value: | 10dB |
Frequency Range: | 0Hz ~ 6GHz |
Power (Watts): | 1W |
Impedance: | 50 Ohms |
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 have long been used in a wide variety of applications. They are generally considered to be a passive device which means that they do not supply any power and instead, serve to reduce the magnitude of a signal. The 320160016 attenuator is an example of this type of device and can be used in a range of applications. In this article, we will look at the application field and working principle of this particular attenuator.
At its most basic level, an attenuator serves to reduce the strength of a signal in order to prevent it from exceeding a certain value. These devices come in a variety of forms and can be used in applications in which an accurate power ration needs to be maintained, such as in radio-frequency (RF) transmissions. The 320160016 attenuator is designed to be used in applications whereby an extremely high-power signal needs to be reduced. It is most commonly used in military and commercial radio and television equipment, as well as in RF system components such as satellite antennas, satellite receivers, and cruise ship antenna systems.
The 320160016 attenuator is a device that consists of an internal ceramic block and a helical configuration of metal strips that are positioned around the core to form a structure similar to that of a reverse solenoid. This ceramic block features on each side four distinct bands consisting of two adjacent parallel strips that are positioned next to the metal helical connector. The bands are aligned such that the two parallel strips on each side form a \'bridge\' between the helical connector and the ceramic core. This bridge is the point through which the signal passes, and it is through this bridge that the attenuator reduces the signal strength.
The working principle of this attenuator is simple. When a signal is fed into it, the bridge acts as a resistor, restricting the flow of the current and lowering the intensity of the signal. Unlike other more complex attenuators, the 320160016 has one adjustable resistor on each side of the bridge, allowing the user to select the level of attenuation that is appropriate for whatever application it is being used for. By adjusting the resistors, the attenuator can be configured to reduce the signal to the desired level, depending on the requirements of the particular application.
The 320160016 attenuator is often used in the military and commercial radio and television equipment fields due to its ability to precisely reduce the signal strength in order to prevent signal overload. It is also used in RF system components such as satellite antennas, satellite receivers, and cruise ship antenna systems due to its ability to reduce the effects of signal interference and distortion. As such, the 320160016 attenuator is an essential piece of equipment for applications, where a reliable and consistent signal strength is required.
In conclusion, the 320160016 attenuator is a device which is designed to reduce the strength of a signal in order to prevent it from exceeding a certain value. Its simple working principle is based on the principle of the resistor, whereby a bridge acts as an adjustable resistor, which can be used to control the amount of attenuation that is required for the particular application. The 320160016 attenuator is a versatile device that is used in a variety of applications in which an accurate power ration needs to be maintained, such as in radio-frequency (RF) transmissions.
The specific data is subject to PDF, and the above content is for reference
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