
Allicdata Part #: | ATT-0291-05-SMA-02-ND |
Manufacturer Part#: |
ATT-0291-05-SMA-02 |
Price: | $ 64.16 |
Product Category: | RF/IF and RFID |
Manufacturer: | Cinch Connectivity Solutions Midwest Microwave |
Short Description: | ATTENUATOR 5 DB DC 12.4GHZ |
More Detail: | RF Attenuator 5dB ±0.3dB 0Hz ~ 12.4GHz 2W SMA In-... |
DataSheet: | ![]() |
Quantity: | 1000 |
5 +: | $ 58.31660 |
Series: | -- |
Packaging: | Bulk |
Part Status: | Active |
Attenuation Value: | 5dB |
Frequency Range: | 0Hz ~ 12.4GHz |
Power (Watts): | 2W |
Package / Case: | SMA In-Line Module |
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Attenuators are a type of device which lowers the intensity of an electric signal, often used to match impedance levels in signal processing systems. The ATT-0291-05-SMA-02 is a specific type of attenuator that is often used in military and other high-performance applications. This article will discuss the application field and working principle of the ATT-0291-05-SMA-02.
Applications of the ATT-0291-05-SMA-02
The ATT-0291-05-SMA-02 is a ruggedized subminiature attenuator designed to operate reliably under extreme conditions. It is often used in military and aerospace applications, as well as other applications where reliability and high performance are critical. Some potential applications for the ATT-0291-05-SMA-02 are:
- Radar systems
- Navigation systems
- Satellite communications
- Radio communications
- RF test equipment
- Measurement systems
The ATT-0291-05-SMA-02 can operate in temperatures ranging from -55°C to +105°C, and it is rated for up to 175 Watts of power. The device is available in a variety of connector and impedance options, and it is very reliable, making it ideal for use in critical applications.
Working Principle of the ATT-0291-05-SMA-02
The ATT-0291-05-SMA-02 is an active system attenuator, meaning that it uses an internal circuit to reduce signal strength. The internal circuit consists of an amplifier, variable resistors, and a matching network. The signal to be attenuated is passed through the amplifier, which boosts the signal to a level that can be handled by the resistors. The signal is then passed through the resistors, which reduce the signal le
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