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RF Switches

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MMS006PP3
Microchip Technology
43dBm absorb 20GHz SPDT Radar 0MHz 20GHz 2dB 50Ω 25dBm SP2T
Quantity: 4
Ship Date: 6-13 working days
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Ext. Price: $47.00
MOQ: 1
Mult: 1
SPQ: 1
MIC2808-NNYFT-TR
Microchip Technology
Buck CDMA,W-CDMA,WLL QFN SMD mount
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MMS006AA
Microchip Technology
42dBm absorb 20GHz 10ns SPDT Radar 1 0MHz -40dB 20GHz 2dB 2dB 50Ω 24dBm SP2T
Quantity: 0
Ship Date: 6-13 working days
50+ $37.401
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x $37.401
Ext. Price: $1870.05
MOQ: 50
Mult: 1
SPQ: 1

RF Switches

RF Switch Definition:
An RF (Radio Frequency) switch is a type of electronic component that selectively routes radio frequency signals between different input and output ports. It operates in the frequency range of radio waves, typically from a few kilohertz to several hundred gigahertz.

Function:
The primary function of an RF switch is to control the flow of RF signals without significantly altering their characteristics. It can be used to:
1. Connect a single antenna to multiple receivers.
2. Direct signals from multiple transmitters to a single antenna.
3. Isolate or combine signals in a communication system.
4. Test and measure RF components by switching between different test points.

Applications:
RF switches are widely used in various applications, including:
1. Communication Systems: In mobile phones, base stations, and communication systems for signal routing.
2. Test Equipment: For automated testing of RF components in production lines.
3. and Defense: In radar systems and secure communication networks.
4. Automotive: For hands-free communication systems and vehicle-to-vehicle communication.
5. Medical Equipment: In diagnostic imaging and telemedicine applications.

Selection Criteria:
When selecting an RF switch, consider the following criteria:
1. Frequency Range: Ensure it covers the operating frequency of the application.
2. Insertion Loss: Lower is better, as it indicates minimal signal degradation.
3. Isolation: High isolation between ports to prevent signal leakage.
4. Power Handling: Must be able to handle the power levels of the signals without damage.
5. Switching Speed: Fast enough for the application's data rate.
6. Control Method: Whether it's manual, automatic, or controlled by a microcontroller.
7. Size and Form Factor: Depending on the space constraints of the system.
8. Reliability and Durability: Especially important for applications requiring long-term operation without failure.

In summary, an RF switch is a critical component in many electronic systems that require the dynamic routing of radio frequency signals. Its selection should be based on the specific requirements of the application, including frequency range, performance parameters, and physical constraints.
Please refer to the product rule book for details.