PLATINUM Series, RF Switches

Results:
26
Manufacturer
Series
Circuit
Frequency Range
Insertion Loss
Test Frequency
Isolation
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Voltage - Supply
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IIP3
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Results remaining26
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PLATINUM
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ImageProduct DetailPriceAvailabilityECAD ModelMounting TypePackage / CaseSupplier Device PackageFeaturesP1dBOperating TemperatureImpedanceCircuitRF TypeTopologyGradeVoltage - SupplyTest FrequencyInsertion LossSeriesFrequency RangeIsolationIIP3Qualification
R595443225
SPDT TERMINATED PLATINUM SMA 20G
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Module
-
-
-
-25°C ~ 75°C
50Ohm
SPDT
General Purpose
-
-
20V ~ 32V
20GHz
0.2dB (Max)
PLATINUM
0Hz ~ 20GHz
65dB (min)
-
-
R595447220
SPDT TERMINATED PLATINUM SMA 20G
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Module
-
-
-
-25°C ~ 75°C
50Ohm
SPDT
General Purpose
-
-
12V ~ 20V
20GHz
0.2dB (Max)
PLATINUM
0Hz ~ 20GHz
65dB (min)
-
-
R595457225
SPDT TERMINATED PLATINUM SMA 20G
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Quantity
Contact us
PCB Symbol, Footprint & 3D Model
-
Module
-
-
-
-25°C ~ 75°C
50Ohm
SPDT
General Purpose
-
-
12V ~ 20V
20GHz
0.2dB (Max)
PLATINUM
0Hz ~ 20GHz
65dB (min)
-
-
R593873148R
DPDT P 2.9 LSI 24 TL C+D HBC
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Module, SMA Connectors
-
-
-
-25°C ~ 75°C
50Ohm
DPDT
General Purpose
-
-
20V ~ 32V
40GHz
0.2dB (Max)
PLATINUM
0Hz ~ 40GHz
60dB (min)
-
-
R595443315
TERMINATED 4 PORTS BYPASS PLATIN
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Module
-
-
-
-25°C ~ 75°C
50Ohm
-
General Purpose
-
-
20V ~ 32V
20GHz
0.2dB (Max)
PLATINUM
0Hz ~ 20GHz
65dB (min)
-
-
R595453410
DP3T PLATINUM SMA 20GHZ LATCHING
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Module
-
-
-
-25°C ~ 75°C
50Ohm
DP3T
General Purpose
-
-
20V ~ 32V
20GHz
0.2dB (Max)
PLATINUM
0Hz ~ 20GHz
65dB (min)
-
-

About  RF Switches

Radio frequency (RF) switch products are essential components designed to facilitate the routing of RF, IF (Intermediate Frequency), or microwave signals among multiple available signal paths. These switches play a crucial role in various applications where signal selection and path switching are required. One common application of RF switches is in multi-antenna (diversity) receivers. In such systems, multiple antennas are utilized to enhance signal reception by mitigating the impact of fading and interference. RF switches enable the selection of the most optimal antenna based on signal strength, quality, or other criteria. This ensures that the receiver captures the best possible signal for processing. Another application of RF switches is in multi-mode systems. These systems support different communication modes, such as voice and data transmission, and require the ability to switch between different transmit-receive paths. RF switches enable seamless transition between these modes by selecting the appropriate path for signal transmission or reception. Additionally, RF switches are used in applications where an antenna needs to be switched between a transmit and receive signal chain. This is commonly seen in transceiver systems where the same antenna is utilized for both transmitting and receiving signals. The RF switch enables the antenna to be connected to the appropriate signal chain based on the operational mode, ensuring efficient signal transmission and reception. By providing the capability to route signals between different paths, RF switches offer flexibility and versatility in signal management. They enable efficient signal selection, path switching, and antenna configuration, thereby optimizing the performance and functionality of RF systems and devices. In summary, RF switch products serve as crucial components in various applications where signal routing, antenna selection, and path switching are required. By enabling seamless switching between different signal paths, these switches contribute to improved signal quality, enhanced system performance, and increased overall efficiency in RF, IF, or microwave signal processing.