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Product Detailed Parameters
- Description:IC RF SWITCH SP6T 3GHZ
- Series:SPnT
- Mfr:Radiall USA, Inc.
- Package:Bulk
- Product Status:Active
- RF Type:General Purpose
- Topology:-
- Circuit:SP6T
- Frequency Range:0Hz ~ 3GHz
- Isolation:80dB (min)
- Insertion Loss:0.2dB (max)
- Test Frequency:3GHz
- Impedance:50Ohm
- Voltage - Supply:24V ~ 30V
- Operating Temperature:-40°C ~ 85°C
- Mounting Type:-
- Package / Case:Module
- P1dB:-
- IIP3:-
- Features:-
- Supplier Device Package:-
- Grade:-
- Qualification:-
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Overview
The R574003600 is a single-pole six-throw (SP6T) RF coaxial switch from the Ramses N series by Radiall USA, Inc. It operates within a frequency range of 0 to 3 GHz and features a normally open state. The device utilizes a 28V DC control voltage with pin terminals for actuation. Constructed for high reliability, it offers low insertion loss and high isolation suitable for demanding RF applications.
Feature Summary
- Single-pole six-throw switching architecture
- Normally open contact configuration
- Ramses N series rugged design
Applications
- RF signal routing in communication systems
- Test and measurement equipment
- Aerospace and defense radar systems
Procurement Notes
Verify the specific datasheet revision and manufacturing lot codes upon order confirmation. Ensure that the 28V DC control requirements align with system power supplies. Confirm terminal type compatibility during integration planning.
Selection Notes
Select this component when a normally open SP6T configuration is required up to 3 GHz. Consider the Ramses N series durability for harsh environments. Validate thermal management needs based on continuous wave power handling specifications.
Part Context
This part belongs to the Ramses N family of hermetically sealed coaxial switches designed for high-reliability applications. It complements other SPnT variants in the series, offering consistent performance across multiple throw configurations while maintaining strict RF characteristics.
Replacement Considerations
Consult official Radiall documentation for direct cross-reference substitutes. Verify interface and electrical parameter equivalence before substitution.
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