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ADRF5024

RECOMMENDED FOR NEW DESIGNS

Silicon SPDT Switch Reflective, 100 MHz to 44 GHz

Part Models
4
1ku List Price
Starting From $75.09
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Part Details

  • Ultrawideband frequency range: 100 MHz to 44 GHz
  • Reflective design
  • Low insertion loss with impedance match
    • 1.0 dB typical to 18 GHz
    • 1.4 dB typical to 40 GHz
    • 1.7 dB typical to 44 GHz
  • Low insertion loss without impedance match
    • 0.9 dB typical to 18 GHz
    • 1.7 dB typical to 40 GHz
    • 2.1 dB typical to 44 GHz
  • High input linearity
    • P1dB: 27.5 dBm typical
    • IP3: 50 dBm typical
  • High RF input power handling
    • Through path: 27 dBm
    • Hot switching: 27 dBm
  • No low frequency spurious
  • RF settling time (50% VCTRL to 0.1 dB of final RF output): 17 ns
  • 12-terminal, 2.25 mm × 2.25 mm LGA package
  • Pin compatible with the ADRF5025 low frequency cutoff version

ADRF5024-EP Supports defense and aerospace applications (AQEC standard)

  • Download ADRF5024-EP data sheet (pdf)
  • Military temperature range (−55°C to +105°C)
  • Controlled manufacturing baseline
  • 1 assembly/test site
  • 1 fabrication site
  • Product change notification
  • Qualification data available on request
ADRF5024
Silicon SPDT Switch Reflective, 100 MHz to 44 GHz
ADRF5024 Functional Block Diagram ADRF5024 Pin Configuration
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Hardware Ecosystem

Parts Product Life Cycle Description
ADRF5025 RECOMMENDED FOR NEW DESIGNS Silicon SPDT Switch, Reflective, 9 kHz to 44 GHz
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Tools & Simulations

S-Parameter 1

ADIsimRF

ADIsimRF is an easy-to-use RF signal chain calculator. Cascaded gain, noise, distortion and power consumption can be calculated, plotted and exported for signal chains with up to 50 stages. ADIsimRF also includes an extensive data base of device models for ADI’s RF and mixed signal components.

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Evaluation Kits

eval board
EVAL-ADRF5024

ADRF5024 Evaluation Board 

Product Details

ADRF5024-EVALZ is a fully populated, connectorized evaluation board using 4-layer, 62 mil thick, RO4003 PCB material.

For normal operation, two supply voltages +3.3V and -3.3V should be applied to the VDD and VSS test points respectively, while their ground voltages are connected to the GND test point. Control input voltage, 0V or +3.3V, should be applied to the CTRL test point to select the switch state between RFC-RF1 and RFC-RF2.

The RF input signal can be applied at the edge-launch, 2.4 mm RF connector labeled RFC and the RF output signals can be measured at the edge-launch, 2.4 mm connectors labeled RF1 and RF2.

EVAL-ADRF5024
ADRF5024 Evaluation Board 
ADRF5024-EVALZANGLE-web ADRF5024-EVALZBOTTOM-web ADRF5024-EVALZTOP-web

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