ADRF5040
Info : RECOMMENDED FOR NEW DESIGNS
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ADRF5040

High Isolation, Silicon SP4T, Nonreflective Switch, 9 kHz to 12.0 GHz

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Info : RECOMMENDED FOR NEW DESIGNS tooltip
Info : RECOMMENDED FOR NEW DESIGNS tooltip
Features
  • Nonreflective 50 Ω design
  • Positive control range: 0 V to 3.3 V
  • Low insertion loss: 0.8 dB at 8.0 GHz
  • High isolation: 34 dB at 8.0 GHz
  • High power handling
    • 33 dBm through path
    • 27 dBm termination path
  • High linearity
    • 1 dB compression (P1dB): 37 dBm typical
    • Input third-order intercept (IIP3): 58 dBm typical at 8.0 GHz
  • ESD rating: 4 kV human body model (HBM)
  • 4 mm × 4 mm, 24-lead LFCSP package
  • No low frequency spurious
  • RF settling time (0.05 dB margin of final RFOUT): 9 μs
Additional Details
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The ADRF5040 is a general-purpose, broadband high isolation, nonreflective single-pole, quad-throw (SP4T) switch in an LFCSP surface-mount package. Covering the 9 kHz to 12.0 GHz range, the switch offers high isolation and low insertion loss. The switch features 34 dB isolation and 0.8 dB insertion loss up to 8.0 GHz, and a 9 μs settling time of 0.05 dB margin of the final radio frequency output (RFOUT). The switch operates using positive control voltage of 3.3 V and 0 V and requires +3.3 V and −3.3 V supplies. The ADRF5040 is packaged in a 4 mm × 4 mm, surface-mount LFCSP package.

Applications

  • Test instrumentation
  • Microwave radios and very small aperture terminals (VSATs)
  • Military radios, radars, and electronic counter measures (ECMs)
  • Fiber optics and broadband telecommunications

 

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Software & Part Ecosystem

Evaluation Kits 2

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AD-JUPITER-EBZ

Software-Defined Radio

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AD-JUPITER-EBZ

Software-Defined Radio

Software-Defined Radio

Features and Benefits

  • RF/SDR
    • ADRV9002 transceiver
    • 2 x receiver, 2 x transmitter
    • LO frequency range 30 MHz to 6 GHz
    • 12 kHz to 40 MHz frequency bandwidth
    • Sampling rate 12 kSPS to 61.44 MSPS
  • External Device Clock Input
  • External MCS Input
  • RF Front-end
  • Processing System
    • Zynq UltraScale+ MPSoC XCZU3EG
      • ARM Cortex-A53 1.5 GHz
      • ARM Cortex-R5 500 MHz
      • Mali-400 MP2 graphic processor
      • Programmable logic 154 k
    • DDR4 – 2 GB (x32)
    • Boot source
      • SD card 3.0
      • Flash memory 128 MB
    • User Interfaces
      • USB 3.1 Gen 1 – Type C
        • Upstream Facing Port (UFP)
        • Downstream Facing Port (DFP)
        • USB 2.0 compatible
    • Ethernet 1000BASE-T RGMII
    • Display Port v1.2 (2 lanes, 5.4 Gbps)
    • SATA 3
    • USB (micro) debug interface
    • 16 GPIOs (3V3 LVCMOS)
  • Power Sources
    • USB Type-C (power only)
      • Power Sink 5V, 9V/3A
    • USB Type-C (data)
      • Power Sink 5V/3A
      • Power Source 5V/0.9 A
    • 802.3at POE compliant, 25.5 W Type2 (POE+)

Product Detail

The AD-JUPITER-EBZ is a versatile software-defined platform based on Analog Devices ADRV9002 and Xilinx Zynq UltraScale+ MPSoC. The ADRV9002 is a new generation RF transceiver that has dual-channel transmitters, dual-channel receivers covering a frequency range of 30 MHz to 6 GHz. This device has a high-quality RF linearity performance and a set of advanced features like fast profiles switching, flexible power vs. performance configuration, fast frequency hopping, multi-chip synchronization, and digital pre-distortion (DPD) for narrow and wide band waveform.

The evaluation platform includes XCZU3EG processing device that has a wide range of interfaces, making the system capable of local processing or streaming to a remote host. It comes integrated in a self-contained ruggedized aluminum case, which gives flexibility in evaluating and prototyping across different environments.

APPLICATIONS

  • Aerospace and Defense
  • Communications
  • Advanced Education
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EVAL-ADRF5040

ADRF5040 Evaluation Board

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EVAL-ADRF5040

ADRF5040 Evaluation Board

ADRF5040 Evaluation Board

Product Detail

The ADRF5040-EVALZ is a fully populated, 4-layer, RO4350 based evaluation board. Two power supply of +3.3 V and -3.3 V should be applied to the VDD and VSS test points respectively while ground reference is connected to the GND test point.

Two control voltages of 0/+3.3 V that select the switch state are applied to the V1 and V2 test points. The RF input signal can be applied to the PC mount SMA RF connector labeled RFC and the RF output signals can be measured on the PC mount SMA RF connectors labeled RF1, RF2, RF3 and RF4.

Resources

Tools & Simulations 2

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