ADRF5532

RECOMMENDED FOR NEW DESIGNS

2.3 GHz to 2.7 GHz, Receiver Front End

Part Models
3
1ku List Price
Starting From $7.95

Part Details

  • Integrated RF front end
    • LNA and high-power silicon SPDT switch
    • On-chip bias and matching
    • Single-supply operation
  • Gain: 35.5 dB typical at 2.6 GHz
  • Gain flatness: 0.2 dB at 25°C across 400 MHz bandwidth
  • Low noise figure: 1.2 dB typical at 2.6 GHz
  • Low insertion loss: 0.7 dB typical at 2.6 GHz
  • High-power handling at TCASE = 105°C
    • Full lifetime
      • LTE average power (8 dB PAR): 36.5 dBm
    • Single event (<10 sec operation)
      • LTE average power (8 dB PAR): 39 dBm
  • High Input IP3: −4 dBm
  • Low-supply current
    • Receive operation: 118 mA typical at 5 V
    • Transmit operation: 15 mA typical at 5 V
  • Positive logic control
  • 5 mm × 3 mm, 24-lead LFCSP package
  • Pin compatible with the ADRF5534, 3.1 GHz to 4.2 GHz receiver front end
ADRF5532
2.3 GHz to 2.7 GHz, Receiver Front End
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Tools & Simulations


Evaluation Kits

eval board
EVAL-ADRF5532

Evaluating the ADRF5532, 2.3 GHz to 2.7 GHz, Receiver Front End

Features and Benefits

  • Full featured evaluation board for the ADRF5532 
  • Easy connection to test equipment
  • Thru line for calibration

Product Details

The ADRF5532 is an integrated RF, front-end multichip module designed for time division duplex (TDD) applications. The device operates from 2.3 GHz to 2.7 GHz. The ADRF5532 is configured with a low-noise amplifier (LNA) and a high-power, silicon, single pole double throw (SPDT) switch.

This user guide describes the ADRF5532-EVALZ, designed to easily evaluate the features and performance of the ADRF5532. Figure 1 shows a photograph of the ADRF5532-EVALZ.

Note that the ADRF5532 IC is populated on the ADRF5534 bare evaluation board. However, the whole assembly is the ADRF5532- EVALZ

Full details about the device are available in the ADRF5532 data sheet. Consult it when using the ADRF5532-EVALZ.

EVAL-ADRF5532
Evaluating the ADRF5532, 2.3 GHz to 2.7 GHz, Receiver Front End

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