Quantic X-Microwave

Analog Devices RF and microwave components are available as drop-in X-MWblocks®
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ADL5602

RECOMMENDED FOR NEW DESIGNS

50 MHz TO 4.0 GHz RF/IF Gain Block

Part Models
1
1ku List Price
Starting From $2.07
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Part Details

  • Fixed gain of 20 dB
  • Operation from 50 MHz to 4.0 GHz
  • Highest dynamic range gain block
  • Input/output internally matched to
    50 Ω
  • Integrated bias control circuit
  • OIP3 of 42.0 dBm at 2.0 GHz
  • P1dB of 19.3 dBm at 2.0 GHz
  • Noise figure of 3.3 dB at 2.0 GHz
  • Single 5 V power supply
  • Low quiescent current of 89 mA
  • Thermally efficient SOT-89 package
  • ESD rating of ±1.5 kV (Class 1C)
ADL5602
50 MHz TO 4.0 GHz RF/IF Gain Block
ADL5602-fbl ADL5602-PC
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Documentation

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Tools & Simulations

S-Parameter 1

ADIsimPLL™

ADIsimPLL enables the rapid and reliable evaluation of new high performance PLL products from ADI. It is the most comprehensive PLL Synthesizer design and simulation tool available today. Simulations performed include all key non-linear effects that are significant in affecting PLL performance. ADIsimPLL removes at least one iteration from the design process, thereby speeding the design- to-market.

Open Tool

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.

Open Tool

Sys-Parameter Models for Keysight Genesys

Sys-Parameter models contain behavioral parameters, such as P1dB, IP3, gain, noise figure and return loss, which describe nonlinear and linear characteristics of a device.

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Evaluation Kits

eval board
AD-FMCOMMS1-EBZ

FPGA Mezzanine Card for Wireless Communications

Features and Benefits

  • Includes schematics, layout, BOM, Gerber files, HDL, Linux® drivers, IIO Oscilloscope, VisualANALOG
  • FMC-compatible form factor
  • Powered from FMC connector
  • Provides one channel of ADC and one channel of DAC with full synchronization capabilities

Product Details

This board is no longer available for ordering.

The AD-FMCOMMS1-EBZ high-speed analog module is designed to showcase the latest generation high-speed data converters. The AD-FMCOMMS1-EBZ provides the analog front-end for a wide range of compute-intensive FPGA-based radio applications.

The AD-FMCOMMS1-EBZ is an analog front end hardware platform that addresses a broad range of research, academic, industrial and defense applications. The AD-FMCOMMS1-EBZ enables RF applications from 400MHz to 4 GHz. The module is customizable to a wide range of frequencies by software without any hardware changes, providing options for GPS or IEEE 1588 Synchronization, and MIMO configurations.

When combined with the Xilinx ZYNQ® Software-Defined Radio Kit, AD-FMCOMMS1-EBZ enables a variety of wireless communications functions at the physical layer, from baseband to RF. With up to 4 GB of flash storage space, 512 MB of RAM, Gigabit Ethernet interface (depending on the base platform) and a Linux image built specifically for the AD-FMCOMMS1-EBZ, you can get everything you need for a easy out of the box experience. The platform offers enough flexibility for many applications, and supports streaming data, and standard web interfaces to analyze transmitted RF data.

Applications

  • Electronic test and measurement equipment
  • General-purpose software radios
  • Radar systems
  • Ultra wideband satellite receivers
  • Point to point communication systems

EVAL-ADL5602

ADL5602 Evaluation Board

Product Details

ADL5602-EVALZ is a fully populated, 4-layer, FR4-based evaluation board. For normal operation it requires a single 5 V/200 mA power supply. The 5 V power supply should be connected to the test loops labeled VCC and GND. The RF input is applied to the SMA connector labeled RFIN. The RF output is available at the SMA connector labeled RFOUT.

AD-FMCOMMS1-EBZ
FPGA Mezzanine Card for Wireless Communications
AD-FMCOMMS1-EBZ Block Diagram
EVAL-ADL5602
ADL5602 Evaluation Board

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