ADL8100

RECOMMENDED FOR NEW DESIGNS

GaAs, pHEMT, MMIC, Low Noise Amplifier, 0.01 GHz to 20 GHz

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Overview

  • Low noise figure: 2.5 dB typical at 6 GHz to 14 GHz
  • Single positive supply (self biased)
  • High gain: 20 dB typical from 0.01 GHz to 6 GHz
  • High OIP3: 38 dBm typical from 0.01 GHz to 6 GHz
  • RoHS-compliant, 2 mm × 2 mm, 8-lead LFCSP
ADL8100
GaAs, pHEMT, MMIC, Low Noise Amplifier, 0.01 GHz to 20 GHz
ADL8100 -  Functional Block Diagram ADL8100 - Pin Configuration
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Tools & Simulations

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Evaluation Kits

eval board
EVAL-ADL8100

Evaluating the ADL8100 GaAs, pHEMT, MMIC, Low Noise Amplifier, 0.01 GHz to 20 GHz

Features and Benefits

  • 2-layer Rogers 4350B evaluation boards with heat spreaders
  • End launch, 2.9 mm RF connectors
  • Through calibration path (depopulated connectors)
  • Product Details

    The ADL8100ACPZN-EVALZ and ADL8100ACPZN-EVAL1Z are 2-layer printed circuit boards (PCB) fabricated from 10 mil thick, Rogers 4350B, copper clad, mounted to an aluminum heat spreader. The heat spreader assists in providing thermal relief to the device as well as mechanical support to the PCB. Mounting holes on the heat spreader allow attachment to larger heat sinks for improved thermal management.

    The RFIN and RFOUT ports on the ADL8100ACPZN-EVALZ and ADL8100ACPZN-EVAL1Z are populated with 2.9 mm, female coaxial connectors, and the respective RF traces have a 50 Ω characteristic impedance. The ADL8100ACPZN-EVALZ and ADL8100ACPZN-EVAL1Z are populated with components suitable for use over the entire −40°C to +85°C operating temperature range.

    To calibrate out board trace losses, a through calibration path, THRUCAL, is provided between the THRUCAL connectors (J1 and J2). THRUCAL must be populated with RF connectors to use the through calibration path.

    The power voltages and ground path are accessed through surface- mounted technology (SMT) test points.

    An external wideband bias tee must be connected to RFOUT of the ADL8100ACPZN-EVALZ to provide bias current and AC coupling on RFOUT. The BT2-0040 from Marki Microwave is recommended. The ADL8100ACPZN-EVAL1Z has an on-board SMT bias tee.

    For full details on the ADL8100, see the ADL8100 data sheet, which must be consulted in conjunction with the user guide when using the ADL8100ACPZN-EVALZ and ADL8100ACPZN-EVAL1Z.

    eval board
    ADXBAND16EBZ

    16Tx/16Rx Direct X-Band Sampled Phased-Array/RADAR/SATCOM Development Platform

    Features and Benefits

    • Transmit and receive frequency X band: 8GHz to 12GHz
    • Direct sampling in L, S, and C bands with capacitor rotation
    • Multichannel, wideband system development platform for the AD9084 
    • Mates with Xilinx VCU118 evaluation board (must be purchased separately)
    • 16× RF receive channels (32× digital receive channels)
      • Total 16× 4GSPS to 20GSPS ADC channels
      • 48× digital downconverters (DDCs) and complex NCOs
      • 16× programmable finite impulse response filters (pFIRs)
      • 16× complex finite impulse response filters (CFIRs)
    • Complete power management solution for all domains
    • Single 12V supply voltage for easy power management
    • Board size: 221mm × 158mm (8.9” × 6.2”)

    Product Details

    This user guide serves as the main source of information for system engineers and software developers using the ADXBAND16EBZ. This platform contains four AD9084 software-defined, direct sampling mixed-signal front end (MxFE), including an RF front end, clocking, and power circuitry. Common target applications are phased array radars, electronic warfare, and ground-based SATCOM. The receive and transmit RF front ends have bypass configurations that allow customized frequency ranges of less than 8GHz up to 18GHz.

    The ADXBAND16EBZ highlights a complete system solution. This platform is intended as a testbed for demonstrating multichip synchronization as well as the implementation of system-level calibrations and signal processing algorithms. The system is designed to mate with a Xilinx VCU118 evaluation board, which features the Virtex UltraScale+ XCVU9P field-programmable gate array (FPGA), with provided reference software, hardware design language (HDL) code, and MATLAB system-level interfacing.

    A 16 transmit and 16 receive calibration board (ADXBAND16EBZCAL) can be used to develop system-level calibration algorithms to demonstrate power-up phase determinism. The calibration board demonstrates combined-channel dynamic range, spurious, and phase noise improvements that can also be controlled via a MATLAB add-on when connected to the peripheral module (PMOD) interface of the VCU118.

    APPLICATIONS

    • Phased-array, radar, electronic warfare, and satellite communications (SATCOM)
    • Communications infrastructure (multiband and mmWave 5G)
    • Electronic test and measurement

    EVAL-ADL8100
    Evaluating the ADL8100 GaAs, pHEMT, MMIC, Low Noise Amplifier, 0.01 GHz to 20 GHz
    ADL8100 Evaluation Board - Angle ADL8100 Evaluation Board - Top ADL8100 Evaluation Board - Bottom
    ADXBAND16EBZ
    16Tx/16Rx Direct X-Band Sampled Phased-Array/RADAR/SATCOM Development Platform
    ADXBAND16EBZ Top Angle Evaluation Board ADXBAND16EBZ Top Evaluation Board ADXBAND16EBZ Bottom Evaluation Board ADXBAND16EBZ Bottom Angle Evaluation Board ADXBAND16EBZ-CAL Top Angle Evaluation Board ADXBAND16EBZ-CAL Top Evaluation Board ADXBAND16EBZ-CAL Bottom Evaluation Board

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