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HMC8191

RECOMMENDED FOR NEW DESIGNS

6 GHz to 26.5 GHz, Wideband I/Q Mixer

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Overview

  • Passive, wideband I/Q mixer
  • RF and LO range: 6 GHz to 26.5 GHz
  • Wide IF bandwidth of dc to 5 GHz
  • Single-ended RF, LO, and IF
  • Conversion loss: 9 dB (typical)
  • Image rejection: 25 dBc (typical)
  • Single-sideband noise figure: 9 dB (typical)
  • Input IP3 (downconverter): 24 dBm (typical)
  • Input P1dB compression point (downconverter): 15 dBm (typical)
  • Input IP2: 55 dBm (typical)
  • LO to RF isolation: 40 dB (typical)
  • LO to IF isolation: 40 dB (typical)
  • RF to IF isolation: 20 dB (typical)
  • Amplitude balance: ±0.5 dB (typical)
  • Phase balance (downconverter): ±5° (typical)
  • RF return loss: 15 dB (typical)
  • LO return loss: 15 dB (typical)
  • IF return loss: 15 dB (typical)
  • Exposed pad, 4 mm × 4 mm, 24-terminal, ceramic, LCC package

The HMC8191 is a passive, wideband, I/Q monolithic microwave integrated circuit (MMIC) mixer that can be used either as an image reject mixer for receiver operations or as a single-sideband upconverter for transmitter operations. With a radio frequency (RF) and local oscillator (LO) range of 6 GHz to 26.5 GHz, and an intermediate frequency (IF) bandwidth of dc to 5 GHz, the HMC8191 is ideal for applications requiring a wide frequency range, excellent RF performance, and a simple design with fewer components and a small printed circuit board (PCB) footprint. A single HMC8191 can replace multiple narrow-band mixers in a design.

The inherent I/Q architecture of the HMC8191 offers excellent image rejection and thereby eliminates the need for expensive filtering for unwanted sidebands. The mixer also provides excellent LO to RF and LO to IF isolation and reduces the effect of LO leakage to ensure signal integrity.

Being a passive mixer, the HMC8191 does not require any dc power sources. It offers a lower noise figure compared to an active mixer, ensuring superior dynamic range for high performance and precision applications.

The HMC8191 is fabricated on a gallium arsenide (GaAs) metal semiconductor field effect transistor (MESFET) process and uses Analog Devices, Inc. mixer cells and a 90-degree hybrid. The HMC8191 is available in a compact, 4 mm × 4 mm, 24-terminal leadless chip carrier (LCC) package and operates over a −40°C to +85°C temperature range. An evaluation board for the HMC8191 is also available from the Analog Devices website.

Applications

  • Test and measurement instrumentation
  • Military, aerospace, and defense applications
  • Microwave point to point base stations

HMC8191
6 GHz to 26.5 GHz, Wideband I/Q Mixer
HMC8191 Circuit Diagram HMC8191 Functional Block Diagram HMC8191 Pin Configuration
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Software Resources

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Tools & Simulations

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-HMC8191

HMC8191 Evaluation Board

Product Details

The EV1HMC8191LC4 evaluation board PCB is 4 layers Rogers 4350B. It designed as application support for the HMC8191. The signal lines are 50 Ω impedance for connection and matching to the package.


The board does not require any power supply or USB connection.

eval board
EVAL-ADMX7103

ADMX7103-EBZ: 6G FR3 Radio Front-End

Features and Benefits

  • FR3 TX and RX RF front end board
  • RF carriers 6GHz to 18GHz
  • Power management and biasing
  • 4GHz iBW (with tunable filter enabled)
  • EVM < −50 dB
  • High dynamic range
  • Programmable using an SPI interface
  • TX P1dB: 27dBm
  • TX LO nulling capability
  • RX noise figure: 3.5dB at 12GHz
  • Tunable filters for spur rejection
  • Calibration using temperature sensors

Product Details

The ADMX7103-EBZ is a 6G, Frequency Range 3 (FR3), radio front end (RFFE) reference design that supports frequencies from 6GHz to18GHz and instantaneous bandwidths up to 4GHz. The FR3 RFFE includes transmit (TX) and receive (RX) modes for signal generation and spectrum analysis applications, respectively. Each TX and RX path has dedicated local oscillator (LO) inputs to support time division duplex (TDD) and frequency-divison duplex (FDD) operation. The design supports both 5G and 6G signal generation and a spectrum analyzer/demodulator. In-phase/quadrature (I/Q) intermediate frequency (IF) ports are provided for TX inputs and RX outputs.

EVAL-HMC8191
HMC8191 Evaluation Board
EV1HMC8191LC4ANGLE-web EV1HMC8191LC4BOTTOM-web EV1HMC8191LC4TOP-web
EVAL-ADMX7103
ADMX7103-EBZ: 6G FR3 Radio Front-End
EVAL-ADMX7103 Evaluation Board Angle View EVAL-ADMX7103 Evaluation Board Top View EVAL-ADMX7103 Evaluation Board Bottom View

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