Quantic X-Microwave

Analog Devices RF and microwave components are available as drop-in X-MWblocks®
from Quantic X-Microwave.

Get the X-MWblock® drop-in module for this part.

HMC788A

RECOMMENDED FOR NEW DESIGNS

0.01 GHz to 10 GHz, MMIC, GaAs, pHEMT RF Gain Block

Part Models
4
1ku List Price
price unavailable
Viewing:

Part Details

  • Gain: 14 dB typical
  • Operational frequency range: 0.01 GHz to 10 GHz
  • Input/output internally matched to 50 Ω
  • High input linearity
    • 1 dB compression (P1dB): 20 dBm typical
    • Output third-order intercept (OIP3): 33 dBm typical
  • Supply voltage: 5 V typical
  • 2 mm × 2 mm, 6-lead lead frame chip scale package 

HMC788A-EP supports defense and aerospace applications (AQEC standard)

  • Download the HMC788A-EP data sheet (pdf)
  • Extended industrial temperature range: −55°C to +105°C
  • Controlled manufacturing baseline
  • One assembly/test site
  • One fabrication site
  • Enhanced product change notification
  • Qualification data available on request
HMC788A
0.01 GHz to 10 GHz, MMIC, GaAs, pHEMT RF Gain Block
HMC788A Functional Block Diagram HMC788A Pin Configuration
Add to myAnalog

Add product to the Products section of myAnalog (to receive notifications), to an existing project or to a new project.

Create New Project
Ask a Question

Documentation

Learn More
Add to myAnalog

Add media to the Resources section of myAnalog, to an existing project or to a new project.

Create New Project

Software Resources

Can't find the software or driver you need?

Request a Driver/Software

Tools & Simulations

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.

Open Tool

S-Parameter 1

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

Evaluation Kits

EVAL-HMC788ALP2

EV1HMC788ALP2: HMC788ALP2 Evaluation Board with conical biasing inductor

Features and Benefits

  • On-board, wideband conical bias inductor based bias tee
  • End launch, 3.5 mm RF connectors
  • Through calibration path (depopulated)
  • Product Details

    EV1HMC788ALP2 is one of two evaluation boards for HMC788ALP2E. It includes a wideband bias tee that uses a conical inductor. This circuit is mechanically more fragile than EV2HMC788ALP2 which uses bias tee made from surface mount inductors, capacitors and resistors but has superior electrical performance. EV1HMC788ALP2 is populated with components suitable for use over the entire −40°C to +85°C operating temperature range of the HMC788ALP2E. To calibrate board trace losses, a through calibration path is provided. The through calibration path must be populated with RF connectors before use. For more details on the EV1HMC788ALP2 evaluation board see the HMC788ALP2E data sheet.

    eval board
    EVAL-HMC788A

    EV2HMC788ALP2: HMC788ALP2 Evaluation Board with surface-mount wideband bias tee

    Features and Benefits

    • 4-layer, Rogers 4350B and Isola 370HR evaluation board
    • Wideband Surface-Mount Bias Tee
    • End launch, 3.5 mm RF connectors
    • Through calibration path (depopulated)

    Product Details

    EV2HMC788ALP2 is one of two evaluation boards for HMC788ALP2E. It includes a wideband bias tee that consists of surface mount inductors, capacitors and resistors. This circuit is mechanically less fragile than EV1HMC788ALP2 which uses a wideband conical bias inductor on the RF output. EV2HMC788ALP2 is populated with components suitable for use over the entire −40°C to +85°C operating temperature range of the HMC788ALP2E. To calibrate board trace losses, a through calibration path is provided between the J1 and J2 connectors. J1 and J2 must be populated with RF connectors to use the through calibration path. For more details on the EV2HMC788ALP2 evaluation board, consult the user guide.

    EVAL-HMC788ALP2
    EV1HMC788ALP2: HMC788ALP2 Evaluation Board with conical biasing inductor
    EVAL-HMC788A
    EV2HMC788ALP2: HMC788ALP2 Evaluation Board with surface-mount wideband bias tee
    EV2HMC788ALP2 - TOP EV2HMC788ALP2 - ANGLE EV2HMC788ALP2 - BOTTOM

    Reference Designs

    Isolated and Nonisolated RS-485 Transceiver Simplified Schematic
    CN0507 Circuits from the lab

    A Complete Two-Port Vector Network Analyzer  

    Features and Benefits

    • Complete 2-Port Vector Network Analyzer
    • Frequency range from 1.7 GHz to 3.4 GHz
    • Zero-IF System Architecture
    CN0507
    A Complete Two-Port Vector Network Analyzer  
    Isolated and Nonisolated RS-485 Transceiver Simplified Schematic
    EVAL-CN0507-ARDZ Evaluation Board
    EVAL-CN0507-ARDZ Evaluation Board - Top View
    EVAL-CN0507-ARDZ Evaluation Board - Bottom View

    Latest Discussions

    No discussions on HMC788A yet. Have something to say?

    Start a Discussion on EngineerZone®

    Recently Viewed