Microwaves & RF
  • Resources
  • Directory
  • Webinars
  • White Papers
  • Video
  • Blogs
  • CAD Models
  • Advertise
    • Search
  • Top Stories
  • Products of the Week
  • Defense
  • Test
  • Components
  • Semiconductors
  • Embedded
  • Data Sheets
  • Topics
    - TechXchange Topics -- Markets -DefenseAutomotive- Technologies -Test & MeasurementComponentsCellular / 5G / 6G EDA
    Resources
    Top Stories of the WeekMWRF ResourcesDigital issuesEngineering AcademyWISESearch Data SheetsCompany DirectoryLibraryContributeSubscribe
    Advertise
    https://www.facebook.com/microwavesrf/
    https://www.linkedin.com/groups/3848060/profile
    https://twitter.com/MicrowavesRF
    https://www.youtube.com/channel/UCXKEiQ9dob20rIqTA7ONfJg
    1. Content

    SiGe Bipolar Broadband Amplifier Boasts 3-dB Bandwidth Above 84 GHz

    Nov. 12, 2007
    IN TODAY’S HIGH-SPEED communications systems, wideband amplifiers are created through a variety of techniques. Recently, engineers from Austria’s Technical University Vienna began working with designers from Infineon Technologies (Munich, ...
    Nancy Friedrich

    IN TODAY’S HIGH-SPEED communications systems, wideband amplifiers are created through a variety of techniques. Recently, engineers from Austria’s Technical University Vienna began working with designers from Infineon Technologies (Munich, Germany) on design considerations for inductorless broadband amplifiers based on the properties of the transistor in common collector configuration. This theory was then validated by a four-stage amplifier, which shows a measured 3-dB bandwidth of 84 GHz and a differential gain of 20 dB. The work was conducted by Saverio Trotta, Herbert Knapp, Klaus Aufinger, Thomas F. Meister, Josef Bock, Bernhard Dehlink, Werner Simbürger, and Arpad L. Scholtz.

    This fully differential amplifier is based on a cascode topology. The cascode multiple-device configuration shows little high-frequency feedback through the base-collector capacitance with a very large 3-dB bandwidth. To broaden the cascode’s bandwidth, engineers can drive this stage with cascaded emitter-followers (EFs). Yet this approach leads to potential instability- especially when more than one EF pair is cascaded.

    To avoid this instability, the proposed design methodology combines a cascode with a driving stage. In doing so, the researchers developed a broadband amplifier with very flat frequency response. The cascode stage’s bandwidth is further broadened by resistive emitter degeneration and a dynamic bias for the common base stage. The resulting silicon-germanium (SiGe) bipolar amplifier delivers a gain bandwidth product of more than 840 GHz. It consumes 990 mW of power at a supply of -5.5 V. See "An 84 GHz Bandwidth and 20 dB Gain Broadband Amplifier in SiGe Bipolar Technology," IEEE Journal of Solid-State Circuits, Oct. 2007, p. 2099.

    Continue Reading

    2023 Industry Tech & Trends – Supporting an Evolving Workforce

    Software-Defined Front End Empowers Next-Gen Wireless Solutions

    Sponsored Recommendations

    Near and Far Field Measurement

    Oct. 31, 2023

    S-parameters for High-frequency Circuit Simulations

    Oct. 31, 2023

    Common Mode Filter Chokes for High Speed Data Interfaces

    Oct. 31, 2023

    Simulation Model Considerations: Part I

    Oct. 31, 2023

    New

    Monopulse Comparators Offer Ultra-Broadband Beamforming from 0.5 to 40 GHz

    2024 Innovators Changing the Microwaves & RF Industry

    TCXOs Meet Mission-Critical Needs of LEO Space Applications

    Most Read

    Accelleran Expands its 5G Open RAN Solution for Private Networks

    Products of the Week: November 20, 2023

    Products of the Week: August 21, 2023

    Sponsored

    Making High-Frequency Balun Measurements

    mmWave Mixer Measurements with a Low Frequency VNA

    Amplifier Measurements with a Vector Network Analyzer Webinar

    Microwaves & RF
    https://www.facebook.com/microwavesrf/
    https://www.linkedin.com/groups/3848060/profile
    https://twitter.com/MicrowavesRF
    https://www.youtube.com/channel/UCXKEiQ9dob20rIqTA7ONfJg
    • About Us
    • Contact Us
    • Advertise
    • Do Not Sell or Share
    • Privacy & Cookie Policy
    • Terms of Service
    © 2023 Endeavor Business Media, LLC. All rights reserved.
    Endeavor Business Media Logo