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Noise (electronics)

  • Application of Noise Mapping in an Indian Opencast Mine for Effective Noise Management

    Application of Noise Mapping in an Indian Opencast Mine for Effective Noise Management

  • Designline PROFILE 42

    Designline PROFILE 42

  • Sensory Unpleasantness of High-Frequency Sounds

    Sensory Unpleasantness of High-Frequency Sounds

  • 47 CFR Ch. I (10–1–06 Edition) § 15.117

    47 CFR Ch. I (10–1–06 Edition) § 15.117

  • Mixer Noise

    Mixer Noise

  • Chapter 6 Mixers

    Chapter 6 Mixers

  • Improved Television Systems: NTSC and Beyond

    Improved Television Systems: NTSC and Beyond

  • On Nicam Datacasting

    On Nicam Datacasting

  • Download PDF of This Issue

    Download PDF of This Issue

  • Investigation on High-Frequency Noise in Public Space

    Investigation on High-Frequency Noise in Public Space

  • A General Theory of Phase Noise in Electrical Oscillators

    A General Theory of Phase Noise in Electrical Oscillators

  • Damage to Human Hearing by Airborne Sound of Very High Frequency Or Ultrasonic Frequency

    Damage to Human Hearing by Airborne Sound of Very High Frequency Or Ultrasonic Frequency

  • Specifications L/L’ 32.7 Mhz IF W/O Precorrection ≤0.5 Db (−1 to +5.8 Mhz) M 45.75 Mhz IF with Precorrection ≤0.6 Db (−0.6 to +4 Mhz)

    Specifications L/L’ 32.7 Mhz IF W/O Precorrection ≤0.5 Db (−1 to +5.8 Mhz) M 45.75 Mhz IF with Precorrection ≤0.6 Db (−0.6 to +4 Mhz)

  • Introduction to Noise in Solid State Devices

    Introduction to Noise in Solid State Devices

  • Locating RF Interference at HF

    Locating RF Interference at HF

  • Speech Segregation in Background Noise and Competing Speech

    Speech Segregation in Background Noise and Competing Speech

  • Mysterious and Annoying – Hard-To-Detect Residential Noises Arno Bommer, Adam Young and Edgar Olvera, CSTI Acoustics, Houston, Texas

    Mysterious and Annoying – Hard-To-Detect Residential Noises Arno Bommer, Adam Young and Edgar Olvera, CSTI Acoustics, Houston, Texas

  • Radio Frequency Noise Measurements and Models for Indoor Wireless Communications at 918 Mhz, 2.44 Ghz, and ,4.0 Ghz

    Radio Frequency Noise Measurements and Models for Indoor Wireless Communications at 918 Mhz, 2.44 Ghz, and ,4.0 Ghz

Top View
  • Edge-Preserving Image Denoising Based on Lipschitz Estimation
  • Federal Communications Commission FCC 00-416 Before the Federal
  • A Receiver-Compatible Noise Reduction System
  • Conrac Designline EVIA 37 Tv User Guide Manual Operating
  • High-Frequency Noise in RF Active CMOS Mixers
  • Required Signal-To-Noise Ratios, RF Signal Power, and Bandwith For
  • Low-Noise Circuits
  • Communication Theory Aspects of Television Bandwidth Conservation
  • Measurements of Current Noise and Distortion in Resistors
  • The Effect of Nonlinear Frequency Compression and Linear Frequency Transposition on Speech Perception in School-Aged Children Kelly L
  • 47 CFR Ch. I (10–1–08 Edition) § 15.117
  • Testing for Nonlinear Distortion in Cable Networks
  • Nonhydrostatic Modeling with NICAM
  • Catálogo (Inglés)
  • Receiver Performance Guidelines
  • TCRP Report 23: Wheel/Rail Noise Control Manual
  • AD725 Data Sheet
  • Uhf Television And


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