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    Littelfuse Adds 600W Automotive TVS Diodes for High-Energy Transient Protection

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    Ripple Steering in Coupled Inductors: SEPIC Case

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    Littelfuse Adds 600W Automotive TVS Diodes for High-Energy Transient Protection

    Vishay Releases Harsh Environment Robust DC-Link Film Capacitor

    Bourns Releases Automotive High Creepage and Clearance Transformer

    Bourns Unveils Metal Powder Core High Current Low DCR Shielded Power Inductor

    Influence of Tantalum Capacitor Pellets Size on Stability During Oxide Film Formation

    Modelithics Release Discrete Components Optimization Article for RF/Microwave Designers

    Samsung Extends Capacitance of MLCC 0805 X7T 250V to 100nF

    Samtec Releases 800-Position High-Performance Array Connectors  

    DigiKey Announces Back to School Giveaway to Empower Tomorrow’s Innovators

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    SEPIC Converter with Coupled and Uncoupled Inductors

    Coupled Inductors in SEPIC versus Flyback Converters

    Non-Linear MLCC Class II Capacitor Measurements Challenges

    Percolation Phenomenon and Reliability of Molded Power Inductors in DC/DC converters

    Root Causes and Effects of DC Bias and AC in Ceramic Capacitors

    How to Calculate the Output Capacitor for a Switching Power Supply

    Switched Capacitor Converter Explained

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LEO Satellites Electronic Components Selection

26.3.2024
Reading Time: 2 mins read
A A

LEO Low Earth Orbit satellites electronic components selection is discussed in this Tech Chats video by Mouser Electronics and KYOCERA AVX.

Unlock the secrets of LEO (Low Earth Orbit) satellite components in our latest “Tech Chat” video!

RelatedPosts

KYOCERA AVX Releases Hermaphroditic WTW and WTB Connectors

Radiation Tolerance of Tantalum and Ceramic Capacitors

KYOCERA AVX Releases 600MHz Band71 Compact SAW Duplexer

Join All About Circuits’ Dale Wilson and Kyocera AVX Senior Fellow, Ron Demcko, as they delve into the fascinating world of LEO satellites, various capacitors, radiation tolerance, and more.

With over 8,000 active satellites orbiting Earth, the majority of which are in LEO, including iconic names like the International Space Station and the Hubble Telescope, the demand for advanced electronics in space is soaring. In this engaging conversation, Ron Demcko sheds light on the latest innovations and advancements in fundamental components for LEO satellites, exploring topics like radiation tolerance and the growing complexity of electronics in space.

Discover why LEO satellites are such an exciting and rapidly evolving field, with growth rates reaching 20% and promising new configurations and applications emerging. From Earth observation and communications to navigation, industrial applications, and beyond, LEO satellites are playing a crucial role in shaping our future in space.

Tune in to learn more about the groundbreaking developments in LEO satellite components and gain insights from an industry expert. Don’t miss out on this enlightening discussion on the forefront of space technology!

Content

  • Introduction
  • MLCC capacitors
  • Tantalum capacitors
  • Tantalum polymer capacitors
  • Radiation tolerance
  • Oven-controlled crystal oscillators
  • Military feedthroughs
  • Passives for RF
  • Connectors

Related

Source: Mouser, KYOCERA AVX

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