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    Bourns Extends Current Sense Resistors for High-Current Power Designs with 0.1 mΩ, 15 W

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    Current-Dependent Inductors: Using Non-Linear Inductance in Buck Converters and PFC Stages

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    Why Isolated DC/DC Power Supplies Fail Late, Würth Elektronik Podcast

    Designing 800 V DC EMC Filters: Calculation, Simulation and Measurement

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    Bourns Extends Current Sense Resistors for High-Current Power Designs with 0.1 mΩ, 15 W

    KYOCERA AVX Releases Vibration-Proof SMD Aluminum Electrolytic Capacitors for Harsh Industrial Designs

    Vishay Introduces Automotive Low Loss SMD Common-Mode Chokes

    YAGEO Adds X8 Flexible-Termination Automotive MLCCs for 150°C Designs

    Current-Dependent Inductors: Using Non-Linear Inductance in Buck Converters and PFC Stages

    Vishay Releases High-Power Thick Film Resistors for Compact Power Modules

    Wk 32 Electronics Supply Chain Digest

    Passive Components for Industrial Automation and Robotics (Dossier Report 08/26)

    Advanced Electronics Markets Reshape Capacitor Demand for 2026/2027

    Trending Tags

    • Ripple Current
    • RF
    • Leakage Current
    • Tantalum vs Ceramic
    • Snubber
    • Low ESR
    • Feedthrough
    • Derating
    • Dielectric Constant
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    Current-Dependent Inductors: Using Non-Linear Inductance in Buck Converters and PFC Stages

    Current Sense Transformers: Ferrite vs Nanocrystalline Cores for Accurate Current Measurement

    EMC Design Fundamentals: Safe Use of Varistors and Common Mode Chokes in Mains and Data-Line Filters

    Ferrite versus Nanocrystalline Power Inductor Cores: Turns, Gap and Size

    KYOCERA AVX Presents Antenna Integrator Studio Tutorial for Antenna Placement and RF Design

    Power Design Simulation Tools for Faster Inductor Selection and Loss Optimization

    EMC‑Compliant PCB and Connector Design Guidelines

    Why Isolated DC/DC Power Supplies Fail Late, Würth Elektronik Podcast

    Designing 800 V DC EMC Filters: Calculation, Simulation and Measurement

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Vishay Thick Film Chip Resistors Deliver Increased Accuracy While Saving Space and Reducing Component Counts

26.6.2017
Reading Time: 1 min read
A A

source: Vishay news

MALVERN, Pa. — June 26, 2017 — Vishay Intertechnology, Inc. (NYSE: VSH) today introduced a new series of thick film surface-mount chip resistors featuring four-terminal Kelvin connections and high power ratings of 0.33 W in the compact 0306 case size. Offering a power density over 3.3x higher than standard devices in the 0603 footprint, Vishay Dale RCWK0306 series resistors are designed to save space and reduce component counts in telecommunications, computer, industrial, and consumer applications.

RelatedPosts

Bourns Extends Current Sense Resistors for High-Current Power Designs with 0.1 mΩ, 15 W

KYOCERA AVX Releases Vibration-Proof SMD Aluminum Electrolytic Capacitors for Harsh Industrial Designs

Vishay Introduces Automotive Low Loss SMD Common-Mode Chokes

With their high power density, the devices released today can be used instead of larger high power components or multiple lower power devices. This reduces board space requirements and placement costs, while enabling smaller and lighter end products. In addition, RCWK0306 series resistors provide higher reliability than larger thick film devices by reducing the coefficient of thermal expansion (CTE) mismatch with the PCB, thereby lowering solder joint stress.

The resistors’ four-terminal Kelvin connection enables greater measurement accuracy with extremely low resistance values from 0.01 Ω to 0.1 Ω, and tolerance of 1 %. RoHS-compliant and halogen-free, the devices feature a metal glaze thick film on high quality ceramic. They are optimized as current sensing resistors in DC/DC converters, voltage regulation modules, and inverters in cell phones, computers, air conditioners, and heat pumps.

Samples and production quantities of the RCWK0306 are available now, with lead times of six to eight weeks for large orders.

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