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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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    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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    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
    • New Products
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  • Video
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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 Adds SMD Lead Bending Option for Leaded Wirewound Resistors

30.5.2024
Reading Time: 2 mins read
A A

Vishay announced that 5 W devices in its AC and AC-AT series of cemented, axial-leaded wirewound resistors are now available with a pick and place friendly SMD lead bending option, the WSZ lead form, that allows the devices to be used as surface-mount components.

Offering excellent pulse capability, the Vishay Draloric AC05 WSZ and AEC-Q200 qualified AC05-AT WSZ are also offered in a non-inductive version AC05-NI WSZ for fast switching circuits.

RelatedPosts

Vishay Introduces Automotive Low Loss SMD Common-Mode Chokes

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

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Resistors with the WSZ lead form can be assembled on the PCB alongside other surface-mount components to improve the pick and place process, reduce assembly times, and lower costs.

The devices will serve as snubber and inrush current limiting resistors for pre-charge / discharge applications in automotive and industrial electronics, energy meters, and white goods power supplies. For these applications, the resistors offer peak power up to 5 kW for a 1 μs pulse load and a broad range of resistance values from 0.10 W to 10 kW.

For challenging operating conditions, the AC05 WSZ and  AC05-AT WSZ feature a robust, non-flammable silicone cement coating that conforms to UL 94 V-0. The resistors operate over a wide temperature range of -55 °C to +250 °C and offer a wirewound construction that meets the highest requirements against mechanical resistance and thermal shocks at high temperatures.

The RoHS-compliant, halogen-free devices offer tin-plated terminations for compatibility with lead (Pb)-free and lead (Pb)-containing soldering processes.

Samples and production quantities of the AC05 WSZ and  AC05-AT WSZ are available now, with lead times of 12 weeks.

Related

Source: Vishay

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