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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
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    • Tantalum vs Ceramic
    • Snubber
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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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TT Electronics Announce Lead-Free Resistor Arrays

21.11.2019
Reading Time: 1 min read
A A

High-performing GBCN resistors round out TT’s Green Thick-Film Chip Series enabling Industrial, Automotive and Medical Application designers to meet tomorrow’s regulations today.

Woking, UK – TT Electronics, a global provider of engineered electronics for performance critical applications, announced the latest series in its Green Thick-Film chip portfolio – the GBCN, a thick-film chip array that is completely free of Pb (lead) and its compounds.

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

As environmental regulations become increasingly stringent, the new GBCN series deliver peace of mind through exemption-free RoHS compliance. These resistors meet growing industry demand for pull-up, pull-down, level shift and termination functions in digital circuits and compact analogue circuits found in demanding equipment such as process controllers, body control modules and medical devices.

“TT Electronics is committed to providing our customers future-proof designs that remove reliance on RoHS exemptions,” said Barry Peters, VP Product Management and Engineering, TT Electronics. “GBCN and the rest of our Green portfolio enable OEMs to safeguard their system design investments and avoid time-consuming re-spins or, worse, extensive design alterations.”

A single-component, AEC-Q200 qualified solution, the GBCN series contains an array of four isolated resistor elements in a compact 1206 total footprint which results in faster assembly. The GBCN is preceded by two other Green Thick-Film series: the GHVC (Green Thick-Film High-Voltage Resistor) and GWCR (Green Thick-Film Chip Resistor).

Related

Source: TT Electronics

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