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    Hirose FH51 automotive FPC/FFC connector with low-profile receptacle construction and top-and-bottom contact arrangement

    Hirose Automotive FPC/FFC Connector Adds One-Action Mating up to 125°C

    Overview of fabricated ferroelectric capacitors improving hyperdimensional computing task learning accuracy. a The experimental work reported in this study comprises ferroelectric capacitor (FeCAP) device fabrication, structural and electrical characterization, analog state identification and their reliability study. b The computational part of the work explores the benefits of using characteristics from the fabricated devices in a hyperdimensional computing scheme; source: authors

    High-Precision Hyperdimensional Computing with Multi-Level Ferroelectric HZO Capacitors

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    Hirose FH51 automotive FPC/FFC connector with low-profile receptacle construction and top-and-bottom contact arrangement

    Hirose Automotive FPC/FFC Connector Adds One-Action Mating up to 125°C

    Overview of fabricated ferroelectric capacitors improving hyperdimensional computing task learning accuracy. a The experimental work reported in this study comprises ferroelectric capacitor (FeCAP) device fabrication, structural and electrical characterization, analog state identification and their reliability study. b The computational part of the work explores the benefits of using characteristics from the fabricated devices in a hyperdimensional computing scheme; source: authors

    High-Precision Hyperdimensional Computing with Multi-Level Ferroelectric HZO Capacitors

    Coilcraft Introduces Automotive Common Mode Chokes Target CISPR 25 Class 5 EMC Compliance

    Murata Expands Automotive Metal Power Inductor Range

    Modelithics Qorvo GaN Library v26.5.11 Adds 200 W RF Transistor Model

    Bourns Releases Low-Profile Incremental Ring Encoder Targets Compact Industrial HMIs

    Wk 34 Electronics Supply Chain Digest

    August 2026 Interconnect, Passives and Electromechanical Components Market Insights

    AEM Introduced High-Power Fuses for Compact Automotive and Industrial Overcurrent Protection

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Vishay Power Metal Strip® Battery Shunt Resistor Improves Accuracy, Provides Consistent Contact Location

25.7.2017
Reading Time: 1 min read
A A

source: Vishay news

MALVERN, Pa. — July 24, 2017 — Vishay Intertechnology, Inc. (NYSE: VSH) today announced a new 36 W Power Metal Strip® battery shunt resistor featuring three sense pins in the 8518 case size. With extremely low resistance values down to 50 µΩ, the Vishay Dale WSBS8518…40 increases accuracy and lowers costs compared with Hall Effect current sensing solutions, while its sense pins assist in PCB mounting, provide consistent contact point location, and offer a connection to ground via the third sense pin.

RelatedPosts

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Coilcraft Introduces Automotive Common Mode Chokes Target CISPR 25 Class 5 EMC Compliance

The three sense pin device released today features a proprietary processing technique that produces extremely low resistance values of 50 µΩ, 100 µΩ, and 125 µΩ. These low values allow for more accurate data to determine battery charge and discharge, thus helping designers meet specific customer battery management requirements for applications in gas, diesel, hybrid, and electric cars and trucks, as well as electric forklifts, UPS systems, and other heavy industrial applications.

The WSBS8518…40 features a solid metal manganese-copper alloy resistive element with low TCR (± 20 ppm/°C) and a welded terminal to element connection that allows for up to 848 A of continuous current (value dependent). The resistor offers low inductance values of < 5 nH, low thermal EMF down to < 1 µV/°C, and an operating temperature range of -65 °C to +170 °C. The device is RoHS-compliant, halogen-free, and Vishay Green.

Samples and production quantities of the WSBS8518…40 are available now, with a lead time of 10 to 12 weeks for larger orders.

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