Passive Components Blog
No Result
View All Result
  • Home
  • NewsFilter
    • All
    • Aerospace & Defence
    • Antenna
    • Applications
    • Automotive
    • Capacitors
    • Circuit Protection Devices
    • electro-mechanical news
    • Filters
    • Fuses
    • Inductors
    • Industrial
    • Integrated Passives
    • inter-connect news
    • Market & Supply Chain
    • Market Insights
    • Medical
    • Modelling and Simulation
    • New Materials & Supply
    • New Technologies
    • Non-linear Passives
    • Oscillators
    • Passive Sensors News
    • Resistors
    • RF & Microwave
    • Telecommunication
    • Weekly Digest

    Binder Hybrid Connector Simplifies One Cable Automation

    Tapped Inductor Buck Converter Fundamentals

    TAIYO YUDEN Releases Mini Metal Power Inductors

    Molecular Memristor Shows Record 145 kH Emergent Inductance

    Planar vs Conventional Transformer: When it Make Sense

    Researchers Propose Next‑Gen Compact Memory Using Ultra-thin Ferroelectric Capacitors

    Nichicon ADN Automotive Hybrid Aluminum Capacitors Now Available in EMEA

    Wk 19 Electronics Supply Chain Digest

    Electrocaloric Multilayer Capacitors: Towards Quiet, Solid‑State Cooling Around Room Temperature

    Trending Tags

    • Ripple Current
    • RF
    • Leakage Current
    • Tantalum vs Ceramic
    • Snubber
    • Low ESR
    • Feedthrough
    • Derating
    • Dielectric Constant
    • New Products
    • Market Reports
  • VideoFilter
    • All
    • Antenna videos
    • Capacitor videos
    • Circuit Protection Video
    • Filter videos
    • Fuse videos
    • Inductor videos
    • Inter-Connect Video
    • Non-linear passives videos
    • Oscillator videos
    • Passive sensors videos
    • Resistor videos

    Tapped Inductor Buck Converter Fundamentals

    Planar vs Conventional Transformer: When it Make Sense

    Modeling Fringing Field Losses in Inductors & Transformers

    Why Power Inductors Use a Ferrite Core With an Air Gap

    Transformer-Based Power-Line Harvester Magnetic Design

    Thermal Modeling of Magnetics

    Standard vs Planar LLC transformers Comparison for Battery Chargers

    How Modern Tools Model Magnetic Components for Power Electronics

    Advanced Loss Modeling for Planar Magnetics in the Frenetic Planar Tool

    Trending Tags

    • Capacitors explained
    • Inductors explained
    • Resistors explained
    • Filters explained
    • Application Video Guidelines
    • EMC
    • New Products
    • Ripple Current
    • Simulation
    • Tantalum vs Ceramic
  • Knowledge Blog
  • DossiersNew
  • Suppliers
    • Who is Who
  • PCNS
    • PCNS 2025
    • PCNS 2023
    • PCNS 2021
    • PCNS 2019
    • PCNS 2017
  • Events
  • Home
  • NewsFilter
    • All
    • Aerospace & Defence
    • Antenna
    • Applications
    • Automotive
    • Capacitors
    • Circuit Protection Devices
    • electro-mechanical news
    • Filters
    • Fuses
    • Inductors
    • Industrial
    • Integrated Passives
    • inter-connect news
    • Market & Supply Chain
    • Market Insights
    • Medical
    • Modelling and Simulation
    • New Materials & Supply
    • New Technologies
    • Non-linear Passives
    • Oscillators
    • Passive Sensors News
    • Resistors
    • RF & Microwave
    • Telecommunication
    • Weekly Digest

    Binder Hybrid Connector Simplifies One Cable Automation

    Tapped Inductor Buck Converter Fundamentals

    TAIYO YUDEN Releases Mini Metal Power Inductors

    Molecular Memristor Shows Record 145 kH Emergent Inductance

    Planar vs Conventional Transformer: When it Make Sense

    Researchers Propose Next‑Gen Compact Memory Using Ultra-thin Ferroelectric Capacitors

    Nichicon ADN Automotive Hybrid Aluminum Capacitors Now Available in EMEA

    Wk 19 Electronics Supply Chain Digest

    Electrocaloric Multilayer Capacitors: Towards Quiet, Solid‑State Cooling Around Room Temperature

    Trending Tags

    • Ripple Current
    • RF
    • Leakage Current
    • Tantalum vs Ceramic
    • Snubber
    • Low ESR
    • Feedthrough
    • Derating
    • Dielectric Constant
    • New Products
    • Market Reports
  • VideoFilter
    • All
    • Antenna videos
    • Capacitor videos
    • Circuit Protection Video
    • Filter videos
    • Fuse videos
    • Inductor videos
    • Inter-Connect Video
    • Non-linear passives videos
    • Oscillator videos
    • Passive sensors videos
    • Resistor videos

    Tapped Inductor Buck Converter Fundamentals

    Planar vs Conventional Transformer: When it Make Sense

    Modeling Fringing Field Losses in Inductors & Transformers

    Why Power Inductors Use a Ferrite Core With an Air Gap

    Transformer-Based Power-Line Harvester Magnetic Design

    Thermal Modeling of Magnetics

    Standard vs Planar LLC transformers Comparison for Battery Chargers

    How Modern Tools Model Magnetic Components for Power Electronics

    Advanced Loss Modeling for Planar Magnetics in the Frenetic Planar Tool

    Trending Tags

    • Capacitors explained
    • Inductors explained
    • Resistors explained
    • Filters explained
    • Application Video Guidelines
    • EMC
    • New Products
    • Ripple Current
    • Simulation
    • Tantalum vs Ceramic
  • Knowledge Blog
  • DossiersNew
  • Suppliers
    • Who is Who
  • PCNS
    • PCNS 2025
    • PCNS 2023
    • PCNS 2021
    • PCNS 2019
    • PCNS 2017
  • Events
No Result
View All Result
Passive Components Blog
No Result
View All Result

Vishay Releases Compact Automotive Qualified Haptic Feedback Actuator with High Force Density

10.2.2022
Reading Time: 2 mins read
A A

Vishay Intertechnology releases AEC-Q200 automotive qualified haptic feedback actuator that offers high force density, HD capability, and compact size. The customizable device features a compact, two-piece construction, 12 V operation, and temperature range to +105 °C for rugged automotive environments.

Vishay Intertechnology, introduced a new AEC-Q200 qualified customizable haptic feedback actuator offering 12 V operation for LCD displays, touchscreens, and touch switches in automotive applications. Featuring a compact, two-piece construction with mounting holes for easy installation and direct application of force, the Vishay Custom Magnetics IHPT-1411AF-ABA delivers high pulse and vibration capability for clear tactile feedback in noisy environments.

RelatedPosts

SPICE Simulation of Non-Linear Resistors: Vishay’s Thermistor and PPTC Modelling Ecosystem

Vishay Extends Power Inductors for DC/DC with 1212 Compact Case

Vishay Releases 2-Way Wilkinson Divider / Combiner for 15–20 GHz RF Front Ends

The Automotive Grade IHPT-1411AF-ABA is an electromagnetic device that converts electrical energy into a mechanical pulse or vibration for touch-based interaction that can be controlled by varying the input voltage amplitude and duty cycle. The haptic coil assembly, when energized by a DC voltage pulse, creates a magnetic field that attracts the mounted dynamic core piece. When deenergized, it returns the core piece back to its original position by springs or elastic material in the customer’s assembly.

The device’s fast response time of < 5 ms can be utilized to produce multiple high definition (HD) haptic effects with operating voltages up to 16 V. With an operating temperature range to +105 °C, the actuator is ideal for rugged environments. The device will be used in automotive dashboards, center consoles, and touchscreens for human-machine interfaces, and it can provide tactile feedback for electronic shift transmissions, steering wheels, seats, and other in-vehicle controls.

The IHPT-1411AF-ABA’s simple bobbin and core components allow designers to lay out a return spring configuration that can be incorporated into the display mounting, eliminating the need for additional housing. In addition, the device’s low 12 V operation eliminates the need for the additional high voltage supplies required by other technologies. As a result, the actuator can be implemented at up to a 40 % lower cost while reducing component height and delivering higher force density than competing technologies, including linear resonant, linear wideband, eccentric rotating mass, and piezo actuators.

The device released today can drive a 0.5 kg load to 6 g of acceleration with a 12 V, 5 ms pulse; competing technologies can only drive 0.1 kg to 0.2 kg to this level. The driving coil has an inductance of 1.8 mH, typical DCR of 0.95 Ω, and a coil to core dielectric withstand voltage of 150 VDC. RoHS-compliant, halogen-free, and Vishay Green, the actuator features standard lead terminations that are dipped in 100 % tin solder. Vishay can customize the IHPT-1411AF-ABA’s mounting orientation, termination types, and performance to any design’s specifications.

Samples and production quantities of the new haptic feedback actuator are available now, with lead times of 12 weeks.

Related

Source: Vishay

Recent Posts

Binder Hybrid Connector Simplifies One Cable Automation

13.5.2026
6

Planar vs Conventional Transformer: When it Make Sense

11.5.2026
38

Nichicon ADN Automotive Hybrid Aluminum Capacitors Now Available in EMEA

11.5.2026
23

Stackpole Expanded its AlN Thick Film Chip Resistors

6.5.2026
23

Würth Elektronik Introduces Compact Flat-wire SMT Power Inductors for Automotive

5.5.2026
50

KYOCERA AVX Extends MLV Varistors for 48V Automotive Protection

5.5.2026
28

YAGEO Introduces C0G Flexible Termination Automotive MLCCs

30.4.2026
41

SCHURTER Releases SMT Micro Switch for Compact HMIs

30.4.2026
14

binder Releases Tool‑Tightenable M12 Connectors for Improved Reliability

30.4.2026
12

Upcoming Events

May 19
16:00 - 17:00 CEST

Designing Qi2 Wireless Power Systems: Practical Development and EMC Optimization

Jun 2
16:00 - 17:00 CEST

Calculation, Simulation and Measurement of 800V EMC Filters

Jun 16
16:00 - 17:00 CEST

EMC with EMC – EMC‑compliant design with electromechanical connectors

View Calendar

Popular Posts

  • Buck Converter Design and Calculation

    0 shares
    Share 0 Tweet 0
  • Boost Converter Design and Calculation

    0 shares
    Share 0 Tweet 0
  • Flyback Converter Design and Calculation

    0 shares
    Share 0 Tweet 0
  • LLC Resonant Converter Design and Calculation

    0 shares
    Share 0 Tweet 0
  • MLCC and Ceramic Capacitors

    0 shares
    Share 0 Tweet 0
  • Dual Active Bridge (DAB) Topology

    0 shares
    Share 0 Tweet 0
  • Capacitor Charging and Discharging

    0 shares
    Share 0 Tweet 0
  • What Electronics Engineer Needs to Know About Passive Low Pass Filters

    0 shares
    Share 0 Tweet 0
  • Ripple Current and its Effects on the Performance of Capacitors

    3 shares
    Share 3 Tweet 0
  • MLCC Case Sizes Standards Explained

    0 shares
    Share 0 Tweet 0

Newsletter Subscription

 

Passive Components Blog

© EPCI - Leading Passive Components Educational and Information Site

  • Home
  • Privacy Policy
  • EPCI Membership & Advertisement
  • About

No Result
View All Result
  • Home
  • Knowledge Blog
  • PCNS

© EPCI - Leading Passive Components Educational and Information Site

This website uses cookies. By continuing to use this website you are giving consent to cookies being used. Visit our Privacy and Cookie Policy.
Go to mobile version