• Become a member
  • Log In
The Institution of Electronics
  • Home
  • About us
    • Our Objectives
    • Our History
    • Governance of the Institution
  • The Electron Magazine
    • 2024
      • 2024 – Winter
      • 2024 – Spring
      • 2024 – Summer
      • 2024 – Autumn
    • 2025
      • 2025 – Winter
      • 2025 – Spring
      • 2025 – Summer
      • 2025 – Autumn
    • 2026
      • 2026 – Winter
      • 2026 – Summer
  • Members
    • Membership Grades and Fees
    • Members’ Resources
      • The Electron Newsletter
      • The Archives
  • Education and Projects
    • National Electronics Competition
    • Student Members’ Projects
    • Arkwright Engineering Scholarships
  • News
  • Contact Us
  • Menu Menu
Uncategorised

Resolver enables flexible motor sensor placement

Melexis has introduced a 5-V variant of its MLX90381 Triaxis pico-resolver for compact motor systems that rely on a 5-V supply. As motors become smaller and mechanical space more constrained, integrating accurate rotor position sensing becomes more challenging, particularly when end-of-shaft sensing is not possible. The MLX90381’s resolver-based position sensing provides greater flexibility in sensor positioning than TMR-based solutions, making it suitable for automotive, alternative mobility, and robotics motor applications.

Housed in a compact DFN-6 package measuring 2.0×2.5×1.0 mm, the MLX90381 combines Triaxis Hall technology with high-speed sine and cosine analog outputs. Its ability to sense magnetic flux density in three dimensions and use selectable X/Y, X/Z, or Z/Y magnetic axis pairs allows flexible sensor placement relative to the rotating magnet. In side-of-shaft and through-shaft motor designs, the sensor can be placed below or close to the magnetic track, reducing mechanical constraints and simplifying PCB placement and tolerance management in compact assemblies.

The MLX90381 5-V provides a 2-µs output refresh rate and measures rotational speeds above 50,000 rpm for precise rotor position detection in DC, BLDC and PMSM motors. Programmable sensitivity and filter bandwidth enable performance optimization, while I²C supports device configuration and production calibration.

Samples of the MLX90381 5-V are available now. Target use cases include e-valves, robotic actuators, cadence sensing, and motor applications for braking, steering, and seating.

MLX90381 product page

Melexis

The post Resolver enables flexible motor sensor placement appeared first on EDN.

2 September 2026
http://institutionofelectronics.ac.uk/wp-content/uploads/2022/12/IOE_LOGO.png 0 0 whdsolutions http://institutionofelectronics.ac.uk/wp-content/uploads/2022/12/IOE_LOGO.png whdsolutions2026-09-02 21:14:262026-09-02 21:14:26Resolver enables flexible motor sensor placement

Latest news

  • Some tips for electrical engineers18 September 2026 - 13:08
  • FPGA architecture: SEU detection and recovery strategies18 September 2026 - 09:06
  • Highly integrated approach to power system design in the AI era17 September 2026 - 15:51
  • SFP: Add-in module delivers diminutive performance, flexibility17 September 2026 - 13:46
  • Pin-compatible MPUs simplify product variants17 September 2026 - 01:36
  • Anti-surge resistors reduce component count17 September 2026 - 01:36
  • SPAD sensor processes photon events on-chip17 September 2026 - 01:36
  • Transient voltage suppression devices reach 11 kW with flat clamping17 September 2026 - 01:36
  • Sensor sharpens infrared in-cabin imaging17 September 2026 - 01:36
  • FPGA architecture: Radiation particle types and single event upsets (SEUs)16 September 2026 - 14:25
IOE LOGO 2

Become a member

click here

Become a member

click here

Become a subscriber

click here

Become a sponsor

click here

© Copyright - The Institution of Electronics | Website by WHD Solutions
  • Link to LinkedIn
  • Link to Facebook
  • Link to X
Link to: Finger-friendly DPOT pushbuttons do ups, downs, and dittos Link to: Finger-friendly DPOT pushbuttons do ups, downs, and dittos Finger-friendly DPOT pushbuttons do ups, downs, and dittos Link to: Robotics computer doubles edge AI performance Link to: Robotics computer doubles edge AI performance Robotics computer doubles edge AI performance
Scroll to top Scroll to top Scroll to top