HomeElectronicsSemiconductors and ChipsAllegro expands Coreless Current Sensor Portfolio for Electric Vehicle and Industrial Applications

    Allegro expands Coreless Current Sensor Portfolio for Electric Vehicle and Industrial Applications

    New ACS37610 is the Industry’s First to Measure 100 A to >4000 A without a Core or U-Shaped Magnetic Shield – Packing in Advanced Fault Detection Features to Reduce System BOM

    Allegro MicroSystems, Inc., a global leader in sensing and power solutions for motion control and energy-efficient systems, today announced a new coreless Hall-effect current sensor for demanding automotive and industrial systems, offering higher accuracy and sensitivity, additional fault detection capabilities, and user programmability. Allegro’s new ACS37610 sensor joins the ACS37612 as the industry’s first family of truly coreless Hall sensing solutions designed to measure currents from 100 A to greater than 4000 A flowing through a busbar or PCB trace with a typical 1 percent accuracy – with no need for an external concentrator or U-shaped magnetic shield. These innovative solutions enable system designers to achieve enhanced efficiency and higher power density while reducing system complexity, BOM, cost, footprint, and weight.

    “As a leading innovator in current sensing solutions for more than 20 years, Allegro was first to market with coreless differential Hall-effect current sensing technology, and our new ACS37610 IC enables our customers to accurately measure hundreds or thousands of amps in a very economical and simple way,” said Shaun Milano, Director of Current Sensors at Allegro. “Our differential Hall-based sensors provide excellent immunity to stray magnetic fields without the need of a shield, required by competing solutions, that slows down response and adds non-linearity error into the system.”

    Advanced New Features for Challenging Current Sensing Applications

    The ACS37610 is an optimal choice for electric vehicle high-voltage traction motor inverters, 48V / 12V auxiliary inverters, heterogeneous redundant battery monitoring, overcurrent detection, smart fuses, power distribution units (PDUs), and power supplies. The sensor’s 250 kHz bandwidth, dedicated overcurrent and overtemperature fault pin, and a slew of built-in diagnostics make it ideal for safety-critical applications.

    The ACS37610 features advanced differential sensing technology, resulting in a 2.5× improvement in signal-to-noise ratio (SNR) and a 2× lower noise relative to the ACS37612. The lower noise provides superior resolution required for accurate torque control, while the sensor’s 4× higher sensitivity range enables flexible busbar and PCB designs.

    While not mandatory, a slight notch to the current-carrying busbar or PCB copper trace provides further improvements to the system’s SNR. The ACS37610 features larger Hall element spacing (2.5 mm versus 1.8 mm for the ACS37612) to accommodate wider notches, resulting in virtually no thermal performance degradation and no hotspots. The sensor can be mounted in a horizontal or vertical orientation relative to the busbar, providing superior flexibility in mechanical assemblies.

    Packaging and Design Support

    The ACS37610 current sensor is available now in a low-profile, lead (Pb)-free, 8-pin surface mount TSSOP package. The sensor’s ultra-compact package makes it ideal for space-constrained applications while enabling simple, cost-effective surface mount assembly. To help developers accelerate their designs, Allegro offers evaluation kits and reference tools for current flowing through a PCB or busbar.

    For more information about Allegro’s Coreless Current Sensors, including the ACS37610 and tools to guide you with your busbar and PCB design, visit allegromicro.com/coreless or contact your local Allegro sales office.

    Related News

    Must Read

    Keysight to Demonstrate NR-NTN devices Mobility Testing at MWC 2026 in Collaboration with Samsung

    Keysight Technologies, Inc. will demonstrate lab-based validation of new...

    ROHM Strengthens Supply Capability for GaN Power Devices

    Combining TSMC’s Process Technology to Build an End-to-End, In-Group...

    element14 Community launches smart security and surveillance design challenge

    element14, an Avnet Community, in collaboration with ADI, has...

    R & S and LITEON demonstrate high‑throughput 5G femtocell testing with the PVT360A

    Rohde & Schwarz and LITEON collaborate to showcase a...

    Infineon presents MCU and sensor solutions for the future of AI, IoT, mobility, and robotics

    Next-generation embedded systems are essential for applications in the...

    R&S advances AI-RAN testing using digital twins in collaboration with NVIDIA

    Rohde & Schwarz will showcase a new milestone in...

    Top Seven Tech Trends in the semiconductor sector for 2026

    By: STMicroelectronics In 2026, a new class of intelligent machines...