Allegro MicroSystems launched the ACS37017 Hall-effect current sensor, delivering industry-leading accuracy and addressing critical power electronics challenges.
Quiver AI Summary
Allegro MicroSystems has launched the ACS37017, a Hall-effect current sensor that sets a new standard for accuracy in power electronics. This release enhances Allegro's high-performance product lineup, addressing key challenges in modern applications such as AI data centers and electrified vehicles. The ACS37017 features a remarkable 0.55% typical sensitivity error, high-voltage isolation, and an advanced sensing architecture, making it ideal for precise control in high-voltage power systems. In conjunction with the newly introduced ACS37100 and ACS37200 sensors that focus on speed and power density respectively, the ACS37017 aims to provide engineers with specialized solutions that meet specific performance needs without compromise. Its proprietary design minimizes "drift" issues and simplifies system architecture by reducing the need for external components, ultimately enhancing the overall reliability and efficiency of the systems it is integrated into.
Potential Positives
- Introduction of the ACS37017 sets a new industry benchmark for accuracy in Hall-effect current sensors, enhancing Allegro's reputation as a leader in power and sensing solutions.
- The ACS37017 completes Allegro's strategic high-performance portfolio, addressing critical challenges in modern power electronics and providing tailored solutions for specific performance objectives.
- The proprietary compensation architecture of the ACS37017 significantly reduces measurement drift, ensuring long-term stability and reliability in high-voltage applications.
- Integration of a stable, non-ratiometric voltage reference in the ACS37017 simplifies design processes, reduces bill of materials, and enhances overall system efficiency.
Potential Negatives
- None
FAQ
What is the ACS37017 current sensor?
The ACS37017 is a Hall-effect current sensor from Allegro MicroSystems, known for its industry-leading accuracy and performance in power electronics.
Why is the ACS37017 considered a breakthrough in accuracy?
It achieves a typical sensitivity error of 0.55% over lifetime and temperature, providing high-fidelity feedback for power conversion systems.
How does the ACS37017 help combat sensor drift?
The sensor utilizes Allegro's proprietary compensation architecture, maintaining stable performance and accuracy despite temperature changes or aging components.
What advantages does the ACS37017 offer for system design?
It integrates a precision voltage reference, reducing the need for external components, saving board space, and minimizing system-level noise.
In what applications can the ACS37017 be utilized?
The ACS37017 is ideal for AI data centers, electrified vehicles (xEVs), and clean energy systems requiring precise current sensing capabilities.
Disclaimer: This is an AI-generated summary of a press release distributed by GlobeNewswire. The model used to summarize this release may make mistakes. See the full release here.
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Full Release
MANCHESTER, N.H., Feb. 10, 2026 (GLOBE NEWSWIRE) -- Allegro MicroSystems, Inc. (“Allegro”) (Nasdaq: ALGM), a global leader in power and sensing solutions for motion control and energy-efficient systems, today introduced the ACS37017, a new Hall-effect current sensor that sets the industry benchmark for accuracy. With the launch of the ACS37017, Allegro completes a strategic expansion of its high-performance portfolio that now includes definitive, market-leading solutions for the three critical challenges in modern power electronics: Speed (ACS37100), Power Density (ACS37200), and Accuracy (ACS37017).
As power converters in AI data centers, electrified vehicles (xEVs), and clean energy systems push for higher efficiency, one size doesn’t fit all. Designers seek specialized solutions tailored to their specific performance objectives. The factory-calibrated ACS37017 answers the call for accuracy, integrating high-voltage isolation with an advanced sensing architecture to achieve an industry-leading 0.55% typical sensitivity error over lifetime and temperature. This level of accuracy delivers the high-fidelity feedback required to stabilize high-voltage power conversion systems.
The Right Tool for Every Job
The ACS37017 serves as the standard-bearer for accuracy in Allegro’s newly expanded lineup and joins two recently launched market-leading current sensors that offer a solution for key design priorities:
- Speed: The ACS37100, powered by XtremeSense™ TMR technology, delivers industry-leading 10-MHz bandwidth. Recently named an EDN Product of the Year, the sensor protects fast-switching GaN and SiC platforms where nanoseconds matter.
- Power Density: The ACS37200 leads the market in density, featuring a 50 µΩ conductor that slashes power loss by up to 90% and shrinks footprint by up to 95% for space-constrained applications compared to competing solutions.
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Accuracy: The new ACS37017 completes the toolkit. With 0.55% typical accuracy, it offers the ultra-low drift and precise signal conditioning required for the most demanding control loops in high-voltage power conversion.
“Our philosophy is simple: we want to give engineers the right tool for the job,” said Matt Hein, Business Line Director of Current Sensors at Allegro MicroSystems. “We don’t force a compromise. If you need to catch a fault in 50 nanoseconds, we have the award-winning ACS37100 XtremeSense™ TMR current sensor. If you need to sense high power in a tiny footprint, we have the high-density ACS37200 . And now, with the ACS37017 , if your priority is absolute accuracy, we have the definitive solution. Across the board, we are delivering ‘Sensing Leadership’ in every metric that matters.”
Solving the "Drift" Problem
Conventional sensors often suffer from "drift," a degradation of accuracy as temperatures change or the component ages. The ACS37017 offers highly stable performance thanks to Allegro’s proprietary compensation architecture. This technology actively maintains precise measurements, ensuring that control loops remain stable and efficient over the entire life of the vehicle or power supply.
System-Level Simplicity
Beyond raw accuracy, the ACS37017 simplifies system architecture by integrating a stable, non-ratiometric voltage reference that eliminates the need for external precision voltage reference components on the PCB. This not only reduces the bill of materials (BOM) and saves board space but also removes a major source of system-level noise and error, allowing the sensor to deliver a pristine signal directly to the microcontroller.
ACS37017 Features and Benefits:
- Unmatched Accuracy: Achieves 0.55% typical sensitivity error over temperature and lifetime for tighter control loops and higher system efficiency.
- Lowest Drift Performance: Proprietary compensation architecture ensures long-term stability, improving system reliability.
- Simplified Design: Integrated precision voltage reference removes external components and noise sources.
- High-Voltage Isolation: Robust reinforced isolation ensures safety in high-voltage xEV and industrial systems.
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Compact, Standard Footprint: Monolithic surface-mount leaded package offers high isolation without the bulk of module-based alternatives.
Designers can request the preliminary datasheet and engineering samples for the ACS37017 now at: www.allegromicro.com/acs37017
About Allegro MicroSystems
Allegro MicroSystems, Inc. is leveraging more than three decades of expertise in magnetic sensing and power ICs to propel automotive, clean energy and industrial automation forward with solutions that enhance efficiency, performance and sustainability. Allegro’s commitment to quality drives transformation across industries, reinforcing our status as a pioneer in "automotive-grade" technology and a partner in our customers' success. For additional information, visit
https://www.allegromicro.com/en/
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Media Contact:
Andrew MacLellan
Corporate Communications
(617) 633-4909
[email protected]
Allegro Contact:
Ram Sathappan
Vice President of Global Marketing and Applications
[email protected]
A photo accompanying this announcement is available at https://www.globenewswire.com/NewsRoom/AttachmentNg/66c7c653-c4b6-4442-8336-c4151bb1fbe4