LATEST NEWS

TI unlocks mmWave technology for worldwide industrial market through new 60-GHz sensor portfolio

To advance millimetre-wave (mmWave) sensor technology in worldwide industrial applications, Texas Instruments (TI) (NASDAQ: TXN) today announced its 60-GHz sensor portfolio, the highest resolution single-chip, complementary metal-oxide semiconductor (CMOS), for industrial systems. IWR6x mmWave sensors enable industrial automation through on-chip processing capabilities, providing real-time decision-making and signal processing. The newest 60-GHz mmWave sensors will be the first to include antenna-on-package offerings, which remove traditional challenges associated with radio-frequency (RF) design while shrinking size up to 75% and reducing overall cost.

With 60-GHz mmWave sensors, engineers worldwide can integrate mmWave technology into a vast range of robotics, factory automation and building automation designs while leveraging the ISM band for broad deployment. Built for industrial performance, high resolution IWR6x sensors provide up to 4 GHz of ultra-wide bandwidth to detect objects and motion up to 16 times more accurately than 24-GHz narrowband solutions. For product details, see www.ti.com/iwr6x-pr.

Key features and benefits of IWR6x sensors

  • Intelligent autonomy at the edge: Integrated processing capabilities enable the sensor to reduce false positives and make real-time decisions, eliminating the need for a microcontroller or processor in many systems.
  • Highest-resolution sensing: Ultra-wideband mmWave sensors detect objects, people, and motion as fine as breathing and typing, with up to 16 times greater resolution than 24-GHz sensors.
  • Optimized for industrial automation: mmWave technology expands building and factory automation capabilities, enabling smarter people counting, motion detection, robotics, safety guards, vital sign monitoring, and more.
  • Enhanced system accuracy: 60-GHz mmWave sensors improve the accuracy of existing systems by operating in crowded spaces; in various lighting and environmental conditions; and through materials such as glass, plastic and drywall.
  • Simplifying industrial designs: With a platform that includes antenna-on-package, a scalable software platform, application-specific algorithms, and multiple reference designs, designers can get started immediately.
Lihi

Recent Posts

Arrow Electronics and NX Technologies Collaborate to Advance Electrification in Transportation Segments

Arrow Electronics and Spanish manufacturer NX Technologies entered a collaboration that has accelerated the development…

1 week ago

Nexperia’s new step-down DC-DC converters with lowest quiescent current enhance design flexibility

High efficiency converters deliver low output ripple from wide input voltage range  Nexperia today introduced…

1 week ago

IBM and L’Oréal to Build First AI Model to Advance the Creation of Sustainable Cosmetics

IBM (NYSE: IBM) and L'Oréal, the world's leading beauty company, announced a collaboration to leverage IBM's generative…

2 weeks ago

RIKEN adopts Siemens’ emulation and High-Level Synthesis platforms for next-generation AI device research

Siemens’ emulation and HLS platforms support leading Japanese research institute’s evaluation of optimized AI computing…

2 weeks ago

Nilus Raises $10M, Reaching $18M in Funding to Lead the Future of AI-Powered Treasury Management

Nilus, the first proactive AI-powered treasury management platform, has raised an additional $10M in a…

2 weeks ago

Reeco Raises $15M Series A Round to Modernize Hotel Procurement with AI-Driven Procure-to-Pay Platform

Funding will drive Reeco’s strategic growth initiatives as it streamlines back-of-house operations for North American…

2 weeks ago