Smart rings

nobutton

Block diagram

About

The ultra-low power PSOC™63 Bluetooth® LE SoC and embedded payment SECORA™ Connect combination extends the battery-life of smart rings. Built on a 40nm platform, the PSOC™63 SoC supports a 1.7V~3.6V supply voltage range and offers various low-power modes and tuning knobs to optimize the system power. This solution has proven success in the smart ring markets based on the number of shipments of the launched models. SECORA™ Connect allows smart system designers to seamlessly integrate a compact, ultra-low power solution with only 4-6 uA  in standby mode with boosted NFC capabilities.

The SECORA™ Connect NFC family makes it easy to design smart rings with secured payment and convenient authentication capabilities. This family includes turnkey NFC solutions for connected smart rings with VISA and Mastercard payment capabilities, CIPURSE™, CDCVM, PPSE and more on request. Pre-certified contactless performance, a simple user interface, and easy host integration via the PSOC™ based evaluation kit can speed up project development, and less external components adoption to save on BOM cost.

The PSOC™63 Bluetooth® LE SoC and  SECORA™ Connect NFC wearable solution enables a smaller footprint, which is ideal for compact smart ring designs. The PSOC™63 offers BGA(5.2x6.4 mm)/ CSP(3.8x5.0 mm) packages to enable small form factors, while SECORA™ Connect family is built on the advanced 28nm process node technology, offering the best-in-class compact NFC-based solution (6.2 mm2 PCB space) with optimized ultra-small antenna design. 

PSOC™ 63 Bluetooth® LE MCUs have a dual-core architecture with 150 MHz Arm® Cortex®-M4 and 100 MHz Arm® Cortex®-M0+ processors for high-compute capability and can be optimized for AI and ML edge applications.

DEEPCRAFT™ AI Suite simplifies the development on ML-related models or software. Its off-the-shelf products, like Fall detection, Snore detection, Cough detection, run on the PSOC™ 63 platform and are easily deployed to embedded applications such as smart rings.

The ultra-low power PSOC™63 Bluetooth® LE SoC and embedded payment SECORA™ Connect combination extends the battery-life of smart rings. Built on a 40nm platform, the PSOC™63 SoC supports a 1.7V~3.6V supply voltage range and offers various low-power modes and tuning knobs to optimize the system power. This solution has proven success in the smart ring markets based on the number of shipments of the launched models. SECORA™ Connect allows smart system designers to seamlessly integrate a compact, ultra-low power solution with only 4-6 uA  in standby mode with boosted NFC capabilities.

The SECORA™ Connect NFC family makes it easy to design smart rings with secured payment and convenient authentication capabilities. This family includes turnkey NFC solutions for connected smart rings with VISA and Mastercard payment capabilities, CIPURSE™, CDCVM, PPSE and more on request. Pre-certified contactless performance, a simple user interface, and easy host integration via the PSOC™ based evaluation kit can speed up project development, and less external components adoption to save on BOM cost.

The PSOC™63 Bluetooth® LE SoC and  SECORA™ Connect NFC wearable solution enables a smaller footprint, which is ideal for compact smart ring designs. The PSOC™63 offers BGA(5.2x6.4 mm)/ CSP(3.8x5.0 mm) packages to enable small form factors, while SECORA™ Connect family is built on the advanced 28nm process node technology, offering the best-in-class compact NFC-based solution (6.2 mm2 PCB space) with optimized ultra-small antenna design. 

PSOC™ 63 Bluetooth® LE MCUs have a dual-core architecture with 150 MHz Arm® Cortex®-M4 and 100 MHz Arm® Cortex®-M0+ processors for high-compute capability and can be optimized for AI and ML edge applications.

DEEPCRAFT™ AI Suite simplifies the development on ML-related models or software. Its off-the-shelf products, like Fall detection, Snore detection, Cough detection, run on the PSOC™ 63 platform and are easily deployed to embedded applications such as smart rings.

Design Resources Component

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