Okika Devices’ OTC2902K SoC Wins Best in Show at Embedded World NA

Okika Devices today announced that its OTC2902K System-on-Chip (SoC) Field-Programmable Analog Array (FPAA) has been honored with the Best in Show Award in the Analog, Power, & Related Components category at the Embedded World North America 2025 exhibition.

The OTC2902K represents a new generation of programmable mixed-signal technology designed to give embedded engineers greater flexibility and control over analog system design. Built on a 350nm CMOS process, the device integrates analog, digital, and microprocessor functionality within a single reconfigurable platform, enabling rapid development of complex signal-processing systems.

At the heart of the device is a Manhattan FPAA architecture that provides the highest number of programmable analog blocks in the industry, allowing engineers to build sophisticated analog circuits directly in hardware while maintaining the adaptability typically associated with digital platforms. The chip also includes programmable logic for analog/digital co-design and an integrated 16-bit MSP430 microcontroller core, enabling seamless coordination between signal conditioning, processing, and system control.

Despite its compact footprint, the OTC2902K delivers exceptional performance density and rapid design iteration capabilities. Engineers can quickly prototype, optimize, and deploy low-power mixed-signal systems, making the platform well suited for applications ranging from sensor interfaces and edge intelligence to industrial control and instrumentation.

The Best in Show recognition at Embedded World North America highlights the growing importance of reconfigurable analog technology as embedded systems demand greater flexibility, lower power consumption, and tighter integration between analog and digital domains.

With the OTC2902K SoC FPAA, Okika Devices continues to advance programmable analog computing, empowering engineers to build adaptable hardware solutions that keep pace with rapidly evolving embedded applications.

Share this article

Latest Stories

View all

Reducing Lifecycle Risk in Defense Electronics with FPAAs

Reducing Lifecycle Risk in Defense Electronics with FPAAs

Modern defense systems demand flexibility across the entire signal chain, not just in software and digital hardware. FPAAs provide a way to reconfigure analog processing without replacing hardware. This approach can help improve adaptability, sustainment, and system longevity.

Read more about: Reducing Lifecycle Risk in Defense Electronics with FPAAs

FPAAs for Sensor Interfaces and ADC Signal Conditioning

FPAAs for Sensor Interfaces and ADC Signal Conditioning

Learn how FPAAs help engineers build flexible sensor interfaces, improve ADC performance, reduce redesign cycles, and process signals closer to the source.

Read more about: FPAAs for Sensor Interfaces and ADC Signal Conditioning

Simplify High-Order Analog Filtering with Chameleon™ FPAA Modules

Simplify High-Order Analog Filtering with Chameleon™ FPAA Modules

Discover Chameleon™ FPAA low-pass filter modules featuring 8th-order Butterworth filtering, differential signal paths, and production-ready analog signal processing for embedded systems, instrumentation, and sensor conditioning.

Read more about: Simplify High-Order Analog Filtering with Chameleon™ FPAA Modules