Together, Connectivity and Embedded Processing Teams Elevate Customer UX
Renesas brings connectivity and embedded processing together to simplify IoT design. Read more about our wireless MCU strategy and our approach to integrated platforms.
Renesas brings connectivity and embedded processing together to simplify IoT design. Read more about our wireless MCU strategy and our approach to integrated platforms.
Ki® wireless docking enables safe, autonomous humanoid robot charging using scalable, cable-free power transfer, NFC control, and reliable alignment for consistent performance.
From fingertips to firmware—discover how motor control, AI, and sensing drive next-gen dexterous robotic hands for humanoid applications.
Learn how WLCSP packaging enables ultra-compact, low-power MCU designs for smart sensors, delivering near-die-size packaging with excellent electrical and thermal performance.
As intelligence spreads across machines, the signal chain beneath the AI model is what turns capability into confidence, reliably, quickly, and accurately.
Discover Renesas 365, a cloud-based platform uniting silicon, software, and lifecycle workflows to speed embedded design through smarter device selection, continuity, and AI assistance.
Explore model-based design with MathWorks hardware support packages, enabling code generation, processor-in-the-loop verification, and one-click deployment on Renesas RA and RH850 MCUs.
Learn how embedded edge AI enables smart e-bikes with predictive maintenance, safer rides, and intelligent assistance using Renesas' AIK-RA8D1 AI Kit Development Platform and Reality AI Tools.
Smart locks are surging as demand grows for secure, convenient, keyless access, biometrics, and smart home integration, raising expectations while creating new technical challenges for manufacturers.
Centralized motor control increases software complexity, hardware compromises, and system cost. Learn how the RX14T enables a distributed, modular approach with built‑in analog functions that reduce the BOM and simplify design.