The Future of Robotics: Why Physical AI Matters More Than Human Appearance
Physical AI, machine vision, and robotic manipulation enable specialized robots to perform human-like tasks without humanoid forms, improving ROI.
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Physical AI, machine vision, and robotic manipulation enable specialized robots to perform human-like tasks without humanoid forms, improving ROI.
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A Quantum Leap in Computer Processing
Learn MoreDesktop PCB fabrication uses milling, conductive ink printing, UV lasers, and 3D printing to accelerate prototyping and support rapid hardware development.
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FPGAs enable sensor fusion and parallel motor control in humanoid robots, supporting real-time processing, AI workflows, and BLDC motor control.
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The Arduino VENTUNO Q edge AI SBC combines accelerated AI processing with a dedicated real-time microcontroller for robotics, vision systems, and automation.
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Explore how low-power FPGAs enable sensor aggregation, interface bridging, and efficient edge preprocessing in compact, power-constrained systems.
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Explore native voice AI architectures, neural audio codecs, and low-latency speech models enabling real-time conversational AI without text pipelines.
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Smart sensor overview covering sensor functionality, integration, and data processing concepts for electronic system design.
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Edge AI enables local data processing for IIoT devices, improving latency, security, and efficiency in industrial automation and predictive maintenance.
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AI-native data centers address AI workloads with advanced compute, networking, storage, power, and cooling infrastructure for high-density GPU clusters.
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Engineering AI for Daily Life
Learn MoreEvaluation platforms accelerate automotive embedded development with early software bring-up, interface validation, and bench testing across CAN XL, Ethernet, LIN, and FlexRay networks.
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Auracast™ broadcasts audio over Bluetooth® LE Audio, offering an accessible, one-to-many audio streaming solution that simplifies hearing assistance in public spaces compared to induction loops.
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Vector control (FOC) improves BLDC motor efficiency and precision. New MCUs enable cost effective implementation in power tools and small motor applications.
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Basler Embedded Vision Kit with NVIDIA Jetson Nano
Learn MoreAI-Powered Engineering
Learn MoreDiscover how efficient motor control, edge AI, MEMS sensing, and wide-bandgap semiconductors reduce energy use in electric motor-driven systems.
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Explore Wi-Fi sensing with 802.11bf, enabling motion, presence, and environmental detection using RF signals, MIMO, and beamforming for smart home and industrial applications.
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Edge AI and NXP FRDM-IMX93 enable smart package detection with real-time ML, a GUI, and human-machine collaboration for Industry 5.0 logistics.
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Ultra‑wideband enables centimeter‑level real‑time location accuracy using time‑of‑flight and angle‑of‑arrival techniques, supporting secure access, robotics, and tracking in GPS‑limited environments.
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Chiplets enable modular IC design, improving yield, cost, and performance compared to monolithic SoCs using 2.5D/3D packaging and UCIe interconnects.
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SPI page EEPROMs unify byte-level updates and page-based operations, enabling low-power, reliable storage for mixed embedded workloads and firmware in modern designs.
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The Vela IF310 combines Bluetooth Classic and LE Audio in a single module, giving embedded developers a practical path to next-generation wireless audio without abandoning existing deployments.
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Learn how an Altera Agilex 3 FPGA and an Arduino UNO R4 Wi-Fi enable SPI-based stepper motor control to retrofit legacy CNC machines with multi-axis control.
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