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Power factor correction (PFC) classification and control laws
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Power factor correction (PFC) topology comparison
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Power factor correction (PFC) basics
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Tips and Tricks for Industrial Power Supplies - Battery Charging
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mmWave Training Series
The mmWave training curriculum provides foundational content and hands on examples for you to learn the fundamentals of FMCW technology and mmWave sensors, and start development quickly. TI's portfolio of mmWave sensors features the AWR automotive radar sensor family and the IWR industrial mmWave sensor family, which are intended to be used for detecting range, velocity and angle of objects. Learn more about the silicon, tools, software and some of the applications for both mmWave families in the mmWave training series.
Opportunities and System Design Aspects of Low Voltage Motor Drives in Appliances
Learn about opportunities for low voltage motors in major appliances, small appliances and power tools. Understand power stage architectures, topologies and control methods for low voltage brushed DC, stepper and brushless DC motors as well as the system design aspects, challenges and solutions.
Brushless DC Motor Drives: Architectures, Challenges and Solutions
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How to Design a Robust, Reliable and Efficient Power Stage for Brushless DC Motors
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Brushed DC and Stepper Motor Drives: Architectures, Challenges and Solutions
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Motor Drives in Appliances: Why Transforming from High Voltage to Low Voltage?
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What does GaN mean for your design?
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3D time-of-flight image filtering
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Battery Powered Motor Drives: How to Design a High Performance Power Stage?
Modern battery powered motor drive applications such as power tools, drones, vacuum cleaners, eBikes, etc. show a clear trend towards permanent magnet synchronous motors (PMSM) and brushless DC motors (BLDC). The biggest challenge in designing the power stage for these applications is to meet form factor, efficiency, protection, peak current carrying capability and thermal performance. This training will explain how to do a system design to meet the design challenges by proper selection of power FET and gate driver.
Power Stage Protection, Current Sensing, Efficiency Analysis & Related TI Designs
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Power Stage: High Performance Parameters & Selection of MOSFETs and Gate Driver
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Introduction to Battery Powered Motor Drive Applications
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Application deep dive: Robot navigation
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Recommended design process and resources
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3D time-of-flight sensor theory of operation
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3D TOF robotics: obstacle detection, collision avoidance and navigation
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