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Capacitive Touch Basics with MSP430 MCUs featuring CapTIvate Technology
Fundamental PCB Layout and Design Guidelines of MSP430 MCUs with CapTIvate Technology
This training covers the fundamental design techniques required to implement a successful capacitive sensing hardware design. This series will explore a number of design topics, including: Basic layout guidelines overlays, back lighting; Dealing with moisture; Self capacitance sensors; Mutual capacitance sensors; and Proximity sensors.
Introduction to EMC Challenges and Design with CapTIvate MCUs
Application Demos of Capacitive Touch Featuring MSP430 MCUs with CapTIvate Technology
BOOSTXL-CAPKEYPAD Capacitive Touch BoosterPack Module Introduction and Demos
TAS5825M Innovation Features Overview
What are the audio amplifier requirements for wireless / AI speaker? How TAS5825M improve battery lifetime and audio quality?
This section provides the overview of TAS5825M innovation features.
TAS5825M Hybrid PWM Modulation to Improve Battery Efficiency
Compared with traditional PWM modulation, TAS5825M develops innovative Hybrid modulation, which dynamically maintains differential switching with several common duty options.
The benefits of Hybrid PWM modulation mainly includes:
- Higher efficiency for longer battery lifetime
- Good THD+N performance
- Ultra-low idle power dissipation and idle noise
TAS5825M Thermal Foldback, Inductor Free and Audio DSP Resource
This training section descripts some innovation features of TAS5825M, which includes:
- Real-time thermal foldback: maintain max safe output power for uninterrupted listening experience
- 122MHz DSP resource: 192kHz high definition audio processing or Smart Amp algorithm for better speaker protection
- Inductor less: state-of-the-art EMI reduction technology
Simplify Your Smart Home Audio Project with the Two-Way Audio Reference Design
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Improve Bass and Loudness with Smart Amp Using the TAS5825M Class-D Audio Amplifier
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Deep Dive into the Light Load Efficient, Low Noise Power Supply Reference Design for Wearables and IoT (TIDA-01566)
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Capacitive touch HMI reference design with LED animation for appliances
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Optical reference design for .23" Digital Micromirror Device (DMD)
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Smart Speaker Projection Techniques
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Design considerations for USB type-C power delivery Part 2
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DLP® Pico™ DLP2000 EVM
Demo: Implement complex LED patterns with the LED ring reference design
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How to select the right charger for smart speaker
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What to consider in battery management design for smart home?
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Hybrid and HEAD Audio PWM Modulation Schemes
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