Switching Regulator Power Loss
Efficiency can be a misleading number for comparison of switching regulators. Efficiency number can be manipulated by input and output voltage, while power loss is more tightly tied to the actual circuit --- Click here to watch the video and learn why.
Efficiency can be a misleading number for comparison of switching regulators. Efficiency number can be manipulated by input and output voltage, while power loss is more tightly tied to the actual circuit --- Click here to watch the video and learn why.
Technical Archives (Sorted By Date)
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Closed loop fan control at the system level
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Right MOSFETs for power conversion in POL architectures
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Battery charging options for portable systems
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PolyPhase for step-up conversion
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New standard in hot-swap reliability
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Enhance protection of Li-based batteries
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Charge pumps in battery-powered devices
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MCU, flash enhance battery charger features
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Using cost-effective PWM controller for small power-offline apps
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Clock FV adjustment improves battery life
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Audio power amplification goes beyond Class D
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Designing low leakage current power supplies
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Automotive and Industrial Applications
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Power management trends in 3G cellphones
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Delta-Sigma ADCs
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Perform fault monitoring, manage backplane power
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Design concerns of hybrid/fuel cell electronics
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Precision floating-gate voltage reference
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Deriving optimum MOSFET ON-resistance for target applications
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Boosting efficiency using 802.11a power amps
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VIPower makes easier PFC converters
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New DIP-IPM for high-performance motor control
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Simplifying simultaneous voltage sequencing
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PI-IPM cuts motor drive design time, risk
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Advanced power loss analysis using oscilloscope
(16/07/03)
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Using CCFL backlight converter in portable device applications
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Creating a low-power design for embedded systems
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Enhancing power circuit design
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Protection IC ensures battery reliability
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Accurately identifying disk surface defects
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Implementing synchronous rectifiers in isolated topologies
(16/04/02)
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Compensation critical in fitting analog pressure sensors
(16/02/02)
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Harmonics suppression with static synchronous converters
(01/01/02)
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Technical overview of IEEE 1394, part 1
(27/09/01)
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Power-Sensitive Design Techniques On FPGA Devices
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Compact, Low Cost, On-Board Power Supplies Uses No Heat Sink
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Synchronous rectification to enhance dc-dc converter design
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Power distribution for deep-submicron SoC designs
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Power management in CDMA systems
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