Engineering
Buck Converter
64%
DC-to-DC Converter
62%
Transient Analysis
59%
Output Voltage
55%
Boost Converter
53%
Transients
50%
Experimental Result
49%
Fast Transient
48%
Peak Efficiency
45%
Power Management
41%
Current Load
39%
Light Load
30%
Switching Frequency
30%
Output Voltage Ripple
29%
Input Voltage
24%
Backlight
24%
Switched Capacitor
24%
Nitride
23%
Output Ripple
21%
Metal-Oxide-Semiconductor Field-Effect Transistor
20%
Electrostatic Discharge
20%
Power Loss
19%
Voltage Scaling
19%
Electric Power Utilization
19%
Error Amplifier
18%
Recovery Time
17%
Energy Harvesting
17%
Power Conversion Efficiency
17%
Electric Power Factor Correction
16%
Liquid Crystal Display
16%
System-on-Chip
16%
Power Supply
16%
Compact Size
16%
Supply Voltage
16%
Amplifier
16%
Total Harmonic Distortion
15%
Response Time
14%
Simulation Result
14%
Heavy Load
14%
Pulse Width Modulation
13%
Load Condition
13%
Power Factor
13%
Output Power
13%
Mode Control
13%
Load Regulation
13%
Conversion Ratio
12%
Switching Loss
12%
Recycling Technique
11%
Maximum Power Point Tracking
11%
Power Switch
11%
Keyphrases
High Efficiency
100%
DC-DC Converter
42%
Output Voltage
39%
Peak Efficiency
38%
Control Method
37%
Output Voltage Ripple
35%
Load Current
35%
Buck Converter
34%
DC-DC Buck Converter
34%
Single-inductor
33%
Single-inductor Dual-output
32%
Cross-regulation
30%
Controller
29%
Fast Transient
24%
Low-dropout Regulator
23%
Gallium Nitride
23%
Boost Converter
23%
Fast Transient Response
22%
Power Management
22%
Current Mode
21%
CMOS Process
21%
Inductor Current
21%
Light Load
21%
Transient Response
21%
Wide Load Range
19%
Switching Frequency
19%
Input Voltage
18%
Dynamic Voltage Scaling
18%
Switched Capacitor
18%
Error Amplifier
17%
Power Factor Correction
16%
Digital Low-dropout Regulator
15%
Field Sequential Color
15%
On-time Control
15%
Compact Size
15%
Gate Driver
15%
Inductors
15%
Recovery Time
15%
Low-frequency Ripple
14%
Supply Voltage
14%
Buck-boost Converter
14%
Load Regulation
14%
Scaling Technique
13%
Bipolar Signals
13%
Step-down
13%
Low Voltage
13%
On chip
12%
Total Harmonic Distortion
12%
Heavy Load
12%
Power Saving
12%