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LT3751EUFD 数据表(PDF) 21 Page - Linear Technology |
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LT3751EUFD 数据表(HTML) 21 Page - Linear Technology |
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21 / 28 page ![]() LT3751 21 3751f Figure 12. Effects of RC Snubber APPLICATIONS INFORMATION Figure 12 shows the effect of the RC snubber resulting in a lower voltage spike and faster settling time. LOW NOISE REGULATION The LT3751 has the option to provide low noise regulated output voltage when using a resistive voltage divider from the output node to the FB pin. Refer to the Selecting Component Parameters section to design the transformer, NMOS power switch, output diode, and sense resistor. Use the following equations to select the feedback resis- tor values based on the power dissipation and desired output voltage: RFBH = VOUT − 1.22 ()2 PD ; Top Feedback Resistor RFBL = 1.22 VOUT − 1.22 ⎛ ⎝⎜ ⎞ ⎠⎟ •RFBH ; Bottom Feedback Resistor RFBH, depending on output voltage and type used, may require several smaller values placed in series. This will reduce the risk of arcing and damage to the feedback resis- tors. Consult the manufacturer’s rated voltage specification for safe operation of the feedback resistors. The LT3751 has a minimum periodic refresh frequency limit of 23kHz. This drastically reduces switching frequency components in the audio spectrum. The LT3751 can oper- ate with no-load, but the regulation scheme switches to overvoltage Burst Mode Operation and audible noise and output voltage ripple increase. This can be avoided by operating with a minimum load current. Minimum Load Current Periodic refresh circuitry requires an average minimum load current to avoid entering overvoltage burst mode. Usually, the feedback resistors should be adequate to provide this minimum load current. ILOAD(MIN) ≥ LPRI •I 2 PK •23kHz 100 • VOUT IPK is the peak primary current at maximum power de- livery. The LT3751 will enter overvoltage burst mode if the minimum load current is not met. Overvoltage burst mode will prevent the application from entering a runaway condition; however, the output voltage will increase 10% over the nominal regulated voltage. 0V 0V 3751 F12 VDRAIN (WITH SNUBBER) VDRAIN (WITHOUT SNUBBER) IPRI NMOS DIODE CONDUCTS |
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