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LT3511MPMS-PBF データシートの表示(PDF) - Linear Technology

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LT3511MPMS-PBF Datasheet PDF : 26 Pages
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LT3511
Applications Information
Choose a diode that is fast and has sufficient reverse
voltage breakdown:
VREVERSE > VIN(MAX)
Example:
VREVERSE > 72V
The diode needs to handle the peak switch current of the
switch which was determined to be 0.24A. A 100V, 0.6A
diode from Diodes Inc. (BAV19W) is chosen.
Step 7: Compensation.
Compensation will be optimized towards the end of the
design procedure. Connect a resistor and capacitor from
the VC node to ground. Use a 20k resistor and a 2.2nF
capacitor.
Step 8: Select RFB and RTC Resistors.
Use the following equations to choose starting values for
RFB and RTC. Set RREF to 10k.
RFB
=
(VOUT
+
VF
+ 0.55V)
1.2V
NPS
RREF
RREF = 10k
RTC
=
RFB
NPS
Example:
RFB
=
(15 +
0.5 + 0.55V)
1.2V
2
10k
=
267k
RTC
=
267k
2
=
133k
Step 9: Adjust RFB based on output voltage.
Power up the application with application components
connected and measure the regulated output voltage.
Readjust RFB based on the measured output voltage.
RFB(NEW )
=
VOUT
VOUT(MEAS)
RFB(OLD)
Example:
RFB(NEW )
=
15V
16.8V
267k
=
237k
Step 10: Remove RTC and measure output voltage over
temperature.
Measure output voltage in a controlled temperature envi-
ronment like an oven to determine the output temperature
coefficient. Measure output voltage at a consistent load
current and input voltage, across the temperature range
of operation. This procedure will optimize line and load
regulation over temperature.
Calculate the temperature coefficient of VOUT:
ΔVOUT = VOUT(HOT) – VOUT(COLD)
ΔTemp THOT(°C) – TCOLD(°C)
Example:
VOUT measured at 100mA and 48VIN
ΔVOUT
ΔTemp
=
15.70V – 15.37V
125°C – (–50°C)
=
1.9mV/°C
3511fa
18

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