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LM3485Q1MMX датащи(PDF) 10 Page - Texas Instruments

номер детали LM3485Q1MMX
подробное описание детали  Hysteretic PFET Buck Controller
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LM3485
SNVS178H – JANUARY 2002 – REVISED DECEMBER 2015
www.ti.com
7 Detailed Description
7.1 Overview
The LM3485 is buck (step-down) DC-DC controller that uses a hysteretic control scheme. The comparator is
designed with approximately 10 mV of hysteresis. In response to the voltage at the FB pin, the gate drive
(PGATE pin) turns the external PFET on or off. When the inductor current is too high, the current limit protection
circuit engages and turns the PFET off for approximately 9 µs.
Hysteretic control does not require an internal oscillator. Switching frequency depends on the external
components and operating conditions. Operating frequency reduces at light loads resulting in excellent efficiency
compared to other architectures.
Two external resistors can easily program the output voltage. The output can be set in a wide range from
1.242-V (typical) to VIN.
7.2 Functional Block Diagram
7.3 Feature Description
7.3.1 Hysteretic Control Circuit
The LM3485 uses a comparator-based voltage control loop. The feedback is compared to a 1.242-V reference,
and a 10-mV hysteresis is designed into the comparator to ensure noise free operation.
When the FB input to the comparator falls below the reference voltage, the output of the comparator moves to a
low state. This results in the driver output, PGATE, pulling the gate of the PFET low and turning on the PFET.
With the PFET on, the input supply charges Cout and supplies current to the load via the series path through the
PFET and the inductor. Current through the Inductor ramps up linearly and the output voltage increases. As the
FB voltage reaches the upper threshold, which is the internal reference voltage plus 10 mV, the output of the
comparator changes from low to high, and the PGATE responds by turning the PFET off. As the PFET turns off,
the inductor voltage reverses, the catch diode turns on, and the current through the inductor ramps down. Then,
as the output voltage reaches the internal reference voltage again, the next cycle starts.
10
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