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LM5160APWPR Datasheet(PDF) 13 Page - Texas Instruments

Part # LM5160APWPR
Description  Wide Input 65V 2A Synchronous Buck / Fly-Buck Converter
PDF  28 Pages
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Manufacturer  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI1 - Texas Instruments

LM5160APWPR Datasheet(HTML) 13 Page - Texas Instruments

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IN
OFF(CL)
FB
5V
T
s
24V
12
P
OUT
ON
10
SW
V
R
F
1 10
:
u u
10
ON
ON
IN
R
1 10
T
s
V
u u
13
LM5160A, LM5160
www.ti.com
SNVSA03C – OCTOBER 2014 – REVISED AUGUST 2016
Product Folder Links: LM5160A LM5160
Submit Documentation Feedback
Copyright © 2014–2016, Texas Instruments Incorporated
Feature Description (continued)
7.3.3 Regulation Comparator
The feedback voltage at the FB pin is compared to the SS pin voltage VSS. In normal operation when the output
voltage is in regulation, an ON-time period is initiated when the voltage at FB pin falls below VSS. The high-side
buck switch stays on for the ON-time one-shot period causing the FB voltage to rise. After the ON-time period
expires, the high-side switch remains off until the FB voltage falls below VSS. During the start-up, the FB voltage
is below VSS at the end of each ON-time period and the high-side switch turns on again after the minimum forced
OFF-time of 170 ns (typical). When the output is shorted to ground (FB = 0 V), the high-side peak current limit is
triggered, the high-side FET is turned off, and remains off for a period determined by the current limit OFF-timer.
See the Current Limit section for additional information.
7.3.4 Soft Start
The soft-start feature of the LM5160 allows the converter to gradually reach a steady-state operating point,
thereby reducing start-up stresses and current surges. When the EN/UVLO pin is above the EN/UVLO standby
threshold VUVLO(TH) = 1.24 V (typical) and the VCC exceeds the VCC undervoltage VCC(UV) = 3.98 V (typical)
threshold, an internal 10-µA current source charges the external capacitor at the SS pin ©SS) from 0 V to 2 V.
The voltage at the SS pin is the noninverting input of the internal FB comparator. The soft-start interval ends
when the SS capacitor is charged to the 2-V reference level. The ramping voltage at the SS pin produces a
controlled, monotonic output voltage start-up. A minimum 1-nF soft-start capacitor must be used in all
applications.
7.3.5 Error Transconductance (GM) Amplifier
The LM5160 provides a trans-conductance (GM) error amplifier that minimizes the difference between the
reference voltage (VREF) and the average feedback (FB) voltage. This amplifier reduces the load and line
regulation errors that are common in constant ON-time regulators. The soft-start capacitor ©SS) provides
compensation for this error correction loop. The soft-start capacitor must be greater than 1 nF to ensure stability.
7.3.6 ON-Time Generator
The ON-time of the LM5160 high-side FET is determined by the RON resistor and is inversely proportional to the
input voltage (VIN). The inverse relationship with VIN results in a nearly constant frequency as VIN is varied. The
ON-time can be calculated from Equation 3 with RON expressed in ohms.
(3)
To set a specific continuous conduction mode switching frequency (FSW expressed in Hz), the RON resistor is
determined from Equation 4:
(4)
RON must be selected for a minimum ON-time (at maximum VIN) greater than 150 ns for proper operation. This
minimum ON-time requirement limits the maximum switching frequency of applications with relatively high VIN
and low VOUT.
7.3.7 Current Limit
The LM5160 provides an intelligent current limit OFF-timer that adjusts the OFF-time to reduce the foldback in
the current limit. If the peak value of the current in the buck switch exceeds 2.5 A (typical) the present ON-time
period is immediately terminated, and a non-resettable OFF-timer is initiated. The length of the OFF-time is
controlled by the FB voltage and the input voltage VIN. As an example, when VFB = 0 V and VIN = 24 V, the OFF-
time is set to 10 µs. This condition would occur if the output is shorted or during the initial phase of start-up. In
cases of output overload where the FB voltage is greater than zero volts (a soft short), the current limit OFF-time
is reduced. Reducing the OFF-time during less severe overloads reduces the current limit foldback, overload
recovery time, and start-up time. The current limit OFF-time, TOFF(CL) is calculated from Equation 5:
(5)



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