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SC1485ITSTRT Scheda tecnica(PDF) 11 Page - Semtech Corporation

Il numero della parte SC1485ITSTRT
Spiegazioni elettronici  Dual Synchronous Buck Pseudo Fixed Frequency Power Supply Controller
PDF  17 Pages
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Produttore elettronici  SEMTECH [Semtech Corporation]
Homepage  http://www.semtech.com
Logo SEMTECH - Semtech Corporation

SC1485ITSTRT Scheda tecnica(HTML) 11 Page - Semtech Corporation

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 2004 Semtech Corp.
www.semtech.com
SC1485
POWER MANAGEMENT
Stability Considerations
Unstable operation shows up in two related but dis-
tinctly different ways: double pulsing and fast-feedback
loop instability.
Double-pulsing occurs due to noise on the output or be-
cause the ESR is too low, causing not enough voltage
ramp in the output signal. This causes the error amplifier
to trigger prematurely after the 400ns minimum off-time
has expired. Double-pulsing will result in higher ripple
voltage at the output, but in most cases is harmless.
However, in some cases double-pulsing can indicate the
presence of loop instability, which is caused by insuffi-
cient ESR. One simple way to solve this problem is to add
some trace resistance in the high current output path. A
side effect of doing this is output voltage droop with load.
Another way to eliminate doubling-pulsing is to add a 10pF
capacitor across the upper feedback resistor divider
network. This is shown below in Figure 5, by capacitor
C4 in the schematic. This capacitance should be left out
until confirmation that double-pulsing exists. Adding this
capacitance will add a zero in the transfer function and
should eliminate the problem. It is best to leave a spot
on the PCB in case it is needed.
FBK
+5V
+
C1
1
2
3
4
5
6
7
PGND
DL
VDDP
ILIM
LX
DH
BST
+VIN
R2
C2
Q2
L1
Q1
R1
0.5V - 5.5V
C4
10pF
D2
D1
R3
+
C3
FIGURE 5
Loop instability can result in oscillations at the output
after line or load perturbations that can trip the overvolt-
age protection latch or cause the output voltage to fall
below the tolerance limit.
The best way for checking stability is to apply a zero to
full load transient and observe the output voltage ripple
envelope for overshoot and ringing. Over one cycle of
ringing after the initial step is sign that the ESR should
be increased.
Applications Information (Cont.)
SC1485 ESR Requirements
The constant on-time control used in the SC1485
regulates the ripple voltage at the output capacitor. This
signal consists of a term generated by the output ESR of
the capacitor and a term based on the increase in voltage
across the capacitor due to charging and discharging
during the switching cycle. The minimum ESR is set to
generate the required ripple voltage for regulation. For
most applications the minimum ESR ripple voltage is
dominated by PCB layout and the properties of SP or
POSCAP type output capacitors. For applications using
ceramic output capacitors the absolute minimum ESR
must be considered. Existing literature describing the ESR
requirements to prevent double pulsing does not
accurately predict the performance of constant on-time
controllers. A time domain model of the converter was
developed to generate equations for the minimum ESR
empirically. If the ESR is low enough the ripple voltage is
dominated by the charging of the output capacitor. This
ripple voltage lags the on-time due to the LC poles and
can cause double pulsing if the phase delay exceeds the
off-time of the converter. Refering to Figure 5, the
equation for the minimum ESR as a function of output
capacitance and switching frequency and duty cycle is;
()
π
+
+
>
D
1
2
Fs
Cout
2
Fs
200000
-
Fs
3
1
R3
R3
R2
ESR
Where D = Vout/Vin.



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