lt3688fe Linear Technology Corporation, lt3688fe Datasheet - Page 17

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lt3688fe

Manufacturer Part Number
lt3688fe
Description
Lt3688 - Dual 800ma Step-down Switching Regulator With Power-on Reset And Watchdog Timer
Manufacturer
Linear Technology Corporation
Datasheet
APPLICATIONS INFORMATION
Table 4. Capacitor Vendors
Part Number
On Semiconductor
MBR0520L
MBR0540
MBRM120E
MBRM140
Diodes Inc.
B0530W
B120
B130
B140HB
DFLS140
Ceramic Capacitors
Ceramic capacitors are small, robust and have very low
ESR. However, ceramic capacitors can cause problems
when used with the LT3688 due to their piezoelectric
nature. When in Burst Mode operation, the LT3688’s
switching frequency depends on the load current, and
at very light loads the LT3688 can excite the ceramic
capacitor at audio frequencies, generating audible noise.
Since the LT3688 operates at a lower current limit during
Burst Mode operation, the noise is typically very quiet. If
this is unacceptable, use a high performance tantalum or
electrolytic capacitor at the output.
Frequency Compensation
The LT3688 uses current mode control to regulate the
output, which simplifi es loop compensation. In particular,
the LT3688 does not require the ESR of the output capaci-
tor for stability, allowing the use of ceramic capacitors to
achieve low output ripple and small circuit size. Figure 3
shows an equivalent circuit for the LT3688 control loop. The
error amp is a transconductance amplifi er with fi nite output
impedance. The power section, consisting of the modulator,
power switch and inductor, is modeled as a transconduc-
tance amplifi er generating an output current proportional to
the voltage at the V
C1, integrates this current, and that the capacitor on the
V
resulting in two poles in the loop. R
C
node (C
C
) integrates the error amplifi er output current,
C
node. Note that the output capacitor,
(V)
V
20
40
20
40
30
20
30
40
40
R
C
provides a zero.
I
(A)
0.5
0.5
0.5
1.1
AVE
1
1
1
1
1
V
F
(mV)
620
530
550
500
500
510
at 1A
With the recommended output capacitor, the loop cross-
over occurs above the R
well as long as the value of the inductor is not too high
and the loop crossover frequency is much lower than the
switching frequency. With a larger ceramic capacitor (very
low ESR), crossover may be lower and a phase lead ca-
pacitor (C
phase margin and transient response. At minimum, use a
10pF phase lead capacitor to reduce noise injection to the
FB pin. If the output capacitor is different than the recom-
mended capacitor, stability should be checked across all
operating conditions, including load current, input voltage
and temperature. The LT1375 data sheet contains a more
thorough discussion of loop compensation and describes
how to test the stability using a transient load. Figure 4
shows the transient response when the load current is
stepped from 300mA to 600mA and back to 300mA.
LT3688
V
GND
R
80k
Figure 4. Transient Load Response of the LT3688
Front Page Application as the Load Current is
Stepped from 300mA to 600mA
C
C
C
100pF
C
100mV/DIV
200mA/DIV
PL
0.7V
Figure 3. Model for the Loop Response
) across the feedback divider may improve the
3M
I
V
LOAD
OUT
AMPLIFIER
+
ERROR
1.6A/V
g
m
300μA/V
=
g
m
CURRENT MODE
POWER STAGE
=
+
C
800mV
C
C
FB
zero. This simple model works
50μs/DIV
R1
R2
C
PL
+
ESR
TANTALUM OR
ELECTROLYTIC
3688 F03
C1
OUT
LT3688
3688 F04
CERAMIC
17
C1
3688f

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