参数资料
型号: LT3467IS5
厂商: LINEAR TECHNOLOGY CORP
元件分类: 稳压器
英文描述: 2.5 A SWITCHING REGULATOR, 1600 kHz SWITCHING FREQ-MAX, PDSO6
封装: 1 MM HEIGHT, PLASTIC, MO-193, TSOT-23, 6 PIN
文件页数: 2/16页
文件大小: 245K
代理商: LT3467IS5
10
LT3467/LT3467A
3467afc
APPLICATIONS INFORMATION
WU
U
Compensation—Theory
Like all other current mode switching regulators, the
LT3467/LT3467A needs to be compensated for stable and
efficient operation. Two feedback loops are used in the
LT3467/LT3467A: a fast current loop which does not
require compensation, and a slower voltage loop which
does. Standard Bode plot analysis can be used to under-
stand and adjust the voltage feedback loop.
As with any feedback loop, identifying the gain and phase
contribution of the various elements in the loop is critical.
Figure 6 shows the key equivalent elements of a boost
converter. Because of the fast current control loop, the
power stage of the IC, inductor and diode have been
replaced by the equivalent transconductance amplifier gmp.
gmp acts as a current source where the output current is
proportional to the VC voltage. Note that the maximum output
current of gmp is finite due to the current limit in the IC.
+
+
gma
RC
RO
R2
CC: COMPENSATION CAPACITOR
COUT: OUTPUT CAPACITOR
CPL: PHASE LEAD CAPACITOR
gma: TRANSCONDUCTANCE AMPLIFIER INSIDE IC
gmp: POWER STAGE TRANSCONDUCTANCE AMPLIFIER
RC: COMPENSATION RESISTOR
RL: OUTPUT RESISTANCE DEFINED AS VOUT DIVIDED BY ILOAD(MAX)
RO: OUTPUT RESISTANCE OF gma
R1, R2: FEEDBACK RESISTOR DIVIDER NETWORK
RESR: OUTPUT CAPACITOR ESR
3467 F06
R1
COUT
CPL
RL
RESR
VOUT
VC
CC
gmp
1.255V
REFERENCE
Figure 6. Boost Converter Equivalent Model
Output Pole: P1=
2
Error Amp Pole:
L
2
π RCOUT
P2=
1
Error Amp Zero: Z1=
1
O
C
2
π
RC
C
OUT
IN
mp
V
Vg
DC GAIN: A=
1.255
gR
R
ma
O
L
2
1
2
1
2
ESR Zero:
RHP Zero: Z3=
Z
RC
V
ESR
OUT
=
π
IIN
L
OUT
R
VL
f
2
π
High Frequency Pole: P3> SS
PL
Phase Lead Zero Z
RC
Phase Lead Pol
3
4
1
21
:
=
π
eeP
C
RR
PL
:
4
1
2
12
=
+
π
The Current Mode zero is a right half plane zero which can
be an issue in feedback control design, but is manageable
with proper external component selection.
From Figure 6, the DC gain, poles and zeroes can be
calculated as follows:
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