参数资料
型号: ADP1613-BL3-EVZ
厂商: Analog Devices Inc
文件页数: 15/28页
文件大小: 0K
描述: EVAL BLANK ADISIMPOWER ADP1613
标准包装: 1
主要目的: DC/DC,步升
稳压器拓扑结构: 升压
板类型: 裸(未填充)
已供物品: 裸板
已用 IC / 零件: ADP1613
Data Sheet
To determine the crossover frequency, it is important to note
that, at that frequency, the compensation impedance (Z COMP )
ADP1612/ADP1613
The capacitor, C2, is chosen to cancel the zero introduced by
output capacitance, ESR.
ESR × C OUT
is dominated by a resistor, and the output impedance (Z OUT ) is
dominated by the impedance of an output capacitor. Therefore,
when solving for the crossover frequency, the equation (by
definition of the crossover frequency) is simplified to
Solve for C2 as follows:
C2 =
R COMP
(19)
A VL =
× × G MEA × R COMP × G CS ×
= 1
V FB V IN
V OUT V OUT
1
2 π × f C × C OUT
where:
f C is the crossover frequency.
R COMP is the compensation resistor.
Solve for R COMP ,
(15)
For low ESR output capacitance such as with a ceramic
capacitor, C2 is optional. For optimal transient performance,
R COMP and C COMP might need to be adjusted by observing the
load transient response of the ADP1612/ADP1613. For most
applications, the compensation resistor should be within the
range of 4.7 k? to 100 k? and the compensation capacitor
should be within the range of 100 pF to 3.3 nF.
SOFT START CAPACITOR
Upon startup (EN ≥ 1.6 V), the voltage at SS ramps up slowly
2 π × f C × C OUT × ( V OUT ) 2
V FB × V IN × G MEA × G CS
4746 × f C × C OUT × ( V OUT ) 2
C SS = I SS
? t
R COMP = (16)
where:
V FB = 1.235 V.
G MEA = 80 μA/V.
G CS = 13.4 A/V.
R COMP = (17)
V IN
Once the compensation resistor is known, set the zero formed
by the compensation capacitor and resistor to one-fourth of the
crossover frequency, or
by charging the soft start capacitor (C SS ) with an internal 5 μA
current source (I SS ). As the soft start capacitor charges, it limits
the peak current allowed by the part to prevent excessive over-
shoot at startup. The necessary soft start capacitor, C SS , for a
specific overshoot and start-up time can be calculated for the
maximum load condition when the part is at current limit by:
(20)
V SS
where:
I SS = 5 μA (typical).
V SS = 1.2 V.
Δ t = startup time, at current limit.
C COMP =
2
π × f C × R COMP
where C COMP is the compensation capacitor.
(18)
If the applied load does not place the part at current limit, the
necessary C SS will be smaller. A 33 nF soft start capacitor results
in negligible input current overshoot at start up, and therefore is
suitable for most applications. However, if an unusually large
FB 2
ERROR
AMPLIFIER
COMP
output capacitor is used, a longer soft start period is required
to prevent input inrush current.
V BG
g m
1
R COMP
C COMP
C2
Conversely, if fast startup is a requirement, the soft start
capacitor can be reduced or removed, allowing the
ADP1612/ADP1613 to start quickly, but allowing greater
peak switch current .
Figure 35. Compensation Components
Rev. D | Page 15 of 28
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