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參數(shù)資料
型號(hào): FAN53168
廠商: Fairchild Semiconductor Corporation
英文描述: 6-Bit VID Controlled 2-4 Phase DC-DC Controller
中文描述: 6位VID控制2-4相DC - DC控制器
文件頁(yè)數(shù): 21/28頁(yè)
文件大小: 397K
代理商: FAN53168
PRODUCT SPECIFICATION
FAN53168
REV. 1.0.0 6/9/03
21
Also shown is the standby dissipation factor (I
CC
times the
V
CC
) for the driver. For the FAN53418, the maximum dissi-
pation should be less than 400 mW. For our example, with
I
CC
= 7 mA, Q
GMF
= 24nC (max) and Q
GSF
= 31nC (max),
we
fi
nd 202 mW in each driver, which is below the 400 mW
dissipation limit. See the FAN53418 data sheet for more
details.
Ramp Resistor Selection
The ramp resistor (R
R
) is used for setting the size of the
internal PWM ramp. The value of this resistor is chosen to
provide the best combination of thermal balance, stability,
and transient response. The following expression is used for
determining the optimum value:
where A
R
is the internal ramp amplifier gain, A
D
is the
current balancing amplifier gain, R
DS
is the total low-side
MOSFET ON-resistance, and C
R
is the internal ramp
capacitor value. A close standard 1% resistor value is 301k
.
The internal ramp voltage magnitude can be calculated
using:
The size of the internal ramp can be made larger or smaller.
If it is made larger, stability and transient response will
improve, but thermal balance will degrade. Likewise, if the
ramp is made smaller, thermal balance will improve at the
sacri
fi
ce of transient response and stability. The factor of
three in the denominator of equation 19 sets a ramp size that
gives an optimal balance for good stability, transient
response, and thermal balance.
COMP Pin Ramp
There is a ramp signal on the COMP pin due to the droop
voltage and output voltage ramps. This ramp amplitude adds
to the internal ramp to produce the following overall ramp
signal at the PWM input.
For this example, the overall ramp signal is found to be
0.974 V.
Current Limit Set Point
To select the current limit set point, we need to find the resis-
tor value for R
LIM
. The current limit threshold for the
FAN53168 is set with a 3V source (V
LIM
) across R
LIM
with
a gain of 10.4mV/
μ
A (A
LIM
). R
LIM
can be found using the
following:
For values of R
LIM
greater than 500k
, the current limit may
be lower than expected, so some adjustment of R
LIM
may be
needed. Here, I
LIM
is the average current limit for the output
of the supply. For our example, choosing 120A for I
LIM
, we
find R
LIM
to be 200k
, for which we chose 200k
as the
nearest 1% value.
The per phase current limit described earlier has its limit
determined by the following:
For the FAN53168, the maximum COMP voltage
(V
COMP(MAX)
) is 3.3 V, the COMP pin bias voltage (V
BIAS
)
is 1.2V, and the current balancing amplifier gain (A
D
) is 5.
Using V
R
of 0.765V, and R
DS(MAX)
of 5.95m
(low-side
ON-resistance at 125°C), we find a per-phase limit of
40.44A.
This limit can be adjusted by changing the ramp voltage V
R
.
But make sure not to set the per-phase limit lower than the
average per-phase current (I
LIM
/n).
There is also a per phase initial duty cycle limit determined
by:
For this example, the maximum duty cycle is found to be
0.2696.
Feedback Loop Compensation Design
Optimized compensation of the FAN53168 allows the best
possible response of the regulator
s output to a load change.
The basis for determining the optimum compensation is to
make the regulator and output decoupling appear as an
output impedance that is entirely resistive over the widest
possible frequency range, including DC, and equal to the
droop resistance (R
O
). With the resistive output impedance,
the output voltage will droop in proportion with the load
current at any load current slew rate; this ensures the optimal
positioning and allows the minimization of the output
decoupling.
R
R
A
L
×
DS
D
R
------------------------------------------------
=
(19)
R
R
----------------------------------------------------------
291k
=
=
V
R
A
--------------------------------------------------
1
D
R
(
)
×
V
SW
×
R
=
(20)
V
R
)
228kHz
1.5V
×
×
----------------------–
0.765V
=
=
V
RT
V
1
X
×
SW
R
O
----------------------–
--------------------------------------------------------------
=
(21)
R
LIM
A
LIM
V
O
×
-------------------------------
=
(22)
I
PHLIM
V
D
V
V
DS MAX
)
---------------------------------------------------------------------
I
R
2
----
(23)
D
MAX
D
V
-------------------------------------------------------
V
RT
×
=
(24)
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相關(guān)代理商/技術(shù)參數(shù)
參數(shù)描述
FAN53168MTC 制造商:FAIRCHILD 制造商全稱(chēng):Fairchild Semiconductor 功能描述:6-Bit VID Controlled 2-4 Phase DC-DC Controller
FAN53168MTCX 功能描述:DC/DC 開(kāi)關(guān)控制器 Buck Controller 2to4 Phs VID Sync RoHS:否 制造商:Texas Instruments 輸入電壓:6 V to 100 V 開(kāi)關(guān)頻率: 輸出電壓:1.215 V to 80 V 輸出電流:3.5 A 輸出端數(shù)量:1 最大工作溫度:+ 125 C 安裝風(fēng)格: 封裝 / 箱體:CPAK
FAN53180 制造商:FAIRCHILD 制造商全稱(chēng):Fairchild Semiconductor 功能描述:6-Bit VID Controlled 2-4 Phase DC-DC Controller
FAN53180MTC 制造商:FAIRCHILD 制造商全稱(chēng):Fairchild Semiconductor 功能描述:6-Bit VID Controlled 2-4 Phase DC-DC Controller
FAN53180MTCX 功能描述:DC/DC 開(kāi)關(guān)控制器 Buck Controller 2to4 Phs VID Sync RoHS:否 制造商:Texas Instruments 輸入電壓:6 V to 100 V 開(kāi)關(guān)頻率: 輸出電壓:1.215 V to 80 V 輸出電流:3.5 A 輸出端數(shù)量:1 最大工作溫度:+ 125 C 安裝風(fēng)格: 封裝 / 箱體:CPAK
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