FAN5071M Fairchild Semiconductor, FAN5071M Datasheet - Page 16

DC/DC Switching Controllers DC/DC

FAN5071M

Manufacturer Part Number
FAN5071M
Description
DC/DC Switching Controllers DC/DC
Manufacturer
Fairchild Semiconductor
Datasheet

Specifications of FAN5071M

Number Of Outputs
2
Output Voltage
1.05 V to 1.825 V
Output Current
28 A
Input Voltage
4.5 V to 5.25 V
Mounting Style
SMD/SMT
Package / Case
SOIC-24 Wide
Maximum Operating Temperature
+ 70 C
Minimum Operating Temperature
0 C
Lead Free Status / Rohs Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
FAN5071M
Manufacturer:
FIR
Quantity:
20 000
Part Number:
FAN5071MX
Manufacturer:
FAIRCHILD/仙童
Quantity:
20 000
FAN5069 Rev. 1.1.5
© 2005 Fairchild Semiconductor Corporation
FAN5069 has a high gain error amplifier around which
the loop is closed. Figure 24 shows a Type-3 compensa-
tion network. For Type-2 compensation, R3 and C3 are
not used. Since the FAN5069 architecture employs sum-
ming current mode, Type-2 compensation can be used
for most applications.
Type 3 Feedback Component Calculations
Use the following steps to calculate feedback components:
Notation:
Equations:
Effective current sense resistance =
Current modulator DC gain =
Effective ramp amplitude =
Voltage modulator DC gain =
Plant DC gain =
Sampling gain natural frequency =
Sampling gain quality factor (damping) =
Effective inductance =
G
L
R
R
R
T
R
C
F
V
s
L
SW
DSON
es
IN
p
0
p
=
s ( )
=
=
=
=
Inductor Value
=
=
=
Switching Period
Load Resistance
-------------------------------- -
M
Net Output Filter capacitance
M
=
Net ESR of the Output Filter Capacitors
Input Voltage
Switching Frequency
=
v
v
Net Gain of Plant = control-to-output transfer function
×
×
ON-state Drain-to Source Resistance of Low-side MOSFET
R
R
i
i
×
+
R
R
M
L
L
o
=
=
(
L
M
M
e
v
v
=
||
×
V
M
R
M
--------
M
m
M
M
i
i
O
v
) R
=
i
v
=
||
×
=
=
M
------------------- -
M
3.33 10
ω
L
L
R
------ -
v
R
v
V
-------- -
V
R
n
L
×
+
+
i
IN
m
i
=
M
M
------------------- -
ω
×
M
=
n
i
i
Q
----- -
T
v
π
7
×
s
×
z
10
×
Q
R
=
R
z
×
i
----- -
DSON
(
---------------------------------------- -
π
2
V
IN
R
ramp
1.8
16
) T
×
For further information about Type-2 compensation
networks, refer to:
Note: For critical applications requiring wide loop
bandwidth using very low ESR output capacitors,
use Type-3 compensation.
s
Venable, H. Dean, "The K factor: A new mathematical
tool for stability analysis and synthesis,” Proceedings
of Powercon, March 1983.
www.fairchildsemi.com
(EQ. 19)
(EQ. 20)
(EQ. 21)
(EQ. 22)
(EQ. 23)
(EQ. 24)
(EQ. 25)
(EQ. 26)
(EQ. 27)

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