LTC3586EUFE#PBF Linear Technology, LTC3586EUFE#PBF Datasheet - Page 30

IC MANAGER USB PWR HI-EFF 38QFN

LTC3586EUFE#PBF

Manufacturer Part Number
LTC3586EUFE#PBF
Description
IC MANAGER USB PWR HI-EFF 38QFN
Manufacturer
Linear Technology
Datasheet

Specifications of LTC3586EUFE#PBF

Applications
Handheld/Mobile Devices
Voltage - Supply
4.35 V ~ 5.5 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
38-QFN
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Current - Supply
-

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LTC3586/LTC3586-1
applicaTions inForMaTion
Table 7. Recommended Inductors for Buck-Boost Regulator
INDUCTOR
TYPE
LPS4018
D53LC
7440430022 2.2
CDRH4D22/
HP
SD14
Buck-Boost Regulator Input/Output Capacitor
Selection
Low ESR ceramic capacitors should be used at both the
buck-boost regulator output (V
boost regulator input supply (V
X7R ceramic capacitors should be used because they
retain their capacitance over wider voltage and temperature
ranges than other ceramic types. A 22µF output capacitor is
sufficient for most applications. The buck-boost regulator
input supply should be bypassed with a 2.2µF capacitor.
Refer to Table 6 for recommended ceramic capacitor
manufacturers.
Buck-Boost Regulator Output Voltage Programming
The buck-boost regulator can be programmed for output
voltages greater than 2.75V and less than 5.5V. The full
scale output voltage is programmed using a resistor divider
from the V
where V
0
V
OUT
3
FB3
=
(µH)
3.3
2.2
2.0 3.25
2.2
2.0 2.56 0.045
OUT3
L
V
is 0.8V. See Figure 8 or 9.
FB
MAX
3
2.2
2.5
2.5
2.4
I
(A)
pin connected to the FB3 pin such that:
DC
 
R
R
2
1
0.028 4.8 × 4.8 × 2.8 Würth-Elektronik
0.044 4.7 × 4.7 × 2.4 Sumida
MAX
DCR
0.08
0.07
0.02
(Ω)
+
1
 
3.9 × 3.9 × 1.7
3.9 × 3.9 × 1.7
5.0 × 5.0 × 3.0 Toko
SIZE IN mm
(L × W × H)
5.2 × 5.2 ×
1.45
OUT3
IN3
). Again, only X5R or
) as well as the buck-
MANUFACTURER
Coilcraft
www.coilcraft.com
www.toko.com
www.we-online.com
www.sumida.com
Cooper
www.cooperet.com
Closing the Feedback Loop
The LTC3586/LTC3586-1 incorporate voltage mode PWM
control. The control to output gain varies with operation
region (buck, boost, buck-boost), but is usually no greater
than 20. The output filter exhibits a double pole response
given by:
where C
The output filter zero is given by:
where R
A troublesome feature in boost mode is the right-half plane
zero (RHP), and is given by:
The loop gain is typically rolled off before the RHP zero
frequency.
A simple Type I compensation network (as shown in
Figure 8) can be incorporated to stabilize the loop but
at the cost of reduced bandwidth and slower transient
response. To ensure proper phase margin, the loop must
cross unity-gain decade before the LC double pole.
The unity-gain frequency of the error amplifier with the
Type I compensation is given by:
Most applications demand an improved transient response
to allow a smaller output filter capacitor. To achieve a higher
bandwidth, Type III compensation is required. Two zeros
are required to compensate for the double-pole response.
Type III compensation also reduces any V
seen during a startup condition.
f
f
f
f
FILTER POLE
FILTER ZERO
RHPZ
UG
=
OUT
ESR
2
=
_
_
• •
2 • •
is the capacitor equivalent series resistance.
is the output filter capacitor.
π
π
R CP
1
=
=
1
I
OUT
2 π
2 π
V
• •
• •
IN
• •
1
2
L V
Hz
R
1
L C
ESR
1
OUT
OUT
C
Hz
OUT
Hz
Hz
OUT3
overshoot
3586fb

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