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LTC1553 Datasheet(PDF) 15 Page - Linear Technology

Part # LTC1553
Description  5-Bit Programmable Synchronous Switching Regulator Controller
PDF  24 Pages
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Manufacturer  LINER [Linear Technology]
Direct Link  http://www.linear.com
Logo LINER - Linear Technology

LTC1553 Datasheet(HTML) 15 Page - Linear Technology

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LTC1553
APPLICATIONS INFORMATION
Table 5. Recommended MOSFETs for LTC1553 Applications
TYPICAL INPUT
RDS(ON)
CAPACITANCE
PARTS
AT 25
°C (mΩ)
RATED CURRENT (A)
CISS (pF)
θJC (°C/W)
TJMAX (°C)
Siliconix SUD50N03-10
19
15 at 25
°C
3200
1.8
175
TO-252
10 at 75
°C
Siliconix Si4410DY
20
10 at 25
°C
2700
150
SO-8
8 at 75
°C
Motorola MTD20N03HDL
35
20 at 25
°C
880
1.67
150
D PAK
16 at 100
°C
SGS-Thomson STD20N03L
23
20 at 25
°C
2300
2.5
175
D PAK
14 at 100
°C
Motorola MTB75N03HDL
7.5
75 at 25
°C
4025
1.0
150
DD PAK
59 at 100
°C
IRF IRL3103S
14
56 at 25
°C
1600
1.8
175
DD PAK
40 at 100
°C
IRF IRLZ44
28
50 at 25
°C
3300
1.0
175
TO-220
36 at 100
°C
Fuji 2SK1388
37
35 at 25
°C
1750
2.08
150
TO-220
Inductor Selection
The inductor is often the largest component in the LTC1553
design and should be chosen carefully. Inductor value and
type should be chosen based on output slew rate require-
ments, output ripple requirements and expected peak
current. Inductor value is primarily controlled by the
required current slew rate. The maximum rate of rise of
current in the inductor is set by its value, the input-to-
output voltage differential and the maximum duty cycle of
the LTC1553. In a typical 5V input, 2.8V output applica-
tion, the maximum current slew rate will be:
DC
VV
LL
A
s
MAX
IN
OUT
()
=
183
.
µ
where L is the inductor value in
µH. With proper frequency
compensation, the combination of the inductor and output
capacitor will determine the transient recovery time. In
general, a smaller value inductor will improve transient
response at the expense of increased output ripple voltage
and inductor core saturation rating. A 2
µH inductor would
have a 0.9A/
µs rise time in this application, resulting in a
5.5
µsdelayinrespondingtoa5Aloadcurrentstep.During
this 5.5
µs,thedifferencebetweentheinductorcurrentand
the output current must be made up by the output capaci-
tor, causing a temporary voltage droop at the output. To
minimize this effect, the inductor value should usually be
in the 1
µH to 5µH range for most typical 5V input LTC1553
circuits. To optimize performance, different combinations
of input and output voltages and expected loads may
require different inductor values.
Once the required value is known, the inductor core type
can be chosen based on peak current and efficiency
requirements. Peak current in the inductor will be equal to
the maximum output load current plus half of the peak-to-
peak inductor ripple current. Ripple current is set by the
inductor value, the input and output voltage and the
operating frequency. The ripple current is approximately
equal to:
I
VV
V
fL
V
RIPPLE
IN
OUT
OUT
OSC
O
IN
=
()( )
()( )( )
fOSC = LTC1553 oscillator frequency = 300kHz
LO = Inductor value
Note: Please refer to the manufacturer’s data sheet for testing conditions
and detail information.



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