LTC3454EDD#TRPBF Linear Technology, LTC3454EDD#TRPBF Datasheet - Page 9

IC LED DRIVER PHOTO FLASH 10-DFN

LTC3454EDD#TRPBF

Manufacturer Part Number
LTC3454EDD#TRPBF
Description
IC LED DRIVER PHOTO FLASH 10-DFN
Manufacturer
Linear Technology
Type
Photo Flash LEDr
Datasheet

Specifications of LTC3454EDD#TRPBF

Topology
PWM, Step-Down (Buck), Step-Up (Boost)
Number Of Outputs
1
Internal Driver
Yes
Type - Primary
Backlight, Flash/Torch
Type - Secondary
White LED
Frequency
900MHz ~ 1.15MHz
Voltage - Supply
2.7 V ~ 5.5 V
Voltage - Output
5.15V
Mounting Type
Surface Mount
Package / Case
10-DFN
Operating Temperature
-40°C ~ 85°C
Current - Output / Channel
1A
Internal Switch(s)
Yes
Efficiency
90%
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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APPLICATIONS INFORMATION
COMPONENT SELECTION
Inductor Selection
The high frequency operation of the LTC3454 allows the
use of small surface mount inductors. The inductor cur-
rent ripple is typically set to 20% to 40% of the maximum
average inductor current. For a given ripple the inductance
term in boost mode is:
and in buck mode is:
where f = operating frequency, Hz
%Ripple = allowable inductor current ripple, %
V
V
V
I
For high effi ciency, choose an inductor with a high fre-
quency core material, such as ferrite, to reduce core loses.
The inductor should have low ESR (equivalent series
resistance) to reduce the I
to handle the peak inductor current without saturating.
Molded chokes or chip inductors usually do not have
enough core to support peak inductor currents >1A. To
minimize radiated noise, use a toroid, pot core or shielded
bobbin inductor. For white LED application, a 4.7μH/5μH
inductor value is recommended. See Table 1 for a list of
component suppliers.
Table 1. Inductor Vendor Information
SUPPLIER
Coilcraft
Cooper/Coiltronics
Murata
Sumida
Toko
Vishay-Dale
OUT(MAX)
IN(MIN)
IN(MAX)
OUT
L
L
>
>
= output voltage, V
(
V
V
IN MIN
= minimum input voltage, V
IN MAX
= maximum input voltage, V
f I
f V
(
= maximum output load current
(
OUT MAX
IN MAX
)
2
(
)
(
WEB SITE
www.coilcraft.com
www.cooperet.com
www.murata.com
www.japanlink.com/sumida
www.toko.com
www.vishay.com
(
V
V
)
OUT
OUT
)
• %
• • %
)
Ripp
Ripple V
V
V
IN MIN
2
OUT
R losses, and must be able
(
l l e I
)
OUT
100
)
OUT
100
%
2
%
Input Capacitor Selection
Since the V
mended to place at least a 2.2μF , low ESR bypass capacitor
to ground. See Table 2 for a list of component suppliers.
Table 2. Capacitor Vendor Information
SUPPLIER
AVX
Sanyo
Taiyo Yuden
TDK
Output Capacitor Selection
The bulk value of the capacitor is set to reduce the ripple
due to charge into the capacitor each cycle. The steady-
state ripple due to charge is given by:
where C
The output capacitance is usually many times larger in
order to handle the transient response of the converter. For
a rule of thumb, the ratio of operating frequency to unity-
gain bandwidth of the converter is the amount the output
capacitance will have to increase from the above calcula-
tions in order to maintain desired transient response.
The other component of ripple is due to ESR (equivalent
series resistance) of the output capacitor. Low ESR ca-
pacitors should be used to minimize output voltage ripple.
For surface mount applications, Taiyo Yuden, TDK, AVX
ceramic capacitors, AVX TPS series tantalum capacitors
or Sanyo POSCAP are recommended. For the white LED
application, a 10μF capacitor value is recommended. See
Table 2 for a list of component suppliers.
Optional Schottky Diodes
Schottky diodes across the synchronous switches B and
D are not required, but provide a lower drop during the
break-before-make time (typically 20ns) of the NMOS to
PMOS transition, improving effi ciency. Use a Schottky
%
%
Ripple Boost
Ripple Buck
OUT
_
_
IN
= output fi lter capacitor, F
pin is the supply voltage for the IC it is recom-
=
=
(
8
I
V
OUT MAX
IN MAX
WEB SITE
www.avxcorp.com
www.sanyovideo.com
www.t-yuden.com
www.component.tdk.com
V
(
IN MAX
(
(
)
)
)
C
V
(
OUT
V
OUT
f
OUT
2
• •
)
L C
V
OUT
1 1 00
V
LTC3454
OUT
IN MIN
2
(
%
f
)
)
100% %
3454fa
9

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