LTM4624
19
4624fc
For more information www.linear.com/LTM4624
applicaTions inForMaTion
Table 6. Output Voltage Response vs Component Matrix (Refer to Figure 20)
C
IN
PART NUMBER VALUE C
OUT1
PART NUMBER VALUE C
OUT2
PART NUMBER VALUE
Murata GRM21BR61C106KE15L 10µF, 16V,
0805, X5R
Murata GRM21BR60J476ME15 47µF, 6.3V,
0805, X5R
Sanyo 4TPE100MZB 4V 100µF
Taiyo Yuden EMK212BJ106KG-T 10µF, 16V,
0805, X5R
Taiyo Yuden JMK212BJ476MG-T 47µF, 6.3V,
0805, X5R
Murata GRM31CR61C226ME15L 22µF, 16V,
1206, X5R
Taiyo Yuden EMK316BJ226ML-T 22µF, 16V,
1206, X5R
V
OUT
(V)
C
IN
(CERAMIC)
(µF)
C
IN
(BULK)
C
OUT1
(CERAMIC)
(µF)
C
OUT2
(BULK)
(µF)
C
FF
(pF)
V
IN
(V)
DROOP
(mV)
P-P DERIVATION
(mV)
RECOVERY
TIME (µs)
LOAD
STEP (A)
LOAD STEP
SLEW RATE
(A/µs)
R
FB
()
1 10 47 5, 12 5 72 40 1 1 90.9
1 10 100 10 5, 12 5 60 40 1 1 90.9
1 10 47 5, 12 5 127 40 2 1 90.9
1 10 100 10 5, 12 5 90 40 2 1 90.9
1.2 10 47 5, 12 5 76 40 1 1 60.4
1.2 10 100 10 5, 12 5 65 40 1 1 60.4
1.2 10 47 5, 12 5 145 40 2 1 60.4
1.2 10 100 10 5, 12 5 103 40 2 1 60.4
1.5 10 47 5, 12 5 80 40 1 1 40.2
1.5 10 100 10 5, 12 5 70 40 1 1 40.2
1.5 10 47 5, 12 5 161 40 2 1 40.2
1.5 10 100 10 5, 12 5 115 40 2 1 40.2
1.8 10 47 5, 12 5 95 40 1 1 30.1
1.8 10 100 10 5, 12 5 80 40 1 1 30.1
1.8 10 47 5, 12 5 177 40 2 1 30.1
1.8 10 100 10 5, 12 5 128 40 2 1 30.1
2.5 10 47 5, 12 5 125 40 1 1 19.1
2.5 10 100 10 5, 12 5 100 50 1 1 19.1
2.5 10 47 5, 12 5 225 40 2 1 19.1
2.5 10 100 10 5, 12 5 161 50 2 1 19.1
3.3 10 47 5, 12 5 155 40 1 1 13.3
3.3 10 100 10 5, 12 5 122 60 1 1 13.3
3.3 10 47 5, 12 5 285 40 2 1 13.3
3.3 10 100 10 5, 12 5 198 60 2 1 13.3
5 10 47 5, 12 5 220 40 1 1 8.25
5 10 47 5, 12 5 420 40 2 1 8.25
LTM4624
20
4624fc
For more information www.linear.com/LTM4624
applicaTions inForMaTion
Figure 19. Recommended PCB Layout
V
IN
C
OUT
V
OUT
4624 F19
GND
C
IN
R
FB
Safety Considerations
The LTM4624 modules do not provide galvanic isolation
from V
IN
to V
OUT
. There is no internal fuse. If required,
a slow blow fuse with a rating twice the maximum input
current needs to be provided to protect each unit from
catastrophic failure. The device does support thermal
shutdown and over current protection.
Layout Checklist/Example
The high integration of LTM4624 makes the PCB board
layout very simple and easy. However, to optimize its electri
-
cal and thermal performance, some layout considerations
are still necessar
y
.
Use large PCB copper areas for high current paths,
including V
IN
, GND and V
OUT
. It helps to minimize the
PCB conduction loss and thermal stress.
Place high frequency ceramic input and output capaci-
tors next to the V
IN
, PGND and V
OUT
pins to minimize
high frequency noise.
Place a dedicated power ground layer underneath the
unit.
To minimize the via conduction loss and reduce module
thermal stress, use multiple vias for interconnection
between top layer and other power layers.
Do not put via directly on the pad, unless they are
capped or plated over.
Use a separated SGND ground copper area for com
-
ponents connected to signal pins. Connect the SGND
to GND underneath the unit.
Bring out test points on the signal pins for monitoring.
Figure 19 gives a good example of the recommended layout.
LTM4624
21
4624fc
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applicaTions inForMaTion
Figure 20. 4V
IN
to 14V
IN
, 1.5V Output at 4A Design
Figure 21. 2.375V
IN
to 5V
IN
, 1V Output with 2MHz Operating Frequency
V
IN
SV
IN
RUN
INTV
CC
MODE
TRACK/SS
PGOOD
LTM4624
FREQ
V
OUT
10µF
16V
47µF
6.3V
V
IN
4V TO 14V
V
OUT
1.5V
4A
FB
COMP
GND
40.2k
SGND
4624 F20
0.1µF
V
IN
SV
IN
RUN
INTV
CC
MODE
TRACK/SS
PGOOD
LTM4624
FREQ
162k
5V
V
OUT
10µF
16V
F
6.3V
47µF
6.3V
V
IN
2.375V TO 5V
V
OUT
1V
4A
FB
COMP
GND
90.9k
SGND
4624 F21
0.1µF

LTM4624EY#PBF

Mfr. #:
Manufacturer:
Analog Devices / Linear Technology
Description:
Switching Voltage Regulators 14VIN, 4A Step-Down DC/DC Module Regulator
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union

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