MAX15041EVKIT+ Maxim Integrated Products, MAX15041EVKIT+ Datasheet - Page 16

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MAX15041EVKIT+

Manufacturer Part Number
MAX15041EVKIT+
Description
KIT EVAL MAX15041ETE
Manufacturer
Maxim Integrated Products
Type
DC/DC Switching Converters, Regulators & Controllersr
Datasheets

Specifications of MAX15041EVKIT+

Board Size
55 mm x 55 mm
Operating Supply Voltage
4.5 V to 28 V
Product
Power Management Development Tools
Dimensions
55 mm x 55 mm
Silicon Manufacturer
Maxim
Silicon Core Number
MAX15041
Kit Application Type
Power Management
Application Sub Type
Synchronous Buck Converter
Kit Contents
Board
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
For Use With/related Products
MAX15041
Low-Cost, 3A, 4.5V to 28V Input, 350kHz, PWM
Step-Down DC-DC Regulator with Internal Switches
2) Place capacitors on V
3) Keep the high-current paths as short and wide as
Figure 3. Typical Operating Circuit (4.5V to 28V Input Buck Converter)
Table 1. Typical Component Values for Common Output-Voltage Settings
16
possible to the IC and the corresponding pin using
direct traces. Keep the power ground plane (con-
nected to PGND) and signal ground plane (connect-
ed to SGND) separate. PGND and SGND connect at
only one common point near the input bypass
capacitor return terminal.
possible. Keep the path of switching current short
and minimize the loop area formed by LX, the output
capacitors, and the input capacitors.
4.5V TO 28V
______________________________________________________________________________________
V
INPUT
OUT
PGOOD
5.0
3.3
2.5
1.8
1.2
C
47 F
IN
(V)
10k
R
PU
L (µH)
DD
4.7
4.7
3.3
2.2
2.2
C
1 F
, IN, and SS as close as
VDD
C
0.01 F
SS
IN
EN
V
PGOOD
SS
DD
C
I.C.
C
MAX15041
12
22
33
47
8
(nF)
D
SGND
COMP
PGND
BST
LX
FB
100pF
4) Connect IN, LX, and PGND separately to a large
5) Ensure all feedback connections are short and
6) Route high-speed switching nodes (such as LX and
C
CC
R
47
copper area to help cool the IC to further improve
efficiency.
direct. Place the feedback resistors and compensa-
tion components as close as possible to the IC.
BST) away from sensitive analog areas (such as FB
and COMP).
BST
R
10nF
C
C
2.70
1.80
1.50
1.00
0.68
BST
(k )
R
1.8k
C
12nF
C
C
4.7 H
Calculate R
L
Setting the Output Voltage section.
22 F
C
OUT
Select R
5k
1
using the equation in the
R
1
and R
R
2
2
so that:
R
45.3k
1%
R
10.0k
1%
50k
1
2
2
OUTPUT = 3.3V

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