AXA010A0A93-SRZ Lineage Power, AXA010A0A93-SRZ Datasheet - Page 10

DC/DC Converters & Regulators 5Vout 10A SMT 10-14Vin

AXA010A0A93-SRZ

Manufacturer Part Number
AXA010A0A93-SRZ
Description
DC/DC Converters & Regulators 5Vout 10A SMT 10-14Vin
Manufacturer
Lineage Power
Type
Step Downr
Series
AXA010r
Datasheet

Specifications of AXA010A0A93-SRZ

Output Current
10A
Input Voltage
10 to 14V
Output Voltage
5V
Screening Level
Industrial
Product Length (mm)
33mm
Product Depth (mm)
13.5mm
Mounting Style
Surface Mount
Pin Count
6
Number Of Outputs
1
Package / Case
SMT
Product
Non-Isolated / POL
Output Power
50 W
Input Voltage Range
10 V to 14 V
Output Voltage (channel 1)
5 V
Output Current (channel 1)
10 A
Output Type
Non-Isolated
Lead Free Status / RoHS Status
Compliant
Data Sheet
March 14, 2006
Test Configurations
Figure 23. Input Reflected Ripple Current Test Setup.
Figure 24. Output Ripple and Noise Test Setup.
Figure 25. Output Voltage and Efficiency Test Setup.
LINEAGE
NOTE: All voltage measurements to be taken at the module
V
COM
O
(+)
terminals, as shown above. If sockets are used then
Kelvin connections are required at the module terminals
to avoid measurement errors due to socket contact
resistance.
Efficiency
TO OSCILLOSCOPE
NOTE: Measure input reflected ripple current with a simulated
R
R
NOTE: All voltage measurements to be taken at the module
distribution
distribution
POWER
source inductance (L
possible battery impedance. Measure current as shown
above.
COPPER STRIP
1uF .
terminals, as shown above. If sockets are used then
Kelvin connections are required at the module terminals
to avoid measurement errors due to socket contact
resistance.
R
R
contact
contact
η =
@ 20°C 100kHz
E.S.R.<0.1Ω
C
Electrolytic
S
GROUND PLANE
1000μF
L
1μH
TEST
V
10uF
IN
V
V
V
COM
TEST
IN
IN
O
(+)
. I
. I
) of 1μH. Capacitor C
O
IN
SCOPE
COM
V
O
Tantalum
2x100μF
C
V
x 100 %
IN
O
10 – 14Vdc input; 1.2Vdc to 5.5Vdc Output; 10A output current
RESISTIVE
LOAD
CURRENT PROBE
R
R
S
contact
contact
offsets
V
COM
IN
(+)
R
R
distribution
distribution
R
Austin Lynx
LOAD
Design Considerations
Input Filtering
Austin Lynx
low-impedance source. A highly inductive source can
affect the stability of the module. An input capacitance
must be placed directly adjacent to the input pin of the
module, to minimize input ripple voltage and ensure
module stability.
In a typical application, 4x47 µF low-ESR tantalum
capacitors (AVX part #: TPSE476M025R0100, 47µF 25V
100 mΩ ESR tantalum capacitor) will be sufficient to
provide adequate ripple voltage at the input of the
module. To minimize ripple voltage at the input, low
ESR ceramic capacitors are recommended at the input of
the module. Figure 26 shows input ripple voltage (mVp-
p) for various outputs with 4x47 µF tantalum capacitors
and with 4x22 µF ceramic capacitor (TDK part #:
C4532X5R1C226M) at full load.
Figure 26. Input ripple voltage for various output
with 4x22 µF polymer and 4x47 µF ceramic capacitors
at the input (full load).
TM
12 V SMT Non-isolated Power Modules:
300
200
250
100
150
50
0
0
TM
12V SMT module should be connected to a
1
Output Voltage (Vdc)
2
3
4
Tantalum
Ceramic
5
10
6

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