AXA003A0X4-SR Lineage Power, AXA003A0X4-SR Datasheet - Page 8

CONVERT DC/DC 0.75 5.5V @ 3A SMD

AXA003A0X4-SR

Manufacturer Part Number
AXA003A0X4-SR
Description
CONVERT DC/DC 0.75 5.5V @ 3A SMD
Manufacturer
Lineage Power
Series
Austin MiniLynx™r
Type
Point of Load (POL) Non-Isolated with Remote On/Offr
Datasheet

Specifications of AXA003A0X4-SR

Rohs Status
RoHS non-compliant
Output
0.75 ~ 5.5V
Number Of Outputs
1
Power (watts)
16W
Mounting Type
Surface Mount
Voltage - Input
8.3 ~ 14V
Package / Case
5-SMD Module
1st Output
0.75 ~ 5.5 VDC @ 3A
Size / Dimension
0.80" L x 0.45" W x 0.29" H (20.3mm x 11.4mm x 7.3mm)
Power (watts) - Rated
16.5W
Operating Temperature
-40°C ~ 85°C
Efficiency
91%
Approvals
CSA, EN, UL, VDE
Product
Non-Isolated / POL
3rd Output
-
2nd Output
-
Lead Free Status / Rohs Status
No RoHS Version Available
Other names
555-1001-2

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
AXA003A0X4-SR
Manufacturer:
OK
Quantity:
2 368
Part Number:
AXA003A0X4-SR
Manufacturer:
PWR
Quantity:
20 000
Data Sheet
October 2, 2009
Characteristic Curves
The following figures provide typical characteristics for the Austin MiniLynx
LINEAGE
Figure 13. Transient Response to Dynamic Load
Change from 100% of 50% full load (Vo = 3.3Vdc, Cext
= 2x150 μF Polymer Capacitors).
Figure 14. Typical Start-Up Using Remote On/Off
(V
F
Low-ESR external capacitors (7x150uF Polymer)
(V
igure 15. Typical Start-Up Using Remote On/Off with
IN
IN
= 12.0Vdc, Vo = 3.3Vdc, Io = 3A, Co = 1050μF).
= 12.0Vdc, Vo = 3.3Vdc, Io = 3A).
POWER
TIME, t (100μs/div)
TIME, t (2ms/div)
TIME, t (2ms/div)
(continued)
8.3 – 14Vdc input; 0.75Vdc to 5.5Vdc Output; 3A output current
Austin MiniLynx
Figure 16. Typical Start-Up with application of Vin
(V
Figure 17 Typical Start-Up Using Remote On/Off
with Prebias (V
Vbias =1.0Vdc).
Figure 18. Output short circuit Current
(V
TM
IN
IN
= 12.0Vdc, Vo = 3.3Vdc, Io = 3A).
= 12.0Vdc, Vo = 0.75Vdc).
12V SMT Non-isolated Power Modules:
TM
12 V SMT modules at 25ºC.
IN
= 12.0Vdc, Vo = 1.8Vdc, Io = 1.0A,
TIME, t (10ms/div)
TIME, t (2ms/div)
TIME, t (2ms/div)
8

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