AXA010A0X3Z Lineage Power, AXA010A0X3Z Datasheet - Page 6

CONVER DC/DC 0.75 5.5V @ 10A SIP

AXA010A0X3Z

Manufacturer Part Number
AXA010A0X3Z
Description
CONVER DC/DC 0.75 5.5V @ 10A SIP
Manufacturer
Lineage Power
Series
Austin Lynx™r
Type
Point of Load (POL) Non-Isolated with Remote On/Offr
Datasheets

Specifications of AXA010A0X3Z

Output
0.75 ~ 5.5V
Number Of Outputs
1
Power (watts)
55W
Mounting Type
Through Hole
Voltage - Input
10 ~ 14V
Package / Case
10-SIP Module
1st Output
0.75 ~ 5.5 VDC @ 10A
Size / Dimension
2.00" L x 0.32" W x 0.50" H (50.8mm x 8.1mm x 12.7mm)
Power (watts) - Rated
55W
Operating Temperature
-40°C ~ 85°C
Efficiency
93%
Approvals
CSA, EN, UL, VDE
Output Current
10A
Input Voltage
12V
Output Voltage
0.75 to 5.5V
Screening Level
Industrial
Product Length (mm)
50.8mm
Product Height (mm)
12.7mm
Product Depth (mm)
8.1mm
Mounting Style
Through Hole
Pin Count
10
Output Power
55 W
Input Voltage Range
10 V to 14 V
Output Voltage (channel 1)
0.75 V to 5.5 V
Output Current (channel 1)
10 A
Package / Case Size
SIP
Output Type
Non-Isolated
Product
Non-Isolated / POL
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
3rd Output
-
2nd Output
-
Lead Free Status / Rohs Status
Compliant
Other names
555-1062
CC109101318
Data Sheet
September 30, 2009
Characteristic Curves
The following figures provide typical characteristics for the 12V Austin Lynx Programmable SMT modules at 25ºC.
Figure 1. Converter Efficiency versus Output Current
(Vout =1.2Vdc).
Figure 2. Converter Efficiency versus Output Current
(Vout = 1.5Vdc).
Figure3. Converter Efficiency versus Output Current
(Vout = 1.8Vdc).
LINEAGE
92
90
88
86
84
82
80
78
76
90
88
86
84
82
80
78
76
74
72
70
92
90
88
86
84
82
80
78
76
74
0
0
POWER
0
2
2
2
OUTPUT CURRENT, I
OUTPUT CURRENT, I
OUTPUT CURRENT, I
12V Austin Lynx
4
4
4
10 – 14Vdc input; 0.75Vdc to 5.5Vdc Output; 10A output current
6
6
6
O
O
O
(A)
(A)
(A)
8
8
8
Vin=1 4V
Vin=1 2V
Vin=1 0V
Vin=1 0V
Vin=1 2V
Vin=1 0V
Vin=1 4V
Vin=1 2V
Vin=1 4V
TM
SMT Non-isolated Power Modules Programmable:
10
10
10
Figure 4. Converter Efficiency versus Output Current
(Vout = 2.5Vdc).
Figure 5. Converter Efficiency versus Output Current
(Vout = 3.3Vdc).
Figure 6. Converter Efficiency versus Output Current
(Vout = 5.0Vdc).
94
92
90
88
86
84
82
80
96
94
92
90
88
86
84
82
80
78
76
74
78
93
89
83
95
87
85
79
91
81
77
0
0
0
2
2
2
OUTPUT CURRENT, I
OUTPUT CURRENT, I
OUTPUT CURRENT, I
4
4
4
6
6
6
O
O
O
(A)
(A)
(A)
8
8
8
6
Vin=1 4V
Vin=1 2V
Vin=1 0V
Vin=1 4V
Vin=1 2V
Vin=1 0V
Vin=1 4V
Vin=1 2V
Vin=1 0V
10
10
10

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