Datasheet
Table Of Contents
- 1. Intended Use
- 2. Installation Requirements
- 3. AC-Input
- 4. Input Inrush Current
- 5. Output
- 6. Hold-up Time
- 7. DC-Input
- 8. Efficiency and Power Losses
- 9. Functional Diagram
- 10. Front Side and User Elements
- 11. Terminals and Wiring
- 12. Lifetime Expectancy and MTBF
- 13. EMC
- 14. Environment
- 15. Protection Features
- 16. Safety Features
- 17. Dielectric Strength
- 18. Approvals
- 19. RoHS, REACH and Other Fulfilled Standards
- 20. Physical Dimensions and Weight
- 21. Accessory
- 22. Application Notes
- 22.1. Peak Current Capability
- 22.2. Back-feeding Loads
- 22.3. Charging of Batteries
- 22.4. External Input Protection
- Parallel Use to Increase Output Power
- Parallel Use for Redundancy
- 22.7. Daisy Chaining of Outputs
- 22.8. Inductive and Capacitive Loads
- Series Operation
- Operation on Two Phases
- 22.11. Use Without PE on the Input
- 22.12. Use in a Tightly Sealed Enclosure
- 22.13. Mounting Orientations
ML60.121
MiniLine-2
12V, 4.5A, SINGLE PHASE INPUT
8. EFFICIENCY AND POWER LOSSES
AC 100V AC 120V AC 230V
Efficiency typ. 83.5% 85.3% 87.2% at 12V, 4.5A (full load)
Power losses typ. 0.45W 0.5W 0.85W at 0A
typ. 4.2W 3.9W 4.2W at 12V, 2.25A (half load)
typ. 10.6W 9.3W 7.9W at 12V, 4.5A (full load)
Fig. 8-1 Efficiency vs. output current at 12V,
typ.
Fig. 8-2 Losses vs. output current at 12V,
typ.
Efficiency
0
80
84
88
78
90%
8/23
4.5
A
0.5 2.521.5
82
86
b
c
a
a) 230Vac
b) 120Vac
c) 100Vac
13.534
Output Current
Power Losses
0
4
8
0
12W
0.5 2.5 3.5 4.5
A
1
2
6
b
c
a
10
1.5 234
a) 230Vac
b) 120Vac
c) 100Vac
Output Current
Fig. 8-3 Efficiency vs. input voltage at 12V,
4.5A, typ.
Fig. 8-4 Losses vs. input voltage at 12V, 4.5A,
typ.
Efficiency
85 120
155
190 225 260Vac
Input Voltage
89%
84
86
88
87
85
83
Power Losses
0
2
4
6
8
10
12W
85 120
155
190 225 260Vac
Input Voltage
Nov. 2015 / Rev. 1.4 DS--ML60.121-EN
All parameters are specified at 12V, 4.5A, 230Vac 50Hz input, 25°C ambient and after a 5 minutes run-in time unless otherwise noted.
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