MP450,650,1K0 Instruction Manual Introduction........................ 1. Order Information........................................1.1 Explanation for Encoding ...................... 1.2 Notes on Encoding ........................1.3 Marking 2. Mechanical Specification and Output Terminals..........................2.1 Mechanism of the Whole Power System ..................2.2 Mechanism of Output Modules Functions........................
◎ ◎ ◎ ◎ ◎ ◎ ◎ ※Code X,1,2,7,8,9 for MP450, MP650 ※Code X,1,2,3,4,5,6,7,8,9 for MP1K0 ※Maximum number of units for parallel function : 5 for MS-210, 3 for MS-300/360 Example: MP1K0- 1C SLOT1 O/P:5V@35A SLOT2,3 O/P:12V@25A SLOT4 Blank Slot SLOT5 O/P:5V@10A 12V@4.2A...
2. Mechanical Specification and Output Terminals 2.1 Mechanism of the Whole Power System ◎MP450 12 max. Unit:mm 19 16 max. 147.5 8-M4(Both Sides) 147.5 4-M4 Air flow direction 12 max. ◎MP650 16 max. 171.5 8-M4(Both Sides) 171.5 4-M4 Air flow direction ◎MP1K0...
◎The power supply unit may become unstable due to the difference in wire impedance and load current. The addition of C1, C2, C3 and R1 shown in figure 3-1 may help improve output voltage stability. Please contact MEAN WELL for more detail specification of these components.
3.9 Auxiliary Output ◎Built-in 12V/0.1A auxiliary output that can be used as the voltage source of remote ON/OFF control application for individual output modules or the whole modular system. Please refer to figure 3-2 and 3-3 for wiring methods. 3.10 Remote ON/OFF Control - Whole Power System ◎Built-in remote ON/OFF control circuit for the whole power system.
Ω (3)Connecting an additional 100K potentiometer to PIN CN7-6, PIN CN7-7 and PIN CN7-8 will provide an adjustment for the output voltage in a range of -5% to +5% of the rated voltage (ex: -3%, +2.5% and etc.) CN7-8 CN7-7 Figure 3-6 CN7-6 Note The remote margin V program function cannot be used when units are connected in parallel...
Requirement for Assembly ◎Based on safety considerations, the assembly task should be executed in factories certified by the safety organizations and should be authorized by MEAN WELL in advance as well. Installation Method ◎The assembly diagram of the PFC front-end and output modules is shown in Figure 4-1.
PFC front-end. ◎Output load derating is required for proper operation in high ambient temperature or at low AC input. Please refer to the output derating curves of MP450, MP650, and MP1K0 shown in Figure 4-4. 70 (HORIZONTAL) ℃...
6.Specification 6.1 Front End MODEL PFC-450 PFC-650 PFC-1000 VOLTAGE RANGE 85 ~ 264VAC 120 ~370VDC FREQUENCY RANGE 47 ~ 63Hz POWER FACTOR PF>0.95/230VAC PF>0.98/115VAC at full load INPUT EFFICIENCY 82.5% typ. 84% typ. 84% typ. Note.1 AC CURRENT 6.3A/115VAC 3.2A/230VAC 9A/115VAC 4.5A/230VAC 13.5A/115VAC...
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■ 1 SLOT Single output (210W) MS-210 OUTPUT VOLTAGE CODE MS-210-1A MS-210-1B MS-210-1C MS-210-1D MS-210-1E MS-210-1F MS-210-1G MS-210-1H MS-210-1I MS-210-1J MS-210-1K DC VOLTAGE 3.3V 7.5V RATED CURRENT 17.5A 11.6A 8.75A 7.8A 6.4A 4.4A CURRENT RANGE 0 ~ 35A 0 ~ 35A 0 ~ 35A 0 ~ 28A 0 ~ 17.5A...
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RC+/RC-: 0 ~ 0.8V or OPEN, POWER ON RC+/RC-: 4 ~ 12V POWER OFF 1. MP450:The value changed by installing different output modules. The efficiency in specification means output modules are composed by following modules. NOTE 5V(Voltage code C)*1, 12V(Voltage code E)*1, 24V(Voltage code H)*1, 5V(Voltage code M)*1.
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