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150W PFC Function Power Supply

  • Product Overview
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  • 1.Features
    1. Universal AC input / Full range                    
    2. Built-in active PFC function, PF>0.93      
    3. Protections: Short circuit / Overload / Over voltage / Over temperature                  
    4. Built-in constant current limiting circuit          
    5. Remote ON-OFF control(Optional) 
    6. LED indicator for power on 
    7. 100% full load burn-in test 
    8. Fixed switching frequency at PFC:67KHz PWM:134KHz 
    9. 2 years warranty

    2. Specification

    Model
    Specification
    SP-150-3.3
    SP-150-5
    SP-150-7.5
    SP-150-12
    SP-150-13.5
    SP-150-15
    SP-150-24
    SP-150-27
    SP-150-48
    DC Output Voltage
    3.3V
    5V
    7.5V
    12V
    13.5V
    15V
    24V
    27V
    48V
    Iutput Voltage Error
    ± 2%
    ± 2%
    ± 2%
    ± 2%
    ± 2%
    ± 2%
    ± 1%
    ± 1%
    ± 1%
    Rated Output Current
    30A
    30A
    20A
    12.5A
    11.2A
    10A
    6.3A
    5.6A
    3.2A
    Output Current Range
    0-30A
    0-30A
    0-20A
    0-12.5A
    0-11.2A
    0-10A
    0-6.3A
    0-5.6A
    0-3.2A
    Tripple and Noise
    100mVp-p
    100mVp-p
    100mVp-p
    100mVp-p
    100mVp-p
    100mVp-p
    150mVp-p
    150mVp-p
    250mVp-p
    Iniet Stability
    ± 0.5%
    ± 0.5%
    ± 0.5%
    ± 0.5%
    ± 0.5%
    ± 0.5%
    ± 0.5%
    ± 0.5%
    ± 0.5%
    Tolerance Voltage
    ± 1%
    ± 1%
    ± 1%
    ± 0.5%
    ± 0.5%
    ± 0.5%
    ± 0.5%
    ± 0.5%
    ± 0.5%
    DC Output Power
    99 W
    150W
    150W
    150W
    151.2W
    150W
    151.2W
    151.2W
    153.6W
    Efficiency
    67%
    75%
    79%
    80%
    83%
    81%
    83%
    84%
    84%
    Adjustable Range for DC Voltage
    3.14 ~ 3.63V
    4.75 ~ 5.5V
    7.13 ~ 8.25V
    11.4 ~ 13.2V
    12.8 ~ 14.9V
    14.3 ~ 16.5V
    22.8 ~ 26.4V
    25.7 ~ 29.7V
    45.6 ~ 52.8V
    AC Input Voltage Range
    85 ~ 264VAC 120 ~ 370VDC 47-63HZ
    Power factor 
    PF>0.93/230VAC PF>0.98/115VAC at full load
    Input Current
    2.5A/115V    1.2A/230V
    AC Inrush Current
    Cold-Start Current: 40A/230V
    Leakage Current
    <2mA/240VAC
    Overload Protection
    105%~150%  rated output power ,Protection type : Constant current limiting, recovers automatically after fault condition is removed
    Over Voltage Protection
    3.8-4.46V
    5.75-6.75V
    8.63-10.13V
    13.8-16.2V
    15.53-18.2V
    17.25-20.25V
    27.6-32.4V
    31.05-36.45V
    55.2-64.8V
    Protection type : Shut down o/p voltage, re-power on to recover
    REMOTE CONTROL(OPTION)
    CN1:4 ~ 10VDC POWER ON, <0 ~ 0.8VDC POWER OFF
    Temperature Coefficient
    ±0.05%/℃ (0 ~ 50℃)
    Start, Rise, Hold time
    600ms, 30ms at full load ,hold time:20ms at full load
    Vibration
    10 ~ 500Hz, 2G 10min./1cycle, 60min. each along X, Y, Z axes
    Withstand Voltage
    I/P-O/P:3KVAC I/P-FG:2KVAC O/P-FG:0.5KVAC
    Isolation Resistance
    I/P-O/P, I/P-FG, O/P-FG:100M Ohms / 500VDC / 25℃/ 70% RH
    Working Temperature and Humidity
    .-10~+60℃ (Refer to "Derating Curve"), 20 ~ 90% RH non-condensing
    Storage Temperature and Humidity
    `-20℃~+85℃, 10%~95%RH
    Overall Dimension
    199*95*50mm
    MTBF
    191.2k hrs min.
    Safety Standards
    CE
    EMC Standards
    Compliance to EN61000-4-2,3,4,5,6,8,11, EN55024, light industry level, criteria A

    3. Mechanical Dimension


    4.Block Diagram

    5.Derating Curve

    6.Output Derating VS Input Voltage

    7. Please Note

    1. All parameters NOT specially mentioned are measured at 230VAC input, rated load and 25℃ of ambient temperature.
    2. Ripple & noise are measured at 20MHz of bandwidth by using a 12" twisted pair-wire terminated with a 0.1uf & 47uf parallel capacitor.
    3. Tolerance : includes set up tolerance, line regulation and load regulation.
    4. The power supply is considered a component which will be installed into a final equipment. The final equipment must be re-confirmed that it still meets EMC directives. For guidance on how to perform these EMC tests, please refer to “EMI testing of component power supplies.”
    5. Derating may be needed under low input voltages. Please check the derating curve for more details.






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