Voltage Regulated Module Radiator and Fan heatsink
Voltage Regulated Module Radiator and Fan heatsink
Voltage Regulated Module Radiator and Fan heatsink

Voltage Regulated Module Radiator and Fan heatsink

Price:   $29.21

  • Model: ic0A1377
  • Shipping Weight: 0.2kg
  • 9999 Units in Stock

(0 reviews)
(complete orders today,deliverd around 18/04/2025)
  • Shipping time
    Shipping Worldwide.About 5-15 days.
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    Condition:New
    Type:Logic ICs


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    This radiator has various models and is used for various modules.



    The following configuration is the standard configuration of our radiator/fan. If you don't know which type of heatsink to use, please find the model of your choice in the list below, and select the radiator specifications of the corresponding specifications to purchase.

































































    Single-phase fully isolated integrated AC voltage regulator module




    Three-phase fully isolated integrated AC voltage regulator module




    LSA-H3P15YB




    80*100*110 or no




    LSA-TH3P15Y




    80*100*110or no




    LSA-H3P25YB




    80*100*110or no




    LSA-TH3P25Y




    80*100*110




    LSA-H3P40YB




    80*100*110




    LSA-TH3P35Y




    80*100*110+fan




    LSA-H3P50YB




    80*100*110




    LSA-TH3P50Y




    80*100*130+fan




    LSA-H3P70YB




    80*100*110




    LSA-TH3P70Y




    80*100*150+fan




    LSA-H3P90YB




    80*100*110+fan




    LSA-TH3P90Y




    96*100*150+fan




    LSA-H3P120YB




    80*100*130+fan




    LSA-TH3P120Y




    96*100*180+fan




    LSA-H3P150YB




    80*100*130+fan




    LSA-TH3P150Y




    125*135*130+fan




    LSA-H3P200YB




    80*100*150+fan




    LSA-TH3P200Y




    125*135*150+fan





































































    Single-phase integrated rectifier voltage regulator module




    Three-phase integrated rectifier voltage regulator module




    LSC-H3P15FYB




    80*100*110or no




    LSC-TH3P15FY




    80*100*110




    LSC-H3P25FYB




    80*100*110or no




    LSC-TH3P25FY




    80*100*110




    LSC-H3P35FYB




    80*100*110or no




    LSC-TH3P35FY




    80*100*110+fan




    LSC-H3P50FYB




    80*100*110




    LSC-TH3P50FY




    80*100*130+fan




    LSC-H3P70FYB




    80*100*130




    LSC-TH3P70FY




    80*100*150+fan




    LSC-H3P90FYB




    80*100*130+fan




    LSC-TH3P90FY




    96*100*150+fan




    LSC-H3P120FYB




    80*100*150+fan




    LSC-TH3P120FY




    96*100*180+fan




    LSC-H3P150FYB




    80*100*150+fan




    LSC-TH3P150FY




    125*135*130+fan




    LSC-H3P200FYB




    80*100*150+fan




    LSC-TH3P200FY




    125*135*150+fan







    The heat dissipation condition of the module is directly related to the service life and short-term overload capability of the product. The lower the temperature, the greater the output current capability of the module. Therefore, the radiator and the fan must be equipped in use, and the water-cooling heat dissipation condition is preferred. . After rigorous calculation, we have determined the types of radiators that should be equipped with different types of products. It is recommended to use radiators and fans that are supplied by our manufacturers. Users should choose the following principles when they prepare themselves:






    1. The wind speed of the axial fan should be greater than 6m/s;



    2. It must be ensured that the temperature of the heat sink bottom plate is not more than 70 °C when the module is working normally;



    3. When the module load is light, the size of the heat sink can be reduced or natural cooling can be adopted;



    4. When the natural way is used for cooling, the air around the radiator can achieve convection and increase the radiator area appropriately;



    5. All the screws of the fastening module must be tightened, and the crimping terminal is firmly connected to reduce the generation of secondary heat. A layer of thermal grease or a thermal pad on the bottom of the module must be applied between the module bottom plate and the heat sink. To achieve the desired heat dissipation effect.






    The heat sink plays a vital role in the use of the module. When selecting the type, the size of the module cannot be selected. If the size is small, the performance of the module will be degraded, but it does not need to be too large. If it is selected, it will cause cost waste.