Tuniq Potency 750 W Power Supply Review

Primary Analysis

On this page we will take an in-depth look at the primary stage of Tuniq Potency 750 W. For a better understanding, please read our Anatomy of Switching Power Supplies tutorial.

This power supply uses one TS15P05G rectifying bridge in its primary, supporting up to 15 A at 110° C, so in theory, you would be able to pull up to 1,725 W from the power grid; assuming 80% efficiency, the bridge would allow this unit to deliver up to 1,380 W without burning itself out. Of course, we are only talking about these components, and the real limit will depend on all the other components in this power supply.

Tuniq Potency 750 W power supplyFigure 9: Rectifying bridge.

The active PFC circuit uses two SPW20N60C3 power MOSFET transistors, each one capable of delivering up to 20.7 A at 25° C or 13.1 A at 100° C in continuous mode (note the difference temperature makes) or 62.1 A in pulse mode at 25° C. These transistors present a 190 mΩ resistance when turned on, a characteristic called RDS(on). The lower this number the better, meaning that the transistors will waste less power and the power supply will ac
hieve a higher efficiency.

Tuniq Potency 750 W power supplyFigure 10: Active PFC transistors.

The electrolytic capacitor in charge of filtering the output of the active PFC circuit is from CEC, a company from Hong Kong with manufacturing facilities in mainland China, labeled at 85° C.

In the switching section, another two SPW20N60C3 power MOSFET transistors are used, and the specs for them we’ve already published above.

Tuniq Potency 750 W power supplyFigure 11: Switching transistors.

The primary is controlled by the omnipresent CM6800 PWM/PFC combo controller.

Tuniq Potency 750 W power supplyFigure 12: Active PFC/PWM combo controller.

Now let’s take a look at the secondary of this power supply.

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