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Home » Power
PC Power & Cooling Silencer 910 Power Supply Review
Author: Gabriel Torres
Type: Reviews Last Updated: July 24, 2009
Page: 5 of 10
Real-time pricing for OCZ PPCS910.
OCZ PC Power and Cooling Silencer 910W High Performance 80PLUS Silver SLI CrossFire ready Supply compatible with Intel Sandy Bridge Core i3 i5 i7 AMD Phenom PPCS910 PCPPCS910 Computers & Accessories 80PL
Amazon: $149.99 TigerDirect: $232.99
Newegg: $149.99 CompUSA: $232.99

Secondary Analysis
Hardware Secrets Golden Award

This power supply uses eight SBR40S45CT Schottky rectifiers on its secondary and each one is capable of handling up to 40 A (20 A per internal diode at 110º C). All rectifiers are in charge of producing the +12 V output, with +5 V and +3.3 V being generated from the +12 V output using a DC-DC converter (i.e., a small switching power supply) located on a small printed circuit board. As mentioned this design is also used by other power supply series like TruePower New and Signature from Antec, M12D from Seasonic, UCP from Cooler Master and HX (750 W and above) from Corsair.

Three of the rectifiers are in charge of the direct rectification, while the remaining five are in charge of the “freewheeling” part of the rectification process (i.e., discharging the coil).

The maximum theoretical current each line can deliver is given by the formula I / (1 - D), where D is the duty cycle used and I is the maximum current supported by the rectifying diode. Just as an exercise, we can assume a typical duty cycle of 30%.

For our math we need to assume the path that has the lower limit, which is the direct rectification path. This would give us a maximum theoretical current of 171 A (40 A x 3 / 0.70). This maximum theoretical current limit is for the whole secondary, since +5 V and +3.3 V are also produced from the +12 V output. The practical limit will depend on other factors, but mainly on the coils used and on the design from the small DC-DC converter used to generate the +5 V and +3.3 V outputs. If this 171 A was solely pulled from the +12 V outputs, this would give us 2,052 W.

PC Power & Cooling Silencer 910 power supply
click to enlarge
Figure 13: Rectifiers.

The DC-DC converter uses solid aluminum caps and two APW7073 controllers, one for each output, with seven APM2556N MOSFETs, which present a maximum RDS(on) of only 7.2 mΩ.

PC Power & Cooling Silencer 910 power supply
click to enlarge
Figure 14: DC-DC converter in charge of generating +5 V and +3.3 V outputs from the +12 V output.

PC Power & Cooling Silencer 910 power supply
click to enlarge
Figure 15: DC-DC converter in charge of generating +5 V and +3.3 V outputs from the +12 V output.

This power supply uses a PS223 monitoring integrated circuit, which is in charge of the power supply protections, like OCP (over current protection), over voltage protection (OVP), under voltage protection (UVP) and over temperature protection (OTP, not implemented on this unit).

PC Power & Cooling Silencer 910 power supply
click to enlarge
Figure 16: Monitoring circuit.

Electrolytic capacitors from the secondary are also Japanese, from Chemi-Con and labeled at 105º C.

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