SSI America EPS2U Protection Circuits, Current Limit, 240VA Protection, Over Current Protection

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SSI

EPS2U Power Supply Design Guide, V2.1

7Protection Circuits

STATUS

Required

Protection circuits inside the power supply shall cause only the power supply’s main outputs to shutdown. If the power supply latches off due to a protection circuit tripping, an AC cycle OFF for 15 s and a PSON# cycle HIGH for 1 s must be able to reset the power supply.

7.1Current Limit

STATUS

Required

The power supply shall have current limit to prevent the +3.3 V, +5 V, and +12 V outputs from exceeding the values shown in Table 25. If the current limits are exceeded, the power supply shall shutdown and latch off. The latch will be cleared by toggling the PSON# signal or by an AC power interruption. The power supply shall not be damaged from repeated power cycling in this condition. -12 V and 5 VSB shall be protected under over current or shorted conditions so that no damage can occur to the power supply.

Table 25: Over Current Protection

Voltage

Over Current Limit (Iout limit)

+3.3 V

110% minimum; 150% maximum

 

 

+5 V

110% minimum; 150% maximum

 

 

+12V

110% minimum; 150% maximum

 

 

7.2240VA Protection

STATUS

Recommended

System designs may require user access to energized areas of the system. In these cases the power supply may be required to meet regulatory 240VA limits for any power rail. Since the +12V rail combined power exceeds 240VA it must be divided into separate channels to meet this requirement. Each separate rail needs to be limited to less than 20A for each +12V rail. The separate +12V rails do not necessarily need to be independently regulated outputs. They can share a common power conversion stage. For common plane systems, the +12V rail is divided into either two or three rails. For split plane systems, the +12V rail is split into four rails. Refer to section 6.4 for how the 12V rail is split between different output connectors.

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Contents SSI Disclaimer Contents Figures TablesPurpose Conceptual OverviewDefinitions/Terms/Acronyms RequiredMechanical Overview Required OptionalTemperature Requirements Airflow RequirementsRecommended Thermal RequirementsAC Inlet Connector AC Input Voltage SpecificationAC Input Requirements EfficiencyAC Line Transient Specification AC Line DropoutAC Line Fuse AC InrushAC Line Fast Transient Specification AC Line Sag Transient PerformanceAC Line Surge Transient Performance AC Line SurgeDC Output Specification Output Connectors1 12V Power Rail Configurations 12V Rail SummaryBaseboard power connector P1 Baseboard Power Connector Common PlanePin Signal AWG Color P1 Baseboard Power Connector Split PlaneProcessor Power Connector Processor Power Connector Common PlaneProcessor Power Connector Split Plane Peripheral Power Connectors Floppy Power ConnectorServer Signal Connector Peripheral Power ConnectorsServer Signal Connector GroundingRemote Sense Output Power/Currents 480 W Load Ratings Common PlaneVoltage Minimum Continuous Maximum Continuous Peak 550 W Load Ratings Split PlaneStandby Outputs 600 W Load Ratings Split Plane650 W Load Ratings Split Plane Voltage Regulation Voltage Regulation LimitsParameter Units ToleranceDynamic Loading Capacitive LoadingTransient Load Requirements Capacitve Loading ConditionsRipple / Noise Timing RequirementsRipple and Noise Output Voltage TimingOutput Voltage Timing Turn On/Off Timing Turn On/Off Timing Single Power Supply Recommended DescriptionProtection Circuits Current Limit240VA Protection Over Current ProtectionOver Temperature Protection Over Voltage ProtectionOver Voltage Limits Output VoltageControl and Indicator Functions Pson # Signal Characteristic Signal TypePwok delay PSON#Pwok Power OK Field Replacement Unit FRU SignalsPwok Signal Characteristics FRU DataFRU Data Format Product Info AreaFRU Device Information FRU Device Product Information AreaMultiRecord Area Field Name PS Info Field Information DefinitionMtbf Agency Requirements