Intel ATX12V manual Output Protection, Over-voltage Protection, Short-circuit Protection

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ATX12V Power Supply Design Guide

Version 2.0

3.4. Output Protection

3.4.1. Over-voltage Protection

The over-voltage sense circuitry and reference shall reside in packages that are separate and distinct from the regulator control circuitry and reference. No single point fault shall be able to cause a sustained over-voltage condition on any or all outputs. The supply shall provide latch-mode over-voltage protection as defined in Table 15.

Table 15. Overvoltage Protection

Output

Min.

Nom.

Max.

Unit

 

 

 

 

 

+12 V1DC & +12V2DC

13.4

15.0

15.6

Volts

 

 

 

 

 

+5 VDC

5.74

6.3

7.0

Volts

 

 

 

 

 

+3.3 VDC

3.76

4.2

4.3

Volts

 

 

 

 

 

3.4.2. Short-circuit Protection

An output short circuit is defined as any output impedance of less than 0.1 ohms. The power supply shall shut down and latch off for shorting the +3.3 VDC, +5 VDC, or

+12 VDC rails to return or any other rail. The +12 V1DC and +12V2DC should have separate short circuit and overload protection. Shorts between main output rails and +5 VSB shall not cause any damage to the power supply. The power supply shall either shut down and latch off or fold back for shorting the negative rails. +5 VSB must be capable of being shorted indefinitely, but when the short is removed, the power supply shall recover automatically or by cycling PS_ON#. The power supply shall be capable of withstanding a continuous short-circuit to the output without damage or overstress to the unit (for example, to components, PCB traces, connectors) under the input conditions specified in Section 3.1. The maximum short-circuit energy in any output shall not exceed 240 VA, per IEC 60950 requirements.

3.4.3. No-load Operation

No damage or hazardous condition should occur with all the DC output connectors disconnected from the load. The power supply may latch into the shutdown state.

3.4.4. Over-current Protection

Overload currents applied to each tested output rail will cause the output to trip before reaching or exceeding 240 VA. For testing purposes, the overload currents should be ramped at a minimum rate of 10 A/s starting from full load.

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Contents ATX12V VersionImportant Information and Disclaimers Contents Environmental SafetyMechanical Electromagnetic CompatibilityFigures TablesIncreased +12 VDC output capability IntroductionScope Minimum EfficiencyTerminology Main Power ConnectorSeparate current limit for 12V2 on the 2x2 connector Description Applicable DocumentsDocument Title Input Over-current Protection ElectricalAC Input Inrush Current LimitingOther Certifications and/or Declarations Input Under-voltageRegulatory DC Voltage Regulation DC OutputCatastrophic Failure Protection DC Output Voltage RegulationTypical Power Distribution Remote SensingMin Max Power12V power watts Current Output AmpsTypical Power Distribution for a 300 W ATX12V Configuration Cross Loading Graph for 300W ConfigurationTypical Power Distribution for a 350 W ATX12V Configuration Cross Loading Graph for 350W ConfigurationTypical Power Distribution for a 400 W ATX12V Configuration Min Max Peak Current Output AmpsGeneral Power Limit / Hazardous Energy LevelsEfficiency Minimum Efficiency Vs LoadLoading Table for Efficiency Measurements Output Ripple/Noise Energy Star Input Power ConsumptionOther Low Power System Requirements Energy StarDC Output Noise/Ripple Max. Ripple & Noise MVppDC Output Transient Step Sizes Output Transient ResponseCapacitive Load Output Capacitive LoadsClosed-loop Stability 10. +5 VDC / +3.3 VDC Power SequencingTiming / Housekeeping / Control Voltage Hold-up TimePSON# Pwrok Signal CharacteristicsPwrok PSON# Signal Characteristics 3. +5 VSB8. +5 VSB at AC Power-down Power-on TimeReset after Shutdown RisetimeShort-circuit Protection Output ProtectionOver-voltage Protection No-load OperationOver-temperature Protection Output BypassLabeling / Marking Physical DimensionsMechanical Second optional fan may go in this location Second optional Airflow / Fan AC Connector DC Connectors+12V1 +5V +33V 12V+5V ATX Main Power Connector Pin Signal ColorConnector Molex 39-01-2040 or equivalent 2. +12 V Power ConnectorPeripheral Connectors Pin Signal AWG WireWire Signal Serial ATA Power ConnectorFloppy Drive Connector Connector AMP 171822-4 or equivalent Pin Signal AWG WireThermal Shock Shipping TemperatureEnvironmental HumidityAcoustics Mechanical ShockRandom Vibration Immunity Electromagnetic CompatibilityEmissions Harmonic Limits, Class D Equipment Input Line Current Harmonic Content and Line FlickerMagnetic Leakage Fields Reliability Component De-ratingSafety North AmericaInternational Proscribed Materials