Delta Electronics F48SA manual Electrical Characteristics Curves

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Figure 7: Output voltage response to step-change in load

ELECTRICAL CHARACTERISTICS CURVES

Figure 7: Output voltage response to step-change in load

current (75%-50% of Io, max; di/dt = 1A/µs). Load cap: 470µF aluminum ,10uF Low ESR capacitor and 1µF ceramic capacitor. Top Trace: Vout (200mV/div), Bottom Trace: Iout (10A/div). Scope measurement should be made using a BNC cable (length shorter than 20 inches). Position the load between 51 mm to 76 mm (2 inches to 3 inches) from the module.

Figure 8: Output voltage response to step-change in load

current (50%-75% of Io, max; di/dt = 1A/µs). Load cap: 470µF aluminum,10uF Low ESR capacitor and 1µF ceramic capacitor. Top Trace: Vout (200mV/div), Bottom Trace: Iout (10A/div). Scope measurement should be made using a BNC cable (length shorter than 20 inches). Position the load between 51 mm to 76 mm (2 inches to 3 inches) from the module.

Figure 9: Test set-up diagram showing measurement points for Input Terminal Ripple Current and Input Reflected Ripple Current.

Note: Measured input reflected-ripple current with a simulated source Inductance (LTEST) of 15 μH. Capacitor Cs offset possible battery impedance. Measure current as shown above.

DS_F48SA28025_12072007

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Contents OPTIONS FEATURESAPPLICATIONS DATASHEET DSF48SA2802512072007INPUT CHARACTERISTICS TECHNICAL SPECIFICATIONSOUTPUT CHARACTERISTICS DYNAMIC CHARACTERISTICS36Vin ELECTRICAL CHARACTERISTICS CURVES48Vin 75VinFor Positive Remote On/Off Logic For Negative Remote On/Off LogicFigure 7 Output voltage response to step-change in load Figure 12 Output voltage noise and ripple measurement test setup Figure 13 Output voltage ripple at nominal input voltage and rated load current 100 mV/div. Load capacitance470uF aluminum, 1µF ceramic capacitor and 10µFlow ESR capacitor. Bandwidth 20 MHz. Scope measurement should be made using a BNC cable length shorter than 20 inches. Position the load between 51 mm to 76 mm 2 inches to 3 inches from the module Soldering and Cleaning Considerations Safety ConsiderationsDESIGN CONSIDERATIONS Input Source ImpedanceOver-Current Protection FEATURES DESCRIPTIONSOver-Voltage Protection Over-Temperature ProtectionOutput Voltage Adjustment TRIM FEATURES DESCRIPTIONS CONTHERMAL CONSIDERATIONS Thermal Testing SetupTHERMAL CURVES Thermal DeratingMECHANICAL DRAWING Pin SpecificationPin No NamePART NUMBERING SYSTEM WARRANTYMODEL LIST MODEL NAME