Delta Electronics H48SV manual Features Descriptions Con, Output Voltage Adjustment TRIM

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FEATURES DESCRIPTIONS (CON.)

FEATURES DESCRIPTIONS (CON.)

Output Voltage Adjustment (TRIM)

To increase or decrease the output voltage set point, the modules may be connected with an external resistor between the TRIM pin and either the SENSE(+) or SENSE(-). The TRIM pin should be left open if this feature is not used.

Figure 18: Circuit configuration for trim-down (decrease output voltage)

If the external resistor is connected between the TRIM and SENSE (-) pins, the output voltage set point decreases (Fig. 22). The external resistor value required to obtain a percentage of output voltage change % is defined as:

Rtrim down = 2Vo (1 ) - Vo (K) 5 Vo (1 )

Ex. When Trim-down -20%(5.0V×0.8=4V)

Rtrim down = 2 × 5 (1 0.2) - 5 = 3(K) 5 5 (1 0.2 )

DS_H48SV05030_08102007

Figure 19: Circuit configuration for trim-up (increase output voltage)

If the external resistor is connected between the TRIM and SENSE (+) the output voltage set point increases (Fig. 23). The external resistor value required to obtain a percentage output voltage change % is defined as:

Rtrim up = 2Vo (1 + ) + Vo (K)

Vo (1 + ) - Vo

Ex. When Trim-up +10%(5.0V×1.1=5.5V)

Rtrim up = 2 × 5 (1 + 0.1 ) + 5 = 32 (K) 5 (1 + 0.1 ) - 5

The output voltage can be increased by both the remote sense and the trim, however the maximum increase is the larger of either the remote sense or the trim, not the sum of both.

When using remote sense and trim, the output voltage of the module is usually increased, which increases the power output of the module with the same output current.

Care should be taken to ensure that the maximum output power of the module remains at or below the maximum rated power.

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Contents APPLICATIONS FEATURESOPTIONS DATASHEET DSH48SV0503004262006OUTPUT CHARACTERISTICS TECHNICAL SPECIFICATIONSINPUT CHARACTERISTICS DYNAMIC CHARACTERISTICSELECTRICAL CHARACTERISTICS CURVES For Negative Remote On/Off Logic For Positive Remote On/Off LogicFigure 8 Output voltage response to step-change in load current 50%-75%-50% of Imax dI/dt = 0.1A/µs.Vin=48V. Load cap 10µF, tantalum capacitor and 1µF ceramic capacitor. Top trace Vout 100mV/div, Bottom trace Iout 10A/div. Scope measurement should be made using a BNC cable length shorter than 20 inch. Position the load between 51 mm and 76 mm 2 inches and 3 inches from the module Figure 13 Output voltage noise and ripple measurement test setup Figure 14 Output voltage ripple at nominal input voltage Vin=48V and rated load current Io=30A 20 mV/div. Load capacitance 1µF ceramic capacitor and 10µF tantalum capacitor. Bandwidth 20 MHz. Scope measurement should be made using a BNC cable length shorter than 20 inches. Position the load between 51 mm and 76 mm 2 inches and 3 inches from the module DESIGN CONSIDERATIONS Safety ConsiderationsSoldering and Cleaning Considerations Input Source ImpedanceOver-Voltage Protection FEATURES DESCRIPTIONSOver-Current Protection Over-Temperature ProtectionFEATURES DESCRIPTIONS CON Output Voltage Adjustment TRIMTHERMAL CURVES Thermal Testing SetupTHERMAL CONSIDERATIONS Thermal DeratingName Pin SpecificationMECHANICAL DRAWING FunctionMODEL LIST WARRANTYPART NUMBERING SYSTEM EFF @ 100% LOAD