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LT3752 Datasheet(PDF) 29 Page - Analog Devices |
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LT3752 Datasheet(HTML) 29 Page - Analog Devices |
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29 / 52 page ![]() LT3752/LT3752-1 29 Rev. C For more information www.analog.com APPLICATIONS INFORMATION stops immediately and the SS1/SS2 pins are rapidly discharged. The absence of switching reduces the sense voltage at the OC pin, allowing SS1/SS2 pins to recharge and eventually attempt switching again. The part exists in this hiccup mode as long as the overcurrent condition exists. This protects the converter and reduces power dissipation in the components (see Hard Stop in the Applications Information section). The 96mV peak switch current threshold is independent of the voltage drop in RISLP used for slope compensation. Output DC load current to trigger hiccup mode: LOAD(OVERCURRENT) = NP NS • 96mV RISENSE – 1/2 IRIPPLE(P-P) ( ) where: NP = forward transformer primary turns NS = forward transformer secondary turns IRIPPLE(P-P) = Output inductor peak-to-peak ripple current RISENSEshouldbeprogrammedtoallowmaximumDCload current for the application plus enough margin during load transients to avoid overcurrent hiccup mode. Programming Maximum Duty Cycle Clamp: DVSEC (Volt-Second Clamp) Unlike other converters which only provide a fixed maxi- mum duty cycle clamp, the LT3752/LT3752-1 provide an accurate programmable maximum duty cycle clamp (DVSEC) on the OUT pin which moves inversely with system input. DVSEC provides a duty cycle guardrail to limit the volt-seconds-on product over the entire natural duty cycle range (Figures 11 and 12). This limits the drain voltage required for complete transformer reset. A resistor RIVSEC from the IVSEC pin to analog ground (Pin 18) programs DVSEC. DVSEC (OUT pin duty cycle clamp) = 0.725 • RIVSEC 51.1k • fOSC 300 • 1.25 UVLO_VSEC where: RIVSEC = programming resistor at IVSEC pin fOSC = switching frequency (kHz) UVLO_VSEC = resistor divided system input voltage RIVSEC can program any DVSEC required at minimum system input. DVSEC will then follow natural duty cycle as VIN varies. Maximum programmable DVSEC is typi- Figure 11. Volt-Second (DVSEC) Clamp 3752 F12 R1 R2 UVLO_VSEC TO OVLO PIN R3 RIVSEC SYSTEM INPUT LT3752/LT3752-1 IVSEC RT RT Figure 12. Programming DVSEC tON_VSEC tON OUT t D = tON/t 3752 F11 (PROGRAMMED BY RIVSEC) DVSEC = tON_VSEC/t DVSEC = “DUTY CYCLE GUARDRAIL” |
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