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SC563 Datasheet(PDF) 13 Page - Semtech Corporation |
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SC563 Datasheet(HTML) 13 Page - Semtech Corporation |
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13 / 16 page ![]() SC563 3 Applications Information (continued) Under-Voltage Lockout The Under-Voltage Lockout (UVLO) circuit protects the device from operating in an unknown state if the input voltage supply is too low. When either V IN drops below the UVLO threshold, as defined in the Electrical Characteristics section, the corresponding LDO is disabled. The LDO is re-enabled when V IN is increased above the hysteresis level. When powering up with V IN below the UVLO threshold, the LDO remains disabled. Over-Temperature Protection Over-Temperature protection are separately available on both LDOs. An internal Over-Temperature (OT) protection circuit monitors the internal junction temperature. When the temperature exceeds the OT threshold as defined in the Electrical Characteristics section, the OT protection dis- ables the corresponding LDO output. When the tempera- ture drops below its hysteresis value, the LDO output will resume. Short-Circuit Protection Each output has short-circuit protection with peak current limit and fold back current limit. If the output current exceeds the peak current limit, the output voltage will drop and the output current will be limited to its fold back current limit value. See the waveforms in the typical operation section. If the short circuit is removed or the load current reduces to below the fold back current limit, the LDO output will rise back into regulation. Component Selection SC563 is designed for PCB savings with small area. The recommended input and output capacitor is μF with 0402 package with part number GRM55R6A05kE5. Although there is no maximum value of output capacitor specified, very large values may increase the rise time of the output voltages without affecting stability. It is recommended that the value of output capacitance be restricted to a maximum of 0μF. Ceramic capacitors of type X5R or X7R should be used because of their low ESR and stable temperature coefficients. Tantalum capacitors and Y5V capacitors are not recommended. Thermal Considerations Although each of the two LDOs in the SC563 can provide 300mA of output current, the maximum power dissipation in the device is restricted by the miniature package size. The graphs in Figures 2 can be used as a guideline to determine whether the input voltage, output voltages, output currents, and ambient temperature of the system result in power dissipation within the operating limits are met or if further thermal relief is required. 0 0.5 1 1.5 2 2.5 -50 -35 -20 -5 10 25 40 55 70 85 100 Ambient Temperature (C) TJ=150°C TJ=125°C TJ=105°C Figure 2 — Maximum P D vs. TA The following procedure can be followed to determine if the thermal design of the system is adequate. The junc- tion temperature of the SC563 can be determined in known operating conditions using the following equation: T J = TA +(PD x θJA) where T J = Junction Temperature (°C) T A = Ambient Temperature (°C) P D = Power Dissipation (W) θ JA = Thermal Resistance Junction to Ambient (°C/W) |
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