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SC104 датащи(PDF) 8 Page - Semtech Corporation |
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SC104 датащи(HTML) 8 Page - Semtech Corporation |
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8 / 12 page ![]() 8 2005 Semtech Corp. www.semtech.com SC104 POWER MANAGEMENT Applications Information (Cont.) Step 8: (Cont.) inductor current ramps beyond the current limit trip point. Since I LIM increases as RLIM decreases, this value is a maximum. The maximum current limit resistor, R LIM(C), for continuous mode is therefore: () − • − • = ) C ( ) SAT ( CE IN plh ) C ( LIM ) MIN ( ) MIN ( LIM ) C ( LIM L V V t I Ratio V R Where: V LIM(MIN) = the minimum value of the current limit voltage reference = 385mV Ratio (MIN) = the minimum value of the ILX to ILIM ratio = 7100 A/A t plh = propagation delay from reaching the current limit trip point to the power switch turning off = 200ns Selecting the calculated value or the next lower standard value is recommended. Component Selection - General Capacitor Selection: the SC104 has been designed to be used with ceramic input and output capacitors. The input to the device should be bypassed using a 4.7µF ceramic capacitor rated for the maximum input voltage. The output capacitor should be a ceramic capacitor in the range of 0.22µF to 1µF. Care should be taken that the voltage rating of this capacitor meets the output voltage requriements, and if the part is going to be run open circuit during assembly testing using the OVP feature, then the capacitor should be rated 50V. Schottky diode: any schottky diode rated for the average and peak currents being seen in the circuit will suffice. However a higher current rated schottky diode will result in lower forward voltage drops and hence higher efficiency. The selection of the schottky will depend upon the optimum choice between efficiency, board space, and cost. Inductor: similarly, any inductor rated for the average and peak currents required by the design and capable of operating at the fixed off-time of 760ns will suffice, but inductors with lower series resistance will result in lower losses. The selection of the inductor will depend upon the optimum choice between efficiency, board space, com- ponent height, and cost. Toko D62LCB and D63LCB se- ries work very well. LED Dimming Dimming the LEDs (i.e. reducing the output current from the set level to reduce brightness) can be achieved a couple of ways: 1) PWMing the ADJ pin using an open drain or open collector (with no pull-up). Using a PWM signal at this pin will reduce the output current by alternating between OFF (ADJ < 100mV) and switching normally. The lower the duty cycle, the lower the output current. A PWM frequency of 1kHz maximum is recommended. 2) analog voltage applied to the ADJ pin: apply a DC voltage between 0V to 0.1V (OFF) and 1V (full current) to the ADJ pin. This pin should not be pulled above 1V under normal operation, and should never exceed the absolute maximum rating. Using a DC voltage will result in the modulation frequency of the inductor current ramp reducing and care must be taken to ensure that this does not become audible in sensitive applications. |
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