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ACE701 데이터시트(PDF) 4 Page - ACE Technology Co., LTD. |
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ACE701 데이터시트(HTML) 4 Page - ACE Technology Co., LTD. |
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4 / 13 page ![]() ACE701 Technology PFM STEP-UP DC/DC Converter with High Efficiency and Low Noise VER 1.2 4 LX leakage current ILXleak Vout=Vlx=6V 1.0 uA CE “H” threshold voltage VCEH VCE: 0 2V 0.6 0.9 V CE “L” threshold voltage VCEL VCE: 2 0V 0.3 0.6 V Oscillator frequency FOSC LX on “L” side Vout=Vout * 0.96 300 350 400 Khz Oscillator duty cycle Maxdty On (Vlx “L”) side 70 75 80 % Efficiency η 85 % Note : 1. Diode: Schottky type, such as: 1N5817, 1N5819, 1N5822 2. Inductor: 27uH(R<0.5Ω) 3. Capacitor: 100uF (Tantalum type) Typical Application Circuit D 1N5819 Vin Vout L 27uH LX LX OUT Iout Cin 47uF ACE701 GND Cout Rload 100uF Tan Detailed Description The ACE701 series are boost structure, voltage-type pulse-frequency modulation(PFM) step-up DC-DC converter. Only three external components are necessary: an inductor, an output filter capacitor and a schottky diode. And the converter’s low noise and low ripple output voltage can be adjusted from 2.5V to 5.0V, 0.1V step. By using the depletion technics, the quiescent current drawn from power source is lower than 7uA. The high efficiency device consists of resistors for output voltage detection and trimming, a start-up voltage circuit, an oscillator, a reference circuit, a PFM control circuit, a switch protection circuit and a driver transistor. The PFM control circuit is the core of the ACE701 IC. This block controls power switch on duty cycle to stabilize output voltage by calculating results of other blocks which sense input voltage, output voltage, output current and load conditions. In PFM modulation system, the frequency and pulse width is fixed. The duty cycle is adjusted by skipping pulses, so that switch on-time is changed based on the conditions such as input voltage, output current and load. The oscillate block inside ACE701 provides fixed frequency and pulse width wave. The reference circuit provides stable reference voltage to output stable output voltage. Because internal trimming technology is used, The chip output change less than ±2%. At the same time,the problem of temperature-drift coefficient of output voltage is considered in design, so temperature-drift coefficient of output voltage is less than 100ppm/℃。 |
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