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ILC6380 데이터시트(PDF) 2 Page - Impala Linear Corporation |
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ILC6380 데이터시트(HTML) 2 Page - Impala Linear Corporation |
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2 / 6 page ![]() SOT-89 Step-up Dual-Mode Switcher with Shutdown Impala Linear Corporation 2 (408) 574-3939 www.impalalinear.com Sept 1999 ILC6380/1 1.4 Parameter Symbol Ratings Units VOUT Input Voltage VOUT 12 V Voltage on pin LX VLX 12 V Current on pin LX ILX 400 mA Voltage on pin EXT VEXT VSS-0.3~VOUT+0.3 V Current on pin EXT IEXT ±50 mA CE Input Voltage VCE 12 V Continuous Total Power Dissipation PD 500 mW Operating Ambient Temperature TOPR -30~+80 °C Storage Temperature TSTG -40~+125 °C Stresses above those listed under ABSOLUTE MAXIMUM RATINGS may cause permanent device failure. Functionality at or above these limits is not implied. Exposure to absolute maximum ratings for extended periods may affect device reliabil- ity. Operating ranges define those limits between which the functionality of the device is guaranteed. Notes: 1. The Schottky diode (S.D.), in figure 3 must be type MA735, with Reverse current (IR) < 1.0µA at reverse voltage (VR)=10.0V 2. “Supply Current 1” is the supply current while the oscillator is continuously oscillating. In actual operation the oscillator periodically operates which results in less average power consumption. The current that is actually provided by external VIN source is represented by “No-Load Input Current(IIN)” 3. Switching frequency is determined by delay time of internal comparator to turn Lx “off”, and minimum “on” time as determined by MAXDTY spec. Parameter Symbol Conditions Min Typ Max Units Output Voltage VOUT 4.875 5.000 5.125 V Input Voltage VIN 10 V Oscillation Startup Voltage VST LX = 10k Ω pull-up to 5V, V OUT = VST 0.8 V Operation Startup Voltage VST1 IOUT = 1mA 0.9 V No-Load Input Current IIN IOUT = 0mA (See Note 1) 23.0 46.0 µA Supply Current 1 (See Note 2) IDD 1 LX = 10k Ω pull-up to 5V, V OUT = 4.5V 78.6 131.1 µA Supply Current 2 IDD 2 LX = 10k Ω pull-up to 5V, V OUT = 5.5V 6.9 13.8 µA LX Switch-On Resistance RSWON LX = 10k Ω pull-up to 5V, V OUT = 4.5V 1.3 2.3 Ω LX Leakage Current ILXL No external components, VOUT = VLX = 10V 1.0 µA Oscillator Freq. FOSC LX = 10k Ω pull-up to 5V, V OUT = 4.5V, Measuring of LX waveform 85 100 115 kHz Maximum Duty Ration MAXDTY LX = 10k Ω pull-up to 5V, V OUT = 4.5V, Measuring of LX on-time 80 87 92 % PFM Duty Ration PFMDTY VIN = 4.75V, Measuring of LX on-time 5 10 20 % Stand-by Current ISTB LX = 10k Ω pull-up to 5V, V OUT =4.5V 0.5 µA CE “High” Voltage VCEH LX = 10k Ω pull-up to 5V, V OUT = 4.5V, Existence of LX Oscillation 0.75 V CE “Low” Voltage VCEL LX = 10k Ω pull-up to 5V, V OUT = 4.5V, Stopped LX Oscillation 0.20 V CE “High” Current ICEH LX = 10k Ω pull-up to 5V, V OUT = VCE = 4.5V 0.25 µA CE “Low” Current ICEL LX = 10k Ω pull-up to 5V, V OUT = 4.5V, VCE = 0V -0.25 µA LX Limit Voltage VLXLMT LX = 10k Ω pull-up to 5V, V OUT = 4.5V, FOSC > FOSC x 2 (See Note 2) 0.7 1.1 V Efficiency EFFI 85 % Slow Start Time TSS 10 msec VOUT = 5.0V, FOSC = 100kHz TA - 25°C. Unless otherwise specified, VIN = VOUT x 0.6, IOUT = 50mA. See schematic, figure 3 Absolute Maximum Ratings (TA = 25°C) Electrical Characteristics |
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