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XC6214P122JR Datasheet(PDF) 4 Page - Torex Semiconductor |
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XC6214P122JR Datasheet(HTML) 4 Page - Torex Semiconductor |
4 / 26 page 4/26 XC6214 Series PARAMETER SYMBOL CONDITIONS MIN. TYP. MAX. UNITS CIRCUIT Output Voltage VOUT(E) (*1) VIN=2.2V, IOUT=50mA 1.170 1.200 1.230 V ① Maximum Output Current IOUTmax VIN=2.25V, VOUT=VOUT(E) ×0.90 500 - - mA ① Load Regulation △VOUT VIN=2.2V, 1mA≦IOUT≦200mA - 20 50 mV ① Dropout Voltage (*2) Vdif IOUT=500mA - 900 1350 mV ① Supply Current ISS VIN=2.5V - 8 15 μA ② IOUT=50mA Line Regulation △VOUT △VIN・VOUT 2.5V≦VIN≦6.0V - 0.05 0.20 % / V ① Input Voltage VIN 1.8 - 6.0 V - Output Voltage IOUT=50mA Temperature Characteristics △VOUT △Topr ・VOUT - 40℃≦ Topr ≦85℃ - ±100 - ppm /℃ ① Short-Circuit Current Ilim VIN=2.2V, VOUT=0V - 50 - mA ① PARAMETER SYMBOL CONDITIONS MIN. TYP. MAX. UNITS CIRCUIT Output Voltage VOUT(E) (*1) VIN=2.5V, IOUT=50mA 1.470 1.500 1.530 V ① Maximum Output Current IOUTmax VIN=2.5V, VOUT=VOUT(E) ×0.90 500 - - mA ① Load Regulation △VOUT VIN=2.5V, 1mA≦IOUT≦200mA - 20 50 mV ① Dropout Voltage (*2) Vdif IOUT=500mA - 800 1200 mV ① Supply Current ISS VIN=2.5V - 8 15 μA ② IOUT=50mA Line Regulation △VOUT △VIN・VOUT 2.5V≦VIN≦6.0V - 0.05 0.20 % / V ① Input Voltage VIN 1.8 - 6.0 V - Output Voltage IOUT=50mA Temperature Characteristics △VOUT △Topr ・VOUT - 40℃≦ Topr ≦85℃ - ±100 - ppm /℃ ① Short-Circuit Current Ilim VIN=2.5V, VOUT=0V - 50 - mA ① ■ELECTRICAL CHARACTERISTICS ●XC6214P152 Ta=25 ℃ NOTE: *1: VOUT(E) : Effective output voltage (i.e. the output voltage when “VOUT(T)+1.0V” is provided at the VIN pin while maintaining a certain IOUT value.) *2: Vdif={VIN1 (*4) -VOUT1(*3) } *3: VOUT1= A voltage equal to 98% of the output voltage whenever an amply stabilized IOUT {VOUT(T)+1.0V} is input. *4: VIN1=The Input Voltage when VOUT1 appears as input voltage is gradually decreased. *5: Unless otherwise stated, {VIN=VOUT(T) +1.0V} ●XC6214P122 Ta=25 ℃ NOTE: *1: VOUT(E) : Effective output voltage (i.e. the output voltage when “VOUT(T)+1.0V” is provided at the VIN pin while maintaining a certain IOUT value.) *2: Vdif={VIN1 (*4) -VOUT1(*3) } *3: VOUT1= A voltage equal to 98% of the output voltage whenever an amply stabilized IOUT {VOUT(T)+1.0V} is input. *4: VIN1=The Input Voltage when VOUT1 appears as input voltage is gradually decreased. *5: Unless otherwise stated, {VIN=VOUT(T) +1.0V} |
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