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XC6227 датащи(PDF) 4 Page - Torex Semiconductor |
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XC6227 датащи(HTML) 4 Page - Torex Semiconductor |
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4 / 25 page ![]() 4/25 XC6227 Series PARAMETER SYMBOL CONDITIONS MIN. TYP. MAX. UNITS CIRCUIT VOUT(T)>2.0V, VCE=VIN, IOUT=10mA ×0.99 (*3) ×1.01 (*3) Output Voltage VOUT(E) (*2) VOUT(T)≦2.0V, VCE=VIN, IOUT=10mA -0.02 (*3) VOUT(T) (*4) +0.02 (*3) V ① VCE=VIN, VIN=VOUT(T)+1.0V VOUT(T)>1.5V Output Current IOUTMAX VCE=VIN, VIN=2.5V VOUT(T)≦1.5V 700 - - mA ① Load Regulation ΔVOUT VCE=VIN, 0.1mA≦IOUT≦300mA E-1 mV ① Dropout Voltage1 (*5) Vdif IOUT=300mA, VCE=VIN E-2 mV ① Dropout Voltage2 (*5) Vdif2 IOUT=0mA, VCE=VIN E-3 mV ① Supply Current ISS VIN=VCE=VOUT(T)+1.0V, IOUT=0mA - 100 220 μ A ② Stand-by Current ISTBY VIN=6.0V, VCE=VSS - 0.01 0.1 μ A ② VOUT(T)+0.5V≦VIN≦6.0V :VOUT(T)≧1.0V VCE=VIN, IOUT=30mA Line Regulation ΔVOUT/ (ΔVIN ・VOUT) 1.5V≦VIN≦6.0V :VOUT(T)≦0.95V VCE=VIN, IOUT=30mA - 0.01 0.1 %/V ① Input Voltage VIN 1.7 - 6.0 V ① Output Voltage Temperature Characteristics ΔVOUT/ (ΔTa ・VOUT) VCE=VIN, IOUT=30mA -40℃≦Ta≦85℃ - ±100 - ppm /℃ ① VOUT(T)≧4.8V, VIN=5.75VDC+0.5Vp-pAC VCE=VIN, IOUT=30mA, f=1kHz 1.0V≦VOUT(T)<4.8V VIN={VOUT(T)+1.0}VDC+0.5Vp-pAC VCE=VIN, IOUT=30mA, f=1kHz Power Supply Rejection Ratio PSRR VOUT(T)<1.0V, VIN=2.0VDC+0.5Vp-pAC VCE=VIN, IOUT=30mA, f=1kHz - 65 - dB ③ VCE=VIN, VIN=VOUT(T)+1.0V VOUT(T)>1.5V Limit Current Ilim VCE=VIN, VIN=2.5V VOUT(T)≦1.5V 720 950 - mA ① Short Current Ishort VCE=VIN, Short VOUT to VSS level - 55 - mA ① CE High Level Voltage VCEH 1.2 - 6.0 V ① CE Low Level Voltage VCEL - - 0.3 V ① CE High Level Current ICEH VCE=VIN=6.0V, XC6227C Series 17.7 24 36.9 μ A ① CE Low Level Current ICEL VCE=VSS -0.1 - 0.1 μ A ① Reverse Current (*8) IREV VIN=0V, VOUT= 6.0V (*10) - 0.01 1.5 μ A ① VOUT Pin Sink Current (*9) IREVS VIN=5.0V, VOUT=6.0V (*10) - 2.8 5.3 μ A ① Thermal Shutdown Detect Temperature TTSD Junction Temperature - 150 - ℃ ① Thermal Shutdown Release Temperature TTSR Junction Temperature - 125 - ℃ ① Ta=25℃ ■ ELECTRICAL CHARACTERISTICS ● XC6227 Series NOTE: * 1: Unless otherwise stated, input voltage is VIN=VOUT(T)+1.0V. * 2: VOUT(E) is effective output voltage (Refer to the voltage chart E-1 and E-2) It is defined as output voltages when an amply stabilized VOUT(T)+1.0V is supplied to the VIN pin while maintaining a certain IOUT . * 3: The relation between VOUT(E) and VOUT(T) is shown in the voltage chart E-1 and E-2. * 4: VOUT(T) is nominal output voltage * 5: Vdif (Vdif2)= {VIN1 (*7)-VOUT1(*6)} * 6: VOUT1 equals 98% of the output voltage when amply stabilized VOUT (T)+1.0V are supplied to the VIN pin. * 7: VIN1 is the input voltage when VOUT1 appears at the VOUT pin while input voltage is gradually decreased. * 8: Reverse current (IREV) flows from VOUT to VIN. * 9: VOUT pin sink current (IREVS) flows from VOUT to VSS. *10: Please note when an external power supply connects to the VOUT pin, please use it with 6.0V or less. |
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