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NCP502SN37T1G Datasheet(PDF) 3 Page - ON Semiconductor |
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NCP502SN37T1G Datasheet(HTML) 3 Page - ON Semiconductor |
3 / 9 page NCP502, NCV502 http://onsemi.com 3 ELECTRICAL CHARACTERISTICS (Vin = Vout(nom.) + 2.0 V, Venable = Vin, Cin = 1.0 mF, Cout = 1.0 mF, TJ = 25C, unless otherwise noted.) Characteristic Symbol Min Typ Max Unit Output Voltage (TA = 25C, Iout = 10 mA) Vin = Vout (nom.) +1.0 V 1.5 V 1.8 V 2.5 V 2.7 V 2.8 V 2.9 V 3.0 V 3.1 V 3.3 V 3.4 V 3.5 V 3.6 V 3.7 V 5.0 V Vout 1.455 1.746 2.425 2.646 2.744 2.842 2.94 3.038 3.234 3.332 3.43 3.528 3.626 4.900 1.5 1.8 2.5 2.7 2.8 2.9 3.0 3.1 3.3 3.4 3.5 3.6 3.7 5.0 1.545 1.854 2.575 2.754 2.856 2.958 3.06 3.162 3.366 3.468 3.57 3.672 3.774 5.100 V Output Voltage (TA = Tlow to Thigh, Iout = 10 mA) Vin = Vout (nom.) 1.5 V 1.8 V 2.5 V 2.7 V 2.8 V 2.9 V 3.0 V 3.1 V 3.3 V 3.4 V 3.5 V 3.6 V 3.7 V 5.0 V Vout 1.455 1.746 2.425 2.619 2.716 2.813 2.910 3.007 3.201 3.298 3.43 3.528 3.626 4.900 1.5 1.8 2.5 2.7 2.8 2.9 3.0 3.1 3.3 3.4 3.5 3.6 3.7 5.0 1.545 1.854 2.575 2.781 2.884 2.987 3.09 3.193 3.399 3.502 3.57 3.672 3.774 5.100 V Line Regulation (Vin = Vout + 1.0 V to 12 V, Iout = 10 mA) Regline − 0.4 3.0 mV/V Load Regulation (Iout = 1.0 mA to 80 mA) Regload − 0.2 0.8 mV/mA Output Current (Vout = (Vout at Iout = 80 mA) −3%) Io(nom.) 80 180 − mA Dropout Voltage (TA = Tlow to Thigh, Iout = 80 mA, Measured at Vout −3.0%) 1.5 V−1.7 V 1.8 V−2.4 V 2.5 V−2.6 V 2.7 V−2.9 V 3.0 V−4.0 V 4.1 V−5.0 V NCV502 − 5.0 V Vin−Vout − − − − − − − 1500 1300 1000 850 850 600 700 1900 1700 1400 1300 1200 900 1100 mV Quiescent Current (Enable Input = 0 V) (Enable Input = Vin, Iout = 1.0 mA to Io(nom.)) IQ − − 0.1 40 1.0 90 mA Output Short Circuit Current (Vout = 0 V) Iout(max) 90 200 500 mA Ripple Rejection (f = 1.0 kHz, 15 mA) RR − 55 − dB Output Voltage Noise (f = 100 Hz to 100 kHz) Vn − 180 − mVrms Enable Input Threshold Voltage (NCP502) (Voltage Increasing, Output Turns On, Logic High) (Voltage Decreasing, Output Turns Off, Logic Low) Vth(en) 1.3 − − − − 0.3 V Output Voltage Temperature Coefficient TC − 100 − ppm/C 4. Maximum package power dissipation limits must be observed. PD + TJ(max) *TA RqJA 5. Low duty cycle pulse techniques are used during testing to maintain the junction temperature as close to ambient as possible. |
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Similar Description - NCP502SN37T1G |
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