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NCP3335ADM250R2G Datasheet(PDF) 10 Page - ON Semiconductor |
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NCP3335ADM250R2G Datasheet(HTML) 10 Page - ON Semiconductor |
10 / 21 page NCP3335A http://onsemi.com 10 ELECTRICAL CHARACTERISTICS − 2.5 V (Vout = 2.5 V typical, Vin = 2.9 V, TA = −40°C to +85°C, unless otherwise noted, Note 14.) Characteristic Symbol Min Typ Max Unit Output Voltage (Accuracy) Vin = 2.9 V to 6.5 V, Iload = 0.1 mA to 500 mA, TA = 25°C Vout −0.9% 2.477 2.5 +0.9% 2.523 V Output Voltage (Accuracy) Vin = 2.9 V to 6.5 V, Iload = 0.1 mA to 500 mA, TA = 0°C to +85°C Vout −1.4% 2.465 2.5 +1.4% 2.535 V Output Voltage (Accuracy), (Note 15) Vin = 2.9 V to 6.5 V, Iload = 0.1 mA to 500 mA, TA = −40°C to +125°C Vout −1.5% 2.462 2.5 +1.5% 2.538 V Line Regulation Vin = 2.9 V to 12 V, Iload = 0.1 mA LineReg 0.04 mV/V Load Regulation Vin = 2.9 V, Iload = 0.1 mA to 500 mA LoadReg 0.04 mV/mA Dropout Voltage (See App Note) Iload = 500 mA (Note 16) Iload = 300 mA (Note 16) Iload = 50 mA Iload = 0.1mA VDO 340 230 110 10 mV Peak Output Current (See Figure 16) Ipk 500 700 800 mA Short Output Current (See Figure 16) Isc 900 mA Thermal Shutdown TJ 160 °C Ground Current In Regulation Iload = 500 mA (Note 16) Iload = 300 mA (Note 16) Iload = 50 mA Iload = 0.1 mA In Dropout Vin = 2.4 V, Iload = 0.1 mA In Shutdown SD = 0 V IGND IGNDsh 9.0 4.6 0.8 − 0.07 14 7.5 2.5 190 500 1.0 mA mA mA mA Output Noise Cnr = 0 nF, Iload = 500 mA, f = 10 Hz to 100 kHz, Cout = 10 mF Cnr = 10 nF, Iload = 500 mA, f = 10 Hz to 100 kHz, Cout = 10 mF Vnoise 56 35 mVrms mVrms Shutdown Threshold Voltage ON Threshold Voltage OFF 2.0 0.4 V V SD Input Current, VSD = 0 V to 0.4 V or VSD = 2.0 V to Vin ISD 0.07 1.0 mA Output Current In Shutdown Mode, Vout = 0 V IOSD 0.07 1.0 mA Reverse Bias Protection, Current Flowing from the Output Pin to GND (Vin = 0 V, Vout_forced = 2.5 V) IOUTR 10 mA 14.Performance guaranteed over the operating temperature range by design and/or characterization, production tested at TJ = TA = 25°C. Low duty cycle pulse techniques are used during testing to maintain the junction temperature as close to ambient as possible. 15.For output current capability for TA < 0°C, please refer to Figure 20. 16.TA must be greater than 0°C. |
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