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NFAM2012L5BT Arkusz danych(PDF) 7 Page - ON Semiconductor |
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NFAM2012L5BT Arkusz danych(HTML) 7 Page - ON Semiconductor |
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7 / 10 page ![]() NFAM2012L5BT www.onsemi.com 7 Table 5. ELECTRICAL CHARACTERISTICS (Tc = 25°C, VD = 15 V, unless otherwise noted) (Note 6) (continued) Parameter Unit Max Typ Min Symbol Test Conditions DRIVER SECTION Quiescent VBS Supply Current VBS = 15 V HIN(U, V, W) = 0 V VB(U) − VS(U) VB(V) − VS(V) VB(W) − VS(W) IQBS − − 0.30 mA Operating VBS Supply Current VDD = VBS = 15 V, fPWM = 20 kHz, Duty = 50%, Applied to one PWM Signal Input for High−Side VB(U) − VS(U) VB(V) − VS(V) VB(W) − VS(W) IPBS − − 8.00 mA ON Threshold Voltage HIN(U, V, W) − VSS, LIN(U, V, W) − VSS VIN(ON) − − 2.6 V OFF Threshold Voltage VIN(OF) 0.8 − − V Short Circuit Trip Level VDD = 15 V, CIN−VSS VCIN(ref) 0.46 0.48 0.50 V Supply Circuit Under−Voltage Protection Detection Level UVDDD 10.3 − 12.5 V Reset Level UVDDR 10.8 − 13.0 V Detection Level UVBSD 10.0 − 12.0 V Reset Level UVBSR 10.5 − 12.5 V Voltage Output for LVIC Temperature Sensing Unit VTS−VSS = 10 nF, Temp. = 25°C VTS (0.905) (1.030) (1.155) V Fault Output Voltage VDD = 0 V, CIN = 0 V, VFO Circuit: 10 kW to 5 V Pull−up VFOH 4.9 − − V VDD = 0 V, CIN = 1 V, VFO Circuit: 10 kW to 5 V Pull−up VFOL − − 0.95 V Fault−Output Pulse Width CFOD = 22 nF tFOD 1.6 2.4 − ms BOOTSTRAP SECTION Bootstrap Diode Forward Current If = 0.1 A VF 3.4 4.6 5.8 V Built−in Limiting Resistance RBOOT 30 38 46 W Product parametric performance is indicated in the Electrical Characteristics for the listed test conditions, unless otherwise noted. Product performance may not be indicated by the Electrical Characteristics if operated under different conditions. 6. Performance guaranteed over the indicated operating temperature range by design and/or characterization 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. 7. The fault−out pulse width tFOD depends on the capacitance value of CFOD according to the following approximate equation: tFOD = (TBD) x 106 x CFOD (s). 8. Values based on design and/or characterization. Figure 4. Temperature of LVIC versus VOT Characteristics LVIC Temperature (°C) 40 45 50 55 60 65 70 75 80 85 90 95 100 105 110 115 120 125 130 1.0 1.5 2.0 2.5 3.0 3.5 4.0 |
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