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CMPWR280TO Datasheet(PDF) 6 Page - ON Semiconductor |
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CMPWR280TO Datasheet(HTML) 6 Page - ON Semiconductor |
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6 / 11 page ![]() CMPWR280 http://onsemi.com 6 VCC Supply Current of the device is shown across the entire VCC range in V. In the absence of VAUX, the supply current remains fixed at approximately 0.15 mA until VCC reaches the Select voltage threshold of 4.35 V. At this point the regulator is enabled and a supply current of 1.0 mA is conducted. When VAUX is present, the VCC supply current is less than 10 mA until VCC exceeds VAUX, at which point VCC then powers the controller (0.15 mA). When VCC reaches VSELECT, the regulator is enabled. Figure 5. VCC Supply Current (No Load) TYPICAL TRANSIENT CHARACTERISTICS The transient characterization test set−up shown in Transient Performance Test Set−up includes the effective source impedance of the VCC supply (RS). This was measured to be approximately 0.1 W. It is recommended that this effective source impedance be no greater than 0.15 W to ensure precise switching is maintained during VCC selection and deselection. Both the rise and fall times during VCC power−up/down sequencing were controlled at a 10 millisecond duration. This is considered to represent worst case conditions for most application circuits. During a selection or deselection transition, the DC load current is switching from VAUX to VCC and vice versa. In addition to the normal load current, there may also be an in−rush current for charging/discharging the load capacitor. The total current pulse being applied to either VAUX or VCC is equal to the sum of the DC load and the corresponding in−rush current. Transient currents in excess of 1.0 amps can readily occur for brief intervals when either supply commences to power the load. VOUT VSBY VCC GND VOUT 0.1 mF10 mF Load 2.2 W PWR280 VCC 5 V TR=20ms TF=20ms VSBY 5 V Figure 6. Transient Characterization Test Set−up + + + − + Drive + − VAUX 3.3 V FDN338P (Si2310DS) 0.1 mF1 mF 0.1 W + − 0.1 W 0.1 mF1 mF |
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