| 전자부품 데이터시트 검색엔진 |
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CMPWR150SF 데이터시트(PDF) 8 Page - ON Semiconductor |
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CMPWR150SF 데이터시트(HTML) 8 Page - ON Semiconductor |
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8 / 15 page ![]() CMPWR150 Rev. 3 | Page 8 of 15 | www.onsemi.com Typical Transient Characteristics The transient characterization test set-up shown below includes the effective source impedance of the V CC supply (R S). This was measured to be approximately 0.2Ω. It is recommended that this effective source impedance be no greater than 0.25 Ω to ensure precise switching is maintained during V CC selection and deselection. Both the rise and fall times during V CC power-up/down sequencing were controlled at a 20 millisecond duration. This is considered to represent worst case conditions for most application circuits. A maximum rated load current of 500mA was used during characterization, unless specified otherwise. During a selection or deselection transition, the DC load current is switching from V AUX 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 V AUX 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. The oscilloscope traces of V CC power-up/down show the full bandwidth response at the VCC and V OUT pins under full load (500mA) conditions. See Application Note AP-211 for more information. V CC Power-up Cold Start. Figure 5 shows the output response during an initial V CC power-up with VAUX not present. When V CC reaches the select threshold, the regulator turns on. The uncharged output capacitor causes maximum in-rush current to flow, resulting in a large voltage disturbance at the V CC pin of about 230mV. The built-in hysteresis of 250mV ensures the regulator remains enabled throughout the transient. Prior to V CC reaching an acceptable logic supply level (2V), a disturbance on the Drive pin can be observed. PowerUpCold.bmp Figure 5. V CC Power-up Cold Start |
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