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ADP199ACBZ-R7 Fiches technique(PDF) 13 Page - Analog Devices |
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ADP199ACBZ-R7 Fiches technique(HTML) 13 Page - Analog Devices |
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13 / 16 page ![]() Data Sheet ADP199 Rev. 0 | Page 13 of 16 CH2 500mV CH1 1V BW BW BW CH3 20mA Ω M10µs A CH1 100mV T 10% 1 3 2 VEN OUTPUT VOLTAGE INPUT CURRENT Figure 34. Typical Turn-On Delay Time with VIN = 1.2 V, ILOAD = 10 mA, CLOAD = 1 μF CH2 1V CH1 2V BW BW BW CH3 200mA Ω M4µs A CH1 1.28mV T 10% 1 3 2 VEN OUTPUT VOLTAGE INPUT CURRENT Figure 35. Typical Turn-On Delay Time with VIN = 3.6 V, ILOAD = 10 mA, CLOAD = 1 μF The rise time is defined as the time it takes the output voltage to rise from 10% to 90% of VOUT reaching its final value. It is depen- dent on the rise time of the internal charge pum p. For very large values of output capacitance, the RC time constant (where C is the load capacitance (CLOAD) and R is the RDSON||RLOAD) can become a factor in the rise time of the output voltage. Because RDSON is much smaller than RLOAD, an adequate approximation for RC is RDSON × CLOAD. An input or load capacitor is not required for the ADP199 although capacitors can be used to suppress noise on the board. CH2 500mV CH1 1V BW BW BW CH3 500mA Ω M40µs A CH1 700mV T 10.4% 1 3 2 VEN OUTPUT VOLTAGE INPUT CURRENT Figure 36. Typical Rise Time and Inrush Current, CLOAD = 100 μF, VIN = 1.2 V, ILOAD = 100 mA CH2 1V CH1 2V BW BW BW CH3 2A Ω M40µs A CH1 720mV T 10.4% 1 3 2 VEN OUTPUT VOLTAGE INPUT CURRENT Figure 37. Typical Rise Time and Inrush Current, CLOAD = 100 μF, VIN = 3.6 V, ILOAD =100 mA The turn-off time is defined as the time it takes for the output voltage to fall from 90% to 10% of VOUT reaching its final value. The turn-off time is also dependent on the RC time constant of the output capacitance and load resistance. Figure 38 shows the typical turn-off time with VIN = 1.8 V, COUT = 1 μF, and RLOAD = 18 Ω. CH2 1V CH1 500mV BW BW M20µs A CH2 660mV T 10.2% 1 2 ENABLE VOLTAGE VEN INPUT CURRENT Figure 38. Typical Turn-Off Time |
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