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ADP198ACBZ-R7 数据表(PDF) 14 Page - Analog Devices

部件名 ADP198ACBZ-R7
功能描述  Logic Controlled, 1 A, High-Side Load
PDF  16 Pages
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制造商  AD [Analog Devices]
网页  http://www.analog.com
标志 AD - Analog Devices

ADP198ACBZ-R7 数据表(HTML) 14 Page - Analog Devices

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ADP198
Data Sheet
Rev. D | Page 14 of 16
TIMING
Turn-on delay is defined as the delta between the time that VEN
reaches >1.2 V and when VOUT rises to ~10% of its final value. The
ADP198 includes circuitry to have typical 10 µs turn-on delay at
3.6 V VIN to limit the VIN inrush current.
The rise time is defined as the delta between the time from
10% to 90% of VOUT reaching its final value. It is dependent on
the RC time constant where C = load capacitance (CLOAD) and
R = RDSON||RLOAD. Because RDSON is usually smaller than RLOAD,
an adequate approximation for RC is RDSON × CLOAD. An input
or load capacitor is not needed for the ADP198; however, capacitors
can be used to suppress noise on the board. If significant load
capacitance is connected, inrush current may be a concern.
Figure 27 through Figure 30 show the turn-on delay and output
rise time for each of the four settings on SEL0 and SEL1.
CH1 200mA
BW
CH3 2.00V BW
A CH3
1.48V
2
1
3
CH2 2.00V BW M20.0µs
T 10.20%
INPUT CURRENT
OUTPUT VOLTAGE
ENABLE
Figure 27. Typical Rise Time and Inrush Current,
CLOAD = 1 µF, VIN = 3.6 V, ILOAD = 200 mA, Code 00
CH1 200mA
BW
CH3 2.00V BW
A CH3
1.48V
2
1
3
CH2 2.00V BW M40.0µs
T 10.20%
INPUT CURRENT
OUTPUT VOLTAGE
ENABLE
Figure 28. Typical Rise Time and Inrush Current,
CLOAD = 1 µF, VIN = 3.6 V, ILOAD = 200 mA, Code 01
CH1 200mA
BW
CH3 2.00V BW
A CH3
1.48V
2
1
3
CH2 2.00V BW M100µs
T 10.20%
INPUT CURRENT
OUTPUT VOLTAGE
ENABLE
Figure 29. Typical Rise Time and Inrush Current,
CLOAD = 1 µF, VIN = 3.6 V, ILOAD = 200 mA, Code 10
CH1 200mA
BW
CH3 2.00V BW
A CH3
1.48V
2
1
3
CH2 2.00V BW M200µs
T 10.20%
INPUT CURRENT
OUTPUT VOLTAGE
ENABLE
Figure 30. Typical Rise Time and Inrush Current,
CLOAD = 1 µF, VIN = 3.6 V, ILOAD = 200 mA, Code 11
The turn-off time is defined as the delta between the time from
90% to 10% of VOUT reaching its final value. It is also dependent on
the RC time constant.
Table 6. Start-Up Time Pin Settings
SEL1
SEL0
Start-Up Time (μs)
0
0
30
0
1
200
1
0
450
1
1
1100



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