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AD5560JSVUZ bảng dữ liệu(PDF) 9 Page - Analog Devices

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Giải thích chi tiết về linh kiện  1.2 A Programmable Device Power Supply
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AD5560JSVUZ bảng dữ liệu(HTML) 9 Page - Analog Devices

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AD5560
Data Sheet
Rev. E | Page 8 of 66
Parameter
Min
Typ
Max
Unit
Test Conditions/Comments
SYS_FORCE
Voltage Range
AVSS
AVDD
V
Current Carrying Capability1
−25
+25
mA
Leakage Current
−2.5
+2.5
nA
SYS_FORCE high-Z, force amplifier inhibited
Leakage Current Tempco1
±0.005
±0.025
nA/°C
Path On Resistance
35
Ω
AVDD = 16.5 V, AVSS = −16.5 V
Pin Capacitance1
5
pF
SYS_DUTGND
Voltage Range
AVSS
AVDD
V
Path On Resistance
300
400
Ω
AVDD = 16.5 V, AVSS = −16.5 V
CURRENT CLAMP
Clamp Accuracy
Programmed
clamp value
Programmed
clamp value + 10
% of FS
MI gain = 20, with clamp separation of 2 V, and
1 V separation from AGND/0 A
Programmed
clamp value
Programmed
clamp value + 20
% of FS
MI gain = 10, with clamp separation of 2 V, and
1 V separation from AGND/0 A
VCLL to VCLH1
2
V
10% of FSCR (MI gain = 20), 20% of FSCR (MI
gain = 10), restriction to prevent both clamps
activating together
VCLL to 0 A1
1
V
5% of FSCR (MI gain = 20), 10% of FSCR (MI gain
= 10), restriction to avoid impinging on FV
before programmed level
VCLH to 0 A1
1
V
5% of FSCR (MI gain 20), 10% of FSCR (MI gain =
10), restriction to avoid impinging on FV before
programmed level
Clamp Activation Response Time1
20
100
μs
Measured from BUSY going low to visible
clamping
Clamp Recovery1
2
5
μs
Measured from BUSY going low to visible recovery
Alarm Delay 1
50
μs
Time for CLALM to flag
FORCE AMPLIFER
Slew Rate1
1
V/µs
Fastest slew rate, controlled via serial interface
0.312
V/µs
Slowest slew rate, controlled via serial interface
Maximum Stable Load Capacitance1
160
µF
Voltage Overshoot/Undershoot1
5
%
Of programmed value (≥1 V)
SETTLING TIME (FORCE AMPLIFER)
Compensation Register 1 = 0x4880 (229 nF to
380 nF, ESR 74 to 140 mΩ)
To within 10 mV of programmed value
FV (1200 mA EXTFORCE1 Range)1
16
25
µs
3.7 V step, RDUT = 2.4 Ω, CDUT = 0.22 µF, full dc load
FV (900 mA EXTFORCE1 Range)1
18
30
µs
8 V step, RDUT = 8.8 Ω, CDUT = 0.22 µF, full dc load
FV (500 mA EXTFORCE2 Range)1
34
53
µs
15 V step, RDUT = 30 Ω, CDUT = 0.22 µF, full dc load
FV (300 mA EXTFORCE2 Range)1
25
50
µs
10 V step, RDUT = 33.3 Ω, CDUT = 0.22 µF, full dc load
FV (25 mA Range)1, 3
125
180
µs
20 V step, RDUT = 800 Ω, CDUT = 0.22 µF, full dc load
FV (2.5 mA Range)1, 3
300
500
µs
10 V step, RDUT = 4 kΩ, CDUT = 0.22 µF, full dc load
FV (250 µA Range)1, 3
300
500
µs
10 V step, RDUT = 40 kΩ, CDUT = 0.22 µF, full dc load
FV (25 µA Range)1, 3
400
600
µs
10 V step, RDUT = 400 kΩ, CDUT = 0.22 µF, full dc load
FV (5 µA Range)1, 3
20
40
µs
1 V step, RDUT = 200 kΩ, CDUT = 0.22 µF, full dc load
Compensation Register 1 = 0x8880 (1.7 μF to
2.9 μF, ESR 74 to 140 mΩ)
FV (180 mA EXTFORCE1 Range)1
16
25
µs
3 V step, CDUT = 2.2 µF, full dc load
FV (100 mA EXTFORCE2 Range)1
60
80
µs
8 V step, CDUT = 2.2 µF, full dc load
Compensation Register 1 = 0xB880 (7.9μF to
13 μF, ESR 74 to 140 mΩ)
FV (180 mA EXTFORCE1 Range)1
55
70
µs
3 V step, CDUT = 10 µF, full dc load
FV (100 mA EXTFORCE2 Range)1
210
260
µs
8 V step, CDUT = 10 µF, full dc load
Compensation Register 1 = 0xC880 (13 μF to
22 μF, ESR 74 to 140 mΩ)
FV (180 mA EXTFORCE1 Range)1
65
80
µs
3 V step, CDUT = 20 µF, full dc load
FV (100 mA EXTFORCE2 Range)1
310
370
µs
8 V step, CDUT = 20 µF, full dc load


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