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ADG1434 查看數據表(PDF) - Analog Devices

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ADG1434 Datasheet PDF : 20 Pages
First Prev 11 12 13 14 15 16 17 18 19 20
Data Sheet
1600
1400
1200
VDD = +15V
VSS = –15V
VBIAS = +10V/–10V
1000
ID, IS (ON) + +
IS (OFF) + –
800
600
400
IS (OFF) – +
200
0
ID, IS (ON) – –
–200
0
20
40
60
80
100
120
TEMPERATURE (°C)
Figure 14. Leakage Currents as a Function of Temperature, ±15 V Dual Supply
1600
1400
1200
VDD = +5V
VSS = –5V
VBIAS = +4.5V/–4.5V
ID, IS (ON) + +
1000
800
IS (OFF) + –
600
400
ID, IS (ON) – –
200
0
–200
0
IS (OFF) – +
20
40
60
80
100
120
TEMPERATURE (°C)
Figure 15. Leakage Currents as a Function of Temperature, ±5 V Dual Supply
2000
1800
1600
VDD = 12V
VSS = 0V
VBIAS = 1V/10V
ID, IS (ON) + +
1400
1200
ID, IS (ON) – –
1000
800
600
IS (OFF) + –
400
200
0
–200
0
IS (OFF) – +
20
40
60
80
100
120
TEMPERATURE (°C)
Figure 16. Leakage Currents as a Function of Temperature,
12 V Single Supply
ADG1433/ADG1434
70
IDD PER CHANNEL
TA = 25°C
60
50
40
VVDSSD
=
=
+12V
0V
30
VVDSSD
=
=
+15V
–15V
20
10
VVDSSD
=
=
+5V
–5V
0
0
2
4
6
8
10
12
14
LOGIC, INx (V)
Figure 17. IDD vs. Logic Level
200
TA = 25°C
150
100
50
0
–50
–100
VDD = +15V
VSS = –15V
VDD = +5V
VSS = –5V
VDD = +12V
VSS = 0V
–150
–200
–15
–10
–5
0
5
10
15
VS (V)
Figure 18. Charge Injection vs. Source Voltage
350
300
250
VDD = +5V
VSS = –5V
200
VDD = +12V
VSS = 0V
150
100
VDD = +15V
VSS = –15V
50
0
–40 –20
0
20
40
60
80 100 120
TEMPERATURE (°C)
Figure 19. Transition Time vs. Temperature
Rev. E | Page 11 of 20

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