![](http://datasheet.mmic.net.cn/Analog-Devices-Inc/ADG5204BRUZ-RL7_datasheet_96113/ADG5204BRUZ-RL7_11.png)
ADG5204
Rev. 0 | Page 11 of 20
500
400
300
200
100
450
340
250
150
50
0
02468
10
12
O
N
R
E
S
IS
T
ANCE
(
)
VS, VD (V)
VDD = 12V
VSS = 0V
TA = +125°C
TA = +85°C
TA = +25°C
TA = –40°C
09
76
8-
1
0
Figure 10. RON as a Function of VD or VS for Different Temperatures,
12 V Single Supply
250
200
100
150
50
0
035
30
25
20
15
10
5
O
N
RE
S
IS
T
A
NCE
(
)
VS, VD (V)
VDD = 36V
VSS = 0V
TA = +125°C
TA = +85°C
TA = +25°C
TA = –40°C
09
76
8-
1
Figure 11. RON as a Function of VD or VS for Different Temperatures,
36 V Single Supply
10
–70
–60
–50
–40
–30
–20
–10
0
20
40
60
80
100
120
L
E
AK
AG
E
CURR
E
NT
(p
A)
TEMPERATURE (°C)
VDD = +15V
VSS = –15V
VBIAS = +10V/–10V
ID (OFF) – +
IS (OFF) – +
IS (OFF) + –
ID (OFF) + –
ID, IS (ON) + +
ID, IS (ON) – –
09
76
8-
1
2
Figure 12. Leakage Current vs. Temperature, ±15 V Dual Supply
0
20
40
60
80
100
120
TEMPERATURE (°C)
100
–200
–150
–100
–50
0
50
L
E
AK
AG
E
CURR
E
NT
(p
A)
VDD = +20V
VSS = –20V
VBIAS = +15V/–15V
ID (OFF) – +
IS (OFF) – +
IS (OFF) + –
ID (OFF) + –
ID, IS (ON) + +
ID, IS (ON) – –
09
76
8-
1
3
Figure 13. Leakage Current vs. Temperature, ±20 V Dual Supply
0
204060
80
100
120
TEMPERATURE (°C)
40
20
–120
–100
–80
–60
–40
–20
0
L
E
AK
AG
E
CURR
E
NT
(p
A)
VDD = 12V
VSS = 0V
VBIAS = 1V/10V
ID (OFF) – +
IS (OFF) – +
IS (OFF) + –
ID (OFF) + –
ID, IS (ON) + +
ID, IS (ON) – –
09
76
8-
1
4
Figure 14. Leakage Current vs. Temperature, 12 V Single Supply
0
204060
80
100
120
TEMPERATURE (°C)
50
–250
–200
–150
–100
–50
0
L
E
AK
AG
E
CURR
E
NT
(p
A)
VDD = 36V
VSS = 0V
VBIAS = 1V/30V
ID (OFF) – +
IS (OFF) – +
IS (OFF) + –
ID (OFF) + –
ID,IS (ON) + +
ID,IS (ON) – –
09
76
8-
1
5
Figure 15. Leakage Current vs. Temperature, 36 V Single Supply