TYPICAL PERFORMANCE CHARACTERISTICS
200
TA = +25ºC
180
160
140
VDD = +13.5V
VSS = –13.5V
120
100
80
VDD = +15V
VSS = –15V
VDD = +16.5V
VSS = –16.5V
60
40
20
0
–18 –15 –12 –9 –6 –3 0 3 6 9 12 15 18
SOURCE OR DRAIN VOLTAGE (V)
Figure 3. On Resistance as a Function of VD (VS) for Dual Supply
450
TA = +25°C
400
350
300
VDD = +5.5V
VSS = –5.5V
250
200
150
100
50
0
–5 –4 –3 –2 –1 0 1
2
34
5
SOURCE OR DRAIN VOLTAGE (V)
Figure 4. On Resistance as a Function of VD (VS) for Dual Supply
450
TA = 25°C
400
350
VDD = 10.8V
VSS = 0V
300
VDD = 12V
VSS = 0V
250
VDD = 13.2V
200
VSS = 0V
150
100
50
0
0
2
4
6
8
10
12
SOURCE OR DRAIN VOLTAGE (V)
Figure 5. On Resistance as a Function of VD (VS) for Single Supply
ADG1201/ADG1202
250
VDD = +15V
VSS = –15V
200
TA = +125°C
150
TA = +85°C
100
TA = –40°C
50
TA = +25°C
0
–15
–10
–5
0
5
10
15
SOURCE OR DRAIN VOLTAGE (V)
Figure 6. On Resistance as a Function of VD (VS) for Different
Temperatures, Dual Supply
600
VDD = +12V
VSS = 0V
500
TA = +85°C
400
TA = +125°C
300
200
TA = –40°C
TA = +25°C
100
0
0
2
4
6
8
10
12
SOURCE OR DRAIN VOLTAGE (V)
Figure 7. On Resistance as a Function of VD (VS) for Different
Temperatures, Single Supply
200
150 VDD = +15V
VSS = –15V
100 VBIAS = ±10V
50
0
–50
–100
–150
–200
–250
–300
–350
–400
IS (OFF) + –
IS (OFF) – +
ID, IS (ON) + +
ID (OFF) + –
ID (OFF) – +
ID, IS (ON) – –
–450
0
20
40
60
80
100
120
TEMPERATURE (ºC)
Figure 8. Leakage Currents as a Function of Temperature, Dual Supply
Rev. 0 | Page 7 of 16