VD OR VS – DRAIN OR SOURCE VOLTAGE – V
50
40
10
–20
–10
R
ON
–
010
20
30
20
TA = 25 C
VL = 5V
0
VDD = +15V
VSS = –15V
VDD = +10V
VSS = –10V
VDD = +12V
VSS = –12V
VDD = +5V
VSS = –5V
TPC 1. On Resistance as a Function of VD (VS) Dual
Supplies
VD OR VS – DRAIN OR SOURCE VOLTAGE – V
50
40
10
–20
–10
R
ON
–
010
20
30
20
0
VDD = +15V
VSS = –15V
VL = +5V
125 C
85 C
25 C
TPC 2. On Resistance as a Function of VD (VS) for Different
Temperatures
TEMPERATURE – C
10
0.001
20
120
40
LEAKAGE
CURRENT
–
nA
60
80
100
1
0.1
0.01
VDD = +15V
VSS = –15V
VL = +5V
140
VS = 15V
VD = 15V
IS (OFF)
ID (OFF)
ID (ON)
TPC 3. Leakage Currents as a Function of Temperature
VD OR VS – DRAIN OR SOURCE VOLTAGE – V
50
40
10
05
R
ON
–
10
15
20
30
20
TA = 25 C
VL = 5V
0
VDD = 15V
VSS = 0V
VDD = 10V
VSS = 0V
VDD = 12V
VSS = 0V
VDD = 5V
VSS = 0V
TPC 4. On Resistance as a Function of VD (VS) Single
Supply
FREQUENCY – Hz
100mA
100nA
10
10M
100
I SUPPLY
1k
10k
100k
1M
10mA
1mA
100 A
10 A
1 A
VDD = +15V
4 SW
VSS = –15V
VL = +5V
1 SW
I+, I–
IL
TPC 5. Supply Current vs. Input Switching Frequency
VD OR VS – DRAIN OR SOURCE VOLTAGE – V
0.04
0.02
–0.04
–20
–10
LEAKAGE
CURRENT
–
nA
010
20
0.00
–0.02
VDD = +15V
VSS = –15V
TA = +25 C
VL = +5V
ID (ON)
IS (OFF)
ID (OFF)
TPC 6. Leakage Currents as a Function of VD (VS)
Typical Performance Characteristics–ADG431/ADG432/ADG433
REV. C
–5–