FEDL9205-03
1
Semiconductor
ML9205-01
REFERENCE DATA
Graphs illustrating the VFL versus driver output current capability relationship are shown below.
Care must be taken not to use the total power in excess of allowable power dissipation.
[Driver output current versus output drop voltage]
[Driver output current versus output drop voltage]
−
−
VFL = 60 V, COMn
VFL = 20 V, COMn
[Output current (mA)]
[Output current (mA)]
0
−
15
−
30
−
45
−
60
−
75 (mA)
0
−
15
−
30
−
45
−
60
−
75 (mA)
0
0
[VDISP
−
n(V)]
[VDISP
−
n(V)]
−
0.5
−
0.5
−
°
Ta = 40 C
−
1.0
−
1.0
Ta = 25
°
C
Ta = 40 C
− °
−
1.5
−
1.5
Ta = 85
°
C
−
2.0
(V)
−
2.0
(V)
°
Ta = 25 C
°
Ta = 85 C
[Driver output current versus output drop voltage]
[Driver output current versus output drop voltage]
−
−
20 V, ADn
VFL
[Output current (mA)]
12
=
60 V, ADn
VFL
[Output current (mA)]
12
=
0
−
4
−
8
−
−
16
−
20 (mA)
0
−
4
−
8
−
−
16
−
20 (mA)
0
n(V)]
0.5
0
n(V)]
0.5
[VDISP
−
[VDISP
−
−
−
Ta =
− °
40 C
−
1.0
−
1.0
Ta = 25
°
C
Ta = 40 C
− °
−
1.5
−
1.5
°
Ta = 85 C
−
2.0
(V)
−
2.0
(V)
°
Ta = 25 C
°
Ta = 85 C
[Driver output current versus output drop voltage]
VFL 60 V, SEGn
[Output current (mA)]
[Driver output current versus output drop voltage]
VFL 20 V, SEGn
[Output current (mA)]
=
−
=
−
0
−
2
−
4
−
6
−
8
−
10 (mA)
0
−
2
−
4
−
6
−
8
−
10 (mA)
0
[VDISP n(V)]
0
[VDISP n(V)]
−
−
−
−
0.5
1.0
1.5
0.5
1.0
1.5
Ta =
Ta = 25 C
Ta = 85
−
40
°
C
−
−
°
Ta = 40 C
− °
−
−
°
C
−
−
2.0
(V)
– 2.0
(V)
Ta = 25 C
°
°
Ta = 85 C
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