Transient Thermal Impedance
θ
(℃/W)
j-c
;
2
TG35C/E/D
Gate Characteristics
1
3
0
On-State Voltage
1
1
0
Peak Gate Voltage
(10V)
5
2
Gate Voltage
(V)
2
−25℃
Av
er
ag
e
Peak Gate Current
(3A)
5
Pe
Po ak G
we at
( e
r1
0W
Gate
)
Distribution
Po
we
(
r
On-State Current
(A)
1
2
0
1
0
0
25℃
Ga
te
125℃
5
2
5
2
1W
)
Maximum Gate Voltage that will not trigger any unit
1
1
0
1
−1 1
0
1
0
2
5
1
2
0
2
5
1
3
0
2
5
5
0
1
2
3
4
5
6
7
8
Gate Current
(mA)
On-State Voltage
(V)
Power Dissipation
(W)
4
0
2
360
。
θ
=180゜
θ
=150゜
θ
=120゜
θ
=90゜
θ
=60゜
θ
=30゜
: Conduction Angle
3
0
Allowable Case Temperature
(℃)
5
0
On State Current vs.
Maximum Power Dissipation
10
3
10
2
10
1
10
0
9
0
8
0
7
0
6
0
On State Current vs.
Allowable Case Temperature
2
0
2
360
。
1
0
: Conduction Angle
θ
=30゜
θ
=60゜
θ
=90゜
θ
=120゜
θ
=150゜
θ
=180゜
0
0
5
1
0
1
5
2
0
2
5
3
0
3
5
4
0
5
0
0
5
1
0
1
5
2
0
2
5
3
0
3
5
4
0
RMS On-State Current
(A)
RMS On-State Current
(A)
3
5
3
0
2
5
2
0
1
5
1
0
5
Ambient temp. vs. RMS On-State Current
Conduction Angle 180℃
Apply following figures for
different conduction angles
θ 150゜
: :
1.02
θ 120゜
: :
1.11
θ 90゜
: :
1.26
θ 60゜
: :
1.38
θ 30゜
: :
1.75
30
5
30
0
20
5
20
0
10
5
10
0
5
0
Surge On-State Current Rating
(Non-Repetitive)
Tj=25℃ start
F-40 Rth 2 95
Self convection
F-60 Rth 1.53
:
Self convection
F-40 3m/s
Rth 1.28
:
Surge On-State Current
(A)
RMS On-State Current
(A)
60Hz
50Hz
F-60 3m/s
Rth 0.65
:
0
0
(Rth heat Sink Thermal Impedance)
:
2
0
4
0
6
0
8
0
10
0
10
2
10
4
0
0
1
0
2
5
1
1
0
2
5
1
2
0
Maximum Allowable Ambient Temperature
(℃)
Time
(cycles)
7
6
5
4
3
2
1
Transient Thermal Impedance
7
6
Self convection
F-40
Self convection
F-60
F-40 3m/s
F-60 3m/s
Junction to case
5
4
3
2
1
0
ー3
1
0
1
ー2
0
1
ー1
0
1
0
0
Time
t
sec)
(
1
1
0
1
2
0
1
3
0
0
1
4
0
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