T709N26TOF Infineon Technologies, T709N26TOF Datasheet - Page 5

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T709N26TOF

Manufacturer Part Number
T709N26TOF
Description
SCR Modules 2.6KV 14.5KA
Manufacturer
Infineon Technologies
Datasheet

Specifications of T709N26TOF

Rated Repetitive Off-state Voltage Vdrm
2600 V
Off-state Leakage Current @ Vdrm Idrm
100 mA
Holding Current (ih Max)
600 mA
Mounting Style
Press Fit
Package / Case
T-7526
Breakover Current Ibo Max
14500 A
Gate Trigger Current (igt)
300 mA
Gate Trigger Voltage (vgt)
1.5 V
Repetitive Peak Forward Blocking Voltage
2600 V

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
T709N26TOF
Manufacturer:
HITACH
Quantity:
1 000
Part Number:
T709N26TOF
Quantity:
63
V
[V]
Q
[µAs]
Z
[°C/W]
0,030
0,055
0,020
0,010
G
(th)JC
r
10
10
10
0,6
0,4
0,3
0,2
20
10
3
0
6
4
2
1
4
3
2
8
2
8
2
6
4
6
4
10
10
10
T 709 N / 13
Bild / Fig. 13
Steuercharakteristik mit Zündbereichen / Gate characteristic with trigging
areas v
Parameter:
–––––––––––––––––––––––––––––––––––––––––––––––––––––––––––––
Steuerimpulsdauer / trigger puls duration t
–––––––––––––––––––––––––––––––––––––––––––––––––––––––––––––
Höchstzulässige Spitzensteuerverlustleistung /
Max. rated peak gate power dissipation
–––––––––––––––––––––––––––––––––––––––––––––––––––––––––––––
Bild / Fig. 15
Sperrverzögerungsladung / Recovered charge Q
t
Parameter: Durchlaßstrom / On-state current i
T 709 N / 17
T 709 N / 15
Bild / Fig. 17
Transienter innerer Wärmewiderstand / Transient thermal impedance
Z
Parameter: Stromflußwinkel / current conduction angle
vj
0
thJC
2
= t
0
20
vj max
= f(t)
4
G
= f(i
40
2
, v
10
Anodenseitige Kühlung / Anode-sided cooling
Beidseitige Kühlung / Two-sided cooling
120°
180°
30°
DC
G
R
60°
90°
60 100 200 400
=
20 40
), V
= 0,5 V
mA
ms
D
= 6 V
4
t
vj
RRM
100
= +125 °C
, v
200
6
RM
+25 °C
400
-10 °C
= 0,8 V
8
-25 °C
10
1
1
-40 °C
1
RRM
2
i TM =
g
2
4
TM
500 A
[W]
[ms] 10
2
4
1000 A
r
10
= f(di/dt)
2000 A
6
-di/dt [A/µs]
20
a
40
10
A
40 100
a
s
4
b
1
80
20
b
i
G
t
c
200
c
0,5
100 150
d
6
40 60
400
200 A
100 A
d
0,1
50 A
20 A
8
1000
100
10
2
t
[µs]
Z
[°C/W]
Analytische Elemente des transienten Wärmewiderstandes Z
Analytical elements of transient thermal impedance Z
Beidseitig / Two-sided
Anodenseitig / Anode-sided
Kathodenseitig / Cathode-sided
Analytische Funktion / Analytical function:
Z
gd
R
R
R
0,030
0,020
0,010
0,055
(th)JC
thJC
1000
n
n
n
thn
thn
thn
100
[s]
[s]
[s]
0,4
0,2
0,1
Pos. n
Pos. n
Pos. n
40
20
10
[°C/W]
[°C/W]
[°C/W]
0
4
2
1
=
10
10
T 709 N / 14
Bild / Fig. 14
Zündverzug / Gate controlled delay time t
t
a - Maximaler Verlauf / Limiting characteristic
b - Typischer Verlauf / Typical characteristic
T 709 N / 16
Bild / Fig. 16
Transienter innerer Wärmewiderstand / Transient thermal impedance
Z
Parameter: Stromflußwinkel / current conduction angle
120°
180°
n
vj
n=1
30°
60°
90°
thJC
max
= 25 °C, di
=
0
20 40
20
R
= f(t)
thn
0,0016
0,00141
0,00159
0,00141
0,0019
0,0017
40 100
(1-e
Anodenseitige Kühlung / Anode-sided cooling
Beidseitige Kühlung / Two-sided cooling
1
1
1
G
ms
-
/dt = i
t
n
100 200
mA
)
0,0026
0,0343
0,00326
0,0408
0,0066
0,0784
200 400
GM
/1µs
2
2
2
400
1
0,0146
0,255
0,0126
0,253
0,0158
0,635
2
3
3
3
1
4
gd
0,0079
1,15
0,0119
1,44
0,0224
3,69
2
= f(i
10
thJC
4
4
4
4
G
)
per arm for DC
20
s
0,00665
12,2
0,0253
21,6
0,0013
17,9
thJC
40 100
10
A
5
5
5
pro Zweig für DC
a
b
20
i
T 709 N
G
t
0,006
144
0,012
144
200
40
6
6
6
400
1000
100

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