BTA10-400CRG STMicroelectronics, BTA10-400CRG Datasheet - Page 3

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BTA10-400CRG

Manufacturer Part Number
BTA10-400CRG
Description
TRIAC 400V 10A 25MA INS TO-220AB
Manufacturer
STMicroelectronics
Datasheets

Specifications of BTA10-400CRG

Triac Type
Standard
Mounting Type
Through Hole
Configuration
Single
Current - Hold (ih) (max)
25mA
Voltage - Off State
400V
Current - Gate Trigger (igt) (max)
25mA
Current - Non Rep. Surge 50, 60hz (itsm)
100A, 105A
Current - On State (it (rms)) (max)
10A
Voltage - Gate Trigger (vgt) (max)
1.3V
Package / Case
TO-220-3
Current - On State (it (rms) (max)
10A
Current, Average Input
10 A
Current, Dc Gate-trigger
35 mA
Current, On-state, Rms, Maximum
4 A A
Current, Surge, Non-repetitive Peak Forward
105 A
Dissipation, Gate-power, Average
1 W
Package Type
TO-220AB
Resistance, Thermal, Junction To Case
2.4 °C⁄W
Temperature, Operating, Maximum
125 °C
Temperature, Operating, Minimum
-40 °C
Thermal Resistance, Junction To Ambient
60 °C⁄W
Voltage, Dc Gate-trigger
1.3 V (Max.)
Voltage, Repetitive Peak Off State
600
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
497-6666-5
BTA10-400CRG

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
BTA10-400CRG
Manufacturer:
STMicroelectronics
Quantity:
1 832
Part Number:
BTA10-400CRG
Manufacturer:
ST
0
Fig.1 : Maximum RMS power dissipation versus RMS
on-state current (F=50Hz).
(curves are cut off by (dI/dt)c limitation)
Fig.3 : RMS on-state current versus case temperature.
12
10
Fig.5 : Relative variation of gate trigger current and
holding current versus junction temperature.
14
12
10
8
6
4
2
0
I
8
6
4
2
0
T(RMS)
0 10 20 30 40 50 60 70 80 90 100 110 120 130
0
P(W)
= 30
1
(A)
= 180
180
o
2
= 60
o
O
Tcase( C)
= 90
3
o
o
4
= 120
o
5
= 180
o
6
o
7
I
T(RMS)
8
9
(A)
10
Fig.2 : Correlation between maximum RMS power
dissipation and maximum allowable temperatures (T amb
and T case ) for different thermal resistances heatsink +
contact.
Fig.4 : Relative variation of thermal impedance versus
pulse duration.
0.01
Fig.6 : Non repetitive surge peak on-state current
versus number of cycles.
14
12
10
0.1
8
6
4
2
0
1E-3
0
1
P (W)
Zth/Rth
Tamb ( C)
20
1E-2
o
40
Zt h( j-c)
1E-1
60
1E +0
80
100
1 E +1
Rth = 0 C/W
Zt h( j-a)
BTA10 GP
120
2.5 C/W
10 C/W
5 C/W
o
o
o
o
1E +2 5 E+2
Tcase ( C)
tp (s)
140
-85
-95
-105
-115
-125
o
3/4

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