TRIACs
BT136 Series
4 Quadrants
ShenZhenHanKingyuan
02.
BT136
4 Quadrants TRIAC
FEATURES
IT(RMS): 4A
VGT: 1.5V
VDRM VRRM:600Vand800V
2
APPLICATIONS
1
1
2
Washing machine,vacuums, massager,solid state relay,
3
3
TO-220
TO-252
AC Motor speed regulation and so on.
1
1
2
2
3
3
TO-251
TO-220F
Absolute Maximum Ratings
(Tj=25°C unless otherwise specifed)
Symbol Parameter
VDRM
VRRM
Conditions
Ratings
BT136-600
600
BT136-800
800
Tc=110°C
4
A
25/27
A
Tp=10ms
3.1
A²s
Tj=125°C
1
W
tp=20us Tj=125°C
2
A
Operating Junction Temperature
~40~125
°C
Storage Temperature
~40~150
°C
Repetitive Peak Off-State Voltage
IT(RMS) R.M.S On-State Current
ITSM
I²t
tp=16.7ms/ tp=10ms
Surge On-State Current
I²t for fusing
PG(AV) Average Gate Power Dissipation
IGM
Tj
TSTG
Peak Gate Current
www.slkormicro.com
1
Unit
V
TRIACs
BT136 Series
4 Quadrants
ShenZhenHanKingyuan
02.
BT136
Electrical Characteristics
Symbol Parameter
Test Conditions
IDRM
Repetitive Peak Off-State
Current
IRRM
Repetitive Peak Reverse
Current
VTM
Forward "on" voltage
VGD
gate non-trigger voltage
IH
Holding current
VGT
Gate trigger voltage
IGT
Gate trigger current
di/dt
Critical-rate of rise of
commutation current.
dv/dt
Critical-rate of rise of
commutation voltage
www.slkormicro.com
(Tj=25°C unless otherwise specifed)
Value
D
E
I,II,III
IV
Unit
≤10
uA
Tj=125°C
≤0.5
mA
Tj=25°C
≤10
uA
Tj=125°C
≤0.5
mA
IT=5A tp=380us
≤1.7
V
VD=12V, Tj=125°C
≥0.2
V
≤10
≤25
VD=12V
IV
G
Tj=25°C
IT=100mA
I,II,III
F
VD=12V,IGT=0.1A
2
≤60
≤1.5
mA
V
5
10
25
50
mA
10
25
70
100
mA
IT=6A ,IGT==0.2A,
dIg/dt=0.2A/us
TJ=125°C
VD=2/3VDRM Gate
open circuit
≤30
5
10
≥50
A /us
≥10
A /us
50
200
V/us
03.
02.
TRIACs
TRIACs
BT136 Series
Series
BT136
4
Quadrants
4 Quadrants
ShenZhenHanKingyuan
Electronic CO.,Ltd
FIG1
BT136
FIG2
RMS on-state current versus case
temperature
Maximum power dissipation versus RMS
on-state current
6
IT(RMS) (A)
6
5
5
4
4
3
3
2
2
1
1
P(w)
α=180°
TO-220/TO-262
TO-251/
TO-252
TO-220F
0
IT(RMS) (A)
0
1
2
3
4
Tc (℃)
0
0
5
25
FIG3
50
75
100
125
4
5
FIG4
On-state characteristics (maximum
values)
Surge peak on-state current versus
number of cycles
ITM (A)
ITSM (A)
30
35
t=20ms
One cycle
30
Tj=Tjmax
10
25
20
15
1
10
Tj=25℃
5
0
1
10
Number of cycles
100
0.1
0
1000
1
FIG5
2
VTM (V)
3
FIG6
FIG.6: Relative variations of gate trigger current,
holding current and latching current versus
junction temperature
Non-repetitive surge peak on-state current
for a sinusoidal pulse with width tp
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