TRIAC
( Surface Mount Device / Non-isolated)
TMG3C60D
Triac
TMG3C60D
is designed for full wave AC control applications.
It can be used as an ON/OFF function or for phase control operation.
Typical Applications
TO-252
(5.34)
(0.9)
0.80
0.20
±
MIN 0.55
Home Appliances : Washing Machines, Vacuum Cleaners, Rice Cookers, Micro
Wave Ovens, Hair Dryers, other control applications
●
Industrial Use
: SMPS, Copier Machines, Motor Controls, Dimmer, SSR,
Heater Controls, Vending Machines, other control
applications
●
0.70
0.20
±
TC POINT
2
2
6.10
0.20
±
MIN 1.40
TYP 1.90
1
2
3
1
3
2.70
0.20
±
Features
0.96
0.20
±
0.76
0.20
±
2.30
0.20
±
0.50
0.10
±
1.02
0.20
±
2.30
0.20
±
I
T(RMS)
=3A
●
High Surge Current
●
Low Voltage Drop
●
Lead-Free Package
●
2.30
0.20
±
2
1 T1
2 T2
3 Gate
Identifying Code:
T3C6D
Unit:
mm
■Maximum
Ratings
Symbol
V
DRM
(
I
T RMS)
(Tj=25℃
unless otherwise specified)
Item
Repetitive Peak Off-State Voltage
R.M.S. On-State Current
Surge On-State Current
I
2
t(for fusing)
Peak Gate Power Dissipation
Average Gate Power Dissipation
Peak Gate Current
Peak Gate Voltage
Operating Junction Temperature
Storage Temperature
Mass
Tc=111℃
Reference
Ratings
600
3
27
/
30
3.7
1.5
0.1
1
7
−40∼+125
−40∼+150
0.32
Unit
V
A
A
A
2
S
W
W
A
V
℃
℃
g
I
TSM
I
2
t
P
GM
(AV)
P
G
One cycle, 50Hz/60Hz, Peak value non-repetitive
I
GM
V
GM
Tj
Tstg
■Electrical
Characteristics
Symbol
I
DRM
V
TM
+
I
GT1
−
I
GT1
+
I
GT3
−
I
GT3
+
V
GT1
−
V
GT1
Item
Repetitive Peak Off-State Current
Peak On-State Voltage
1
2
3
4
1
2
3
4
Non-Trigger Gate Voltage
Critical Rate of Rise of Off-State
Voltage at Commutation
Reference
V
D
=V
DRM
, Single phase, half wave, Tj=125℃
I
T
=4.5A,
Inst. measurement
Ratings
Min.
Typ. Max.
1
1.4
15
15
15
1.5
1.5
1.5
Unit
mA
V
Gate Trigger Current
V
D
=6V,R
L
=10Ω
Gate Trigger Voltage
mA
V
GT3
−
V
GT3
+
V
GD
〔dv
/
dt〕
c
I
H
Rth j-c)
(
Rth j-a)
(
Tj=125℃,V
D
=
1 2
V
DRM
/
Tj=125℃,
/
dt〕
〔di
c=−1.5A
/
ms,V
D
=
2 3
V
DRM
/
Junction to case
Junction to ambient
0.2
5
2
3.8
60
V
/
μs
mA
℃
/
W
Holding Current
Thermal Resistance
Trigger mode of the triac
Mode
1
I
(
+
)
Mode
2
I
)
(
−
Mode
3 III
(
+
)
Mode
4 III )
(
−
(0.65)
(0.90)
V
V
(5.21)
6.60
0.20
±
5.34
0.30
±
2.30
0.10
±
0.50
0.10
±
TMG3C60D
1
0
Gate Characteristics
V
GM
(7V)
P
GM
(1.5W)
10
0
On-State Characteristics MAX)
(
T= 5
½2 ℃
T= 2 ℃
½1 5
On-State Current A)
(
Gate Voltage
(V)
1
0
P
G
(0.1W)
(AV)
25℃
1
+
GT1
1
−
GT1
1
−
GT3
I
GM
(1A)
1
1
V
GD
0.2V)
(
01
.
1
1
0
10
0
10
00
01
.
0
05
.
1
15
.
2
25
.
3
3.
5
Gate Current mA)
(
On-State Voltage
(V)
3.
5
Power Dissipation
(W)
0
π
θ
2π
θ1 0
=8゜
θ1 0
=5゜
θ1 0
=2゜
θ9 ゜
=0
θ6 ゜
=0
θ3 ゜
=0
3
25
.
2
15
.
1
05
.
θ
30
6゜
θ Conduction Angle
:
Allowable Case Temperature
(℃)
4
RMS On-State Current vs
Maximum Power Dissipation
15
2
RMS On-State vs
Allowable Case Temperature
10
2
θ
=30゜
θ
=60゜
θ
=90゜
θ
=120゜
θ
=150゜
θ
=180゜
15
1
0
θ
30
6゜
π
θ
2π
10
1
θ Conduction Angle
:
0
0
05
.
1
15
.
2
25
.
3
15
0
0
05
.
1
15
.
2
25
.
3
RMS On-State Current A)
(
RMS On-State Current
(A)
3
5
Transient Thermal Impedance
(℃/W)
Surge On-State Current Rating
(Non-Repetitive)
10
0
Transient Thermal Impedance
Rth
(j−a)
Surge On-State Current A)
(
3
0
2
5
2
0
6 H
Z
0
1
0
Rth
(j−c)
1
5
5 H
Z
0
1
0
5
0
1
1
0
10
0
1
00
.1
01
.
1
1
0
10
0
10 100 100
00 00 000
Time
(Cycles)
Time
(Sec.)
I
GT
−Tj
(Typical)
10
00
10
00
V
GT
−Tj
(Typical)
I
GT
(t℃)
×100
(%)
I
GT
2 ℃)
( 5
I
+
GT1
!
+
)
(
I
−
GT1
!
−
)
(
I
−
GT3
(#
−
)
V
GT
(t℃)
×100
(%)
V
GT
2 ℃)
( 5
10
0
10
0
I
+
GT1
(!
+
)
I
−
GT1
(!
−
)
I
−
GT3
(#
−
)
1
0
−0
5
−5
2
0
2
5
5
0
7
5
10
0
15
2
1
0
−0
5
−5
2
0
2
5
5
0
7
5
10
0
15
2
Junction Temp. Tj
(℃)
Junction Temp. Tj
(℃)