TRIAC( Surface Mount Device / Non-isolated)
TMG3D80D
Triac TMG3D80D is designed for full wave AC control applications. It can be used as an ON/OFF function or for phase control operation.
Typical Applications
6.60 0.20 ± 5.34 0.30 ± TC POINT
2
( Sensitive Gate)
TO-252
(5.34) (0.9)
2.70 0.20 ±
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 ±
2
6.10 0.20 ±
0.80 0.20 ±
MIN 1.40 TYP 1.90
1
2
3
MIN 0.55
1
0.96 0.20 ± 0.76 0.20 ± 2.30 0.20 ± 0.50 0.10 ± 1.02 0.20 ± 2.30 0.20 ±
Features
3
IT(RMS)=3A ● High Surge Current ● Low Voltage Drop ● Lead-Free Package
●
2.30 0.20 ±
1 T1 2 T2 3 Gate
2
Identifying Code:T3D8D
Unit:mm
■Maximum Ratings
Symbol VDRM
( IT RMS)
(Tj=25℃ unless otherwise specified)
Item Repetitive Peak Off-State Voltage R.M.S. On-State Current Surge On-State Current I t(for fusing)
2
Reference Tc=107℃ One cycle, 50Hz/60Hz, Peak value non-repetitive
Ratings 800 3 27/30 3.7 1.5 0.1 1 7 −40∼+125 −40∼+150 0.32
Unit V A A A2S W W A V ℃ ℃ g
ITSM It
2
PGM
( PG AV)
Peak Gate Power Dissipation Average Gate Power Dissipation Peak Gate Current Peak Gate Voltage Operating Junction Temperature Storage Temperature Mass
IGM VGM Tj Tstg
■Electrical Characteristics
Symbol IDRM VTM + I GT1
− I GT1 + I GT3 − I GT3 + V GT1 − V GT1 + V GT3 − V GT3
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 VD=VDRM, Single phase, half wave, Tj=125℃ IT=4.5A, Inst. measurement
Ratings Min. Typ. Max. 1 1.4 5 5 10 5 1.5 1.5 2.0 1.5
Unit mA V
Gate Trigger Current VD=6V,RL=10Ω Gate Trigger Voltage
mA
VGD 〔dv/dt〕 c IH Rth j-c) ( Rth j-a) (
Tj=125℃,VD=1 2VDRM / Tj=125℃, di/dt〕=−1.5A/ms,VD=400V 〔 c Junction to case Junction to ambient
0.2 5 2 3.8 60
V/ s μ mA ℃/W
Holding Current Thermal Resistance
Trigger mode of the triac
Mode 1 I (
+
)
Mode 2 I ) (
−
Mode 3 III (
+
)
Mode 4 III ) (
−
SanRex 50 Seaview Blvd. Port Washington, NY 11050 PH(516)625-1313 FX(516)625-8845 E-mail:semi@sanrex.com
(0.65) (0.90)
V
V
(5.21)
2.30 0.10 ± 0.50 0.10 ±
TMG3D80D
Gate Characteristics
VGM (7V) PGM (1.5W)
1 0
10 0
On-State Characteristics MAX) (
T= 5 j2 ℃ T= 2 ℃ j1 5
On-State Current A) (
Gate Voltage (V)
1 0
PG (0.1W) (AV) 25℃ 1+GT1 1−GT1 1−GT3 IGM (1A)
1
25℃ 1+GT3
1
VGD 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 HZ 0
1 0
Rth (j−c)
1 5
5 HZ 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.)
IGT −Tj (Typical)
10 00
10 00
VGT −Tj (Typical)
IGT (t℃) ×100 (%) IGT 2 ℃) (5
I+GT1 !+) ( I−GT1 !−) ( I−GT3 #−) (
VGT (t℃) ×100 (%) VGT 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 (℃)
SanRex 50 Seaview Blvd. Port Washington, NY 11050 PH(516)625-1313 FX(516)625-8845 E-mail:semi@sanrex.com
TMG3D80D
Allowable Ambient Temperature (℃)
RMS On-State vs Allowable Ambient Temperature
0 θ 30 6゜ π θ 2π
15 2 10 0 7 5 5 0 2 5
θ Conduction Angle :
0 0 02 04 06 08 1 12 14 16 18 2 22 24 . . . . . . . . . .
RMS On-State Current (A)
SanRex 50 Seaview Blvd. Port Washington, NY 11050 PH(516)625-1313 FX(516)625-8845 E-mail:semi@sanrex.com
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