Conductor led regulable triac SG50AA120
$4.5≥1000Piece/Pieces
Tipo de Pago: | L/C,T/T,Paypal |
Incoterm: | FOB,CFR,CIF |
Cantidad de pedido mínima: | 1000 Piece/Pieces |
transporte: | Ocean,Air |
Hafen: | Shanghai |
$4.5≥1000Piece/Pieces
Tipo de Pago: | L/C,T/T,Paypal |
Incoterm: | FOB,CFR,CIF |
Cantidad de pedido mínima: | 1000 Piece/Pieces |
transporte: | Ocean,Air |
Hafen: | Shanghai |
Modelo: YZPST-SG50AA120
Marca: YZPST
Unidades de venta | : | Piece/Pieces |
Tipo de paquete | : | 1. Embalaje anti-electrostático 2. Caja de cartón 3. Embalaje protector de plástico |
Triac YZPST-SG50AA120
Conductor led regulable triac SG50AA120
TRIAC (TIPO AISLADO)
Los SG50AA son triacs moldeados aislados adecuados para una amplia gama de aplicaciones como copiadora, horno microondas, interruptor de estado sólido, control de motor, control de luz y control de calentador.● IT (AV) 50A
● Alta capacidad de sobretensión 330A
● Terminales de pestañas
Symbol |
Item |
|
|
|
Unit |
SG50AA80 |
SG50AA120 |
SG50AA160 |
|||
VDRM |
Repetitive Peak Off-State Voltage |
800 |
1200 |
1600 |
V |
Symbol |
Item |
Conditions |
Ratings |
Unit |
IT(RMS) |
R.M.S. On-State Current |
Tc=58℃ |
50 |
A |
ITSM |
Surge On-State Current |
One cycle, 50Hz/60Hz, peak, non-repetitive |
450 |
A |
I2t |
I2t |
Value for one cycle of surge current |
730 |
A2S |
PGM |
Peak Gate Power Dissipation |
|
10 |
W |
PG(AV) |
Average Gate Power Dissipation |
|
1 |
W |
IGM |
Peak Gate Current |
|
3 |
A |
VGM |
Peak Gate Voltage |
|
10 |
V |
di/dt |
Critical Rate of Rise of On-State Current |
IG=100mA,Tj=25℃,VD=1/2VDRM, |
100 |
A/μs |
Tj |
Operating Junction Temperature |
|
-25 to +125 |
℃ |
Tstg |
Storage Temperature |
|
-40 to +125 |
℃ |
|
Mounting Torque(M4) |
Recommended Value 1.0-1.4(10-14) |
1.5(15) |
N.m |
|
Mass |
Typical value |
2 |
g |
Eléctrica a l C h ara c t e ristics
Symbol |
Item |
Conditions |
Ratings |
Unit |
|
IDRM |
Reptitive Peak Off-State Current,
max |
VD=VDRM, Single phase, half wave, Tj=125℃ |
5 |
mA |
|
VTM |
Peak On-State Voltage, max |
On-State Current [√ 2 × IT ( RMS )], Inst.
measurement |
1.4 |
V |
|
I + GT1 |
1 |
Gate Trigger Current, max |
Tj=25℃,IT=1A,VD=6V |
80 |
mA |
I -GT1 |
2 |
Tj=25℃,IT=1A,VD=6V |
80 |
||
I + GT3 |
3 |
|
- |
||
I -GT3 |
4 |
Tj=25℃,IT=1A,VD=6V |
80 |
||
V+ GT1 |
1 |
Gate Trigger Voltage, max |
Tj=25℃,IT=1A,VD=6V |
3 |
V |
V-GT1 |
2 |
Tj=25℃,IT=1A,VD=6V |
3 |
||
V+ GT3 |
3 |
|
- |
||
V-GT3 |
4 |
Tj=25℃,IT=1A,VD=6V |
3 |
||
VGD |
Non-Trigger Gate Voltage, min |
Tj=125℃,VD=1/2VDRM |
0.2 |
V |
|
tgt |
Turn On Time, max. |
IT(RMS),IG=100mA,VD=1/2VDRM,Tj =25℃,dIG/dt=1A/μs |
10 |
V |
|
dv/dt |
Critical Rate of Rise on-State
Voltage,min. |
Tj=125℃,VD=2/3VDRM,Exoponential wave. |
300 |
V/μs |
|
dv/dt]c |
Critical Rate of Rise off-State
Voltage at commutation, min |
Tj=125℃,VD=2/3VDRM,[di/dt]c=15A/ms |
200 |
V/μs |
|
IH |
Holding Current, typ. |
Tj=25℃ |
30 |
mA |
|
Rth(j-c) |
Thermal Impedance, max |
Junction to case |
1.5 |
℃/W |
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