BT134-D SEMIWELL | Alldatasheet

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Technical content

Features

◆ Repetitive Peak Off-State Voltage : 600V ◆ R.M.S On-State Current ( IT(RMS)= 4 A ) ◆ High Commutation dv/dt ◆ Sensitive Gate Triggering 4 Mode General Description This device is sensitive gate tr iac suitable for direct coupling to TTL, HTL, CMOS and applic ation such as various logic functions, low power AC switching applications, such as fan speed, small light controllers and home appliance equipment. 2.T2 3.Gate 1.T1 Symbol SemiWell Semiconductor Bi-Directional Triode Thyristor copyright@SemiWell Semiconductor Co., Ltd., All rights reserved. TO-126 3 2 1 Preliminary

Electrical Characteristics

Min. Typ. Max. IDRM Repetitive Peak Off-State Current VD = VDRM, Single Phase, Half Wave TJ = 125 °C ── 0.5 mA VTM Peak On-State Voltage IT = 5 A, Inst. Measurement ── 1.7 V GT1 Ⅰ Gate Trigger Current VD = 6 V, RL=10 Ω ── 5 mA I - GT1 Ⅱ ── 5 I - GT3 Ⅲ ── 5 GT3 Ⅳ ── 12 GT1 Ⅰ Gate Trigger Voltage VD = 6 V, RL=10 Ω ── 1.5 V GT1 Ⅱ ── 1.5 GT3 Ⅲ ── 1.5 GT3 Ⅳ ── 2.5 VGD Non-Trigger Gate Voltage TJ = 125 °C, VD = 1/2 VDRM 0.2 ── V (dv/dt)c Critical Rate of Rise Off-State Voltage at Commutation TJ = 125 °C, [di/dt]c = -0.75 A/ms, VD=2/3 VDRM 5.0 ── V/㎲ IH Holding Current ─ 1.2 ─ mA Rth(j-c) Thermal Impedance Junction to case ── 3.5 °C/W BT134-D

-50 0 50 100 150 0.1 VGT (t o VGT (25 o Junction Temperature [ o 60Hz 50Hz Surge On-State Current [A] Time (cycles) 012345 100 110 120 130 θ = 90 o θ = 150 o θ = 60 o θ = 30 o θ = 180 o θ = 120 o Allowable Case Temperature [ o RMS On-State Current [A] 012345 θ = 90 o θ = 150 o θ = 60 o θ = 30 o θ = 180 o θ = 120 o Power Dissipation [W] RMS On-State Current [A] 125 o C o C On-State Current [A] On-State Voltage [V] 25℃ PG(AV) = 0.5W PGK = 5W IGM=2A VGK = 5V VGD = 0.2V Gate Voltage [V] Gate Current [mA] BT134-D Fig 1. Gate Characteristics Fig 2. On-State Voltage Fig 3. On State Current vs. Maximum Power Dissipation Fig 4. On State Current vs. Allowable Case Temperature Fig 5. Surge On-State Current Rating ( Non-Repetitive ) Fig 6. Gate Trigger Voltage vs. Junction Temperature θ θ 2π 360° π θ : Conduction Angle θ θ 2π 360° π θ : Conduction Angle

Fig 8. Transient Thermal ImpedanceFig 7. Gate Trigger Current vs. Junction Temperature Fig 9. Gate Trigger Characteristics Test Circuit -50 0 50 100 150 0.1 I GT3 I GT1 I GT1 I GT3 IGT (t o IGT (25 o Junction Temperature [ o Transient Thermal Impedance [ o C/W] Time (sec) A V 10Ω RG A V 10Ω RG A V 10Ω RG Test Procedure Ⅰ Test Procedure Ⅱ Test Procedure Ⅲ A V 10Ω RG Test Procedure Ⅳ

Dim. mm Inch A 7.5 7.9 0.295 0.311 B 10.8 11.2 0.425 0.441 C 14.2 14.7 0.559 0.579 D 2.7 2.9 0.106 0.114 E 3.8 0.150 F 2.5 0.098 G 1.2 1.5 0.047 0.059 H 2.3 0.091 I 4.6 0.181 J 0.48 0.62 0.019 0.024 K 0.7 0.86 0.028 0.034 L 1.4 0.055 φ 3.2 0.126 BT134-D 1. Gate 2. T2 3. T1 A B C D E F G H I J K L φ

Dim. mm Inch A 7.5 7.9 0.295 0.311 B 10.8 11.2 0.425 0.441 C 14.2 14.7 0.559 0.579 D 2.7 2.9 0.106 0.114 E 3.8 0.150 F 2.5 0.098 G 1.2 1.5 0.047 0.059 H 2.3 0.091 I 4.6 0.181 J 0.48 0.62 0.019 0.024 K 0.7 0.86 0.028 0.034 L 1.4 0.055 M 5.0 0.197 φ 3.2 0.126 1. Gate 2. T2 3. T1 A B C D E F G H I J K Lφ M BT134-D