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BT134W-600


Part Number BT134W-600
Manufacturer WeEn
Title 4Q Triac
Description Planar passivated four quadrant triac in a SOT223 surface-mountable plastic package intended for use in applications requiring high bidirectional ...
Features and benefits
• High blocking voltage capability
• High noise immunity suitable for noisy applications
• Planar passivated for voltage ruggedness and reliability
• Surface-mountable package
• Triggering in all four quadrants 3. Applications
• General purpose low power motor control
• General purpose...

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Datasheet BT134W-600 PDF File








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BT134W-600 : SMD Type Thyristor 0.1max +0.050.90 -0.05 +0.151.65 -0.15 Triacs BT134W Series Features Repetitive peak off-state voltages :VDRM=500V 800V RMS on-state current :IT(RMS)=1A Non-repetitive peak on-state current :ITSM=10A SOT-223 6.50+0.2 -0.2 3.00+0.1 -0.1 4 Unit: mm 3.50+0.2 -0.2 0.90+0.2 -0.2 7.00+0.3 -0.3 123 2.9 4.6 0.70+0.1 -0.1 1 T1 2 T2 3G Absolute Maximum Ratings Ta = 25 Parameter Repetitive peak off-state voltages RMS on-state current Non-repetitive peak on-state current I2t for fusing Repetitive rate of rise of on-state current after triggering Peak gate current Peak gate voltage Peak gate power Average gate power Storage temperature Operating junction temperature Thermal r.

BT134W-600 : Planar passivated four quadrant triac in a SOT223 surface-mountable plastic package intended for use in applications requiring high bidirectional transient and blocking voltage capability and high thermal cycling performance. 2. Features and benefits • High blocking voltage capability • High noise immunity suitable for noisy applications • Planar passivated for voltage ruggedness and reliability • Surface-mountable package • Triggering in all four quadrants 3. Applications • General purpose low power motor control • General purpose switching and phase control 4. Quick reference data Table 1. Quick reference data Symbol Parameter Conditions VDRM repetitive peak offstate voltage IT(R.

BT134W-600D : Planar passivated very sensitive gate four quadrant triac in a SOT223 surface-mounable plastic package. This very sensitive gate "series D" triac is intended for interfacing with low power drivers including microcontrollers. 2. Features and benefits • Direct interfacing to logic level ICs • Direct interfacing to low power gate drivers and microcontrollers • High blocking voltage capability • Planar passivated for voltage ruggedness and reliability • Surface-mountable package • Triggering in all four quadrants • Very sensitive gate 3. Applications • General purpose low power motor control • General purpose switching and phase control 4. Quick reference data Table 1. Quick reference data .

BT134W-600D : Planar passivated very sensitive gate four quadrant triac in a SOT223 surface-mounable plastic package. This very sensitive gate "series D" triac is intended for interfacing with low power drivers including microcontrollers. 2. Features and benefits • Direct interfacing to logic level ICs • Direct interfacing to low power gate drivers and microcontrollers • High blocking voltage capability • Planar passivated for voltage ruggedness and reliability • Surface-mountable package • Triggering in all four quadrants • Very sensitive gate 3. Applications • General purpose low power motor control • General purpose switching and phase control 4. Quick reference data Table 1. Quick reference data .

BT134W-600E : Glass passivated, sensitive gate triacs in a plastic envelope suitable for surface mounting, intended for use in general purpose bidirectional switching and phase control applications, where high sensitivity is required in all four quadrants. BT134W series E QUICK REFERENCE DATA SYMBOL VDRM IT(RMS) ITSM PARAMETER BT134WRepetitive peak off-state voltages RMS on-state current Non-repetitive peak on-state current MAX. MAX. UNIT 500E 500 1 10 600E 600 1 10 V A A PINNING - SOT223 PIN 1 2 3 tab DESCRIPTION main terminal 1 PIN CONFIGURATION 4 SYMBOL T2 main terminal 2 gate main terminal 2 1 2 3 T1 G LIMITING VALUES Limiting values in accordance with the Absolute Maximum System (IEC 134). S.

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