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PHILIPS BT134 Series Data Sheet User Guide

Summary

This Philips Semiconductors BT134 series triacs datasheet provides complete electrical specifications for bidirectional triode AC switches in glass passivated plastic packages. Covers repetitive peak off-state voltage ratings of 500V 600V and 800V for different application requirements, RMS on-state current rating of 4A for medium-power AC load switching, non-repetitive peak on-state current surge capability of 25A for handling power-up transient conditions, trigger current specifications for re

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查询BT134-500供应商 Philips Semiconductors Product specification

Triacs BT134 series

GENERAL DESCRIPTION QUICK REFERENCE DATA Glass passivated triacs in plastic SYMBOL PARAMETER MAX. MAX. MAX. UNIT envelope, intended for use in applications requiring high BT134- bidirectional transient and blocking BT134- 500F 600F 800F voltage capability and high thermal BT134- 500G 600G 800G

cycling performance. Typical VDRM Repetitive peak off-state

applications include motor control, voltages

industrial and domestic lighting, IT(RMS) RMS on-state current

heating and static switching. ITSM Non-repetitive peak on-state

current

PINNING - SOT82 PIN CONFIGURATION SYMBOL PIN DESCRIPTION main terminal 1

main terminal 2 gate

tab main terminal 2

LIMITING VALUES Limiting values in accordance with the Absolute Maximum System (IEC 134). SYMBOL PARAMETER CONDITIONS MIN. MAX. UNIT

VDRM Repetitive peak off-state

voltages

IT(RMS) RMS on-state current full sine wave; Tmb ≤ 107 ˚C ITSM Non-repetitive peak full sine wave; Tj = 25 ˚C prior to

on-state current surge

t = 20 ms t = 16.7 ms

I2t I2t for fusing t = 10 ms 3.1 A2s d IT/dt Repetitive rate of rise of ITM = 6 A; IG = 0.2 A;

on-state current after d IG/dt = 0.2 A/µs triggering T2+ G+ A/µs

IGM Peak gate current VGM Peak gate voltage PGM Peak gate power PG(AV) Average gate power over any 20 ms period 0.5 Tstg Storage temperature -40 ˚C Tj Operating junction ˚C

temperature

1 Although not recommended, off-state voltages up to 800V may be applied without damage, but the triac may switch to the on-state. The rate of rise of current should not exceed 3 A/µs.

August 1997 Rev 1.200

Page Summary Contents For PHILIPS BT134 Series Data Sheet User Guide

Page 1 查询BT134-500供应商 Philips Semiconductors Product specification Triacs BT134 series GENERAL DESCRIPTION QUICK REFERENCE DATA Glass passivated triacs in plastic SYMBOL PARAMETER MAX. MAX. MAX. UNIT envelop...
Page 2 Philips Semiconductors Product specification Triacs BT134 series THERMAL RESISTANCES SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT Rth j-mb Thermal resistance full cycle 3.0 K/W junction to mounting...
Page 3 Philips Semiconductors Product specification Triacs BT134 series BT136 IT(RMS) / A BT136 Ptot / W Tmb(max) / C IT(RMS) / A Tmb / C Fig.1. Maximum on-state dissipation, Ptot, versus rms Fig.4. Maximum ...
Page 4 Philips Semiconductors Product specification Triacs BT134 series IGT(Tj) IT / A BT136 IGT(25 C) BT136 Tj = 125 C T2+ G+ Tj = 25 C typ max Vo = 1.27 V Rs = 0.091 ohms Tj / C VT / V Fig.7. Normalised ga...
Page 5 Philips Semiconductors Product specification Triacs BT134 series MECHANICAL DATA Dimensions in mm Net Mass: 0.8 g mounting 2.8 7.8 2.3 max 2.5 11.1 max 1) 2.54 max 15.3 min 0.88 max 1) Lead dimensions...
Page 6 Philips Semiconductors Product specification Triacs BT134 series DEFINITIONS Data sheet status Objective specification This data sheet contains target or goal specifications for product development. P...

Manual Details

Brand Philips
Pages 6
File Size 48.13 KB
Published June 17, 2026
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Frequently Asked Questions

What types of applications are recommended for this triac?

Applications include motor control, industrial lighting, and domestic lighting circuits.

Can I operate this device if the voltage exceeds the specified limits?

No. Stress above the limiting values (Absolute Maximum Rating System) may cause permanent damage to the device.

What is the maximum rated continuous on-state current?

The typical RMS on-state current rating (T(RMS)) is 4 A for full sine wave operation.