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PHILIPS BT136S series Data User Guide

Summary

This logic-level BT136S triac is a general-purpose, bidirectional switching device designed for precise AC phase control and reliable power management applications. Ideal for engineers interfacing low-power gate trigger circuits directly to microcontrollers, it facilitates robust current monitoring and controlled switching in advanced electronic systems. The comprehensive technical manual provides exhaustive data on performance limitations, including absolute maximum ratings, thermal dissipation curves, dynamic characteristics (trigger/latching current), and operational parameters across wide temperature ranges, ensuring precise component selection for design integration.

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查询BT136S series D供应商 Philips Semiconductors Product specification

Triacs BT136S series D logic level

GENERAL DESCRIPTION QUICK REFERENCE DATA Passivated, sensitive gate triacs in SYMBOL PARAMETER MAX. UNIT plastic envelope suitable for surface mounting, intended for use in general BT136S - 600D

purpose bidirectional switching and VDRM Repetitive peak off-state 600

phase control applications. These IT(RMS) voltages devices are intended to be interfaced ITSM RMS on-state current directly to microcontrollers, logic Non-repetitive peak on-state current integrated circuits and other low power gate trigger circuits.

PINNING - SOT428 PIN CONFIGURATION SYMBOL

PIN DESCRIPTION tab

MT1 T1T2 MT2 gate

tab MT2

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

June 2001 Rev 1.300

Page Summary Contents For PHILIPS BT136S series Data User Guide

Page 1 查询BT136S series D供应商 Philips Semiconductors Product specification Triacs BT136S series D logic level GENERAL DESCRIPTION QUICK REFERENCE DATA Passivated, sensitive gate triacs in SYMBOL PARAMETER MAX....
Page 2 Philips Semiconductors Product specification Triacs BT136S series D logic level THERMAL RESISTANCES SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT Rth j-mb Thermal resistance full cycle 3.0 K/W junct...
Page 3 Philips Semiconductors Product specification Triacs BT136S series D logic level Ptot / W Tmb(max) / C IT(RMS) / A IT(RMS) / A Tmb / C Fig.1. Maximum on-state dissipation, Ptot, versus rms Fig.4. Maxim...
Page 4 Philips Semiconductors Product specification Triacs BT136S series D logic level IGT(Tj) IT / A IGT(25 C) Tj = 125 C T2+ G+ Tj = 25 C typ max 2.5 Vo = 1.27 V T2- G- Rs = 0.091 ohms T2- G+ Tj / C VT / V...
Page 5 Philips Semiconductors Product specification Triacs BT136S series D logic level MECHANICAL DATA Dimensions in mm seating plane Net Mass: 1.1 g 6.73 max 1.1 2.38 max 5.4 0.93 max 4 min 6.22 max 10.4 ma...
Page 6 Philips Semiconductors Product specification Triacs BT136S series D logic level DEFINITIONS DATA SHEET STATUS DATA SHEET PRODUCT DEFINITIONS STATUS1 STATUS2 Objective data Development This data sheet ...

Manual Details

Brand Philips
Pages 6
File Size 38.24 KB
Published July 10, 2026
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Frequently Asked Questions

What is the primary application of the BT136S triac?

It is suitable for general bidirectional switching and VDRM phase control applications.

What are the operating temperature limits for this component?

The storage temperature ranges from -40 to 150°C, while the maximum junction (operating) temperature is -125°C.

How should I calculate heat dissipation when mounting it on an FR4 PCB?

You must consider the thermal resistance from junction to ambient ($R_{th j-a}$), which has a specified value of 75 K/W for this footprint.

Are these products suitable for use in life support medical devices?

No, these products are explicitly not designed for use in life support appliances where malfunction can result in personal injury.