# A B C D E F G H I J K L M N O P Q R S T U V W X Y Z

Philips Semiconductors BT136 Series E Data Sheet

Summary

These high-sensitivity triacs are designed for general-purpose, bidirectional switching and phase control applications requiring robust performance in all four electrical quadrants. The accompanying manual provides comprehensive technical specifications, including detailed limiting values, thermal resistances, and full dynamic characteristics. This datasheet serves as a crucial resource for engineers and designers developing industrial power supply or motor control systems that require reliable and controlled current management.

📄 Preview PAGE OF 6

Page 1 Text Content

查询BT136 series E供应商 Philips Semiconductors Product specification

Triacs BT136 series E sensitive gate

GENERAL DESCRIPTION QUICK REFERENCE DATA Passivated, sensitive gate triacs in SYMBOL PARAMETER MAX. MAX. UNIT plastic envelope, intended for use in general purpose bidirectional BT136- 600E 800E

switching and phase control VDRM Repetitive peak off-state

applications, where high sensitivity is voltages

required in all four quadrants. IT(RMS) RMS on-state current

ITSM Non-repetitive peak on-state

current

PINNING - TO220AB 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.

June 2001 Rev 1.400

Page Summary Contents For Philips Semiconductors BT136 Series E Data Sheet

Page 1 查询BT136 series E供应商 Philips Semiconductors Product specification Triacs BT136 series E sensitive gate GENERAL DESCRIPTION QUICK REFERENCE DATA Passivated, sensitive gate triacs in SYMBOL PARAMETER MAX...
Page 2 Philips Semiconductors Product specification Triacs BT136 series E sensitive gate THERMAL RESISTANCES SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT Rth j-mb Thermal resistance full cycle 3.0 K/W jun...
Page 3 Philips Semiconductors Product specification Triacs BT136 series E sensitive gate Ptot / W Tmb(max) / C IT(RMS) / A IT(RMS) / A Tmb / C Fig.1. Maximum on-state dissipation, Ptot, versus rms Fig.4. Max...
Page 4 Philips Semiconductors Product specification Triacs BT136 series E sensitive gate IGT(Tj) IT / A IGT(25 C) Tj = 125 C Tj = 25 C T2+ G+ typ max T2+ G- 2.5 Vo = 1.27 V T2- G- Rs = 0.091 ohms T2- G+ Tj /...
Page 5 Philips Semiconductors Product specification Triacs BT136 series E sensitive gate MECHANICAL DATA Dimensions in mm Net Mass: 2 g max 10,3 max 5,9 min 15,8 max 3,03,0 max not tinned 13,5 min 1,3 max (2...
Page 6 Philips Semiconductors Product specification Triacs BT136 series E sensitive gate DEFINITIONS DATA SHEET STATUS DATA SHEET PRODUCT DEFINITIONS STATUS2 STATUS3 Objective data Development This data shee...

Manual Details

Brand Philips
Pages 6
File Size 37.37 KB
Published July 04, 2026
10 views

Enter the captcha to get the download link:

captcha

Frequently Asked Questions

What is the RMS on-state current rating of BT136 series E?

The maximum RMS on-state current is 4A when operated at a full sine wave with mounting base temperature ≤ 107 ˚C.

What is the repetitive peak off-state voltage for BT136-800E?

The BT136-800E has a maximum repetitive peak off-state voltage of 800V.

Can BT136 series E triacs be used in life support systems?

No, they are not designed for life support applications, use in such systems is at the customer's own risk.