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BT136-600E 4Q TRIAC: Datasheet, Circuit and Equivalent

TRIAC SENS GATE 600V 4A TO220AB The BT136 is TRIAC with 4A maximum terminal current. This post mainly covers datasheet, pinout, circuit, equivalents, use, and other details about BT136 Triac. Furthermore, there is a huge range of semiconductors, capacitors, resistors, and Ics in stock. Welcome your RFQ!

2008

Sep 23, 2021

Wendy Francis

BT136 BASIC WORKING OF BT136 TRIAC

 

TRIAC SENS GATE 600V 4A TO220AB

The BT136 is TRIAC with 4A maximum terminal current. This post mainly covers datasheet, pinout, circuit, equivalents, use, and other details about BT136 Triac. Furthermore, there is a huge range of semiconductors, capacitors, resistors, and Ics in stock. Welcome your RFQ!

BT136-600E/02,127

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What is BT136?

The BT136 is TRIAC with 4A maximum terminal current. The BT136's gate threshold voltage is likewise very low, allowing it to be driven by digital circuits. TRIACs are often utilized for switching AC applications since they are bi-directional switching devices.

 

BT136 Pinout

 

 

Pin   Number Pin Name Description
1 Main Terminal  1 Connected to Phase or   neutral of AC mains
2 Main Terminal 2 Connected to Phase or   neutral of AC mains
3 Gate Used to trigger the   SCR.

BT136 CAD Model

BT136 Symbol

 

 

BT136 Footprint

Specifications

NXP USA Inc. BT136-600E/02,127 technical specifications, attributes, parameters and parts with similar specifications to NXP USA Inc. BT136-600E/02,127.

BT136-600E/02,127 Tech Specifications

NXP USA Inc. BT136-600E/02,127 technical specifications, attributes, parameters and parts with similar specifications to NXP USA Inc. BT136-600E/02,127.

Product Attribute Attribute Value
Mounting TypeThrough Hole
Package / CaseTO-220-3
Surface MountNO
Voltage-Off State600V
Operating Temperature125°C TJ
PackagingTube
Published2011
Part StatusObsolete
Product Attribute Attribute Value
Moisture Sensitivity Level (MSL)1 (Unlimited)
Base Part NumberBT136
Pin Count3
ConfigurationSingle
Trigger Device TypeTRIAC
Voltage - Gate Trigger (Vgt) (Max)1.5V
Current - Non Rep. Surge 50, 60Hz (Itsm)25A 27A
Current - Gate Trigger (Igt) (Max)10mA
Product Attribute Attribute Value
Current - Hold (Ih) (Max)15mA
Current - On State (It (RMS)) (Max)4A
Repetitive Peak Off-state Voltage600V
Leakage Current (Max)0.5mA
Triac TypeLogic - Sensitive Gate
Holding Current-Max15mA
Source Url Status Check Date2013-06-14 00:00:00
RoHS StatusROHS3 Compliant
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BT136 Features

  • High blocking voltage capability

  • Low holding current for low current loads and lowest EMI at commutation

  • Planar passivized for voltage ruggedness and reliability

  • Sensitive gate

  • Triggering in all four quadrants

BT136 Applications

  • General Purpose Switching

  • AC Light dimmers

  • Strode lights

  • AC motor speed control

  • Noise coupling circuits

  • Controlling AC loads using MCU/MPU

  • Ac/DC Power control

BT136 Alternatives

BT139, BTA16, BT169, Q4008

How to use BT136 TRIAC

BT136 Circuit

The TRIAC in this circuit is controlled by the switch; when the switch is pressed, the TRIAC closes the connection between the AC bulb and the AC mains. For this to happen, the TRIAC's gate pin must be exposed to a voltage larger than the threshold gate voltage, as well as a current greater than the gate trigger current. This will activate the TRIAC.

Because the TRIAC and SCR have many of the same features, the TRIAC will not turn off when the gate voltage is removed, just like the SCR. To switch off the SCR again, we need a particular form of circuit called a commutation circuit. Normally, this commutation is accomplished by lowering the load current (forced commutation) to a level lower than the holding current. To put it another way, the TRIAC will stay on only as long as the load current exceeds the TRIAC's holding current.

 

BT136 Package Dimensions

BT136 Package Dimensions

BT136 Manufacturer

NXP Semiconductors is dedicated to providing secure connectivity solutions for embedded applications. The company has 45,000 employees in more than 35 countries and has been operating, with its experience and expertise, for more than 60 years. As a leader in this field, NXP is driving innovation in the secure connected vehicle, end-to-end security & privacy, and smart connected solutions markets, with the hope of making lives easier, better, and safer free scale Semiconductor parts are now a part of the NXP family

Datasheet PDF

Download datasheets and manufacturer documentation for NXP USA Inc. BT136-600E/02,127.

BT136-600E/02,127 Documents

Download datasheets and manufacturer documentation for BT136-600E/02,127

Datasheets
BT136-600E

Frequently Asked Questions

What is the use of BT136?
The BT136 is TRIAC with 4A maximum terminal current. The gate threshold voltage of the BT136 is also very less so can be driven by digital circuits. Since TRIACs are bi-directional switching devices they are commonly used for switching AC applications.
How do I use BT136?
The BT136 is TRIAC with 4A maximum terminal current. The gate threshold voltage of the BT136 is also very less so can be driven by digital circuits. Since TRIACs are bi-directional switching devices they are commonly used for switching AC applications.
Can the TRIAC BT136 directly replace BTA08?
No, it can’t. BTA08-600 main parameters: current-IT(RMS): 8.0A voltage-VDRM: ≥600V bt136 main parameters: current-IT(RMS): 4.0A voltage-VDRM: ≥600V It can be seen that the main difference is the large difference in current, so the BT136 cannot directly replace BTA08.
FAQ
What is the use of BT136?
The BT136 is TRIAC with 4A maximum terminal current. The gate threshold voltage of the BT136 is also very less so can be driven by digital circuits. Since TRIACs are bi-directional switching devices they are commonly used for switching AC applications.
How do I use BT136?
The BT136 is TRIAC with 4A maximum terminal current. The gate threshold voltage of the BT136 is also very less so can be driven by digital circuits. Since TRIACs are bi-directional switching devices they are commonly used for switching AC applications.
Can the TRIAC BT136 directly replace BTA08?
No, it can’t. BTA08-600 main parameters: current-IT(RMS): 8.0A voltage-VDRM: ≥600V bt136 main parameters: current-IT(RMS): 4.0A voltage-VDRM: ≥600V It can be seen that the main difference is the large difference in current, so the BT136 cannot directly replace BTA08.

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