Manufacturer Part Number
BTA06-600SWRG
Manufacturer
STMicroelectronics
Introduction
The BTA06-600SWRG is a Triac semiconductor from STMicroelectronics, specializing in Thyristor TRIACs.
Product Features and Performance
Logic - Sensitive Gate TRIAC
Maximum Off-State Voltage of 600 V
Maximum On-State Current of 6 A (RMS)
Maximum Gate Trigger Voltage of 1.3 V
Non-Repetitive Surge Current of 60A (50Hz), 63A (60Hz)
Maximum Gate Trigger Current of 10 mA
Maximum Holding Current of 15 mA
Operating Temperature Range from -40°C to 125°C
Through-Hole Mounting Type
Product Advantages
Sensitive Gate allows for direct interfacing with microcontrollers
Capable of handling moderate power loads with current ratings of up to 6 A
High off-state voltage tolerance provides stability in high voltage applications
Key Technical Parameters
Off-State Voltage: 600 V
On-State Current (It (RMS)): 6 A
Gate Trigger Voltage (Vgt): 1.3 V
Non-Repetitive Surge Current (Itsm): 60A / 63A
Gate Trigger Current (Igt): 10 mA
Holding Current (Ih): 15 mA
Operating Temperature Range: -40°C ~ 125°C
Quality and Safety Features
Encapsulated within a TO-220 package for thermal and mechanical protection
Compliance with international safety standards for electronic components
Compatibility
Through-Hole TO-220-3 package for easy integration into existing circuits
Application Areas
Motor Control Circuits
Lighting and Heating Control Systems
Power Regulation Applications
Home Appliances Control
Industrial Automation Systems
Product Lifecycle
Product Status: Active
The BTA06-600SWRG is currently in active production with continued manufacturer support.
Several Key Reasons to Choose This Product
Sensitive Gate enables low-power triggering for direct microcontroller interfacing.
600 V maximum off-state voltage allows for robust performance in fluctuating voltage conditions.
Available in a standard package, facilitating easy design-in for multiple applications.
STMicroelectronics' reputation for reliable and long-lasting semiconductor components.
Provides surge current capabilities, making the device suitable for applications with temporary overcurrent conditions.