Product Overview: BT136-600D/DG - NXP Semiconductors
The BT136-600D/DG is a high-quality Triac manufactured by NXP Semiconductors, designed to control AC power in a wide array of applications. This robust semiconductor device is capable of switching and controlling high-current loads up to 4A with a peak repetitive off-state voltage (VDRM) of 600V, making it suitable for handling moderate power levels efficiently.
The BT136-600D/DG is a sensitive gate Triac, which means it can be triggered with a low gate current, making it compatible with microcontrollers and other low-power gate trigger circuits. This feature allows for easy integration into digital control systems and offers a high degree of control over AC power circuits.
Packaged in a compact DPAK (TO-252) surface-mount package, the BT136-600D/DG is optimized for printed circuit board mounting, saving space and reducing assembly costs. The package is designed to offer excellent power dissipation and thermal performance, ensuring reliability and longevity even under stressful conditions.
The device is characterized by its high blocking voltage capability and dynamic characteristics, which include fast switching times. This makes the BT136-600D/DG particularly well-suited for applications such as motor control, lighting control (including dimming), and temperature modulation in heating systems. Its versatility also extends to small home appliances, office machines, and various types of automation systems where control of AC power is required.
The BT136-600D/DG is compliant with industry standards and environmental regulations, including RoHS and WEEE, which ensures that it meets the requirements for lead-free and environmentally friendly components. NXP's commitment to quality and performance makes this Triac a reliable choice for designers and engineers looking for an efficient solution to manage AC power in their electronic designs.
In summary, the BT136-600D/DG from NXP Semiconductors is a versatile, sensitive gate Triac that offers efficient control of AC power for a wide range of applications. Its compact form factor, high-performance characteristics, and compliance with environmental standards make it a top choice for modern electronic systems.