Brief: Watch as we walk through the full process, from initial setup to real-world testing of the RX27 Cement Resistor. This video demonstrates how these resistors, available in 5W, 10W, and 20W power levels, are constructed and applied in high-power scenarios like power adapters and automotive systems. You'll see their robust, cement-encased design and learn about their exceptional durability and performance in demanding environments.
Related Product Features:
Designed for high power and current applications with power levels of 5W, 10W, and 20W.
Constructed with a cement (refractory mud) encapsulation for heat, moisture, and corrosion resistance.
Features excellent shock resistance, moisture resistance, and good heat dissipation capabilities.
Suitable for printed circuit boards with strong insulation properties and accurate resistance values.
Offers good explosion-proof performance and protective effects for enhanced safety.
Exhibits low resistance temperature coefficient and linear variation for stable performance.
Widely used in power adapters, audio equipment, automotive systems, and industrial instruments.
Provides strong load capacity, durability, and resistance to dust and corrosion.
Vraagstukken:
What are the typical applications for the RX27 Cement Resistor?
The RX27 Cement Resistor is widely used in high-power applications such as power adapters, audio equipment, audio crossovers, instruments, meters, televisions, and automotive systems, where its durability and heat resistance are essential.
How does the cement resistor ensure reliability in demanding environments?
It features a cement (refractory mud) encapsulation that provides excellent shock, moisture, and heat resistance, along with good heat dissipation, explosion-proof performance, and protection against dust and corrosion.
What power ratings are available for the RX27 Cement Resistor?
The RX27 Cement Resistor is available in diverse power levels, including 5W, 10W, and 20W, to suit various high-current and high-power requirements in different electronic applications.