Through-hole metal film resistors around 12.1 Ohm
Manufacturer: vishay
The CMF5012R100 Series represents a cutting-edge line of precision resistors specifically engineered for high-performance applications in various electronic systems. These resistors are characterized by their exceptional stability, low temperature coefficient, and high power handling capabilities, ensuring reliable performance in demanding environments. The CMF5012R100 Series utilizes advanced thin-film technology, which allows for tighter tolerances and superior accuracy compared to traditional resistor technologies. With a tolerance of ±0.1% and a temperature coefficient of 25 ppm/°C, these resistors are ideal for applications requiring precise signal integrity and minimal drift over temperature variations.
Designed with versatility in mind, the CMF5012R100 Series is available in a compact 5012 size (0.5" x 0.12") that makes them suitable for both surface-mount and through-hole applications. This size is particularly advantageous for high-density circuit boards where space is at a premium. The series also offers a variety of resistance values, enabling engineers to select the perfect component for their specific needs, whether in analog or digital circuits.
These resistors are particularly well-suited for high-frequency applications, such as RF circuit design, telecommunications, and precision measurement equipment. Their low noise characteristics and excellent linearity make them a preferred choice for instrumentation systems, where accuracy is paramount. Additionally, the CMF5012R100 Series finds applications in automotive electronics, medical devices, and aerospace systems, where reliability and performance under extreme conditions are critical.
In summary, the CMF5012R100 Series stands out for its precision, stability, and versatility, making it an ideal solution for engineers seeking high-quality resistors for a wide array of applications. With their robust design and outstanding electrical characteristics, these resistors ensure optimal performance in both current and future technological landscapes.
CMF50
CMF Series