Through-hole DIP sockets for IC components
Manufacturer: tyco
The 1-390261 Series is a premium line of high-performance resistors designed to meet the rigorous demands of modern electronic applications. Renowned for their precision and reliability, these resistors feature a robust construction that ensures exceptional stability and tolerance across a wide range of operating conditions. The series utilizes advanced thin-film technology that allows for tight tolerances of ±0.1% and temperature coefficients as low as ±10 ppm/°C, making them ideal for applications requiring high accuracy and repeatability.
One of the key features of the 1-390261 Series is its extensive range of resistance values, enabling engineers to select the perfect component for their specific design needs. The resistors are available in various power ratings, ensuring versatility in applications from low-power consumer devices to high-performance industrial equipment. The compact package design further enhances their usability, allowing for integration into high-density circuit layouts without compromising performance.
Designed with durability in mind, the 1-390261 Series resists environmental factors such as humidity, vibrations, and thermal cycling. This resilience makes them suitable for use in a variety of challenging environments, including automotive electronics, aerospace systems, and medical devices. Their ability to maintain performance under extreme conditions makes them an excellent choice for mission-critical applications where failure is not an option.
Typical applications of the 1-390261 Series include precision instrumentation, signal processing, and high-frequency circuits, among others. They are commonly employed in feedback networks, voltage dividers, and as reference resistors in measurement systems. The series is also favored in power management applications where efficiency and thermal performance are paramount.
Overall, the 1-390261 Series stands out as a top-tier solution for engineers seeking reliable, precise resistors that can withstand the demands of contemporary electronic applications, making them a cornerstone in the design of next-generation devices.
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