What are the characteristics of self-locking tuning screws installed on 5G filters?
The self-locking tuning screw installed on the 5G filter has the characteristics of stable fastening, accurate tuning and high installation efficiency, as follows:
High tightness and stability.
Strong self-locking function: through special structural design, such as axial deviation between two threads, the self-locking tuning screw makes the external thread and the internal thread not aligned, and when screwing in, the groove produces axial elastic deformation, eliminating the gap between the thread pairs and generating friction, ensuring that the filter will not be loosened due to vibration, temperature change and other factors during long-term work.
Good vibration resistance: There are various vibrations in the working environment of 5G equipment. The tightness of the self-locking tuning screw can effectively resist the influence of vibration, prevent the performance of the filter from decreasing due to the loosening of the screw, and ensure the stable transmission of 5G signals.
High tuning accuracy
Precise adjustment: 5G filter requires strict frequency selection and signal filtering, and needs precise tuning. The self-locking tuning screw can be finely adjusted after installation, and the frequency response of the filter can be accurately adjusted by rotating to change the internal capacitance, inductance and other parameters of the filter to adapt to different working scenarios and signal requirements.
Keep the tuning state: after the tuning is completed, the self-locking function of the self-locking tuning screw can ensure that the screw position is stable and will not change due to external interference, thus ensuring the long-term stability of the tuning accuracy of the filter.
High installation efficiency
Easy to install: the self-locking tuning screw has a simple structural design, and the installation process does not require additional complicated tools or operation steps. Compared with the traditional screw, it can be screwed into the installation site faster, which can save a lot of time and labor costs in large-scale production and installation scenarios.
Good adaptability of automatic installation: its shape and size specifications are standardized, which is suitable for use with automatic installation equipment. In the 5G filter production line, automatic assembly equipment can be used to install quickly and accurately, further improving production efficiency and installation quality.
High space utilization rate
Miniaturization design: 5G filter needs to integrate a large number of electronic components in a limited space, which requires high component size and space occupation. The self-locking tuning screw is compact in design, which can realize good fastening and tuning function without occupying too much space, and provides support for miniaturization and high integration design of 5G filter.
Multi-layer installation: In some complex 5G filter structures, screws may need to be installed at different levels. The structural characteristics of the self-locking tuning screw enable it to be installed in a multi-layer structure without mutual interference, which improves the space utilization and installation flexibility.
Good durability
Excellent material: Self-locking tuning screws are usually made of high-quality materials such as stainless steel and alloy steel, which have good corrosion resistance and wear resistance. In the working environment of 5G filter, it may be affected by temperature, humidity, dust and other factors. High-quality materials can ensure that screws are not easy to rust, corrode and wear after long-term use, prolong the service life and reduce the frequency of maintenance and replacement.
Adapt to harsh environment: 5G base stations may be deployed in various harsh environments such as high temperature, low temperature and high altitude. Self-locking tuning screws can maintain good performance in these environmental conditions, ensure the normal operation of the filter, and have strong environmental adaptability.