Material: PPS
Net weight: 1.5g
The 1.5g water quality tester fixed ring injection molding accessories are customized and designed according to the precise size requirements of the water quality tester. They are injection molded with high-precision molds to ensure that every detail is accurate and seamlessly connected with the main body of the tester, reducing assembly errors and improving the overall performance. Sealing and stability. The fixing ring formed by injection molding technology achieves a lightweight design while ensuring strength, reducing the overall weight of the tester, making it easy to carry and operate, while enhancing the durability and fatigue resistance of the accessories, even if used frequently or for a long time. It can maintain good shape and performance even under outdoor operating conditions. The design fully considers the user experience. The fixed ring structure is reasonably designed, and the installation is simple and fast. No complicated tools are required to complete the assembly. At the same time, its material properties also facilitate daily cleaning and maintenance, reducing maintenance costs and time. This fixed ring is suitable for many types of water quality testers, including but not limited to portable, online, and laboratory use. It is widely used in drinking water monitoring, industrial wastewater treatment, environmental water quality assessment, and other fields. It is an ideal tool for water quality monitoring. An indispensable and important accessory.
Why injection molding accessories play a pivotal role in medical equipment Injection molded components, despite their modest size, serve as fundamenta...
READ MORECritical Considerations for Key Materials In the vast and intricate world of medical devices, transparent injection-molded connectors are an indispen...
READ MOREWhy Medical Injection Pen Injection Molding Accessories Are Key to the Safe Operation of Injection Pens In scenarios like self-injection for diabetes ...
READ MOREThe Foundation of Excellence: Advanced Housing Design Principles The development of high-performance minimally invasive surgical instrument housings...
READ MORE