Swivel base LS.A-25-14-AS-M10X68 Z009980
Catalog numbers:
- LS.A-25-14-AS-M10X68
Suggested products
TECHNICAL DATA
Sales unit dimensions and weight: 1 pcs
Swivel base LS.A-25-14-AS-M10X68 Z009980
Adjustable foot – stability and versatility in every application
This adjustable foot, made of high-quality glass fiber reinforced technopolymer based on polyamide (PA), is a reliable solution for leveling and stabilizing various equipment and machines. It is characterized by exceptional resistance to solvents, oils, greases and other chemicals, making it ideal for use in harsh industrial environments. Matte finish gives it an aesthetic look.
The foot is equipped with a threaded pin made of galvanized steel with a flat key grip, which facilitates assembly and disassembly. It is available in two versions: standard (LS.A) and with a non-slip NBR rubber pad with a hardness of 70° Shore A (LS.A-AS) mounted. The non-slip pad increases the stability of the foot even on uneven surfaces and minimizes the risk of the device shifting. The foot design ensures a secure connection between the base and the pad, even with strong impacts or adhesion to the ground.
Construction and properties
Adjustable foot LS.A-25-14-AS-M10x68 combines strength and functionality. Glass fiber reinforced technopolymer guarantees high resistance to loads and mechanical damage, and galvanized steel provides durable protection against corrosion. Small knurling on the underside of the base further improves stability and adhesion, even without using a non-slip pad. This makes the foot perfect for both static and dynamic applications.
It is worth noting the possibility of height adjustment thanks to the threaded pin, which facilitates precise leveling of devices. The maximum static load for this foot is 14000 N, which confirms its solid construction and ability to carry significant weights – however, remember to take into account the appropriate safety factor depending on the application. The availability of a version with a non-slip pad (LS.A-AS) allows you to adapt the foot to the specific requirements of a given application, ensuring optimal stability and safety.

