Knurled knob MBT.40 P-M6x20-C2 Z049378
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TECHNICAL DATA
Sales unit dimensions and weight: 1 pcs
Knurled knob MBT.40 P-M6x20-C2 Z049378
Product features
- Knurled knobs – precision and ergonomics in one
The MBT.40 knurled knob is part of a series of knobs with knurling, designed with user comfort and precise control in mind. Made of high-impact polypropylene (PP) based technopolymer, it is characterized by durability and resistance to mechanical damage. Black color ensures versatility and aesthetic appearance.
Construction and application
The MBT.40 knob has a threaded M6x20 pin, which facilitates mounting in various industrial applications and machines. The knurled surface provides a firm grip, even with gloves, minimizing the risk of slipping during rotation. This allows for transferring greater torque with less effort, which translates to operator comfort. This is especially important in applications requiring frequent adjustment or parameter setting.
Advantages and benefits
- Ergonomic design: the knurled surface provides a firm grip and comfortable operation, reducing hand fatigue during work.
- Material durability: made of high-impact polypropylene (PP) guarantees resistance to mechanical damage and long service life.
- Easy installation: the threaded M6x20 pin allows for quick and easy mounting in various structures.
- Versatility: black color matches most devices and machines, providing an aesthetic appearance.
- Control precision: allows for accurate parameter setting thanks to a firm grip and stable construction.
- Chemical resistance: polypropylene is resistant to many chemicals, which increases the range of applications for the knob.
- Wide range of applications: ideal for machines, industrial equipment, control panels and other applications requiring precise parameter adjustment.
Technical parameters
The knob diameter is 39.5 mm and the thread length is 20 mm. The metric thread size is M6. The material is plastic (polypropylene). The threaded design allows for solid mounting of the knob in the hole, ensuring stability during use.

