
DESCRIPTION
KS19 encoder couplings are an ideal fit for precision sensor, encoder applications and small size stepper motors, which require a coupling that is both flexible and accurate. KS-Series encoder couplings are designed to be torsionally stiffer with less wind-up than commodity style single beam couplings for increased performance and accuracy. KS-Series encoder couplings are machined from a single piece of aluminum or stainless steel and have a multiple cut design to accommodate parallel misalignment, angular misalignment, and axial motion.KS19 encoder couplings are an ideal fit for precision sensor, encoder applications and small size stepper motors, which require a coupling that is both flexible and accurate.
KS-Series encoder couplings are designed to be torsionally stiffer with less wind-up than commodity style single beam couplings for increased performance and accuracy. KS-Series encoder couplings are machined from a single piece of aluminum or stainless steel and have a multiple cut design to accommodate parallel misalignment, angular misalignment, and axial motion.
Encoder couplings from KS-Series are zero-backlash and have a balanced design for reduced vibration and higher RPM capabilities. KS-Series couplings are available in type 7075 aluminum for lightweight and low inertia for increased torque capacity.
GENERAL Data
Ideally used in applications where the coupling may need to withstand high torsion stiffness and/or a low mass moment of inertia. These couplings also behave well with axial, radial and angular displacements because of their flexible design.
Model | Torque (Nm) | Dimensions (mm) | Deviations (mm) | Max Speed | |||||||
---|---|---|---|---|---|---|---|---|---|---|---|
Rated | Max | L | D | D1 | D2 | M | Radial | Axial | Angle | rpm | |
KS19-24-06-06D | 1.6 | 3.0 | 24.5 | 19 | 6 | 6 | M4 | 0.15 | ±0.15 | 1.5° | 15000 |
![]() |
|||||||||||
Pictures, dimensions,table data and technical drawings of this product are made with reasonable care and liability is excluded for the accuracy and correctness of this data.