Motion hexapod H-825 series
brushlesscompact

Motion hexapod - H-825 series - Physik Instrumente - brushless / compact
Motion hexapod - H-825 series - Physik Instrumente - brushless / compact
Motion hexapod - H-825 series - Physik Instrumente - brushless / compact - image - 2
Motion hexapod - H-825 series - Physik Instrumente - brushless / compact - image - 3
Motion hexapod - H-825 series - Physik Instrumente - brushless / compact - image - 4
Motion hexapod - H-825 series - Physik Instrumente - brushless / compact - image - 5
Motion hexapod - H-825 series - Physik Instrumente - brushless / compact - image - 6
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Characteristics

Type
motion
Motor type
brushless
Other characteristics
compact
Linear stroke X

Min.: -27 mm
(-1 in)

Max.: 28 mm
(1 in)

Linear stroke Y

Min.: -25 mm
(-0.98 in)

Max.: 25 mm
(0.98 in)

Linear stroke Z

Min.: -14 mm
(-0.55 in)

Max.: 14 mm
(0.55 in)

Angular stroke X

Min.: -11.5 °

Max.: 11.5 °

Angular stroke Y

Min.: -10.5 °

Max.: 10.5 °

Angular stroke Z

Min.: -19 °

Max.: 19 °

Resolution

0.25 µm

Description

Self-locking to 300 N Travel range ±27.5 mm / ±25 mm / ±14 mm Rotation range ±11.5° / ±10.5° / ±19° Minimum incremental motion 0.3 µm / 0.3 µm / 0.25 µm Absolute encoder Product Description Parallel-kinematic design for 6 degrees of freedom, making it significantly more compact and stiff than serial-kinematic systems, higher dynamics, no moved cables: Higher reliability, reduced friction. BLDC motor Brushless DC motors are particularly suitable for high rotational speeds. They can be controlled very accurately and ensure high precision. Because they dispense with sliding contacts, they run smoothly, are wear-free and therefore achieve a long lifetime. Absolute encoder Absolute encoders supply explicit position information that enables immediate determination of the position. Therefore, no referencing is necessary when switching on and this increases efficiency and safety during operation. PIVirtualMove The simulation software simulates the limits of the workspace and payload of a hexapod. Therefore, even before purchasing, you can check whether a particular hexapod model can handle the loads, forces, and torques occurring in an application. For this purpose, the simulation tool takes the position and motion of the hexapod as well as the pivot point and several reference coordinate systems into account. Application fields Industry and research. For microassembly, biotechnology, semiconductor manufacturing, optical alignment.

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