Positioning hexapod JORAN
stepperindustrialvacuum

Positioning hexapod - JORAN - SYMETRIE - stepper / industrial / vacuum
Positioning hexapod - JORAN - SYMETRIE - stepper / industrial / vacuum
Positioning hexapod - JORAN - SYMETRIE - stepper / industrial / vacuum - image - 2
Positioning hexapod - JORAN - SYMETRIE - stepper / industrial / vacuum - image - 3
Positioning hexapod - JORAN - SYMETRIE - stepper / industrial / vacuum - image - 4
Positioning hexapod - JORAN - SYMETRIE - stepper / industrial / vacuum - image - 5
Positioning hexapod - JORAN - SYMETRIE - stepper / industrial / vacuum - image - 6
Positioning hexapod - JORAN - SYMETRIE - stepper / industrial / vacuum - image - 7
Positioning hexapod - JORAN - SYMETRIE - stepper / industrial / vacuum - image - 8
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Characteristics

Type
positioning
Motor type
stepper
Applications
for testing, for aerospace applications, vacuum, for clean rooms, for geometric alignments, X-ray, for laboratory applications, for medical applications, for optical applications, for the semiconductor industry, for robotics, industrial, optical beam
Other characteristics
custom, precision, high-accuracy, with stepper motor, high-resolution, absolute encoder, API, for heavy loads, for mirror, satellite, with controller, with parallel kinematics
Payload capacity

Max.: 1,000 kg
(2,204.6 lb)

Min.: 0 kg
(0 lb)

Linear stroke X

Max.: 170 mm
(7 in)

Min.: -170 mm
(-7 in)

Linear stroke Y

Max.: 170 mm
(6.69 in)

Min.: -170 mm
(-6.69 in)

Linear stroke Z

Max.: 100 mm
(3.94 in)

Min.: -100 mm
(-3.94 in)

Angular stroke X

Max.: 10 °

Min.: 10 °

Angular stroke Y

Max.: 10 °

Min.: -10 °

Angular stroke Z

Max.: 18 °

Min.: -18 °

Height

750 mm
(29.5 in)

Resolution

0.1 µm

Repeatability

0.25 µm

Speed

1 mm/s

Description

JORAN hexapod is a high precision system designed to position and adjust elements with a 0.5 µrad angular resolution. The conception of JORAN, particularly of its actuators, spherical joints and natural granite platforms, ensures great stability and guarantees the positioning quality over time. Ceramic spherical joints can be replaced by universal joints if the angular travel range is too large or if external forces are too big. Developed in collaboration with the European Synchrotron ESRF, it is ideal to support mirrors or vacuum chambers on synchrotrons beamlines. Granite platforms can be replaced by steel platforms if preferred.

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*Prices are pre-tax. They exclude delivery charges and customs duties and do not include additional charges for installation or activation options. Prices are indicative only and may vary by country, with changes to the cost of raw materials and exchange rates.