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Precision Positioning Hexapods

Precision positioning hexapods are used for point-and-hold or slow tracking operation where minimum incremental听step size, repeatability, and/or accuracy are critical. The HX-P400 incorporates flexure end-joints and absolute听linear encoders on each actuator to optimize repeatability and accuracy. The HX-P500 is vacuum-compatible and听uses preloaded bearing end-joints to accommodate a relatively large range of motion. Both systems are designed听for stiffness to achieve high resonant frequencies and fast settling times. Customization is commonly done to听meet program-specific requirements.

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APPLICATIONS

  • Alignment of telescope optics
  • Testing of precision optical systems
  • Beam/laser pointing

Performance Characteristics

HX-P400 HX-P500
Payload mass Up to 8000 kg

Up to 8000 kg

Dimensions1 1650 mm D x 720 mm H 2000 mm L x 2000 mm W x 810 mm H
Hexapod mass 625 kg 684 kg

Range of motion2

HX-P400 HX-P500
X (lateral) 卤20 mm 卤100 mm
Y (longitudinal) 卤20 mm 卤100 mm
Z (vertical) 卤15 mm 卤85 mm
Roll 卤1.2藲 卤7.0藲
Pitch 卤1.2藲 卤7.0藲
Yaw 卤0.5藲 卤5.2藲

Minimum incremental step size

HX-P400 HX-P500
X (lateral) 1 渭m 3 渭m
Y (longitudinal) 1 渭m 3 渭m
Z (vertical) 1 渭m 3 渭m
Roll <1 渭rad 1 渭rad
Pitch <1 渭rad 1 渭rad
Yaw 1 渭rad 1 渭rad

Repeatability (bidirectional)3

HX-P400 HX-P500
X (lateral) 10 渭m 15 渭m
Y (longitudinal) 10 渭m 15 渭m
Z (vertical) 3 渭m 15 渭m
Roll 3 渭rad 3 渭rad
Pitch 3 渭rad 3 渭rad
Yaw 10 渭rad 15 渭rad
HX-P400 HX-P500
Actuation type Brushless motor-driven roller screw Brushless motor-driven roller screw
Sensor type Absolute linear encoder Rotary encoder
End-joint type Flexures Preloaded Bearings
Vacuum-compatibility w/ customization Yes
Heritage usage Rubin Observatory/Large Synoptic Survey Telescope (LSST) James Webb Space Telescope testing

1. Envelope dimensions and interfaces are typically customized to meet program-specific requirements

2. The ranges of motion of the six axes are interdependent. Listed values represent the maximum range with all other axes at their zero positions and the center of rotation at the center of the payload interface.

3. Unidirectional repeatability is typically 3X-5X smaller than bidirectional repeatability.

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