List of Actuator products

  • classification:Actuator

1~45 item / All 939 items

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Presentation of explanatory materials on JIS and ISO standards. We propose suitable safety barriers from a rich product series! Free rental of demo kits.

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  • Satech - FastGuard_Ipros_2023_JP_2.jpg
  • Satech - ImpactGuard_Ipros_2023_JP_1.jpg
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  • Satech - AdaptaGuard_Ipros_2023_JP_Media-gallery_1.jpg
  • Satech - BlueGuard_Ipros_2023_JP_Media-gallery_2.jpg
  • Other safety and hygiene products

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Amino acid-derived natural cationic polymer that can be used in food preservatives, hygiene materials, and daily necessities. It is a safe material as it is a fermentation product produced by natural ...

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  • Shelf life enhancer

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Introduction of the preservative polylysine / fermented polyamino acids that contribute to food poisoning prevention.

We provide easy-to-understand materials explaining the natural preservative polylysine, which prevents food poisoning. ε-Polylysine (hereafter referred to as polylysine) is an amino acid-derived preservative widely used as a food preservative. By adding polylysine, the growth of microorganisms that cause food poisoning can be prevented. Every year, food poisoning caused by microorganisms is a significant issue and is frequently reported in the news. Even foods that do not appear to be spoiled can rapidly proliferate microorganisms if the growth environment is suitable, so caution is necessary. Even if something looks clean, contamination by bacteria can progress, posing a risk of food poisoning. By ensuring hygiene management during the manufacturing process, proper storage at appropriate temperatures, and the appropriate use of the preservative polylysine, food safety can be more effectively protected. 【Features】 ■ A safe material produced through fermentation by natural microorganisms (not genetically modified organisms) ■ Provides a good image as a natural fermented product ■ Listed in the existing additive registry as a food preservative ■ A safe domestic product *Please feel free to contact us.

±0.2µm reproducibility, heavy load compatible model with standard absolute encoder.

  • Actuator
  • Other industrial robots
  • encoder

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Enhancing the accuracy of research and development! Introduction to a special feature on "positioning" products for research environments.

Under strict standards and environments, high precision and reproducibility are required in research and development. At PI, we have been engaged in the development and manufacturing of components, systems, and solutions that can be smoothly integrated into existing experimental environments, backed by over 50 years of experience. With compatibility with major software such as LabVIEW, MATLAB, and Python, as well as an open interface, smooth integration into various research environments and flexible customization are possible. We have picked up a lineup of recommended products for implementation in research settings.

Designed for high load applications with a load capacity and rigidity of 30kg.

  • Actuator
  • Other industrial robots
  • encoder

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Precision control of the beam with a high-speed response of 10 kHz. Tip/Tilt stage for laser processing.

  • Other industrial robots
  • Piezoelectric Devices
  • Actuator

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High-speed response of 10 kHz. Advanced beam control for optical communication with high-resolution 2-axis Tip/Tilt.

  • Other industrial robots
  • Piezoelectric Devices
  • Actuator

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Resonant frequency of 10 kHz. A tip/tilt stage for photonics that achieves both high speed and high resolution.

  • Other industrial robots
  • Piezoelectric Devices
  • Actuator

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Motion angle: ±5 mrad (optical ±10 mrad), dynamic & high resolution & high-speed operation due to a resonance frequency of 10 kHz.

  • Other industrial robots
  • Piezoelectric Devices
  • Actuator

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Nano-level scanning supporting high magnification observation. Z-chip tilt piezo stage with a 66mm aperture.

  • Actuator
  • Piezoelectric Devices
  • encoder

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Achieving nano-level Z-chip tilt control. High-precision piezo stage with a 66mm aperture.

  • Actuator
  • Piezoelectric Devices
  • encoder

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Piezo stage with an opening that achieves nano-level adjustments.

  • Actuator
  • Piezoelectric Devices
  • encoder

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The nano-level motion amount is 100µm and 200µm on the Z-axis, with chip tilt axes of 1mrad and 2mrad, and is optimal for transmitted light with a 66mm aperture.

  • Actuator
  • Piezoelectric Devices
  • encoder

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Frictionless flexure guide integrated structure. High-performance scanner supporting precision machining at the nano level.

  • Other industrial robots
  • Piezoelectric Devices
  • Actuator

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Zero-friction flexure guide integrated structure. Improved calibration accuracy with high reproducibility nano-positioning.

  • Other industrial robots
  • Piezoelectric Devices
  • Actuator

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A multi-axis piezo scanner with zero friction that achieves nano-level positioning.

  • Other industrial robots
  • Piezoelectric Devices
  • Actuator

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Integrated structure with zero-friction flexure guide - capable of XY axis, XYZ axis, and XYθz axis motion.

  • Other industrial robots
  • Piezoelectric Devices
  • Actuator

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Reproducibility ±1nm, XY axis 100 µm + Z axis 10 µm stroke, optimal for transmitted light with a 50 mm aperture.

  • Actuator
  • Piezoelectric Devices
  • Cartesian Robot

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Reproducibility ±1nm, XY axis 100µm stroke. High-precision nanopositioner for semiconductor manufacturing equipment.

  • Actuator
  • Piezoelectric Devices
  • Cartesian Robot

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Reproducibility ±1nm, XY axis 100µm stroke. High-precision nanopositioner ideal for transmitted light optical systems.

  • Actuator
  • Piezoelectric Devices
  • Cartesian Robot

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Three-stage electric lifting device ideal for lifting heavy objects.

  • Actuator

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No need for brake or stopper! Self-locks at the stopped position during work elevation! Lighter operability than screw types, faster lifting speed, and space-saving achieved!

  • Actuator

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For fine position correction of semiconductor devices. 100 µm × 3-axis nanopositioner.

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  • Actuator
  • Cartesian Robot
  • Piezoelectric Devices

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A compact XYZ piezo stage with a size of 100 µm × 3 axes that supports high magnification observation with nanometer resolution.

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  • Actuator
  • Cartesian Robot
  • Piezoelectric Devices

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100 µm × 3 axes. A compact XYZ piezo stage that achieves optical alignment with nanometer precision.

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  • Actuator
  • Cartesian Robot
  • Piezoelectric Devices

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A 100 µm × 3-axis nanopositioner supporting the focus and position control of fine laser processing.

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  • Actuator
  • Cartesian Robot
  • Piezoelectric Devices

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Compact XYZ piezo stage with 100 µm × 3-axis for supporting nanoscale position control.

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  • Actuator
  • Cartesian Robot
  • Piezoelectric Devices

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Minimum 10 nm resolution. High-precision Z-axis focus control of the laser processing head.

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  • Other machine elements
  • Actuator
  • Solenoid Actuators

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High-precision Z-axis supporting fine observation with a minimum movement of 10nm, maximum travel of 7mm, and passive holding up to 1kg.

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  • csm_V-308_OH1_00541_7f8815d87f.jpg
  • csm_V-308_753030_KUZ_a3ff48af57.jpg
  • csm_PI-C-414_13030_5dbacccef4.jpg
  • Other machine elements
  • Actuator
  • Solenoid Actuators

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Enhancing the accuracy of research and development! Introduction to a special feature on "positioning" products for research environments.

Under strict standards and environments, high precision and reproducibility are required in research and development. At PI, we have been engaged in the development and manufacturing of components, systems, and solutions that can be smoothly integrated into existing experimental environments, backed by over 50 years of experience. With compatibility with major software such as LabVIEW, MATLAB, and Python, as well as an open interface, smooth integration into various research environments and flexible customization are possible. We have picked up a lineup of recommended products for implementation in research settings.

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