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Piezo actuator core tomorrow high precision nano resolution dynamic for nano microscope piezo stack multilayer

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High Precision Positioning: Enables nano-resolution linear motion (down to 1 nm) for ultra-fine adjustments in precision instruments like nano microscopes.
  • Dynamic Motion Control: Designed for real-time, responsive movement in sensitive applications requiring rapid and accurate positioning.
  • Piezo Stack Technology: Multilayer piezoceramic construction delivers high force output and stability under dynamic load conditions.

Key features

  • 1. Material Technology

  • With a piezoceramic multilayer stack, achieve nano-level precision in positioning, outperforming traditional actuators in resolution and responsiveness.

  • 2. Performance Parameters

  • With sub-nanometer resolution capability, enable ultra-precise movements critical for high-resolution microscopy, surpassing standard linear actuators in positioning accuracy.

  • 3. Scenario Solutions

  • Designed specifically for nano microscopes, this core supports dynamic real-time adjustments in research and commercial applications, ensuring consistent performance under continuous operation.

  • 4. Interactive Design

  • Stackable architecture allows customizable force and stroke parameters, adapting to diverse microscopy requirements without compromising precision.

  • 5. Compact Design

  • With a compact form factor, integrate seamlessly into space-constrained microscopy systems, reducing footprint by up to 40% versus conventional actuators.

Product details

Piezo actuator core tomorrow high precision nano resolution dynamic for nano microscope piezo stack multilayer

The Piezo Actuator Core Tomorrow High Precision Nano Resolution Dynamic is a compact, high-performance piezoelectric ceramic actuator designed for precision motion control in nano microscopy and advanced automation. Built with multilayer piezo stack technology, it delivers sub-micron resolution and rapid dynamic response, making it ideal for applications requiring ultra-fine positioning and real-time adjustments.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialPiezoceramics (multilayer ceramic stack)Ensures high rigidity and thermal stability for precision applications
Resolution±5 nm (nano-scale)Critical for nano-microscopy and lithography
Dynamic Response1 kHz resonance frequencyEnables fast actuation in real-time systems
Stroke LengthCustomizable (0.1–10 mm)Adaptable to diverse mechanical designs
Force Output1–50 N (adjustable via layer count)Supports high-force applications like micro-manipulation

Customization guide

Adjustable parameters include stroke length, force output, and resonance frequency to meet specialized needs. For example:

  • Increase layer count for higher force in industrial automation.
  • Shorten stroke length for compact microscopy stages.
  • Optimize resonance frequency for high-speed scanning systems.

Get inspired

Achieve sub-micron precision in your next project. With this actuator’s nano-resolution and dynamic capabilities, you can:

  • Capture ultra-high-resolution images in electron microscopes.
  • Automate precise sample positioning in lab equipment.
  • Enable real-time adjustments in advanced robotics.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Resolution±10 nm±5 nm±1 nm*
Max Force5 N20 N50 N
Resonance Frequency500 Hz1 kHz2 kHz
Stroke Range0.1–5 mm0.1–10 mm0.1–20 mm

*Pro Model’s ±1 nm resolution exceeds industry benchmarks by 30%.

Supplier's note

  1. Technical Breakthroughs:

    • Multilayer ceramic stack: Achieves 50% higher force density than single-layer designs.
    • Nano-resolution feedback: ±1 nm accuracy (Pro Model) enables breakthroughs in atomic-scale imaging.
    • Dynamic response: 2 kHz resonance frequency (Pro) allows 2x faster actuation than standard piezo actuators.
  2. Version Selection Guide:

    • Base Model: Ideal for basic microscopy stages or low-force automation (e.g., sample loading).
    • Advanced Model: Perfect for research labs requiring sub-10 nm precision (e.g., nanoscale 3D printing).
    • Pro Model: Designed for cutting-edge applications like atomic force microscopy, where ultra-fast, ultra-precise motion is critical. With its triple-industry-standard force output, it also excels in high-load micro-manipulation.

Frequently asked questions

  • Which piezo actuator model is best suited for high-precision nano microscopy applications?

  • How does piezoceramic material compare to traditional ceramics in nano positioning systems?

  • Is this piezo stack certified for use in laboratory-grade nano positioning systems?

  • Can this actuator be customized for specific nano positioning requirements?

  • How do I maintain a nano precision piezo actuator for optimal performance?

  • What makes this multilayer piezo stack suitable for dynamic nano microscopy?

  • Does this actuator support real-time adjustments in nano positioning systems?

  • How does a multilayer piezo stack compare to single-layer actuators in nano resolution?

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