Carrier.L1010.-2D Linear Stage with Piezoelectric Actuator
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Ships from:
China
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Sold by:
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On FindLight:
since 2020
Description
The Carrier.L1010.XY is a high-precision 2D linear stage designed for applications requiring ultra-fine motion control, such as microscopy and semiconductor characterization. With a travel range of 100 mm × 100 mm and a minimum step size of 20 nm, this stage offers exceptional accuracy and control for demanding tasks.
The stage operates with piezoelectric motion technology, providing smooth, stable movement with a maximum speed of 10 mm/s. It features a closed-loop resolution of 1 nm (4.88 nm or 2.44 nm for optional configurations) and a maximum load capacity of 4 kg. The device is available with non-magnetic (.NM), high vacuum (.HV), and ultra-high vacuum (.UHV) versions, catering to different environmental requirements.
Constructed with a robust aluminum alloy body, the Carrier.L1010.XY is built to withstand diverse operational environments, including high-vacuum and low-temperature settings. Whether in research labs or semiconductor testing environments, this stage delivers precision and reliability for various applications requiring fine motion control.
Carrier.L1010.-2D Linear Stage with Piezoelectric Actuator
Specifications |
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Axes Of Motion: | One |
Travel Range: | 100 mm |
Load Capacity (Horizontal): | 4 kg |
Load Capacity (Vertical): | Not Specified |
Max Speed: | 10 mm/s |
Weight: | 4.8 kg |
Guiding Mechanism: | Other |
Voltage Requirement: | Other |
Operating Temperature Range: | +10 to +40 °C |
Mini Step Size: | 20 nm |
Drive Frequency: | Max. 20 kHz |
Dimensions (Footprint): | 250 × 250 x 40 mm |
Drive Frequency: | 20 kHz |
Closed-Loop Resolution: | 1 / 4.88 nm |
Through Hole Size: | 85 × 65 mm |
Pitch & Yaw (Full Range): | 0.8 mrad |
Main Body Material: | Aluminum alloy |
Features
- XY Range: 100 mm × 100 mm, providing extensive movement for fine positioning
- Minimum Step Size: 20 nm, ideal for high-precision applications
- Maximum Speed: 10 mm/s for quick adjustments and fast operation
- Closed-Loop Resolution: 1 nm / 4.88 nm or 2.44 nm / 10 nm (optional configurations).
- Through Hole Size: 85 mm × 65 mm (full range guaranteed)
- Material: Robust aluminum alloy for durability and lightweight design
- Sensor: Optical encoder with a range of 100 mm × 100 mm
- Load Capacity: Supports up to 4 kg
- Compatible Versions: Non-magnetic (.NM), high vacuum (.HV), and ultra-high vacuum (.UHV) options
- Operating Temperature Range: 10–40°C for stable performance
- Quiet Drive Frequency: Max drive frequency of 20 kHz for super-quiet operation
Applications
- Microscopy Applications: Provides precise, repeatable movement for high-accuracy microscope positioning
- Semiconductor Characterization: Ideal for fine motion control in semiconductor testing and analysis
- High-Vacuum Environments: Suitable for high-vacuum (.HV) and ultra-high vacuum (.UHV) systems
- Precision Manufacturing: Used in precision engineering and manufacturing for micro-positioning tasks
- Research and Development: Essential for labs needing precise positioning in experimental setups
Frequently Asked Questions
The Carrier.L1010.XY offers a travel range of 100 mm × 100 mm, allowing for precise movement across both the X and Y axes, making it ideal for high-precision applications in microscopy and semiconductor testing.
The Carrier.L1010.XY has an impressive minimum step size of 20 nm, ensuring exceptional precision and accuracy, which is crucial for applications that require fine positioning, such as in semiconductor characterization or advanced microscopy.
Yes, the Carrier.L1010.XY is available in three versions: non-magnetic (.NM), high vacuum (.HV), and ultra-high vacuum (.UHV). This makes it suitable for use in different environments, including those with strict vacuum requirements.
The Carrier.L1010.XY is designed to support up to 4 kg of load, allowing for the stable operation of heavy equipment while maintaining precise movement and control.
The Carrier.L1010.XY operates within a temperature range of 10°C to 40°C, ensuring reliable performance in typical laboratory and industrial environments where temperature control is crucial.