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AUNMAS Linear Roller Bearing Aluminum Alloy Optical Stage

Original price was: $132.53.Current price is: $91.18.

The AUNMAS linear roller bearing provides high accuracy and smooth movement with its 3-axis optical stage and micrometer heads. Crafted from robust aluminum alloy, it is ideal for optical instruments, measuring equipment, and semiconductor manufacturing. This manual displacement stage ensures stable performance and easy installation for various industrial applications.

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SKU: CJZSYFB0BH16 Category:
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Description

Product Overview

The AUNMAS linear roller bearing is a precision 3-axis optical stage designed for accurate positioning in industrial and scientific settings. Featuring micrometer heads, it allows for fine adjustments with high repeatability. Constructed from durable aluminum alloy with a black anodized finish, this stage resists corrosion and wear, ensuring long-term reliability. Key specifications include package dimensions of 5.12 x 3.94 x 3.15 inches and a weight of 15.52 ounces, with model number AUNMAS9x24p837mw. Its intersection roller design promotes smooth, low-friction movement, making it suitable for applications requiring stable performance and easy integration.

AUNMAS linear roller bearing stage in use on an optical instrument

Usage

This linear roller bearing stage is ideal for environments demanding precise movement and positioning, such as optical instruments, measuring equipment, and testing fixtures. It serves professionals in semiconductor manufacturing, laboratory research, and quality control processes. Common usage includes aligning components in microscopes, transporters, and printing machines, where accuracy and durability are critical. The stage supports manual displacement, making it versatile for educational, industrial, and prototyping scenarios that require reliable, user-adjustable setups.

Why Choose Us

AUNMAS delivers superior craftsmanship with a focus on material quality and functional design. The aluminum alloy construction, combined with anodizing, enhances strength and resistance to environmental factors. Unlike generic stages, this product incorporates intersection rollers for exceptional accuracy and smooth operation, reducing the risk of misalignment. Backed by a straightforward installation process and consistent performance, it offers a cost-effective solution for high-precision tasks without compromising on reliability or ease of use.

Key Features

  • 3-axis optical stage with micrometer heads for precise and repeatable positioning adjustments
  • Durable aluminum alloy material with black anodized coating for enhanced corrosion resistance and longevity
  • Intersection roller design ensuring smooth, high-accuracy movement and stable performance in various applications
  • Easy installation and removal, facilitating quick setup and maintenance in industrial and scientific environments
  • Wide compatibility with optical instruments, testing machines, and semiconductor equipment for versatile use

FAQ

What is the primary use of this linear roller bearing stage?

It is primarily used for precise positioning and movement in optical instruments, measuring devices, and industrial machinery, offering accuracy in applications like semiconductor manufacturing and testing.

How does the aluminum alloy material benefit the stage?

The aluminum alloy provides a lightweight yet strong structure, and the anodized finish protects against wear and corrosion, ensuring durability in demanding environments.

Can this stage be integrated into existing equipment easily?

Yes, it is designed for straightforward installation and removal, with a manual displacement mechanism that allows quick adaptation to various setups without specialized tools.

What makes the intersection roller design advantageous?

This design minimizes friction and enhances smooth movement, leading to higher accuracy and stability, which is essential for repetitive positioning tasks in precision instruments.

Is the stage suitable for educational or prototyping purposes?

Absolutely, its user-friendly operation and reliable performance make it ideal for educational labs, research prototypes, and small-scale industrial applications requiring accurate adjustments.

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