Motorized Linear Stages

Motorized linear stages are electromechanical positioning systems that move a payload along a single linear axis with controlled speed, distance, and repeatability. A motor drives a mechanical transmission, such as a lead screw or ball screw, while guideways constrain motion and an encoder or limit switch can provide position feedback and travel control. In engineering, these stages support automated inspection, optical alignment, semiconductor processing, laboratory instrumentation, and robotic systems. Their ability to deliver precise, programmable motion improves positioning accuracy, repeatability, and throughput, making them fundamental components in machine automation and experimental apparatus.

Motorized Linear Stages - Related Videos

Education

JoVE Science Education - Engineering

AC Induction Motor Characterization

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2023

Source: Ali Bazzi, Department of Electrical Engineering, University of Connecticut, Storrs, CT. The objectives of this experiment are to find the equivalent circuit parameters of a three-phase induction motor using the per-phase equivalent circuit and tests similar to those used in transformer characterization. In electrical engineering, an equivalent circuit (or theoretical circuit) can be determined for a given system. The equivalent circuit retains all characteristics of the original system,...

DC Motors

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2023

Source: Ali Bazzi, Department of Electrical Engineering, University of Connecticut, Storrs, CT. The DC machine operates with DC currents and voltages as opposed to an AC machine, which requires AC currents and voltages. DC machines were the first to be invented and utilize two magnetic fields that are controlled by DC currents. The same machine can be easily reconfigured to be a motor or generator if appropriate field excitation is available, since the DC machine has two fields termed field...

Research

JoVE Journal - Biology

Linearization of the Bradford Protein Assay

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Cited by 292 •

2010

The accuracy and sensitivity of protein determination by the rapid and convenient Bradford assay is compromised by intrinsic nonlinearity. We show a simple linearization procedure that greatly increases the accuracy, improves the sensitivity of the assay about 10-fold, and significantly reduces interference by detergents.

Motor Maps

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2023

Source: Laboratories of Jonas T. Kaplan and Sarah I. Gimbel—University of Southern California One principle of brain organization is the topographic mapping of information. Especially in sensory and motor cortices, adjacent regions of the brain tend to represent information from adjacent parts of the body, resulting in maps of the body expressed on the surface of the brain. The primary sensory and motor maps in the brain surround a prominent sulcus known as the central sulcus. The cortex...

Using Linear Agarose Channels to Study Drosophila Larval Crawling Behavior

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Cited by 12 •

2016

The Drosophila larva is a powerful model system to study neural control of behavior. This publication describes the use of linear agarose channels to elicit sustained bouts of linear crawling and methods to quantify the dynamics of larval structures during repetitive crawling behavior.

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