免费视频不卡-免费视频xxx-免费色片播放器-免费三级现频在线观看-97国产在线播放-97国产揄拍国产精品人妻

Skip to content Skip to navigation

The rising demand for more space-efficient laboratory technology combined with laboratory process innovation is challenging motion control application designers to deliver small-scale systems without compromising performance. Luckily, select motion control component manufacturers are helping meet this demand by offering standard parts in smaller sizes, hybrid assemblies that eliminate the need for certain components and extensive customization capabilities.

Scaling down

Laboratory instruments are getting smaller. Analytical instruments that once required a room of their own now sit on the benchtop. The trend toward miniaturization is especially welcome among laboratory managers and diagnosticians seeking to make the most cost-efficient use of floor and benchtop space. It also fast-tracks testing by eliminating the need to send samples out to a lab and wait for results.

Complementing the miniaturization trend are space-efficient process innovations such as cartridges that enable multiple reagent tests at a single point; a high density of well plates that can handle multiple assays and specialized instruments dedicated to small batch assays.

Much of the move toward miniaturization and process efficiency involves automation, which challenges motion control system designers to scale these systems down while achieving the same or better performance.

Sourcing options

Designers developing motion control systems to fit into smaller spaces have three primary options: they can use smaller components, those that do not require external support, or work with manufacturers to develop custom solutions.

Designing with Smaller Components

Once a designer knows how much space they have to work with, they are better equipped to meet customer requirements with standard components. The miniaturization of laboratory systems has been going on for at least 10 years, during which time increased demand has resulted in wider market availability of smaller components, including size 8 stepper motors and 3 mm Ball Bushing® bearings.

Blood diagnostic and treatment systems, for example, are getting smaller and smaller. An equipment designer was redesigning a large standalone blood-cleansing device to fit on a desktop. The system used UV light to kill pathogens and required motion control to keep the sample constantly agitated for maximum UV exposure. Reducing the width was the primary need. They accomplished this with miniature profile rail assemblies, which enabled them to reduce the height as well. The designer also specified motorized lead screws, which could be tucked behind other components rather than extending outward in any direction, enabling an even more compact design.

miniature linear motion components

Miniature linear motion components can help designers meet even the most stringent space requirements for today’s medical equipment.

Miniaturized innovations such as these are also being applied to “point-of-care” diagnostics, which would bring blood test results right to the doctor’s office or even portable devices that could be used in the home. With smaller-scale testing instruments, lab diagnostics could be available in a matter of minutes instead of days. This level of improved speed and accessibility of testing has the potential to save countless lives.

Eliminating the need for external linear support

For space-constrained, force-sensitive applications requiring shorter strokes that must be repeated with high precision, such as vertically positioning a pipette over a test tube array, designers can economize space using a motorized lead screw actuator (MLA). Doing so with conventional basic stepper motor and lead screw assemblies would require designing costly external linear guidance systems for anti-rotation of the nut, and guidance of the system. The hybrid approach, however, eliminates the need for external linear guidance by surrounding the shaft with an aluminum cover tube with molded internal splines that lock onto the nut to keep it from turning and provide linear guidance.

Eliminating the need for an external guidance component gives the designer more flexibility to reduce the size of the axis, which helps reduce the overall footprint of the instrument.

By reducing the total number of components needed, stepper motor linear actuators are ideal for reducing the size of the axis on a wide variety of space-conscious applications, including (left to right): XY stage (rotating screws), horizontal positioning (rotating nut), and fluid pipetting (telescoping and rotating screw).

Customization

If a designer cannot get the motion they need with standard components, they will have to work with manufacturers to create custom solutions. In most cases, however, the customization process does not involve starting from scratch but modifying existing standard components to overcome limitations. Ball nuts, for example, are often designed for use with screws of different diameters. This design choice reduces the cost but does require a slightly larger nut. To save space on an application using a smaller diameter screw, a smaller nut could be developed.

Sometimes, it is just a matter of modifying the mounting. For example, when working on a new spectrophotometer to highly analyze color samples on the desktop, a designer needed linear motion components to be as compact as possible. They selected a single miniature profile rail assembly to guide the lenses of the spectrophotometer into position. The miniature rail enabled not only a compact profile but also a high load capacity and whisper-quiet movement. Along with compactness, however, high rigidity was critical in this application. Achieving that required attaching the miniature profile rail to another component within the machine instead of a separate mounting surface. This feat required a customized counterbore of the standard mounting holes of the profile rail assembly.

Another factor to consider in customization is the supply chain. Whether it be sub-components, plating, materials, engineering services or other contributors, manufacturers often depend upon external part sources. These must also be evaluated based on whether their standard products are suitable for smaller-scale designs.

Smaller technology; bigger difference

Market demand for immediacy, space constraints and pandemic-induced health concerns will likely continue to drive the need for increasingly smaller medical equipment. Motion control components can make up a substantial portion of medical machinery footprint, and manufacturers are actively innovating to deliver full functionality in smaller spaces. The likely result is lower healthcare costs and better outcomes for patients.

back to top 主站蜘蛛池模板: 97午夜精品 | 正在播放黑人杂交派对卧槽 | 受坐在攻腿上H道具PLAY | 精品无码国产自产在线观看水浒传 | 无码国产欧美日韩精品 | 樱桃bt在线www | 西西人体大胆牲交PP6777 | 97亚洲狠狠色综合久久久久 | 久久成人国产精品一区二区 | 曰批视频免费40分钟不要钱 | 亚洲综合AV色婷婷五月蜜臀 | 97国产成人精品免费视频 | 久草网国产自偷拍 | 黄桃AV无码免费一区二区三区 | 97久久精品视频 | 久久毛片免费看一区二区三区 | 男男gaygay拳头 | YIN荡的老师系列第6部分视频 | 最近中文字幕MV免费高清视频8 | 国产亚洲欧洲日韩在线三区 | AV精品爆乳纯肉H漫网站 | 国产成人a视频在线观看 | 泰国淫乐园实录 | 国产久久精品热99看 | 亚洲第一页视频 | 嘴巴舔着她的私处插 | chinese耄耋70老太性 | 青青app | 女人高潮被爽到呻吟在线观看 | 色噜噜色啪在线视频 | 青草影院天堂男人久久 | 试看做受120秒免费午夜剧场 | 亚洲精品青青草原avav久久qv | 99精品热视频30在线热视频 | 亚洲AV久久久久久久无码 | 动漫H片在线播放免费高清 动漫AV纯肉无码AV电影网 | 国产 高清 无码 中文 | 色戒床震视频片段 | 国产黄A片在线观看永久免费麻豆 | 国产在线视频一区二区不卡 | 亚洲伊人久久一次 |