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KOLLMORGEN S20330-SRS 驱动器模块

In stock

品牌:KOLLMORGEN

型号:S20330-SRS

名称:驱动器模块

质保:一年

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  • QQ:1713556114

S200系列驱动器在小封装中实现行业领先性能Danaher Motion的S200无刷伺服驱动器将高性能伺服技术纳入直流输入和交流输入家族成员的全功率范围家族。特别是对于低功耗应用,S200系列提供了比以前更高性能、更坚固的选项,而不必在可靠性或封装尺寸上妥协。将S200驱动器与Danaher Motion的AKM伺服电机相结合,提供了一个完整的伺服控制解决方案,专为半导体制造、电子组装、包装、医疗和木工设备等应用而设计。Danaher Motion的S200伺服驱动器是第一款速度环路带宽高达800Hz的全数字工业驱动器,提供无与伦比的系统吞吐量和简化的调谐。高分辨率(24位)反馈和高性能的3-5 kHz电流环路带宽为。

S20330-SRS

近年来,随着我国自动化技术的提高,工厂自动化也上了一个新台阶。PLC作为一个新兴的工业控制器,以其体积小,功能,价格低廉,可靠性高等方面具有的优点,在各个领域获得了应用。80MR+32EX+4D/A,主要负责主传动的控制,各机组离合压的控制,以及气泵,气阀的控制等。下位机采用三菱FX2N-64MR+4A/D,主要负责水轮电机的控制,主传动的调速输出,调版电机数据采集等。同时选用了一台三菱5.7寸触摸屏,主要负责水轮电机速度显示,调版显示,以及整机故障显示等。本系统运行可靠,维护方便,操作简便直观,大大提高了胶印机的档次,受到用户好评。电阻式触摸屏这种触摸屏利用压力感应进行控制。电阻触摸屏的主要部分是一块与显示器表面非常配合的电阻薄膜屏,这是一种多层的复合薄膜,它以一层玻璃或硬塑料平板作为基层,表面涂有一层透明氧化金属(透明的导电电阻)导电层,上面再盖有一层外表面硬化处理、光滑防擦的塑料层。

S20330-SRS

它的内表面也涂有一层涂层、在他们之间有许多细小的(小于1/1000英寸)的透明隔离点把两层导电层隔开绝缘。当手指触摸屏幕时,两层导电层在触摸点位置就有了接触,电阻发生变化,在X和Y两个方向上产生信号,然后送触摸屏控制器。控制器侦测到这一接触并计算出(X,Y)的位置,再根据模拟鼠标的方式运作。这就是电阻技术触摸屏的基本的原理。电阻类触摸屏的关键在于材料科技,常用的透明导电涂层材料有:A、ITO,氧化锢,弱导电体,特性是当厚度降到1800个埃(埃=10-10米)以下时会突然变得透明,透光率为80%,再薄下去透光率反而下降,到30O埃厚度时又上升到80%。ITO是所有电阻技术触摸屏及电容技术触摸屏都用到的主要材料,实际上电阻和电容技术触摸屏的工作面就是ITO涂层。

S20330-SRS

The S200 series drives achieve industry-leading performance in small packages. Danaher Motion’s S200 brushless servo drive incorporates high-performance servo technology into the full power range family of members of the DC and AC input families. Especially for low-power applications, the S200 series offers higher performance and more robust options than before, without compromising reliability or packaging size. Combining the S200 driver with Danaher Motion’s AKM servo motor provides a complete servo control solution designed specifically for applications such as semiconductor manufacturing, electronic assembly, packaging, medical, and woodworking equipment. Danaher Motion’s S200 servo driver is the first fully digital industrial driver with a speed loop bandwidth of up to 800Hz, providing unparalleled system throughput and simplified tuning. High resolution (24 bit) feedback and high-performance 3-5 kHz current loop bandwidth.

S20330-SRS

In recent years, with the improvement of automation technology in China, factory automation has also reached a new level. As an emerging industrial controller, PLC has been applied in various fields due to its advantages of small size, functionality, low price, and high reliability. 80MR+32EX+4D/A, mainly responsible for the control of the main transmission, the control of the clutch pressure of each unit, as well as the control of the air pump and valve. The lower computer adopts Mitsubishi FX2N-64MR+4A/D, mainly responsible for the control of the water turbine motor, the speed control output of the main drive, and the data collection of the plate adjustment motor. At the same time, a Mitsubishi 5.7 inch touch screen was selected, mainly responsible for displaying the speed of the water turbine motor, adjusting the version display, and displaying the overall fault of the machine. This system is reliable in operation, easy to maintain, and easy to operate, greatly improving the level of offset printing machines and receiving high praise from users. The resistive touch screen utilizes pressure sensing for control. The main part of a resistive touch screen is a resistive thin film screen that closely matches the surface of the display. It is a multi-layer composite film, which uses a layer of glass or hard plastic plate as the base layer, and the surface is coated with a transparent oxide metal (transparent conductive resistor) conductive layer. The upper surface is then covered with a layer of hardened outer surface, smooth and anti friction plastic layer

S20330-SRS

Its inner surface is also coated with a layer of coating, and there are many small (less than 1/1000 inch) transparent isolation points between them to separate the two conductive layers for insulation. When fingers touch the screen, the two conductive layers make contact at the touch point, causing a change in resistance and generating signals in both X and Y directions, which are then sent to the touch screen controller. The controller detects this contact and calculates the position of (X, Y), and then operates in a simulated mouse manner. This is the basic principle of resistive technology touch screens. The key to resistive touch screens lies in material technology. Commonly used transparent conductive coating materials include A, ITO, oxide film, and weak conductive material. The characteristic is that when the thickness drops to below 1800 angstroms (angstroms=10-10 meters), it suddenly becomes transparent, with a transmittance of 80%. If it becomes thinner, the transmittance actually decreases, and when it reaches a thickness of 30 angstroms, it increases to 80%. ITO is the main material used in all resistive and capacitive touch screens. In fact, the working surface of resistive and capacitive touch screens is the ITO coating.

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