NT20M-DN131 KuKa 触摸屏
品牌:kuka
P/ n:NT31-ST121B-E
目录描述:触摸屏
原产地:美国
漳州风云提供NT31-ST121B-E等DCS/PLC,漳州风云珊妮为您报价,并提供一年保修服务。
NT31-ST121B-E质量高价格实惠有多种型号。
NT31-ST121B-E
NT30C-ST141-E
NT30C-ST141B
- 电话/Phone:17350880093 (微信同号)
- 联系人:周工
- 邮箱/Email:sales@fyplc.cn
- QQ:671008040
- 地址:漳州市龙文区朝阳北路1号办公楼205
★一手货源,没有中间商赚差价!库存1个亿!
★只要是您想要的,我能帮您找到,价格最优!
★厂家原装,保证售后服务,所有产品质保1年!
产品详细说明
NT20M-DN131 KuKa 触摸屏
购买咨询热线:17350880093 (微信同号)
QQ:3561040004
邮箱:sales@fyplc.cn
地 址:福建省漳州开发区南滨大道429号招商局芯云谷3号楼217-01
公司:漳州风云电气设备有限公司
屏幕模式:无分段。
输出:DPDT。
电源电压:DC5V。
触点类型:小负载运行(AC125V,0.1ADC30V,0.1A)。
操作:瞬时动作(自动复位)。
操作部颜色:红色。
在触摸和保护能力方面比欧姆龙以前的型号有所提高。
实现了23毫米的微小体积设计。
微设计与软测量的独特结合NT20M-DN131
LED有五种颜色(红、黄、绿、白、蓝)。
内置的基本开关改善了触感。
在基于欧姆龙的旧型号中内置基本开关,以提高保护能力。
芯片LED产生均匀的表面亮度。
从前面板安装,更方便。致动器:柱塞。
导管尺寸:1-导管;M12接头。
内置开关机构:2NC(慢动)。
流行的安全限位开关。
提供完整的阵容符合,
国际标准。
产品系列包括1NC/1NO、2NC、2NC/1NO和,
3NC联系方式。
(有MBB触点的慢动作型号可供选择。)
还提供M12连接器型号,节省劳动力,
简化更换。
标准化的镀金触点提供了高接触可靠性。
可用于标准负载和微负载。
符合EN115-1、EN81-1和EN81-2的标准(仅适用于慢动作车型)。
认证标准:UL、EN(TV)和CCC。尺寸:48 x 24mm。
控制输出1:电压输出(SSR驱动器)。
控制输出2: -。
辅助输出:1分。
电源电压:AC100 ~ 240V。
端子类型:螺丝端子台型(带端子盖)。
输入类别:全范围多输入。
加热器断路,SSR故障检测功能:-。
沟通:-。
事件输入:-。
48 * 24mm规格的小机身上冷凝操作,E5_C系列的高性能。
细长机身宽48mm * 24mm * 90mm高,
最适合小型设备/物理和化学设备等..
虽然体积小,但也通过字符高的10.5毫米白色光伏显示屏来实现高识别度。
采用终级拆装结构,提高了维修性能。
连接方法可以从螺钉端子和推入式紧固端子中选择。
实现了50ms的高速采样。
无需程序通信即可轻松与PLC连接。
使用电通讯转换村(另售)连接到电脑后,
无法设置电源连接。
它可以通过CS-Thermo(单独销售)轻松设置。
servo driver is also called “servo controller” and “servo amplifier”. Its working principle is a kind of controller used to control servo motor. Its function is similar to that of frequency converter acting on ordinary AC motor. It is a part of servo system and is mainly used in high-precision positioning system. Generally, servo motors are controlled by three ways: position, speed and torque, so as to realize high-precision positioning of transmission system. At present, it is a high-end product of transmission technology.
Is it driven by amplifying the pulse signal from plc?
is not simple amplification. The output of PLC is just square wave, while the output of driver is sine wave. It can be understood that the pulse of PLC is the work instruction of the servo driver, like the work instruction of the leader. The servo driver is the director who works for the leader. The leader requires the director to do this, and the director still has to use his own brains to do it. Servo driver can be understood as an AC power supply that can satisfy the work of servo motor. When it drives servo motor, it does not simply amplify the pulses of PLC, but understands what these pulses do, and then simulates and outputs sine waves through PWM to control the work of servo motor.
Generally, PLC sends pulses, which are PLS pulses, that is, square waves with fixed pulse width and interval. The number of square waves can be understood as “step distance”, that is, when a pulse comes down, the servo motor has to take “one step” (that is, how many angles it rotates). Therefore, the more pulse square waves, the more angles the servo motor rotates, so the servo driver will output waveforms that can make the servo motor rotate. However, the servo motor can’t be simply completed by the motor structure like the stepping motor. It needs a position loop to make a closed loop, that is, it measures how much the current motor angle changes by the pulse of the encoder, and then adjusts the output voltage and output frequency by PID.
means that the servo driver should compare the received PLC pulse with the encoder pulse fed back by the motor (which can be simply understood as subtraction), then output a value after PID calculation, and then give it to the so-called speed loop and current loop, and then calculate. Finally, the IGBT module is controlled by PWM means, and a certain square wave is output to simulate sine wave to control the rotation speed of the servo motor to meet what angle it will rotate to. From the bottom point of view, the control of servo driver is similar to that of vector inverter.
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