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VMIVME-017807-413000

VMIVME-017807-413000

主营产品PLC可编程控制器模块,DCS卡件,ESD系统卡件,振动监测系统卡件,汽轮机控制系统模块,燃气发电机备件等,优势品牌:Allen Bradley、BentlyNevada、ABB、Emerson Ovation、Honeywell DCS、Rockwell ICS Triplex、FOXBORO、Schneider PLC、GE Fanuc、Motorola、HIMA、TRICONEX、P...

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VMIVME-017807-413000

    主营产品

    PLC可编程控制器模块,DCS卡件,ESD系统卡件,振动监测系统卡件,汽轮机控制系统模块,燃气发电机备件等,优势品牌:Allen Bradley、BentlyNevada、ABB、Emerson Ovation、Honeywell DCS、Rockwell ICS Triplex、FOXBORO、Schneider PLC、GE Fanuc、Motorola、HIMA、TRICONEX、Prosoft等各种进口工业零部件

    产品广泛应用于冶金、石油天然气、玻璃制造业、铝业、石油化工、煤矿、造纸印刷、纺织印染、机械、电子制造、汽车制造、塑胶机械、电力、水利、水处理/环保、锅炉供暖、能源、输配电等等

    VMIVME-017807-413000汽轮机卡件

    控制器满足保护类别的要求

    符合EN 60 529第10.91版(DIN VDE 0470-1)的IP10。

    它被设计为安装在控制柜中或关闭外壳(根据DIN VDE 0160第05.88版第5.5.1.3节和第6.5.2.3节)。

    注:建造控制柜时,请确保符合根据所有安全指南,相应的接触保护(用于工业设备参见例如EN 60204/DIN VDE 0113,第1节)。

    5.2使用控制柜中的冷却器

    控制器只能在不降低额定数据的情况下运行

    环境温度为45°C。这意味着它可能是需要使用冷却器。由于冷却器的原理,冷凝水形成。注意

    以下是:•始终布置冷却器,以确保任何形成的冷凝水不会不得滴到控制柜内的电子设备上。

    •放置冷却器,使冷却器的鼓风机不会喷出任何水

    冷凝可能聚集在电子设备上的水。将冷却器的温度设置为40°C且不低于40°C!

    •必须设置具有自动调节温度的冷却器,以便内部机柜温度不低于外部温度。设定温度限制在40°C!

    •仅使用密封良好的机柜,以避免进入机柜的暖空气导致冷凝。

    •如果必须在门打开的情况下操作控制柜(在启动、维修等),然后确保门关闭-控制器在任何时候都不比机柜中的空气冷。

    在这种情况下可能形成冷凝。

    因此,有必要运行冷却器,即使机器关闭,直到内部温度

    机柜和已安装单元的机柜相同。使用型号为SUP-M01-HD的安装轨道(零件编号:271274)将驱动控制器安装在机柜中。轨道长度仅为750 mm,需要缩短至安装时所需的长度。

    通过将安装轨道拧到安装面板。只要把每一个螺丝拧到位就足够了轨道牢固地固定在适当的位置。

    同一组孔可用于安装控制装置(无轨道)。辐射到控制柜的驱动系统的功率损耗为:

    根据供应装置的损失之和计算以及每个驱动控制器的损耗。

    请遵守文件“DOK-POWER*-HVE+HVR**G2-

    AWxx-EN-P“在确定供应装置的损失和串联开关器件。

    驱动控制器的功率损耗包括:

    •控制单元的损耗(见第4-2节:“概述技术数据)

    •功率部分的基本损耗

    •功率段的电流相关损耗。

    使用平均值计算功率段的功率损耗

    控制器的连续电流基于下图。The controller meets the demands as set forward for protection category

    IP10 as per EN 60 529, ed. 10.91 (DIN VDE 0470-1).

    It has been designed to be mounted into a control cabinet or closed

    housing (as per DIN VDE 0160, ed. 05.88 section 5.5.1.3 and 6.5.1.3).

    Note: When building the control cabinet make sure that you comply

    with all safety guidelines respective contact protection (for

    industrial equipment see, e.g., EN 60204 / DIN VDE 0113,

    section 1).

    5.2 Using Coolers in the Control Cabinet

    The controller may only be operated without a reduction of rated data up

    to an ambient temperature of 45°C. This means that it might be

    necessary to use a cooler.Due to the very principle of a cooler, condense water develops. Note the

    following:

    • Always arrange the coolers so that any forming condense water does

    not drip onto electronic equipment within the control cabinet.

    • Place the coolers so that the blower of the cooler does not spray any

    condense water that might collect onto electronic equipment.Set coolers to a temperature setting of 40° C and no lower!

    • Coolers with self-adjusting temperature must be set so that the inside

    cabinet temperature is not cooler that of the outside. Set temperature

    limit to 40° C!

    • Only use well-sealed cabinets to avoid condensation caused by warmhumid outside air entering the cabinet.

    • If the control cabinet must be operated with doors open (during

    startups, servicing, etc.), then make sure that after the doors are

    closed the controller is at no time cooler than the air in the cabinet.

    Condensation could form in this case. It is, therefore, necessary to run

    the cooler even when the machine is off until the temperature inside

    the cabinet and that of the installed units is the same.Use the mounting tracks with type designation SUP-M01-HD (part

    number: 271274) to mount the drive controller in the cabinet. The tracks

    only come in a length of 750 mm and need to be shortened to the

    required length at the time of mounting.

    The mounting tracks are themselves mounted by screwing them onto the

    mounting panel. It suffices to screw every other screw into place to have

    the track firmly in place.

    The same set of holes can be used to mount the control (without track).The power loss of a drive system radiated to the control cabinet is

    calculated from the sum of the losses of the supply unit, the losses of the

    series switching device, and the losses of each drive controller.

    Please observe the documentation "DOK-POWER*-HVE+HVR**G2-

    AWxx-EN-P" when determining the losses of the supply unit and those of

    the series switching devices.

    The power loss of a drive controller is composed of

    • the losses for the control unit (see section 4-2: "An Overview of

    Technical Data")

    • the basic losses of the power section

    • the current-related losses of the power section.

    The power loss of the power section is calculated using the mean

    continuous current of the controller on the basis of the following diagrams.

    品牌:GE

    型号:VMIVME-017807-413000

    产地:美国

    质保:365天

    成色:全新/二手

    发货方式:快递发货


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