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IS200FOSAG1A自动化模块备件

IS200FOSAG1A自动化模块备件

IS200FOSAG1A自动化模块备件Tricon v9–v10系统确定冷却要求指南通过计算系统中所有Tricon模块的热负荷来确定冷却要求。表70(第167页)确定了每个模块的逻辑和现场电源使用情况。为了实现Tricon控制器的最大可靠性,环境温度必须低于104F(40C)。请联系Triconex以获取有关冷却需求的进一步帮助。为确定冷却要求,增加:•所有主模块的逻辑电源和现场电源•所有热备用模...

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IS200FOSAG1A自动化模块备件

    IS200FOSAG1A自动化模块备件

    Tricon v9–v10系统确定冷却要求指南通过计算系统中所有Tricon模块的热负荷来确定冷却要求。表70(第167页)确定了每个模块的逻辑和现场电源使用情况。为了实现Tricon控制器的最大可靠性,环境温度必须低于104°F(40°C)。请联系Triconex以获取有关冷却需求的进一步帮助。为确定冷却要求,增加:•所有主模块的逻辑电源和现场电源•所有热备用模块的现场电源表70 Tricon模块型号的逻辑和现场电源。最大逻辑功率(瓦特)1最大现场功率主/备用输出(监控或非监控,32点)3625 13 110脉冲输入351x 20可忽略的脉冲累加器输入3515 10 96(24)/96(24)继电器输出3636R/T 15可忽略的热电偶(隔离)3708E 15可忽略热电偶(非隔离)3706A 10可忽略的HART模拟输入接口2770H 5可忽略168第3章Tricon v9–v10系统安装指南安装和维护计划与安装指南本节包括Tricon控制器的安装指南。主题包括:•第168页上的一般安装指南•第169页上的工厂电源和接地•第170页上的Tricon现场、电源和接地线•第172页上的应用特定安装指南一般安装指南由于Tricon通常用于关键应用,它被设计成在工业环境中典型的恶劣环境中的最坏情况下工作。为了确保即使在这些最坏情况下也能保持足够的操作裕度,Tricon应按照IEC 61131第4部分“可编程控制器”中的一般指南安装在受控环境中,用户指南本标准第7节包括帮助控制以下环境条件的检查表:•温度•污染物HART模拟输出接口2870H 5可忽略的高级通信模块4609 15增强型智能通信模块4119、4119A 10高速接口模块4509 10网络通信模块4329、,4329G 20安全管理器模块4409 20 Tricon通信模块4351、4351A、4351B、4352、4352A、4352B、4353、4354 7 1。要将瓦特转换为英制热量单位,请使用以下公式:BTU=瓦特x 3.414。2.热备用数字输出模块比主数字输出模块消耗更少的现场功率。3.表示功率模块内部的功率损耗。表70 Tricon模块的逻辑和现场功率(续)型号最大逻辑功率(瓦)1最大现场功率主/备用(典型)2安装指南169 Tricon v9–v10系统的规划和安装指南•冲击和振动•电磁干扰典型指南包括:•将Tricon远离明显的热源:空间加热器、,太阳辐射等。•定位Tricon或将其与明显的腐蚀性气体或灰尘源隔离。•定位Tricon或将其与明显的冲击或周期性振动源隔离:旋转机械、发动机、压缩机、压力机等。•定位Tricon并将其与电磁干扰源隔离:大型电机或电机控制器、功率转换器、无线电控制设备、焊接设备等。工厂电源和接地所有工厂和控制室的配电和安全接地(保护接地)必须按照适用的国家电气规范进行,典型示例包括:IEC 60364,《建筑物电气安装国家防火协会》,2002版《国家电气规范手册》,或在简单改造可行的情况下,电厂和/或控制室安全接地系统应采用补充零参考信号平面或电网(ZRSG)。成功的Tricon应用不需要在设备或控制室安装此类系统,但它代表了现代最佳行业实践,应尽可能遵循。即使未在工厂或控制室层面实施,Tricon机柜和互连电缆布线中也应包含现代ZRSG的概念。

    Guide for Tricon v9–v10 Systems Determining Cooling Requirements Cooling requirements are determined by calculating the heat load dissipated by all the Tricon modules in the system. Table 70 (on page 167) identifies logic and field power usage for each module. For maximum reliability of the Tricon controller, the ambient temperature must be below 104° F (40° C). Please contact Triconex for further assistance with cooling needs. To determine cooling requirements, add: • logic power and field power for all the primary modules • field power for all hot-spare modules Table 70 Logic and Field Power of Tricon Modules Type Model No. Maximum Logic Power (Watts)1 Maximum Field Power Primary/Spare Output (Supervised or Non-Supervised, 32 points) 3625 13 110 Pulse Input 351x 20 Negligible Pulse Totalizer Input 3515 10 96 (24) / 96 (24) Relay Output 3636R/T 15 Negligible Thermocouple (Isolated) 3708E 15 Negligible Thermocouple (Non-Isolated) 3706A 10 Negligible HART Analog Input Interface 2770H 5 Negligible 168 Chapter 3 Installation and Maintenance Planning and Installation Guide for Tricon v9–v10 Systems Installation Guidelines This section includes installation guidelines for the Tricon controller. Topics include: • General Installation Guidelines on page 168 • Plant Power and Grounding on page 169 • Tricon Field, Power, and Ground Wiring on page 170 • Application-Specific Installation Guidelines on page 172 General Installation Guidelines Due to the critical applications the Tricon is typically used in, it has been designed to operate under worst-case conditions in the harsh environments typically found in industrial environments. To ensure adequate operational margins are maintained even under these worst-case conditions, the Tricon should be installed in a controlled environment per the general guidelines contained in: IEC 61131, Part 4, Programmable controllers, User Guidelines Section 7 of this standard includes checklists to help control the following environmental conditions: • Temperature • Contaminants HART Analog Output Interface 2870H 5 Negligible Advanced Communication Module 4609 15 Enhanced Intelligent Communication Module 4119, 4119A 10 Hiway Interface Module 4509 10 Network Communication Module 4329, 4329G 20 Safety Manager Module 4409 20 Tricon Communication Module 4351, 4351A, 4351B, 4352, 4352A, 4352B, 4353, 4354 7 1. To convert watts to British thermal units, use the formula: BTU = watts x 3.414. 2. Hot-spare Digital Output Modules consume less field power than primary Digital Output Modules. 3. Represents power loss internal to the Power Modules. Table 70 Logic and Field Power of Tricon Modules (continued) Type Model No. Maximum Logic Power (Watts)1 Maximum Field Power Primary/Spare (Typical)2 Installation Guidelines 169 Planning and Installation Guide for Tricon v9–v10 Systems • Shock and vibration • Electromagnetic interference Typical guidelines include: • Locate the Tricon away from obvious sources of heat: space heaters, solar radiation, etc. • Locate or isolate the Tricon from obvious sources of corrosive gases or dust. • Locate or isolate the Tricon from obvious sources of shocks or periodic vibrations: rotating machinery, engines, compressors, presses, etc. • Locate or isolate the Tricon from obvious sources of electromagnetic interference: large motors or motor controllers, power converters, radio controlled equipment, welding equipment, etc. Plant Power and Grounding All plant and control room power distribution and safety grounding (protective earthing) must be done per the applicable national electric codes, typical examples include: IEC 60364, Electrical Installations of Buildings National Fire Protection Association, 2002 Edition of the National Electrical Code Handbook For new construction, or where simple retrofits are feasible, the plant and/or control room safety grounding system should employ a supplemental Zero Reference Signal Plane or Grid (ZRSG). Installation of such a system for the plant or control room is not required for a successful Tricon application, but does represent modern best industry practice and should be followed wherever possible. Even when not implemented at the plant or control room level, the concepts of a modern ZRSG should be included in the Tricon cabinet and interconnecting cable routing.

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    品牌: GE

    型号:IS200FOSAG1A 

    质保:365天

    成色:全新/二手

    发货方式:快递发货


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