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System Installation Environment-T9110

Date: Apr 23, 2025 Views: 851

  The installation environment can be a source of common cause failure so it is necessary that the installation assessment covers the environmental specification forthe AADvance system and includes the following:

  • the prevailing climatic conditions

  • type of area, e.g. is it a hazardous or non-hazardous area

  • location of power sources

  • earthing and EMC conditions

  In some customer installations parts of the system can be installed in differing locations; in these cases the assessment must include each location.

  Power Sources and Heat Dissipation Calculations

  It is highly recommended that module supply power and field loop power consumption calculations are done to find out the heat dissipation before designing a suitable enclosure and making a decision about the installation environment (see topic "System Design for Heat Dissipation").

  Safety Related System Installation Process

  For a Safety Related System the installation process must also be in line with the following:

  Environment Standards

  The AADvance system has been investigated to United States National Standard (s) UL 61010-2-201, and Canadian National Standard (s) C22.2 No 61010-2-201. The investigation covers the following modules and provides requirements for compliance to the standards for use in a non-hazardous and hazardous environments.

  The AADvance controller has been investigated and approved by UL for use as Industrial Control Equipment in hazardous locations, Class I, Division 2, Groups A, B, C and D in North America.

  The AADvance controller has been assessed for ATEX compliance. The UL Certification No. is DEMKO 11 ATEX 1129711X. The ATEX marking is Ex ec IIC T4 Gc.

  Additionally the AADvance controller is certified under the IECEx certification scheme. The certificate number is IECEx UL 12.0032X

  Installation Requirements for Non-Hazardous Environment

  Investigation File Number E341697

  Products Covered

  The products investigated and approved:

  Programmable Logic Controller Models:

  • T9110 Processor Module

  • T9401 Digital Input Module

  • T9402 Digital Input Module, 16 Channel

  • T9431 Analogue Input Module

  • T9432 Analogue Input Module, 16 Channel

  • T9451 Digital Output Module

  • T9481 Analog Output Module

  • T9482 Analogue Output Module, 8 Channel.

  Listed Accessories for use with PLCs:

  • T9100 Processor Backplane

  • T9300 I/O Backplane

  • T9801 Digital Input Termination Assembly, Simplex

  • T9802 Digital Input Termination Assembly, Dual

  • T9803 Digital Input Termination Assembly, TMR

  • T9831 Analogue input Termination Assembly, Simplex

  • T9832, Analogue Input Termination Assembly, Dual

  • T9833 Analogue Input Termination Assembly, TMR

  • T9851 Digital Output Termination Assembly, Simplex and T9852 Digital Output Termination Assembly, Dual

  • T9892 Digital Output Termination Assembly, Dual

  • T9881 Analogue Output Termination Assembly, Simplex

  • T9882 Analogue Output Termination Assembly, Dual.

  Environmental

  In a non-hazardous environment a system can be installed in an enclosure or on a support/wall; however, the enclosure or the area where it is installed must not be more than a Pollution Degree 2 or similar environment in accordance with IEC 60664-1.

  The surrounding air temperature ratings are:

  • For the T9110 Processor module = 60 °C

  • For all other I/O modules, base units and termination assemblies = 60 °C

  Pollution Degree Definition

  For the purpose of evaluating creepage distances and clearances, the following four degrees of pollution in the micro-environment are established:

  • Pollution Degree 1: No pollution or only dry pollution occurs. The pollution has no influence.

  • Pollution Degree 2: Only non-conductive pollution occurs except that occasionally a temporary conductivity caused by condensation is to be expected.

  • Pollution Degree 3: Conductive pollution occurs or dry non-conductive pollution occurs which becomes conductive due to condensation which is to be expected.

  • Pollution Degree 4: Continuous conductivity occurs due to conductive dust,rain or other wet conditions.

  Installation Requirements for Hazardous Environment

  The AADvance controller has been investigated and approved by UL for use as Industrial Control Equipment in hazardous locations, Class I, Division 2, Groups A, B, C and D in North America.

  The AADvance controller has been assessed for ATEX compliance. The UL Certification No. is DEMKO 11 ATEX 1129711X. The ATEX marking is Ex ec IIC T4 Gc.

  Additionally the AADvance controller is approved under the IECEx certification scheme. The certificate number is IECEx UL 12.0032X.

  Installation Requirements

  To comply with the standards the following conditions must be applied to the installation:

  File Number E251761

  The AADvance controller investigation and approval is contained in the following file certifications:

  • NRAG.E251761: Programmable Controllers for Use in Hazardous Locations Class I, Division 2, Groups A, B, C and D.

  The products have been investigated using requirements contained in the following standards:

  • ANSI/UL 12.12.01-2013, Nonincendive Electrical Equipment for use in Class I and II, Division 2 and Class III, Division 1 and 2 Hazardous Locations.

  • UL 61010-2-201, Industrial Control Equipment.

  • NRAG7.E251761: Programmable Controllers for Use in Hazardous Locations Certified for Canada; Class I, Division 2, Groups A, B, C and D.

  The products have been investigated using requirements contained in the following standards:

  • CSA C22.2 No 213-M1987, Nonincendive Control Equipment for Use in Class I, Division 2, Hazardous Locations

  • CSA C22.2 No. 61010-2-201, Process Control equipment, Edition 1..

  Products Covered

  The products investigated and approved:

  Programmable Logic Controllers Models:

  • T9110 Processor Module

  • T9401/2 Digital Input Module

  • T9431/2 Analogue Input Module

  • T9451 Digital output Module

  • T9482 Analogue Output Module.

  Listed Accessories for use with PLCs:

  • T9100 Processor Backplane

  • T9300 I/O Backplane

  • T9801 Digital Input Termination Assembly, Simplex

  • T9802 Digital Input Termination Assembly, Dual

  • T9803 Digital Input Termination Assembly, TMR

  • T9831 Analogue input Termination Assembly, Simplex

  • T9832, Analogue Input Termination Assembly, Dual

  • T9833 Analogue Input Termination Assembly, TMR

  • T9851 Digital Output Termination Assembly, Simplex.

  Certifications for Safety System Applications in Hazardous Environments

  ATEX Certificate

  Refer to AADvance Series T9000 Programmable Control and Safety System - ATEX certificate, publication 9000-CT003.

  IECEx UL Certificate

  Refer to AADvance Series T9000 Programmable Control and Safety System - IECEx certificate, publication 9000-CT006.

  The AADvance Software Development Environment

  The AADvance Workbench software or AADvance-Trusted SIS Workstation software lets you design one complete control strategy, and then target parts of the strategy to individual controllers. Interaction between the resources is automatic, significantly reducing the complexity of configuration in a multiresource system. Programs can be simulated and tested on the computer running the software before downloading to the controller.

  The AADvance Workbench software and AADvance-Trusted SIS Workstation software are compliant with the IEC-61131 industrial standard and have several powerful features:

  • the regulation of the flow of control decisions for an interacting distributed control system

  • providing for the consistency of data

  • providing a means for synchronous operation between devices

  • eliminating the need to have separate synchronous schemes

  • easing the development and maintenance of robust systems

  The AADvance Workbench software and AADvance-Trusted SIS Workstation software are software development environments for a controller. Use the AADvance Workbench software or AADvance-Trusted SIS Workstation software to create local and distributed control applications using the languages of IEC 61131-3.


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