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ABB CS513K02 3BSE004773R1 Thermocouple card

ABB CS513K02 3BSE004773R1 Thermocouple card

ABB CS513K02 3BSE004773R1 Thermocouple card

This word will be set to 0 when the command block is complete. 4101 Block ID This field will contain the value of 9950. 4102 Number of Commands reported This field contains the number of commands contained in the block that must be processed by the PLC. This field will have a value of 1 to 60. 4103 Start Index of First Command This field contains the index in the command list for the first value in the file. This field will have a value of 0 to MaxCommands-1. 4104 to 4163 Command List Errors Each word of this area contains the last error value recorded for the command. The command index of the first value (offset 4) is specified in word 3 of the block. The number of valid command errors in the block is set in word 2 of the block. Refer to the command error list to interpret the error codes reported.

The module will respond to a valid block 9970 

request with a block containing the requested date and time. The format for the block is shown the following diagram:This field contains the block identification code of 9971 for the block.The module does not send a response block to the processor after receiving this block. The module will set register 4100 to zero after processing the data. Warm Boot Block (9998) Block 9998 performs a warm-boot operation on the module. The following table describes the format of the block constructed by the processor.In this version of the module, the warm and cold boot processes perform the same operation as many of the variables that must be initialized are fixed when the module first boots and cannot be changed after the application starts. Cold Boot Block (9999) Block 9999 performs a cold-boot operation on the module. The following table describes the format of the block constructed by the processor.

Master Driver

 The master driver supported on each application port of the module emulates an IEC 60870-5-101 master device. Configuration of each port is independent and should be connected to different serial networks. Each port on the module communicates with one or more controlled stations on what are referred to as sessions. A session represents a controlled device with a unique data link layer address. Each session (controlled device) contains one or more data sets (sectors) that are defined by the vendor of the device. The following illustration shows these relationships. In this version of the module, the warm and cold boot processes perform the same operation as many of the variables that must be initialized are fixed when the module first boots and cannot be changed after the application starts.

                                        

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