The UDT’s are structured based upon the I/O memory being utilized by the ConveyLinx module’s mode of operation. The DAP selected for you module is dependent upon what you want to do with it and which of the two configuration methods you are going to use. These sections indicate the combinations of functionality, the DAP to select, it memory requirements, and the UDT to use.

ERSC Family DAPs when using Separate ConveyLinx Auto-Configuration

Module Mode Module Mode Input Bytes Input UDT Output Bytes Output UDT
Full ZPA ConveyLinx in ZPA mode 64 CLXZPA_IN 64 CLXZPA_OUT
Full ZPA with Merger ConveyLinx in ZPA mode 64 CLXZPA_IN 64 CLXZPA_OUT
Reduced ZPA ConveyLinx in reduced ZPA mode 30 CLXZPAmini_IN 30 CLXZPAmini_OUT
Full PLC ConveyLinx in PLC mode 64 CLXPLC_IN 64 CLXPLC_OUT
Reduced PLC ConveyLinx in reduced PLC mode 16 CLXPLCmini_IN 16 CLXPLCmini_OUT
PLC with ConveyLogix ConveyLinx in PLC mode with ConveyLogix 32 N/A 32 N/A

ERSC Family DAPs when using Topology Configuration

Module Mode Module Mode Input Bytes Input UDT Output Bytes Output UDT
Full ZPA ConveyLinx in ZPA mode 64 CLXZPA_IN 64 CLXZPA_OUT
Full ZPA with Merger ConveyLinx Merger 64 CLXZPA_IN 64 CLXZPA_OUT
Reduced ZPA ConveyLinx in reduced ZPA mode 30 CLXZPAmini_IN 30 CLXZPAmini_OUT
Full PLC ConveyLinx in PLC mode 64 CLXPLC_IN 64 CLXPLC_OUT
Reduced PLC ConveyLinx in reduced PLC mode 16 CLXPLCmini_IN 16 CLXPLCmini_OUT
PLC with ConveyLogix ConveyLinx in PLC mode with ConveyLogix 32 N/A 32 N/A