SDK-C0148 12003-101-01 SBS05M09B AlSTHOM Control Module

SDK-C0148 12003-101-01 SBS05M09B

Product Parameter

◆ High-capacity onboard DDR memory: 128-256Mbyte
◆ On-chip disk support: 2-256M eDisks
◆ Supports Windows XP, XPE, WINCE6.0 and Linux.
◆ Standard parallel port, 2 serial ports, 2 USB ports
◆ On-board IDE hard disc drive interface available

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Description

SDK-C0148 12003-101-01 SBS05M09B AlSTHOM Control Module


These modules provide a direct connection to most sensors that output SSI data. Programmable features include: clock frequency, data type, position preset, counting direction and data scaling.AMCI’s programmable limit switch modules each accept a resolver input for axis position feedback and control outputs based on resolver position, programmed up/down SETT points, and programmable speed compensation values with no processor intervention. The need for additional PLC hardware and vendor-supplied middleware is greatly reduced.” The DAS server for connecting to GE is compliant with the OPC 2.05 protocol, making any OPC client application interoperable. In addition, OPC clients can browse the DAD server ‘configured with a database of tags, which makes it easy to obtain device tags for use in client applications. This time-saving feature provides a convenient way to retrieve and build tag databases in client applications.Supplied exclusively through MECO, it enables the marking system to connect and communicate directly with the plant floor programmable logic controller. This new technology results in an Ethernet/IP solution that greatly reduces custom programming and eliminates the need for a fragile PC on the shop floor. Ethernet/IP simply uses a command to mark a job file, allowing the marking device to be controlled by the PLC via Ethernet/IP. As a result, what would normally take 30 or more hours of programming and integration work with other marking systems may now be reduced to eight minutes with the ESE Marker, which includes additional configuration files.” Most factory equipment is controlled by PLCS to automate processes in the assembly line. Devices such as conveyors, robotic devices and vision systems often use Ethernet/IP to communicate directly with the PLC.

The module’s up to four different network protocols can be active at any one time for applications with multiple vendor controllers. This synchronised protocol functionality allows the module to act as a protocol converter, data concentrator and gateway to seamlessly share data with different PLC manufacturers, motion controllers, servos, etc. These units include CUL Class I Design Information II, CE certification. Standard interfaces for most of the units include USB, RS232, RS422, RS485, Siemens Direct MPI serial interface, compact flash port and 10/100 Ethernet. the USB host port allows easy connection to barcode readers, printers and a wide range of peripheral devices. Up to four different network protocols can be active at any time for multiple vendor controller applications, simplifies installation, improves the reliability of natural gas measurements, and eliminates the need for third-party fabrication of wiring harnesses or in-house fabrication of wiring harnesses. The module combines measurement and control in one device, reducing equipment costs. At the same time, the system is fully factory tested and maintained, virtually eliminating downtime due to equipment failure. The module is fully CSA/US Class 1, Designer 2 certified, enabling it to be safely installed at the measurement site. The system also eliminates the need for third-party termination boxes, reducing costs and saving significant labour time. the XL unit can further reduce costs by accepting one or two safety interface barriers (sibs) for connecting up to six ThermoScience automated/intelligent multivariable transmitters; this can increase the number of instrument runs while making the purchase of an additional flow computer unnecessary. The equipment is supported by Thermo Fisher’s long legacy of high quality instrumentation and complete factory test procedures, reducing field failures and associated downtime.