Communication system for control applications
First Claim
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1. An improved communication system for digital control applications, comprising:
- a master node and a plurality of slave nodes;
said master node comprising;
first means for formatting and transmitting a flag signal and other data; and
second means for serial-to-parallel conversion and storage of data;
said plurality of slave nodes comprising;
third means for formatting and transmitting data; and
fourth means for serial-to-parallel conversion and latching of data received from the master node;
wherein said master node and said plurality of slave nodes are connected by transmit and receive wires for communication of data formatted into transmit frames and receive frames, said transmit frames and said receive frames being respectively carried by separate cables in full-duplex protocol, the transmit and receive frames being synchronized with each other; and
each said frame comprising a flag signal for synchronization followed by a determined number of channels, each said channel having a determined number of bytes corresponding thereto, and each of said plurality of slave nodes having its own time slot on each transmit and receive frame, whereby transfers to and from all of said plurality of slave nodes are completed in each said frame, wherein said master node is a motion controller that generates motion profiles for motors and said plurality of slave nodes are motor drivers coupled to said motors.
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Abstract
The communication system is a cyclic, serial, multi-drop, master-slave, half-duplex protocol having data formatted into receive frames and transmit frames carried on separate wires. Both receive frame and transmit frame have the same structure and are synchronized with each other. Each frame comprises a flag byte followed by 8 device channels, each channel comprising 3 bytes space. The flag byte is used as a reference for frame synchronization. Physical connection is by way of two half duplex RS-485 multipoint links utilizing telephone cable for connection between devices.
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4 Claims
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1. An improved communication system for digital control applications, comprising:
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a master node and a plurality of slave nodes; said master node comprising; first means for formatting and transmitting a flag signal and other data; and second means for serial-to-parallel conversion and storage of data; said plurality of slave nodes comprising; third means for formatting and transmitting data; and fourth means for serial-to-parallel conversion and latching of data received from the master node; wherein said master node and said plurality of slave nodes are connected by transmit and receive wires for communication of data formatted into transmit frames and receive frames, said transmit frames and said receive frames being respectively carried by separate cables in full-duplex protocol, the transmit and receive frames being synchronized with each other; and
each said frame comprising a flag signal for synchronization followed by a determined number of channels, each said channel having a determined number of bytes corresponding thereto, and each of said plurality of slave nodes having its own time slot on each transmit and receive frame, whereby transfers to and from all of said plurality of slave nodes are completed in each said frame, wherein said master node is a motion controller that generates motion profiles for motors and said plurality of slave nodes are motor drivers coupled to said motors. - View Dependent Claims (2, 3, 4)
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Specification