Claims
- 1. A safety switching device module arrangement for driving at least one actuator in response to a safety switching event represented by a safety transmitter, said module arrangement comprising:a plurality of input module places each adapted to accommodate an input module, a plurality of output module places each adapted to accommodate an output module, at least one input module adapted to process an input signal received from said safety transmitter, said at least one input module generating at least one output signal in correspondence to said safety switching event, and a plurality of output modules, each of said output modules being adapted for receiving said output signal and being configured for driving an actuator in response to said output signal, wherein said input module places and said output modules places are physically arranged in a series forming a series of module places such that said at least one input module and said output modules each have a defined position within said series, and wherein said input module places and said output module places are configured so that the associated signal connectivity between said input module and said output modules is determined by the position of said input module within said series of module places.
- 2. The module arrangement of claim 1, comprising at least a first, a second, and a third input module place each adapted for accommodating an input module, and at least a first and a second output module place each adapted for accommodating an output module, wherein the first input module place is connected to the first output module place, wherein the second input module place is connected to the second output module place, and wherein the third input module place is connected to both the first and the second output module place.
- 3. The module arrangement of claim 2, wherein each input module place has an output terminal, and each output module place has an input terminal, and wherein each output terminal is fixedly wired to at least one of said input terminals.
- 4. A safety switching device module arrangement for driving at least one actuator in response to a safety switching event, said module arrangement comprising;a plurality of input modules each for processing an input signal received from a safety transmitter, said input modules each generating an output signal in correspondence to said safety switching event, and at least a first and a second output module, each of said output modules being adapted for receiving said output signals and being configured to drive an actuator in response to said output signals, wherein said input modules and said output modules are physically arranged in a series forming a physically arranged series of modules, each of said modules having a defined position within said physically arranged series, and wherein each of said input modules is connected to at least one of said output modules depending on its position within said physically arranged series of modules.
- 5. The module arrangement of claim 4, further comprising module places each for accommodating either one input module or one output module.
- 6. The module arrangement of claim 4, further comprising a control module for controlling said connections of said input modules to said output modules.
- 7. The module arrangement of claim 6, wherein said control module comprises a memory unit, in which an association table defining said connections is stored, and further comprising a data bus connecting said control device to said input and said output modules.
- 8. A safety switching device module arrangement for driving at least one actuator in response to a safety switching event represented by a safety transmitter, said module arrangement comprising:at least one input module for processing an input signal received from said safety transmitter, said at least one input module generating at least one output signal in correspondence with said safety switching event, and a plurality of output modules, each of said output modules being adapted for receiving said output signal and being configured for driving an actuator in response to said output signal, wherein said input module and said output modules are physically arranged in a series forming a physically arranged series of modules, each of said modules having a defined position within said physically arranged series, and wherein said input module has an associated signal connectivity to at least one of said output modules based on its position within said physically arranged series of modules.
- 9. The module arrangement of claim 8, comprising at least a first, a second, and a third input module place each for accommodating an input module, and at least a first and a second output module place each for accommodating an output module, wherein the first input module place is associated to the first output module place, wherein the second input module place is associated to the second output module place, and wherein the third input module place is associated to both the first and the second output module place.
- 10. The module arrangement of claim 9, wherein each input module place has an output terminal, and each output module place has an input terminal, and wherein each output terminal is wired to at least one of said input terminals in accordance with said associations.
- 11. The module arrangement of claim 8, further comprising a control module which controls said associations of said input modules to said output modules.
- 12. The module arrangement of claim 11, wherein said control module comprises a control device having a memory unit, in which an association table representing said associations is stored.
- 13. The module arrangement of claim 12, wherein said control module comprises a microprocessor as control device and a data bus for connecting the control device to said modules.
- 14. The module arrangement of claim 13, wherein said data bus is implemented as an optical data bus, and wherein each input module and each output module comprises an optical transmitter and an optical receiver for establishing an optical data connection between modules adjacent within said series of modules.
- 15. The module arrangement of claim 12, wherein said control device comprises a detection unit for detecting a positioning of said input and output modules within said series of modules, said detection unit being adapted to determine an absolute association table on the basis of the positioning of the output modules detected and on the basis of a predefined relative association table.
- 16. The module arrangement of claim 12, further comprising an input unit for editing said association table.
- 17. The module arrangement of claim 8, wherein said at least one input module is an input circuit and each of said plurality of output modules is an output circuit of a safety switching device.
Priority Claims (1)
Number |
Date |
Country |
Kind |
100 20 075 |
Apr 2000 |
DE |
|
CROSS-REFERENCES TO RELATED APPLICATIONS
This application is a continuation of copending international patent application PCT/EP01/02771 filed on Mar. 13, 2001 designating the U.S., which claims priority from German patent application DE 100 20 075.3, filed on Apr. 22, 2000.
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Continuations (1)
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Number |
Date |
Country |
Parent |
PCT/EP01/02771 |
Mar 2001 |
US |
Child |
10/273155 |
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US |