The innovation refers to a switch logic module with multiplex function, which is used in electrical controls, e.g. machine construction.
A variety of solutions are known for this application. However, there are often some very individual problems for which a solution is needed, and for which the existing products offer only very unsatisfactory solutions, whether they are too large, too small, don't offer the required amount of flexibility or the solutions are simply not economical.
This especially applies to the smallest of installations for which the use of conventional memory programming units (SPE) cannot be implemented economically and for which the available space is frequently insufficient. The currently known products used for this application indicate a uniform design for the major aspects, which makes the installation on the DIN rail of conventional electronics installation cabinets possible.
DE 10 2007 006 830 A1 defines a control and/or data transmission module, which serves to activate adjacent input/output modules (I/O modules) and which is plugged onto the modules to establish the mechanical and electrical connections. At least one signal channel is thereby connected to one data bus using a first connection and at least one additional connection connects a bus user to the signal channel.
The purpose of the innovation is to provide a space-saving and cost-efficient solution, which can be used to cyclically switch multiple electric signals to one output with little installation effort and great flexibility.
The solution for this task occurs according to the innovation due to the characteristics of Claim 1. Advantageous designs of the innovation are indicated in the subclaims.
Accordingly, a switch logic module is provided according to the innovation, which can be mechanically and electrically connected to and disconnected from the I/O modules that are arranged next to each other, whereby the I/O modules have at least one electrical contact and the mechanical connection can be established using the electrical contacts, which is marked by that a multiplex logic is provided, with which the electrical contacts of the I/O modules can be connected cyclically with an output of the switch module for a predefined switch time.
Typically, the I/O modules are thereby arranged parallel next to each other. Further, it should preferably be ensured that the switch logic module can be directly connected to the I/O modules.
In other words, it is suggested to plug a multiplex module onto the contacts that are arranged next to each other as an example. The output of the module is thereby preferably designed as an electrical contact, from where the multiplex device can be gripped.
Alternatively, or in addition to this, the output should preferably be designed as radio transmission receiver, which can be used to transmit the multiplex signal without any additional wiring using standard wireless solutions, such as Bluetooth, WLAN or DECT.
Furthermore, it thereby advantageous to design the switch times of the cycle of the multiplex logic configurable. This can be achieved especially space-saving using DIP switches.
It is furthermore suggested that the number of I/O modules to be connected by the switch logic module can be configured according to a preferred further development of the innovation, which will result in a broader range of applications. I/O modules that are spanned by the switch logic module but that are not required can thereby be replaced with cost-effective simple terminals with the same housing shape.
The number of connectable I/O modules is thereby preferably also adjustable using DIP switches. In contrast to programmable solutions, the DIP switch offers the advantage that it can be read out directly from the status. Furthermore, no electrical programming interface is required for the use of DIP switches for configuration.
Furthermore, the switch logic module is preferably designed so that the corresponding switch status can be signaled and thereby be made visible and/or fed to an analytic logic for interpretation of the output signal.
This preferably occurs in binary coding of the switch status digitally using a corresponding number of signal outputs and/or LEDs.
The switch logic module should preferably be supplied with power using the signal lines, e.g. multiplex output, so that no additional contact effort is required for power supply.
The innovation is explained in more detail below referencing the drawing based on preferred design variations.
Shown as follows
The housing of the switch logic module 1 is designed to complement the housing shapes of the I/O modules 2 so that it can be attached to them flush and thereby provides a natural mechanical secure fit. Fitting for electrical terminals or electrical bushings of the I/O modules 2, the switch logic module 1 has additional connectors that are not shown, which can be fitted and inserted in the terminals and/or bushings of the I/O modules 2 and not only warrant a mechanically secure fit but also an electrical connection.
Furthermore, the switch status of the eight possible switch settings of the switch logic module have binary encoding through three digital wires 16 and connected to a control and/or evaluation unit 13. The module is supplied with power through the analog signal output 8.
Number | Date | Country | Kind |
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10 2010 007 953.7 | Feb 2010 | DE | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2011/052001 | 2/10/2011 | WO | 00 | 12/17/2012 |