The present invention relates to a module for a fused switch arrangement, in particular for a fused switch arrangement for busbar systems or for built-in devices. 3-pole fused switch arrangements or built-in devices with three fused switch units are preferably used; however, it is also possible to provide 2-pole or multi-pole fused switch arrangements or built-in devices. In exceptional cases even a 1-pole fused switch arrangement or a 1-pole built-in device is possible. Such devices are in particular deployed for the protection of alternating current circuits, wherein 3-pole units are as a rule necessary in such applications.
A multi-pole fused switch arrangement for busbars is, for example, of known art from DE 199 37 017 C1.
It is an object of the present invention to provide a module for a fused switch arrangement, in particular for a multi-pole fused switch arrangement or for a built-in device, as well as fuse holders for a module or for fused switch arrangements or built-in devices, which enable a better and/or more convenient utilisation or operation by the user. This object is achieved by means of a module in accordance with claim 1 and a fuse holder in accordance with claim 14. Claims 2 to 13 concern particularly advantageous forms of embodiment of the inventive module; Claims 15 to 17 concern particularly advantageous forms of embodiment of the inventive fuse holder.
In accordance with the invention the module comprises a measuring device for purposes of measuring electrical operating values, wherein the measuring device has a set of measurement electronics and at least one display device for purposes of displaying at least one of the electrical operating values measured by the measuring device. Furthermore the inventive module comprises at least one coil device, which is designed such that by means of induction it can provide energy for the measuring device, in particular for the set of measurement electronics and/or the display device, in particular it can provide at least temporarily the total energy supply for the set of measurement electronics and/or the display device.
In the context of this invention the term “electrical operating values” is to be understood to mean electrical values that pertain to the operation of the module or a fused switch arrangement, or sub-units of the fused switch arrangement, in particular individual fused switch units. In particular such electrical operating values comprise current values, voltage values and/or power values. Electrical operating values can pertain to values that pertain to the module or a fused switch arrangement as a whole; however the electrical operating values preferably pertain to values of individual units or phases of the system, and/or, in particular, individual fuse inserts.
In accordance with the invention the at least one coil device is designed such that by means of induction it can provide energy for the measuring device, in particular for the set of measurement electronics and/or the display device, in particular if the module or a fused switch arrangement is in operation, in particular if it is, for example, connected to a busbar system, if it takes the form of a fused switch arrangement for a busbar system, or is connected to another power line, for example by means of wiring.
The current, which flows through individual elements of the module or a fused switch arrangement, in particular through individual fuse inserts, induces by means of the coil device a current that can be made available directly or indirectly to the measuring device, so that the measuring device and/or the display device, at least partially or at least temporarily, does not require any additional energy supply, or requires a smaller supply of energy.
The inventive module has the advantage that electrical operating values of the module, or individual phases of the module or a fused switch arrangement are directly visible to the user, such that the user can immediately discern the operating state. In this manner useful information is on the one hand made available to the user, while on the other hand in particular possible operating errors are avoided.
A further important advantage of the inventive module is that it comprises at least one coil device, which is designed such that by means of induction it can provide energy for the measuring device, and/or the display device, such that it is also possible to operate the measuring device and the display device, at least temporarily, without an additional energy supply, be this an electrical terminal connection, or a battery, or an accumulator.
In the context of this invention a module takes the particular form of a sub-module or individual components of a fused switch arrangement, in particular of a fused switch arrangement for busbar systems, or of components or a sub-module of a built-in device. A preferred form of embodiment of a module can be implemented in terms of the total fused switch arrangement, in particular the fused switch arrangement for busbar systems, or in terms of the built-in device itself In accordance with another preferred form of embodiment the module takes the form of a busbar adapter, which can be positioned on a busbar system, and to which in turn built-in devices, in particular rail-mounted devices, can be attached.
The coil device preferably comprises a coil former and at least one coil winding, wherein in a particularly preferred form of embodiment the coil device comprises at least two coil windings. At least a first coil winding can be designed such that it provides the energy supply for the measuring device and/or the display device, wherein preferably at least a second coil device can be directly or indirectly connected with the measuring device such that by means of the at least one second coil winding and the measuring device electrical operating values of the fused switch arrangement can be determined. The coil device can therefore on the one hand be designed such that it just provides the energy supply for the measuring device and/or the display device; however it can also be preferably designed such that in addition it serves to provide the measurements of the electrical operating values, such that a dual use is enabled in a simple and effective manner.
In a preferred form of embodiment the coil device is externally an insulating body, wherein it is further preferred for the coil winding outputs to be galvanically separated from the main current path. This has the advantage that the coil device is securely separated from the actual current circuit.
The measuring device is preferably designed such that the electrical operating values for individual phases, in particular of a fused switch arrangement, can be separately determined. This has the advantage that the electrical operating values can be displayed in more detail, namely for each phase, which provides the user with better and more reliable information concerning the total system.
In a particular form of embodiment of the module provision is preferably made for the measuring device for each phase to comprise its own set of measurement electronics and/or for each phase at least one coil device.
In one form of embodiment of the inventive module the at least one set of measurement electronics and/or the at least one display device and/or at least one coil device can be provided in or on the housing of the module, for example, the housing of a fused switch arrangement. This has the advantage that these elements are always connected with the module or a fused switch arrangement; also as a result there exists the possibility of attaching all elements in as space-saving a manner as possible, and in a cost-effective manner for manufacture, and/or of arranging the display device such that it is particularly easily visible to the user. Also such a form of embodiment has the advantage that a single display device can be provided for all phases.
In the case of another module the latter comprises a fuse holder for each phase and each fuse insert, wherein preferably at least one fuse holder, particularly preferably each fuse holder, comprises a set of measurement electronics, at least one display device and at least one coil device. Such a device has the advantage that for each individual phase and for each individual fuse insert an independent measurement takes place and the values for each phase can be separately displayed; furthermore the values can be displayed directly in the vicinity of the related fuse insert, namely on the fuse holder. Furthermore this configuration has the advantage that in the case in which a set of measurement electronics for a display device or a coil device is damaged or no longer functions, it is just necessary to replace a fuse holder.
In a further form of embodiment at least one display device is designed such that it can be detached from the module and/or from a fuse holder. Such a detachable display device can, for example, be connected with the module, in particular with a housing of the module, or with a fuse holder, by means of a plug-in device. In another preferred form of embodiment a wireless connection is provided. In particular the wireless connection has the advantage that the display device can be arranged remotely from the module, for example, from a fused switch arrangement, and therefore can be arranged in a particularly preferred position for the user.
In a further form of embodiment the module also comprises an accumulator and/or a battery and/or a solar cell, wherein these additional energy supplies are designed such that they can supply energy to the measuring device. This can be of advantage in order to supply further energy to the measuring device in addition to the energy generated by induction by means of the coil device, with which, for example, the electrical operating values can be determined more accurately, or else electrical operating values can be determined, even if the current, i.e. the energy, which flows through the module or a fused switch unit, or through a phase, is relatively low. A further advantage of such an additional energy supply unit is that the measuring device and/or the display device then also function if the module or a fused switch arrangement for the busbar system are not in operation, i.e. no current is flowing through the module or parts of the module.
In a further preferred form of embodiment the module also comprises a neutral conductor, which is connected onto the measuring device. With this the electrical operating results can be determined more accurately and/or additional electrical operating values, such as, for example, the power, can be determined This has the advantage that further conclusions can be drawn concerning the system in operation.
The invention furthermore concerns a fuse holder for a module, for example, a fused switch arrangement, which is designed such that it can accommodate a fuse insert. In accordance with the invention the fuse holder comprises a measuring device for purposes of measuring electrical operating values, wherein the measuring device has a set of measurement electronics and at least one display device for purposes of displaying at least one of the electrical operating values determined by the measuring device. The inventive fuse holder comprises at least one coil device, which is designed such that by means of induction it can provide an energy supply for the set of measurement electronics and/or the display device.
Such a fuse holder has the advantage that it can be inserted into any module, also into modules or fused switch arrangements in accordance with the prior art, wherein the above-described advantages are achieved.
In a particularly preferred form of embodiment a module or a fuse holder in accordance with the present invention also comprises a button, with which the measuring device can be switched on or off, e.g., can be activated for a short period of time. This has the advantage that the measuring device is then activated only if it is actually being used, or it is useful for the user.
As an additional, optional possibility for such a button in one form of embodiment provision can also be made for a switchover of the measuring device, or the function of the measuring device, to be possible by means of the button. For example, by means of a button the measuring device can be switched over from a measurement of the current to a measurement of the power. A further option is to allow a minimum value, a maximum value, or an average value of the electrical operating values to be displayed by means of the button, for example, over a particular period of time to be determined.
With regard to a particularly advantageous configuration of such a fuse holder, or a measuring device, or a coil device, which is provided in an inventive module, reference is made to the above embodiments for purposes of avoiding repetition.
These and further features of the present invention are further clarified with the aid of the following figures, which show particularly advantageous forms of embodiment more clearly:
In this form of embodiment the fused switch arrangement comprises a common housing 20, wherein the individual fused switch units are separated by dividing walls. However, this can be implemented in another manner, for example in terms of individual housings for each fused switch unit that are separated from one another, which, for example, are just connected with one another.
The fused switch arrangement 10 comprises attachment devices 60 for purposes of attaching the fused switch unit onto busbars (not shown) of a busbar system.
In the form of embodiment shown in
Each of the fuse holders 100 comprises a display device 120 for purposes of displaying electrical operating values, in particular for purposes of displaying the voltage, current, and/or power of the respective phase of the fused switch unit 10.
As a result of the alternating current that is conducted through the conductor L, and thus through the fuse insert 200, a current is induced in the conductors of the first coil winding 410 and the second coil winding 420.
The first coil winding 410 is, directly or indirectly, connected with a set of measurement electronics 300, and by means of the induced current supplies energy to the latter and the display device 120 that is connected with it.
The second coil winding 420 is likewise, directly or indirectly, connected with the set of measurement electronics 300, and serves to determine the electrical operating values.
The device comprises a display device 120, which is likewise connected with the measuring device and can display the electrical operating values determined.
The elements represented in
As can easily be seen in
The fuse holder shown in
Furthermore the form of embodiment of the fuse holder shown in
In an analogous manner to the form of embodiment shown in
In contrast to the form of embodiment shown in
In an analogous manner to the form of embodiment shown in
This form of embodiment additionally comprises a neutral conductor, which is connected with the set of measurement electronics 300, so that additional operating values, such as, for example, the power, can also be measured.
In the form of embodiment shown in
The functional elements, in particular the housing and the fuse holder, correspond essentially to the fused switch arrangement as has been described above. The same or similar elements are therefore provided with identical reference symbols, and for purposes of avoiding repetition reference is made to the above-described form of embodiment with regard to its features and advantages.
The form of embodiment of the fused switch unit 10 shown in
The form of embodiment of the fused switch arrangement shown in
The busbar adapter 12 comprises a carrier rail 14, onto which can be positioned related built-in devices, in particular rail-mounted devices.
The busbar adapter 12 shown in
The busbar adapter 12 comprises a total of three openings 30 for connecting conductors of the system.
The cross-section shown in
The tapping contact 68 is designed integrally with a tapping conductor 64, which leads to a connecting point 66, which is connected with a connecting conductor 32, which is introduced into the opening 30 of the busbar adapter 12.
With regard to the functionality and the advantages of such a form of embodiment reference is made to the above descriptions.
The features of the invention disclosed in the above description, the claims, and the figures can be of importance, both individually, and also in any combinations for realisation.
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP2012/003516 | 8/17/2012 | WO | 00 | 5/19/2015 |