DEVICE FOR DETECTING THE REMOVAL OF DRUGS
20170165151 ยท 2017-06-15
Inventors
Cpc classification
H04W4/80
ELECTRICITY
A61J7/0436
HUMAN NECESSITIES
G01N27/025
PHYSICS
G06K19/07798
PHYSICS
G07C1/02
PHYSICS
International classification
H04B5/00
ELECTRICITY
H04W4/00
ELECTRICITY
Abstract
A device detects the removal of drugs from a drug blister pack. The device contains a base for receiving the drug blister pack which has a base surface which is configured for contact with the electrically conducting, metal foil that closes the pockets. In the region of the pockets, the base has holes that are configured for the passage of the drugs present in the pocket. In the region of the holes one transmitting coil and at least two receiving coils are each arranged and extend around the respective hole. The receiving coils are associated with each other with respect to the transmitting coil and are arranged such that when the foil resting against the base in the region of the respective hole is undamaged the difference of the voltages induced in the receiving coils by an electric current in the transmitting coil lies below a predetermined threshold value.
Claims
1-12. (canceled)
13. An apparatus for detecting a removal of medicaments from a drug blister pack, the apparatus comprising: a main body for accommodating the drug blister pack and having a base area embodied to rest against an electrically conductive foil sealing off pockets of the drug blister pack, said main body having holes formed therein in a region of the pockets of the drug blister pack, said holes being embodied for a passage of the medicaments situated in the pockets of the drug blister pack, each of said holes disposed in the region of one of the pockets in each case; and coils including one transmission coil and at least two reception coils disposed in a region of each of said holes in each case, said coils surrounding a respective hole, said reception coils are assigned to one another in respect of said transmission coil and disposed such that, in a case where the electrically conductive foil resting on said main body in the region of the respective hole is undamaged, a difference of voltages induced in said reception coils as a result of an electric current in said transmission coil lies below a predetermined threshold.
14. The apparatus according to claim 13, further comprising a detector unit which activates said transmission coil and measures the voltages across said reception coils and which establishes the difference between the voltages across said reception coils and, in a case where the difference of the two voltages exceeds the predetermined threshold, emits a message which indicates a presence of a rip in the electrically conductive foil sealing a respective pocket.
15. The apparatus according to claim 14, further comprising: a memory; and a recording unit which activates said detector unit at predetermined intervals and establishes a presence of rips in foils sealing off the pockets of the drug blister pack and stores information relating to the presence of the rips in said memory and keeps the information available for further queries.
16. The apparatus according to claim 14, further comprising: a short-range radio module having an antenna and a communication controller, said short-range radio module is connected to said detector unit; and a memory which, if a rip in the electrically conductive foil is identified, stores a message in this respect, with an additional provision of a timestamp, wherein said detector unit can transfer the information stored in said memory to an external data communications device.
17. The apparatus according to claim 16, wherein said short-range radio module is a radio frequency identification transponder or a near field communications transponder, containing said antenna and said communication controller.
18. The apparatus according to claim 17, wherein said antenna extends at least in part along an outer boundary of said main body of the apparatus.
19. The apparatus according to claim 16, wherein said short-range radio module having said antenna and said communication controller, operates on a basis of a Bluetooth standard.
20. The apparatus according to claim 14, further comprising measuring units connected to said reception coils; further comprising an excitation unit connected to said transmission coil; and wherein said detector unit has a control unit which actuates said excitation unit to excite said transmission coils and actuates said measuring units to measure induction voltages across said reception coils, establishes a difference of established induction voltages and outputs a signal in a case where a magnitude difference exceeds the predetermined threshold.
21. The apparatus according to claim 20, further comprising a multiplexer for selecting a group, in each case containing said transmission coil and said reception coils assigned to one another, and is connected to said detector unit, wherein said multiplexer has a common input for actuating a respective said transmission antenna and two common outputs for obtaining the induction voltages obtained from said reception coils, wherein said common input is connected to said excitation unit and said common outputs are each connected to one of said measuring units, wherein said multiplexer has groups, each containing two multiplex inputs and one multiplex output, which are addressable together and are each connected to said transmission coil and said reception coils, which are assigned to one another and disposed in the region of a same said hole.
22. The apparatus according to claim 13, wherein said reception coils are disposed in a symmetric fashion in respect of said holes and in respect of said transmission coil.
23. The apparatus according to claim 16, wherein said detector unit and said short-range radio module are housed in separate housings and said detector unit is electrically connected by way of electric contacts, which are separable in a non-destructive manner, to said transmission coil and said reception antennas disposed at or in said main body.
24. A configuration, comprising: a drug blister pack having a plurality of pockets holding medicaments and an electrically conductive foil sealing off said pockets; and an apparatus for detecting a removal of said medicaments from said drug blister pack, said apparatus containing: a main body for accommodating said drug blister pack and having a base area embodied to rest against said electrically conductive foil, said main body having holes formed therein in a region of said pockets, said holes being embodied for a passage of said medicaments situated in said pockets, each of said holes disposed in the region of one of said pockets in each case; and groups of coils each including one transmission coil and at least two reception coils, one of said groups of coils disposed in a region of each of said holes in each case, said coils surrounding a respective hole, said reception coils are assigned to one another in respect of said transmission coil and disposed such that, in a case where sad electrically conductive foil resting on said main body in said region of said respective hole is undamaged, a difference of voltages induced in said reception coils as a result of an electric current in said transmission coil lies below a predetermined threshold.
Description
[0026] A preferred embodiment of the invention is illustrated in more detail on the basis of the following figures of the drawing.
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[0043] In this configuration and in the case of an undamaged sealing foil 22, the eddy currents I.sub.W induced in the electrically conductive layer of the sealing foil on account of the magnetic field generated by the transmission antenna 13 are distributed in a circular manner in the region of the pocket 21, as depicted in
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[0045] If the foil 22 sealing the pocket 21 rips, the eddy currents induced in the foil 22 under the pocket 21 are distributed irregularly.
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[0048] In order to detect whether the metallic foil 22 resting against the main body 10 in the region of the respective hole 12 is undamaged, in particular free from rips, the difference of the voltage induced in the reception coils 14, 15 as a result of an electric current in the transmission coil 13 is measured. If it lies below a predetermined threshold, the foil 22 can be considered to be undamaged in the region of the respective hole 12.
[0049] The detector unit 16 measures the two voltages across the reception coils 14, 15 and determines the difference between the voltages across the reception coils 14, 15. In the case where the difference in the two voltages exceeds a predetermined threshold, said detector unit outputs a notification which indicates the presence of a rip in the metal foil 22 sealing the respective pocket 21.
[0050] In order to enable communication with an external data communications device, the control unit 160 is connected to a short-range radio module 190 comprising an antenna 191 and a communication controller 192. This short-range radio module can be an RFID or NFC transponder, as well as use an alternative wireless short-range communications technology, such as e.g. Bluetooth. Furthermore, the control unit 160 is connected to a storage 18, wherein the control unit 160, if the removal of a medicament 23 from one of ii the pockets is detected, in each case stores a message in this respect in the storage 18 and keeps it available for retrieval on the part of an external data communications device.
[0051] In particular, the detector unit 16 and the short-range radio module 190 can also be housed in a separate housing and the detector unit 16 is electrically connected to the transmission antennas 13 and reception antennas 14, 15 arranged on or in the main body 10 by way of non-destructively separable electric contacts.
[0052] Furthermore,
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