EP2370327B1 - Kartusche, ein die kartusche enthaltender arzneimittelspender sowie verwendungen der kartusche und des arzneimittelspenders - Google Patents
Kartusche, ein die kartusche enthaltender arzneimittelspender sowie verwendungen der kartusche und des arzneimittelspenders Download PDFInfo
- Publication number
- EP2370327B1 EP2370327B1 EP20090760102 EP09760102A EP2370327B1 EP 2370327 B1 EP2370327 B1 EP 2370327B1 EP 20090760102 EP20090760102 EP 20090760102 EP 09760102 A EP09760102 A EP 09760102A EP 2370327 B1 EP2370327 B1 EP 2370327B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- cartridge
- dispenser
- medicament
- tablets
- portions
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Not-in-force
Links
- 239000003814 drug Substances 0.000 claims description 106
- 238000003860 storage Methods 0.000 claims description 40
- 239000007787 solid Substances 0.000 claims description 18
- 238000003780 insertion Methods 0.000 claims description 13
- 230000037431 insertion Effects 0.000 claims description 13
- 230000007246 mechanism Effects 0.000 claims description 5
- 239000005556 hormone Substances 0.000 claims description 4
- 229940088597 hormone Drugs 0.000 claims description 4
- 238000002360 preparation method Methods 0.000 claims description 4
- 239000003826 tablet Substances 0.000 description 246
- 229940079593 drug Drugs 0.000 description 59
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- 206010011224 Cough Diseases 0.000 description 3
- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminium Chemical compound [Al] XAGFODPZIPBFFR-UHFFFAOYSA-N 0.000 description 3
- 229910052782 aluminium Inorganic materials 0.000 description 3
- 229940124558 contraceptive agent Drugs 0.000 description 3
- 239000003433 contraceptive agent Substances 0.000 description 3
- 239000007947 dispensing tablet Substances 0.000 description 3
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Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D83/00—Containers or packages with special means for dispensing contents
- B65D83/04—Containers or packages with special means for dispensing contents for dispensing annular, disc-shaped, or spherical or like small articles, e.g. tablets or pills
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D83/00—Containers or packages with special means for dispensing contents
- B65D83/04—Containers or packages with special means for dispensing contents for dispensing annular, disc-shaped, or spherical or like small articles, e.g. tablets or pills
- B65D83/0409—Containers or packages with special means for dispensing contents for dispensing annular, disc-shaped, or spherical or like small articles, e.g. tablets or pills the dispensing means being adapted for delivering one article, or a single dose, upon each actuation
- B65D83/0418—Containers or packages with special means for dispensing contents for dispensing annular, disc-shaped, or spherical or like small articles, e.g. tablets or pills the dispensing means being adapted for delivering one article, or a single dose, upon each actuation the articles being substantially flat and stacked one upon the other and the dispensing-closing device sliding the article to be dispensed along the flat side of the next article
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61J—CONTAINERS SPECIALLY ADAPTED FOR MEDICAL OR PHARMACEUTICAL PURPOSES; DEVICES OR METHODS SPECIALLY ADAPTED FOR BRINGING PHARMACEUTICAL PRODUCTS INTO PARTICULAR PHYSICAL OR ADMINISTERING FORMS; DEVICES FOR ADMINISTERING FOOD OR MEDICINES ORALLY; BABY COMFORTERS; DEVICES FOR RECEIVING SPITTLE
- A61J1/00—Containers specially adapted for medical or pharmaceutical purposes
- A61J1/03—Containers specially adapted for medical or pharmaceutical purposes for pills or tablets
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61J—CONTAINERS SPECIALLY ADAPTED FOR MEDICAL OR PHARMACEUTICAL PURPOSES; DEVICES OR METHODS SPECIALLY ADAPTED FOR BRINGING PHARMACEUTICAL PRODUCTS INTO PARTICULAR PHYSICAL OR ADMINISTERING FORMS; DEVICES FOR ADMINISTERING FOOD OR MEDICINES ORALLY; BABY COMFORTERS; DEVICES FOR RECEIVING SPITTLE
- A61J7/00—Devices for administering medicines orally, e.g. spoons; Pill counting devices; Arrangements for time indication or reminder for taking medicine
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61J—CONTAINERS SPECIALLY ADAPTED FOR MEDICAL OR PHARMACEUTICAL PURPOSES; DEVICES OR METHODS SPECIALLY ADAPTED FOR BRINGING PHARMACEUTICAL PRODUCTS INTO PARTICULAR PHYSICAL OR ADMINISTERING FORMS; DEVICES FOR ADMINISTERING FOOD OR MEDICINES ORALLY; BABY COMFORTERS; DEVICES FOR RECEIVING SPITTLE
- A61J7/00—Devices for administering medicines orally, e.g. spoons; Pill counting devices; Arrangements for time indication or reminder for taking medicine
- A61J7/04—Arrangements for time indication or reminder for taking medicine, e.g. programmed dispensers
- A61J7/0409—Arrangements for time indication or reminder for taking medicine, e.g. programmed dispensers with timers
- A61J7/0481—Arrangements for time indication or reminder for taking medicine, e.g. programmed dispensers with timers working on a schedule basis
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
- B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
- B65D2583/00—Containers or packages with special means for dispensing contents
- B65D2583/04—For dispensing annular, disc-shaped or spherical or like small articles or tablets
- B65D2583/0404—Indications, e.g. directions for use
- B65D2583/0409—Indications, e.g. directions for use of dates or follow-numbers
Definitions
- the invention relates to a cartridge for a drug dispenser, are contained in the solid drug portions, such as tablets, in a columnar arrangement. Furthermore, the invention relates to the drug dispenser with the interchangeable cartridge contained therein as well as uses of the cartridge and the drug dispenser for storing or dispensing drug portions, such as hormone preparations.
- solid drug portions for example tablets
- PTPs push-through packs
- a mostly transparent plastic film which has receiving troughs for the portions, welded to an aluminum foil, with the individual cells form, in which the tablets are included.
- the tablets are taken from the individual cells through the aluminum foil before they are taken by pushing through the receiving trough.
- This type of packaging is widely used because it keeps each tablet safe and protected from harmful external influences.
- the solid drugs are provided in vials in which the individual tablets are each unpacked. In this case, the users must remove the tablets individually by hand.
- the tablets again in each case unpacked, are in a columnar arrangement in a tube. Also in this case, the individual tablets are removed by hand. This is problematic in that there is a risk that individual tablets fall out and thereby damaged or contaminated. In addition, the user has no control and no overview of the number of tablets already taken.
- a safe medication aid and a gentle treatment of the drug portions it is advantageous if such packaged solid drug portions for ingestion by the user in a drug dispenser to be provided.
- the drug portions are contained in the dispenser and can be dispensed from the dispenser as needed.
- the advantage of such systems is, inter alia, that the drug portions are protected in the dispenser against external influences and that it is possible to provide by suitable means that the portions are dispensed in a pre-metered amount.
- a dispenser which includes at one end a slot for receiving a blister strip.
- the blister strip is only partially withdrawn from the dispenser so that only a single tablet or a limited number of tablets is exposed. This is ensured by the fact that the blister has projections, engage in the gripper to specify a defined feed when pulling the blister from the dispenser.
- US Pat. No. 6,409,020 B1 Another dispenser is disclosed which contains a blister with circularly arranged blister cells.
- the tablets in the blister cells are generally accessible through a window on the top of the dispenser, but only if a user presses on at least one of the side of the dispenser attached tabs of a strip that extends in the idle state through the window, thus the tablets covers and thus protects against unauthorized access. On the other hand, if the user presses on the tab, the strip is bent open and releases the tablets.
- a tablet dispenser for receiving a tablet reservoir which comprises a transport element and a slide for removing the tablets from the reservoir.
- a dosing dispenser for tablet-shaped products specified in which these products are stacked in a reservoir has at one end a pedestal with a mounted on the top of slide rail and an adapter part located above and at the other end a closure lid.
- DE 42 30 452 A1 discloses a container for storage and single issue recorded in carriers dragées.
- the carrier is in the form of an elongated tube in which the dragees are located. At one end of the carrier is a Dispensing opening provided for the dragees, and at the other end, the carrier is closed with a stopper.
- a dispenser for refreshment and cough drops is in U.S. Patent No. 5,080,258 disclosed.
- the lozenges contained in this dispenser are stacked. Under spring force, the pastilles are pushed upwards in a guide and thus get into an ejector head, which has an ejection claw, with which the pastilles are dispensed individually on the side of the dispenser.
- EP 1 189 822 B1 discloses a tablet dispenser for medical purposes. This contains a formed in the form of a tube container in which the tablets are stacked and are under spring tension. The tablets are dispensed laterally from the dispenser by means of an ejection mechanism actuated by the head of the dispenser.
- U.S. Patent No. 5,230,440 discloses a dispenser for tablets, such as contraceptives, flares for lighters or sweets, such as candies.
- the tablets or similar are contained in a stack in a sleeve that can be inserted into the dispenser.
- the tablets or similar are issued at the side of the dispenser.
- U.S. Patent No. 5,048,720 there is described a candy or tablet dispenser having a housing and a magazine latchable therein. Through the magazine two chambers are formed in the housing. In one of the chambers, the magazine contains the sweets or tablets. The sweets or tablets are ejected sideways when operating the dispenser by actuating a thumb actuable slider on the magazine, and thus an ejector for laterally dispensing a single candy or tablet.
- a dispenser for pharmaceutical tablets which consists of a magazine for the tablets, an outer container which accommodates the magazine, and a closure.
- the closure is screwed onto the lower end of the outer container.
- the tablets are loaded spring loaded.
- US 3,854,626 A is a donor for pills specified, which has a reservoir for receiving the pills and in which the pills are piled up spring loaded.
- a dispenser for dispensing tablets comprising a tubular housing having a reservoir for the tablets and a dispensing opening at one end and means for transporting the tablets.
- racks extend, which displace a pressure floor resting against the last tablet in the ratchet feed in the direction of a cover lifting off from a casing mouth edge by a thickness of the tray.
- US 3,612,349 A is a pill dispenser specified with a ratchet-like pestle.
- the pills in the dispenser are conveyed by means of an operating element extending into the interior of the dispenser via a pressure piece to a dispensing opening.
- the pressure piece engages on the inner wall of the dispenser via resilient fingers which engage in ratchet teeth on the inner wall of the interior.
- U.S. Patent No. 5,366,112 is a dispenser for refreshment and cough drops described in which the pastilles are stacked. Under spring force, the pastilles are pushed upwards and ejected individually by an ejector head with ejection claw. The pastilles are in a magazine. To apply the spring force to the pastilles, a spring-loaded arm passes through the magazine and pushes the pastilles in the magazine up to the ejector head. The lozenges are how to U.S. Patent No. 5,080,258 indicated, discharged laterally from the dispenser.
- the present invention is based on the problem that the known drug dispensers do not provide sufficiently simple and safe handling and the drug portions contained therein are not accommodated sufficiently gentle. Therefore, the object is to provide a drug dispenser and a cartridge for a drug dispenser in which such a cartridge for drug portions is, the drug dispenser and the cartridge are simple and safe to use and in particular ensure that the drug portions during transport and storage or use in the dispenser should not be affected or stored gently.
- solid-drug portions and “portion of medicaments” are used below in the description of the invention and in the patent claims, they include pills, dragées, capsules, tablets and other solid administration forms.
- tablettes To simplify the description of the invention is hereinafter representative for other (solid) drug portions the term “tablets” is used. Therefore, when using this term, any type of (solid) drug portions should be understood.
- the cartridge according to the invention and the solid drug dispenser are used together to dispense the tablets, wherein the cartridge, which has a storage space for the tablets, is inserted therein for use of the dispenser.
- the cartridge and dispenser are preferably for administration of drugs, and more preferably for administration of hormone preparations, and most preferably contraceptives or hormone replacement therapy medicaments in the form of tablets.
- the drug contained in the cartridge is a hormone preparation, such as for contraception
- it may be taken in a conventional manner, for example, at about a 24-hour rhythm, in a two-phase fixed regimen. This is followed by an income-free (interruption) period.
- the no-taking period may be 7 days, but may also be 4 days or any other fixed number of days.
- certain medicaments can be taken for contraception, for example, in a flexible intake schedule, the administration phase for example at least 24 days and lasts for a maximum of 120 days and the interruption period for example 4 days.
- the cartridge according to the invention can be used in the drug dispenser and interchangeable. It will be replaced when it is empty. An empty cartridge is replaced by a filled cartridge.
- the filled cartridge is used to refill the dispenser with the tablets.
- this can in a preferably sealed container, for example in a sealed bag or in a blister, such as aluminum foil, in which a cold-forming a receiving trough for the cartridge is inserted, be housed, as long as the cartridge is not yet to be inserted into the dispenser.
- the cartridge may also be firmly connected to the dispenser so that the dispenser is discarded when the cartridge is emptied.
- the cartridge is formed with a reservoir for receiving the tablets in a columnar arrangement.
- the cartridge is therefore preferably cylindrical and preferably has a cylindrical reservoir.
- the dispenser has receiving means for the cartridge, for example a receiving shaft extending in the axial direction, into which the cartridge can be inserted.
- the cartridge and the dispenser can be in a spatial-physical relationship to each other and together form the inventive combination of drug dispenser and cartridge, which are assembled into a unit.
- the cartridge comprises a transport safety device which is frictionally seated in the cartridge housing in order to prevent the movement of the tablets during the storage and transport of the cartridge.
- This transport safety device is formed by a tolerance compensating plug which is seated in a friction-locked manner in the reservoir and can be displaced in the axial direction. This tolerance compensation plug is inserted before filling the cartridge with the tablets in the pantry and firmly pressed after filling the cartridge with the tablets on the stack of tablets.
- the tolerance compensation plug frictionally seated in the storage room, he can hold the stack of tablets tightly packed even if the cartridge is not in the dispenser, such as when the cartridge is handled separately, for example, during storage or during transport. It is necessary to firmly hold the stack of tablets together to prevent the tablets from moving freely in the reservoir so that they would not tip over and tilt and interfere with dispensing of the tablets. In addition, the tablets could also be subject to unwanted abrasion when continued to move against each other. It should also be noted that the tablets have a thickness tolerance have, leading to a height variation of the tablet stack. For example, if the thickness tolerance of a 3 mm thick tablet is ⁇ 150 ⁇ m, the variation in the height of a stack of 30 tablets is approximately ⁇ 4.5 mm.
- the tolerance compensation plug Due to the tolerance compensation plug, the stack is always held regardless of its actual height in the storage room, ie even if the cartridge is not yet inserted into the dispenser.
- the tolerance compensation plug has for example against a compression spring, such as the resilient means U.S. Patent No. 5,230,400 , which would press the tablets in the storage space against each other and thus fix, the advantage that the tablets are packed powerless lying on each other during transport and storage and not, as in the compression spring, depending on theginahrenen the stacked tablets, varying spring tension.
- a much gentler storage of the tablets is achieved than in the case of the known magazines.
- the plug has at least one latching means for latching with a profile which preferably extends in the axial direction on the inner wall of the storage space of the cartridge.
- This profile may for example be formed by a transverse groove profile, which consists of mutually parallel transverse grooves.
- the transverse groove profile may form at least one axially extending ratchet strip on the cartridge inner wall or may be provided on the entire inner circumference of the inner wall of the cartridge.
- the at least one latching means on the tolerance compensation plug can be formed in particular by at least one outwardly acting and latching with the profile spring element with locking lugs.
- two spring elements can be provided with latching lugs on opposite sides of a base part of the plug, wherein the spring elements are preferably approximately axially projecting and outwardly resilient spring arms which have in the profile, for example in two opposing ratchet strips, engaging locking lugs.
- the tolerance compensation plug can be introduced with the spring elements first in the storage space of the cartridge, so that the at least one locking means is upwards and thus counteracts slipping out.
- the cartridge has a separating device, preferably at one end.
- This separating device is preferably designed such that the tablets are dispensed individually or in another defined number, for example two tablets at the same time.
- the separating device is designed such that it can be actuated via an operative connection between the separating device and an actuating device or a plurality of actuating devices which is / are provided on the medicament dispenser.
- the actuators may include both manual actuation means provided on the drug dispenser for dispensing one or more tablets simultaneously, and means in the dispenser for transferring the movement generated by the manual actuation of the actuation means from the actuation means to the singulator, include.
- the actuator or the actuator for the separating device in this embodiment is attached to the drug dispenser.
- These actuators stand with the separating device in a preferably mechanical operative connection.
- an electromechanical or purely electronic active connection can be provided, for example, on the separating device on the cartridge, which can also be referred to as a driver.
- a driver By actuating the actuating means on the dispenser, in this case, a movement is transmitted, for example, to a claw provided with a recess in the medicament dispenser and from this claw to the driver and thus to the separating device.
- the movement generated by manual actuation of the actuating means on the dispenser is preferably transferred to the jaw via the further intermediate mechanical elements, such as transport levers, which constitute the means for transmitting the movement from the actuating means to the separating device.
- the separating device serves to output to the user the tablets contained in the cartridge individually or in a defined number.
- the user is enabled to safely remove the tablets from the cartridge without inadvertently dispensing more than one tablet at a time.
- the separating device largely closes the storage space and thus the tablets contained in the storage space against external influences, so that the tablets contained therein can not be damaged or otherwise impaired.
- the separating device serves for example during transport and during storage, but also during operation by the user as a closure element, so that the tablets are protected against external influences.
- the separating device By providing the separating device on the cartridge is further ensured that tablets can not accidentally fall out because the closure element can not be accidentally solved.
- the separating device can preferably only be actuated, and it can thus tablets individually (or in a defined number) are released only when the cartridge is inserted into the drug dispenser.
- Manual actuation means are provided on the drug dispenser for actuation of the singulating device on the cartridge because, for ease of handling, it is necessary to operate the manual actuation means on the dispenser to dispense a single tablet (or a defined number of tablets).
- the assembly effort when inserting the cartridge into the dispenser is minimal: For example, it may be sufficient that the cartridge is inserted in the axial direction in the receiving means for the cartridge in the dispenser, without a cover would have to be removed and without other mounting measures would have to be taken , Thus, it is not necessary, for example, a lid as in the case of the donor of U.S. Patent No. 5,230,440 to remove the cartridge in the receiving shaft in the dispenser insert. This greatly facilitates the use of the dispenser with the cartridge. This advantage is achieved in particular by the fact that the separating device is simultaneously a closure element and is provided on the cartridge and not on the dispenser.
- the separating device is repeated during operation of the dispenser and frequently actuated to remove the tablets. Since the singulation device is provided on the cartridge and not on the drug dispenser, wear on the singulation device caused thereby does not adversely affect the user to the same extent as if the singulation device were provided on the drug dispenser because the singulation device interacts with the dispensing device Cartridge is replaced if the latter no longer contains tablets. If the separating device were provided on the dispenser and not on the cartridge, it would have to be designed for a much longer service life by suitable choice of materials and suitable design. Furthermore, abrasion from the tablets, which may accumulate mainly in the separating device, disposed of with the cartridge and does not accumulate during the entire life of the donor in this. After all, this abrasion in combination with (air) moisture is a good breeding ground for the nucleation.
- the separating device has a slider that is displaceable essentially perpendicular to the axis of the cartridge.
- the slider serves as a component with which the tablets are separated.
- the slider can each take a tablet separately and move with a sliding movement relative to the stack separately.
- the tablets are piled in the cartridge in a columnar stack located in the reservoir in the cartridge. Then, the slider can be arranged at one end of this stack and separate the tablets one after the other from the stack.
- the slider may preferably have a receptacle open on both sides in the axial direction for a defined drug portion, for example for a single tablet or for two tablets at the same time or for several, ie more than two, tablets at the same time.
- this receptacle When receiving the tablet from the stack, this receptacle is closed to the side that lies on the opposite side of the stack.
- the receptacle is preferably dimensioned so that (only) a single tablet (or a defined number of tablets) fits into it.
- the height of this compartment may be as high as or slightly higher than the height of a single tablet (or the height of a stack of a defined number of tablets). Therefore, in this case, only a single tablet (or a defined number of tablets) added to the receiving compartment and separated with the sliding movement of the stack of tablets.
- the separating device may further comprise a lower shell.
- the slide is displaceable relative to the storage space in the cartridge between two sliding positions perpendicular or substantially perpendicular to the axis of the cartridge.
- the lower shell can u.a. serve to close the receiving compartment to the side which is located on the side opposite the storage space in the cartridge when the receiving compartment in one of the sliding positions (second sliding position) is aligned with the storage space.
- a tablet enters the receptacle and is held there by the lower shell. Subsequently, the slider is moved to the other of the two sliding positions (first sliding position), in which the tablet can be removed.
- the lower shell in this case may have an offset to the cartridge axis and aligned with the open receptacle discharge opening when the slider is in one of the two sliding positions of the slider, preferably in the first sliding position.
- the tablet then falls out through the dispensing opening and can be removed.
- the tablet is removed on the side of the separating device, which lies opposite the storage space.
- the first sliding position can also be selected so that the tablet is dispensed on the same side of the separating device as the storage space.
- the slider would have to protrude laterally beyond the dispenser and be the first sliding position of the receiving compartment in the laterally projecting part of the slider.
- the tablets may also be dispensed laterally, i.
- the tablets may each be stored in a position and separated, in which they are arranged with their major surfaces lying one on top of another, or even in a position in which they are standing, i. with side surfaces lying on each other, are arranged.
- the separating device is preferably switched over between the two sliding positions.
- One of the two sliding positions can be a rest position and the other shift position a second position, from which the separating device returns by itself back to the rest position, such as in this second position is under a spring tension, which carries them back to the rest position. It is possible that the second sliding position, in which the receiving compartment in the slide is aligned with the storage space of the cartridge, the rest position, or even that the first sliding position, in which the receiving compartment in the slide is aligned with the discharge opening in the lower shell, the rest position.
- the lower shell of the cartridge can in particular be inserted flush with the outer skin of the dispenser. This prevents the user from tampering with the cartridge by manipulating the dispenser, such as before the cartridge is completely emptied. Further, the cartridge is inserted into the dispenser so that the tablets and thus the medical agents in the tablets do not touch the dispenser or its parts when singulated and dispensed from the dispenser. This embodiment is particularly advantageous for drug law reasons.
- the cartridge and the drug dispenser are designed so that the cartridge can be inserted into the dispenser only in an (axial) rotational orientation, so that one of the two cartridge halves, which delimit the storage space comprising the tablets, to the front and the others are aligned with the back of the dispenser.
- the cartridge is designed so that the tablets can be dispensed in the axial direction.
- the tablets are not dispensed laterally from the dispenser, but at an end face of the dispenser in a direction which is in the axial direction, i. along the axis of the cartridge or parallel to this axis.
- the drug dispenser is designed so that the tablets are dispensed in the axial direction.
- a user can extract the tablets to be dispensed simply by holding the dispenser in one hand, and the person can manipulate the dispensing means for dispensing the tablet with this hand, so that the tablet falls into the other hand ,
- the person using the dispenser with the side on which the cartridge is inserted into the dispenser Hold over the other hand and then press the dispenser to dispense the tablet.
- a further orientation of the donor with respect to the donor not holding hand is not required, so that the tablet safely falls into the hand of the user and the user can thus grasp the tablet safely.
- a misoperation in which the tablet accidentally falls and does not reach the user's hand is therefore virtually eliminated.
- the handling of the dispenser is safer and more reliable than that of the known dispenser.
- the cartridge contains a pelletizer which can be displaced in the axial direction in the storage space and which penetrates through at least one axial slot in the cartridge and which is suitable for transporting the advancing means located in the medicament dispenser, for example a feed arm which is likewise preferably displaceable in the axial direction, and for transferring a preferably externally acting, preferably axially directed elastic force on the tablets contained in the cartridge in the columnar arrangement and thus serves to hold down the columnar arrangement of tablets by the feed means.
- a pelletizer which can be displaced in the axial direction in the storage space and which penetrates through at least one axial slot in the cartridge and which is suitable for transporting the advancing means located in the medicament dispenser, for example a feed arm which is likewise preferably displaceable in the axial direction, and for transferring a preferably externally acting, preferably axially directed elastic force on the tablets contained in the cartridge in the columnar arrangement and thus serves to hold down the columnar arrangement of tablets by the feed means.
- At least one elastic means can be provided which, upon insertion of the cartridge into the drug dispenser, exerts an elastic force on the cartridge in the axial direction against a direction in which the cartridge (900) enters into the Drug dispenser (1) is inserted (insertion direction).
- This ensures that the cartridge is in the dispenser under a tension, preferably spring tension.
- the force acting on the cartridge spring force causes the tablets in the cartridge are pressed against each other so that they do not fall over when moving the dispenser in the reservoir of the cartridge. By the tablets are always under spring tension, once set order in the stack of tablets is not released.
- the spring collar is preferably exerted by elastic means formed in the form of at least one constant-force spring, in particular two constant-force springs.
- elastic means formed in the form of at least one constant-force spring, in particular two constant-force springs.
- the above-mentioned feed means for example the above-mentioned feed handle, which is preferably movable along the receiving shaft, can in particular also serve for transmitting an elastic force to the tablets contained in the cartridge in a columnar arrangement.
- This feed means can on the one hand have the function to transmit the externally applied elastic force to the stack of tablets. This is done for example by fastening a spring or two springs on the feed means and on an abutment in the drug dispenser.
- two constant force springs are provided, one of which is attached to one end of the advancing means, for example at one end of the advancing bar, and the other at the other end of the advancing means, for example at the other end of the advancing bar, so that a symmetrical force the feed is transmitted.
- the advancing means can also serve to release the latches for ejecting the cartridge, i. the advancing means may be at least part of means for releasing a lock.
- the advancing means for example the advancing bar
- a force is exerted on the stack of tablets in the storage space, resulting, for example, from springs acting on the advancing means, for example constant force springs, so that the stack of tablets is constantly under the action of force in the axial direction when the cartridge is in the medicament dispenser located.
- springs acting on the advancing means for example constant force springs
- the stack of pills is constantly under the action of force in the axial direction when the cartridge is in the medicament dispenser located.
- the stack of pills is pressed against the receiving compartment in the separating device so that a tablet always enters the receiving compartment when the pusher is in the first sliding position.
- the advancing means sliding on the outside of the cartridge for example the feed handle, can be in positive contact with the tablet rider.
- axially freely movable tablet tab in the storage space of the cartridge per se axially freely movable tablet tab can reach through at least one axial slot on the cartridge, for example with one arm or with two arms (in this case by an axial slot), so that the feed means on this arm or another projection can exert the force on the tablet tab and thus on the stack of tablets.
- the tablet stack then, when the cartridge is in the drug dispenser, an axial force exerted, which acts in the direction of the separating device.
- the stack is always pressed down so that a tablet, when the receiving compartment in the separating device is aligned with the storage space, can get into the receiving compartment.
- the feed means when inserting a filled cartridge into the dispenser in the insertion direction, the feed means, for example the feed handle, can be carried along, for example by the feed means being carried along above the tablet tab.
- this feed means can also lock the cartridge via at least one suitable latching means in the dispenser, such as by the entrained feed means starts at a arranged in the upper region of the dispenser run-on surface of a locking lever for locking the cartridge in the dispenser.
- this feed means can then be successively moved downwards, so that the filling level in the cartridge is coded via its position in the dispenser.
- this feed means arrives in a (lower) end position, which is predetermined by the empty cartridge is, thereby the lock of the cartridge can be solved so that the cartridge can be removed from the dispenser.
- This can for example be done by the feed means in the lowest position brings the locking lever in an unlocked position and optionally additionally unlocks suitable ejection means for the cartridge.
- At least one locking means is provided for locking the cartridge in the dispenser.
- This locking latch with the latching means is preferably designed to lock the cartridge after insertion into the dispenser, i. can not be removed without loosening the lock, as long as there are still tablets in the cartridge. Only after the cartridge is empty, the lock can be released in this case again to be able to remove the cartridge from the dispenser so that a new filled with tablets cartridge can be used.
- such a latching means may be formed, for example, by one or more detents on the cartridge and one or more detent profiles, for example eyelets, on the dispenser latching with the detents, or vice versa by one or more detents on the dispenser and one or more detent profiles. for example, eyelets, on the cartridge.
- other locking means are possible, such as locking lugs that engage behind projections or two interlocking locking profiles o.ä.
- the at least one locking means is rotatable. It may preferably be formed by rotatable locking lever, which may in particular be two-armed and equipped with locking lugs. The locking lugs can be provided in each case in particular at the lower part of the locking lever.
- each locking lug locks latching preferably on the locking levers with a detent eye or the like provided on the cartridge.
- a detent for example, a projection may be provided on which the latch abuts, or a recess into which engages the detent.
- a pressure point which locks when locking behind a corresponding latching nose or a projection approximately in the dispenser housing.
- the locking levers with the detents may project into an area adjacent to the area in which the cartridge is received in the dispenser, for example in the front area of the dispenser adjacent to the cartridge receiving means in the dispenser, for example the receiving shaft , At the cartridge are then provided in the adjacent area receiving lugs, in which engage the locking lugs of the locking lever.
- This adjacent area may be located, for example, on the lower shell of the cartridge.
- an ejection barrier may be provided, which may include, for example, a release lever.
- manually operable ejection means for ejecting the cartridge such as an eject button, blocked, so that the removal of the cartridge is only possible if the cartridge contains no more tablets.
- This lock blocks the operation of these external ejectors and only releases them when the cartridge is empty.
- This lock can be solved in particular by the above-mentioned means for releasing the lock.
- At least one detent means results in locking of the cartridge in the dispenser, i. that the at least one latching means can no longer be released without a separate unlocking of this latch
- at least one means for releasing the latch must furthermore be provided.
- this means for releasing the lock is designed so that the lock is only solvable when no drug portion is in the cartridge. Without locking the latching could be solved simply by manually overcoming the locking force of the at least one locking means. This would be possible if the at least one latching means is formed by suitable design of the latching connection forming parts so that they slide upon application of a detent means releasing force along each other, so that the latching is released.
- the at least one means for Release the lock manually or preferably be solved by an existing mechanism in the dispenser or by a combination of these means.
- at least one unlocking means may be provided in the dispenser, which, depending on the filling level of the cartridge with tablets, release the locking lugs of the locking levers, preferably only when the cartridge is empty.
- the at least one locked latching means is released by the at least one unlocking means by the at least one latching means is switched without external manual actuation from a locking position to the unlocked position.
- This unlocking means may in particular be the advancing means described above, which brings the locking of the cartridge when inserted into the locked position and after emptying of the cartridge in the unlocked position.
- the feed means presses against one or more upper parts of the locking lever.
- the advancing means can also act on the ejection barrier and then release it when preferably no more tablets are in the cartridge.
- the feed means for releasing the blockage of the ejection means actuate the release lever, so that the ejector slide and thus the ejection means are unlocked.
- the ejector pushes by pressing the ejector against one or more lower parts of the locking means, preferably the locking lever, and unlocks in this way the latched with the locking means cartridge.
- the unlocking can be effected for example by suitable means in the drug dispenser, the position of which depends on the fill level of the cartridge.
- suitable means in the drug dispenser the position of which depends on the fill level of the cartridge.
- this may be provided on the cartridge axially movably mounted feed bracket or other movable feed means, which / is located, for example, each in height of the cartridge located in the topmost position tablet. Only when there is no more tablet in the cartridge, the feed handle or the other feed means is also at the lower pole position and solves the lock in this case.
- the same means for releasing the lock can be provided, such as the aforementioned feed arm or the other feed means whose position is dependent on the level of the cartridge.
- actuating means for dispensing drug portions intended.
- a further actuating means can also be provided on a further narrow side of the medicament dispenser, preferably on the second narrow side opposite the first narrow side.
- actuating means serve to dispense one tablet at a time from the cartridge by manual operation.
- the actuating means may be in a mechanical, electromechanical or electronic operative connection with the separating device via suitable transmission means, in order to release one tablet each from the cartridge.
- the actuating means By providing the actuating means on the narrow sides of the drug dispenser, they can be easily actuated even when the user operates the dispenser with one hand only, such as by the user holding the dispenser in one hand and pressing the narrow sides of the dispenser Exercises dispenser and thereby actuates the actuating means.
- the actuating means may also be mounted elsewhere on the dispenser, for example on the front or the back of the dispenser or one or both end faces.
- the transmission means via which the actuating means are in mechanical operative connection with the separating device, are formed by means for transmitting a movement generated by actuation of the actuating means to a separating device provided on the cartridge.
- a separating device provided on the cartridge.
- transport levers are used, which can be synchronized, for example, in each case via a rack and a meshing with this gear.
- the transport levers can, for example, with the separating device directly in a mechanical operative connection, such as positive connection, are, for example by a driver on the separating device and standing with the driver in operative connection recess on at least one of the transport lever or vice versa.
- a window may be provided in a housing outside of the drug dispenser, so that the tablets located in the cartridge are visible from the outside.
- the tablet tab may be rich in contrast to the tablets and, for example, to the background of the cartridge and / or the components of the dispenser otherwise visible through the window. This simplifies the visual inspection of the filling level of the cartridge through the window.
- the cartridge may preferably at least partially consist of a transparent material. In principle, however, it can also consist at least partially of a translucent material.
- the part of the cartridge may consist of a transparent or translucent material that is visible through the window in the housing of the dispenser, so that the tablets contained in the cartridge are visible.
- the drug dispenser can have an electronic display for displaying the number of tablets taken and / or still to be taken and / or the number of tablets still remaining in the cartridge. Each of these information can alternatively be displayed by manual selection, for example.
- the electronic display may additionally be configured to display alarms, such as exceeding or falling short of a period of time in which a tablet is to be taken, and the charging status of a battery used in the dispenser.
- the display can also be used to visualize the status of various intake phases, for example the indication that the user is in a first, second, third or nth phase, wherein the first phase is, for example, a constant 24 days, the second phase for example, can be flexible from 0 to 96 days and the third phase, for example, again constant 4 days.
- an electronic circuit preferably in the form of a circuit board with a semiconductor integrated circuit accommodated thereon. Furthermore, switches, preferably electrical operating buttons, can be mounted on the board and connected in order to be able to make the necessary inputs, for example for the selection of the display mode (number of tablets taken, number of tablets still in the cartridge).
- electrical switches may be provided in the dispenser to automatically detect certain operating conditions of the dispenser with the cartridge, such as the initial commissioning of the dispenser by the first insertion or insertion of the cartridge into the dispenser, whereby, for example, to power the electrical circuit and the electronic indicating batteries, ie connected to the circuitry and the display, continue to dispense a tablet, eject the cartridge, and / or detect a certain number of the few remaining cartridges in the cartridge to correctly display how many tablets are still in the cartridge.
- it is usually sufficient starting from the number of tablets in a completely filled Cartridge each calculate how many tablets are still in it, if each detected when a tablet is issued. However, if the number of tablets varies because of an inevitable thickness tolerance of the tablets in the fully filled cartridge, this indication may be erroneous. By detecting that, for example, there are still four tablets in the cartridge, this error can be ruled out.
- dispenser 1 is used to dispense tablets T, which are taken for example for contraception.
- the donor is capable of dispensing contraceptives taken daily in a so-called flexible regimen, ie, in a first ingestion phase lasting 24 days, then in a second ingestion phase lasting 0 to 96 days such that the first and second the second intake phase can last up to 120 days.
- the user decides at the end of the first intake phase when the intake should be aborted and a phase free of income should be started.
- the first intake phase follows.
- the donor can also be used for dispensing other tablets T, for example, hormone replacement therapy drugs, diuretics or antihypertensives.
- the dispenser 1 comprises a dispenser housing 10, which has a housing front shell 11.1 (FIG. Fig. 1A ) and a housing rear shell 11.2 ( Fig. 1B ) and the two housing shells connecting and the dispenser on three narrow sides comprehensive, consisting of several parts housing part 12 which in the lower area on each side as an actuating button 14, 15 is formed.
- the housing part is made of a composite material to ensure that the part located on the one end side in the area 13 is rigid, while the two are laterally on the dispenser on the narrow sides located actuating button are designed to be movable towards the dispenser body towards key movement (see arrows).
- the housing part can also be formed as a deformable hard shell, which can be pushed into the lower area, so that the actuating buttons are formed.
- an electronic display 16 and control buttons 17, 18 are provided in the front housing shell 11.1.
- the control over the intake of the tablets T is exercised by means of the electronic display.
- the operating buttons 14, 15 are used to select a menu item displayed by the display, for example for battery control or the day of use, the day of pause and the number of still in the cartridge tablets and to choose whether the tablet intake should be canceled.
- Fig. 1B the back of the dispenser 1 is shown.
- the rear side contains a window 20 which extends in the axial direction and allows the tablet T contained in the cartridge to be recognized.
- the housing rear shell 11.2 of the cartridge in the region of the window and the cartridge housing must be designed to be transparent at least in the part visible through the window.
- a part of the cartridge is to be seen, namely the cartridge lower shell 920, which rests flush on the housing of the dispenser.
- a discharge opening 922 for the tablets T can be seen ( Fig. 1A ).
- Inserted into the housing front shell 11.1 is the cartridge ejection button 19, which is pushed in the direction of the arrow to eject the cartridge from the dispenser when it is empty.
- Fig. 2 is a part of the dispenser 1 (without skin) and a cartridge inserted into the dispenser 900 seen from the rear side.
- the cartridge is inserted into the dispenser from below (see arrow), wherein on the cartridge there is a separating device 910, part of which is the cartridge lower shell 920 and over which the cartridge rests against the dispenser housing in the lower area of the dispenser ( Fig. 1A ).
- the cartridge also includes a cartridge housing 930 in which the tablets T are located. This housing is passed through a cartridge front shell 933 and through a cartridge rear shell (not shown), which is preferably made of a transparent material for use in the dispenser, in order to be able to recognize the tablets through the window 20 on the dispenser rear side ( Fig. 1B ).
- the dispenser 1 contains inside a housing inner frame 100, which takes over substantially all static functions of the donor.
- the housing inner frame has, for example, a central web 110 (concealed), which is cylindrically curved from one side to accommodate the cartridge housing 930 (the front half of the cartridge housing is only partially visible).
- the concavity of this web forms together with other (not shown here) components of the donor a receiving shaft (indicated by reference numeral 150) into which the cartridge can be inserted from below into the dispenser.
- the receiving shaft is indicated here only by dashed lines and is characterized by an elongated cavity.
- Fig. 3 For example, the lower part of the housing inner frame 100 of the skin-removed dispenser 1 is shown as viewed from the front side.
- the separating device 910 of the cartridge in this case, without the lower shell 920 is shown. Therefore, a tablet slide 940 belonging to the separating device can be seen here, which slides in and is received by a slide holder 950 and which has a through opening 942 which also serves as a receptacle for tablets T to be dispensed. In a first position, this receiving compartment is aligned with the discharge opening of the lower shell, so that a tablet located in the receiving compartment can be dispensed to the outside.
- the receptacle When the tablet pusher has been moved to a second position (to the left as indicated by the arrow), the receptacle is flush with the reservoir space for the tablets formed by the cartridge housing 930 (not shown) so that a tablet can fall into the receptacle in this position.
- the receptacle is closed in this position by the cartridge lower shell 920 (not shown) down.
- the actuation buttons 14, 15 on the dispenser housing 10 are pressed to actuate the dispenser 1 inwards ( Fig. 1A ; see arrows). They act on two transport levers, a right transport lever 210 and a left transport lever 220. These two transport levers have racks 212 and 222 and are on these racks with a gear 230 in operative connection.
- the gear is mounted on the housing inner frame 100.
- the right transport lever is supported via a compression spring 240 on an abutment 102, so that this transport lever and thus also the left transport lever after the actuation of the actuating button back to the starting position, ie in a position in which both levers are extended to the outside, return ( first position).
- a boom 224 is further formed, which has a recess 226.
- a driving lug 944 is formed, which engages in this recess.
- the receptacle 942 is aligned in the tablet slide with the discharge opening 922 in the cartridge lower shell 920.
- the transport levers are pushed inwards and push the tablet slide to the left (second position).
- the receiving compartment is moved into a position aligned with the storage space of the cartridge, so that a tablet falls from the storage space into the receiving compartment.
- the transport lever and thus also located in the slide tray are moved under spring force back to the right, so that the receiving tray again comes into alignment with the output opening position. This dispenses a tablet from the dispenser.
- Fig. 4 is a filled with tablets T cartridge 900 shown in section from the front.
- the cartridge has a separating device 910 with the cartridge lower shell 920 that can be seen here, and a cartridge housing 930 that consists of the cartridge front shell (not shown) and the cartridge rear shell 932.
- a cylindrical storage space is created in which the tablets are stacked.
- Between the two cartridge shells is on one side (right) an axially extending slot.
- the cartridge 900 can be handled separately in the form shown, ie be used to refill the dispenser 1 by the cartridge is inserted from the front side into the substantially cylindrical receiving shaft 150 in the dispenser and locked there.
- it is preferably sealed in a water-tight and airtight secondary packaging, for example in a bag or a blister.
- a tablet tab 960 which can basically move freely in the storage space of the cartridge in the axial direction ( Fig. 4A ).
- the tablet rider engages with a rider arm 961 through the axially extending slot between the cartridge front shell 933 (not shown) and the cartridge rear shell 932.
- the tablet rider rests on the stack of pills.
- the axial movement of the tablet tab is limited by a tolerance compensation plug 970 upwards. This plug is inserted before filling the cartridge 900 with the tablets T in the pantry and pressed after filling the cartridge on the stack of tablets and the tablet tab.
- the tolerance compensation plug slides frictionally in the storage space, it is pressed onto the stack of tablets outside the dispenser during handling of the cartridge and holds the stack together, so that the individual tablets can not slip against each other or move against each other. This avoids, on the one hand, abrasion of the tablets and, on the other hand, that the tablets can also stand upright or at an angle during free movement. This prevents tilting and thus tilting of the tablets in the storage space.
- this has a base body 971 and two spring elements with locking lugs 972, 972 ', which bear against the inner wall of the cartridge housing.
- the inner wall in the areas in which the locking lugs are in contact with the inner wall opposite ratchet tracks 975, in which engage the locking lugs (see detailed illustration Fig. 4A ).
- These ratchet lanes are formed only on a length of about 2 cm, since the tolerance compensation plug should keep the tablets tightly packed only when fully filled cartridge, so that the plug must enter into the frictional connection with the inner wall of the cartridge housing only in the area in which only the fluctuation of the stack height resulting from the thickness tolerance of the individual tablets has to be compensated.
- Fig. 5 the donor 1 is shown without outer skin seen from the back, which contains a filled with tablets T cartridge 900.
- the cartridge contains the tablet rider 960 seated on the stack of tablets, which has a rider arm 961 protruding from the cartridge housing 930.
- the tolerance compensation plug 970 which includes the spring elements with locking lugs 972 (here one of the spring elements is shown).
- the latching noses of the spring elements engage in the ratchet tracks 975.
- the dispenser 1 also includes a feed handle 300 which engages around the central web 110 of the housing inner frame 100 and is movable along this web in the axial direction and guided thereon, for example by a dovetail guide, which passes through the side surfaces of the web and the U-shaped web. Leg 311, 312 of the bracket is formed, or by a locking of these U-legs with the side surfaces of the web ( Fig. 6 ).
- Fig. 6 the housing inner frame 100 is shown with the feed handle 300 from the back of the dispenser 1 from.
- the feed bracket has two arms 315, 316, which are formed at approximately at right angles to the U-legs 311, 312 thereto. At the ends of these booms are fastenings for the constant force springs 320, 330 at their respective one end.
- the constant force springs are fastened with their respective other ends in the lower part of the housing inner frame 100 and wound there. Thereby, a movement of the feed arm in the axial direction upwards can be achieved only against the spring force of the constant force springs.
- the constant force springs but also in corresponding brackets, for example, at the arms, be kept wound up on the feed yoke and the other ends are attached below the housing frame.
- a left locking lever 420 and a right locking lever 410 are provided for the cartridge.
- the locking levers are mounted on the housing inner frame 100 on pivot points 415, 425. At the respective lower ends of the locking lever locking lugs 412, 422 are provided ( Fig. 7 . 7A . 7B ).
- spring arms 417, 427 which are integrally formed above the respective pivot points on the locking levers, snapped over corresponding press points 418, 428 behind associated projections 419, 429 on the housing inner frame, so that the locking lever are immovably held in this position ( Fig. 5A ). Therefore, the locking lever are locked in place in the locking position after insertion of a filled cartridge, so that the cartridge can not be removed without further aids. This ensures that a cartridge after insertion and locking in the dispenser can not be removed again, provided that the cartridge is completely filled during insertion, since the feed handle is pushed up when pushing the filled cartridge up to the contact surfaces of the locking lever and this in transferred the locking position. This lock is maintained until the cartridge is completely empty.
- an ejector mechanism which cancels the lock caused by the locking lever. Details of this ejection mechanism 'are in the 8A, 8B . 8C . 8D and 8E shown:
- a release lever 500 is provided, which is located immediately behind the ejection button 19 (hidden) ejector slide 600.
- the release lever is by means of a leg spring 510 ( Fig. 8C . 8D ) fixed in a substantially vertical position.
- the release lever is mounted via axles 520, 520 'on the housing front shell 11.1 in claws 121, 122, which are integrally formed on the housing front shell 11.1.
- the release lever is pivotable in the bearing of the claws (arrows in 8A, 8B . 8C . 8D ), but only against the spring force of the leg spring.
- the release lever 500 blocks the ejector slide 600 and thus the eject button 19 by locking lugs 531, 532 (or alternatively, only a single locking lug) in the rest position of the release lever in front of corresponding projections 611, 612 (alternatively only in front of a single projection) of the ejector slide and block the translatory movement of the slider downwards (ejection lock).
- Fig. 8C For this purpose, the ejector bar blocked by the release lever is shown, while the ejector slide in the illustration of Fig. 8D unlocked and already pushed down.
- the feed handle 300 in the dispenser 1 slides down ( Fig. 8B ).
- the feed handle engages the lever 540 of the release lever 500 and tilts the latter with the lower end against the spring force of the leg spring 510 forward ( Fig. 8B ; Arrow).
- the release lever releases the ejector slider 600 by moving the locking tabs 531, 532 away from the corresponding projections 611, 612 of the ejector slider.
- the function of the locking levers 410, 420 when unlocking the cartridge 900 is in Fig. 8E
- the lock of the cartridge is released by pushing the ejector slide 600 down by approx. 2 mm (arrow).
- the ejector comes with its contact surfaces 551, 552 with the lower legs of the locking lever 410, 420 in contact, so that they are pressed to the outside (arrows).
- the locking lugs 412, 422 of the locking lever are pressed outward and moved out of the eyelets 981, 982 of the cartridge. This will release the cartridge.
- the cartridge can now be ejected downwards.
- the locking lugs of the ejector slide simultaneously act as ejection tabs, since they attack at the edge of the top of the cartridge lower shell 920 and push them by the downward movement downward.
- the cartridge can then be grasped by hand and pulled out of the receiving shaft 150 of the dispenser 1.
- the ejector returns after pressing under spring force in the original position back.
- the leg spring 510 is used.
- the dispenser 1 has an electronic display 16 and two electronic control buttons 17, 18 ( Fig. 1A ).
- the electronic display serves to indicate the number of tablets T in the cartridge 900 and the status of the tablet intake, ie whether the first administration phase of 24 days has already expired or not and, if the former is the case, the number of days that have already elapsed in the second flexible intake phase. Furthermore, it can be displayed if during the intake phase a tablet was not taken within a certain time window. In addition, the display can also show how many days have already elapsed in an event-free phase that may have been initiated. In addition, the display may indicate a battery status. With the control buttons the transition to the capture-free phase and the selection of different menu items can be selected.
- the dispenser 1 contains batteries 1010, 1020 (FIG. Fig. 2 . 5 ) (alternatively, only a single battery), which should maintain the functionality of the dispenser 1 as long as possible, without having to be changed. Therefore, when a cartridge 900 is first inserted into the dispenser, the dispenser includes an initialization switch 710 disposed on the housing inner frame (FIG. Fig. 9 ). This switch is formed by a switch arm 430 of the left locking lever 420 at its upper leg. When inserting the cartridge this pushes the upper leg of the left locking lever to the outside, because the feed bar 300 slides on the stop surface 426 on the upper leg of this locking lever along and pushes the leg outward ( Fig. 5 ).
- the integrally formed on the left locking lever switch arm is pressed against the initialization switch and actuates it.
- the previously located in a rest position without energy consumption electronics is initialized and remains switched on by the special design of the initialization switch even after removing the cartridge.
- a second switch (not shown) next to the initialization switch 710 is actuated, which remains on only as long as the upper leg of the right latch is pushed outward, ie as long as the cartridge remains in the dispenser. After removing the cartridge, this second switch is turned off by the inward pivoting of the upper leg of the locking lever 420. This second switch gives the signal to the electronics that there is a cartridge in the dispenser.
- the number of tablets T present in the dispenser can be calculated in each case by the target specification that there is always a certain number of tablets T in a filled cartridge, for example 30 tablets, and by a further signal forwarded to the electronics, with which each withdrawal of a tablet from the donor is registered.
- a further signal forwarded to the electronics arrives at Removing an empty cartridge from the dispenser and reinserting a filled cartridge by the further signal from the second switch the information to the electronics that now again a completely filled cartridge is in the dispenser.
- the further signal with which a removal of a tablet T from the dispenser 1 is registered, is generated by a third switch (not shown), which is located in the region of one of the transport levers 210, 220 and which is switched with each actuation of the transport lever and while this generates further signal.
- the dispenser 1 includes a fourth switch (not shown) in the lower region of the receiving shaft 150, with which the sliding past the feed arm 300 registered and forwarded as an additional signal to the electronics.
- This fourth switch serves to signal the remaining number of tablets in the cartridge to the electronics shortly before the final emptying of the cartridge 900, for example, when there are only five tablets T in the cartridge. This is determined by the exact spatial positioning of this fourth switch on the receiving shaft, whereby the fourth switch is operated only when removing a tablet, if there are still a predetermined number of tablets in the cartridge. Namely, this control count may be necessary to properly indicate to the user how many tablets are still in the cartridge when there are only a few left.
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Priority Applications (3)
Application Number | Priority Date | Filing Date | Title |
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PL09760102T PL2370327T3 (pl) | 2008-11-26 | 2009-11-14 | Wkład, dozownik leków zawierający wkład oraz zastosowania wkładu i dozownika leków |
SI200930642T SI2370327T1 (sl) | 2008-11-26 | 2009-11-14 | Kartuša, farmacevtski razdeljevalnik, ki omenjeno kartušo vsebuje in uporabe omenjene kartuše in omenjenega farmacevtskga razdeljevalnika |
CY20131100593T CY1114135T1 (el) | 2008-11-26 | 2013-07-15 | Φυσιγγιο, ενας διανεμητης φαρμακου που περιεχει το εν λογω φυσιγγιο και εφαρμογες του εν λογω φυσιγγιου και του εν λογω διανεμητη φαρμακου |
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DE102008059673A DE102008059673A1 (de) | 2008-11-26 | 2008-11-26 | Kartusche, ein die Kartusche enthaltender Arzneimittelspender sowie Verwendungen der Kartusche und des Arzneimittelspenders |
PCT/EP2009/008125 WO2010060548A1 (de) | 2008-11-26 | 2009-11-14 | Kartusche, ein die kartusche enthaltender arzneimittelspender sowie verwendungen der kartusche und des arzneimittelspenders |
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EP2370327A1 EP2370327A1 (de) | 2011-10-05 |
EP2370327B1 true EP2370327B1 (de) | 2013-04-24 |
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EP20090760102 Not-in-force EP2370327B1 (de) | 2008-11-26 | 2009-11-14 | Kartusche, ein die kartusche enthaltender arzneimittelspender sowie verwendungen der kartusche und des arzneimittelspenders |
Country Status (39)
Country | Link |
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US (1) | US9248949B2 (ru) |
EP (1) | EP2370327B1 (ru) |
JP (1) | JP5596699B2 (ru) |
KR (1) | KR101570895B1 (ru) |
CN (1) | CN102264610B (ru) |
AR (1) | AR074228A1 (ru) |
AU (1) | AU2009319437B2 (ru) |
BR (1) | BRPI0921365A2 (ru) |
CA (1) | CA2744375C (ru) |
CL (2) | CL2011001229A1 (ru) |
CO (1) | CO6430451A2 (ru) |
CR (1) | CR20110277A (ru) |
CU (1) | CU23946B1 (ru) |
CY (1) | CY1114135T1 (ru) |
DE (1) | DE102008059673A1 (ru) |
DK (1) | DK2370327T3 (ru) |
DO (1) | DOP2011000157A (ru) |
EA (1) | EA021996B1 (ru) |
EC (1) | ECSP11011086A (ru) |
ES (1) | ES2423189T3 (ru) |
HK (1) | HK1160824A1 (ru) |
HN (1) | HN2011001411A (ru) |
HR (1) | HRP20130673T1 (ru) |
IL (1) | IL212785A (ru) |
MA (1) | MA32833B1 (ru) |
MX (1) | MX2011005602A (ru) |
MY (1) | MY152201A (ru) |
NZ (1) | NZ593015A (ru) |
PA (1) | PA8850601A1 (ru) |
PE (1) | PE20121345A1 (ru) |
PL (1) | PL2370327T3 (ru) |
PT (1) | PT2370327E (ru) |
SG (1) | SG171757A1 (ru) |
SI (1) | SI2370327T1 (ru) |
TN (1) | TN2011000271A1 (ru) |
TW (1) | TWI457120B (ru) |
UA (1) | UA103345C2 (ru) |
UY (1) | UY32271A (ru) |
WO (1) | WO2010060548A1 (ru) |
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US11744413B2 (en) | 2021-10-07 | 2023-09-05 | Deb Ip Limited | Dispenser assembly |
US11744412B2 (en) | 2021-10-07 | 2023-09-05 | Deb Ip Limited | Dispenser system |
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DE102008059673A1 (de) | 2008-11-26 | 2010-05-27 | Bayer Schering Pharma Aktiengesellschaft | Kartusche, ein die Kartusche enthaltender Arzneimittelspender sowie Verwendungen der Kartusche und des Arzneimittelspenders |
WO2015069992A1 (en) * | 2013-11-07 | 2015-05-14 | Energizer Battery Company, Inc | Blade dispenser |
FR3017377B1 (fr) * | 2014-02-12 | 2017-01-13 | Stiplastics | Dispositif de comptage et de distribution d'objets |
WO2017106543A1 (en) * | 2015-12-17 | 2017-06-22 | Accu Tec Blades, Inc. | Blade dispenser |
US11091313B2 (en) * | 2016-05-23 | 2021-08-17 | Csp Technologies, Inc. | Rotatable dispenser assembly for solid units |
CN108622469B (zh) * | 2017-03-24 | 2023-08-15 | 李和伟 | 一种独立包装的履带式给药器 |
CN207390043U (zh) * | 2017-05-04 | 2018-05-22 | Wm.雷格利 Jr.公司 | 包括外壳和匣盒的容器 |
WO2019075462A1 (en) | 2017-10-13 | 2019-04-18 | Rxsafe Llc | UNIVERSAL FEEDING MECHANISM FOR AUTOMATIC PACKAGING DEVICE |
CN107902272B (zh) * | 2017-12-28 | 2019-06-21 | 重庆柚瓣家科技有限公司 | 机器人用弹夹式智能药箱 |
DE102018004419A1 (de) * | 2018-06-05 | 2019-12-05 | Fresenius Medical Care Deutschland Gmbh | Dosiervorrichtung für Feststoff-Formkörper zur Herstellung einer Lösung |
US11259661B2 (en) * | 2018-12-13 | 2022-03-01 | Tomo Technologies Inc. | Snack containment and dispensing apparatus and use thereof |
US10888666B2 (en) * | 2019-01-02 | 2021-01-12 | Gofire, Inc. | System and method for multi-modal dosing device |
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CN113384466B (zh) * | 2021-06-15 | 2022-09-23 | 上海华源安徽仁济制药有限公司 | 药品定量分配装置 |
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2008
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
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US11744413B2 (en) | 2021-10-07 | 2023-09-05 | Deb Ip Limited | Dispenser assembly |
US11744412B2 (en) | 2021-10-07 | 2023-09-05 | Deb Ip Limited | Dispenser system |
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