TABLET DISPENSER
20180353385 · 2018-12-13
Assignee
Inventors
Cpc classification
G07F17/0092
PHYSICS
G07F11/62
PHYSICS
International classification
A61J7/00
HUMAN NECESSITIES
B65D83/04
PERFORMING OPERATIONS; TRANSPORTING
G07F11/62
PHYSICS
Abstract
A tablet dispenser may include a body having a base for resting on an underlying foundation in use. The body may include a tablet drop channel that extends in a direction at an angle () relative a base plane formed by the base, and a support structure for accommodating at least two tablet cartridge units may be arranged one above the other in relation to the base. Each tablet cartridge unit may have an opening allowing a tablet from the associated tablet cartridge unit to be released into the tablet drop channel via gravitational force, whereby each tablet cartridge unit is inclined at an angle () relative the base plane.
Claims
1. A tablet dispenser comprising: a body having a base for resting on an underlying foundation in use; the body including a tablet drop channel extending in a direction at an angle () relative to a base plane formed by the base, and a support structure accommodating at least two tablet cartridge units arranged one above the other in relation to the base, each tablet cartridge unit having an opening allowing a tablet from the associated tablet cartridge unit to be released into the tablet drop channel via gravitational force, whereby each tablet cartridge unit is inclined at an angle () relative the base plane; wherein each tablet cartridge unit includes a compartment member having a cylindrical cover sheet on which an inner wall is arranged, and an associated socket for detachably receiving the compartment member before use; wherein the socket includes a cylindrical socket base plate and an outer wall extending at least partly along an outer boundary of the socket base plate; wherein the inner wall of the compartment member has a cylindrical shape; and wherein the socket base plate includes means for detachably attaching the cylindrical inner wall of the associated compartment member to the socket such that the compartment member when attached is allowed to rotate in relation to the socket.
2. The tablet dispenser according to claim 1, wherein a number of flanges are arranged on the cylindrical cover sheet between the inner wall and an outer boundary of the cover sheet.
3. The tablet dispenser according to claim 1, wherein the outer wall has an inner diameter being larger than the outer diameter of the cover sheet, thereby allowing the socket to embrace the compartment member in use, whereby two adjacent flanges, the inner wall, the cover sheet, the outer wall, and the socket base plate together form a tablet compartment for holding at least one tablet.
4. The tablet dispenser according to claim 1, wherein the compartment member when attached is allowed to rotate in relation to the socket such as to allow for rotary alignment of each tablet compartment and the opening in use.
5. The tablet dispenser according to claim 3, wherein the cover sheet comprises a cylindrical ridge pattern provided at a side opposite that of the inner wall and flanges; wherein the cylindrical ridge pattern has one engagement surface for each tablet compartment; wherein the engagement surface in use is arranged to receive a force such to rotate the compartment member in relation to the associated socket, thereby aligning the opening with the next tablet compartment of the tablet cartridge unit.
6. The tablet dispenser according to claim 5, wherein the socket base plate is provided with a protrusion protruding in a direction having a component in the same direction as the outer wall; and wherein the protrusion in use is arranged to engage with one of the flanges such as to bend the flange such as to increase the size of the tablet compartment, to avoid a tablet from getting stuck in the tablet compartment when the tablet compartment is aligned with the opening.
7. The tablet dispenser according to claim 1, wherein the body in a side wall thereof further comprises an opening for accessing a bottom portion of the tablet drop channel.
8. The tablet dispenser according to claim 7, wherein the body further comprises a sensor for detecting the presence of a receiving cup when inserted through the opening for accessing a bottom portion of the tablet drop channel.
9. The tablet dispenser according to claim 1, further comprising: a lift assembly that includes a bracket being arranged to move along a guide rail between different levels to thereby align with each tablet cartridge unit.
10. The tablet dispenser according to claim 9, wherein the lift assembly comprises a detector for detecting identity information of each tablet unit; and wherein the identity information at least includes the type of tablets contained in the tablet cartridge unit.
11. The tablet dispenser according to claim 9, wherein the lift assembly is operatively coupled to at least one spring loaded telescoping pushing member for engaging an engagement surface of a ridge pattern of a compartment member of each tablet cartridge unit.
12. The tablet dispenser according to claim 11, wherein the lift assembly further comprises a rotary member for engaging/disengaging with the telescoping pushing member in use.
13. The tablet dispenser according to claim 1, wherein the supporting structure comprises at least two cartridge receiving members, each arranged above the other in relation to the base; wherein each cartridge member includes a hollow channel section constituting a part of the tablet drop channel.
14. The tablet dispenser according to claim 3, wherein the socket base plate adjacent to the opening comprises a tilting plate having an idle state in which it projects into the associated tablet compartment thereby blocking the rotary movement of the adjacent flanges of the compartment member by the engagement of the tilting plate during transport of the assembled tablet cartridge unit in use.
15. The tablet dispenser according to claim 3, wherein a stabilization element is provided at the rim of the outer wall across the opening of the socket.
16. A tablet cartridge unit comprising, a compartment member having a cylindrical cover sheet on which an inner wall is arranged, wherein a number of flanges are arranged on the cylindrical cover sheet between the inner wall and an outer boundary of the cover sheet; and an associated socket for receiving the compartment member in use, wherein the socket includes a cylindrical socket base plate and an outer wall extending at least partly along an outer boundary of the socket base plate, the outer wall having an inner diameter being larger than the outer diameter of the cover sheet, thereby allowing the socket to embrace the compartment member in use, whereby two adjacent flanges, the inner wall, the cover sheet, the outer wall, and the socket base plate form a tablet compartment for holding at least one tablet; wherein the socket base plate includes means for detachably attaching the cylindrical inner wall of the associated compartment member to the socket, such that the compartment member, when attached, is allowed to rotate in relation to the socket such as to allow for rotary alignment of each tablet compartment and an opening in the tablet cartridge unit.
17. The tablet cartridge unit according to claim 16, wherein the socket base plate adjacent to the opening comprises a tilting plate having an idle state in which it projects into the associated tablet compartment thereby blocking the rotary movement of the adjacent flanges of the compartment member by the engagement of the tilting plate.
18. The tablet cartridge unit according to claim 17, wherein the tilting plate further has an aligned state in which its tope surface is aligned with the top surface of the surrounding socket base plate.
19. The tablet cartridge unit according to claim 16, further comprising a stabilization element provided at a rim of the outer wall across the opening of the socket.
20. The tablet cartridge unit according to claim 16, wherein the opening is formed in the outer wall of the socket.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0008] The above, as well as additional objects, features and advantages of the present invention, will be better understood through the following illustrative and non-limiting detailed description of preferred embodiments of the present invention, with reference to the appended drawings.
[0009]
[0010]
[0011]
[0012]
[0013]
[0014]
DESCRIPTION OF NON-LIMITING EMBODIMENTS
[0015] With reference to
[0016] Preferably the inclination angle , as perhaps best seen in relation to the cross sectional view of
[0017] As seen in the bottom portion of
[0018] Each tablet cartridge unit may be prefilled with tablets e.g. prior to reaching the end-consumer. Each tablet cartridge unit may be prefilled by placing a tablet in the associated spaces between two flanges 154 of the compartment member 151 and upon completion gently pressing the associated socket 155 over the compartment member whereby the tablet cartridge is assembled. A means of identification, e.g. a QR code, ID tag, label, etc. indicating the type of tablets in the tablet cartridge unit may be provided on the exterior side of the outer wall 157. Such a means for identification may be read before using the tablet dispenser, such that the tablet dispenser knows the type of medication stored in each tablet cartridge unit. The means for identification, e.g. the QR code, may contain information such as patient ID, drug ID, amount of tablets, start/end date for medication, cartridge serial number.
[0019] As seen in
[0020] As seen in
[0021] The cover sheet 152 comprises a cylindrical ridge pattern 41 provided at a side opposite that of the inner wall 153 and flexible flanges 154. The cylindrical ridge pattern has one engagement surface 411 for each tablet compartment. Hence, the number of engagement surfaces 411 is equal to the number of flanges 154 of the compartment member 151. Each engagement surface 411 in use is arranged to receive a force, e.g. from a spring loaded telescoping pushing member 25 as shown in
[0022] The socket base plate 156 may be provided with a protrusion 35 protruding in a direction having a component in the same direction as the outer wall 157, as perhaps best shown in the bottom part of
[0023]
[0024]
[0025] It should be appreciated that the tilting plate is not required to be provided straight in front of the opening 158 as shown in
[0026]
[0027] With reference to
[0028] The tablet dispenser 10 may further comprise a sensor 17 for detecting the presence of a cup 30 when inserted through the opening 16. The opening 16 is in communication with the tablet drop channel.
[0029] A lift assembly 20 is arranged in the tablet dispenser 10 and arranged to move between different levels to thereby align with each tablet cartridge unit 15.
[0030] The lift assembly 20 may comprise a stationary guide rail 21. Moreover a bracket 22 is movable along the guide rail 21, by the operation of an electric motor 23 operatively coupled to the bracket 22 via an associated driving belt 24. The electric motor 23 may be an electric step motor stationary arranged in the tablet dispenser as shown in
[0031] The movable member may be provided with a detector, e.g. a camera, (not shown) for detecting identity information (of the means of identification e.g. QR code, ID tag or ID label as explained above) of each tablet unit. The identity information at least comprises the type of tablets contained in the tablet cartridge unit 15, but could also include the number of tablets stored in each tablet compartment, if more than a single tablet is stored therein.
[0032] In use, the detector scans the QR code or ID label and checks it against the dosing schedule and patient information that available to a control unit of the tablet dispenser unit. The control unit, will prevent a tablet cartridge unit to be reused after running out of tablets, since the serial number of each tablet cartridge unit (optionally in conjunction with the stored use history of said tablet cartridge unit) may be stored by the control unit and be prevented from being re-used at a later stage after removal of the tablet cartridge unit from the tablet dispenser. A tablet cartridge unit with the wrong information may be prevented from being used since at least some information (e.g. patient ID, type of tablets, dosing regimen) of the tablet cartridge unit needs to match that already stored or expected by the control unit of the tablet dispenser unit. The detector may be controlled such as to scans all QR codes or ID labels each time the cover 11 of the tablet dispenser unit is closed. For this purpose a sensor for detecting when the cover 11 is closed may trigger a signal to the control unit to conduct a scan of the tablet cartridge units. It may also be arranged to scan the tablet cartridge units 15 immediately prior to dispensation of the medication.
[0033] The lift assembly 20 may be operatively associated with at least one spring loaded telescoping pushing member 25 for engaging the engagement surface 411 of the ridge pattern 41 of each tablet cartridge unit 15. In its idle state the spring loaded telescoping pushing member 25 is not in contact with the ridge pattern 41 or any of the associated engagement surfaces 411, see
[0034] Upon engagement with a rotary member 26 of the lift assembly 20 the spring loaded telescoping pushing member may be pushed from its idle state to engage with an engagement surface 411, against the spring force of the spring, thereby rotating the compartment member 151 in relation to its socket 155 to align the next tablet compartment with the opening 158.
[0035] The rotary member 26 is thus able to both engage and disengage with the telescoping pushing member 25 in use. The rotary member 26 may have an arc shape for improving the engagement and disengagement of the telescoping pushing member. The rotary member 26 may be of an excenter type, thereby translating rotational movement of the rotary member 26 to a translational movement engaging/disengaging the telescoping pushing member 25 in use.
[0036] The rotary member 26 may be attached to the bracket 22 and its associated rotation be controlled by a servo motor 261. The axis of rotation of the rotary member may be parallel to the longitudinal extension of the guide rail 21. When the rotary member 26 returns to its idle position by the operation of the servo motor 261 it disengages from the associated telescoping pushing member 25, whereby the telescoping pushing member 25 returns to its idle state by means of the spring force of its associated spring. The servo motor 261 may also be attached to the bracket 22 thus following the movement of the bracket along the guide rail 21 upon the operation of the electric motor 23.
[0037] Hence, as the bracket 22 moves along the guide rail 21 the rotary member 26 will follow this movement. By providing a telescoping pushing member 25 in connection with each tablet cartridge unit 15, as shown in
[0038] As shown in
[0039] It should be appreciated that the operation of the lift assembly, including the operation of the electric motor 23, the detector, the rotary member 26 and the associated servo motor 261 may be controlled using a control unit having computer processing capabilities and associated memory for storage. It should be appreciated that all software related functions of the tablet dispenser unit, e.g. operation of the display operation, saving/updating/executing dosing regimes, buttons, communication interfaces (Ethernet, USB) may be controlled by a control unit having computer processing capabilities.