WO2011049168A1 - Dispositif de distribution de poudre médicinale et capot de palier - Google Patents

Dispositif de distribution de poudre médicinale et capot de palier Download PDF

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Publication number
WO2011049168A1
WO2011049168A1 PCT/JP2010/068596 JP2010068596W WO2011049168A1 WO 2011049168 A1 WO2011049168 A1 WO 2011049168A1 JP 2010068596 W JP2010068596 W JP 2010068596W WO 2011049168 A1 WO2011049168 A1 WO 2011049168A1
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WO
WIPO (PCT)
Prior art keywords
powder
support ring
powder distribution
bearing roller
bearing
Prior art date
Application number
PCT/JP2010/068596
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English (en)
Japanese (ja)
Inventor
浩司 山下
景介 横山
Original Assignee
株式会社湯山製作所
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by 株式会社湯山製作所 filed Critical 株式会社湯山製作所
Priority to JP2011537302A priority Critical patent/JPWO2011049168A1/ja
Publication of WO2011049168A1 publication Critical patent/WO2011049168A1/fr

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61JCONTAINERS 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
    • A61J3/00Devices or methods specially adapted for bringing pharmaceutical products into particular physical or administering forms
    • A61J3/02Devices or methods specially adapted for bringing pharmaceutical products into particular physical or administering forms into the form of powders
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F17/00Coin-freed apparatus for hiring articles; Coin-freed facilities or services
    • G07F17/0092Coin-freed apparatus for hiring articles; Coin-freed facilities or services for assembling and dispensing of pharmaceutical articles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B37/00Supplying or feeding fluent-solid, plastic, or liquid material, or loose masses of small articles, to be packaged
    • B65B37/08Supplying or feeding fluent-solid, plastic, or liquid material, or loose masses of small articles, to be packaged by rotary feeders

Definitions

  • the present invention relates to a powder distribution device and a bearing cover.
  • a powder distribution plate provided with an annular groove that is a donut-shaped depression having an arcuate cross section is rotated at a predetermined pitch angle, and the powder accumulated in the annular groove is dispensed one by one by a scraping device.
  • a scraping device There are some which can be scraped (see, for example, Patent Documents 1 and 2).
  • the powder can be reduced in size by scraping the powder supplied to the powder distribution tray inward.
  • the powder distribution tray has a configuration in which the inner peripheral edge of the support ring extended from a part thereof is rotatably supported by the bearing roller.
  • the powder when the powder is scraped, the powder may scatter and adhere to the bearing roller.
  • the powder adhering to the bearing roller may cause abnormal noise with the support ring, and may cause the support ring, that is, the powder distribution tray to be prevented from rotating smoothly.
  • the scattered powder may adhere to the bearing roller when the powder is scraped, particularly when the powder is scraped to the outer peripheral side.
  • the present invention rotates a doughnut-shaped powder distribution tray provided with an annular groove having an arc-shaped cross section at a predetermined pitch angle, and supplies the powder supplied to the annular groove by a scraping device.
  • a powder distribution device capable of scraping one package at a time comprising a support ring formed on the powder distribution plate and having an inner edge or an outer edge, and a guide groove for guiding the inner edge or the outer edge of the support ring.
  • a bearing roller that rotatably supports the powder distribution tray, and a bearing cover that is attachable to and detachable from the bearing roller and covers at least an upper portion from the guide groove.
  • the bearing cover includes a cleaning member that is in sliding contact with an inner edge portion of the support ring.
  • the second cleaning member may be provided on the bearing cover.
  • the bearing cover includes an upper surface portion that covers an upper surface of the bearing roller, and a side surface portion that covers a position that does not interfere with the guide of the support ring, of the outer peripheral surface of the bearing roller, and an inner edge portion or an outer edge of the support ring
  • the cleaning member slidably contacting the part may be provided at both ends of the side part.
  • the position that does not interfere with the guide of the support ring means that at least the region where the support ring can be rotatably supported by the bearing roller is excluded, and the outer periphery of the bearing roller is as wide as possible. A position where the surface can be covered is preferable.
  • the cleaning member is preferably detachable from the bearing cover.
  • the bearing cover includes a powder intrusion prevention wall disposed along the inner peripheral edge or the outer peripheral edge below the powder distribution tray.
  • the bearing cover includes a locking receiving portion on an outer surface, and a locking portion that forms a mounting state by locking the locking receiving portion when the bearing cover is mounted in the vicinity of the bearing roller. It is preferable to provide it.
  • the cleaning member that is in sliding contact with the inner edge portion or the outer edge portion of the support ring is formed with an upper inclined surface and a lower inclined surface by cutting the tip into a V shape, and each inclined surface is gradually formed from both sides. It is preferable that the width is narrow.
  • the cleaning member can be appropriately brought into sliding contact with the inner edge portion or the outer edge portion of the support ring. That is, since each inclined surface is formed so that the width is gradually narrowed from both sides, excessive interference with the inner edge portion or the outer edge portion of the support ring is avoided even if the inclined surface is slightly deformed. Further, since only the central portion having a narrow width contacts the inner edge of the support ring, the contact resistance is small. Therefore, it is possible to prevent the occurrence of problems such as the rotation of the powder distribution tray being hindered or the cleaning member being damaged.
  • the inner edge or outer edge of the support ring preferably has a rectangular cross section.
  • the support ring is configured by an outer edge portion extending in an outer diameter direction or an inner edge portion extending in an inner diameter direction from the powder distribution tray, and the outer edge portion or the inner edge portion is rotatably supported by the bearing roller. Good.
  • a donut-shaped powder distribution tray provided with an annular groove having an arc-shaped cross section is rotated at a predetermined pitch angle and supplied to the annular groove by a scraping device.
  • a bearing cover used for a powder distribution device that can scrape out powder one by one wherein the powder distribution tray is integrally formed on the bottom surface side, and includes a support ring having an inner edge or an outer edge,
  • the guide ring has a guide groove that guides the inner edge or the outer edge of the support ring, is detachable from a bearing roller that rotatably supports the powder distribution tray, and covers at least the upper part from the guide groove.
  • the bearing roller since the bearing roller is covered with the bearing cover, the scattered powder does not reach the bearing roller, and no abnormal noise is generated and the powder distribution tray does not rotate properly.
  • FIG. 1 is a fragmentary perspective view of the powder distribution apparatus which concerns on this embodiment.
  • (A) is a disassembled perspective view of the bearing roller and bearing cover concerning this embodiment,
  • (b) is a perspective view which shows the mounting state.
  • (A) is a perspective view which shows the relationship between the bearing roller of FIG.2 (b), a bearing cover, and a support ring,
  • (b) is a figure which shows the fracture
  • (A) is a top view of a bearing cover,
  • (b) is a front view,
  • (c) is a side view,
  • (d) is a perspective view of a 1st cleaning piece.
  • FIG. (A) is a fragmentary perspective view which shows the relationship between the inner edge part of a support ring, and the 1st cleaning piece of the bearing cover which slidably contacts there
  • (b) is a figure which shows the other form of the inner edge part of a support ring.
  • (A) is a partial perspective view of a powder distribution tray, a support ring, a bearing roller, and a bearing cover showing another embodiment of the bearing cover
  • (b) is a plan view thereof
  • (c) is a support ring, a bearing roller, and a bearing cover.
  • FIG. (A) is a disassembled perspective view of the protrusion part and 1st cleaning piece which concern on other embodiment
  • (b) is the figure which shows the assembly state.
  • (A) is a top view of the bearing cover which concerns on other embodiment
  • (b) is a top view which shows the state before mounting
  • (c) is the side view
  • (d) is after mounting
  • (e) is the side view.
  • (A) is a figure which shows the rotation direction of the powder distribution tray at the time of scraping out a powder from a powder distribution tray
  • (b) is a figure which shows the rotation direction of the powder distribution tray at the time of supplying a powder to a powder distribution tray. It is a fragmentary perspective view which shows the support state of the support ring by the bearing roller which concerns on other embodiment.
  • (A) is a top view which shows the support state of the support ring by the bearing roller which concerns on other embodiment
  • (b) is the partial side view.
  • (A) is a top view which shows the support state of the support ring by the bearing roller in the case of scraping out powder in an inner diameter direction
  • (b) is a top view which shows the support state of the support ring by a bearing roller in the case of scraping out powder in an outer diameter direction It is.
  • FIG. 1 shows a powder dispensing device of the present invention.
  • the powder distribution tray 2 is rotatably supported by the support plate 1.
  • the powder distribution tray 2 is obtained by pressing a metal thin plate into a donut shape and forming an annular groove 3 having a circular arc cross section on the upper surface thereof.
  • a support ring 4 is integrated with the lower surface of the powder distribution tray 2.
  • the support ring 4 has an inner edge portion 4a that protrudes toward the inner peripheral side.
  • the inner edge is formed in a triangular cross section that gradually decreases toward the center in the thickness direction toward the tip.
  • the inner edge portion of the support ring 4 is rotatably supported by a bearing roller 5 that is rotatably attached to the support plate 1 at three equal portions.
  • a driven gear is formed on the outer edge portion of the support ring 4, and a drive gear provided on the rotating shaft of the motor is engaged, so that the powder distribution tray 2 is rotated by the driving force of the motor. .
  • the support ring 4 is formed in the lower surface of the powder distribution tray 2, it is difficult for powder to enter.
  • the bearing roller 5 has a cylindrical shape, and a substantially V-shaped guide groove 6 is formed on the outer peripheral surface of the bearing roller 5 so as to be in contact with the vertically inclined surface of the inner edge portion.
  • each bearing roller 5 is covered with a bearing cover 7.
  • the bearing cover 7 includes an upper surface portion 8 having a substantially semicircular shape in plan view, and a side surface portion 9 formed along the outer edge excluding the front edge of the upper surface portion 8. It is obtained by molding a resin material.
  • the bearing cover 7 is attached to the upper half of the bearing roller 5 (an upper part separated by the guide groove 6). In this mounted state, the upper surface portion 8 covers the upper surface portion of the bearing roller 5, and the side surface portion 9 covers the outer peripheral surface of the bearing roller 5. Thereby, adhesion of the scattered powder etc. to the bearing roller 5 is prevented.
  • Protruding portions 9 a that protrude from the front end of the upper surface portion 8 are formed at both end portions (the end portion on the front end side) of the side surface portion 9.
  • a first cleaning piece 10 is provided on the protruding portion 9a.
  • a second cleaning piece 11 is provided in the central portion of the inner peripheral surface of the side surface portion 9.
  • Each cleaning piece is made of a flexible material such as urethane rubber.
  • the upper and lower inclined surfaces 10 a and 10 b of the first cleaning piece 10 are in sliding contact with the upper and lower inclined surfaces of the inner edge portion 4 a of the support ring 4, and remove powders and the like attached to the inner edge portion of the support ring 4.
  • the cleaning pieces 10 and 11 are fixed to the side surface portion 9 with an adhesive or the like.
  • the tip of the first cleaning piece 10 is cut into a V shape, thereby forming an upper inclined surface 10a and a lower inclined surface 10b.
  • the inclined surfaces 10a and 10b are gradually narrowed from both sides, whereby the central inclined surfaces 10a-1 and 10b-1, the front inclined surfaces 10a-2 and 10b-2, and the rear inclined surface 10a. -3, 10b-3.
  • the front inclined surfaces 10 a-2 and 10 b-2 are located on the upstream side with respect to the moving direction of the inner edge portion 4 a of the support ring 4.
  • the tip of the second cleaning piece 11 is formed in a triangular shape, slidably contacts the upper and lower inclined surfaces of the guide groove 6 of the bearing roller 5, and removes the powder adhering to the guide groove 6 of the bearing roller 5.
  • the 1st cleaning piece 10 was provided in the both ends of the side part 9 in consideration of the rotation direction of the powder distribution tray 2. That is, when scraping the powder from the powder distribution tray 2, the powder distribution tray 2 is rotated in the direction of the arrow shown in FIG. 9A, so that the powder is removed by the first cleaning piece 10 on the right side in the figure. Moreover, when supplying a powder to the powder distribution tray 2, the powder supply direction is directed obliquely downward from a direction opposite to the moving direction of the powder scraping device 2 indicated by an arrow in FIG. 9 (a) or (b). I am doing so. In the case shown by the arrow in FIG.
  • the powder is removed by the first cleaning piece 10 on the right side in the figure, as in the case of scraping out the powder, and in the case shown in FIG. 9B, the left side in the figure
  • the powder is removed by the first cleaning piece 10.
  • the bearing cover 7 having the above-described configuration is mounted so as to cover the upper half of the bearing roller 5.
  • the configuration for mounting the bearing cover 7 is not particularly described, but any configuration can be adopted as long as the rotation of the bearing roller 5 is not hindered (for example, the configuration shown in FIG. 8 described later). etc).
  • the cleaning pieces 10 and 11 of the bearing cover 7 are in pressure contact with the inner edge portion 4a of the support ring 4 and the bearing roller 5 is in pressure contact with the guide groove 6, respectively.
  • Powder is supplied to the annular groove 3 from a charging hopper (not shown). That is, a constant amount of powder is supplied per unit time from the charging hopper into the annular groove 3 while driving the motor to rotate the powder distribution tray 2 at a constant speed. Thereby, the powder medicine is uniformly supplied into the annular groove 3.
  • the powder supplied to the annular groove 3 is scraped one by one by the scraping device 12 and packaged by a packaging unit (not shown).
  • the scraping device 12 has a configuration in which an arm member 14 is rotatably provided on a support base 13 provided so as to be rotatable and a scraping plate 16 having a scraping piece 15 is attached to the tip thereof (the scraping device). (For example, refer to Japanese Patent No. 4057159).
  • the annular groove 3 of the powder distribution tray 2 is cleaned by a cleaning device 17.
  • the cleaning device 17 includes a roller brush 18 that can be rotationally driven, a guide cover 19 that covers the roller brush 18, and a suction pump 20 that sucks the powder scattered from the guide cover 19 (for details of the cleaning device 17). (For example, see JP-A-2007-55689).
  • the powder distribution plate 2 is rotated by a predetermined pitch in the circumferential direction and the scraping device 12 is driven to scrape one powder of powder from the annular groove 3 toward the inside. In this case, a part of the scraped powder may be scattered.
  • the scattered powder reaches the support plate 1 and travels toward the bearing roller 5.
  • a bearing cover 7 is attached to the bearing roller 5. Therefore, the scattered powder does not adhere to the bearing roller 5.
  • the scattered powder may adhere to the inner edge of the support ring 4.
  • the powder on the inner edge of the support ring 4 is scraped off by the first cleaning piece 10 provided on the bearing cover 7 when the powder distribution tray 2 rotates. Therefore, the adhering powder does not reach the guide groove 6 of the bearing roller 5. In the unlikely event that the first cleaning piece 10 is not completely removed, the powder that reaches the guide groove 6 of the bearing roller 5 is scraped off by the second cleaning piece 11.
  • the inner edge 4a of the support ring 4 is formed in a triangular cross section, but as shown in FIG. 5B, a rectangular cross section may be used.
  • the upper and lower corners of the inner edge 4 a of the support plate 1 are in line contact with the upper and lower inclined surfaces constituting the guide groove 6 of the bearing roller 5.
  • This is preferable in that the contact area between the support ring 4 and the bearing roller 5 can be suppressed to make it less susceptible to the adhering powder.
  • the guide state can be stabilized by chamfering the contact portion.
  • the cleaning pieces 10 and 11 were used for cleaning of the inner edge part 4a of the support ring 4 and the guide groove 6 of the bearing roller 5, it replaced with this and comprised by the cleaning members of other forms, such as a brush. Also good. In short, any configuration capable of removing the adhering powder is sufficient.
  • the bearing cover 7 is configured as shown in FIGS. 2 to 4, but as shown in FIG. 6, the upper surface portion 8 may be provided with a powder intrusion prevention wall 21. That is, the bearing cover 7 is formed with an arc-shaped powder intrusion prevention wall 21 along the lower surface of the inner peripheral edge of the powder distribution tray 2 in a state of being mounted on the bearing roller 5. Thereby, it is possible to prevent the powder from entering the lower side of the powder distribution tray 2 and reaching the bearing roller 5. Therefore, in combination with the above-described configuration, it is possible to further reliably prevent the generation of abnormal noise and rotation failure.
  • the cleaning pieces 10 and 11 are attached to the bearing cover 7 with an adhesive or the like, but the cleaning pieces 10 and 11 may be detachable as shown in FIG. That is, the engaging groove 9 b having a substantially semicircular cross section is formed in the protruding portion 9 a provided on the side surface portion 9 of the bearing cover 7.
  • the engagement groove 9b is formed so as to gradually expand toward the tip.
  • a substantially semi-columnar mounting portion 10c that can be attached to and detached from the engaging groove 9b is formed. Then, as shown by the arrow in FIG. 7A, the attachment portion 10c is press-fitted into the engagement groove 9b to be attached.
  • the cleaning pieces 10 and 11 can be provided other than the bearing cover 7.
  • a support portion (not shown) may be formed on the support plate 1 and the cleaning pieces 10 and 11 may be provided on the support portion. In this case, even when the bearing cover 7 is removed, the cleaning pieces 10 and 11 maintain a state in which the cleaning pieces 10 and 11 can be brought into sliding contact with the bearing roller 5.
  • the mounting structure of the bearing cover 7 with respect to the bearing roller 5 is not particularly mentioned, but for example, the configuration shown in FIG. That is, the bearing cover 7 is formed with locking receiving portions 22 on the outer peripheral surfaces of both end portions of the side surface portion 9, while the locking pins 23 are projected from the support plate 1.
  • the locking pin 23 is locked to the locking receiving portion 22 and attached.
  • the latch receiving part 22 is formed so as to gradually expand toward the tip, the latch pin 23 smoothly enters the latch receiving part 22. For this reason, the locking pin 23 and the locking receiving portion 22 are not easily damaged.
  • only the second cleaning piece 11 of the bearing cover 7 is in sliding contact with the bearing roller 5. Therefore, when the rotational force by the support ring 4 is applied to the bearing roller 5, only the second cleaning piece 11 prevents the rotation, and the rotation of the bearing roller 5 becomes smoother than the above, The rotation state of the powder distribution tray 2 can be stabilized.
  • the inner edge 4a of the support ring 4 is supported by the bearing roller 5.
  • the outer edge 4b is formed on the support ring 4 and supported on the outer peripheral side. It is also possible to do.
  • the support ring 4 is shown in FIGS. As shown to 12 (a), you may comprise by the outer edge part 2a extended from the powder distribution tray 2 to the outer-diameter direction, and was made to extend to the inner-diameter direction as shown in FIG.12 (b). You may comprise by the inner edge part 2b (in the figure, the arrow has shown the scraping-out direction of a powder).
  • the heavy support ring 4 can be constituted by a part of the powder distribution tray 2, the overall weight can be reduced, and the load on the power source and the rotating shaft can be reduced. It becomes possible to maintain a good rotation state over a long period of time.
  • the outer edge portion 2a or the inner edge portion 2b may be rotatably supported by the bearing roller 5.
  • the support position by the bearing roller 5 may be on the same side as the powder scraping direction by the scraping device 12, but is preferably on the opposite side.
  • the scraping device 12 scrapes the powder from the powder distribution tray 2 in the inner diameter direction, and the support position by the bearing roller 5 is the outer diameter side.
  • powdered medicine is scraped out to the outer diameter direction, and the support position by the bearing roller 5 is made into the inner diameter side. Thereby, it becomes possible to prevent adhesion of powder medicine to the bearing roller 5 more effectively.
  • 24 and 25 are powder feeders.
  • the powder feeder 24 supplies the powder in the right direction in FIGS. 11 (a), 12 (a), and 12 (b), and the powder feeder 25 is used in FIGS. 11 (b), 12 (a), ( b) In the middle, powder is supplied in the left direction.
  • a cylindrical driven gear 2c is formed downward.
  • the driven gear 2c meshes with a drive gear 2d provided on a rotating shaft of a motor (not shown) so that power is transmitted.
  • Scraping device 13 Support stand 14 ... Arm member 15 ... Scraping piece 16 ... Scraping plate 17 ... Cleaning device 18 ... Roller brush 19 ... Guide cover 20 ... Suction pump 21 ... Powder intrusion prevention wall 22 ... Lock receiving Part 23: Locking pins 24, 25 ... Powdered feeder

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  • Health & Medical Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Medicinal Chemistry (AREA)
  • Pharmacology & Pharmacy (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Basic Packing Technique (AREA)
  • Supply Of Fluid Materials To The Packaging Location (AREA)
  • Medical Preparation Storing Or Oral Administration Devices (AREA)

Abstract

L'invention porte sur une plaque de distribution de poudre médicinale de forme annulaire (2), laquelle plaque comporte une rainure annulaire (3) comportant une section transversale en forme d'arc, et tourne d'un angle de pas prédéterminé. Une poudre médicinale délivrée à la rainure annulaire (3) peut être raclée par un dispositif de raclage (12) sous une quantité correspondant à un paquet à la fois. La plaque de distribution de poudre médicinale (2) comporte un anneau de support (4) qui est formé d'un seul tenant sur le côté de surface inférieure de la plaque, et qui comporte une partie de bord interne ou une partie de bord externe. Une rainure de guidage (6) qui guide la partie de bord interne ou la partie de bord externe de l'anneau de support (4) est disposée. Un rouleau de palier (5) qui supporte en rotation la plaque de distribution de poudre médicinale (2), et un capot de palier (7) qui est amovible à partir du rouleau de palier (5) et qui couvre au moins une partie au-dessus de la rainure de guidage (6) sont disposés.
PCT/JP2010/068596 2009-10-22 2010-10-21 Dispositif de distribution de poudre médicinale et capot de palier WO2011049168A1 (fr)

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Application Number Priority Date Filing Date Title
JP2011537302A JPWO2011049168A1 (ja) 2009-10-22 2010-10-21 散薬分配装置及び軸受カバー

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JP2009-243157 2009-10-22
JP2009243157 2009-10-22

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WO2011049168A1 true WO2011049168A1 (fr) 2011-04-28

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Cited By (5)

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Publication number Priority date Publication date Assignee Title
CN103910171A (zh) * 2013-01-09 2014-07-09 西门子医学诊断产品有限责任公司 用于传送反应容器的装置
US9150119B2 (en) 2013-03-15 2015-10-06 Aesynt Incorporated Apparatuses, systems, and methods for anticipating and delivering medications from a central pharmacy to a patient using a track based transport system
US9511945B2 (en) 2012-10-12 2016-12-06 Aesynt Incorporated Apparatuses, systems, and methods for transporting medications from a central pharmacy to a patient in a healthcare facility
JP2017214145A (ja) * 2016-05-31 2017-12-07 キヤノンマーケティングジャパン株式会社 薬剤包装装置
CN115306246A (zh) * 2022-08-26 2022-11-08 芜湖云从科技有限公司 用于旋转门开关的装置及售货柜

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JPH04352601A (ja) * 1991-02-06 1992-12-07 Sonobe Hisatoshi 回転式分包機における粉粒体分割装置
JPH06286701A (ja) * 1993-03-29 1994-10-11 Sonobe Hisatoshi 粉粒体分包機における粉粒体の分割方法
JPH09107902A (ja) * 1996-01-19 1997-04-28 Nakai:Kk 包装容器に対する流動餅の自動充填機構
JP2008080374A (ja) * 2006-09-28 2008-04-10 Jtekt Corp 転がり軸受装置およびハーフリング装置

Patent Citations (4)

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Publication number Priority date Publication date Assignee Title
JPH04352601A (ja) * 1991-02-06 1992-12-07 Sonobe Hisatoshi 回転式分包機における粉粒体分割装置
JPH06286701A (ja) * 1993-03-29 1994-10-11 Sonobe Hisatoshi 粉粒体分包機における粉粒体の分割方法
JPH09107902A (ja) * 1996-01-19 1997-04-28 Nakai:Kk 包装容器に対する流動餅の自動充填機構
JP2008080374A (ja) * 2006-09-28 2008-04-10 Jtekt Corp 転がり軸受装置およびハーフリング装置

Cited By (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US9511945B2 (en) 2012-10-12 2016-12-06 Aesynt Incorporated Apparatuses, systems, and methods for transporting medications from a central pharmacy to a patient in a healthcare facility
US10029856B2 (en) 2012-10-12 2018-07-24 Aesynt Incorporated Apparatuses, systems, and methods for transporting medications from a central pharmacy to a patient in a healthcare facility
US10315851B2 (en) 2012-10-12 2019-06-11 Aesynt Incorporated Apparatuses, systems, and methods for transporting medications from a central pharmacy to a patient in a healthcare facility
US10518981B2 (en) 2012-10-12 2019-12-31 Aesynt Incorporated Apparatuses, systems, and methods for transporting medications from a central pharmacy to a patient in a healthcare facility
US10850926B2 (en) 2012-10-12 2020-12-01 Omnicell, Inc. Apparatuses, systems, and methods for transporting medications from a central pharmacy to a patient in a healthcare facility
US11694782B2 (en) 2012-10-12 2023-07-04 Omnicell, Inc. Apparatuses, systems, and methods for transporting medications from a central pharmacy to a patient in a healthcare facility
CN103910171A (zh) * 2013-01-09 2014-07-09 西门子医学诊断产品有限责任公司 用于传送反应容器的装置
CN103910171B (zh) * 2013-01-09 2017-07-14 西门子医学诊断产品有限责任公司 用于传送反应容器的装置
US9150119B2 (en) 2013-03-15 2015-10-06 Aesynt Incorporated Apparatuses, systems, and methods for anticipating and delivering medications from a central pharmacy to a patient using a track based transport system
JP2017214145A (ja) * 2016-05-31 2017-12-07 キヤノンマーケティングジャパン株式会社 薬剤包装装置
CN115306246A (zh) * 2022-08-26 2022-11-08 芜湖云从科技有限公司 用于旋转门开关的装置及售货柜

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