Powder dispenser
The powder dispensing device addresses the inflexibility of existing systems by incorporating a dispensing and weighing mechanism with an openable door, enabling efficient and flexible powder medicine dispensing and weighing.
Patent Information
- Application Number
- JP2025194528
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-11-13
- Publication Date
- 2026-01-23
AI Technical Summary
Existing powder medicine dispensing devices are unable to efficiently dispense powder medicine not contained in a cassette, limiting their flexibility in responding to supply instructions.
A powder dispensing device with a dispensing section, weighing section, and a housing that includes an openable door, allowing for flexible dispensing and weighing of powder from a powder container, with mechanisms for automatic and manual operation.
Enables efficient preparation of powder medicine according to supply instructions, supporting both automatic and manual weighing modes for enhanced flexibility and accuracy.
Smart Images

Figure 2026012529000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to a powder medicine dispensing device that dispenses powder medicine. [Background technology]
[0002] Conventionally, when dispensing powdered medicines (also called "powdered drugs") at a dispensing pharmacy, a pharmacist would bring a powder bottle containing the powder to a dispensing counter and then weigh the powder by feeding it from the bottle onto a tray that was placed on an electronic balance. This tray is called a weighing dish. While there were packaging devices that divided and packaged powdered medicines into single doses, the total amount of powder needed for packaging before feeding it into the device was weighed manually, leaving room for improvement.
[0003] There is also a "powdered medicine supply device" described in Patent Document 1. This device is configured to dispense and weigh powdered medicine from an arbitrary cassette stored in a cassette storage unit into a cup supplied by a cup supply unit, and then transport the cup to a packaging unit using a cup lifting unit and a cup return unit. [Prior art documents] [Patent documents]
[0004] [Patent Document 1] Patent No. 4066280 Summary of the Invention [Problem to be solved by the invention]
[0005] However, the device described in Patent Document 1 was unable to dispense, for example, powder medicine that was not contained in a cassette, and therefore there was room for improvement in terms of flexible response to supply instructions.
[0006] SUMMARY OF THE INVENTION It is therefore an object of the present invention to provide a powder medicine dispensing device that can efficiently prepare powder medicine in response to a supply instruction. [Means for solving the problem]
[0007] The powder dispensing device of the present invention comprises a dispensing section that dispenses powder from a powder container that can hold the powder, a weighing section on which a tray is placed that receives the powder dispensed from the powder container and that weighs the powder supplied to the tray, and a housing that surrounds the dispensing section and the weighing section, and the housing is provided with an openable door.
[0008] The dispensing unit may be configured to dispense the powder from the powder container when the door is closed.
[0009] The door may be disposed on the front side of the weighing unit in the housing.
[0010] The door may be provided with a locking section that locks the door so that it cannot be opened. [Effects of the Invention]
[0011] As described above, according to the present invention, it is possible to provide a powder medicine dispensing device that can efficiently prepare powder medicine in accordance with a supply instruction. [Brief explanation of the drawings]
[0012] [Figure 1] 1 is a front view showing the appearance of a weighing device according to an embodiment of the present invention. [Figure 2] FIG. 2 is a perspective view showing the appearance of the weighing device according to the embodiment. [Figure 3] FIG. 2 is a perspective view of a main part of the weighing device according to the embodiment. [Figure 4] FIG. 2 is a front view of the main part of the weighing device according to the embodiment. [Figure 5] FIG. 2 is a plan view of the main part of the weighing device according to the embodiment, showing a case where weighing is performed automatically. [Figure 6] FIG. 2 is a plan view of the main part of the weighing device according to the embodiment, showing a case where weighing is performed manually. [Figure 7] 10 is a cross-sectional view of the main part of the weighing device according to the embodiment, illustrating the state in which the dispensing outlet of the powder container is aligned with the opening formed in the table at the dispensing position. FIG. [Figure 8] FIG. 2 is a block diagram showing a configuration related to control of the weighing device according to the embodiment. [Figure 9] 4A and 4B are diagrams for explaining information displayed on an information display unit of the weighing device according to the embodiment. [Figure 10] FIG. 10 is a schematic plan view showing a tray stacking unit of a weighing device according to another embodiment. DETAILED DESCRIPTION OF THE INVENTION
[0013] A weighing device 1 according to one embodiment of the present invention will be described below with reference to the drawings. Directions indicated in the following description correspond to the directions shown in FIG. 3. The "width direction" is also referred to as the "left-right direction." The tray T (see FIG. 9) used in this embodiment moves in the order of the tray standby section 4, the weighing section 3, and the tray accumulation section 6. Therefore, in relation to the positional relationship of each component, the movement direction of the tray T is sometimes described using expressions such as "upstream" by likening it to a flow.
[0014] [overview] The weighing device 1 of this embodiment is a device that can mechanically perform the weighing work of powders, which has traditionally been performed manually by pharmacists and other workers when dispensing powders, and can also be performed manually by a worker if necessary. This weighing device 1 can mechanically or manually supply and weigh powders to trays T placed on the weighing unit 3. In this embodiment, one type of powder is supplied to each tray T, and a worker mixes different types of powders as needed in a subsequent process (such as when feeding into a packaging device). However, in some cases, it is also possible to supply multiple types of powders to each tray T.
[0015] 1 to 3, the weighing device 1 of this embodiment mainly comprises a dispensing unit 2, a weighing unit 3, a tray standby unit 4, a tray transport unit 5, a tray accumulation unit 6, an information writing unit 7, a device-side display unit 8, a control unit 9, and a housing 10. The main configuration of each unit will be described below.
[0016] [Payment section] Dispensing unit 2 includes powder container 21 capable of accommodating powder, holder 22 for detachably holding powder container 21, movement mechanism 23 for moving powder container 21 held by holder 22, and dispensing mechanism 24 for dispensing powder from powder container 21, and further includes table 25 for supporting powder container 21, holder 22, movement mechanism 23, and dispensing mechanism 24. Note that Figures 3 to 6 show a state in which powder containers 21 are not attached to some holders 22.
[0017] (powder container) A plurality of powder containers 21 are provided horizontally. The powder containers 21 are moved by a moving mechanism 23 to a dispensing position P1 for dispensing the powder. The powder dispensed by the dispensing mechanism 24 falls from the powder container 21 and is stored in a tray T placed on the weighing unit 3 located below. In this embodiment, 14 powder containers 21 are provided. However, the number of powder containers 21 is not limited to this. Each powder container 21 in this embodiment normally contains powder by type. That is, one type of powder is contained in one powder container 21. However, for example, for powders that are used in large quantities, one type of powder can be contained in two or more powder containers 21.
[0018] As shown in FIG. 7 , the powder container 21 has a cylindrical body 211, a bottom 212 provided at one end (lower end) of the body 211, and a lid 213 provided at the other end (upper end) of the body 211. The body 211 and the bottom 212 define a space for accommodating the powder M, and the lid 213 closes the other end of the body 211, thereby storing the accommodated powder M within the powder container 21. A fixed amount of powder M is dispensed from the dispensing mechanism 24 to the tray T based on a weighing detection value in the weighing unit 3. Hereinafter, the axial direction of the body 211 is referred to as the up-down direction. The powder container 21 of this embodiment is disposed so that the axial direction substantially coincides with the vertical direction and stands upright on a horizontal plane. The powder container 21 is attached to and detached from the holder 22 with the bottom 212 positioned downward.
[0019] The body 211 is formed in a cylindrical shape. The body 211 of this embodiment is formed of, for example, a transparent material. Therefore, the powder M contained in the body 211 can be seen from the outside of the body 211. This makes it possible to know the amount of powder M in the powder container 21 from the outside. The transparent material may cover the entire body 211, or may cover only a portion that serves as a viewing window.
[0020] The bottom portion 212 is formed with a dispensing opening 212a for dispensing the powder medicine M, and the powder medicine M is dispensed from the dispensing opening 212a.
[0021] The lid portion 213 is a portion that closes one end of the body portion 211. The lid portion 213 is attached to the body portion 211 so as to be rotatable about an axis that is parallel to the radial direction of the body portion 211.
[0022] (holding body) The holder 22 is a part that detachably holds the powder container 21. The holder 22 includes a holder main body 221 that holds the powder container 21, and a fixed portion 223 that is fixed to the moving mechanism 23. The holder 22 of this embodiment is configured to hold one powder container 21. Therefore, the number of holders 22 provided corresponds to the number of powder containers 21. In this embodiment, 14 holders 22 are provided. However, the holder 22 may be configured to hold a plurality of powder containers 21 together.
[0023] The holding body 221 has a communication opening 221a formed at a position corresponding to the dispensing outlet 212a of the powder container 21. As shown in Fig. 7, the powder M dispensed from the powder container 21 passes through the communication opening 221a and falls.
[0024] The fixed portion 223 is screwed to the moving mechanism 23 (described later), whereby the holder 22 is fixed to the moving mechanism 23 .
[0025] (moving mechanism) The moving mechanism 23 is a mechanism for moving the powder container 21 held by the holder 22. Specifically, the moving mechanism 23 moves the powder container 21 by moving the holder 22. The moving mechanism 23 moves multiple powder containers 21 in the horizontal direction. The moving mechanism 23 of this embodiment moves the holder 22 circularly within a horizontal plane. FIG. 5 shows a movement trajectory Q of the powder container 21. The moving mechanism 23 of this embodiment has a moving body 231 that moves the holder 22 and a movement drive unit 232 that drives the moving body 231. In addition, in order to detect the powder container 21 at the dispensing position P1 and the attachment / detachment position P2 described below, an RFID reader / writer 233 that can read and write information from an RFID tag 214 (see FIG. 7) provided on the powder container 21 is provided at a position corresponding to the RFID tag 214 of the powder container 21 at the dispensing position P1 and the attachment / detachment position P2.
[0026] 5 and 6, a dispensing position P1 for dispensing the powder from the powder container 21 is set on the moving path Q. Also, a detaching position P2 for attaching and detaching the powder container 21 to and from the holder 22 is set on the moving path Q. The detaching position P2 can be realized, for example, by ensuring space above the powder container 21 only at the detaching position P2, and by having the powder container 21 hooked on a ceiling portion within the housing 10 to make it undetachable in other portions.
[0027] The attachment / detachment position P2 is located at a different horizontal position from the dispensing position P1. In this embodiment, the attachment / detachment position P2 is a position closest to the dispensing position P1, where the powder containers 21 one to three away are held. The reason that the attachment / detachment position P2 is not located at the same position as the dispensing position P1 is that, because the tray T is located below the dispensing position P1, powder adhering to the attached / detached powder container 21 may fall, or the powder may fall from the holder 22 due to vibration during attachment / detachment, which may result in the powder being unintentionally mixed into the tray T. This positional relationship allows a powder container 21 that has run out of powder to be moved to the attachment / detachment position P2, removed from the holder 22, and quickly replenished with powder. Furthermore, after the powder has been replenished, the powder container 21 can be quickly moved to the dispensing outlet 212a. This shortens the time it takes for dispensing to resume after the powder container 21 has run out. However, if they are one position apart, when attaching or detaching the powder container 21 at the attachment / detachment position P2, the worker's hand or the powder container 21 being attached or detached may hit the powder container 21 at the dispensing position P1, which may cause the powder to fall unintentionally, so it is preferable that they are two or more positions apart.
[0028] In this embodiment, the moving mechanism 23 moves the holder 22 in a circular motion, so that the movement path Q of the powder container 21 is a circular path. The moving mechanism 23 can move the powder container 21 in both clockwise and counterclockwise directions as needed (for example, so that the movement distance to the dispensing position P1 is shorter). The movement path Q in this embodiment is elliptical. Therefore, the movement path Q, which is a circular path in this embodiment, is composed of a pair of straight paths Q1 along which the holder 22 moves in a straight line and a pair of curved paths Q2 along which the holder 22 moves while curving. The movement path Q, which is a circular path, is not limited to an elliptical shape and may be circular, elliptical, rectangular, or the like. Furthermore, the movement mechanism 23 is not limited to one that moves the holder 22 in a circular motion, but may also move the holder 22 back and forth in a linear or curved manner within a predetermined range.
[0029] In this embodiment, the weighing unit 3, tray standby unit 4, tray transport unit 5, and tray accumulation unit 6 are located below the front side range (front half range) of the movement track Q, respectively.
[0030] Hereinafter, one side of the pair of straight trajectories Q1 will be referred to as the front side, and the other side as the back side (depth side), and the direction in which the pair of straight trajectories Q1 face each other will be referred to as the depth direction (sometimes referred to as the front-rear direction). Furthermore, the direction in which the pair of curved trajectories Q2 face each other will be referred to as the width direction (sometimes referred to as the left-right direction). The dispensing position P1 is set within a range on the front side of the moving trajectory Q. Furthermore, the attachment / detachment position P2 is also set within a range on the front side of the moving trajectory Q. In this embodiment, the size of the casing 10 is determined in accordance with the length (size) of the moving trajectory Q of the powder container 21. That is, the depth direction length of the casing 10 is determined based on the opposing distance between the pair of straight trajectories Q1 on the moving trajectory Q of the powder container 21, and the width direction length of the casing 10 is determined based on the opposing distance between the pair of curved trajectories Q2.
[0031] The movable body 231 of this embodiment is configured as a belt whose surface is arranged along the vertical direction. The fixed portion 223 of the holder 22 is fixed to this belt. The movable body 231 is formed in an annular shape. The center of the annular belt is the center of rotation about which the holder 22 moves. The movable body 231 is formed in an elliptical shape. A movement path Q of the powder container 21 is formed along the circumferential direction of the movable body 231, and the holder 22 and the powder container 21 move around the outer periphery of the movable body 231. The movable body 231 is provided with fixing portions 231a for fixing the fixed portion 223 of the holder 22 at equal intervals in the circumferential direction.
[0032] The movement driving unit 232 moves the moving main body 231 in a circular motion. The movement driving unit 232 drives or stops the moving main body 231 based on a command from the control unit 9.
[0033] (Dispensing mechanism) Dispensing mechanism 24 is a mechanism for dispensing the powder from powder container 21 that has moved to a predetermined dispensing position P1 on movement trajectory Q of powder container 21. Dispensing mechanism 24 is configured to dispense a predetermined amount of powder to dispensing opening 212a.
[0034] The dispensing drive unit 241 is provided at the dispensing position P1 in the dispensing unit 2, and generates a driving force in the dispensing mechanism 24 when dispensing. Based on a command from the control unit 9, the dispensing drive unit 241 drives or stops driving the dispensing mechanism 24 in the connected state.
[0035] (table) Table 25 carries powder container 21, holder 22, moving mechanism 23, and dispensing mechanism 24. Table 25 is formed in a plate shape. Table 25 is formed in a rectangular shape having long and short sides corresponding to moving path Q of powder container 21. Moving path Q is set at approximately the center of table 25. Moving body 231 is installed on table 25 so that the longitudinal direction coincides with the direction in which moving body 231 extends. Moving body 231 is installed in the center of table 25. Table 25 is installed horizontally, and powder container 21 and holder 22 are arranged horizontally.
[0036] An opening 251 is formed in the table 25 at a position corresponding to the dispensing position P1 on the moving (circulating) trajectory of the powder container 21. That is, when the holder 22 and the powder container 21 are positioned at the dispensing position P1, the dispensing outlet 212a of the powder container 21, the communication port 221a of the holder 22, and the opening 251 of the table 25 are aligned in the vertical direction. This causes the powder in the powder container 21 to be dispensed.
[0037] Table 25 is provided with a shutter that is provided on the underside of table 25 and opens and closes opening 251 of table 25. The shutter in this embodiment is formed in a plate shape. The shutter may be arranged, for example, on the lower side of holding body 221. Note that the shutter on table 25 is not essential for dispensing unit 2 and may not be provided.
[0038] [Weighing section] The weighing unit 3 places a tray T that stores powder dispensed from the powder container 21 on it, and weighs the powder supplied to the tray T. The weighing unit 3 also weighs powder supplied to the tray T by the dispensing mechanism 24 without dispensing it from the powder container 21. The weighing unit 3 is located below the dispensing unit 2 and overlaps the dispensing unit 2 in the vertical direction. Specifically, the weighing unit 3 is disposed below the table 25. The weighing unit 3 in this embodiment is an electronic balance. The weighing detection value in the weighing unit 3 is sent to the control unit 9. The weighing detection value is displayed on a display unit included in the weighing unit (electronic balance) 3, and this display is visually confirmed by an operator when the powder is supplied to the tray T manually or otherwise without being dispensed from the powder container 21 by the dispensing mechanism 24.
[0039] The weighing unit 3 in this embodiment is configured to be movable in the depth direction. In an automatic weighing mode (first mode) described later, the weighing unit 3 is located at a first position S1 on the rear side (farther from the operator) in the depth direction, and in a manual weighing mode (second mode) described later, the weighing unit 3 can be located at a second position S2 on the front side (closer to the operator) in the depth direction. The weighing unit 3 is placed on a base 101 that is movable in the depth direction, and the weighing unit 3 moves as the base 101 moves. The base 101 is pulled out by the operator gripping a handle 102. However, a pull-out drive unit may be provided so that the base 101 is automatically pulled out when the mode is switched to the manual weighing mode.
[0040] Here, a lock unit 3a is provided on door 10b installed on the front side of weighing unit 3 in housing 10. In automatic weighing mode, lock unit 3a locks door 10b so that it cannot be opened, thereby holding weighing unit 3 immovable at first position S1 and preventing it from being moved to second position S2. Note that lock unit 3a can also be provided on stand 101, and configured so that lock unit 3a locks weighing unit 3 so that it cannot be moved in automatic weighing mode.
[0041] As shown in FIG. 5, the first position S1 is a position where the weighing unit 3 at least partially overlaps with the dispensing unit 2 (table 25) in the vertical direction. The first position S1 is set below the dispensing position P1. Therefore, the first position S1 is a position suitable for automatic weighing. The second position S2 is a position where the weighing unit 3 is forward of the dispensing unit 2 (table 25). At the second position S2, the space above the weighing unit 3 is open as a working space, and as will be described later, a space for performing manual weighing work in the manual weighing mode (second mode) is secured. Therefore, the second position S2 is a position suitable for manual weighing. As described above, it is sufficient that the first position S1 corresponds to the position during automatic weighing and the second position S2 corresponds to the position during manual weighing, so the first position S1 and the second position S2 are not limited to the positional relationship in the depth direction as in this embodiment, and various positions can be used. It can be a positional relationship.
[0042] [Tray standby section] The tray standby section 4 is a section that holds trays T before they are moved to the weighing section 3. The tray standby section 4 holds a plurality of trays T (nine in this embodiment, but not limited to this). The tray standby section 4 is configured to place a tray T on it and transport it so that the tray transport section 5 can grasp the tray T. At least a portion of the tray standby section 4 (a portion on the rear side in this embodiment) is located below the dispensing section 2 and overlaps with the dispensing section 2 in the vertical direction. The tray standby section 4 has a standby tray transport section 41 on which a tray T is placed and transported, and a standby drive section 42 for driving the standby tray transport section 41.
[0043] The waiting tray transfer section 41 is composed of a belt conveyor extending in a predetermined direction. In this embodiment, the waiting tray transfer section 41 extends in the depth direction. A plurality of trays T are lined up and stacked in the direction in which the waiting tray transfer section 41 extends (depth direction). FIG. 3 shows, as an example, three trays T lined up in the depth direction, with another tray T stacked on top of each other, resulting in a total of three stacked trays T (nine trays T). The waiting tray transfer section 41 in this embodiment is installed below the table 25 in the dispensing section 2. The waiting tray transfer section 41 is arranged so that more than half of the waiting tray transfer section 41 overlaps with the table 25 in the vertical direction in the depth direction. The waiting tray transfer section 41 moves from the front side to the rear side, and moves the placed tray T to the rear (rear) side in the depth direction, to below the transfer section main body 51 of the tray transfer section 5.
[0044] The standby drive unit 42 drives the standby tray transport unit 41. The standby drive unit 42 drives or stops the standby tray transport unit 41 based on a command from the control unit 9.
[0045] [Tray transfer section] The tray transfer unit 5 is a unit that transfers the tray T. The tray transfer unit 5 is configured to at least remove the tray T from the weighing unit 3 after weighing. Specifically, the tray transfer unit 5 is configured to move the tray T from the tray standby unit 4 to the weighing unit 3 prior to dispensing the powder, and to remove the tray T from the weighing unit 3 after dispensing the powder. Furthermore, the tray transfer unit 5 of this embodiment places the tray T on the tray accumulation unit 6 after removing it from the weighing unit 3. In this way, the tray transfer unit 5 is a unit that transfers the tray T in a series of steps from the tray standby unit 4 via the weighing unit 3 to the tray accumulation unit 6. The tray transfer unit 5 is positioned below the dispensing unit 2 and overlaps with the dispensing unit 2 in the vertical direction.
[0046] The tray transport unit 5 has a transport unit main body 51 for transporting the tray T, and a transport drive unit 52 for driving the transport unit main body 51.
[0047] The transfer unit main body 51 moves in the left-right direction (X direction) and the up-down direction (Y direction). The transfer unit main body 51 is configured to grip a tray T. The transfer unit main body 51 of this embodiment has a pair of arms 51a. The transfer unit main body 51 grips the tray T with the pair of arms 51a and transfers the tray T. The pair of arms 51a are spaced apart in the left-right direction and are configured to move towards and away from each other.
[0048] In a standby state in which the transfer unit main body 51 is not transferring a tray T, the transfer unit main body 51 is located above the tray standby unit 4. The position in the standby state is the standard position of the transfer unit main body 51. The transfer unit main body 51 is configured to be movable in the vertical and horizontal directions based on the standard position. In this embodiment, the transfer unit main body 51 does not move in the depth direction, but it can also be configured to be movable. When transferring a tray T placed on the tray standby unit 4 to the weighing unit 3, the transfer unit main body 51 moves downward (descends) from the standard position to grip the tray T, and then moves upward (rises) while gripping the tray T. The transfer unit main body 51 moves to the right in the horizontal direction (the right side in FIG. 3 ) via the standard position and stops above the weighing unit 3. Next, the transfer unit main body 51 moves downward to place the tray T on the weighing unit 3, releases the tray T after placement, and waits at the position where the tray T was released.
[0049] After the powder is dispensed onto the tray T, the transfer unit main body 51 grips the tray T containing the powder. Then, while gripping the tray T, it rises and continues to move to the right. The transfer unit main body 51 moves to above the tray accumulation unit 6 and descends at a predetermined position to place the tray T on the tray accumulation unit 6. After placing the tray T, the transfer unit main body 51 releases the tray T and moves upward. The transfer unit main body 51 then moves to the left (the left side in Figure 3) and returns to the standard position.
[0050] [Tray accumulation section] The tray accumulation section 6 is a post-weighing tray storage area where trays T containing weighed powders are placed. The trays T placed in the tray accumulation section 6 are removed by an operator and sent to the subsequent process (packaging device). The empty trays T after being sent to the subsequent process are cleaned by a suction device or the like to remove any remaining powders, and then returned to the tray standby section 4 by the operator.
[0051] The tray accumulating unit 6 is positioned below and overlaps the dispensing unit 2 (table 25). The tray accumulating unit 6 is configured to be able to place multiple trays T (three in this embodiment, but not limited to this). In this embodiment, as shown in FIGS. 1 and 2, three trays T are lined up in the left-right direction, with the two right trays T exposed to the front side, and these two trays T can be removed from the weighing device 1 by an operator. The tray accumulating unit 6 is configured to place and transport trays T. The tray accumulating unit 6 has an accumulation tray transfer unit 61 for placing and transporting trays T, and an accumulation drive unit 62 for driving the accumulation tray transfer unit 61.
[0052] The accumulation tray transfer section 61 is composed of a belt conveyor extending in a predetermined direction. In this embodiment, the accumulation tray transfer section 61 extends in the left-right direction. A plurality of trays T are arranged in the direction in which the accumulation tray transfer section 61 extends (left-right direction). FIG. 3 shows, as an example, three trays T arranged in the left-right direction (three trays T). In this embodiment, the accumulation tray transfer section 61 is installed below the table 25 in the dispensing section 2. The accumulation tray transfer section 61 is arranged so that substantially the entire area overlaps with the table 25 in the up-down direction. When the transfer section main body 51 places a tray T on the accumulation tray transfer section 61 and returns to the standard position, the accumulation tray transfer section 61 moves from left to right in the left-right direction, moving the placed tray T from left to right. As a result, the tray T moves to a position where it can be removed from the weighing device 1.
[0053] The accumulation drive unit 62 drives the accumulation tray transport unit 61. The accumulation drive unit 62 drives or stops the accumulation tray transport unit 61 based on a command from the control unit 9.
[0054] It is also possible for the tray transfer unit 5 to remove the tray T from the weighing unit 3 and then accumulate the tray T in the tray accumulation unit 6 for each supply instruction corresponding to the prescription information. To accommodate this, for example, as shown in Fig. 10, the accumulation tray transfer unit 61 can be configured to form parallel tray accumulation units 6X, 6Y consisting of multiple parallel belt conveyors, and to load the trays T separately onto each tray accumulation unit 6X, 6Y in accordance with the supply instructions. In this case, the tray transfer unit 5 is configured to be able to move the tray T above the belt conveyor corresponding to the tray accumulation unit 6X, 6Y. In other words, the tray transfer unit 5 functions as an allocation means that allocates multiple trays T for each supply instruction corresponding to the prescription information.
[0055] [Information writing section] The information writing unit 7 writes information for identifying the powder, such as prescription information for the powder stored in the tray T, to the information display unit T1 provided on the tray T. Writing is performed by a non-contact (wireless) power supply. Writing is performed in both the automatic weighing mode and the manual weighing mode, which will be described later. The prescription information for the stored powder is displayed on the information display unit T1. The information display unit T1 of the tray T will be described later. The information writing unit 7 is configured to be able to write an optically readable identifier to the information display unit T1. The information writing unit 7 is installed upstream of the weighing unit 3, and writes prescription information to the information display unit T1 before the tray T is placed on the weighing unit 3.
[0056] In this embodiment, the information writing unit 7 is disposed, for example, on the front side of the transport unit main body 51 positioned at the standard position (the position indicated by the two-dot chain line in FIG. 3 ). The information writing unit 7 writes prescription information to the information display unit T1 along the path along which the tray T moves from the tray standby unit 4 to the weighing unit 3. That is, the information writing unit 7 writes prescription information to the information display unit T1 before the powder medicine is supplied to the tray T. For example, the information writing unit 7 may write prescription information for the tray T that has been lifted by the transport unit main body 51 from the tray standby unit 4 and stopped at the standard position. However, this is not limiting, and the information writing unit 7 may write prescription information to the information display unit T1 before placing the tray T on the tray stacking unit 6. This prevents the operator from mistaking the tray T when removing it from the tray stacking unit 6. However, assuming that the manual weighing mode is to be executed, the information writing unit 7 needs to write prescription information to the information display unit T1 before placing the tray T on the weighing unit 3. This makes it possible to prevent the wrong powder from being supplied to the tray T when the powder is supplied manually or the like without being dispensed from the powder container 21 by the dispensing mechanism 24.
[0057] Furthermore, the information writing unit 7 can also write prescription information to the information display unit T1 after weighing in the weighing unit 3. In this case, the information to be written can include information about the actual supply (for example, the weighed value (actually measured value) or the fact that the amount of powder dispensed from the powder container does not reach the target amount) in addition to the prescription information. This makes it possible to alert the operator if there is a shortage of powder dispensed to the tray T, and to prevent the powder from being mistakenly sent to a subsequent process (such as packaging) without making up for the shortage.
[0058] [Device side display] The device display unit 8 is a section that displays predetermined information related to the supply of powder. As shown in FIGS. 1 and 2, the device display unit 8 is provided on the front side of the housing 10. In this embodiment, the device display unit 8 is a monitor. The device display unit 8 may also serve as an operation unit (operation panel) on which the operator performs predetermined operations.
[0059] [Control Unit] The control unit 9 controls the overall operation of the weighing device 1. Figure 8 shows the main components connected to the control unit 9. The control unit 9 switches between an automatic weighing mode, which is a first mode in which the dispensing mechanism 24 dispenses the powder from the powder container 21 while weighing it with the weighing unit 3, and a manual weighing mode, which is a second mode in which the weighing unit 3 weighs the powder placed in the tray T without dispensing the powder from the powder container 21 with the dispensing mechanism 24, depending on the target value of the powder amount related to the supply instruction input via the connected instruction input unit 9a. The supply instruction includes, for example, the type of powder to be dispensed by the dispensing mechanism 24, the supply amount and target supply value of each powder, etc. The instruction input unit 9a can take various forms, such as an input unit that receives prescription information from a host system installed in a dispensing pharmacy, a barcode reader, an RFID reader, a keyboard, or a touch panel.
[0060] In the automatic weighing mode, the control unit 9 drives the dispensing drive unit 241 to dispense the powder from the powder container 21. The control unit 9 controls the driving of the dispensing drive unit 241 in accordance with the weighing detection value input from the weighing unit 3, and dispenses the amount of powder according to the supply instruction. The following multiple patterns can be exemplified as control by the control unit 9 in this embodiment.
[0061] The control unit 9 can be set to the automatic weighing mode when the powder medicine related to the supply instruction is contained in the powder container 21, and can be set to the manual weighing mode when the powder medicine related to the supply instruction is not contained in the powder container 21. Specifically, when the powder medicine to be dispensed is drug A, the control unit 9 receives input of the powder medicine related to the supply instruction as drug A along with a target value for the amount of powder to be supplied. When drug A is contained in the powder container 21, the control unit 9 causes the dispensing mechanism 24 to dispense drug A (automatic weighing mode). On the other hand, when drug A is not contained in the powder container 21, the control unit 9 does not instruct the dispensing mechanism 24 to dispense and executes the manual weighing mode. In this embodiment, in the automatic weighing mode, the powder medicine is automatically weighed according to the target value for the amount of powder medicine related to the supply instruction. In the manual weighing mode, dispensing by the dispensing mechanism 24 is not performed. Therefore, for example, an operator transfers drug A from a powder bottle containing drug A to tray T and weighs it using the weighing unit 3.
[0062] Furthermore, control unit 9 can be configured to allow the operator to select whether to continue dispensing in the automatic weighing mode by refilling powder container 21 with powder and continue dispensing in the automatic weighing mode, or to switch to the manual weighing mode when there is a shortage of powder to be dispensed in the automatic weighing mode. That is, when powder container 21 is empty, or when it is predicted that the amount of powder in powder container 21 will be insufficient for the target value by the time dispensing is completed, the operator can select whether to refill powder container 21 with powder and continue automatic weighing (automatic weighing mode), or to manually weigh the amount of powder that is insufficient for the target value (manual weighing mode). The operator can make this selection, for example, on an operation panel (such as device display unit 8).
[0063] Here, the fact that the powder container 21 has become empty can be detected by the fact that there has been no change (specifically, an increase) in the weighing detection value for a certain period of time in the weighing unit 3. In addition, the shortage of the amount of powder in the powder container 21 can be predicted by comparing the target value of the amount of powder related to the supply instruction with the remaining amount of powder known before the start of dispensing.
[0064] Furthermore, when there is a shortage of powder to be dispensed in the automatic weighing mode, the control unit 9 can terminate the operation related to the automatic weighing mode and transition to the manual weighing mode. That is, the control unit 9 may automatically transition from the automatic weighing mode to the manual weighing mode without relying on the operator's judgment. In this case, the operator may be able to set in advance whether or not to cause the control unit 9 to perform the above control. The control unit 9 can display on the device-side display unit 8 the amount of powder that needs to be supplied to the tray T in the manual weighing mode. Specifically, the control unit 9 calculates the amount of powder that is insufficient from the detected weighing value of the powder contained in the tray T after the automatic weighing mode is terminated due to a shortage of powder and the target value for the amount of powder to be supplied to the tray T, and displays the amount of powder that is insufficient on the device-side display unit 8. This allows the operator to simply supply the displayed amount of powder to the tray T when the mode is switched to the second mode, facilitating manual weighing operations. In addition, the device side display unit 8 may not display the amount of powder that is lacking, but may instead display the weighed value of the powder contained in tray T and the target amount of powder that should be supplied to tray T, as long as the display allows the operator to understand the amount of powder that is lacking.
[0065] Furthermore, when the multiple types of powders related to the supply instruction include powders that are contained in any of the multiple powder containers 21 and powders that are not, the control unit 9 can be configured to allow the operator to select whether to first switch to the automatic weighing mode and then the manual weighing mode, or to first switch to the manual weighing mode and then the automatic weighing mode. The control unit 9 can also switch to the automatic weighing mode and then the manual weighing mode without the above selection. Furthermore, the control unit 9 can also switch to the manual weighing mode before the automatic weighing mode and then switch to the automatic weighing mode after the manual weighing mode has ended without the above selection.
[0066] In addition, when the control unit 9 is instructed to execute the manual weighing mode while the automatic weighing mode is being executed when dispensing multiple types of powder, it can interrupt the automatic weighing mode and switch to the manual weighing mode once the dispensing of the powder currently being executed is completed.
[0067] In the automatic weighing mode, the control unit 9 of this embodiment activates the lock unit 3a to prevent the opening of, for example, the door 10b located in front of the weighing unit 3. In addition, the control unit 9 releases the activation of the lock unit 3a in the manual weighing mode.
[0068] The control unit 9 moves the powder container 21 to the dispensing position P1, and then the tray transfer unit 5 moves the tray T from the tray standby unit 4 to the weighing unit 3. That is, the control unit 9 controls the powder container 21 not to pass through the dispensing position P1 while the tray T is placed on the weighing unit 3.
[0069] When table 25 is equipped with a shutter, control unit 9 closes the shutter of table 25 while moving mechanism 23 is moving multiple powder containers 21, and opens the shutter after tray transport unit 5 moves tray T to weighing unit 3. Control unit 9 also opens the shutter before dispensing powder from powder container 21. Specifically, control unit 9 opens the shutter after tray T is placed on weighing unit 3 and after zero adjustment (tare subtraction) of weighing unit 3.
[0070] [Case] Housing 10 is configured to enclose dispensing unit 2, weighing unit 3, tray standby unit 4, tray transport unit 5, tray accumulation unit 6, information writing unit 7, device-side display unit 8, and control unit 9. As shown in FIGS. 1 and 2, housing 10 is formed with an attachment / detachment window 10a for attaching and detaching powder container 21 at a position corresponding to attachment / detachment position P2 of powder container 21. Housing 10 also has a door 10b installed on the front side of weighing unit 3 (FIGS. 1 and 2 show door 10b in an open state). In the manual weighing mode, an operator opens door 10b and pulls out weighing unit 3 to second position S2 to perform manual weighing. In addition to the above-mentioned components, housing 10 can be provided with various mechanisms to support tasks required for supplying powder, such as a journal printer for printing prescription information for the supplied powder and information regarding the supply result, and a barcode reader for managing powder container 21.
[0071] [Tray] The tray T used in the weighing device 1 of this embodiment is for containing the supplied powder. This tray T is shaped so that it can be placed on the weighing unit 3 to weigh the supplied powder and can be transported by the tray transport unit 5, and in this embodiment, as shown in FIG. 9, it is formed in a flat, approximately rectangular parallelepiped shape with an open top. It is preferable that multiple trays T be shaped so that they can be stacked one on top of the other, as shown in FIG. 3. In addition, this tray T has side protrusions T2 that can engage with a pair of arms 51a of the tray transport unit 5 or on which an operator can place their fingers.
[0072] As shown in FIG. 9 , the tray T includes an information display unit T1 that displays prescription information for the powder medicine contained therein. The information display unit T1 is provided on one of the four side surfaces. The information display unit T1 of this embodiment is configured to be attached by inserting it into the main body of the tray T as shown in the figure, but it can also be attached to the side surface of the tray T, for example. In this embodiment, a display unit equipped with electronic paper is used as the information display unit T1. Electronic paper can retain displayed content without requiring power, which contributes to energy conservation compared to, for example, LCD displays. Furthermore, the information displayed on the information display unit T1 can be rewritten by the information writing unit 7. Furthermore, the information display unit T1 of this embodiment is configured so that the display written by the information writing unit 7 is retained until the next time the information writing unit 7 writes information. Note that the information display unit T1 can also be configured so that an identifier displayed on the information display unit T1 is read by a downstream device (such as a packaging device) and the display on the information display unit T1, including the identifier, is erased.
[0073] Various information can be displayed on the information display unit T1. For example, as shown in FIG. 9, prescription information can include a reception number J1, reception date and time J2, patient name J3, age J4, drug name J5, drug type designation J6, weighed value J7, barcode J8, and RP number J9. The prescription information also includes information such as patient information (patient name, patient ID, patient's date of birth, patient's age), drug information (drug name, drug code, dosage), dosage information (dosage, dosage code), medication information (oral, topical, etc.), consultation type (outpatient, inpatient, etc.), and prescription issuance date and time. The reception number J1 is a number assigned to each prescription when a host system installed in a dispensing pharmacy receives the prescription information from a higher-level computer such as a prescription ordering system. The reception date and time J2 is the date and time the prescription information was received by the host system. In order to assign dispensing instructions to each dispensing device based on the prescription information received from the host computer, the host system classifies the prescription information according to specific conditions such as drug type, dosage, and time of administration, and assigns an RP number (RP1, RP2, etc.) to each grouped piece of data. Furthermore, information necessary for operating each dispensing device (e.g., patient name, patient ID, patient date of birth, patient age, drug name, drug code, dosage, dosage, dosage code) is extracted from the prescription information received from the host system. The host system then associates and stores the reception number and reception date / time with the RP number of each grouped piece of data and the extracted prescription information corresponding to each piece of data, generating dispensing information for operating each dispensing device. The control unit 9 acquires the dispensing information and issues supply instructions based on the acquired dispensing information.
[0074] The display corresponding to the barcode J8 may be an optically readable identifier such as a two-dimensional code, in addition to the illustrated barcode (one-dimensional code). The identifier stores information specific to each dispensing information item generated by the host system. The identifier has the advantage of being easily readable by a reading device such as a barcode reader, facilitating mechanical processing in subsequent processes. For example, by reading the identifier with a reading device, dispensing information stored in the host system can be retrieved, allowing a system to be constructed in which the dispensing information can be automatically input from the host system to the packaging device. Furthermore, an electrically readable identifier such as an RFID tag can be provided on the information display unit T1 instead of or in addition to the optically readable identifier.
[0075] [Instructions for use] A method for using the weighing device 1 according to this embodiment configured as described above will now be outlined. Note that the following method of use is merely an example and is not limited to this. Prior to use, an operator places powder in each of the multiple powder containers 21. At this time, different types of powder can be placed in each powder container 21, or the same type of powder can be placed in two or more powder containers 21. Next, the operator attaches the powder container 21 containing the powder to the holder 22 at the attachment / detachment position P2.
[0076] Next, prescription information is input to the weighing device 1 via the instruction input unit 9a. Then, the control unit 9 controls the tray transport unit 5 to move the tray T in the tray standby unit 4 to the weighing unit 3, and also operates the moving mechanism 23 to move the holder 22 in a circular movement. The control unit 9 operates the information writing unit 7 for the tray T during the movement to write the prescription information on the information display unit T1 provided on the tray T. When the powder container 21 containing the powder to be dispensed reaches the dispensing position P1, the control unit 9 stops the moving mechanism 23. When the powder container 21 containing the powder to be dispensed is positioned at the dispensing position P1, the control unit 9 moves the tray T to the weighing unit 3.
[0077] Next, the control unit 9 starts dispensing the powder by operating the dispensing mechanism 24. The control unit 9 controls the dispensing mechanism 24 based on the weighing detection value sent from the weighing unit 3, and stops driving the dispensing mechanism 24 when the amount of powder corresponding to the prescription information is supplied to the tray T.
[0078] Next, the control unit 9 controls the tray transfer unit 5 to move the tray T supplied with the powder from the weighing unit 3 to the tray accumulation unit 6. The worker holds the tray T that has been moved to the tray accumulation unit 6 by hand and places it into a packaging device or the like.
[0079] The above description is for the method of use in the automatic weighing mode. In the manual weighing mode, as in the automatic weighing mode, the tray T in the tray waiting section 4 is moved to the weighing section, and during the movement, the information writing section 7 is activated to write prescription information to the information display section T1 provided on the tray T. When the tray T is moved to the weighing section, the control section 9 unlocks the lock section 3a, which allows the door 10b to be opened. The operator opens the door 10b, grasps the handle 102, and pulls out the weighing section 3 together with the stand 101 to the second position S2. The operator may place the tray T on the weighing section 3 without having the tray transport section 5 move the tray T to the weighing section 3. In this case, the operator operates the device-side display section 8, for example, which causes the control section 9 to unlock the lock section 3a. After the weighing section is pulled out to the second position S2, the powder medicine is supplied from the powder bottle to the tray T. The operator adjusts the supply amount to correspond to the prescription information while visually checking the weighing detection value displayed on the display unit of the weighing unit 3. The operator removes the tray T supplied with the powder from the weighing unit 3 and places it in a packaging device or the like. Alternatively, after supplying the powder to the tray T, the weighing unit may be returned to the first position S1, and the control unit 9 may control the tray transfer unit 5 to move the tray T supplied with the powder from the weighing unit 3 to the tray accumulation unit 6, as in the automatic weighing mode.
[0080] [Summary of the embodiment] Combinations of the configurations in the weighing device 1 according to the above-described embodiment and the effects that can be expected from the combinations of the configurations will be described below in first to fifth embodiments.
[0081] (First embodiment) The weighing device 1 of the first embodiment has a powder container 21 that can hold powder, and is equipped with a dispensing unit 2 that dispenses the powder from the powder container 21, a weighing unit 3 that places a tray T that receives the powder dispensed from the powder container 21 and weighs the powder dispensed onto the tray T, a tray transfer unit 5 that removes the tray T from the weighing unit 3 after weighing, and a tray accumulation unit 6 that places a plurality of trays T that contain the weighed powder.
[0082] According to the above configuration, by placing multiple trays T containing powder in the tray stacking unit 6, the trays T are temporarily retained in the tray stacking unit 6. Therefore, while the tray T is placed in the tray stacking unit 6, powder can be supplied to the next tray, eliminating the need to remove the tray T containing powder from the weighing device 1 each time powder is supplied. Furthermore, since the next powder to be packaged can be weighed even before packaging is completed, the operating rate of the weighing device is not reduced. Compared to a configuration in which post-processing such as packaging is performed immediately after weighing, an operator can use another dispensing device such as a packaging device to dispense powder contained in any of the multiple trays T, thereby increasing the flexibility of post-processing after weighing. Furthermore, multiple types of powder can be weighed in advance, and each powder can be packaged in parallel using multiple packaging devices.
[0083] The weighing device 1 also includes an information writing unit 7 that writes information for identifying the powder medicine contained in the tray T onto an information display unit T1 provided on the tray T.
[0084] According to the above configuration, the information display unit provided on the tray T displays information for identifying the powder contained in the tray, thereby preventing an operator from picking up the wrong tray T. This also prevents an operator from supplying the wrong powder to a packaging device or the like in a subsequent process. This also prevents an operator from supplying the wrong powder to the tray T manually, without dispensing it from the powder container 21 by the dispensing unit 2.
[0085] Furthermore, the information writing unit 7 writes an optically readable identifier into the information display unit T1.
[0086] According to the above configuration, the information writing unit 7 writes an optically readable identifier to the information display unit T1. Therefore, by providing the dispensing device with a device for reading the identifier, the powder medicine contained in the tray T can be identified in the dispensing device.
[0087] Moreover, electronic paper is used as the information display unit T1.
[0088] According to the above configuration, the content displayed on the information display unit T1 can be maintained without requiring power. Also, the information writing unit 7 can rewrite the information displayed on the information display unit T1.
[0089] The tray transfer unit 5 removes the tray T from the weighing unit 3, and then accumulates the tray T in the tray accumulation unit 6 for each supply instruction corresponding to the prescription information.
[0090] According to the above configuration, the trays are collected and accumulated in the tray accumulation section for each supply instruction corresponding to the prescription information, so that the operator is less likely to get confused as to which tray T corresponds to which supply instruction.
[0091] As described above, according to the first embodiment, there is no need to remove the tray T containing the powder from the weighing device 1 every time the powder is supplied, and the next powder to be packaged can be weighed even if packaging is not completed, so the operating rate of the weighing device 1 is not reduced. Also, the degree of freedom in post-processing after weighing can be increased. Furthermore, multiple types of powder can be packaged in parallel, for example, using multiple packaging devices. Therefore, it is possible to provide a weighing device 1 that is easy to use and can efficiently weigh powder.
[0092] (Second embodiment) The weighing device 1 of the second embodiment includes a dispensing unit 2 having a plurality of powder containers 21 each capable of containing a powder and having a dispensing outlet 212a, a moving mechanism 23 for moving the plurality of powder containers 21, and a dispensing mechanism 24 for dispensing powder from the powder containers 21 that have moved to a predetermined dispensing position P1 on a movement path Q of the plurality of powder containers 21; a weighing unit 3 on which a tray T for receiving powder dispensed from the powder containers 21 is placed and which weighs the powder dispensed onto the tray T; The dispensing unit 2 is provided with a tray waiting unit 4 that holds a number of the trays T, a tray transfer unit 5 that moves the trays T from the tray waiting unit 4 to the weighing unit 3 and removes the trays T from the weighing unit 3 after dispensing, and a post-weighing tray storage area 6 on which the trays T containing weighed powder are placed, and the plurality of powder containers 21 are arranged horizontally in the dispensing unit 2, and the tray waiting unit 4, tray transfer unit 5, weighing unit 3, and post-weighing tray storage area 6 are each positioned overlapping below the dispensing unit 2.
[0093] According to the above configuration, multiple powder containers 21 are arranged horizontally in dispensing unit 2, and tray standby unit 4, tray transfer unit 5, weighing unit 3, and post-weighing tray storage area 6 are each positioned below dispensing unit 2, overlapping each other. This makes it possible to effectively utilize the space below dispensing unit 2. Therefore, the components within the device can be arranged three-dimensionally, allowing the device to be made small in both width and depth directions, and to be placed in a narrow space.
[0094] In addition, in the tray standby section 4, a plurality of trays T are arranged in the depth direction.
[0095] According to the above configuration, the trays T on the tray standby section 4 are arranged in the depth direction, so that the number of trays that can be held on the tray standby section 4 can be increased without increasing the width dimension of the apparatus.
[0096] In addition, the post-weighing tray storage area 6 is a tray accumulation section 6 on which multiple trays T containing weighed powder are placed, and the tray accumulation section 6 is positioned below and overlaps the dispensing section 2.
[0097] According to the above configuration, the tray accumulation section 6 on which multiple trays T are placed is positioned below the dispensing section 2, so that multiple trays T after weighing can be placed in the space below the dispensing section 2. Therefore, even when multiple trays T are placed in the post-weighing tray storage area 6, multiple trays T can be accumulated while the device remains compact, without expanding the device in the width direction or depth direction.
[0098] In addition, the dispensing section 2 has a plurality of holders 22 that detachably hold the plurality of powder containers 21, and the plurality of holders 22 are configured to revolve on a circular orbit Q that extends from the front side to the back side.
[0099] According to the above configuration, the holder 22 is configured to revolve on the circular path Q that extends from the front side to the rear side, so that the movement paths Q on the front side and the rear side can overlap when viewed from the front. This allows the weighing device 1 to be configured to be small in the width direction.
[0100] The tray standby section 4, the tray transfer section 5, the weighing section 3, and the post-weighing tray storage area 6 are located below the front side range of the circular orbit Q, respectively.
[0101] According to the above configuration, the tray waiting section 4, tray transfer section 5, weighing section 3, and post-weighing tray storage area 6 are located below the front side range of the circular track Q, making it easy for workers to access each section from the front side where they work, and making it easy to manually dispense or remove the trays T after weighing.
[0102] As described above, according to the second embodiment, the components within the device can be arranged three-dimensionally, so that the device can be made small in both width and depth directions and can be placed in a narrow space. Therefore, it is possible to provide a weighing device 1 that can be installed in a narrow installation location.
[0103] (Third embodiment) The weighing device 1 of the third embodiment includes a dispensing unit 2 having a plurality of powder containers 21 each capable of containing a powder and having a dispensing outlet 212a, a plurality of holders 22 for detachably holding the plurality of powder containers 21, a moving mechanism 23 for moving the plurality of powder containers 21 held by the holders 22, and a dispensing mechanism 24 for dispensing powder from the powder containers 21 that have moved to a predetermined dispensing position P1 on a movement path Q of the plurality of powder containers 21, and a tray T for receiving the powder dispensed from the powder containers 21, which is located below the dispensing position P1. and a weighing unit 3 that places the powder container 21 on the tray T and weighs the powder dispensed onto the tray T, the plurality of powder containers 21 are arranged horizontally in the dispensing unit 2, the moving mechanism 23 moves the plurality of powder containers 21 horizontally, the powder containers 21 are moved to the dispensing position P1 by the moving mechanism 23, the powder dispensed by the dispensing mechanism 24 falls and is contained in the tray T placed on the weighing unit 3, and an attachment / detachment position P2 at which the powder container 21 can be attached to and detached from the holder 22 is provided at a position horizontally different from the dispensing position P1.
[0104] According to the above configuration, the position where the powder is dispensed from powder container 21 and the position where powder container 21 is attached to or detached from holder 22 are set at different positions in the horizontal direction, so that tray T is not positioned below powder container 21 when powder container 21 is attached or detached. This prevents powder adhering to dispensing opening 212a of powder container 21 or holder 22 from accidentally falling onto weighing unit 3 or tray T placed on weighing unit 3.
[0105] The plurality of holders 22 are configured to revolve on an orbit Q extending from the front side to the rear side, and the attachment / detachment position P2 is located in the range of the orbit Q on the front side.
[0106] According to the above configuration, the attachment / detachment position P2 is located on the front side of the orbit Q, so that the worker can easily access the powder container 21 from the front side where the worker works, and attachment / detachment workability is good.
[0107] Furthermore, when the dispensing position P1 is used as a reference, the attachment / detachment position P2 may be located on the holder 22 that is one to three positions away.
[0108] According to the above configuration, the attachment / detachment position P2 is set at the location where the next to third adjacent holder 22 is located when the dispensing position P1 is used as the reference position, so that the powder container 21 can be quickly moved from the dispensing position P1 to the attachment / detachment position P2, and further, after the powder container 21 is attached at the attachment / detachment position P2, the powder container 21 can be quickly moved to the dispensing position P1, so that the time required for attaching and detaching the powder container 21 can be shortened.
[0109] As described above, according to the third embodiment, it is possible to prevent powder remaining in the dispensing outlet 212a or holder 22 of the powder container 21 to be attached or detached from accidentally dropping onto the weighing unit 3 or the tray T placed on the weighing unit 3. Therefore, it is possible to prevent different types of powder from being mixed together (cross-contamination), and it is possible to provide a safe weighing device 1.
[0110] (Fourth embodiment) The weighing device 1 of the fourth embodiment has a powder container 21 that can hold powder, and is equipped with a dispensing unit 2 that dispenses the powder from the powder container 21, a weighing unit 3 that places a tray T that receives the powder dispensed from the powder container 21 and weighs the powder dispensed onto the tray T, and a control unit 9 that controls the operation of the entire device, and the control unit 9 can switch between an automatic weighing mode (first mode) in which the weighing unit 3 weighs the powder when dispensing the powder from the powder container 21, and the weighing unit 3 weighs the powder put into the tray T, depending on the target value of the powder amount related to the input supply instruction, and a manual weighing mode (second mode) in which the weighing unit 3 weighs the powder put into the tray T without dispensing the powder from the powder container 21 by the dispensing unit 2.
[0111] According to the above configuration, it is possible to switch between automatic weighing mode (first mode) and manual weighing mode (second mode), so that when supplying powder that is not contained in the powder container 21 and cannot be dispensed in the automatic weighing mode (first mode) (including cases where it cannot be dispensed due to insufficient remaining amount), it is possible to switch to the manual weighing mode (second mode) and weigh the desired powder.
[0112] In addition, the control unit 9 switches to the automatic weighing mode (first mode) if the powder related to the supply instruction is a powder contained in the powder container 21, and switches to the manual weighing mode (second mode) if the powder is not contained in the powder container 21.
[0113] According to the above configuration, even if the powder container 21 does not contain the powder related to the supply instruction, by operating in the manual weighing mode (second mode), it is possible to weigh powder that is not prepared in the dispensing section 2.
[0114] In addition, when there is a shortage of powder to be dispensed in the automatic weighing mode (first mode), the control unit 9 allows the operator to select whether to refill the powder container 21 with powder and continue dispensing in the automatic weighing mode (first mode), or to switch to the manual weighing mode (second mode).
[0115] According to the above configuration, the powder container 21 can be replenished with powder during dispensing to continue the dispensing. Also, the powder can be weighed manually without refilling the powder container 21. In this way, it is up to the operator to decide whether to perform dispensing in the automatic weighing mode (first mode) or the manual weighing mode (second mode), which increases the degree of freedom in the work.
[0116] In addition, when there is a shortage of powder to be dispensed in the automatic weighing mode (first mode), the control unit 9 terminates the operation related to the automatic weighing mode (first mode) and transitions to the manual weighing mode (second mode).
[0117] According to the above configuration, when there is a shortage of powder medicine to be dispensed in the automatic weighing mode (first mode), the mode is automatically switched to the manual weighing mode (second mode), thereby simplifying the operation.
[0118] In addition, the weighing device 1 further includes an apparatus-side display unit 8, and the control unit 9 causes the apparatus-side display unit 8 to display the amount of powder that needs to be added to the tray in the manual weighing mode (second mode).
[0119] According to the above configuration, the amount of powder that needs to be added to the tray T in the manual weighing mode (second mode) can be displayed on the device side display unit 8, allowing the operator to know the amount of powder that is missing as powder to be supplied to the tray T, thereby reducing the burden of manual weighing work.
[0120] In addition, the dispensing unit has a plurality of powder containers 21, each of which contains powder by type, and when the plurality of types of powder related to the supply instruction include powder that is contained in one of the plurality of powder containers 21 and powder that is not, the control unit 9 can select whether to first switch to the automatic weighing mode (first mode) and then to the manual weighing mode (second mode), or to first switch to the manual weighing mode (second mode) and then to the automatic weighing mode (first mode).
[0121] According to the above configuration, by selecting the manual weighing mode (second mode) after the automatic weighing mode (first mode), the operator can proceed with preparations for the manual weighing mode (second mode) while the automatic weighing mode (first mode) is being executed. Alternatively, by selecting the automatic weighing mode (first mode) after the manual weighing mode (second mode), the manual weighing mode (second mode) can be manually completed first, and therefore, while the automatic weighing mode (first mode) is being executed thereafter, the operator does not need to wait until the automatic weighing mode (first mode) is completed.
[0122] In addition, the dispensing unit has a plurality of powder containers 21, each of which contains powder by type, and if the plurality of types of powder related to the supply instruction include powder that is contained in one of the plurality of powder containers 21 and powder that is not, the control unit 9 first switches to the automatic weighing mode (first mode) and then to the manual weighing mode (second mode).
[0123] According to the above configuration, the time while the automatic weighing mode (first mode) is being performed (during automatic dispensing) can be used to prepare for manual work required in the manual weighing mode (second mode), for example. Therefore, after the automatic weighing mode (first mode) ends, the mode can be immediately switched to the manual weighing mode (second mode), allowing for efficient weighing.
[0124] In addition, when the control unit 9 is instructed to execute the manual weighing mode (second mode) while executing the automatic weighing mode (first mode) when dispensing multiple types of powder, once the dispensing of the powder being executed is completed, it interrupts the automatic weighing mode (first mode) and transitions to the manual weighing mode (second mode).
[0125] According to the above configuration, for example, when it is desired to manually supply powder that urgently needs to be dispensed, the automatic weighing mode (first mode) can be interrupted and the powder can be supplied manually. Also, when the operator has free time during automatic supply in the automatic weighing mode (first mode), the powder can be supplied manually. In this way, even when the automatic weighing mode (first mode) is being executed, the mode can be switched to the manual weighing mode (second mode) at a desired timing, allowing for flexible response to the operator's work situation.
[0126] In addition, the dispensing unit 2 has a plurality of powder containers 21, each of which contains powders sorted by type, and if the plurality of types of powders related to the supply instruction include some powders that are contained in one of the plurality of powder containers 21 and some that are not, the control unit 9 switches to the manual weighing mode (second mode) prior to the automatic weighing mode (first mode), and switches to the automatic weighing mode (first mode) after the manual weighing mode (second mode) is completed.
[0127] According to the above configuration, the manual weighing mode (second mode) can be manually completed first, so that the operator does not need to wait until the automatic weighing mode (first mode) is completed while the subsequent automatic weighing mode (first mode) is being executed.
[0128] The weighing device 1 also includes an information writing unit 7 that is provided on the tray T and writes prescription information for the powder medicine contained therein to an information display unit T1 that displays the prescription information for the powder medicine before weighing in the weighing unit 3 begins.
[0129] According to the above configuration, the information display unit T1 is displayed before weighing begins in the weighing unit 3, so there is no risk of making a mistake in the powder supplied manually, and the tray T can then be sent to the next process immediately and without error.
[0130] Moreover, the display on the information display section T1 is maintained until the next writing by the information writing section 7.
[0131] According to the above configuration, it is possible to know the powder medicine contained in the tray T at the time of the previous supply, and this can be used as an indicator for cleaning the tray T.
[0132] In addition, the weighing unit 3 is configured to be movable and is provided with a locking unit 3a that prevents the weighing unit 3 from moving in the automatic weighing mode (first mode), and the control unit 9 releases the locking unit 3a in the manual weighing mode (second mode).
[0133] According to the above configuration, even if an operator accidentally tries to use the weighing unit 3 while automatic supply is being performed in the automatic weighing mode (first mode), the locking unit 3a prevents the weighing unit 3 from moving, thereby preventing the automatic weighing mode (first mode) from being interrupted. Also, in the manual weighing mode (second mode), the weighing unit 3 can be moved to the working position.
[0134] In addition, the weighing unit 3 is configured to be movable, and the control unit 9 positions the weighing unit 3 below the dispensing position P1, which is the position where the powder is dispensed from the powder container 21, during the automatic weighing mode (first mode), and moves the weighing unit 3 to a position where a working space can be secured for manually adding the powder during the manual weighing mode (second mode).
[0135] According to the above configuration, during the automatic weighing mode (first mode), the weighing unit 3 cannot be moved from a location below the dispensing position P1 that is difficult for the worker to reach, thereby preventing the worker from accidentally moving the weighing unit 3 during the automatic weighing mode (first mode), and during the manual weighing mode (second mode), the weighing unit 3 can be moved to a position where work space can be secured, making it easier for the worker to work.
[0136] As described above, according to the fourth embodiment, when dispensing powder that is not contained in the powder container 21 and cannot be dispensed in the automatic weighing mode (first mode) (including when the remaining amount is insufficient), the mode can be switched to the manual weighing mode (second mode) to weigh the desired powder. Therefore, it is possible to provide a weighing device that can efficiently prepare powder in accordance with a supply instruction.
[0137] (Fifth embodiment) The weighing device 1 of the fifth embodiment includes a dispensing unit 2 having a plurality of powder containers 21 each capable of containing a powder and having a dispensing outlet 212a, a moving mechanism 23 for moving the plurality of powder containers 21, and a dispensing mechanism 24 for dispensing the powder from the powder containers 21 that have moved to a predetermined dispensing position P1 on a movement path Q of the plurality of powder containers 21, a weighing unit 3 located below the dispensing position P1 and on which a tray T for receiving the powder dispensed from the powder containers 21 is placed and which weighs the powder dispensed onto the tray T, and a weighing unit 3 for holding the plurality of trays T before being moved to the weighing unit 3. The apparatus is provided with a tray waiting section 4 for holding a tray T, a tray transport section 5 for moving the tray T from the tray waiting section 4 to the weighing section 3 and removing the tray T from the weighing section 3 after dispensing, and a control section 9 for controlling the operation of the entire apparatus, wherein the powder container 21 is moved to the dispensing position P1 by the moving mechanism 23, the powder dispensed by the dispensing mechanism 24 falls and is contained in the tray T placed on the weighing section 3, the control section 9 moves the powder container 21 to the dispensing position P1, and then the tray transport section 5 moves the tray T from the tray waiting section 4 to the weighing section 3.
[0138] According to the above configuration, the control unit 9 moves the powder container 21 to the dispensing position P1, and then the tray transfer unit 5 moves the tray T from the tray standby unit 4 to the weighing unit 3. Therefore, when the powder container 21 containing the powder not to be dispensed passes above the tray T, even if the powder adhering to the dispensing outlet 212a of the powder container 21 and its surrounding area falls, the tray T is not placed below the dispensing outlet 212a, so that the fallen powder can be prevented from entering the tray T. Thus, according to the above configuration, cross-contamination caused by the powder not to be dispensed being stored in the tray T can be prevented.
[0139] The device further includes a shutter located between the dispensing unit 2 and the weighing unit 3 to prevent powder from falling from the powder container 21 moving above the weighing unit 3 onto the weighing unit 3, and the control unit 9 closes the shutter while the moving mechanism 23 is moving the multiple powder containers 21, and opens the shutter after the tray transport unit 5 moves the tray T to the weighing unit 3.
[0140] According to the above configuration, the control unit 9 closes the shutter while the moving mechanism 23 is moving the plurality of powder containers 21, and opens the shutter after the tray transport unit 5 moves the tray T to the weighing unit 3. Therefore, the shutter can be kept closed until the tray T is placed on the weighing unit 3, and powder that is not to be dispensed can be prevented from falling onto the weighing unit 3 or the tray T.
[0141] Furthermore, after the tray T is placed on the weighing unit 3 and after zero adjustment of the weighing unit 3, the control unit 9 opens the shutter to dispense the powder from the powder container.
[0142] According to the above configuration, the shutter is opened after the weighing unit 3 is zero-adjusted, so that the powder can be weighed accurately.
[0143] As described above, according to the fifth embodiment, it is possible to prevent cross-contamination caused by powder medicines that are not to be dispensed being stored in the tray T. Therefore, it is possible to prevent different types of powder medicines from being mixed together (cross-contamination), and it is possible to provide a safe weighing device.
[0144] [Possibility of change of embodiment] It should be noted that the weighing device 1 of the present invention is not limited to the above-described embodiment, and various modifications can be made without departing from the spirit of the present invention. In other words, even configurations not explicitly stated in the above-described embodiment can be modified within the scope of the present invention as long as they have the same effect as the explicitly stated configurations, and the fact that such configurations are not explicitly stated does not mean that they are intentionally excluded.
[0145] For example, the tray stacking unit 6 may be provided with a display corresponding to each section where a tray T is placed. In this case, for example, when packaging information is called up by a packaging device in a subsequent process, the corresponding display may be configured to display. For example, an LED lamp may be used as the display. This configuration is advantageous in that it allows the operator to recognize the section on the tray stacking unit 6 that corresponds to the packaging information, and easily identify the tray T required for packaging.
[0146] Furthermore, the weighing unit 3 may be provided with two units: a first weighing unit that weighs the powder dispensed from the powder container 21 onto the tray T, and a second weighing unit that weighs the powder manually placed onto the tray. In this case, the tray transfer unit 5 may be configured to distribute the tray T to the first weighing unit or the second weighing unit depending on whether the mode is automatic or manual.
[0147] Furthermore, with regard to the control unit 9, when multiple supply instructions are input to the weighing device 1 and the multiple supply instructions include an instruction to dispense the same type of powder, the control unit 9 can also set the order so that the same powder is dispensed consecutively. This makes it possible to shorten the overall dispensing time corresponding to the multiple supply instructions.
[0148] Furthermore, the control unit 9 can also determine whether to use the automatic weighing mode or the manual weighing mode depending on the information on the type of powder included in the supply instruction. For example, with regard to controlled drugs (poisons, powerful drugs, narcotics, psychotropic drugs, etc.), if cross-contamination occurs, serious adverse effects may occur, so if information on controlled drugs is included in the supply instruction, the controlled drugs can be dispensed manually.
[0149] Furthermore, the control unit 9 can be configured to be provided with a camera capable of photographing the display unit of the weighing unit (electronic balance) 3, and to confirm whether the display information of the weighing detection value in the weighing unit 3 obtained by the camera matches the weighing value J7 displayed on the information display unit T1 of the tray T.
[0150] Furthermore, in the above embodiment, the tray T is described as using electronic paper as the information display unit T1, but this is not limited to this. For example, various display means such as an LCD screen can be used. Furthermore, although it is less convenient, a printable sheet such as paper can be used as the information display unit T1 and a printer can be used as the information writing unit 7.
[0151] Furthermore, with regard to the trays T, unique identification information can be attached to each tray. In this case, the control unit 9 can store the correspondence between a specific tray T and the powder contained in that tray T, and fix the powder contained in that tray T. This can prevent cross-contamination due to the possibility that a different type of powder remains on the tray T.
[0152] Furthermore, multiple trays T with different capacities can be used. In this case, the control unit 9 can store a correspondence between a tray T with a specific capacity and the powder stored in that tray T. This allows a tray T with a large capacity to be used for powder with a large dispensing amount, and a tray T with a small capacity to be used for powder with a small dispensing amount. This makes it easier to remove the powder when sending it to a subsequent process.
[0153] The present embodiment will be summarized below.
[0154] The combined device of a weighing device and a packaging device of this embodiment comprises a weighing device on which a tray containing powder is placed and which has a weighing unit that weighs the powder contained in the tray, and a packaging device that packages the powder contained in the tray removed from the weighing device by an operator, wherein the weighing device has an information writing unit that writes at least information regarding the actual supply of powder to an information display unit provided on the tray, and the information display unit is capable of displaying the information regarding the actual supply of powder written in the information writing unit, and the packaging device has a reading means that reads an identifier provided on the tray to identify the powder contained in the tray, and the packaging device identifies the powder contained in the tray by the reading means reading the identifier.
[0155] The information writing unit may also be configured to write prescription information for the powder medicine contained in the tray.
[0156] The information writing unit may also be configured to write the prescription information before the powder medicine is supplied to the tray.
[0157] The weighing device may also be configured to include a tray waiting section where the tray, which has been emptied after the powder medicine contained therein has been fed into the packaging device, is returned by an operator.
[0158] The device may also include a dispensing unit having a powder container capable of holding powder and dispensing the powder from the powder container, and a weighing unit located below the dispensing unit and on which a tray is placed to receive the powder dispensed from the powder container, wherein the weighing unit is configured to be movable horizontally, and when the weighing unit weighs powder that is manually placed on the tray without the dispensing unit dispensing the powder from the powder container, the weighing unit is located at a position away from the dispensing unit.
[0159] The device may also be configured to include a housing that surrounds at least the dispensing unit and the weighing unit, with a door installed in the housing, and by opening the door and pulling out the weighing unit, the weighing unit can be positioned at a distance from the dispensing unit.
[0160] The door may be provided with a locking section, which may be configured to lock the door so that it cannot be opened.
[0161] The device may also include a dispensing unit having a powder container capable of holding powder and dispensing the powder from the powder container, and a platform located below the dispensing unit on which a tray is placed to receive the powder dispensed from the powder container, the platform being configured to be movable horizontally, and being positioned at a distance from the dispensing unit when the powder is manually added to the tray without being dispensed from the powder container by the dispensing unit.
[0162] The machine may also be configured to include a housing, a door installed on the housing, and by opening the door and pulling out the table, the table can be positioned at a distance from the dispensing unit.
[0163] The door may be provided with a locking section that locks the door so that it cannot be opened. [Explanation of symbols]
[0164] 1...weighing device, 2...dispensing section, 21...powder container, 211...body section, 212...bottom section, 212a...dispensing outlet, 213...lid section, 214...RFID tag, 22...holding body, 221...holding main body, 221a...communicating port, 223...fixed section, 23...moving mechanism, 231...moving main body, 231a...fixed section, 232...moving drive section, 24...dispensing mechanism, 241...dispensing drive section, 25...table, 251...opening, 3...weighing section, 3a...locking section, 4...tray standby section, 41...standby tray transport section, 42...standby drive section, 5...tray transport section, 51...Transfer unit main body, 51a...Arm, 52...Transfer drive unit, 6...Tray accumulation unit (post-weighing tray storage area), 6X, 6Y...Parallel tray accumulation unit, 61...Accumulation tray transfer unit, 62...Accumulation drive unit, 7...Information writing unit, 8...Device side display unit, 9...Control unit, 9a...Instruction input unit, 10...Housing, 10a...Attachment / detachment window, 101...Stand, M...Powder, P1...Dispensing position, P2...Attachment / detachment position, Q...Movement orbit (circular orbit), Q1...Straight orbit, Q2...Curved orbit, S1...First position, S2...Second position, T...Tray, T1...Information display unit
Claims
1. a dispensing unit that dispenses powder from a powder container that can accommodate the powder; a weighing unit on which a tray for receiving the powder dispensed from the powder container is placed and which weighs the powder supplied to the tray; a housing surrounding the dispensing unit and the weighing unit, The powder medicine dispensing device, wherein the housing is provided with an openable door.
2. The powder dispensing device according to claim 1 , wherein the dispensing unit dispenses the powder from the powder container when the door is in a closed state.
3. The powder medicine dispensing device according to claim 1 or 2, wherein the door is installed on a front side of the weighing unit in the housing.
4. The door is provided with a locking portion, The powder medicine dispensing device according to any one of claims 1 to 3, wherein the locking unit locks the door so that it cannot be opened.
Citation Information
Patent Citations
powder medicine feeder
JP4066280B2