Method for Dosing Liquid by Means of a Pipette and a Syringe, and Pipette for Actuating a Syringe for Dosing Liquid
20210001326 ยท 2021-01-07
Assignee
Inventors
Cpc classification
B01L3/0237
PERFORMING OPERATIONS; TRANSPORTING
B01L2300/025
PERFORMING OPERATIONS; TRANSPORTING
B01L3/0234
PERFORMING OPERATIONS; TRANSPORTING
B01L2300/0627
PERFORMING OPERATIONS; TRANSPORTING
B01L2300/027
PERFORMING OPERATIONS; TRANSPORTING
B01L3/0224
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A pipette with an adjustable dosing increment, a display apparatus, a drawing lever to draw liquid into a syringe, and a control button to discharge liquid in steps from the syringe, and the syringe actuated by means of the pipette, wherein the syringe is releasably connected to the pipette, the dosing increment is optionally set, or the previously set dosing increment is retained, the dosing volume set by the dosing increment is displayed by means of the display apparatus, liquid is sucked into the syringe by actuating the drawing lever, the respective position of a drive element of a drive mechanism of the pipette for filling and draining the syringe when the drive element is shifted along a path is detected, the possible maximum number of dosing steps with the set dosing increment without refilling the syringe after executing the reverse stroke starting from the position of the drive element reached at the end of filling is determined and displayed by means of the display apparatus, after the syringe is completely or partially filled with liquid, the reverse stroke is executed by actuating the control button at least once, dosing steps are executed by actuating the dosing button, the executed dosing steps are counted, the number of executed dosing steps and/or the number of still possible dosing steps without refilling the syringe are determined and displayed by means of the display apparatus, and after executing the maximum possible number of dosing steps without refilling the syringe, either the syringe is removed from the pipette, or steps 1.2 to 1.8 are repeated with same syringe, wherein in step 1.8, the total number of dosing steps performed with the syringe with the set dosing increments is counted, and/or the number of still possible dosing steps without refilling the syringe is determined and displayed by means of the display apparatus.
Claims
1. A pipette (1) for handling a syringe (3), comprising: a strip-shaped housing (2), a seat (20) with an opening (21.1) at the bottom end of the housing (2) for inserting a syringe (3) with a fastening section (16) at the top edge of a cylinder (11), a seat body (25) with another seat (24) and another opening (21.2) at the bottom end in the housing (2) for inserting another fastening section (19) of a plunger (12) of the syringe (3), means for releasably holding the fastening section (16) in the seat (20) and the additional fastening section (19) in the additional seat (24), at least one means for displacing the seat body (25) within the housing (2) in the longitudinal direction of the housing (2), that have the drawing lever (5) that can be actuated outside of the housing (2) for drawing liquid into the syringe (3), a control button (8) that can be actuated outside of the housing (2) for the stepwise discharging of liquid from the syringe (3), and an adjusting element for adjusting a dosing increment that can be adjusted outside of the housing (2), means for detecting the dosing increment set with the adjusting element, means for detecting a syringe (3) releasably connected to the pipette (1), means for detecting the respective position of the means for displacing the seat body (25) when displacing the displacement means along a path relative to the housing (2), an electronic control apparatus (42) connected to the detection means, and an electronic display apparatus (9) connected to the electronic control apparatus (42), wherein the control apparatus (42) is configured so that it determines the dosing volume by the set dosing increment when the syringe (3) is inserted in the pipette (1), and determines the maximum possible number of dosing steps following the execution of the reverse stroke without refilling the syringe (3) given the set dosing increment and completely or partially filled syringe (3) by the position of the displacement means on the path, and displays them by the display apparatus (9), it determines the execution of a reverse stroke to be executed by at least once actuating the control button (8), and outputs output indicating this by means of the display apparatus (9) or another display apparatus until the reverse stroke is executed and/or after execution of the reverse stroke, and it determines the number of executed dosing steps and displays the number of executed dosing steps and/or the number of dosing steps still possible without refilling the syringe (3) by means of the display apparatus (9).
2. The pipette (1) according to claim 1, wherein the means for detecting the respective position of the displacement means has an incremental encoder arranged on the displacement element of the displacement means and at least one sensor (44) fixedly arranged in the housing (2) and connected to the control apparatus (42) for detecting the displacement of the incremental encoder.
3. The pipette (1) according to claim 2, wherein the displacement element is a toothed rack (27) whose bottom end is connected to the drawing body (25) that can be engaged with a pawl (37) pivotably mounted on the control button (8) when the control button (8) is actuated to displace the toothed rack (27) a dosing step upon actuation.
4. The pipette (1) according to claim 2, wherein the incremental encoder is designed as a single piece with the toothed rack (27), or is a component securely connected to the toothed rack (27).
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
[0073] The invention is explained in greater detail below based on the appended drawings of an exemplary embodiment. In the drawings:
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DETAILED DESCRIPTION OF THE INVENTION
[0084] In the present application, the designations top and bottom refer to the alignment of the pipette in which the rod-shaped housing is aligned vertically, and the seat for the syringe is arranged at the bottom.
[0085] According to
[0086] According to
[0087] The syringe 3 is arranged with the flange 17 in a seat 20 on the bottom end of the housing 2 that has an axially directed opening 21.1 in the bottom end of the housing 2 for inserting and removing the syringe 3. The syringe 3 presses with its top side against a pressure sensitive ring sensor 22 that senses the projections on the top edge of the flange 17. The flange is 17 is held in this position by gripping levers 23 in the housing 2.
[0088] The additional fastening section 19 of the plunger 12 is arranged in an additional seat 24 in a hollow cylindrical seat body 25. This has another axially directed opening 21.2 for inserting the additional fastening section 19. The additional fastening section 19 is held by additional gripping levers 26 that engage between the beads of the additional fastening section 19 or clamp them.
[0089] The seat body 25 is securely connected to a toothed rack 27 that extends below the slot 4 in the longitudinal direction of the housing 2.
[0090] A drawing lever holder 28 is fixed to the seat body 25 and the bottom part of the toothed rack 27.
[0091] Furthermore, there is a drawing lever support 29 30 that lies with a slide plate against the bottom side of the edges of the slot 4. The slide plate 30 has a spike 31 that projects upward and penetrates the slot 4. The drawing lever 5 is fixed to the spike 31 outside of the housing 2.
[0092] In the upper half of the housing 2, a dosing lever 34 is pivotably mounted in a pivot bearing 32 in a bulge 33 in the side wall of the housing 2 opposite the slot 4. The dosing lever 34 has two legs 35, 36 at a distance from each other that extend on the opposite side wall of the housing 2 out of the two slots 6, 7. The control button 8 is fixed on the ends of the legs 35, 36 extending out of the housing 2.
[0093] A pawl 37 is pivotably mounted between the two legs 35, 36 of the dosing lever 34. The pawl 37 is arranged with a pawl tooth 38 above the teeth 39 of the toothed rack 27. The dosing lever 34 is pressed by a spring apparatus (not shown) into the position in
[0094] A movable cover 40 is arranged between the pawl 37 and toothed rack 27. The cover 40 is displaceable by turning the selection wheel 10 projecting out of the side of housing 2 so that the teeth 39 of the toothed rack 27 are more or less covered.
[0095] Furthermore, a printed circuit board 41 with electronics is arranged in the upper half of the housing 2. The electronics comprise an electronic control apparatus 42. An electrical voltage supply in the form of batteries or a rechargeable batteries 43 is also located there.
[0096] The selection wheel 10 is assigned another sensor 44 that detects the rotary position of the selection wheel 10. The measured values determined by the ring sensor 22 and the additional sensor 44 are forwarded to the control apparatus 42 via the cable.
[0097] The code indicated on the flange 17 denotes the size of the respective syringe 3. The control apparatus 42 determines the respective syringe size from the measurement signals supplied by the ring sensor 22, and the respective increment from the setting of the selection wheel 10. From this, it calculates the set dispensing volume and presents it on the display 9.
[0098] The slots 6, 7 are covered on the inside by a shield 45 connected to the dosing lever 34.
[0099] According to
[0100] According to
[0101] Further details about the cover strip 46 and the related embodiments of the housing 2, the drawing lever holder 28 and the drawing lever support 29 are described in EP 2 656 916 A1 in paragraphs 65 to 69, the content of which is hereby incorporated in the present application.
[0102] According to
[0103] Moreover, the pipette has a transmission element 50 in the housing for controlling a reverse stroke when the syringe 3 is completely filled. Details on the transmission element 50 and its function are described in EP 2 656 916 A1 in paragraphs 71 to 74 and 81 to 83, as well as the figures referenced therein, the content of which is hereby incorporated in the present invention.
[0104]
[0105] In the embodiment in
[0106] In the embodiment in
[0107] The use of the pipette 1 from
[0108] The ring sensor 22 senses the code on the flange 17 of the syringe 3. With the signals provided by the ring sensor 22, the control apparatus 42 discerns that a syringe 3 has been inserted and turns on the display 9. With the signals provided by the ring sensor 22 and by the sensor 44, the control apparatus 42 determines the set dispensing volume and presents it on a display 9.
[0109] Moreover, the control apparatus 42 determines the possible number of dosing steps for draining the syringe 3 after complete filling, and shows them on the display 9 (block 60).
[0110] The user may change the setting of the dispensing volume using the selection wheel 10, and the changed metering volume is shown on the display 9 (block 61).
[0111] To draw liquid through the opening 14 in the syringe 3, the drawing lever 5 is pressed upward out of the position in
[0112] Likewise, the magnetic sensor 49 detects termination of the drawing of liquid by a stoppage or downward movement of the toothed rack 27, and forwards this to the control apparatus 42. Then the control apparatus 42 indicates on the display 9 the maximum possible number of dosing steps for refilling the syringe at the respective fill level (block 62).
[0113] After the reverse stroke to be executed has been performed by actuating the control button 8 once or several times, the control apparatus 42 controls the display 9 so that it stops flashing (block 63).
[0114] The performance of the reverse stroke is detected by the control electronics 42 due to the displacement of the toothed rack 27 detected by the magnetic sensor 49.
[0115]
[0116] Individual dosing steps are performed by repeatedly actuating the actuation button 8. The performance of dosing steps is also determined by the magnetic sensor 49 from which the control apparatus 42 calculates the number of performed dosing steps and/or the number of remaining dosing steps, and causes them to be displayed on the display 9 (block 64).
[0117] After the last complete dosing step is dispensed, the control electronics stop counting. Then fluid can again be drawn with the same syringe 3 so that the procedure continues with block 60. The control electronics 42 cause all of the performed dosing steps to be displayed (block 65).
[0118] Alternatively, the remaining fluid is dispensed by actuating the drawing lever 5. Then the control apparatus 42 controls a flashing of the display 9 (block 66) in addition to the display of the set dosing volume and the reached dosing steps.
[0119] When the syringe 3 is ejected by opening the gripping levers 23, 26, it is no longer detected by the ring sensor 22, and the control apparatus 42 switches off the display 9 (block 67).
[0120] A step error will be explained with reference to
[0121] Blocks 60 to 64 correspond to
[0122] When there is an incorrect dosing, it is determined by the control electronics 42 due to the displacement reported by the magnetic sensor 49 which does not correspond to the set dosing step. Then a buzzer emits a warning tone (block 68).
[0123] If the actuation button 8 remains actuated, the control apparatus 42 controls the display 9 so that only the number of steps performed up to the incorrect dosing is displayed, and the display flashes. In this embodiment version, it is not possible to continue counting by repeatedly actuating the actuation button (block 69).
[0124] In the next step, residual liquid can be dispensed by actuating the drawing lever 5, wherein the number of dosing steps up to the incorrect dosing is still displayed, and the display 9 flashes (block 70).
[0125] Finally, the control apparatus 42 controls when ejecting the syringe so that the display goes blank (block 67).
[0126] The entire contents of all of the references discussed above are each hereby incorporated by reference in their entirety
REFERENCE NUMBER LIST
[0127] 1 Pipette [0128] 2 Housing [0129] 3 Syringe [0130] 4 Slot [0131] 5 Lifting lever [0132] 6, 7 Additional slot [0133] 8 Control button [0134] 9 Display apparatus [0135] 10 Selection wheel [0136] 11 Cylinder [0137] 12 Plunger [0138] 13 Conical section [0139] 14 Hole [0140] 15 Cylindrical section [0141] 16 Fastening section [0142] 17 Flange [0143] 18 Piston rod [0144] 19 Additional fastening section [0145] 20 Seat [0146] 21.1 Opening [0147] 21.2 Additional opening [0148] 22 Ring sensor [0149] 23 Gripping lever [0150] 24 Additional seat [0151] 25 Seat body [0152] 26 Gripping lever [0153] 27 Toothed rack [0154] 28 Drawing lever holder [0155] 29 Drawing lever support [0156] 30 Slide plate [0157] 31 Spike [0158] 32 Pivot bearing [0159] 33 Bulge [0160] 34 Dosing lever [0161] 35, 36 Legs [0162] 37 Pawl [0163] 38 Pawl tooth [0164] 39 Teeth [0165] 40 Cover [0166] 41 Printed circuit board [0167] 42 Control apparatus [0168] 43 Battery [0169] 44 Sensor [0170] 45 Shield [0171] 46 Cover strip [0172] 47 Channel [0173] 48 Magnetic strip [0174] 49 Magnetic sensor [0175] 50 Transmission element [0176] 51 Teeth [0177] 52 Pinion [0178] 53 Rotary encoder [0179] 54 Contact sensor [0180] 55 Sensor