PIPETTING DEVICE
20230001403 · 2023-01-05
Assignee
Inventors
- Ottmar Kneucker (Helmstadt, DE)
- Markus Kurz (Wertheim, DE)
- Florian Metz (Waldbüttelbrunn, DE)
- Dieter Böhm (Wertheim, DE)
Cpc classification
B01L3/0237
PERFORMING OPERATIONS; TRANSPORTING
B01L2300/025
PERFORMING OPERATIONS; TRANSPORTING
B01L2200/148
PERFORMING OPERATIONS; TRANSPORTING
B01L3/0224
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A pipetting device for taking up and dispensing fluid volumes has a displacement device with a displacement mechanism and a displacement housing. The pipetting device has an adjusting device for changing the stroke of the displacement mechanism. The stroke of the displacement mechanism can be adjusted, and the corresponding adjustment value can be displayed by an adjustment indicator. A coupling device, in a use state, couples the adjusting device to a volume indicator and decoupled the adjustment device from the adjustment indicator. In an adjustment state, the adjusting device is coupled to the adjustment indicator and is decoupled from the volume indicator. The adjustment indicator displays an adjustment value for the stroke of the displacement means. The adjustment indicator can be adjusted in an adjustment state, whereas it is fixed in a use state.
Claims
1-14. (canceled)
15. A pipetting device for taking up and dispensing fluid volumes, comprising: a displacement apparatus having a displacement device and a displacement housing, a drive device for moving the displacement device in the displacement housing, wherein movement of the displacement device is limited by an upper stop, a lower stop and at least one counter stop of the drive device, so that a stroke of the displacement device is defined, a volume indicator for displaying a pipetting volume associated with the stroke of the displacement device and/or correlated with the stroke of the displacement device, an adjusting device to change the stroke of the displacement device, an adjustment indicator for indicating an adjustment value of the stroke of the displacement device, and a coupling device which in a use state couples the adjusting device to the volume indicator and decouples the adjusting device from the adjustment indicator, whereby an actuation of the adjusting device causes a change of the volume indicator but not of the adjustment indicator, and in an adjustment state couples the adjusting device to the adjustment indicator and decouples the adjusting device from the volume indicator, whereby an actuation of the adjusting device causes a change of the adjustment indicator but not of the volume indicator.
16. Pipetting device according to claim 15, wherein the displacement device is a piston and the displacement housing is a cylinder.
17. Pipetting device according to claim 15, wherein the adjusting device is configured to change the stroke of the displacement device by changing the position of the upper stop.
18. Pipetting device according to claim 17, wherein, in the use state and in the adjustment state, the adjusting device is coupled to the upper stop, whereby an actuation of the adjusting device causes a change in the position of the upper stop, wherein a force exerted on the adjusting device is transmitted to the upper stop.
19. Pipetting device according to claim 15, wherein, in a calibration state, the adjusting device is coupled to the volume indicator and decoupled from the upper stop and from the adjustment indicator, whereby an actuation of the adjusting device causes a change of the volume indicator but not of the adjustment indicator and not of the position of the upper stop.
20. Pipetting device according to claim 15, wherein the coupling device comprises: at least one first gear wheel coupled to the adjusting device, at least one second gear wheel which can be coupled to the volume indicator, and at least one third gear wheel which can be coupled to the adjustment indicator, wherein the first, second and third gear wheels are arranged to rotate about a common axis and to be displaced along said common axis.
21. Pipetting device according to claim 15, wherein the adjustment indicator comprises at least one numerical wheel that is rotatable about a longitudinal axis of the pipetting device and that indicates a scale for an adjustment value of the stroke of the displacement device.
22. Pipetting device according to claim 15, wherein the pipetting device further comprises an externally accessible actuating element for adjusting the coupling device, wherein adjusting of the coupling device by the actuating element enables a change between the use state and the adjustment state.
23. Pipetting device according to claim 22, wherein the actuating element is formed separately from the adjusting device.
24. Pipetting device according to claim 22, wherein the adjusting device comprises the actuating element.
25. Pipetting device according to claim 22, wherein an adjustment sleeve of the adjusting device forms the actuating element, and wherein the adjustment sleeve is rotatable about a longitudinal axis of the pipetting device for changing the stroke of the displacement device and for changing the volume indicator.
26. Pipetting device according to claim 22, wherein an adjustment sleeve of the adjusting device forms the actuating element and wherein the adjustment sleeve is movable along the longitudinal axis of the pipetting device for adjusting the coupling device into the use state and/or adjustment state.
27. Pipetting device according to claim 22, wherein an adjustment sleeve of the adjusting device forms the actuating element and wherein the adjustment sleeve is releasably fixable in axially different positions by a holding device of the pipetting device.
28. Pipetting device according to claim 22, wherein the coupling device has an engagement means for axial displacement of the coupling device along the common axis of the coupling device, and wherein the engagement means is movable along a longitudinal axis of the pipetting device.
29. Pipetting device according to claim 28, wherein the engagement means is arrangeable in different end positions driven by the actuating element.
30. Pipetting device according to claim 28, wherein the engagement means embraces the second coupling means at least in regions.
31. Pipetting device according to claim 28, wherein the engagement means and the actuating element are made in one piece.
32. Pipetting device according to claim 28, further comprising a spring means for exerting a spring force that acts on the actuating element when moving between end positions along a partial path, and wherein the spring means is arranged on the actuating element and/or on the engagement means.
33. Pipetting device according to claim 28, wherein an adjustment sleeve of the adjusting device forms the actuating element, and wherein the adjustment sleeve is rotatable about a longitudinal axis of the pipetting device for changing the stroke of the displacement device and for changing the volume indicator, and wherein the adjustment sleeve and the engagement means are mounted to rotate relative to each other and/or to be longitudinally displaceably together.
34. Pipetting device according to claim 23, wherein, for coupling the engagement means to the adjusting device, the engagement means comprises a coupling element and the adjustment means comprises a counter-coupling element, wherein the coupling element and the counter-coupling element are configured to block a rotational movement of the adjusting device during a transition from the use state to the adjustment state and/or from the adjustment state to the use state.
35. A pipetting device for taking up and dispensing fluid volumes, comprising: a displacement apparatus having a displacement device and a displacement housing, a drive device for moving the displacement device in the displacement housing, wherein movement of the displacement device is limited by an upper stop, a lower stop and at least one counter stop of the drive device, so that a stroke of the displacement device is defined, an adjustment indicator for indicating an adjustment value of the stroke of the displacement device, and wherein, in an adjustment state, the stroke of the displacement device is adjustable and the adjustment indicator is adjustable, and wherein, in a use state, the stroke of the displacement device is adjustable and the adjustment indicator is fixed, being secured against rotation about a longitudinal axis of the pipetting device.
36. Pipetting device according to claim 35, wherein, in the adjustment state, the adjustment indicator is rotatable about a longitudinal axis of the pipetting device, and wherein, in the use state, the adjustment indicator is secured against rotation about the longitudinal axis of the pipetting device.
37. Pipetting device according to claim 35, further comprising an actuating element, which is accessible from outside of the housing for transferring the pipetting device from the use state to the adjustment state and vice versa, wherein the actuating element is movable along a longitudinal axis of the pipetting device for transferring the pipetting device from the use state to the adjusting state and vice versa, wherein the actuating element is non-rotatable in relation to the longitudinal axis of the pipetting device, wherein the adjustment indicator has a locking toothing and the actuating element has a locking toothing that is complementary thereto, wherein, by moving the actuating element along the longitudinal axis of the pipetting device, the locking toothing of the actuating element and the locking toothing of the adjustment indicator can be engaged and disengaged, wherein, in use state, the locking toothing of the actuating element is in engagement with the locking toothing of the adjustment indicator. and wherein, in the adjustment state, the locking toothing of the actuating element and the locking toothing of the adjustment indicator are disengaged.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
[0082] In the figures, the same reference signs are used for the same or similar parts, achieving corresponding characteristics and advantages, even if a repeated description is omitted for simplicity.
[0083]
[0084] In the following, with reference to
[0085] A pipetting device 1 according to the invention (as well as the pipetting device 1 of the prior art) has a displacement device 2. For the mode of operation of the displacement device 2, reference may be made to the sectional view shown in
[0086] By means of the displacement device 2, a fluid, in particular a liquid, can be taken up into the pipette tip 1B and subsequently dispensed from it. The displacement device 2 has a displacement means 3 and a displacement housing 4. In the illustrated and preferred embodiment example, the displacement device 2 is designed as a piston-cylinder arrangement, so that the displacement means 3 is designed as a piston and the displacement housing 4 is designed as a cylinder.
[0087] The pipetting device 1 and/or the displacement device 2 preferably has an elongated shape and/or has a longitudinal axis L. The longitudinal axis L preferably runs centrally through the displacement device 2, in particular the displacement means 3 and the displacement housing 4.
[0088] When terms such as “axial”, “axial direction” and the like are used in the following, this refers to the longitudinal axis L. Correspondingly, terms such as “radial”, “radial direction” and the like also refer to the longitudinal axis L and indicate a direction perpendicular to the longitudinal axis L. When terms such as “top”, “bottom” and the like are used in the following, this refers to the extension of the longitudinal axis L.
[0089] The displacement housing 4 forms a cavity which is open towards the pipette tip 1B and is otherwise gas-tight. The displacement means 3 is preferably movable axially and/or along the longitudinal axis L and with respect to the cavity. By means of the displacement means 3, the volume of the cavity can be varied so that fluid, in particular air, can be drawn into the cavity when the cavity is enlarged due to the resulting negative pressure and can be dispensed again and/or displaced from the cavity when the volume is reduced. The displacement means 3 is preferably sealed against the displacement housing 4, in particular by means of a seal.
[0090] The displacement device 2 preferably has a return means 32, in particular a return spring. By means of the return means 32, the displacement means 3 can be moved into an initial position, in particular into the position with maximum volume of the cavity, which corresponds to the suction direction of the fluid and/or the direction against the discharge direction of the fluid.
[0091] The displacement housing 4 preferably has and/or forms a shaft 30 of the pipetting device 1. The shaft 30 is used for detachably attaching the pipette tip 1B and has an opening 25 that connects the displacement housing 4 to the pipette tip 1B, as explained above.
[0092] A pipette tip 1B is a substantially conical tube with two opposing openings, each of which has a different cross-section. With the larger opening, the pipette tip 1B can be fitted onto the shaft 30 and forms a gas-tight connection. Liquid can then be drawn into the pipette tip 1B through the variable cavity and subsequently dispensed.
[0093] The pipetting device 1 has a drive device 5 for moving the displacement means 3 in the displacement housing 4. The drive device 5 has a drive rod 31. The drive rod 31 may extend axially and/or along the longitudinal axis L. The drive rod 31 is preferably movable in the axial direction and/or at least substantially parallel to the displacement means 3. The drive device 5 preferably comprises an operating element 24. In particular, the drive device 5 can be actuated via the operating element 24.
[0094] Actuating the operating element 24, in particular pressing it down, causes the drive rod 31 to be pressed against the displacement means 3, so that the displacement means 3 moves into the displacement housing 4 and reduces the volume of the cavity. Accordingly, fluid can be dispensed from the pipetting device 1, in particular via the shaft 30 and the pipette tip 1B, by actuating the drive device 5 and/or the operating element 24.
[0095] Unactuated, the displacement means 3 and the drive device 5 and/or the drive rod 31 and/or the operating element 24 automatically assume the initial position, in particular by means of the return by the return means 32.
[0096] Alternatively, or in addition to the operating element 24, automated and/or motorized operation of the displacement device 2 is also possible.
[0097] Preferably, a movement of the displacement means 3 is limited by an upper stop 6, a lower stop 7 and at least one counter stop 8 of the drive device 5 and/or the displacement means 3, so that a stroke of the displacement means 3 is defined. Preferably, the stroke of the drive device 5 and/or the drive rod 31 and/or the displacement means 3 can be changed by the upper stop 6 and/or the lower stop 7.
[0098] The counter stop 8 can in particular be formed as a stop section of the drive rod 31. In particular, the counter stop 8 is formed integrally with the drive rod 31 and/or extends from the drive rod 31 in the radial direction and/or is flange-like.
[0099] When the pipetting device 1, displacement device 2, drive device 5 and/or operating element 24 is actuated, in particular when the drive rod 31 is moved in the axial direction, the counter stop 8 preferably strikes the lower stop 7, which limits the axial movement and/or stroke movement.
[0100] When resetting the displacement device 2 and/or the drive device 5, in particular by means of the return means 32, there is preferably a stop between the counter stop 8 and the upper stop 6 in the intake direction, which limits the axial movement or stroke movement.
[0101] When the counter stop 8 stops against the upper stop 6, the unactuated state is preferably reached and/or the volume in the cavity is at a maximum. In particular, the maximum fluid volume that can be accommodated is determined by the position of the upper stop 6.
[0102] Preferably, the axial position of the upper stop 6 is adjustable so that the maximum fluid volume that can be accommodated or the volume of the cavity can be adjusted. For this purpose, the pipetting device 1 and/or the drive device 5 has an adjusting device 10. The adjusting device 10 can have an adjusting means 23. Preferably, a threaded connection is formed between the adjusting means 23 and the upper stop 6 and/or the adjusting means 23 has an internal thread and the upper stop 6 has a corresponding external thread. The threaded connection can be used to adjust the axial position of the upper stop 6 and thus the maximum volume that can be accommodated.
[0103] In addition to the adjusting means 23, the adjusting device 10 can have an adjustment sleeve 27 operatively connected to the adjusting means 23. Thus, the axial position of the upper stop 6 can also be adjusted by means of the adjustment sleeve 27, in particular by turning the adjustment sleeve 27.
[0104] The pipetting device 1 includes a volume indicator 9 disposed in the housing 1A. The volume indicator 9 may include a plurality of volume indicator wheels 29 (number wheels) for indicating a volume value through an opening or window in the housing 1A. The volume indicator 9 is driven by the adjusting device 10 and/or the adjusting means 23 and is configured to display a pipetting volume associated with and/or correlated to the stroke of the displacement means 3. When the volume indicator 9 is changed, in particular by actuating the adjusting device 10, individual volume indicator wheels 29 of the volume indicator 9 can be moved.
[0105] In the following, features are explained which are designed differently in the pipetting device 1 according to the invention than in the pipetting device 1 of the prior art. Reference is first made to
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[0107] In the pipetting device 1 according to the invention, an adjustment indicator 11 for displaying an adjustment value of the stroke of the displacement means 3, which is not shown in
[0108] The pipetting device 1 according to the invention has a coupling device 12 by means of which, in a state of use, the adjusting device 10 is coupled to the volume indicator 9 and uncoupled from the adjustment indicator 11, whereby an actuation of the adjusting device 10, in particular a rotation of the adjusting means 23 and/or of the adjustment sleeve 27 about the longitudinal axis L, causes a change in the volume indicator 9 but not in the adjustment indicator 11. In this connection, in the state of use as shown in
[0109] The coupling device 12 is further designed to couple the adjusting device 10 to the adjustment indicator 11 and to decouple it from the volume indicator 9 in an adjustment state, whereby an actuation of the adjusting device 10, in particular a rotation of the adjusting means 23 and/or of the adjustment sleeve 27 about the longitudinal axis L, causes a change in the adjustment indicator 11 but not in the volume indicator 9. The pipetting device 1 according to the invention is shown in
[0110] An actuation of the adjusting device 10 shown in the figures can be achieved by a force applied by the user or, for example, by a motor.
[0111] In the following, the structure and interaction of the coupling device 12 with the adjusting device 10, the adjustment indicator 11 and the adjusting device 10 according to a first embodiment according to
[0112] In the illustrated and preferred embodiment, the adjusting device 10 is coupled to the upper stop 6 in the use state and in the adjustment state, whereby an actuation of the adjusting device 10—for example by an applied force—causes a change in the position of the upper stop 6. In particular, such a change in position is transmitted to the upper stop 6 by a force applied to the adjusting device 10.
[0113] In addition to the use state and the adjustment state, however, the pipetting device 1 can preferably also assume a further state, namely the so-called calibration state, which is shown in more detail in
[0114] A coupling between the adjustment indicator 11 and/or the volume indicator 9 and the adjusting device 10, in particular a toothing 28 of the adjusting device 10 and/or the adjustment sleeve 27, can be ensured via the coupling device 12.
[0115] In the state of use illustrated in
[0116] The adjustment state shown in
[0117] In particular, the calibration state set in
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[0119] In
[0120] In particular, the first coupling means 13 can be coupled to external teeth 28 of the adjusting device 10, wherein the external toothing 28 is arranged in particular on an outer side of the adjustment sleeve 27. In this case, the first coupling means 13 and the external toothing 28 of the adjustment sleeve 27 can functionally form a spur gear for driving the adjusting device 10.
[0121] The coupling device 12 further comprises at least one second coupling means 14 that can be coupled to the volume indicator 9, which is preferably formed as a second gear wheel 14 and is connected to the first coupling means 13 in a rotationally rigid manner The second coupling means 14 can be coupled to a corresponding toothing 9A of the volume indicator 9, wherein the toothing of the volume indicator 9 is arranged to be rotatable about the axis B. Thus, the toothing of the volume indicator 9 can form a spur gear with the second coupling means 14 in particular—and this in the state of use.
[0122] The coupling device 12 comprises at least one third coupling means 15 which can be coupled to the adjustment indicator 11, preferably formed as a third gear wheel 15 and connected to the first coupling means 13 in a torsionally rigid manner so as to prevent relative rotational movement between them. The third coupling means 15 forms a further spur gear in the meshing state and can be formed between the third coupling means 15 and an adjustment toothing 11A of the adjustment indicator 11 in the adjustment state. Thus, in the adjustment state, the teeth of the third gear and/or the third coupling means 15 can engage with the adjustment toothing 11A of the adjustment indicator 11.
[0123] In the illustrated and preferred embodiment example, it is provided that the first coupling means 13, the second coupling means 14 and the third coupling means 15 are arranged rotatably about a common axis A of the coupling device 12. The axis A runs in particular at least substantially parallel to the longitudinal axis L of the pipetting device 1 and/or to the (rotary) axis B and/or the axis A preferably forms a further longitudinal axis of the pipetting device 1 and/or of the coupling device 12.
[0124] In particular, the first coupling means 13, the second coupling means 14 and the third coupling means 15 are arranged to be displaceable along this common axis A.
[0125] In the embodiment shown in
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[0129] The engagement means 17 can engage around at least one coupling means of the coupling device 12 for adjusting the coupling device 12, in particular the second coupling means 14, as shown in
[0130] In the preferred embodiment shown in
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[0135] In
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[0137] As shown in
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[0139] Preferably, the adjustment sleeve 27 and the engagement means 17 are rotatably mounted against each other and/or longitudinally displaceably connected.
[0140] The engagement means 17 is preferably in the second embodiment biased against the adjustment sleeve 27 by means of spring action, in particular by means of a compression spring 33 and/or has the spring means 18.
[0141] The spring means 18 in the second embodiment is not shown in
[0142] In the following, a third preferred embodiment of the pipetting device 1 is described, which is shown in
[0143] As shown in
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[0146] Finally, the coupling element 20 and the counter-coupling element 21 are formed in such a way that a rotational movement of the adjusting device 10 can be blocked during the transition from the use state to the adjustment state and/or from the adjustment state to the use state. This is particularly advantageous in that unwanted hooking and rotation during switching between the adjusting device 10 and the coupling device 12 can be prevented. Ultimately, a securing of the adjusting device 10 during switching or during the transition from the use state to the adjustment state can be achieved and/or vice versa.
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[0148] However, if a switching from the use state to the adjustment state is initiated due to a downward actuation of the adjustment sleeve 27 in the embodiment shown, a longitudinal displacement of the adjustment sleeve 27 results, as shown in
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[0151] Thus, only in the switching state or in the transition from the use state to the adjustment state and/or from the adjustment state to the use state is a blocking of the rotary movement of the adjusting device 10, preferably of the adjusting means 23, provided.
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[0153] In the embodiment shown in
[0154] The actuating element 16 is designed to adjust the coupling device 10. The actuating element 16 is accessible from the outside for a user of the pipetting device 1. The actuating element 16 is arranged to be longitudinally displaceable, that is to say displaceable along the longitudinal axis L of the pipetting device 1. The actuating element 16 is designed in such a way that the adjustment of the coupling device 10 by means of the actuating element 16 enables a change between the use state and the adjustment state. In particular, a longitudinal displacement of the actuating element 16 causes a longitudinal displacement of the engagement means 17. The actuating element 16 is moved by a user along the longitudinal axis L of the pipetting device 1 from a first position, in which the coupling device 10 brings about the use state, to a second position, in which the Coupling device 10 causes the adjustment state.
[0155] In this embodiment it is provided that a restoring force of a restoring means 35 of the pipetting device 1 acts on the actuating element 16 and on the engagement means 17. The restoring force of the restoring means 35 counteracts a displacement of the actuating element 16 from the first position (use state) into the second position (adjustment state). If the user does not exert any force on the actuating element in the second position (e.g., if the user releases the actuating element), the restoring force of the restoring means 35 causes a longitudinal displacement of the actuating means 16 from the second position into the first position. Here, the engagement means 17 is displaced together and concurrently with the actuating element 16.
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[0158] Individual aspects of the invention described above may be implemented independently, but may also be implemented and advantageous in any combination.