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Patent · US9335337B2 · B2 · US

Apparatus for gripping and holding diagnostic cassettes

(11) Publication number
US9335337B2
(21) Application number
14/730,419
(22) Filing date
2015-06-04
(30) Priority date
2011-10-11
(43) Publication date
2016-05-10
(45) Date of grant
2016-05-10
(51) IPC
B25B 9/00; B25J 15/00; B66C 1/00; G01N 35/00
(52) CPC
  • G01N Investigating or analysing materials by determining their chemical or physical properties: 35/0099, 35/00, 35/04
  • B25B Tools or bench devices not otherwise provided for, for fastening, connecting, disengaging, or holding: 9/00
  • B25J Manipulators; chambers provided with manipulation devices: 15/0028
(73) Assignee
Ortho Clinical Diagnostics Inc
(72) Inventors
Robert S. Jones; Lynn J. Willett
(54) Title
Apparatus for gripping and holding diagnostic cassettes
(57) Abstract

The apparatus is a mechanism for acquiring, holding, and enabling the movement of a cassette-shaped article, such as a reagent or sample cassette, which may be part of an automated diagnostic analyzer, such that the apparatus can tolerate a significant degree of cassette misplacement and/or misalignment during the acquisition maneuver. The mechanism furthermore enables simultaneous two-dimensional movement of the acquiring gripper jaws such that the inter-jaw distance decreases at the same time as movement in an upward vertical direction is provided while the jaw movement is adequately smooth so as not to disturb the physical state of the sample.

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Claims (3)

  1. An apparatus for gripping a cassette-shaped article comprising; a support housing; a linear actuator movable along an x-axis relative to the support; a set of jaws for gripping the cassette-shaped article, each jaw having a proximal end and a distal end, the distal end being adapted for gripping the cassette-shaped article; a movable node located at the proximal end of each jaw for connecting each jaw to the linear actuator; a fixed node relative to the support located between the proximal and distal end of each jaw for connecting each of the jaws to the support, wherein the fixed node is indirectly located on the jaws and is connected to the jaws via linkage and a movable node on the jaws; and wherein movement of the linear actuator provides motion to the movable node in an x- and y-axis thereby rotating the jaws around the fixed node resulting in the jaws opening and closing.
  2. An apparatus for gripping a cassette-shaped article comprising; a support housing; a linear actuator movable along an x-axis relative to the support; a set of jaws for gripping the cassette-shaped article, each jaw having a proximal end and a distal end, the distal end being adapted for gripping the cassette-shaped article; a movable node located at the proximal end of each jaw for connecting each jaw to the linear actuator; a fixed node relative to the support located between the proximal and distal end of each jaw for connecting each of the jaws to the support, wherein the fixed node is directly located on the jaws; a drive linkage connected to the linear actuator at the center thereof, the drive linkage having elongated slots on either side of the center, the movable nodes being slidably engaged in the slots, whereupon movement of the linear actuator moves the drive linkage which imparts linear motion to the movable node in a direction perpendicular to the motion of the slide thereby rotating the jaws around the fixed node resulting in the jaws opening and closing; a set of registration dowels attached to the bottom of the housing near the distal end of each of the jaws which are positioned to be capable of being abutted by the cassette-shaped article once the cassette-shaped article has been acquired, a compliance block is located at the upper end of the housing; and a spring is placed under the compliance block, enabling the housing to slightly tilt, wherein acquisition of the cassette is guided by the registration dowels and the movement of the cassette-shaped article is guided by the compliance block and spring allowing for possible misalignment of the apparatus relative to the cassette-shaped article.
  3. A method for gripping a cassette-shaped article comprising: providing a support housing; providing a linear actuator movable along an x-axis relative to the support; providing a set of jaws for gripping the cassette-shaped article, each jaw having a proximal end and a distal end, the distal end being adapted for gripping the cassette-shaped article; providing a movable node located at the proximal end of each jaw for connecting each jaw to the linear actuator; providing a fixed node relative to the support located between the proximal and distal end of each jaw for connecting each of the jaws to the support, wherein the fixed node is directly located on the jaws; providing a drive linkage connected to the linear actuator at the center thereof, the drive linkage having elongated slots on either side of the center, the movable nodes being slidably engaged in the slots, providing a set of registration dowels attached to the bottom of the housing near the distal end of each of the jaws which are positioned to be capable of being abutted by the cassette-shaped article once the cassette-shaped article has been acquired, providing a compliance block at the upper end of the housing, and a spring under the compliance block, enabling the housing to deflect, positioning the housing to be located above the cassette-shaped article to be gripped; moving the linear actuator which moves the drive linkage which imparts linear motion to the movable node in a direction perpendicular to the motion of the slide thereby rotating the jaws around the fixed node resulting in the jaws closing and acquiring the cassette-shaped article; wherein acquisition of the cassette is guided by the registration dowels and the movement of the cassette-shaped article is guided by the compliance block and spring allowing for possible misalignment of the apparatus relative to the cassette-shaped article.

Description

The invention relates generally to an apparatus for gripping a cassette-shaped article, particularly for acquiring, holding, and enabling the movement a reagent or sample cassette as part of an automated diagnostic analyzer.

Diagnostic clinical analyzers continue to become more sophisticated especially with respect to the handling and movement of patient samples and associated reagents between multiple locations. A plethora of increasing complex pick and place transports have evolved into robotic systems capable of two-dimensional, and in some cases, three-dimensional movement of patient sample containers. However, the evolution of apparatuses to physically acquire and hold such containers has not advanced especially when such containers are not simple test tubes, such as, for example, foil sealed cassettes for agglutination reactions as shown in U.S. Pat. No. 5,780,248 incorporated herein by reference in its entirety. Furthermore, such patient sample container acquisition relies upon a small number of fundamental mechanisms. Cam driven machines offer the smoothest motion and control of acceleration and deceleration. They can run at high cyclic rate, however, they are big, heavy and not suitable for applications where space is limited. Hydraulic/pneumatic driven machines are more compact and easier to use, but because they usually use hydraulic/pneumatic pressure to drive the components against hard stops, they create impact (which is particularly important in handling cassettes containing whole blood components) and result in noisy machines of low cyclic rate.

Citations (28)

  • US3202449A
  • US3810399A
  • US4002247A
  • US4411576A
  • US4975018A
  • US4927545A
  • US5249663A
  • US5333720A
  • US5467864A
  • US5594808A
  • US5681530A
  • US5780248A
  • US5564888A
  • US5905808A
  • US5911000A
  • US6293750B1
  • US6374982B1
  • US7131361B2
  • US6264419B1
  • US8026101B2
  • US7448294B2
  • US20030026733A1
  • US6889119B2
  • US6843357B2
  • US7563067B2
  • WO2008039890A2
  • US20100150688A1
  • WO2008067847A1
Record as JSON
{
  "publication_number": "US9335337B2",
  "country": "US",
  "kind": "B2",
  "title": "Apparatus for gripping and holding diagnostic cassettes",
  "abstract": "The apparatus is a mechanism for acquiring, holding, and enabling the movement of a cassette-shaped article, such as a reagent or sample cassette, which may be part of an automated diagnostic analyzer, such that the apparatus can tolerate a significant degree of cassette misplacement and/or misalignment during the acquisition maneuver. The mechanism furthermore enables simultaneous two-dimensional movement of the acquiring gripper jaws such that the inter-jaw distance decreases at the same time as movement in an upward vertical direction is provided while the jaw movement is adequately smooth so as not to disturb the physical state of the sample.",
  "claims": [
    "1. An apparatus for gripping a cassette-shaped article comprising; a support housing; a linear actuator movable along an x-axis relative to the support; a set of jaws for gripping the cassette-shaped article, each jaw having a proximal end and a distal end, the distal end being adapted for gripping the cassette-shaped article; a movable node located at the proximal end of each jaw for connecting each jaw to the linear actuator; a fixed node relative to the support located between the proximal and distal end of each jaw for connecting each of the jaws to the support, wherein the fixed node is indirectly located on the jaws and is connected to the jaws via linkage and a movable node on the jaws; and wherein movement of the linear actuator provides motion to the movable node in an x- and y-axis thereby rotating the jaws around the fixed node resulting in the jaws opening and closing.",
    "2. An apparatus for gripping a cassette-shaped article comprising; a support housing; a linear actuator movable along an x-axis relative to the support; a set of jaws for gripping the cassette-shaped article, each jaw having a proximal end and a distal end, the distal end being adapted for gripping the cassette-shaped article; a movable node located at the proximal end of each jaw for connecting each jaw to the linear actuator; a fixed node relative to the support located between the proximal and distal end of each jaw for connecting each of the jaws to the support, wherein the fixed node is directly located on the jaws; a drive linkage connected to the linear actuator at the center thereof, the drive linkage having elongated slots on either side of the center, the movable nodes being slidably engaged in the slots, whereupon movement of the linear actuator moves the drive linkage which imparts linear motion to the movable node in a direction perpendicular to the motion of the slide thereby rotating the jaws around the fixed node resulting in the jaws opening and closing; a set of registration dowels attached to the bottom of the housing near the distal end of each of the jaws which are positioned to be capable of being abutted by the cassette-shaped article once the cassette-shaped article has been acquired, a compliance block is located at the upper end of the housing; and a spring is placed under the compliance block, enabling the housing to slightly tilt, wherein acquisition of the cassette is guided by the registration dowels and the movement of the cassette-shaped article is guided by the compliance block and spring allowing for possible misalignment of the apparatus relative to the cassette-shaped article.",
    "3. A method for gripping a cassette-shaped article comprising: providing a support housing; providing a linear actuator movable along an x-axis relative to the support; providing a set of jaws for gripping the cassette-shaped article, each jaw having a proximal end and a distal end, the distal end being adapted for gripping the cassette-shaped article; providing a movable node located at the proximal end of each jaw for connecting each jaw to the linear actuator; providing a fixed node relative to the support located between the proximal and distal end of each jaw for connecting each of the jaws to the support, wherein the fixed node is directly located on the jaws; providing a drive linkage connected to the linear actuator at the center thereof, the drive linkage having elongated slots on either side of the center, the movable nodes being slidably engaged in the slots, providing a set of registration dowels attached to the bottom of the housing near the distal end of each of the jaws which are positioned to be capable of being abutted by the cassette-shaped article once the cassette-shaped article has been acquired, providing a compliance block at the upper end of the housing, and a spring under the compliance block, enabling the housing to deflect, positioning the housing to be located above the cassette-shaped article to be gripped; moving the linear actuator which moves the drive linkage which imparts linear motion to the movable node in a direction perpendicular to the motion of the slide thereby rotating the jaws around the fixed node resulting in the jaws closing and acquiring the cassette-shaped article; wherein acquisition of the cassette is guided by the registration dowels and the movement of the cassette-shaped article is guided by the compliance block and spring allowing for possible misalignment of the apparatus relative to the cassette-shaped article."
  ],
  "description_excerpt": "The invention relates generally to an apparatus for gripping a cassette-shaped article, particularly for acquiring, holding, and enabling the movement a reagent or sample cassette as part of an automated diagnostic analyzer.\n\nDiagnostic clinical analyzers continue to become more sophisticated especially with respect to the handling and movement of patient samples and associated reagents between multiple locations. A plethora of increasing complex pick and place transports have evolved into robotic systems capable of two-dimensional, and in some cases, three-dimensional movement of patient sample containers. However, the evolution of apparatuses to physically acquire and hold such containers has not advanced especially when such containers are not simple test tubes, such as, for example, foil sealed cassettes for agglutination reactions as shown in U.S. Pat. No. 5,780,248 incorporated herein by reference in its entirety. Furthermore, such patient sample container acquisition relies upon a small number of fundamental mechanisms. Cam driven machines offer the smoothest motion and control of acceleration and deceleration. They can run at high cyclic rate, however, they are big, heavy and not suitable for applications where space is limited. Hydraulic/pneumatic driven machines are more compact and easier to use, but because they usually use hydraulic/pneumatic pressure to drive the components against hard stops, they create impact (which is particularly important in handling cassettes containing whole blood components) and result in noisy machines of low cyclic rate.",
  "cpc": [
    "G01N 35/0099",
    "B25B 9/00",
    "B25J 15/0028",
    "G01N 35/00",
    "G01N 35/04"
  ],
  "ipc": [
    "B25B 9/00",
    "B25J 15/00",
    "B66C 1/00",
    "G01N 35/00"
  ],
  "assignees": [
    "Ortho Clinical Diagnostics Inc"
  ],
  "inventors": [
    "Robert S. Jones",
    "Lynn J. Willett"
  ],
  "filing_date": "2015-06-04",
  "publication_date": "2016-05-10",
  "grant_date": "2016-05-10",
  "priority_date": "2011-10-11",
  "application_number": "US-201514730419-A",
  "family_id": "47073304",
  "cited_by_count": 6,
  "citations": [
    "US3202449A",
    "US3810399A",
    "US4002247A",
    "US4411576A",
    "US4975018A",
    "US4927545A",
    "US5249663A",
    "US5333720A",
    "US5467864A",
    "US5594808A",
    "US5681530A",
    "US5780248A",
    "US5564888A",
    "US5905808A",
    "US5911000A",
    "US6293750B1",
    "US6374982B1",
    "US7131361B2",
    "US6264419B1",
    "US8026101B2",
    "US7448294B2",
    "US20030026733A1",
    "US6889119B2",
    "US6843357B2",
    "US7563067B2",
    "WO2008039890A2",
    "US20100150688A1",
    "WO2008067847A1"
  ]
}

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