Packaging device for round articles such as eggs
11407540 · 2022-08-09
Assignee
Inventors
Cpc classification
B65B23/06
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A packaging device (1) for packaging substantially round articles into a dimpled package (100) having an array of pockets to receive the round articles. The packaging device comprising a supply conveyor (2) for the articles and a package conveyor (15) located below the supply conveyor for conveying the packages. A filling buffer (4) is located between the supply conveyor and the package conveyor having multiple sub-buffers (5). The device furthermore comprises a collector (8) for receiving articles from the buffer, and a setter (12) wherein, in use, the setter reciprocates between an upper position to a lower position, wherein in the upper position the articles can be received from the collector and in the lower position the articles can be discharged into the pockets of the package. The collector comprises a plurality of collector rows, wherein the collector is configured and arranged to move each one of the plurality of collector rows back and forth underneath the filling buffer to a position under any one of the sub-buffers for receiving articles from the lowest row thereof, and to move back and forth with filled pockets to a position above the setter to discharge the articles into the setter.
Claims
1. A packaging device for packaging substantially round articles, such as eggs or fruit, into a dimpled package having an array of pockets to receive the round articles, wherein said array comprises rows and columns, the packaging device comprising: a supply conveyor for conveying the articles in a first direction (X) and having article holders for releasably holding the articles; a package conveyor located below the supply conveyor for conveying the packages in a second direction (Y) substantially perpendicular to the first direction (X), the packages being oriented on the package conveyor such that the rows of the package extend in the first direction (X) and the columns of the package extend in the second direction (Y); a filling buffer located between the supply conveyor and the package conveyor, wherein the filling buffer in use is filled from above with articles by the supply conveyor and fills the packages on the package conveyor located below the buffer with said articles, the filling buffer comprising a plurality of parallel sub-buffers positioned next to each other seen in the second direction (Y), each sub-buffer has a plurality of stacked sub-buffer rows of releasable buffer pockets, said sub-buffer rows extending in the first direction (X) and each having a number of buffer pockets equal or greater than the number of pockets in a package row extending in the first direction (X); a collector comprising a row of releasable pockets defining a collector row which extends in the first direction (X) is movable in the second direction (Y); and a setter comprising a row of releasable pockets defining a setter row which is movable up and down in a third direction (Z) perpendicular to the first direction (X) and second direction (Y), wherein, in use, the setter reciprocates between an upper position to a lower position, wherein in the upper position the articles can be received from the collector and in the lower position the articles can be discharged into the pockets of the package; wherein the collector comprises a plurality of collector rows, wherein the collector is configured and arranged to move each one of the plurality of collector rows back and forth in the second direction (Y) underneath the filling buffer to a position under any one of the sub-buffers for receiving articles from the lowest row thereof, wherein each one of the collector rows can be moved selectively to align with any one of the sub-buffers and to move back and forth in the second direction (Y) with filled pockets to a position above the setter to discharge the articles into the setter, wherein the collector rows of said plurality of collector rows are coupled to each other so as to move together.
2. The packaging device according to claim 1, wherein the collector rows of said plurality of collector rows are coupled to each other so as to move together.
3. The packaging device according to claim 1, wherein the setter has a single setter row.
4. A packaging device for packaging substantially round articles, such as eggs or fruit, into a dimpled package having an array of pockets to receive the round articles, wherein said array comprises rows and columns, the packaging device comprising: a supply conveyor for conveying the articles in a first direction (X) and having object holders for releasably holding the articles; a package conveyor located below the supply conveyor for conveying the packages in a second direction (Y) substantially perpendicular to the first direction (X), the packages being oriented on the package conveyor such that the rows of the package extend in the first direction (X) and the columns of the package extend in the second direction (Y); a filling buffer located between the supply conveyor and the package conveyor, wherein the filling buffer in use is filled from above with articles by the supply conveyor and fills the packages on the package conveyor located below the buffer with said articles, the filling buffer comprising a plurality of parallel sub-buffers positioned next to each other seen in the second direction (Y), each sub-buffer has a plurality of stacked sub-buffer rows of releasable buffer pockets, said sub-buffer rows extending in the first direction (X) and each having a number of buffer pockets equal or greater than the number of pockets in a package row extending in the first direction (X); a collector comprising at least one row of releasable pockets defining a collector row which is movable in the second direction (Y); and a setter comprising a row of releasable pockets defining a setter row which is movable up and down in a third direction (Z) perpendicular to the first direction (X) and second direction (Y), wherein, in use, the setter reciprocates between an upper position to a lower position, wherein in the upper position the articles can be received from above and in the lower position the articles can be discharged into the pockets of the package; wherein an intermediate transfer device is arranged between the collector and the setter, said intermediate transfer device comprising at least one transfer row of releasable pockets, said intermediate transfer device being configured and arranged to move the transfer row back and forth from a position under the at least one collector row for receiving articles to a position above the setter row to discharge the articles into the setter.
5. The packaging device according to claim 4, wherein the transfer device comprises at least one pair of transfer rows wherein the transfer device is configured and arranged to move each one of the transfer rows of the pair back and forth from a position under said at least one collector row for receiving articles therefrom, to a position above the setter row to discharge the articles into the setter.
6. The packaging device according to claim 5, wherein the collector comprises at least two collector rows.
7. The packaging device according to claim 6, wherein the collector rows are coupled so as to move in the second direction (Y) together.
8. The packaging device according to claim 4, wherein the transfer rows of said pair are each arranged on a corresponding guiding mechanism whereby the movement of the transfer rows is a combined movement, which is composed of a movement in the second direction (Y) and the third direction (Z).
9. The packaging device according to claim 8, wherein the guiding mechanism includes a swivelling arm.
10. The packaging device according to claim 4, wherein the pitch between the pockets of the at least one transfer row of releasable pockets is variable in the first direction (X) such that it can be adapted to the pitch of the at least one collector row for receiving the articles and to the pitch of the setter row for discharging the articles.
11. The packaging device according to claim 10, wherein the pitch is varied during the movement from the position under the collector to the position above the setter and vice versa.
12. A packaging device for packaging substantially round articles, such as eggs or fruit, into a dimpled package having an array of pockets to receive the round articles, wherein said array comprises rows and columns, the packaging device comprising: a supply conveyor for conveying the articles in a first direction (X) and having object holders for releasably holding the articles; a package conveyor located below the supply conveyor for conveying the packages in a second direction (Y) substantially perpendicular to the first direction (X), the packages being oriented on the package conveyor such that the rows of the package extend in the first direction (X) and the columns of the package extend in the second direction (Y); a filling buffer located between the supply conveyor and the package conveyor, wherein the filling buffer in use is filled from above with articles by the supply conveyor and fills the packages on the package conveyor located below the buffer with said articles, the filling buffer comprising a plurality of parallel sub-buffers positioned next to each other seen in the second direction (Y), each sub-buffer has a plurality of stacked sub-buffer rows of releasable buffer pockets, said sub-buffer rows extending in the first direction (X) and each having a number of buffer pockets equal or greater than the number of pockets in a package row extending in the first direction (X); a setter comprising a row of releasable pockets defining a setter row which is movable up and down in a third direction (Z) perpendicular to the first direction (X) and second direction (Y), wherein, in use, the setter reciprocates between an upper position to a lower position, wherein in the upper position the articles can be received and in the lower position the articles can be discharged into the pockets of the package; wherein the packaging device furthermore comprises a transfer device comprising at least one pair of transfer rows of releasable pockets, and the setter row being associated with said pair of transfer rows, wherein the transfer device is configured and arranged to move each one of the transfer rows of the pair back and forth from a position under a sub-buffer associated with said transfer row for receiving articles from the lowest row of said sub-buffer, to a position above the setter row to discharge the articles into the setter, wherein the transfer rows of said pair are each arranged on a corresponding guiding mechanism whereby the movement of the collector rows is a combined movement, which is composed of a movement in the second direction (Y) and the third direction (Z) wherein the guiding mechanism includes a swivelling arm.
13. The packaging device according to claim 12, wherein the pitch between the pockets of the at least one pair of transfer rows of releasable pockets is variable in the first direction (X) such that it can be adapted to the pitch of the corresponding sub-buffer of the filling buffer for receiving the articles and to the pitch of the setter row for discharging the articles.
14. The packaging device according to claim 13, wherein the pitch is varied during the movement from the position under the sub-buffer to the position above the setter and vice versa.
15. A packaging device for packaging substantially round articles, such as eggs or fruit, into a dimpled package having an array of pockets to receive the round articles, wherein said array comprises rows and columns, the packaging device comprising: a supply conveyor for conveying the articles in a first direction (X) and having object holders for releasably holding the articles; a package conveyor located below the supply conveyor for conveying the packages in a second direction (Y) substantially perpendicular to the first direction (X), the packages being oriented on the package conveyor such that the rows of the package extend in the first direction (X) and the columns of the package extend in the second direction (Y); a filling buffer located between the supply conveyor and the package conveyor, wherein the filling buffer in use is filled from above with articles by the supply conveyor and fills the packages on the package conveyor located below the buffer with said articles, the filling buffer comprising a plurality of parallel sub-buffers positioned next to each other seen in the second direction (Y), each sub-buffer has a plurality of stacked sub-buffer rows of releasable buffer pockets, said sub-buffer rows extending in the first direction (X) and each having a number of buffer pockets equal or greater than the number of pockets in a package row extending in the first direction (X); wherein the packaging device furthermore comprises a transfer device comprising at least one pair of transfer rows of releasable pockets, and the package comprises a package row associated with said pair of transfer rows, wherein the transfer device is configured and arranged to move each one of the transfer rows of the pair back and forth from a position under a sub-buffer associated with said transfer row for receiving articles from the lowest row of said sub-buffer, to a position above the package row to discharge the articles into the package, wherein the transfer rows of said pair are each arranged on a corresponding guiding mechanism whereby the movement of the collector rows is a combined movement, which is composed of a movement in the second direction (Y) and the third direction (Z) wherein the guiding mechanism includes a swivelling arm.
16. The packaging device according to claim 15, wherein the pitch between the pockets of the at least one pair of transfer rows of releasable pockets is variable in the first direction (X) such that it can be adapted to the pitch of the corresponding sub-buffer of the filling buffer for receiving the articles and to the pitch of the package row for discharging the articles.
17. The packaging device according to claim 16, wherein the pitch is varied during the movement from the position under the sub-buffer to the position above the package row and vice versa.
18. A packaging device for packaging substantially round articles, such as eggs or fruit, into a dimpled package having an array of pockets to receive the round articles, wherein said array comprises rows and columns, the packaging device comprising: a supply conveyor for conveying the articles in a first direction (X) and having article holders for releasably holding the articles; a package conveyor located below the supply conveyor for conveying the packages in a second direction (Y) substantially perpendicular to the first direction (X), the packages being oriented on the package conveyor such that the rows of the package extend in the first direction (X) and the columns of the package extend in the second direction (Y); a filling buffer located between the supply conveyor and the package conveyor, wherein the filling buffer in use is filled from above with articles by the supply conveyor and fills the packages on the package conveyor located below the buffer with said articles, the filling buffer comprising a plurality of parallel sub-buffers positioned next to each other seen in the second direction (Y), each sub-buffer has a plurality of stacked sub-buffer rows of releasable buffer pockets, said sub-buffer rows extending in the first direction (X) and each having a number of buffer pockets equal or greater than the number of pockets in a package row extending in the first direction (X); a collector comprising a row of releasable pockets defining a collector row which is movable in the second direction (Y); and a setter comprising a row of releasable pockets defining a setter row which is movable up and down in a third direction (Z) perpendicular to the first direction (X) and second direction (Y), wherein, in use, the setter reciprocates between an upper position to a lower position, wherein in the upper position the articles can be received from the collector and in the lower position the articles can be discharged into the pockets of the package; wherein the collector comprises a plurality of collector rows, wherein the collector is configured and arranged to move each one of the plurality of collector rows back and forth in the second direction (Y) underneath the filling buffer to a position under any one of the sub-buffers for receiving articles from the lowest row thereof, wherein each one of the collector rows can be independently moved selectively to align with any one of the sub-buffers and to move back and forth in the second direction (Y) with filled pockets to a position above the setter to discharge the articles into the setter.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
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(14) It must be noted that there is mentioned an egg carton or a tray is often made of papier-mâché, but that the package may also be made of another material, such as plastic. This is not relevant for the invention.
(15) The packaging device 1 comprises a supply conveyor 2. The supply conveyor 2 includes article holders 3 for releasably holding the eggs. The supply conveyor 2 comprises multiple rows of article holders which are mounted to a chain or another endless element. In the egg handling industry the supply conveyor 2 is often referred to as “egg chain”. In the example of
(16) The article holders may be suspended from the chain and have moveable fingers that grip around an article such as an egg. The fingers may be moved to a spread state in which the article is released and falls down.
(17) Below the supply conveyor 2 a filling buffer 4 is arranged. The filling buffer 4 is filled from above with articles by the supply conveyor 2. The filling buffer 4 comprises a plurality of parallel sub-buffers 5 positioned next to each other seen in the Y-direction. Each sub-buffer 5 has a plurality of stacked sub-buffer rows 6 of releasable buffer pockets 7. The sub-buffer rows 6 extend in the X-direction and each have a number of buffer pockets corresponding to the maximum number of pockets in a package row extending in the X-direction. In the example in
(18) The filling buffer 4 is stationary. It receives articles, for example eggs, in its upper rows 6a from the rows of the supply conveyor 2 which move along it (in the X-direction) and release the article from the respective article holders 3, when the respective article holders 3 are located above an empty pocket 7 of the upper row 6a of the corresponding sub-buffer 5.
(19) The articles are passed on from the upper row 6a of the sub-buffer 5 to the row 6b below it by opening the pockets 7 and releasing the article to a pocket 7 in the row 6b directly below it. In the same manner the articles are passed on to the subsequent rows 6c below until the article arrives in the lowest row 6d of the sub-buffer 5. The buffer 4 is controlled such that an article is only released from a pocket 7 to a pocket 7 below it if the latter is empty and is able receive the article.
(20) Below the buffer 4 a collector 8 is arranged. The collector 8 comprises plurality of collector rows 9 of releasable pockets 10. In the specific embodiment of
(21) Below the collector 8 a setter 12 is arranged. The setter 12 in the specific embodiment of
(22) Below the setter 12 a package conveyor 15 is located. This may be an endless conveyor such as a belt conveyor on which packages 100 are placed and conveyed in the Y-direction past the setter 12. The packages 100 are oriented on the package conveyor 15 such that the rows of the package 100 extend in the X-direction and the columns of the package 100 extend in the Y-direction.
(23) In use, the setter 12 reciprocates between an upper position to a lower position, wherein in the upper position the articles can be received from the collector 8 and in the lower position the articles can be discharged into the pockets 102 of the package 100 that is positioned by the package conveyor 15 with one package row below the setter row 13.
(24) The collector 8 can move each one of the plurality of collector rows 9 back and forth in the Y-direction underneath the filling buffer 4 to a position under any one of the sub-buffers 5. Thus each one of the collector rows 9 can be moved selectively to align with any one of the sub-buffers 5, such that it can receive articles from the lowest row 6 of the selected sub-buffer 5. When articles are received in at least one of the collector rows 9 of the collector 8, this row 9 can be moved back and forth in the Y-direction with filled pockets 10 to a position above the setter 12 to discharge the articles into the setter 12.
(25) In the first embodiment only one driving mechanism is needed to move the collector rows 9, since these rows are mechanically coupled by coupling member 11. If, like in the example of
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(27) The collector of the second embodiment is indicated with reference numeral 28. Contrary to the collector 8 of the first embodiment, the collector 28 of the second embodiment has multiple rows 29, which are moveable in the Y-direction independently from each other. In particular in the embodiment of
(28) In this second embodiment the collector rows 29 are moved selectively and independent from each other to a sub-buffer 5 with a full lower row 6d. In this embodiment the device 21 can have a separate driving mechanism for each collector row 29 or a common driving mechanism with a selective driving transmission. If for example the collector 28 has two collector rows, as is shown in the example of
(29) It is envisaged that the independently moveable collector rows 29 move in the same plane. Therefore an embodiment is envisaged in which a controller, that controls the movement of the collector rows 29, is configured such that it prevents the rows 29 from colliding.
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(31) The setter of the third embodiment is indicated with reference numeral 32. Contrary to the setter 12 of the second embodiment, the setter 32 of the third embodiment has multiple rows 33, which are moveable in the Z-direction independently from each other.
(32) By this third embodiment the rows of one package 100 but also the rows of different packages 100 placed on consecutive positions on the package conveyor 12 can be filled independently by the different setter rows 33.
(33) In
(34) The collector rows 29 can be moved independently from each other in the same plane by their associated drive motor 293, 294. A controller 295 is connected to the drive motors 293, 294 and controls the movement of the collector rows 29. The controller 295 is configured such that it prevents the collector rows 29 from colliding.
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(36) The setter in the fourth embodiment is indicated by reference numeral 42. This setter has a plurality of setter rows 43, in the specific embodiment shown in
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(38) For a description of those same components is referred to the above description of the first embodiment to the fourth embodiment.
(39) The setter in the fifth embodiment is indicated by reference numeral 52. This setter 52 has a plurality of sets 54 of coupled setter rows 53, in the specific embodiment shown in
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(41) The setter in the sixth embodiment, like the setter of the third embodiment, is indicated with reference numeral 32. Contrary to the setter 12 of the first embodiment, the setter 32 of the sixth embodiment has multiple rows 33, which are moveable in the Z-direction independently from each other.
(42) By this sixth embodiment the rows of one package 100 but also the rows of different packages 100 placed on consecutive positions on the package conveyor 12 can be filled independently by the different setter rows 33.
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(44) The collector of the seventh embodiment is indicated with reference numeral 88. Contrary to the collector 28 of the second embodiment, the collector 88 of the seventh embodiment has multiple sets 87 of rows 89, which sets 87 are moveable in the Y-direction independently from each other. In the particular embodiment shown in
(45) The setter 12, just like in the second embodiment, has a single row 13 of pockets 14.
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(48) The packaging device 110 also comprises a supply conveyor, a so called “egg chain” which is not shown in
(49) The filling buffer 4 is stationary. It receives articles, for example eggs, in its upper rows 6a from the rows of the supply conveyor 2 which move along it (in the X-direction) and release the article from the respective article holders 3, when the respective article holders 3 are located above an empty pocket 7 of the upper row 6a of the corresponding sub-buffer 5.
(50) The articles are passed on from the upper row 6a of the sub-buffer 5 to the row 6b below it by opening the pockets 7 and releasing the article to a pocket 7 in the row 6b directly below it (see
(51) Below the buffer 4 a collector 8 is arranged. The collector 8 comprises a plurality of collector rows 9 of releasable pockets 10. In the specific embodiment of
(52) Below the collector 8 an intermediate transfer device 90 is arranged.
(53) Below the intermediate transfer device 90 a setter 12 is arranged. The setter 12 in the specific embodiment of
(54) The intermediate transfer device 90 comprises in the embodiment shown in
(55) It should be noted here, that also another guiding mechanism than a swivelling arm may be used to establish a composed movement in the second direction (Y) and third direction (Z) of the transfer rows.
(56) The intermediate transfer device 90 is configured and arranged to move the transfer rows 91 back and forth from a position under the collector, for receiving articles from the collector, to a position above the setter row 13 to discharge the articles into the setter 12. The transfer rows 91 of the intermediate transfer device 90 thus alternately fill the setter row 13, but it is also possible that the same transfer row 91 fills the setter row 13 multiple times in succession. The collector rows 9 can each fill any of the transfer rows 91 of the intermediate transfer device 90.
(57) Below the setter 12 a package conveyor 15 is located. This may be and endless conveyor such as a belt conveyor on which packages 100 are placed and conveyed in the Y-direction past the setter 12. The packages 100 are oriented on the package conveyor 15 such that the rows of the package 100 extend in the X-direction and the columns of the package 100 extend in the Y-direction.
(58) In use, the setter 12 reciprocates between an upper position to a lower position, wherein in the upper position the articles can be received from the transfer rows 91 and in the lower position the articles can be discharged into the pockets 102 of the package 100 that is positioned by the package conveyor 15 with one package row below the setter row 13.
(59) In
(60) In this embodiment the collector rows 29 are moved selectively and independent from each other to a sub-buffer 5 with a full lower row 6d. In this embodiment the device 21 can have a separate driving mechanism for each collector row 29 or a common driving mechanism with a selective driving transmission. If for example the collector 28 has two collector rows, as is shown in the example of
(61) It is envisaged that the independently moveable collector rows 29 move in the same plane. Therefore an embodiment is envisaged in which a controller, that controls the movement of the collector rows 29, is configured such that it prevents the rows 29 from colliding.
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(63) Using the reference numerals from the embodiment of
(64) A package conveyor 15 is located below the supply conveyor for conveying the packages 100 in a second direction (Y) substantially perpendicular to the first direction (X), the packages 100 being oriented on the package conveyor such that the rows of the package 100 extend in the first direction (X) and the columns of the package 100 extend in the second direction (Y).
(65) A filling buffer 4 is located between the supply conveyor 2 and the package conveyor 15. The filling buffer 4 in use is filled from above with articles by the supply conveyor 2 and fills the packages 100 on the package conveyor 15 located below the buffer 4 with said articles (eggs) indirectly via an intermediate mechanism.
(66) The filling buffer 4 comprises a plurality of parallel sub-buffers 5 positioned next to each other seen in the second direction (Y). Each sub-buffer 5 has a plurality of stacked sub-buffer rows 6a-6d of releasable buffer pockets 7. The sub-buffer rows 6a6d extend in the first direction (X). Each sub buffer row 6a-6d has a number of buffer pockets 7 corresponding to the number of pockets 102 in a package row extending in the first direction (X). As mentioned before it is also possible that each sub buffer row has a number of buffer pockets 7 that exceeds to the number of pockets 102 in a package row extending in the first direction (X), which sub buffer row is then only partly filled, in accordance with the size of the package, by the control software.
(67) Referring now to
(68) A setter 12 comprising a row of releasable pockets 14 defining a setter row 13 which is movable up and down in a third direction (Z) perpendicular to the first direction (X) and second direction (Y), is located below the transfer device 90. In use, the setter 12 reciprocates between an upper position to a lower position, wherein in the upper position the articles can be received from the transfer device 90 and in the lower position the articles can be discharged into the pockets 102 of the package 100.
(69) The setter 12 comprises a setter row 13 associated with said pair of transfer rows 91. The transfer device 90 is configured and arranged to move each one of the transfer rows 91 of the pair back and forth from a position under a sub-buffer 5 associated with said transfer row 91 for receiving articles from the lowest row 6d of said sub-buffer 5, to a position above the setter row 13 to discharge the articles into the setter 12.
(70) In the specific embodiment shown, the transfer rows 91 of said pair are each arranged on a corresponding swivelling arm 93 whereby the movement of the transfer rows 91 is a swivelling movement. The swivelling movement is composed of a movement in the second direction (Y) and the third direction (Z).
(71) It must be noted here, that also another guiding mechanism than a swivelling arm can be used to establish a composed movement in the second direction (Y) and third direction (Z) of the transfer rows.
(72) As mentioned the transfer mechanism 90 is configured and arranged to move the transfer rows 91 back and forth from a position under the associated sub-buffer 5, for receiving articles from the lowest row 6d thereof, to a position above the setter row 13 to discharge the articles into the setter 12. The transfer rows 91 of the pair can thus alternately fill the setter row 13, but it is also possible that the same transfer row 91 fills the setter row 13 multiple times in succession.
(73) In an alternative embodiment, which is not shown in the figures, the packaging device of
(74) In the embodiments shown in the figures the collector may have independently moveable collector rows or coupled collector rows. Also the setter may have independently moveable setter rows or coupled setter rows, or even a single setter row. It must be understood that within the scope of the invention there are more combinations of coupled, independent or single setter rows with coupled or independent collector rows than are now shown in the figures. The embodiments in the figures are thus to be considered as non-limiting examples.