Patent · US10036664B2 · B2 · US
Method and apparatus for sorting and combining fragile and varying density pieces
- (11) Publication number
- US10036664B2
- (21) Application number
- 15/089,417
- (22) Filing date
- 2016-04-01
- (30) Priority date
- 2015-04-03
- (43) Publication date
- 2018-07-31
- (45) Date of grant
- 2018-07-31
- (51) IPC
- G01G 19/52; G01G 19/393
- (52) CPC
- G01G Weighing: 19/52, 19/393
- (73) Assignee
- Bot LLC
- (72) Inventors
- Steven T. Chandler; William Tennant
- (54) Title
- Method and apparatus for sorting and combining fragile and varying density pieces
- (57) Abstract
The system and method combine a large population of varying density pieces into sets that meet a specified target weight range. This is accomplished by creating a sample size of a pre-weighed payload of varying density pieces (“pieces”) for an automated system to determine optimal combinations sets based on piece weight data. The system combines pieces into the sets within a fixed weight tolerance. Significant hurdles overcome with this approach include avoiding damage to the fragile pieces, accurate measuring very low weights. All of this is achieved at extremely high speed and precision.
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Claims (14)
- A system, comprising: one or more multi-piece weighing scales wherein each multi-piece weighing scale substantially simultaneously or simultaneously measures a weight of each piece repository on the scale, each piece repository having a tray and one or more cups that sit in the tray that contain one or more pieces of product in the piece repository so that the scale substantially simultaneously or simultaneously measures the weights of the one or more pieces of product in each piece repository; a plurality of processing bins wherein at least one processing bin receives a predetermined number of pieces of product; and a computer system that receives the weight of each piece of product in the plurality of piece repositories and generates a combination of one or more pieces to be placed into the processing bin so that a total weight of the combination of one or more pieces of product is within a predetermined weight range for the processing bin.
- The system of claim 1 further comprising a robot that places the combination of one or more pieces into the processing bin.
- The system of claim 2, wherein each piece repository further comprises a tray and one or more cups that sit in the tray wherein the robot places each tray and one or more cups onto a location on a work surface.
- The system of claim 1, wherein each piece repository further comprises a cup into which one or more pieces of product are placed.
- The system of claim 1, wherein each multi-piece weighing scale further comprises a plurality of weighing stations wherein each weighing station simultaneously measures a weight of the one or more pieces in each cup of the tray.
- The system of claim 3, wherein each multi-piece weighing scale further comprises a plurality of weighing stations wherein each weighing station simultaneously measures a weight of the one or more pieces in each cup of the tray and the robot moves the tray and the one or more cups to the location on a work surface once the weights of the cups are determined.
- The system of claim 1 further comprising a conveyor that transports the plurality of piece repositories between the one or more multi-piece weighing scales and a work surface.
- The system of claim 2 further comprising a conveyor that transports the plurality of piece repositories between the one or more multi-piece weighing scales and a work surface wherein the robot transports the plurality of piece repositories to and from a location on the work surface.
- The system of claim 1 further comprising a conveyor that transfers each piece repository to a work surface.
- The system of claim 1 further comprising a packaging unit that packages the combination of one or more pieces placed in each processing bin into a package.
- The system of claim 1 further comprising a processing unit that performs further processing on the combination of one or more pieces placed in each processing bin.
- The system of claim 1, wherein the computer system uses a predetermined weight range wherein the total weight of the combination of pieces is greater than or equal to a target weight and less than an upper control weight.
- A system, comprising: one or more multi-piece weighing scales wherein each multi-piece weighing scale substantially simultaneously or simultaneously measures a weight of each piece repository on the scale, each piece repository having one or more pieces of product in the piece repository so that the scale substantially simultaneously or simultaneously measures the weights of the one or more pieces of product in each piece repository; a plurality of processing bins wherein at least one processing bin receives a predetermined number of pieces of product; a computer system that receives the weight of each piece of product in the plurality of piece repositories and generates a combination of one or more pieces to be placed into the processing bin so that a total weight of the combination of one or more pieces of product is within a predetermined weight range for the processing bin; and a work surface onto which the plurality of piece repositories are placed, wherein the work surface further comprises a plurality of indicia wherein each indicia indicates a piece repository position on the work surface.
- A system, comprising: one or more multi-piece weighing scales wherein each multi-piece weighing scale substantially simultaneously or simultaneously measures a weight of each piece repository on the scale, each piece repository having one or more pieces of product in the piece repository so that the scale substantially simultaneously or simultaneously measures the weights of the one or more pieces of product in each piece repository; a plurality of processing bins wherein at least one processing bin receives a predetermined number of pieces of product and wherein each processing bin has an indicator identifying the processing bin; and a computer system that receives the weight of each piece of product in the plurality of piece repositories and generates a combination of one or more pieces to be placed into the processing bin so that a total weight of the combination of one or more pieces of product is within a predetermined weight range for the processing bin.
Description
The disclosure relates generally to a system and method for weighing a plurality of pieces having different weights and/or densities and determining a combination of the pieces for subsequent processing of the combination of pieces.
Weighing systems have existed that weigh pieces and combine the pieces into a package having a predetermined weight. These current weighing systems use a manual method or a “deli” weight method. The manual method requires people picking through a pile of pieces, choosing potential pieces that look and feel like they might combine to achieve the target weight and if not, then the process of substituting pieces begins until weight falls within a fixed weight tolerance. The current weighing systems have a number of problems. For example, the manual process is labor intensive, costly, inefficient and results in large variances in final weights.
The deli weight method can be done manually or automatically with a machine, but due to the inaccuracy of the process, a volumetric approach is used to estimate the weight and the final weight may not fall between upper and lower limits. The deli method has its own problems. Specifically, the deli weight method does not have the required precision and often more than the desired target weight limit is put into packages resulting in lost profit.
Some other problems with current solutions are that they are manual in nature, highly inefficient, highly inaccurate and prone to damaging pieces. This can result in high cost, reduced profits, lower quality product shipped to market, brand tarnishing and other problems.
Citations (62)
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Record as JSON
{
"publication_number": "US10036664B2",
"country": "US",
"kind": "B2",
"title": "Method and apparatus for sorting and combining fragile and varying density pieces",
"abstract": "The system and method combine a large population of varying density pieces into sets that meet a specified target weight range. This is accomplished by creating a sample size of a pre-weighed payload of varying density pieces (“pieces”) for an automated system to determine optimal combinations sets based on piece weight data. The system combines pieces into the sets within a fixed weight tolerance. Significant hurdles overcome with this approach include avoiding damage to the fragile pieces, accurate measuring very low weights. All of this is achieved at extremely high speed and precision.",
"claims": [
"1. A system, comprising: one or more multi-piece weighing scales wherein each multi-piece weighing scale substantially simultaneously or simultaneously measures a weight of each piece repository on the scale, each piece repository having a tray and one or more cups that sit in the tray that contain one or more pieces of product in the piece repository so that the scale substantially simultaneously or simultaneously measures the weights of the one or more pieces of product in each piece repository; a plurality of processing bins wherein at least one processing bin receives a predetermined number of pieces of product; and a computer system that receives the weight of each piece of product in the plurality of piece repositories and generates a combination of one or more pieces to be placed into the processing bin so that a total weight of the combination of one or more pieces of product is within a predetermined weight range for the processing bin.",
"2. The system of claim 1 further comprising a robot that places the combination of one or more pieces into the processing bin.",
"3. The system of claim 2, wherein each piece repository further comprises a tray and one or more cups that sit in the tray wherein the robot places each tray and one or more cups onto a location on a work surface.",
"4. The system of claim 1, wherein each piece repository further comprises a cup into which one or more pieces of product are placed.",
"5. The system of claim 1, wherein each multi-piece weighing scale further comprises a plurality of weighing stations wherein each weighing station simultaneously measures a weight of the one or more pieces in each cup of the tray.",
"6. The system of claim 3, wherein each multi-piece weighing scale further comprises a plurality of weighing stations wherein each weighing station simultaneously measures a weight of the one or more pieces in each cup of the tray and the robot moves the tray and the one or more cups to the location on a work surface once the weights of the cups are determined.",
"7. The system of claim 1 further comprising a conveyor that transports the plurality of piece repositories between the one or more multi-piece weighing scales and a work surface.",
"8. The system of claim 2 further comprising a conveyor that transports the plurality of piece repositories between the one or more multi-piece weighing scales and a work surface wherein the robot transports the plurality of piece repositories to and from a location on the work surface.",
"9. The system of claim 1 further comprising a conveyor that transfers each piece repository to a work surface.",
"10. The system of claim 1 further comprising a packaging unit that packages the combination of one or more pieces placed in each processing bin into a package.",
"11. The system of claim 1 further comprising a processing unit that performs further processing on the combination of one or more pieces placed in each processing bin.",
"12. The system of claim 1, wherein the computer system uses a predetermined weight range wherein the total weight of the combination of pieces is greater than or equal to a target weight and less than an upper control weight.",
"13. A system, comprising: one or more multi-piece weighing scales wherein each multi-piece weighing scale substantially simultaneously or simultaneously measures a weight of each piece repository on the scale, each piece repository having one or more pieces of product in the piece repository so that the scale substantially simultaneously or simultaneously measures the weights of the one or more pieces of product in each piece repository; a plurality of processing bins wherein at least one processing bin receives a predetermined number of pieces of product; a computer system that receives the weight of each piece of product in the plurality of piece repositories and generates a combination of one or more pieces to be placed into the processing bin so that a total weight of the combination of one or more pieces of product is within a predetermined weight range for the processing bin; and a work surface onto which the plurality of piece repositories are placed, wherein the work surface further comprises a plurality of indicia wherein each indicia indicates a piece repository position on the work surface.",
"14. A system, comprising: one or more multi-piece weighing scales wherein each multi-piece weighing scale substantially simultaneously or simultaneously measures a weight of each piece repository on the scale, each piece repository having one or more pieces of product in the piece repository so that the scale substantially simultaneously or simultaneously measures the weights of the one or more pieces of product in each piece repository; a plurality of processing bins wherein at least one processing bin receives a predetermined number of pieces of product and wherein each processing bin has an indicator identifying the processing bin; and a computer system that receives the weight of each piece of product in the plurality of piece repositories and generates a combination of one or more pieces to be placed into the processing bin so that a total weight of the combination of one or more pieces of product is within a predetermined weight range for the processing bin."
],
"description_excerpt": "The disclosure relates generally to a system and method for weighing a plurality of pieces having different weights and/or densities and determining a combination of the pieces for subsequent processing of the combination of pieces.\n\nWeighing systems have existed that weigh pieces and combine the pieces into a package having a predetermined weight. These current weighing systems use a manual method or a “deli” weight method. The manual method requires people picking through a pile of pieces, choosing potential pieces that look and feel like they might combine to achieve the target weight and if not, then the process of substituting pieces begins until weight falls within a fixed weight tolerance. The current weighing systems have a number of problems. For example, the manual process is labor intensive, costly, inefficient and results in large variances in final weights.\n\nThe deli weight method can be done manually or automatically with a machine, but due to the inaccuracy of the process, a volumetric approach is used to estimate the weight and the final weight may not fall between upper and lower limits. The deli method has its own problems. Specifically, the deli weight method does not have the required precision and often more than the desired target weight limit is put into packages resulting in lost profit.\n\nSome other problems with current solutions are that they are manual in nature, highly inefficient, highly inaccurate and prone to damaging pieces. This can result in high cost, reduced profits, lower quality product shipped to market, brand tarnishing and other problems.",
"cpc": [
"G01G 19/52",
"G01G 19/393"
],
"ipc": [
"G01G 19/52",
"G01G 19/393"
],
"assignees": [
"Bot LLC"
],
"inventors": [
"Steven T. Chandler",
"William Tennant"
],
"filing_date": "2016-04-01",
"publication_date": "2018-07-31",
"grant_date": "2018-07-31",
"priority_date": "2015-04-03",
"application_number": "US-201615089417-A",
"family_id": "57007319",
"cited_by_count": 4,
"citations": [
"US4267894A",
"US4388975A",
"US4444282A",
"US4442910A",
"US4428179A",
"GB2116732A",
"CA1213620A",
"US4605082A",
"US4708215A",
"DE3500076A1",
"US4610323A",
"EP0210005A2",
"CA1261362A",
"US4782454A",
"US4720961A",
"US4753306A",
"US4838368A",
"US4821820A",
"US4972882A",
"US5040625A",
"US5191947A",
"US5321212A",
"EP0597116A1",
"JP3088751B2",
"WO1993023724A1",
"CN1089062C",
"EP0743509A2",
"US5760342A",
"US5889235A",
"US6271486B1",
"JP3647549B2",
"US5753792A",
"US6122895A",
"US6374984B1",
"US6285918B1",
"US7258237B2",
"US6268571B1",
"US6705827B2",
"US7004331B2",
"WO2003097141A2",
"GB2389316A",
"JP2004026191A",
"US6881907B2",
"US6978882B2",
"US8222543B2",
"US7775373B2",
"US20090152785A1",
"US7279644B1",
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"US20100100241A1",
"JP2010112779A",
"US8910630B2",
"US9228884B2",
"US20140027186A1",
"US20120207574A1",
"US20130232021A1",
"US9217661B2",
"US8753696B1",
"US20140324660A1",
"US20140287068A1",
"US20140298511A1",
"CN103497823A"
]
}
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