EP0721807B1 - Handling installation - Google Patents
Handling installation Download PDFInfo
- Publication number
- EP0721807B1 EP0721807B1 EP95250308A EP95250308A EP0721807B1 EP 0721807 B1 EP0721807 B1 EP 0721807B1 EP 95250308 A EP95250308 A EP 95250308A EP 95250308 A EP95250308 A EP 95250308A EP 0721807 B1 EP0721807 B1 EP 0721807B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- data
- goods
- conveyor
- conveyed
- data memory
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Lifetime
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Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B07—SEPARATING SOLIDS FROM SOLIDS; SORTING
- B07C—POSTAL SORTING; SORTING INDIVIDUAL ARTICLES, OR BULK MATERIAL FIT TO BE SORTED PIECE-MEAL, e.g. BY PICKING
- B07C5/00—Sorting according to a characteristic or feature of the articles or material being sorted, e.g. by control effected by devices which detect or measure such characteristic or feature; Sorting by manually actuated devices, e.g. switches
- B07C5/36—Sorting apparatus characterised by the means used for distribution
- B07C5/361—Processing or control devices therefor, e.g. escort memory
Definitions
- the invention relates to a control system for conveyor systems, in particular for General cargo sorting systems, with the conveyed data of the conveyed goods in a data memory are stored and can be fed to the control devices of the conveyor line devices are.
- EP-A-0 489 267 is concerned with a sorting device for reusable packaging which is passed through a recognition device and a device for goods-related allocation is marked.
- a bottle for example, is initially recognized in terms of their shape and color, this bottle being given an identification index becomes. This index is compared with an index stored in a computer, so that if there is a match, the bottle is assigned to a specific assigned sorter can be.
- the invention has for its object the electrical and / or mechanical elaborate data tracking of the conveyed goods by the electrical and / or to replace mechanical effort reducing solution.
- the object is achieved in that the material to be conveyed by means of a recording camera whose signals Image processing can be processed, subjected to an optical input identification and characteristics of the material to be conveyed are stored in a characteristics data memory that data about a location-dependent position and a command for the subsequent conveyor sections continuously in the Characteristics data stores are managed and processed in such a way that the Conveyed goods in each case by means of at several points on the conveyor section Recording cameras arranged at fixed locations optically identified again and compared with the data already stored and if the data match, the other commands to the Adjustment devices of the conveyor track devices for sorting operations become. This eliminates an electrically and mechanically complex Data tracking.
- this optical identification by means of one at a time Fixed location arranged recording camera, whose signals are over Image processing can be edited.
- the recording cameras signals of color saturation, shape, gray values, reflection values and the like. are evaluable.
- this optical identification can be supported by additionally signals from inductive metal sensors, capacitive sensors, light sensors, Encoders and the like managed in the data storage and after processing on the Setting devices are given.
- the material to be conveyed 2 becomes an optical one Input identification 7 subjected, depending on the type of goods to be conveyed 2a and / or Conveyed goods color 2b and the like Criteria, the peculiarities of the conveyed good 2 in one Data storage 8 are stored for characteristics. This data will last as long the material to be conveyed 2 is on one of the conveyor sections 9a, 9b, 9c, 9d etc. is held in the data memory 8 which e.g. through associative memory or neural networks can be formed.
- the material to be conveyed 2 can thus be reached when Recording camera K2 or K3 can be identified by the newly recorded Data with those already determined in the recording camera K1 and in the data memory 8 existing data are compared. If the data match - being a Degree of agreement in essential criteria is sufficient - can then further commands to the actuators of conveyor line devices 11, such as e.g. be given to a pusher 10. By default, a Target identification 12 actuates a control 13, which in turn actuates the devices a conveyor section device 11 acts.
- the work of the recording cameras K1, K2, K3 is completely independent of that Slippage of the material to be conveyed 2 on the conveyor belt 5, also from Conveying speed dependent on the conveyed material on roller conveyors, as well as on the offset in cornering and of displacements of the material 2 on incline and Downgrades. Also a handover from a fully occupied and therefore slower belt conveyor running on an empty, faster running belt conveyor or other conveyor is in terms of through the recording cameras K1, K2, K3 etc. given identification practically irrelevant.
- the identification obtained via the cameras K1, K2, K3 as a rough knowledge of the Order of goods to be conveyed can make identification much easier.
- the camera system "knows" what to look for.
- the disadvantage of being direct Data tracking necessary labeling or coding of the conveyed goods 2 can be circumvented.
- the barcodes, transponders, responders used so far (Readable or read-readable code carrier) and the like. are therefore no longer necessary and mean a considerable saving of effort.
- the material to be conveyed 2 is fed into the system, e.g. in the conveyance task 4 of the conveyor belt 5, identified by the recording camera K1, i.e. "measure” and the characteristics of the material to be conveyed 2 are stored in the characteristics data memory 8 stored.
- the characteristics data memory 8 stored.
- essential data are already compared with those in the Characteristics data memory 8 compared existing data and accordingly
- the material to be conveyed 2 could immediately follow the predetermined transport route there can be discharged via the pusher 10. The process takes place analogously for the Recording camera K2 and any number of other discharge points instead.
Landscapes
- Control Of Conveyors (AREA)
- Sorting Of Articles (AREA)
- Discharge Of Articles From Conveyors (AREA)
Description
Die Erfindung betrifft eine Steuerung für fördertechnische Anlagen, insbesondere für Stückgut-Sortieranlagen, bei der Förderdaten des Fördergutes in einem Datenspeicher abgelegt sind und den Stelleinrichtungen der Förderstrecken-Vorrichtungen zuleitbar sind.The invention relates to a control system for conveyor systems, in particular for General cargo sorting systems, with the conveyed data of the conveyed goods in a data memory are stored and can be fed to the control devices of the conveyor line devices are.
Bei den bekannten fördertechnischen Anlagen, die Sortieranlagen bilden, kann man
zwischen
Um die indirekte Datenverfolgung zu gewährleisten (realisiert durch z.B. Schieberegister, mitlaufende Pointer u.dgl.), muß ein bedeutender Aufwand in der Steuerungs-Software betrieben werden, und unkontrollierte Fördergutbewegungen auf dem Fördermedium (z.B. Förderband) müssen soweit wie möglich durch mechanische oder elektrische Vorkehrungen unterbunden werden. So werden z.B. mechanische Geschwindigkeitskopplungen durch Getriebe, Geschwindigkeitsregler, Servomotore u.dgl. eingesetzt. Trotzdem sind oft Abweichungen von der theoretisch gewollten Lage nicht zu vermeiden. So tritt zwischen Fördermedium und Fördergut nicht selten Schlupf auf. Auf Rollenförderern ist die Fördergeschwindigkeit vom Fördergut abhängig. In Kurvenfahrten tritt ein nachteiliger Versatz auf. Auf Steigungs- und Gefällestrecken sind Verschiebungen zwischen dem Fördergut und dem Fördermedium oft unvermeidlich. Bei Übergabe des Fördergutes von einem vollbesetzten und damit langsamer laufenden Bandförderer auf einen leeren, schneller laufenden, sind ebenfalls Abweichungen der Lage des Fördergutes zu verzeichnen.To ensure indirect data tracking (implemented by e.g. Shift registers, moving pointers and the like), must be a significant effort in the Control software operated, and uncontrolled material movements on the conveying medium (e.g. conveyor belt) must be as far as possible by mechanical or electrical precautions are prevented. For example, mechanical Speed coupling through gearbox, speed controller, servo motors etc.. used. Nevertheless, there are often deviations from the theoretically desired situation can not be avoided. It is not uncommon for there to be a difference between the medium and the material being conveyed Slip on. On roller conveyors, the conveying speed is from the material to be conveyed dependent. A disadvantageous offset occurs when cornering. On incline and Downhill gradients are shifts between the goods to be conveyed and the Fluid often inevitable. When the goods are handed over by one fully occupied and therefore slower running belt conveyor to an empty, faster current, there are also deviations in the location of the conveyed goods.
Die EP-A-0 489 267 befasst sich mit einer Sortiereinrichtung für Mehrwegverpackungen, die durch eine Erkennungseinrichtung und eine Einrichtung zur warengerechten Zuordnung gekennzeichnet ist. Dabei erfolgt zunächst eine Erkennung beispielsweise einer Flasche hinsichtlich deren Form und Farbe, wobei dieser Flasche ein Identifikationsindex gegeben wird. Dieser Index wird mit einem in einem Rechner abgelegten Index verglichen, so dass bei Übereinstimmung die Flasche einem bestimmten zugeordneten Sorter zugeordnet werden kann.EP-A-0 489 267 is concerned with a sorting device for reusable packaging which is passed through a recognition device and a device for goods-related allocation is marked. A bottle, for example, is initially recognized in terms of their shape and color, this bottle being given an identification index becomes. This index is compared with an index stored in a computer, so that if there is a match, the bottle is assigned to a specific assigned sorter can be.
Das Prinzip dieser Lösung besteht also darin, bestimmte Warenkriterien von vornherein im Rechner abzulegen, beispielsweise braune Flasche - grüne Flasche; hohe Flasche - niedrige Flasche; dicke Flasche - dünne Flasche. Durch die Identifikation der über den Förderer zugeführten Flasche kann nun die jeweils in Form, Farbe und Größe richtige Flasche an den richtigen Lagerplatz geleitet und dort ausgelagert werden. Dieses System setzt allerdings unabdingbar voraus, dass die zu befördernde und zu sortierende Ware vorher bekannt ist und die bekannten Identifikationsmerkmale so abgelegt sind, dass sie bestimmten Sortiereinrichtungen zuordenbar sind.The principle of this solution is therefore to determine certain product criteria from the outset Store calculator, for example brown bottle - green bottle; high bottle - low Bottle; thick bottle - thin bottle. By identifying who the sponsor is The bottle supplied can now be supplied with the correct bottle in shape, color and size correct storage location and be outsourced there. However, this system sets It is essential that the goods to be transported and sorted are known beforehand and the known identification features are stored in such a way that they determine Sorting devices can be assigned.
Der Erfindung liegt die Aufgabe zugrunde, die elektrisch und/oder mechanisch aufwendige Datenverfolgung des Fördergutes durch eine den elektrischen und/oder mechanischen Aufwand verringernde Lösung zu ersetzen.The invention has for its object the electrical and / or mechanical elaborate data tracking of the conveyed goods by the electrical and / or to replace mechanical effort reducing solution.
Die gestellte Aufgabe wird erfindungsgemäß dadurch gelöst, daß das Fördergut mittels einer Aufnahme-Kamera, deren Signale über Bildverarbeitung aufbereitbar sind, einer optischen Eingangs-Identifikation unterzogen wird und Charakteristika des Fördergutes in einem Charakteristika-Datenspeicher abgespeichert werden, dass Daten über eine ortsabhängige Position und eine Befehlsvergabe für die nachfolgenden Förderstreckenabschnitte fortlaufend in dem Charakteristika-Datenspeicher verwaltet und derart verarbeitet werden, dass das Fördergut jeweils mittels an mehreren Stellen der Förderstreckenabschnitte an festgelegten Standorten angeordneter Aufnahme-Kameras erneut optisch identifiziert und mit den bereits gespeicherten Daten verglichen wird und bei Übereinstimmung der Daten sofort anschließend die weiteren Befehle an die Stelleinrichtungen der Förderstrecken-Vorrichtungen für Sortiervorgänge gegeben werden. Dadurch entfällt eine elektrisch und mechanisch aufwendige Datenverfolgung. Ferner ist der Umstand, einen höheren mechanischen Aufwand betreiben zu müssen, um das Fördergut gegen Verschiebungen abzusichern, nicht mehr relevant. Damit werden insgesamt der Aufwand und die Kosten gesenkt aufgrund eines geringeren Aufwandes in der Mechanik der fördertechnischen Anlagen, eines geringeren Steuerungsaufwandes sowie der Ersparung besonderer Informationsträger am Fördergut.The object is achieved in that the material to be conveyed by means of a recording camera whose signals Image processing can be processed, subjected to an optical input identification and characteristics of the material to be conveyed are stored in a characteristics data memory that data about a location-dependent position and a command for the subsequent conveyor sections continuously in the Characteristics data stores are managed and processed in such a way that the Conveyed goods in each case by means of at several points on the conveyor section Recording cameras arranged at fixed locations optically identified again and compared with the data already stored and if the data match, the other commands to the Adjustment devices of the conveyor track devices for sorting operations become. This eliminates an electrically and mechanically complex Data tracking. Furthermore, the fact is a higher mechanical effort not to have to operate in order to secure the goods against displacement more relevant. Overall, the effort and costs are reduced due to less effort in the mechanics of the conveyor systems, a lower control effort and the saving of special Information carrier on the material to be conveyed.
Vorteilhaft ist weiterhin, daß diese optische Identifikation jeweils mittels einer an einem festgelegten Standort angeordneten Aufnahme-Kamera erfolgt, deren Signale über Bildverarbeitung aufbereitbar sind. It is also advantageous that this optical identification by means of one at a time Fixed location arranged recording camera, whose signals are over Image processing can be edited.
Nach weiteren Merkmalen wird vorgeschlagen, daß über die Aufnahme-Kameras jeweils Signale der Farbsättigung, der Formgebung, Grauwerte, Reflexionswerte u.dgl. auswertbar sind.According to further features, it is proposed that the recording cameras signals of color saturation, shape, gray values, reflection values and the like. are evaluable.
Diese optische Identifikation kann erforderlichenfalls unterstützt werden, indem zusätzlich Signale von induktiven Metallsensoren, kapazitiven Sensoren, Lichttastem, Impulsgebern u.dgl. im Datenspeicher verwaltet und nach Verarbeitung auf die Stelleinrichtungen gegeben werden.If necessary, this optical identification can be supported by additionally signals from inductive metal sensors, capacitive sensors, light sensors, Encoders and the like managed in the data storage and after processing on the Setting devices are given.
In der einzigen Figur der Zeichnung ist ein Ausführungsbeispiel dargestellt, das im folgenden näher beschrieben wird.In the single figure of the drawing, an embodiment is shown, which in following is described in more detail.
Die bisherige indirekte Datenverfolgung an sich und die dafür notwendigen
elektrischen und mechanischen Voraussetzungen können aufgrund der
erfindungsgemäßen Maßnahmen unterbleiben. In der Zeichnung ist in Form eines
Blockschaltbildes als fördertechnische Anlage eine Stückgut-Sortieranlage 1
ausschnittsweise dargestellt. Förderdaten des Fördergutes 2 sind in einem
Datenspeicher 3 abgelegt. Das Fördergut 2 besteht aus Stückgut der
unterschiedlichsten Form 2a bzw. Farbe bzw. Farben 2b. Es wird an einer Fördergut-Aufabe
4 auf ein Förderband 5 aufgegeben. An einem festgelegten Standort 6, wie
z.B. der Fördergut-Aufgabe 4, ist jeweils eine Aufnahme-Kamera K1, K2, K3 usw. fest
installiert.The previous indirect data tracking itself and the necessary for it
electrical and mechanical requirements can be due to
Measures according to the invention are omitted. In the drawing is in the form of a
Block diagram as a conveyor system for a general cargo sorting system 1
shown in sections. Funding data for
Aufgrund dieser Kameras K1, K2, K3 usw. wird das Fördergut 2 einer optischen
Eingangs-Identifikation 7 unterzogen, wobei je nach Fördergut-Form 2a und/oder
Fördergut-Farbe 2b u.dgl. Kriterien, die Eigentümlichkeiten des Fördergutes 2 in einem
Datenspeicher 8 für Charakteristika abgelegt werden. Diese Daten werden, solange
sich das Fördergut 2 auf einem der Förderstrecken-Abschnitte 9a, 9b, 9c, 9d usw.
befindet, in dem Datenspeicher 8 gehalten, der z.B. durch assoziative Speicher oder
neuronale Netze gebildet sein kann. So kann das Fördergut 2 bei Erreichen der
Aufnahme-Kamera K2 oder K3 identifiziert werden, indem die neu aufgenommenen
Daten mit den bereits in der Aufnahme-Kamera K1 ermittelten und im Datenspeicher 8
vorhandenen Daten verglichen werden. Bei Übereinstimmung der Daten - wobei ein
Grad der Übereinstimmung in wesentlichen Kriterien genügt - können daraufhin die
weiteren Befehle an die Stelleinrichtungen von Förderstrecken-Vorrichtungen 11, wie
z.B. an einen Pusher 10 gegeben werden. Dabei wird durch eine Vorgabe einer
Zielidentifikation 12 eine Ansteuerung 13 betätigt, die ihrerseits die Stelleinrichtungen
einer Förderstrecken-Vorrichtung 11 beaufschlägt.On the basis of these cameras K1, K2, K3 etc., the material to be conveyed 2 becomes an optical one
Die Arbeit der Aufnahme-Kameras K1, K2, K3 ist völlig unabhängig von dem
auftretenden Schlupf des Fördergutes 2 auf dem Förderband 5, ebenso von vom
Fördergut abhängiger Fördergeschwindigkeit auf Rollenförderern, ebenso vom Versatz
in Kurvenfahrt und von Verschiebungen des Fördergutes 2 auf Steigungs- und
Gefällestrecken. Auch eine Übergabe von einem vollbesetzten und damit langsamer
laufenden Bandförderer auf einen leeren, schneller laufenden Bandförderer oder
anderen Förderer ist im Hinblick auf die durch die Aufnahme-Kameras K1, K2, K3 usw.
gegebene Identifikation praktisch ohne Bedeutung.The work of the recording cameras K1, K2, K3 is completely independent of that
Slippage of the material to be conveyed 2 on the
Die über die Kameras K1, K2, K3 erhaltene Identifikation als grobe Kenntnis der
Fördergut-Reihenfolge kann die Identifikation wesentlich erleichtern. Das Kamera-System
"weiß", worauf es achten muß. Auch der Nachteil der bei der direkten
Datenverfolgung notwendigen Kennzeichnung oder Codierung des Fördergutes 2 kann
umgangen werden. Die bisher verwendeten Barcodes, Transponder, Responder
(lesbare bzw. schreib-lesbare Codeträger) u.dgl. sind daher nicht mehr erforderlich
und bedeuten eine erhebliche Aufwandsersparnis.The identification obtained via the cameras K1, K2, K3 as a rough knowledge of the
Order of goods to be conveyed can make identification much easier. The camera system
"knows" what to look for. Also the disadvantage of being direct
Data tracking necessary labeling or coding of the conveyed
Die Funktionsweise der Steuerung ist wie folgt:The control works as follows:
Das Fördergut 2 wird bei Einspeisung in die Anlage, z.B. in die Fördergut-Aufgabe 4
des Förderbandes 5, von der Aufnahme-Kamera K1 identifiziert, d.h. "vermessen" und
die Charakteristika des Fördergutes 2 werden im Charakteristika-Datenspeicher 8
abgespeichert. Sobald das Fördergut 2 den Standort 6 der Aufnahme-Kamera K2
erreicht hat, wird es erneut identifiziert, Wesensdaten werden mit denen bereits im
Charakteristika-Datenspeicher 8 vorhandenen Daten verglichen und entsprechend
dem vorgegebenen Transportweg könnte das Fördergut 2 dort sofort anschließend
über den Pusher 10 ausgeschleust werden. Der Vorgang findet analog für die
Aufnahme-Kamera K2 und beliebig viele weitere Ausschleusstellen statt. Während des
Transportvorganges ist der Steuerung die genaue Lage des Fördergutes 2 und die
Zuordnung der Daten nicht bekannt. Jegliche Datenverfolgung und alle Vorkehrungen,
damit das Fördergut 2 sich nicht unzulässig zueinander bewegt und verschiebt,
können unterbleiben. The material to be conveyed 2 is fed into the system, e.g. in the conveyance task 4
of the
- 11
- Stückgut-SortieranlageCargo sorting
- 22
- Fördergutconveyed
- 2a2a
- Fördergut-FormConveyed shape
- 2b2 B
- Fördergut-Farbe(n)Conveyed color (s)
- 33
- Datenspeicherdata storage
- 44
- Fördergut-AufgabeConveyed task
- 55
- Förderbandconveyor belt
- 6.6th
- StandortLocation
- K1,K2,K3K1, K2, K3
- Aufnahme-KamerasRecording cameras
- 77
- Eingangs-IdentifikationInput identification
- 88th
- Charakteristika-DatenspeicherCharacteristics data storage
- 9a, 9b, 9c, 9d9a, 9b, 9c, 9d
- Förderstrecken-AbschnitteConveying line sections
- 1010
- Pusherpusher
- 1111
- Förderstrecken-VorrichtungConveying line device
- 1212
- Ziel-IdentifikationTarget identification
- 1313
- Ansteuerungcontrol
Claims (3)
- Materials handling plant, in particular a sorting plant for mixed goods, in which data on the goods which are being handled are held in a data memory and can be passed to the setting controls of the conveyor,
characterised by the fact that
the goods being conveyed (2) are subjected to an initial optical identification process (7) by means of a camera, the signals from which are processed by image processing, and characteristics of the goods are stored in a characteristics data memory (8), that data relating to a location-dependent position and to the issue of instructions for subsequent sections of the conveyor (9a, 9b, 9c, 9d) are continuously handled in the data memory (8) and are processed in such a way that the goods (2) are again identified optically by means of cameras (K1, K2, K3 etc.) placed at fixed locations at several places in the conveyor sections (9a, 9b, 9c, 9d) and are compared with the stored data, and if the data match, further instructions are passed immediately to the setting controls of the conveyor (11) for the sorting processes. - Materials handling plant as in Claim 1,
characterised by the fact that
the cameras (K1, K2, K3) permit the evaluation of signals showing colour saturation, shape, grey-scale values, reflectance values and similar. - Materials handling plant as in one of Claims 1 or 2,
characterised by the fact that
signals from inductive metal sensors, capacitance sensors, light scanners, pulse generators or similar are additionally handled in the data memory and are passed to the setting controls after being processed.
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE19501996 | 1995-01-11 | ||
DE19501996A DE19501996C2 (en) | 1995-01-11 | 1995-01-11 | Control for conveyor systems |
Publications (3)
Publication Number | Publication Date |
---|---|
EP0721807A2 EP0721807A2 (en) | 1996-07-17 |
EP0721807A3 EP0721807A3 (en) | 1998-02-04 |
EP0721807B1 true EP0721807B1 (en) | 2002-03-13 |
Family
ID=7752140
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP95250308A Expired - Lifetime EP0721807B1 (en) | 1995-01-11 | 1995-12-20 | Handling installation |
Country Status (3)
Country | Link |
---|---|
EP (1) | EP0721807B1 (en) |
DE (2) | DE19501996C2 (en) |
ES (1) | ES2173938T3 (en) |
Families Citing this family (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE19751862C2 (en) * | 1997-11-22 | 2002-09-19 | Lutz Priese | Method and device for identifying and sorting belt-conveyed objects |
DE10051932A1 (en) * | 2000-10-19 | 2002-05-08 | Psb Gmbh Materialflus & Logist | Manual/partly automatic delivery of items to conveyor path involves matching conveyor speeds so gap for item placement always exists when passing items between conveyors |
DE102009036626A1 (en) * | 2009-08-07 | 2011-02-10 | Siemens Aktiengesellschaft | Method and device for transporting objects to image-pattern-dependent destination points |
ES2528867B1 (en) * | 2013-08-12 | 2016-02-26 | Universidad De Leon | EQUIPMENT FOR AUTOMATIC CLASSIFICATION OF PARTS. |
CN106670116B (en) * | 2017-01-24 | 2023-03-31 | 杭州电子科技大学 | Magnetic material detects and sorting device |
CN106865159B (en) * | 2017-03-21 | 2019-01-18 | 苏州金峰物联网技术有限公司 | Intersect the lower packet control method and system of eyelet wire sorting system |
Family Cites Families (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE2162133C3 (en) * | 1971-12-15 | 1978-03-23 | Demag Ag, 4100 Duisburg | Control device for a piece goods distribution system |
DE3522437A1 (en) * | 1985-06-22 | 1987-01-02 | Mannesmann Ag | Method and device for destination control for a conveyor system |
GB8618298D0 (en) * | 1986-07-26 | 1986-09-03 | Willett Int Ltd | Transport ordering system |
US4792049A (en) * | 1986-12-22 | 1988-12-20 | Carrier Vibrating Equipment, Inc. | System and process for sorting and conveying articles |
FI906017A (en) * | 1990-12-05 | 1992-06-06 | Halton Oy | FOERFARANDE FOER ANORDNING VID SORTERING AV RETURFOERBACKNINGAR AV RETURFLASKOR, BURKAR M.M. |
-
1995
- 1995-01-11 DE DE19501996A patent/DE19501996C2/en not_active Expired - Fee Related
- 1995-12-20 ES ES95250308T patent/ES2173938T3/en not_active Expired - Lifetime
- 1995-12-20 DE DE59510110T patent/DE59510110D1/en not_active Expired - Fee Related
- 1995-12-20 EP EP95250308A patent/EP0721807B1/en not_active Expired - Lifetime
Also Published As
Publication number | Publication date |
---|---|
DE19501996C2 (en) | 1996-12-12 |
DE59510110D1 (en) | 2002-04-18 |
EP0721807A2 (en) | 1996-07-17 |
ES2173938T3 (en) | 2002-11-01 |
DE19501996A1 (en) | 1996-07-18 |
EP0721807A3 (en) | 1998-02-04 |
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