This invention relates to a refrigeration unit such as a refrigerated counter, horizontal deep freezer, or vertical display cabinet, having a refrigeration chamber for accommodating goods and surrounded by a base group, a front group, and a back group, and having a stack marking device
A refrigeration unit of this kind is disclosed in Austrian Patent Reference AT 509 937 A2 and another is disclosed, for example, in German Patent Reference DE 20 2016 000 889 U1. In order to insure that the displayed goods are sufficiently refrigerated to keep them fresh, indications or markings are generally present or provided in the refrigeration chamber and can be used by the operating personnel to monitor that a stack height to be maintained is not exceeded. But such a monitoring is not always guaranteed, particularly in self-service counters, for example.
One object of this invention is to provide a refrigeration unit of the type mentioned above but, which provides reliable monitoring of a stack height that is to be maintained.
This object and others are achieved with features described in this specification and the claims. In this case, the stack marking device is embodied as a monitoring apparatus that operates based on electromagnetic beams, in particular IR radiation, and has a transmitter device that emits beams, a receiver device that receives the beams, and an evaluation unit that processes their output signals.
These measures automatically detect when refrigerated goods exceed a stack height that is to be maintained in the refrigeration chamber. The application can be advantageously used in refrigeration units such as refrigerated counters or horizontal deep freezers, but also in vertical display cabinets or refrigerated islands, for example.
To provide a reliable monitoring during operation, the beams are positioned so that they extend in a grid or array in at least one plane, preferably a horizontal plane.
In one embodiment for a precise possible monitoring, the transmitter device has multiple transmitters and/or the receiver device has multiple receivers.
In this context, other advantageous embodiments for the design and function include of the fact that transmitters and receivers that are associated with each other are positioned on different sides of the refrigeration chamber or are positioned on the same side and the beams are deflected between the transmitter and receiver by a reflector device.
In this case, transmitters and receivers that are associated with each other can be positioned on opposite sides, for example in the side regions extending at right angles to the front side and back side in the depth direction or can be positioned along the front side and/or back side extending in the longitudinal direction or alternatively or additionally, can be positioned along all four sides or also along only one side, with the beams being correspondingly deflected to each associated receiver by the reflector device.
In one embodiment, the transmitter device and the receiver device, possibly with their electrical contacts and cabling, are positioned in one or more strips.
In other embodiments, the evaluation unit has a detector device for detecting a chronological influence on the output signals caused by an intervention in the refrigeration chamber and/or for detecting a relatively slight local influence on the output signals caused by a foreign object, such as a price tag in the refrigeration chamber.
Through appropriate signal evaluation in the evaluation unit, it is possible, for example, to distinguish whether an operator has performed a temporary intervention in the refrigeration chamber in order to remove a product, in which case an appropriate chronological evaluation can be carried out, for example over a predetermined period of time. In addition or alternatively, an object that is foreign to the refrigerated goods can be disregarded in the signaling of the stack height, for example by allowing or setting a certain degree of vagueness in the signal strength of the output signals so that adhesive price tags are not included in the determination of the stack height or are ignored by the monitoring. Statistical chronological and/or local evaluation methods can also be used.
The maintenance of the stack height can be easily determined by operating personnel if the monitoring apparatus has an electrically controlled optical and/or acoustic display device.
In other embodiments, the evaluation unit is positioned inside a control unit of the refrigeration unit or outside this control unit. A separate embodiment and placement of the evaluation unit particularly permits or facilitates retrofitting.
This invention is described in greater detail in view of embodiments with reference to the drawings, wherein:
As one exemplary embodiment of a refrigeration unit
In the refrigerated counter 1 according to
The stack marking device 6 has a monitoring apparatus 60 for electronically monitoring a maximum stack height or filling height that is to be maintained and not exceeded, which operates based on electromagnetic beams, particularly in the invisible infrared range of the electromagnetic spectrum.
By way of example,
In order to reliably detect the stack height, the beams 63 are aimed in a pattern of a light grid or array in a plane corresponding to the stack height, spaced a predetermined distance from the bottom platform that corresponds to the stack height that is to be maintained so that it is also possible to detect and signal the presence of individual refrigerated goods that protrude up beyond the stack height that is to be maintained.
The monitoring apparatus 60 has an evaluation unit 75 for output signals emitted by the receiver device 62, which unit together with a triggering circuit for the stack marking device is positioned inside a control unit 30 of the refrigerated counter 1 or refrigeration unit, for example, or is positioned separate from this and can thus be easily retrofitted. With an electronic circuit or with the inclusion of a computing circuit 76, for example, a detector device 80 is formed, which can detect, for example, an influence on the beams 63 and connected therewith also on the output signals due to interventions performed by operating personnel in the refrigeration chamber 5 and these can be excluded from the signaling of the monitoring of the stack height. This can, for example, take place by presetting a certain time interval that is adapted to a usual duration of such interventions so that only correspondingly long changes in the output signals that indicate an exceeding of the stack height that is to be maintained are detected for the signaling. In addition, it is also possible, for example, for a certain degree of vagueness in the strength of the output signals that are to be detected to be set or remain settable so that a static change that persists for a longer time and that occurs due to the presence of objects 10 that are foreign to the refrigerated goods, such as adhesive price tags, is excluded from the signaling and ignored by the monitoring.
In order to indicate an impermissible exceeding of the stack height that is to be maintained, the monitoring apparatus 60 has an optical and/or acoustic display device 8, which is positioned, for example, on a side of the refrigeration unit that is particularly visible to operating personnel.
Number | Date | Country | Kind |
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10 2016 114 336.7 | Aug 2016 | DE | national |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2017/069317 | 7/31/2017 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
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WO2018/024673 | 2/8/2018 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
6259965 | Steele et al. | Jul 2001 | B1 |
9518775 | Resch | Dec 2016 | B2 |
9560921 | Resch | Feb 2017 | B2 |
9901190 | Resch | Feb 2018 | B2 |
9930974 | Resch | Apr 2018 | B2 |
20070150381 | Pippia et al. | Jun 2007 | A1 |
20140252091 | Morse et al. | Sep 2014 | A1 |
20140316916 | Hay | Oct 2014 | A1 |
20160327639 | Albert | Nov 2016 | A1 |
20170340141 | Schwarz | Nov 2017 | A1 |
Number | Date | Country |
---|---|---|
509 937 | Dec 2011 | AT |
20 2016 000 889 | Apr 2016 | DE |
3 017 725 | May 2016 | EP |
Entry |
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European Patent Office, English language version of the International Search Report, Form PCT/ISA/210 for International Application PCT/EP2017/069317 (3 pages). |
Number | Date | Country | |
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20190159607 A1 | May 2019 | US |