The present invention relates to a device and a method for writing a plurality of transponders.
A packaging system with a rotatable member for rotating during the packaging of a load is known from EP 1 807 308 B1. The rotatable member is designed to this end to guarantee a relative rotation between the load and a release device for packaging material. A reading device for reading object information during the rotation of the rotatable member is arranged on the rotatable member. Various antennae (linear polarized RFID antenna, omnidirectional antenna, dipole antenna, etc.) are provided for reading RFID's. Reading RFID transponders using an RFID reading device is known from U.S. Pat. No. 7,336,167 B2, wherein the RFID tags are read while they rotate close to the fixed position of the RFID reading device.
The underlying object of the invention is to improve a device for a plurality of transponders as much as possible.
The problem is solved by a device having the features of independent claim 1. Advantageous developments are the subject matter of the dependent claims and contained in the description.
Accordingly, a device for writing a plurality of transponders is provided. During writing, data are transmitted to the transponders and saved on the transponders. The writing can also be designated as encoding.
The device has a region for positioning a packaging container having the plurality of transponders. The area of the region is thereby preferably larger than the footprint of the packaging container. The packaging container is for example a pallet or a carton or the like.
The device has a write-read switch. The write-read switch preferably has a send-receive switch for connecting to the transponders.
The device has an antenna device with a number of antennae. The antenna device is at least partially movable in a movement region around the region for positioning the packaging container. The antenna device is preferably moveable by means of an electromotor drive.
The device has a shield. The shield preferably has metal plates which form a shield housing. The shield is designed to shield electromagnetic waves from the antenna device while writing the plurality of transponders.
The antenna device is connected to the write-read switch for writing the plurality of transponders. The write-read switch preferably outputs an antenna signal which is radiated as electromagnetic waves from the antenna.
The region for positioning and the movement region are arranged within the shield.
A plurality of advantages is achieved by a specific development of the invention, as this is explained for example in the figures. The shield is designed to prevent writing additional transponders outside of the shield (reader-tag-collision). The shield likewise prevents interference with a further device arranged within range, which further device has a further send-receive switch and a further antenna device (reader-reader-collision). By means of the shield, which encloses the movement region of the antenna device as well as the region for positioning the packaging container, a substantially free movement of the antenna device is thus enabled for a large multitude of positions of the antenna device for as complete a detection of all transponders as possible, while at the same time effectively preventing an undesired writing of transponders outside of the shield. Thus, within the shield, a large radiation output of the antenna device can be used in order to write a plurality of transponders without having to separate the transponders. The transponders can thus be arranged in a pile in the packaging container. More than 2000 transponders in the pile can thereby be written.
The further underlying object of the invention is to provide a method for writing a plurality of transponders, which method is improved as much as possible.
This problem is solved by the method comprising the features of independent claim 10. Advantageous developments are contained in the description.
Accordingly, a method for writing a plurality of transponders is provided. During writing, data are transmitted to the transponders and saved on the transponders.
In the method, a closable opening of a shield is opened. For this purpose, a shield arrangement closing the opening is shifted into an open position.
In the method, a packaging container with a plurality of transponders is positioned through the opening into a region within the shield.
In the method, the opening is closed by a shield arrangement of a door system. The shield arrangement is for example an electrically conductive plate. The door system preferably has, for this purpose, a drive for shifting the shield arrangement.
In the method, a closed position of the shield arrangement is detected by means of a closed position sensor. The closed position sensor is designed for example as an incremental displacement sensor. A range of values for example is assigned to the closed position.
In the method, writing the plurality of transponders is started if the closed position is detected. If, in contrast, the closed position is not detected, then preferably an error message is emitted.
In the method, writing the plurality of transponders is ended, and the packaging container is removed through the opening or another opening after the ending of the writing of the plurality of transponders.
The developments described in the following relate to the device as well as to the method for writing a plurality of transponders.
It is provided in an advantageous development that the shield has at least one opening for introducing the packaging container into the region for positioning within the shield and a door system for closing the opening. The door system can be correspondingly designed as a swing door or a folding door or the like.
The door system preferably has at least one shield arrangement adjustable between an open position and a closed position. The shield arrangement is preferably designed to increase the protective damping. In the closed position, the shield arrangement preferably achieves a hermitically sealed shield for electromagnetic waves from the antenna device at least in the horizontal direction.
According to another advantageous development, the device has a control switch. The control switch is preferably connected to the write-read switch for starting and ending the writing of the plurality of transponders. The control switch preferably has yet more control functions.
The door system has especially preferably a closed position sensor, which is connected to the control switch. The closed position sensor is arranged to detect a closed position. The closed position of the shield element is thereby detectable by the shield element by means of the closed position sensor during closing of the opening of the shield.
In an advantageous development, the control switch is set up to start the writing of the plurality of transponders if the closed position of the shield arrangement is detected. If, in contrast, the closed position is not detected, then an error message is emitted.
In another development, the control switch is connected to a position sensor system. The position sensor system within the shield is aligned with the region for positioning the packaging container. The position sensor system is designed for determining the position of the packaging container in the region for positioning. The control switch is set up to emit a signal for the position of the packaging container. If, for example, the position sensor system detects a correct positioning of the packaging container in the region of positioning, then the control switch sends an associated signal to the write-read switch and the writing process is started.
In a preferred development, the write-read switch is set up for reading a plurality of transponders by means of the antenna device. This enables it to detect the number of already written transponders and the number of transponders not yet written within the shield. The write-read switch is preferably set up to continue writing the plurality of transponders until a termination criterion based on reading the plurality of transponders is satisfied. The termination criterion is preferably that the number of transponders not yet written after the movement of the antenna device along the movement region is smaller than a threshold value or for example zero.
In another development, the device has a conveyor belt for transporting the packaging container into the region of positioning. The control switch is preferably set up to emit a control signal for controlling the conveyor belt.
The shield preferably has a first opening for the input of the packaging container by means of the conveyor belt and a second opening for the output of the packaging container by means of the conveyor belt.
The control switch is set up to determine an error according to an advantageous development. The control switch is preferably set up to end the writing of the plurality of transponders after detecting the error. The control switch is preferably set up to emit error information in particular be means of an indicator. The indicator has for example a display and/or a signal light.
The previously described development variants are particularly advantageous individually as well as in combination. All development variants can thereby be combined with each other. Some possible combinations are explained in the description of the developments of the figures. These possibilities of combinations of the development variants depicted there are, however, not exhaustive.
In the following, the invention is explained in more detail through embodiments by means of graphic depictions.
As shown in
The device 1 has a shield 140, for example, comprising a metal housing. The device 1 has an indicator comprising a display 160 and comprising a signal light 170 outside of the shield 140. The signal light 170 has the signal colors green 171, yellow 172, and red 173.
A packaging container 300 is concretely depicted within the shield 140, which packaging container has a plurality of transponders 201, 202, 203, and a further packaging container 900 is outside of the shield, which packaging container has a plurality of further transponders 901, 902, 903.
The device 1 is thereby designed and set up to write a large plurality of transponders 201, 202, 203 within the shield 140. The writing can also be designated as encoding. For example, the device 1 is set up to write more than 2000 transponders 201, 202, 203 which are, for example, arranged on clothing articles in the packaging container 300. The packaging container 300 is, for example, a number of cartons on a pallet.
So that the shield 140 does not have to be lifted over the packaging container 300, the shield 140 of the embodiment of
Further, the device 1 in the embodiment of
The antenna device 130 can, upon correct positioning of the packaging container 300 in the region 110, be moved safely around the packaging container 300 by means of a drive 133 without colliding with the packaging container 300. In the case that the packaging container 300 slips out of position during the movement of the antenna device 130, the collision is recognized by means of the sensor 135. The movement M of the antenna device 130 is interrupted in the case of a collision, in that the drive 133 of the antenna device 130 is stopped by the control switch 150 of the device 1. For example, the drive 133 of the antenna device 130 is powered in the opposite direction for a short time by the control switch 150.
The shield 140 in the embodiment of
In the embodiment of
Due to reflection on the inner side of the shield 140, the electromagnetic wave W arrives back in the space within the shield 140, e.g. in the direction of the transponders 201, 202, 203. Due to reflection on the shield 140, a superposition occurs, i.e. a position-dependent strengthening or damping of the electromagnetic waves W. In order to write all transponders 201, 202, 203 as is possible, the device 1 of
Therefore, multiple advantages are achieved by the embodiment of
To achieve as high a shield damping as possible by the shield 140 during the writing process, the control switch 150 is set up for the sequential control and check of the shield 140. For this purpose, a closed position sensor 144 of the door system is linked to the control switch 150. A signal is transmitted from the control switch 150 to the linked write-read switch 120 to start the writing process, if the closed position sensor 144 senses the closed position PC of the shield arrangement 142 of the door system. The closed position sensor 144 is a limit switch in the simplest case. It is also possible to design the closed position sensor 144 as a position sensor and to determine the closed position by metering. In the ideal case, a hermetic shield is effected in the closed position Pc of the shield arrangement 142. If, in contrast, the closed position Pc is not achieved by the shield arrangement 142, for example, because a jammed object impedes the closing movement of the door system, the writing process is not started and an error signal is emitted, for example, via the indicator 160, 170. For example, the impediment of the closing movement of the door system can be determined by means of the sensor 145, wherein the sensor 145 determines a torque/torsional moment of the closing movement of the door system. For example, the sensor 145 is a current sensor, which determines the motor current of the drive 143.
The control switch 150 is connected to the write-read switch 120 in order to start and end the writing process depending on sensor signals from the sensors 111, 112, 113, 114, 135, 144, 145. The write-read switch 120 and the control switch 150 are depicted in separate blocks in
The drive 133 of the antenna device 130 is arranged in the region of the cover of the shield 140. The drive 133 of the antenna device 130 enables a rotation of the antennae around the packaging container (not depicted in
In step S101, the operator scans in the barcode of the packaging container and the device, for example by means of a hand device. In step S102, the operator transmits the information obtained by the scan to the warehouse management system and to the device. The information obtained by the scan is thereby additionally entered in step S104 into the write-read software.
The control software starts parallel in step S201. Step S203 checks whether the control switch and the write-read switch are functioning correctly. If a switch is not functioning, a critical error is determined in step 211 and in the following step S212, the yellow light of the signal light is switched on.
If, in contrast, both switches are functioning correctly, then step S204 continuously checks whether the packaging container is correctly positioned in the region of positioning. This is determined, for example, by means of sensors 111, 112, 113, 114 corresponding to
Prior to step S205, the green light of a signal light is switched on to signal the correct positioning. Step S205 checks whether all safety requirements are satisfied. This type of safety requirement is, for example, the detection of a person in a hazard zone of the device. If all safety requirements are satisfied, step S206 follows, in that information about the safety requirements and the correct positioning is forwarded to the write-read software.
The write-read software begins in step S301. In step S301, the write-read software waits until, according to step S104, the information obtained by the scan is entered into the write-read software. Subsequently, step S302 checks whether, according to step S206, the information about the safety requirements and the correct positioning was forwarded to the write-read software. In step S304, the write-read software transmits a signal to the control software to enable a closing of the door system.
In step S207, the opening of the shield is closed by a shield arrangement of a door system. A closed position of the shield arrangement is thereby determined by means of a closed position sensor.
In step S208, the closed position is queried. In step S305, the writing of the plurality of transponders by means of the write-read software is thereby only started if the closed position is determined in step S208. Prior to step S305, a signal is transmitted from the control software to the write-read software in step S209, that the closed position is achieved and the antenna device is powered for movement. In addition, the yellow light of the signal light is switched on in step S209.
In step S306, the transponders within the shield are read again. If transponders that are not yet written are thereby detected, then the writing for these transponders takes place again in step S305. By means of the write-read software, the writing of the plurality of transponders is continued by means of steps S305 and S306 until a termination criterion, based on reading the plurality of transponders, is satisfied. If, for example, in step S306 no transponders are read, which have not yet been written, then this applies as a termination criterion and in step S307 the writing of the plurality of transponders is ended according to the termination of the writing process. In step S307, a signal about the termination is thereby transmitted to the control software.
The write-read software is continued in step S308. There follows a check of the status of the switches in step S309. If an error function is determined, then step S311 follows with the determination of a critical error. In the case of an error, the green light of the signal light is switched off and the red light of the signal light is switched on in step S312. If there is no error, the green light of the signal light is switched on in step S310 instead. In the following step S301, the write-read software waits again until, according to step S104, information obtained from a new scan is entered into the write-read software.
The control software is continued after step S307 by step S210. In step S210, the opening of the shield is opened again. The yellow light of the signal light is switched off and the antenna device is moved into the starting position.
After ending the writing of the plurality of transponders, corresponding information is initially output in step S105 and subsequently the packaging container is removed through the opening or a further opening in step S106. The control software, in contrast, returns to step S201.
The invention is not limited to the embodiments depicted in
1 Device
2 Database, warehouse management system
110 Region for positioning
111,112,113,114, Sensor
135, 144,145,850
120 Write-read switch
130 Antenna device
131 Movement region
133, 143, 147, 830 Drive
140 Shield
141, 148 Opening
142, 142-1, 142-2, 142-3 Shield arrangement, shield plate
142-4, 149-1, 149-2,
149-3, 149-4
150 Control switch
160 Display
170 Signal light
171 Green light
172 Yellow light
173 Red light
201,202,203,901, Transponder
902, 903
300, 900 Packaging container, pallet, carton
800 Conveyor belt
PC, PO Position
W Electromagnetic wave
M Movement of the antenna device
SA Signal
S101 . . . S312 Process step
Number | Date | Country | Kind |
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102012010252.6 | May 2012 | DE | national |
Filing Document | Filing Date | Country | Kind |
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PCT/IB2013/001857 | 5/16/2013 | WO | 00 |