The present disclosure is directed to a multifunctional security tag. More particularly, the present disclosure is directed to a tag that has one element for a first tracking functionality and a second different element for a second tracking functionality.
Electronic surveillance articles are known in the art. Some electronic surveillance articles exhibit very high detection sensitivity. These electronic surveillance articles function aptly in providing theft security. However, some electronic surveillance articles are not capable of information storage for the purposes of product tracking, identification, data collection, and inventory control.
UHF RFID radiofrequency tags are also known in the art. UHF RFID tags incorporate storage chips, which can store substantial information and can be read from distances of 4 to 10 feet, but can be easily shielded with metal and liquid materials. This renders the electronic surveillance articles undetectable and thus useless for security purposes.
An electromagnetic radiofrequency identification tag, which is a combination of two or more elements, (or devices) exhibits both high sensitivity that cannot be easily neutralized by shielding. The present disclosure also has the advantage of RFID tags or long distance readability and a data storage capability.
According to a first aspect of the present disclosure, there is provided a security tag comprising a first substrate and a first security element being disposed on the first substrate. The first security element provides a first functionality of the security tag. The security tag also has a second security element disposed on the first substrate. The second security element provides a second functionality that is different than the first functionality.
In yet another aspect of the present disclosure there is provided a security tag comprising a first security element. The first security element comprises an electromagnetic strip. The first security element provides a first functionality of the security tag.
The security tag also has a second security element arranged with the electromagnetic strip. The second security element provides a second functionality different than the first functionality. The second security element comprises a radiofrequency identification device. The electromagnetic strip has a width that is complementary to the radiofrequency identification device.
In another embodiment of the present disclosure, there is provided a method of manufacturing a surveillance article. The method has the step of providing a first security element comprising an electromagnetic strip. The first security element provides a first functionality of the surveillance article. The method then connects a second security element to the electromagnetic strip and the second security element provides a second functionality that is different than the first functionality. The second security element comprises a radiofrequency identification device to provide the completed surveillance article.
The foregoing and other objects, features and advantages of the invention will be apparent from the following more particular description of preferred embodiments of the invention, as illustrated in the accompanying drawings in which like reference characters refer to the same parts throughout different views. The drawings are not meant to limit the invention to particular mechanisms for carrying out the invention in practice, but rather, the drawings are illustrative of certain ways of performing the invention. Others will be readily apparent to those skilled in the art.
The present disclosure preferably is directed to an electronic surveillance article or tag 18 that is multifunctional. Preferably, the electronic surveillance article 18 comprises at least two different devices or elements that provide at least two different functional advantages. In another embodiment, the electronic surveillance article or tag 18 may comprise two or more different devices to provide two or more functional advantages. In one embodiment, the electronic surveillance article or tag 18 comprises a first security device or an electromagnetic security strip and a second different security device.
The second security device can be a 900 MHz integrated circuit chip (Radio-frequency identification, or RFID chip). By combining the first and the second security devices, the tag 10 forms an electromagnetic identification tag (EMID tag) that is multifunctional. The tag 10 in one embodiment can serve the combined functions of both types of tags and product tracking, product identification, product data collection, and inventory control with highly sensitive detection performance and low cost.
The present tag 18 also provides qualities and performance of both UHF RFID tags and EM strips in a single product. The tag 18 also provides robust detection performance near any materials, including metals and liquids, fast read speeds and reliable read rates of over 99.99%, long reading range of greater than about 3.5 meters and the tag 18 is compatible with all EM detection gates and UHF RFID readers, which is advantageous. The tag 18 further is capable of data storage and may include a 240+ bit EPC global Class 1 Gen2-compliant silicon chip as the second security device.
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The electromagnetic strip 10 is also lined with a strip of ferromagnetic material with a moderate coercive field (magnetic “hardness”). The electromagnetic strip 10 is well known in the art and common place. Detection of the electromagnetic strip 10 is achieved by sensing harmonics of the electromagnetic strip 10. A sum or a difference signal being generated by the non-linear magnetic response of the electromagnetic strip 10 is monitored under a mixture of low-frequency (in the 10 Hz to 1000 Hz range) magnetic fields. In another embodiment, the first security device 10 can be a different security device and can be any type of electronic article surveillance system including a magnetic electronic article surveillance tag, a magneto-harmonic tag, an acoustic-magnetic tag, a magnetostrictive tag, a radio frequency tag, a microwave tag or any other tag known in the art. Preferably, the strip 10 is connected to a backing paper 12 by an adhesive, but may also be connected via a different connector.
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The second security device 16 preferably has at least two parts. One is an integrated circuit for storing and processing information, modulating and demodulating a radio-frequency (RF) signal, and other specialized functions. The other is an antenna for receiving and transmitting the signal. The second security device 16 can be a passive tag, an active tag or can be an assisted battery tag that further comprises a battery or the like. A second security device 16 passive RFID tag has no power source.
The second security device 16 passive RFID tag requires an external electromagnetic field to initiate a signal transmission. Second security device 16 active RFID tag has a battery and can transmit signals once an external source or the Interrogator has been successfully identified. Second security device 16 battery assisted passive (BAP) RFID tag require an external source to be activated, however may further have a higher forward link capability and greater range. There are a variety of groups defining standards and regulating the use of RFID for the second security device 16, including the International Organization for Standardization (ISO), the International Electrotechnical Commission (IEC), ASTM International, the DASH7 Alliance and EPCglobal, which are all incorporated by reference in their entirety. Preferably, the second security device 16 can be utilized in enterprise supply chain management to improve the efficiency of inventory tracking and management.
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The security tag 18″ was constructed by connecting the RFID tag 16″ to a conductor 20. The conductor 20 is preferably a number of strips of metal 20. The conductor 20 is intended to act as a sensitivity amplifying antennae. The conductor 20 was then connected to the backing paper 12″ of the newly developed narrower EM strip 10″. The embodiment of the security tag 18″ was then tested. The security tag 18″ revealed that performance of the EM strip component 10″ remained unchanged, and the performance of RFID tag component 16″ showed improvement in the quality and stability of data reading, but only at short distances from RF readers. Other conductors 20 are also possible and envisioned.
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Unless the context clearly requires otherwise, throughout the description and the claims, the words “comprise,” “comprising,” and the like are to be construed in an inclusive sense, as opposed to an exclusive or exhaustive sense; that is to say, in the sense of “including, but not limited to.” As used herein, the terms “connected,” “coupled,” or any variant thereof, means any connection or coupling, either direct or indirect, between two or more elements; the coupling of connection between the elements can be physical, logical, or a combination thereof.
Additionally, the words “herein,” “above,” “below,” and words of similar import, when used in this application, shall refer to this application as a whole and not to any particular portions of this application. Where the context permits, words in the above Detailed Description using the singular or plural number may also include the plural or singular number respectively. The word “or,” in reference to a list of two or more items, covers all of the following interpretations of the word: any of the items in the list, all of the items in the list, and any combination of the items in the list.
The above detailed description of embodiments of the invention is not intended to be exhaustive or to limit the invention to the precise form disclosed above. While specific embodiments of, and examples for, the invention are described above for illustrative purposes, various equivalent modifications are possible within the scope of the invention, as those skilled in the relevant art will recognize.
Changes can be made to the invention in light of the above Detailed Description. While the above description describes certain embodiments of the invention, and describes the best mode contemplated, no matter how detailed the above appears in text, the invention can be practiced in many ways. Details of the compensation system described above may vary considerably in its implementation details, while still being encompassed by the invention disclosed herein.
As noted above, particular terminology used when describing certain features or aspects of the invention should not be taken to imply that the terminology is being redefined herein to be restricted to any specific characteristics, features, or aspects of the invention with which that terminology is associated. In general, the terms used in the following claims should not be construed to limit the invention to the specific embodiments disclosed in the specification, unless the above Detailed Description section explicitly defines such terms. Accordingly, the actual scope of the invention encompasses not only the disclosed embodiments, but also all equivalent ways of practicing or implementing the invention under the claims.
All of the above patents and applications and other references, including any that may be listed in accompanying filing papers, are incorporated herein by reference. Aspects of the invention can be modified, if necessary, to employ the systems, functions, and concepts of the various references described above to provide yet further embodiments of the invention.
While this invention has been particularly shown and described with references to a preferred embodiment thereof, it will be understood by those skilled in the art that is made therein without departing from the spirit and scope of the invention as defined by the following claims.