WO2006054508A1 - Corps d’installation de support de donnees et son procede de fabrication - Google Patents
Corps d’installation de support de donnees et son procede de fabrication Download PDFInfo
- Publication number
- WO2006054508A1 WO2006054508A1 PCT/JP2005/020816 JP2005020816W WO2006054508A1 WO 2006054508 A1 WO2006054508 A1 WO 2006054508A1 JP 2005020816 W JP2005020816 W JP 2005020816W WO 2006054508 A1 WO2006054508 A1 WO 2006054508A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- data carrier
- mounting body
- upper plate
- protective cap
- head
- 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.)
- Ceased
Links
Classifications
-
- G—PHYSICS
- G06—COMPUTING OR CALCULATING; COUNTING
- G06K—GRAPHICAL DATA READING; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
- G06K19/00—Record carriers for use with machines and with at least a part designed to carry digital markings
- G06K19/04—Record carriers for use with machines and with at least a part designed to carry digital markings characterised by the shape
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F16—ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
- F16B—DEVICES FOR FASTENING OR SECURING CONSTRUCTIONAL ELEMENTS OR MACHINE PARTS TOGETHER, e.g. NAILS, BOLTS, CIRCLIPS, CLAMPS, CLIPS OR WEDGES; JOINTS OR JOINTING
- F16B37/00—Nuts or like thread-engaging members
- F16B37/14—Cap nuts; Nut caps or bolt caps
Definitions
- the present invention relates to a data carrier mounting body that can be screwed onto an object and a manufacturing method thereof, and more particularly to a data carrier mounting body that is durable against impact, ultraviolet rays, corrosive gas, and the like and a manufacturing method thereof. .
- the data carrier has a function capable of non-contact electromagnetic communication with a communication device such as a reader / writer.
- FIG. 7 shows a block diagram of a control system for a general data carrier 8.
- the data carrier 8 includes an antenna 8a for electromagnetic wave communication and an IC (Integrated Circuit) circuit 8b.
- the IC circuit 8b includes a transmission / reception unit 8c, a control unit 8d, a writable storage unit 8e, and a condenser. Equipped with a power supply unit 8f that can be used as a scorpion, making it extremely compact.
- the data carrier 8 can write and read information by using a read / write type tag.
- an ID (Identification) number stored in the tag can be obtained by using a read / only type tag.
- a method of retrieving information stored in a personal computer or the like in association with the ID number is also adopted.
- the read / write type tag there is a limit in data writing capacity due to the capacity of the IC chip, there is a problem such as data loss due to tag damage, data leakage by illegal persons, There is a problem that the maintenance of data is difficult and the cost of the tag becomes high.
- Patent Document 1 Japanese Patent Laid-Open No. 5-107352
- the bolt as a data carrier mounting body described in Patent Document 1 has a groove formed in the upper surface of the head, and the data carrier is fixed and accommodated in the groove with an adhesive.
- Patent Document 1 Japanese Patent Laid-Open No. 05-107352
- Patent Document 2 Japanese Patent Laid-Open No. 2003-208588
- the bolt of Patent Document 1 is disadvantageous in terms of cost because it is necessary to apply a groove force to the head of the bolt, and there is a possibility of a decrease in strength.
- the surface side of the data carrier accommodated in the groove for electromagnetic wave communication is open, so even if the surface side is covered with a resin layer, it is easily damaged by external force or impact.
- the data carrier is applied to the bolt (existing bolt) that is attached to the object. Additional installation is time consuming and expensive, and difficult to implement commercially.
- Patent Document 2 has a problem of how to attach a data carrier to an object that does not describe a data carrier mounting body that can be easily screwed to the object.
- the present invention solves the above-described problems, and an object of the present invention is to be able to easily attach a data carrier to an object, and to be corrosive without being easily damaged by an external force or impact.
- An object of the present invention is to provide a data carrier mounting body that can withstand deterioration due to an external environment such as gas and ultraviolet rays, and a manufacturing method thereof.
- a first configuration of a data carrier mounting body for achieving the above object includes: a mounting body having a shaft portion formed with a screw portion on the outside and a head portion continuous to the shaft portion;
- the second configuration of the data carrier mounting body according to the present invention is characterized in that, in the first configuration, the mounting body is a bolt.
- At least an upper plate of the protective cap is made of austenitic stainless steel, titanium, or white copper. It is characterized by.
- the fourth configuration of the data carrier mounting body according to the present invention is that, in the first configuration, the data carrier is fixed to the inner side of the upper plate by an elastic adhesive layer.
- the fifth configuration of the data carrier mounting body according to the present invention is that, in the first configuration, the surface of the data carrier disposed inside the upper plate is made of a nonconductive material. A formed surface layer is formed! It is characterized by scolding.
- a sixth configuration of the data carrier mounting body includes a mounting body in which a screw portion is formed on an inner side, and a metal protective cap that covers an outer side of the mounting body.
- the cap includes an upper plate and a peripheral plate that is aligned with the outer peripheral surface of the mounting body.
- the cap of the mounting body is rotated by gripping and rotating a protective cap mounted on the mounting body.
- the data carrier is disposed inside the upper plate, and the upper plate has an electromagnetic induction effect between the data carrier and an external communication device via the upper plate. It is characterized by having a material and thickness capable of electromagnetic wave communication.
- a seventh configuration of the data carrier mounting body according to the present invention is characterized in that, in the sixth configuration, the mounting body is a nut or a cap nut.
- At least an upper plate of the protective cap is made of austenitic stainless steel, titanium, or white copper. It is characterized by.
- the data carrier in the sixth configuration, is fixed to the inside of the upper plate by an adhesive layer having elasticity.
- the tenth configuration of the data carrier mounting body according to the present invention is the same as that of the sixth configuration, in which the surface of the data carrier disposed inside the upper plate is made of a nonconductive material. It is characterized in that a formed surface layer is formed.
- the data carrier is fixed to the inside of the upper plate of the metal protective cap configured to include the upper plate and the peripheral plate.
- the upper plate has a material and a thickness that allow the data carrier to perform electromagnetic wave communication with an external communication device through the upper plate by electromagnetic induction!
- the protective cap is fixed to the mounting body having a shaft portion formed with a screw portion on the outside and a head portion continuous with the shaft portion so as to cover the head portion, or on the inner side.
- the protective cap is fixed to the mounting body in which the threaded portion is formed so as to cover the mounting body.
- the invention's effect [0027] According to the first configuration of the data carrier mounting body according to the present invention, it is not necessary to cut a groove or the like on the head of the mounting body having a screw portion on the outside, which is advantageous in terms of cost. In addition, there is no risk of a decrease in strength of the mounting body. In addition, since the data carrier is placed inside the metal protective cap, there is no risk of being affected by the external environment, which is not likely to be damaged by external force or impact.
- the shaft portion of the mounting body can be easily screwed or detached from the object such as an article by gripping and rotating with the external force tool or hand. Furthermore, if the body is made of resin, it can be strengthened by protecting the resin head with a metal protective cap.
- a commercially available standard bolt can be used as it is by configuring the mounting body with a bolt.
- the data carrier when attaching a data carrier that records information about the valve to the valve, the data carrier can be easily attached to the valve by using the bolts attached to the valve provided on the valve. It becomes possible to do.
- the protective cap for the mounting body having a threaded portion on the outside can ensure strength and high! In addition, it is possible to combine electromagnetic wave communication with communication sensitivity.
- the protective cap force can also buffer the impact on the data carrier by the adhesive layer having elasticity, and the data carrier can be prevented from being damaged.
- the fifth configuration of the data carrier mounting body According to the fifth configuration of the data carrier mounting body according to the present invention, an impact buffering action between the mounting body having a threaded portion on the outside and the data carrier by the surface layer is obtained. Further, since a gap is formed between the mounting body and the data carrier by a surface layer made of a non-conductive material, even if the mounting body is made of a conductive material, the antenna of the data carrier is used. It is possible to prevent the magnetic flux penetrating from being absorbed by the mounting body, which is a conductive member force, and to prevent the communication sensitivity of the data carrier from being lowered.
- the sixth configuration of the data carrier mounting body according to the present invention it is not necessary to cut a groove or the like in the head of the mounting body in which the screw portion is formed on the inner side. Is advantageous, There is no risk of lowering the strength of the wearing body. In addition, since the data carrier is placed inside the metal protective cap, there is no risk of being affected by the external environment that would not be damaged by external force or impact.
- the outer body force can be easily screwed or detached from the bolt portion provided on the object such as an article by holding and rotating it with a tool or hand.
- the wearing body is made of resin, it can be strengthened by protecting the resin head with a metal protective cap.
- a commercially available standard nut or cap nut can be used as it is by configuring the mounting body with a nut or a cap nut.
- nuts or cap nuts include nuts for bolts or cap nuts attached to an object.
- the protective cap for the data carrier mounting body having the screw portion on the inside can be used to ensure electromagnetic strength and secure high communication sensitivity. It can be combined.
- the protective cap force can also buffer the impact on the data carrier by the adhesive layer having elasticity, and the data carrier can be prevented from being damaged.
- an impact buffering action between the mounting body having a screw portion on the inner side and the data carrier can be obtained by the surface layer. Further, since a gap is formed between the mounting body and the data carrier by a surface layer made of a non-conductive material, even when the mounting body is made of a conductive material, It is possible to prevent the magnetic flux penetrating the antenna from being absorbed by the mounting body, which is a conductive member force, and to prevent a decrease in communication sensitivity.
- a data carrier mounting body According to the method for manufacturing a data carrier mounting body according to the present invention, even if a cutting process is not performed on the head of the mounting body, damage can be caused by external force or impact simply by preparing a protective cap made of metal.
- the data carrier mounting body can be easily manufactured without being affected by the external environment.
- the mounting body to which this method is applied can be mounted on mounting bodies such as bolts, nuts or cap nuts that are already attached to machines etc.
- a data carrier can be easily attached to an existing object.
- FIG. 1 is an explanatory cross-sectional view showing a configuration of a first embodiment of a data carrier mounting body according to the present invention.
- FIG. 2 is an exploded side view of the data carrier mounting body according to the first embodiment.
- FIG. 3 (a) to (d) are a plan view, a side sectional view, and a back view showing the configuration of a protective cap in which a data carrier is arranged inside the upper plate.
- FIG. 4 is a schematic diagram showing a state in which the data carrier mounting body of the first embodiment is mounted on an object and electromagnetic wave communication is performed with an external communication device.
- FIG. 5 is a cross-sectional explanatory view showing the relationship between the configuration of the second embodiment of the data carrier mounting body according to the present invention and the bolts mounted on the object.
- FIG. 6 is a diagram for explaining the principle of electromagnetic wave communication between a data carrier mounting body and an external communication device.
- FIG. 7 is a block diagram showing a configuration of a data carrier control system.
- reference numeral 10 denotes the data carrier mounting body of the first embodiment, which is integrally formed so as to be continuous with the shaft portion 3 in which the screw portion 2 is formed on the outside and the tip of the shaft portion 3. And a bolt that constitutes the mounting body 1 having a head 4 provided on the metal head and a metal protective cap 5 that covers the outer side of the head 4 of the mounting body 1.
- the mounting body 1 can be selected and used from commercially available standard bolts made of metal or resin.
- the outer peripheral surface of the head 4 of the mounting body 1 of this embodiment is formed in a hexagon.
- the outer peripheral shape of the head 4 of the mounting body 1 may be other polygonal shapes such as a triangle and a square in addition to a hexagon, and may be other various shapes such as a circle and an ellipse. good.
- the protective cap 5 has an upper plate 6 and a peripheral plate 7 that fits and aligns with the outer peripheral surface of the head 4 of the mounting body 1.
- the inner surface of the peripheral plate 7 in the form forms a hexagon having a shape and dimensions that fit the outer peripheral surface of the head 4 of the mounting body 1! / Speak.
- a data carrier 8 formed in the shape of a disc is disposed on the inner side of the upper plate 6, specifically, the inner surface thereof, and is fixed by adhering to the inner surface of the upper plate 6 with an adhesive 9 having elasticity. It has been.
- Adhesive 9 can be used that does not have elasticity, but if elastic adhesive is used, if the external force of the protective cap 5 may cause an impact on the data carrier 8, it will ease the impact. Since it functions as a layer, the data carrier 8 can be prevented from being damaged by impact.
- the elastic adhesive 9 is an adhesive that does not lose its elasticity even when it is solidified, for example, a commercially available silicon-based elastic adhesive or urethane-based elastic adhesive. Further, an elastic layer made of a non-conductive material or a surface layer 16 made of a non-elastic layer can be formed on the surface of the data carrier 8.
- FIG. 3B is an example when the surface layer 16 is not provided
- FIG. 3D is an example when the surface layer 16 is provided.
- the data carrier mounting body 10 shown in FIG. 1 has a protection provided with a surface layer 16 on the surface of the data carrier 8 as shown in FIG. 3 (d) instead of the protective cap 5 shown in FIG. 3 (b). Cap 5 can be installed.
- a protection provided with a surface layer 16 on the surface of the data carrier 8 as shown in FIG. 3 (d) instead of the protective cap 5 shown in FIG. 3 (b).
- Cap 5 can be installed.
- an appropriate gap is formed between the top of the data carrier 8 and the attachment body 1. This gap can prevent the data carrier 8 from coming into direct contact with the bolt head of the mounting body 1.
- the mounting body 1 is made of a conductive material such as a metal bolt
- the magnetic flux passing through the antenna 8a of the data carrier 8 is mounted. It may be absorbed by the body 1 and reduce the communication sensitivity of the data carrier 8.
- the surface layer 16 is an elastic layer, that is, an elastic layer
- the data carrier 8 is provided with an impact buffering function (function) between the data carrier 8 and the mounting body 1. You can make up 10th.
- the thickness of the surface layer 16 forming the gap for preventing the communication sensitivity from being lowered is set to 0.1 mm to 5 mm, preferably about 0.5 mm to 3 mm.
- the same material as the adhesive 9 having elasticity is used.
- non-conductive sheet materials such as adhesive layers used, elastic rubber sheets, fiber sheets or soft plastic sheets, and silicon-based or urethane-based non-conductive elastic paint layers.
- adhesive layers used, elastic rubber sheets, fiber sheets or soft plastic sheets, and silicon-based or urethane-based non-conductive elastic paint layers.
- silicone resin manufactured by Cemedine is applicable.
- a non-elastic layer that is, a layer having no elasticity can be used.
- a nonconductive sheet such as a hard plastic sheet having no elasticity.
- the surface layer 16 is a highly permeable layer such as an amorphous sheet.
- the surface layer 16 By making the surface layer 16 an amorphous sheet, the magnetic flux passing through the antenna coil of the data carrier 8 is guided along the amorphous sheet, and the magnetic flux absorbed or bypassed by the mounting body 1 can be greatly reduced. A decrease in communication sensitivity of the data carrier 8 can be prevented.
- Amorphous sheets can be obtained by mixing a silicone binder with amorphous magnetic powder in addition to an amorphous single sheet.
- a surface layer 16 can be formed.
- the data carrier 8 formed in a disk shape has an antenna 8a that also has a circular air-core coil force, and an IC circuit 8b connected to the antenna 8a, and is configured in the same manner as described above with reference to FIG. And the whole is a thin disk. Therefore, it can be easily mounted on the mounting body 1 with an extremely small occupied space.
- the data carrier 8 is not limited to the whole formed into a disk shape using the antenna 8a that also has an air-core coil force, and the whole data carrier 8 may be formed into a rod shape (or stick shape).
- a rod-shaped data carrier 8 is composed of, for example, a rod antenna formed by a coil in a rod-shaped ferrite core and an IC circuit 8b connected thereto.
- the rod-shaped data carrier 8 is commercially available in a very small size, for example, having a diameter of 2.12 mm and a length of about 12 mm. Such a small data carrier 8 is preferably applicable to the present invention.
- the rod-shaped data carrier 8 can be fixed to the inner surface of the upper plate 6 of the protective cap 5 with an adhesive or the like with its axial direction parallel.
- the protective cap 5 is made of metal.
- the upper plate 6 is made of a metal such as austenitic stainless steel, titanium, or bronze, and the upper plate 6 communicates with the outside via the upper plate 6.
- the material and thickness capable of electromagnetic wave communication with the device 13 by electromagnetic induction action are appropriately selected.
- the peripheral plate 7 can be integrally made of the same metal material as that of the upper plate 6, but can also be made of another material having higher strength than the metal material of the selected upper plate 6.
- the upper plate 6 and the peripheral plate 7 are made of the same material, they can be formed integrally on the protective cap 5 by, for example, pressing or drawing.
- the processed upper plate 6 and the peripheral plate 7 may be joined to each other by welding, bonding, or the like to form the protective cap 5. I can do it.
- the thickness of the peripheral plate 7 made of a specific metal material is appropriately set from the viewpoint of its mechanical strength. That is, when the data carrier mounting body 10 is mounted on or removed from the object, the peripheral plate 7 of the protective cap 5 is gripped and rotated by a rotating tool such as a wrench. The thickness should be set so that the gripping force or the rotational force caused by the gripper can secure enough strength so that the 7 parts of the peripheral plate are not damaged.
- the electromagnetic wave H transmitted from the communication device 13 can be transmitted to the data carrier 8 by the electromagnetic induction action through the metal upper plate 6.
- data carrier
- the response electromagnetic wave of the antenna coil force of 8 is also transmitted to the communication device 13 by electromagnetic induction through the metal upper plate 6.
- the frequency of the electromagnetic wave used for communication is variously selected in the range of several tens of Hz to several tens of MHz.
- the force that generates the skin current I in the upper plate 6 The thickness d of the skin current I is (inversely proportional to 1 ⁇ 2 of ⁇ ⁇ / ⁇ , where f is the frequency of the electromagnetic wave and ⁇ is The dielectric constant of the metallic upper plate 6 and ⁇ is the resistivity of the metallic upper plate 6.
- the thickness t of the upper plate 6 needs to be t ⁇ d. If d is constant, the value of t is The smaller the value, the greater the communication sensitivity.
- Table 1 below shows data carrier mounting body 10 that uses austenitic stainless steel plate (SUS301, SUS304, SUS316) and ferritic stainless steel plate (SUS430) as metal upper plate 6 and allows non-contact communication. It is the experimental result which measured distance.
- the data carrier 8 used in the experiment is a product name “Clear Disc 'tag” sold by Hanekska Co., Ltd., in which an IC circuit is connected to a circular antenna coil with an air core, and the communication frequency is The RFID handy for id system s in the UK, which is commercially available from No, Nex Inc. as a communication device 13, and is used for two types of tags 1 and 2 of 125kHz, outer diameter 50mm, also 20mm. Using a type reader / writer “Multiscan Reader rdr-130” (maximum operating current 240 mA), the reading distance (separation distance between each data carrier 8 and the communication device 13) at which information can be accurately read was measured.
- the communication distance measured by the communication device 13 in the air with the tag 1 having an outer diameter of 50 mm was 83 mm, and the tag 2 with the outer diameter of 20 mm was measured by the communication device 13 in the air.
- the communication distance was 44mm.
- Table 1 the value obtained by multiplying the thickness of each metal plate by the number of layers is shown as the total thickness of the upper plate 6.
- the dimensions of each metal plate are the end force magnetic flux leakage. Not big enough .
- “X” indicates a force that cannot be read.
- Table 2 below shows the results of experiments conducted on iron plates, copper plates, white copper plates, nickel plates, titanium plates, aluminum plates, and brass plates in the same manner as in Table 1 above.
- the “upper plate 6 having a thickness capable of communicating with an external communication device 13 disposed on the surface side of the upper plate 6 made of metal by electromagnetic induction” according to the present invention is like that. It means a metal upper plate 6 having a thickness and a material that can perform various communication functions.
- FIG. 1 covers and fixes the head 4 of the mounting body 1 by attaching a protective cap 5 with a data carrier 8 fixed to the inner surface of the upper plate 6 shown in FIG. Data carrier mounting body 10.
- the protective cap 5 is attached so as to cover the head 4 of the mounting body 1 with the surrounding force, and the inner surface of the peripheral plate 7 and the outer peripheral surface of the head 4 are fixed by the adhesive 11.
- the protective cap 5 may be fixed by a fitting method in which the protective cap 5 is fitted into the head 4 of the mounting body 1 instead of the bonding method using the adhesive 11.
- Glue and fix the data carrier 8 with adhesive 9 and then secure the protective cap 5 with adhesive 11 so as to cover the head 4 of the mounting body 1.
- Other fixing methods include a method of fixing the peripheral plate 7 of the protective cap 5 with an external force, a small hole in the outer peripheral surface of the head 4 of the mounting body 1, and a hole in the peripheral plate 7 of the cap. There is also a method to fix it with a screw pin.
- FIG. 4 is a diagram showing a state in which the data carrier mounting body 10 according to the present invention is mounted on the object 12.
- the object 12 may be an article or structure made of metal, resin, wood, ceramic materials, or the like.
- a mounting hole 12a having an inner thread is formed in the object 12, and the shaft portion 3 of the data carrier mounting body 10 is attached to the inner screw of the mounting hole 12a by gripping and rotating the protective cap 5 of the data carrier mounting body 10.
- the data carrier mounting body 10 can be screwed and attached to the object 12 by screwing the screw portion 2 formed in the above.
- the data carrier mounting body 10 can also be used as a fixture for fixing a plurality of parts to each other. In that case, information about the article etc. is stored in the fixture part.
- the mounting body 1 constituting the data carrier mounting body 10 is a cap nut having a screw portion 14 formed on the inside thereof, and covers the outer side of the cap nut.
- the protective cap 5 to which the data carrier 8 is attached is mounted, and other configurations are the same as those in the first embodiment. Therefore, the same parts as those of the first embodiment shown in FIG. 1 are denoted by the same reference numerals, and redundant descriptions are omitted.
- a commercially available standard cap nut made of metal or resin can be selected and used.
- the outer peripheral surface of the head 4 of the mounting body 1 of this embodiment is formed in a hexagon. ing.
- the outer peripheral shape of the head 4 of the mounting body 1 may be other polygons such as a triangle and a quadrangle other than a hexagon, and may be other various shapes such as a circle and an ellipse. .
- the protective cap 5 and the data carrier 8 attached to the inner side of the protective cap 5 are the same as those shown in FIG. 3, and are attached to the cap nut and fixed with the adhesive 11 in the state shown in FIG.
- the shaft portion 15a of the bolt 15 for joining is threaded through the through hole 12b in which a joint portion or the like in the object 12 such as a machine or device is formed, and the bag portion is formed on the screw portion 15b formed outside the shaft portion 15a.
- the data carrier 8 is attached to the object 12 by screwing the screw portion 14 of the nut.
- the second embodiment shown in FIG. 5 can be similarly applied to a normal nut in which the mounting body 1 has an open head instead of a cap nut.
- Examples of the use of the present invention include bolts and nuts for fastening to streetlight foundations installed on roads, main bolt fastenings and nuts for bridges, and bearing fixing bolts for axles of trains and the like. It can be widely applied to structures using bolts and nuts such as fixed nuts, construction machines, and submersible pumps.
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Abstract
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2006545000A JP4427063B2 (ja) | 2004-11-16 | 2005-11-14 | データキャリア装着体及びその製造方法 |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP2004331579 | 2004-11-16 | ||
| JP2004-331579 | 2004-11-16 |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2006054508A1 true WO2006054508A1 (fr) | 2006-05-26 |
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/JP2005/020816 Ceased WO2006054508A1 (fr) | 2004-11-16 | 2005-11-14 | Corps d’installation de support de donnees et son procede de fabrication |
Country Status (2)
| Country | Link |
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| JP (1) | JP4427063B2 (fr) |
| WO (1) | WO2006054508A1 (fr) |
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| JP2009037416A (ja) * | 2007-08-01 | 2009-02-19 | Kajima Corp | アンテナの取付構造、ジョイント部材、及び送受信システム |
| JP2009238022A (ja) * | 2008-03-27 | 2009-10-15 | Toppan Forms Co Ltd | 非接触型データ受送信体 |
| JP2010523070A (ja) * | 2007-03-27 | 2010-07-08 | コスタ ハウズ アンド アソシエイツ エルエルシー | 供給源の認証、商品とサービスの認証システム、そのためのコンポーネント |
| JP2012027517A (ja) * | 2010-07-20 | 2012-02-09 | Taisei Corp | Icタグホルダー |
| WO2021177018A1 (fr) * | 2020-03-02 | 2021-09-10 | 大阪螺子販売株式会社 | Élément de montage avec étiquette ci |
| WO2022054563A1 (fr) * | 2020-09-08 | 2022-03-17 | ゼネラル株式会社 | Élément de montage avec étiquette rfid, procédé de fabrication d'élément de montage avec étiquette rfid, unité tête d'élément de montage avec étiquette rfid, et unité de montage d'étiquette rfid |
| JP7591779B2 (ja) | 2020-09-30 | 2024-11-29 | ゼネラル株式会社 | Rfidタグ付き着装部材の頭部、rfidタグマウントユニット及びrfidタグ付き着装部材 |
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| KR102296481B1 (ko) * | 2020-03-02 | 2021-09-02 | 주식회사 지아이엘 | 암나사겸볼트부 |
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| JP2005003192A (ja) * | 2003-05-21 | 2005-01-06 | Sas Kk | 螺子 |
| US7583194B2 (en) * | 2004-09-29 | 2009-09-01 | Checkpoint Systems, Inc. | Method and system for tracking containers having metallic portions, covers for containers having metallic portions, tags for use with container having metallic portions and methods of calibrating such tags |
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2005
- 2005-11-14 WO PCT/JP2005/020816 patent/WO2006054508A1/fr not_active Ceased
- 2005-11-14 JP JP2006545000A patent/JP4427063B2/ja not_active Expired - Fee Related
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| JPH05107352A (ja) * | 1991-10-15 | 1993-04-27 | Omron Corp | データキヤリア |
| JP2002208876A (ja) * | 2000-07-19 | 2002-07-26 | Hanex Co Ltd | Rfidタグの通信方法 |
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Cited By (11)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2010523070A (ja) * | 2007-03-27 | 2010-07-08 | コスタ ハウズ アンド アソシエイツ エルエルシー | 供給源の認証、商品とサービスの認証システム、そのためのコンポーネント |
| JP2009037416A (ja) * | 2007-08-01 | 2009-02-19 | Kajima Corp | アンテナの取付構造、ジョイント部材、及び送受信システム |
| JP2009238022A (ja) * | 2008-03-27 | 2009-10-15 | Toppan Forms Co Ltd | 非接触型データ受送信体 |
| JP2012027517A (ja) * | 2010-07-20 | 2012-02-09 | Taisei Corp | Icタグホルダー |
| WO2021177018A1 (fr) * | 2020-03-02 | 2021-09-10 | 大阪螺子販売株式会社 | Élément de montage avec étiquette ci |
| JPWO2021177018A1 (fr) * | 2020-03-02 | 2021-09-10 | ||
| US11842242B2 (en) | 2020-03-02 | 2023-12-12 | Osaka Rashi Hambai Co., Ltd. | Mounting member with IC tag |
| JP7478478B2 (ja) | 2020-03-02 | 2024-05-07 | 大阪螺子販売株式会社 | Icタグ付き着装部材 |
| WO2022054563A1 (fr) * | 2020-09-08 | 2022-03-17 | ゼネラル株式会社 | Élément de montage avec étiquette rfid, procédé de fabrication d'élément de montage avec étiquette rfid, unité tête d'élément de montage avec étiquette rfid, et unité de montage d'étiquette rfid |
| JP7650020B2 (ja) | 2020-09-08 | 2025-03-24 | ゼネラル株式会社 | Rfidタグ付き着装部材及びrfidタグ付き着装部材の製造方法 |
| JP7591779B2 (ja) | 2020-09-30 | 2024-11-29 | ゼネラル株式会社 | Rfidタグ付き着装部材の頭部、rfidタグマウントユニット及びrfidタグ付き着装部材 |
Also Published As
| Publication number | Publication date |
|---|---|
| JPWO2006054508A1 (ja) | 2008-05-29 |
| JP4427063B2 (ja) | 2010-03-03 |
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