JP2003132330A - Rfid label printer - Google Patents

Rfid label printer

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Publication number
JP2003132330A
JP2003132330A JP2001328257A JP2001328257A JP2003132330A JP 2003132330 A JP2003132330 A JP 2003132330A JP 2001328257 A JP2001328257 A JP 2001328257A JP 2001328257 A JP2001328257 A JP 2001328257A JP 2003132330 A JP2003132330 A JP 2003132330A
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Prior art keywords
label
rfid
part
side
printer
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Pending
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JP2001328257A
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Japanese (ja)
Inventor
Shinsuke Murata
新助 村田
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Sato Corp
株式会社サトー
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    • GPHYSICS
    • G06COMPUTING; CALCULATING; COUNTING
    • G06KRECOGNITION OF DATA; PRESENTATION OF DATA; RECORD CARRIERS; HANDLING RECORD CARRIERS
    • G06K17/00Methods or arrangements for effecting co-operative working between equipments covered by two or more of the preceding main groups, e.g. automatic card files incorporating conveying and reading operations
    • G06K17/0022Methods or arrangements for effecting co-operative working between equipments covered by two or more of the preceding main groups, e.g. automatic card files incorporating conveying and reading operations arrangements or provisious for transferring data to distant stations, e.g. from a sensing device
    • G06K17/0025Methods or arrangements for effecting co-operative working between equipments covered by two or more of the preceding main groups, e.g. automatic card files incorporating conveying and reading operations arrangements or provisious for transferring data to distant stations, e.g. from a sensing device the arrangement consisting of a wireless interrogation device in combination with a device for optically marking the record carrier

Abstract

PROBLEM TO BE SOLVED: To detect and notify an RFID (Radio Frequency IDentification) label fallen into an electrically read/write error after printing by a thermal head.
SOLUTION: Antennas of a reader/writer 28 of an RFID label printer 10 are disposed in the upstream side 40 and the downstream side 46 of a printing part 30 along the label carrier part.
COPYRIGHT: (C)2003,JPO

Description

【発明の詳細な説明】 【0001】 【発明の属する技術分野】本発明は送受信機(リーダライタ)と非接触方式でデータの送受信を行う非接触リードライト式IC(RFID)を内蔵したラベルを搬送しながら、前記ICに電気的書き込みを行い、これに印字してラベル表面に可視情報を記録するRFIDラベルプリンタに関する。 The Description of the Invention [0001] label with a built-in the present invention is a transceiver contactless read-write type IC for transmitting and receiving data (writer) and a non-contact manner (RFID) BACKGROUND OF THE INVENTION while conveying, an electrically write to the IC, an RFID label printer for recording visible information to print to the label surface thereto. 【0002】 【従来の技術】近年、ICチップとアンテナ、通信手段などを内蔵し、前記ICチップに非接触で電気的なリード/ライトを行う非接触リードライト式IC(以下、 [0002] In recent years, IC chip and an antenna, such as a built-in communication unit, contactless read-write type IC to electrical read / write in a non-contact with the IC chip (hereinafter,
「RFID」という)が開発されている。 ) That "RFID" has been developed. 【0003】このRFIDは、ICチップに多量の情報を記録でき、無線(電磁誘導)にて非接触で情報を送受信できる上、偽造が困難なためセキュリティにも優れている。 [0003] The RFID can record a large amount of information in the IC chip, the radio on to transmit and receive data without contact at (electromagnetic induction), counterfeiting is superior to difficult for security. 【0004】しかしながら、ICチップに記憶された内容は人間の視覚や従来のバーコードリーダーでは読みとれないため、RFIDをラベルやタグと一体化したRF However, RF contents stored in the IC chip since not read by the human visual and conventional bar code readers, with integrated RFID label or tag
IDラベルとし、その表面に印字した文字やバーコードを人間の視覚、OCRやバーコードリーダなどで読み取り可能とする利用形態が拡大しつつある。 And ID labels, visual human characters or bar codes printed on its surface, is expanding the use form that can be read by such OCR and bar code reader. 【0005】このRFIDラベルに印字を行うラベルプリンタは、印字手段の他にRFIDと通信する非接触通信手段(リーダライタ)を備え、該リーダライタは通信用アンテナを有しており、この通信用アンテナを用いてR [0005] label printer for printing on the RFID label, in addition to comprising a non-contact communication means for communicating with RFID (reader-writer) of the printing unit, the reader-writer has a communication antenna, for the communication R using the antenna
FIDのアンテナと通信し、ICチップに情報を書き込んだり、ICチップに記録された情報を読み取っている。 Communicating with the FID of the antenna, and read or write information to the IC chip, the information recorded in the IC chip. 【0006】 【発明が解決しようとする課題】ところで、RFIDはICチップが静電気や衝撃に弱く、使用中や使用前に損傷して使用不能となるものが存在する。 [0006] [SUMMARY OF THE INVENTION Incidentally, RFID IC chip is sensitive to static electricity and impact, there is made unusable damaged before or use in use. このため、IC For this reason, IC
チップに電気信号の書き込みを行う際には、書き込まれた内容を読み出し、書き込み信号が確実に書き込まれたか否かを検証する必要がある。 Before writing electric signals to the chip reads the written content, it is necessary to verify whether or not written to reliably write signal. 【0007】一方、ラベルプリンタの内部では、RFI [0007] On the other hand, in the inside of the label printer, RFI
Dラベルを搬送する際にゴムローラやガイド部材などに摺接したり、印字部のサーマルヘッドおよびプラテンローラから熱や圧力が加えられるため、静電気による破壊や断線・接触不良などが生じてRFIDが故障してしまう可能性がある。 Or sliding contact, such as the rubber roller and guide member in transporting the D label, the heat and pressure are applied from the thermal head and a platen roller of the printing unit, RFID has failed to occur, such as by disruption or disconnection, contact failure electrostatic there is a possibility become. 【0008】本発明は上記課題に鑑みなされたもので、 [0008] The present invention has been made in view of the above problems,
その目的はRFIDラベルを印字発行する際に、同時にRFIDの書込を検証できるRFIDラベルプリンタを提供することにある。 Its purpose is when prints and issues an RFID label is to provide an RFID label printer that can validate the writing of the RFID simultaneously. 【0009】 【課題を解決するための手段】上記課題を解決する為、 [0009] In order to solve the problems] In order to solve the above problems,
本発明が採用する構成の特徴は、RFIDラベルの表面に可視情報を記録する印字部と、該印字部にRFIDラベルを供給する搬送部と、該搬送部に対して前記印字部の上流側と下流側に、それぞれ非接触型リーダライタのアンテナを設けたことにある。 Features of the configuration to which the present invention is employed, a printing unit for recording visible information on the surface of the RFID label, and a conveying unit supplying RFID label indicia-shaped portion, and the upstream side of the printing unit with respect to the conveying unit downstream, in that each is provided an antenna of a non-contact reader-writer. 【0010】上記構成によると、上流側のアンテナからRFIDに書き込まれた内容を下流側のアンテナから読み出して検証できるので、印字後にラベルをバックフィードしなくても、RF書込の検証ができる。 [0010] According to the above arrangement, since the contents written from the upstream side of the antenna in the RFID can be verified by reading from the downstream side of the antenna, without backfeed the label after printing, it is verified the RF write. 【0011】また、印字部の下流側にアンテナを設けたので、印字の際に損傷されたRFIDを即排除できる。 Further, since there is provided an antenna on the downstream side of the printing unit, you can immediately eliminate the damaged RFID during printing. 【0012】また、発行履歴を記録して管理することにより、不良ラベルが混入しても必要な部数を正確に発行できる。 Further, by managing records the issue history can be accurately issue a number of copies necessary defective label is mixed. 【0013】 【発明の実施の形態】以下、添付図面に従って本発明に係るラベルプリンタの好ましい実施の形態について説明する。 DETAILED DESCRIPTION OF THE INVENTION Hereinafter, will be described a preferred embodiment of a label printer according to the present invention with reference to the accompanying drawings. 【0014】先ず、ラベルプリンタにて印字を施すRF [0014] First, RF subjected to printing in the label printer
IDラベルについて説明する。 It will be described ID label. 【0015】図1は、ロール状に巻回されたラベル用紙12を示す斜視図である。 [0015] Figure 1 is a perspective view showing a label sheet 12 wound in a roll shape. 同図に示すように、ラベル用紙12は、帯状に形成された台紙(剥離紙)16に、多数のRFIDラベル14、14、…が所定の間隔で仮着されて構成されている。 As shown in the figure, the label sheet 12, the base sheet (release paper) 16 formed in a band shape, a large number of RFID labels 14, 14, ... are constructed by temporarily attached at a predetermined interval. 【0016】RFIDラベル14は、積層された上層1 The RFID label 14 is laminated layer 1
4Aと下層14Bとからなり、上層14Aと下層14B It consists 4A and a lower layer 14B, upper 14A and lower 14B
との間にICチップ22およびアンテナ24が配設されている。 IC chip 22 and the antenna 24 is disposed between the. 一方、台紙16は、RFIDラベル14を一枚ごとに切断するためのミシン目20が形成されるとともに、裏面に検出マーク(不図示)が所定の間隔で印刷されている。 On the other hand, the mount 16, with perforations 20 for cutting the RFID label 14 for each piece is formed, the detection mark (not shown) is printed at a predetermined interval on the back. なお、図1は、ラベル用紙12の一例であり、ラベル用紙12の構成はこれに限定されるものではない。 Incidentally, FIG. 1 is an example of the label sheet 12, the configuration of the label sheet 12 is not limited thereto. 例えば、台紙16にミシン目20が形成されていないラベル用紙や、RFIDラベル14が連続的に連なっているラベル用紙であってもよい。 For example, the label paper is not perforated 20 is formed on the base sheet 16 may be a label paper RFID label 14 is continuous to continuous. 【0017】次に、本実施形態のラベルプリンタについて説明する。 Next, a description will be given label printer of the present embodiment. 図2は、本実施の形態のプリンタ10の概略構造を示す断面図である。 Figure 2 is a sectional view showing a schematic structure of a printer 10 of this embodiment. 同図に示すように、プリンタ10は主として、供給手段26、RFIDリーダライタ(RFID読取/書込制御回路)28、印字手段3 As shown in the drawing, the printer 10 mainly supply means 26, RFID reader-writer (RFID read / write control circuit) 28, a printing unit 3
0、通信インタフェース(通信I/F)32等から構成されている。 0, and a communication interface (communication I / F) 32 and the like. 【0018】供給手段26の軸には、ロール状に巻回されたラベル用紙12が装着されている。 [0018] axis of the supply means 26, a label sheet 12 wound into a roll is attached. ラベル用紙12 Label paper 12
は、印字手段30のプラテンローラ36を回転駆動することにより供給手段26の軸から繰り出され、リーダライタ28による書込を経て印字手段30に移送される。 Is fed from the axis of the supply means 26 by rotating the platen roller 36 of the printing unit 30, is transferred to the printing means 30 via the writing by the reader writer 28.
34は供給手段26のすぐ下流側に設けられたラベル検出センサで、このセンサ34によって台紙16の検出マーク(不図示)を検出する。 34 the label detection sensor provided immediately downstream of the feed means 26, for detecting the detection mark of the mount 16 (not shown) by the sensor 34. そして、印字手段30は、 Then, the printing means 30,
センサ34が検出マークを検出したタイミングに基づいて、印字を開始する。 Based on the timing at which the sensor 34 detects the detection mark and starts printing. 【0019】印字手段30は、対向して配置されたプラテンローラ36とサーマルヘッド(印字ヘッド)38とによって構成される。 The printing means 30 is constituted by the platen roller 36 and the thermal head (print head) 38 disposed opposite. このプラテンローラ36とサーマルヘッド38との間に、前記供給手段26から繰り出されたラベル用紙12が供給される。 Between the platen roller 36 and the thermal head 38, the label sheet 12 unwound from the supply means 26 is supplied. そして、サーマルヘッド38の発熱素子(不図示)を発熱させることにより、ラベル用紙12を感熱発色させて印字する。 Then, by heating the heating elements of the thermal head 38 (not shown), printing the label sheet 12 by heat-sensitive coloring. 印字後のラベル用紙12は、取出口48から取り出される。 Label paper 12 after printing is removed from outlet 48. なお、印字手段30の印字方式は、感熱発色式に限定するものではなく、熱転写式やインクジェット式であってもよい。 Incidentally, the printing scheme of the printing unit 30 is not limited to the heat-sensitive coloring type, it may be a thermal transfer type or ink jet type. 【0020】一方、RFIDリーダライタ28は、2つのアンテナ40および46を備えている。 Meanwhile, RFID reader-writer 28 includes two antennas 40 and 46. 一方のアンテナ40は、印字手段の上流側の供給手段26と印字手段30との間に配設されており、他方のアンテナ46は印字部30の下流側の取出口48のすぐ外側に、それぞれラベル用紙12の搬送通路に近接して設けられている。 One antenna 40 is arranged between the supply means 26 on the upstream side of the printing means and the printing means 30, the other antenna 46 just outside the downstream side of the outlet 48 of the printing unit 30, respectively It is provided near the conveyance path of the label sheet 12. 【0021】RFIDリーダライタ28は、このアンテナ40,46と、RFIDラベル14のアンテナ24とを介してICチップ22と通信し、ICチップ22に情報を書き込んだり、ICチップ22から情報を読み取る。 The RFID reader-writer 28 includes an antenna 40, 46, and communicates with the IC chip 22 via the antenna 24 of the RFID label 14, write information to the IC chip 22, reads information from the IC chip 22. 【0022】図3はプリンタ10とRFIDラベル14 [0022] Figure 3 is the printer 10 and the RFID label 14
の要部を示すブロック図である。 It is a block diagram showing a main part. 【0023】同図に示すように、プリンタ10の制御部本体を構成するCPU52は、バス54を介してROM As shown in the figure, CPU 52 constituting the control unit main body of the printer 10 via the bus 54 ROM
56、RAM58と接続されている。 56, RAM 58 is connected to the. ROM56には後述するフロー図(図4)に示す処理を行うプログラム等が記憶され、RAM58には各種メモリのエリアが形成されている。 ROM56 program for performing the processing shown in the flow diagram to be described later (FIG. 4) is stored in the, various memory areas are formed in the RAM 58. CPU52は、サーマルヘッド印加回路(ヘッドコントローラ)60に接続されており、このサーマルヘッド印加回路60によってサーマルヘッド38を制御する。 CPU52 is connected to the thermal head applying circuit (head controller) 60 controls the thermal head 38 by the thermal head applying circuit 60. 【0024】また、CPU52は、バス54を介してラベル搬送回路(駆動制御コントローラ)62に接続され、このラベル搬送回路62によってモータドライバを制御し、パルスモータ(いずれも不図示)を駆動させてラベル用紙12を搬送する。 Further, CPU 52 is connected to the label carrier circuit (drive controller) 62 via the bus 54, and this controls the motor driver by a label conveying circuit 62 to drive the pulse motor (both not shown) to convey the label paper 12. 前記ラベル搬送回路62 The label carrier circuit 62
は、アイマーク検出回路68を介してセンサ34に接続されており、センサ34が台紙16の検出マーク(不図示)を検出したタイミングに基づいてパルスモータを駆動する。 It is connected to the sensor 34 through the eye mark detection circuit 68, the sensor 34 drives the pulse motor based on the timing of detecting the detection mark (not shown) of the mount 16. 【0025】また、CPU52は、RFIDリーダライタ(RFID読取/書込制御回路)28を介してアンテナ40.46に接続され、このアンテナ40、46からRFIDラベル14のアンテナ24に信号を送受信する。 Further, CPU 52 is connected to an antenna 40.46 via an RFID reader-writer (RFID read / write control circuit) 28, transmit and receive signals from the antenna 40, 46 to the antenna 24 of the RFID label 14. 【0026】一方、RFIDラベル14は、マイクロプロセッサ(MPU)74を有しており、このMPU74 On the other hand, RFID label 14 has a microprocessor (MPU) 74, the MPU74
が、通信手段75を介してアンテナ24からプリンタ1 But the printer 1 from the antenna 24 via the communication means 75
0のアンテナ40、46に信号を送受信する。 Transmitting and receiving signals to 0 of the antenna 40, 46. 32はホストコンピュータ78と印字データや発行履歴のデータを送受信するための通信インタフェース(通信I/F)、 32 communication interface for transmitting and receiving data of the print data and issuance history with the host computer 78 (communication I / F),
80はキーボードコントローラ、LCDコントローラなどからなる液晶表示及び操作キー制御回路で、キーボードや液晶ディスプレイが設けられた操作パネル82に接続され、いずれも前記バス54を介してCPU52に接続されている。 80 in the liquid crystal display and an operation key controller comprising a keyboard controller, LCD controller, connected to the operation panel 82 including a keyboard and a liquid crystal display is provided, both connected to CPU52 through the bus 54. 【0027】次にラベルプリンタ10が行う動作について図4に基づき説明する。 [0027] Next, the operation of the label printer 10 performs will be described based on FIG. 【0028】まず図示しない電源スイッチの投入によりスタートし、メモリやCPU等のハードウエアテェックや用紙位置をホームポジションまで移送し、ROM56 [0028] First, start by turning on the power switch (not shown), to transfer the hardware Te-click and paper position, such as memory and CPU to the home position, ROM56
内のプログラムをRAM58に読み込んで実行可能にする。 The program of the inner to enable reads and executes the RAM58. 【0029】次いで、RFIDラベル14を上流側のアンテナ40と交信可能な位置までフィードし、受信待機する(ステップ1)。 [0029] Then, feeds the RFID label 14 to communicate possible position and upstream of the antenna 40, to listen (step 1). 【0030】次のステップ2では、通信I/F32を介してホストコンピュータ78から受信したRFID用書込データを前記リーダライタ28からRFID14に書込む(ステップ2)。 [0030] In the next step 2, writing the RFID write data received from the host computer 78 via the communication I / F32 from the reader writer 28 to RFID14 (Step 2). 【0031】次いで、このRFIDに電気的書込を行ったラベル(印字該当ラベル)14を、印字部30へ搬送し、サーマルヘッド38を用いて視覚的・光学的な情報 [0031] Then, a label (printed applicable label) 14 performing the electrical write this RFID, transported to the printing section 30, a visual-optical information using a thermal head 38
(文字やバーコード、二次元コードなど)の書込を行う(ステップ3)。 (Characters or bar codes, two-dimensional code, etc.) for writing the (Step 3). 【0032】次いで、ラベル14を下流側のアンテナ4 [0032] Then, the antenna 4 the label 14 on the downstream side
6と交信可能な位置まで搬送し、上流側のアンテナ40 Conveyed to communicate possible locations and 6, the upstream-side antenna 40
からRFIDのチップに書込まれた内容と、実際にRF The contents written in the RFID chip from actually RF
ID14から読み出されたデータとを照合する問い合わせを行い、電気的書込が成功したか否か判定する(ステップ5)。 Queries that collates the data read from the ID 14, and determines whether the electrical writing is successful (Step 5). 【0033】ここで、YES(Y)の場合は、一枚のRFI [0033] Here, in the case of YES (Y), a single RFI
Dラベル14に対する処理を終了し、このまますべての処理を終了するか、次に電気的書込と表面へ印字すべきRFIDラベルが有る場合は、前述したステップ1へリターンする。 Stop processing the D label 14, or ends as it all processing, if the next RFID label to be printed to electrically write and surface is present, the process returns to step 1 described above. 【0034】一方、前記ステップ5でNO(N)の場合は、 On the other hand, if in step 5 NO of (N) is
ステップ6に移行する。 The process proceeds to step 6. このステップでは、電気的にリード/ライトエラーとなったRFIDラベル14が存在することを通知する。 In this step, notifying that electrically RFID label 14 became read / write error is present. この場合、ブザーを鳴らしたり操作パネル82の液晶ディスプレイにエラーの表示を行い、プリンタを一時停止させる。 In this case, to display the error on the liquid crystal display of or the operation panel 82 and the buzzer sounds, stop the printer time. 【0035】この際、通信I/Fを介してホストコンピュータ78にRFID14の発行履歴を転送することもできる。 [0035] At this time, it is also possible to transfer the issuance history of RFID14 the host computer 78 via the communication I / F. 例えば正常に発行されたRFIDのシリアルナンバーをホストコンピュータ78に転送するとよい。 For example it may be transferred successfully issued RFID of the serial number to the host computer 78. 【0036】そして、エラー発生の都度再発行を行う、 [0036] Then, the re-issued every time an error occurs,
或いはエラー分をまとめて再発行する、などの処理はオペレータが選択できるようにする。 Or collectively error component reissued, processing, such as to allow the operator to select. 【0037】以上、本実施の形態によれば、RFIDリーダライタ28のアンテナ40,46がラベル搬送部に沿って、印字部30の上流側と下流側に配置されるので、サーマルヘッド38で印字した後に電気的にリード/ライトエラーとなったRFIDラベル14を不良ラベルとして排除でき、この際に印字部とアンテナの間でR [0037] As described above, according to this embodiment, an antenna 40, 46 of the RFID reader-writer 28 along the label transport unit, since it is arranged on the upstream side and the downstream side of the printing unit 30, printing in the thermal head 38 R electrically RFID label 14 became read / write error after be eliminated as a defective label, between the printing unit and the antenna when the
FIDをフィード或いはバックフィードさせる煩雑さから解放され、搬送部におけるラベルのスリップや斜行、 Released the FID from complexity to feed or backward feed, labels slip and skew in the conveying section,
ギアのバックラッシュ等による印字不良が発生する可能性を低減させることもできる。 Printing defects due to backlash of the gear can also be reduced may occur. 【0038】また、RFIDラベルの発行履歴をホストコンピュータに転送することにより、不良ラベルの混入による発行部数の不足や、偽造ラベルとの真贋判定を容易にできる等、種々の効果を奏する。 Further, by transferring the issue history of the RFID label to the host computer, it exhibits insufficient or circulation by incorporation of a defective label, or the like can easily authenticity determination of counterfeit labels, various effects. 【0039】なお、前記実施の形態では、上流側アンテナ40、下流側アンテナ46はそれぞれ書込、読取を行うものとして説明したが、それぞれ専用のものではなく、送信・受信ともに行うことができるものである。 [0039] Incidentally, in the embodiment, the upstream-side antenna 40, respectively downstream antenna 46 writing has been described as performing read, not only in each which can be done for both transmission and reception it is. 従って、上・下流側の各アンテナの送信・受信の動作状態により、プリンタ10には以下4つの動作モードが存在する。 Therefore, the operation state of the transmission and reception of each antenna of the upstream and downstream side, the printer 10 there are four operating modes:. (1)RF書込、サーマル印字、RF読取(2)RF読取、サーマル印字、RF書込(3)RF書込、サーマル印字、RF書込(4)RF読取、サーマル印字、RF読取【0040】上記実施の形態では(1)の場合を説明したが、(2)、(4)の如く、上流側アンテナで読み取るようにすれば、ホストコンピュータを用いなくても、 (1) RF write, thermal printing, RF reader (2) RF reader, thermal printing, RF write (3) RF write, thermal printing, RF write (4) RF reader, thermal printing, RF reading [0040 in the above embodiment has been described with respect to the case of (1), (2), as (4), if to read upstream antenna, without using the host computer,
予めデータが記録された未印字のRFIDラベルからデータを読取り、ラベル表面に印字することもできる。 It reads data from a previously unprinted the RFID label on which data is recorded, can also be printed on the label surface. 【0041】また、(2)、(3)の如く、下流側アンテナで書込むようにすれば、印字部でサーマル印字した後、既にRFIDに記憶されているデータを削除したり、ファイル属性(隠しファイル、読み取り専用ファイルなど)の変更を行うこともできる等、種々の効果を奏する。 Further, (2), (3) as, if to write on the downstream side antenna, after thermal printing by the printing unit, or to delete the data stored in the RFID already file attributes ( hidden files, etc. can be performed changes, such as read-only files) exhibits various effects. 【0042】 【発明の効果】如上の如く、本発明によれば、RFID [0042] As According to the process 30 according to the present invention, according to the present invention, RFID
リーダライタのアンテナがラベル搬送部に沿って、印字部の上流側と下流側に配置されるので、印字部とアンテナの間でRFIDをフィード或いはバックフィードさせることなく、印字部で印字した後に電気的にリード/ライトエラーとなったRFIDラベルを検出して排除でき、この際に搬送部におけるラベルのスリップや斜行、 The antenna of the reader writer along the label transport unit, since it is arranged on the upstream side and the downstream side of the printing unit, without feed or back feeding RFID between the printing unit and the antenna, the electrical after printing in the printing unit to read / write to detect an RFID label in error can be eliminated by, labels slip and skew in the conveying section when this,
ギアのバックラッシュ等による印字不良が発生する可能性を低減できる。 Printing defects due to backlash of gears it is possible to reduce the possibility of generating. 【0043】また、RFIDラベルの発行履歴をホストコンピュータに転送することにより、不良ラベルの混入による発行部数の不足や、偽造ラベルとの真贋判定を容易にできる。 [0043] Furthermore, by transferring the issue history of the RFID label to the host computer, shortage or the circulation by incorporation of a defective label can facilitate determining the authenticity of the counterfeit labels. 【0044】さらに、上流側アンテナでRFIDを読み取って、予めデータが記録された未印字のRFIDラベルの表面に印字したり、印字部でサーマル印字した後のRFIDラベルに下流側アンテナから書き込んで、記憶されているデータを削除したり、ファイル属性を変更できる等、種々の効果を奏する。 [0044] Further, by reading the RFID upstream antenna, or printed on the surface of the unprinted the RFID label in advance data is recorded, is written from the downstream side antenna in the RFID label after thermal printing by the printing unit, and delete data stored, etc. can change the file attribute exhibits various effects.

【図面の簡単な説明】 【図1】本実施の形態のプリンタで印字を施すRFID BRIEF DESCRIPTION OF THE DRAWINGS [Figure 1] RFID subjected to printing by the printer of this embodiment
ラベルを示す斜視図である。 It is a perspective view showing a label. 【図2】本発明に係るプリンタの一実施の形態の概略構造を示す概略図である。 It is a schematic view showing a schematic structure of an embodiment of the printer according to the present invention; FIG. 【図3】図2のプリンタの制御部を示すブロック図である。 3 is a block diagram showing a control unit of the printer of FIG 2. 【図4】図2のプリンタが行う処理のフロー図である。 4 is a flow diagram of the printer performs the processing of FIG. 【符号の説明】 10…プリンタ、12…ラベル用紙、14…RFIDラベル、22…ICチップ、24…アンテナ、26…供給手段、28…通信手段(RFIDリーダライタ)、30… [Description of Reference Numerals] 10 ... printer, 12 ... label paper, 14 ... RFID label, 22 ... IC chip, 24 ... antenna, 26 ... feeding means, 28 ... communication means (RFID reader-writer), 30 ...
印字手段、34…センサ、36…プラテンローラ、38 Printing means, 34 ... sensor, 36 ... platen roller, 38
…サーマルヘッド(印字ヘッド)、40…上流側アンテナ、46…下流側アンテナ ... thermal head (print head), 40 ... upstream antenna, 46 ... downstream antenna

Claims (1)

  1. 【特許請求の範囲】 【請求項1】アンテナを介して非接触状態でリード/ライト可能なICを内蔵したRFIDラベルに印字を行うRFIDラベルプリンタにおいて、前記RFIDラベルの表面に可視情報を記録する印字部と、該印字部にRF In RFID label printer for printing to the Claims 1] RFID label with a built-in read / write IC through the antenna in a non-contact state, to record visible information on the surface of the RFID label a printing unit, RF to indicia shaped portion
    IDラベルを供給する搬送部と、該搬送部に対して前記印字部の上流側と下流側に、それぞれ非接触型リーダライタのアンテナを設けたことを特徴とするRFIDラベルプリンタ。 A conveying unit for supplying an ID label, to the upstream side and the downstream side of the printing unit with respect to the transport unit, RFID label printer, characterized in that each provided with an antenna of a non-contact reader-writer.
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