CN100414557C - Radio frequency identification and test system - Google Patents

Radio frequency identification and test system Download PDF

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CN100414557C
CN100414557C CN 200510059802 CN200510059802A CN100414557C CN 100414557 C CN100414557 C CN 100414557C CN 200510059802 CN200510059802 CN 200510059802 CN 200510059802 A CN200510059802 A CN 200510059802A CN 100414557 C CN100414557 C CN 100414557C
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radio frequency
frequency identification
rail
slide rail
slide
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CN 200510059802
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CN1841404A (en
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余俊德
维 张
张素惠
王圣弼
陈佩君
陈士林
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财团法人工业技术研究院
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Abstract

本发明公开了一种无线射频辨识(RFID)测试系统,包括一待测物、一无线射频辨识(RFID)读取机以及一测试机,该待测物上设有一无线射频辨识(RFID)卷标,该测试机包括一底座、一第一滑轨,其具有长条外形且固定于该底座上、一第二滑轨,其具有长条外形且位于该第一滑轨上,该第二滑轨垂直于该第一滑轨,且可沿着该第一滑轨做线性移动、一第三滑轨,其具有长条外形且位于该第二滑轨上,该第三滑轨分别垂直于该第一滑轨及该第二滑轨,且可沿着该第二滑轨做线性移动,以及一箝制部,其与该第三滑轨相连接且可沿着该第三滑轨做线性移动,该箝制部固定该待测物或该无线射频辨识(RFID)读取机。 The present invention discloses a radio frequency identification (RFID) test system comprising an analyte, a radio frequency identification (RFID) reader and a testing machine, is provided with a radio frequency identification (RFID) volume on the DUT standard, the test unit includes a base, a first rail having an elongated shape and is fixed on the base, a second rail having an elongated shape and is disposed on the first rail, the second perpendicular to the first slide rail, and can be moved linearly along the first slide, a third slide rail having an elongated shape and is located on the second rail, the third rail, respectively, vertical to the first slide and the second slide rail, and can linearly move, and a clamp portion along the second slide rail, which is connected with the third slide rail and can be made along the third slide rail linear movement of the clamp portion of the fixation test or the radio frequency identification (RFID) reader.

Description

无线射频辨识测试系统技术领域本发明涉及一种无线射频辨识(RFID)测试系统,特别是一种可测试无线射频辨识(RFID)巻标及读取器间相对关系的无线射频辨识(RFID爛试系统。背景技术一般来说,无线射频辨识(RFID)系统可大体分为二部份:读取器(Rea(fer, 包含天线)、及无线射频辨识(RFID)巻标,其中读取器天线利用电磁波对无线射频辨识(RFID)巻标进行读取或写入的动作。目前市面上的读取器及无线射频辨识(RFID)巻标种类繁多,读取器的性能以及无线射频辨识(RFID)巻标的特性各有不同,读取器的天线型式不同则其贴附于不同物品上时所产生的特性、被读取距离、读取率也不相同,这是因为无线射频辨识(RFID)是通过电磁波传输信息,电磁波特性易受金属、水份等环境的影响而改变其特性进而影响读取器读取无线射频辨识(RFID)巻标的能力及读取率,因此在无线 Radio frequency identification test TECHNICAL FIELD The present invention relates to a radio frequency identification (RFID) test system, particularly an RFID- between test and standard Volume opposing relationship reader (RFID) radio frequency identification (RFID bad test system bACKGROUND aRT In general, radio frequency identification (RFID) system can be roughly divided into two parts: a reader (Rea (fer, comprising an antenna), and radio frequency identification (RFID) Volume standard, wherein the reader antenna electromagnetic waves of radio frequency identification (RFID) Volume standard read or write operation performed. the reader is currently available in the market and radio frequency identification (RFID) standard Volume wide range of performance of the reader and a radio frequency identification (RFID ) Volume subject characteristics are different, a different type of reader antenna characteristics when it is attached to a different article generated, is read from the reading rate is not the same, because the radio frequency identification (RFID) is transmitted through an electromagnetic wave information, the electromagnetic characteristics of susceptible metal, moisture and other environmental changes its properties thereby affecting the reader reads the radio frequency identification (RFID) Volume capacity of the subject and read rates, so the radio 频辨识(RFID)的应用上,如何选择适用于特定物品的无线射频辨识(RFID)巻标并搭配合适的读取器来达到最佳的读取效果便是一个重要的课题。一般以人工方式进行的无线射频辨识(RFID)读取器、无线射频辨识(RFID) 巻标及待测物的搭配测试耗时费力,此外人工测试具有干扰多且不精确的缺点,因此通过人工测试无法完全了解无线射频辨识(RFID)读取器、无线射频辨识(RFID)巻标及待测物的搭配特性。与无线射频辨识(RFID)测试的相关技术是TW330927DE的"非接触式无线射频辨识(RFID)组件测试分类方法及其装置",其揭露一种非接触式无线射频辨识(RFID)组件测试分类方法及其装置,包括一分类机、Reader、至少一无接脚包装的无线射频辨识(RFID)的组件及个人计算机(PC)等组成单元,分类机及摇读机分别连接于个人计算机,该分类机会将无线射频辨识(RFID)组件送至定位,并 Application Frequency Identification (RFID), how to choose for a specific article of radio frequency identification (RFID) Volume standard and with the appropriate reader to read the best results is an important issue. Usually manually radio frequency identification (RFID) reader performed, with the test radio frequency identification (RFID) standard and analyte Volume time-consuming, manual testing in addition multi imprecise disadvantage with interference. Therefore, by manual testing can not be fully understood radio frequency identification (RFID) reader, a radio frequency identification (RFID) standard and with the characteristics Volume analyte. with radio frequency identification (RFID) technology related to testing is "non-contact type radio frequency identification TW330927DE the (RFID) classification component testing method and apparatus ", which discloses a non-contact type radio frequency identification (RFID) component testing and classification apparatus comprising a sorter, Reader, at least a no-lead package of radio frequency identification (RFID) components and a personal computer (PC) and other constituent units, and shake sorter machines are connected to the read personal computer, the radio frequency identification classification opportunity (RFID) component to the registration, and 通知个人计算机开始测试,此时Reader开始感读,并自遥读机读取感读结果,之后,再依感读结果,判定RF ID组件分类等级,然后,个人计算机通知分类机进行分类工作,使该分类机依等级分类。然而,该相关技术属于检测无线射频辨识(RFID) IC组件的设备,而无法测试无线射频辨识(RFID)读取器及搭配待测物的无线射频辨识(RFID)巻标。另一相关技术是US6724308的"无线射频辨识(RFID)追踪方法与系统(无线射频辨识(RFID) Tracking Method and System)",其将无线射频辨识(RFID) 巻标应用于多种物流场合,以追踪物品及货柜的流向,并举出在多种物流产业常用运送器具如何架设天线来对物品上的无线射频辨识(RPID)巻标进行读取以达到追踪的功能。 Inform the personal computer to start the test, then began to feel Reader to read, and read from a sense of remote reading machine-readable result, after re-reading the results of the sensitivity, determination RF ID components Classification, then, personal computer notification sorter classification work, the sorter according to classification level. However, the related art devices belonging to detect radio frequency identification (RFID) component of the IC, but can not test the radio frequency identification (RFID) reader and a radio frequency identification with the analyte (RFID) Volume standard. another related art is the US6724308 "radio frequency identification (RFID) tracking method and system (radio frequency identification (RFID) Tracking method and system)", which radio frequency identification (RFID) standard used in various stream Volume occasions, to track the flow of goods and containers, citing a variety of logistics industry in how to set up the antenna commonly used transport apparatus for reading radio frequency identification (RPID) Volume marked on the item in order to achieve tracking function. 此相关技术纯粹为无线射频辨识(RFID)的应用及在物流动线中天线如何架设及货柜应用,并未提及无线射频辨识(RFID)读取器、 无线射频辨识(RFID)巻标及待测物搭配上的选用及读取效果。 This is purely related art, radio frequency identification (RFID) and how the flow line was set up and the antenna container application, does not refer to radio frequency identification (RFID) reader, a radio frequency identification (RFID) Volume to be labeled and was measured with a selection and read performance on. 又另一相关技术是US6452496的"测定通讯范围的无线射频辨识(RFID) 装置及方法(Radio Frequency Identification Devices and a Method of Determining a Communicatioii Range)",其揭露了一主动式无线射频辨识(RFID) 巻标的内部组件结构及其通讯距离测定方法,但未提及无线射频辨识(RFID) 读取器、无线射频辨识(RFID)巻标及待测物搭配上的选用及读取效果。 Yet another related art is the US6452496 "Determination communication range of radio frequency identification (RFID) device and method (Radio Frequency Identification Devices and a Method of Determining a Communicatioii Range)", which discloses an active radio frequency identification (RFID) Volume target device structure and method for measuring internal communication distance with no mention of radio frequency identification (RFID) reader, a selection and read performance on the radio frequency identification (RFID) standard and analyte with Volume. 此外, 一般物流现场是将无线射频辨识(RFID)读取机固定,而由栈板移动待测物及无线射频辨识(RFID)巻标,再以该无线射频辨识(RFID)读取机进行读取而测量无线射频辨识(RFID)读取机的读取范围;然而,由于栈板体积庞大,再加上放上物品后的重量,若是要由一机构带动栈板运动则此机构势必需要具有一定的结构强度及强力的趋动设备,如此便必须使用到金属结构来制作该机构,但由于无线电(电磁波)易受金属反射影响,故测量结果便容易产生误差。 Further, the scene is generally logistics radio frequency identification (RFID) reader stationary, and the pallets moving analyte and radio frequency identification (RFID) Volume standard, and then to the radio frequency identification (RFID) reader for reading measured taken read range radio frequency identification (RFID) reader; however, due to the large volume of pallets, plus the weight of the article put, if the pallet to be driven by a movement mechanism having this mechanism will be needed certain structural strength and strong-driven device, so it must be used to produce the metal structure of the mechanism, but due to the radio (electromagnetic wave) susceptible to influence the reflective metal, so that the measurement result will be error prone. 因此,亟需要一种可测试无线射频辨识(RFID)巻标及读取器间相对关系的无线射频辨识(RFID)测试系统,以解决上述现有技术的缺陷。 Thus, an urgent need to test radio frequency identification (RFID) radio frequency identification (RFID) standard test systems Volume between the reader and relative relationships, to solve the above-mentioned drawbacks of the prior art. 发明内容本发明的主要目的是提供一种无线射频辨识(RFID)测试系统,该测试系统以三维空间测试机来进行无线射频辨识(RFID)巻标及读取器间的读取效率测试,使得使用者可找出在特定物品上最佳的无线射频辨识(RFID)巻标及读取器的组合,增加读取范围并可节省因错误选择而造成成本的增加。 The main object of the present invention is to provide a radio frequency identification (RFID) test system, the test system to three-dimensional testing machine to radio frequency identification (RFID) reader Volume Efficiency Test between standard and the reader, such that the user can find the best combination on a particular item radio frequency identification (RFID) reader and the subscript Volume increase read range due to an error and save cost increase caused by choice. 本发明的上述目的是这样实现的, 一种无线射频辨识(RFID)测试系统, 其包括:一待测物, 一无线射频辨识读取机、 一测试机、 一处理装置与一控制装置,其中,该待测物其上设有一无线射频辨识巻标; 一无线射频辨识读取机;以及一该测试机,包括: 一底座;一第一滑轨,其具有长条外形且固定于该底座上;一第二滑轨,其具有长条外形且位于该第一滑轨上,该第二滑轨垂直于第一滑轨,且可沿着该第一滑轨线性移动;一第三滑轨,其具有长条外形且位于该第二滑轨上,该第三滑轨分别垂直于第一滑轨及第二滑轨,且可沿着该第二滑轨线性移动;以及一箝制部,其与该第三滑轨相连接且可沿着第三滑轨线性移动;该箝制部固定该待测物及该无线射频辨识读取机其中之一;还包括一该处理装置与一控制装置,该处理装置与该控制装置电连接, The above object of the present invention is implemented, a radio frequency identification (RFID) test system comprising: an analyte, a radio frequency identification reader, a tester, a processing device and a control device, wherein the analyte which is provided with a radio frequency identification Volume standard; a radio frequency identification reader; and one of the test machine, comprising: a base; a first slide rail having an elongated shape and is fixed to the base a; a second rail having an elongated shape and is disposed on the first rail, the second rail perpendicular to the first slide, the first slide rail and can move along the linear; a third slide rail having an elongated shape located on the second slide and the third slide are perpendicular to the first rail and a second rail, the second rail and can move along the linear; and a clamping portion , which is connected with the third slide rail and is linearly movable along the third rail; fixing the analyte and one of the radio frequency identification reader wherein the clamp portion; further comprising a processing device and a control of the means, the processing means is electrically connected to the control means, 控制装置与该测试机电连接,并将无线射频辨识读取机读取的结果传回该处理装置进行记录,获得可读取的范围。 Control means connected to the test electronics, and the result of the radio frequency identification reader reads the processing means to pass back the recording, the read range can be obtained. 下面结合附图对本发明进行详细说明。 The present invention will be described in detail in conjunction with the accompanying drawings. 需要说明的是,以下附图所列举的实施例仅为辅助说明,而不是用于将限制本发明。 Incidentally, the accompanying drawings listed below illustrate embodiments are merely assist and is not intended to limit the invention. 图1是本发明无线射频辨识(RFID)测试系统的示意图; 图2是运用本发明无线射频辨识(RFID)测试系统的测试结果示意图。 FIG 1 is a schematic diagram of the present invention is radio frequency identification (RFID) test system; FIG. 2 is a schematic view of the test results of the use of the present radio frequency identification (RFID) test system of the present invention. 附图标记说明:l待测物;2测试机;3控制装置;4处理装置;10无线射频辨识巻标;12无线射频辨识读取机;20底座;22第一滑轨;24第二滑轨;26第三滑轨;28箝制部;40显示器;220驱动装置;240驱动装置;260附图说明驱动装置;A-阴影区。 Reference numerals Note: l analyte; 2 testing machine; control means 3; 4 processing apparatus; Volume 10 radio frequency identification mark; radio frequency identification reader 12; chassis 20; a first slide rail 22; 24 of the second carriage rail; third slide rail 26; clamp portion 28; a display 40; 220 drive means; drive means 240; 260 BRIEF DESCRIPTION driving device; A- shaded area. 具体实施方式图1是本发明无线射频辨识(RFID)测试系统的示意图,显示了一较佳实施例。 DETAILED DESCRIPTION FIG. 1 is a schematic embodiment of the present invention is radio frequency identification (RFID) test system, shows a preferred embodiment. 其中该无线射频辨识(RFID)测试系统包括一待测物1、 一测试机2以及一无线射频辨识(RFID)读取机12,该待测物1上设有一无线射频辨识(RFID) 巻标10。 Wherein the radio frequency identification (RFID) test system comprising a test object 1, a testing machine 2 and a radio frequency identification (RFID) reader 12, provided with a radio frequency identification (RFID) Volume 1 of the labeled analyte 10. 该测试机2包括一底座20、 一第一滑轨22、 一第二滑轨24、 一第三滑轨26以及一箝制部28。 The test device 2 includes a base 20, a first slide rail 22, a second slide rail 24, a third slide rail 26 and a clamping portion 28. 该第一滑轨22具有长条外形且固定于该底座20上(当然,该第一滑轨22 可与该底座20以一体成形方式制成)。 The first slide rail 22 having an elongated shape and is fixed to (of course, the first slide rail 22 may be integrally formed in a 20 manner to the base formed) on the base 20. 该第二滑轨24具有长条外形且位于该第一滑轨22之上,该第二滑轨24 垂直于该第一滑轨22,该第二滑轨24与该第一滑轨22的连接处设有一驱动装置220,该驱动装置220驱动第二滑轨24,使该第二滑轨24可沿着该第一滑轨22线性移动。 The second slide rail 24 having an elongated shape and located above the first slide rail 22, the second slide rail 24 is perpendicular to the first slide 22, the slide rail 24 and second rail 22 of the first connection with the second slide rail 24 may be a linear movement of the drive means 220, the driving device 220 drives the second slide rail 24, so that along the first slide rail 22. 该第三滑轨26亦具有长条外形且位于该第二滑轨24之上,该第三滑轨26垂直于该第二滑轨24,该第三滑轨26与该第二滑轨24的连接处设有一驱动装置240,该驱动装置240驱动第三滑轨26,使该第三滑轨26可沿着该第二滑轨24线性移动。 The third slide rail 26 also has an elongated shape and is positioned above the second slide rail 24, the third slide rail 26 perpendicular to the second slide rail 24, the third slide rail 26 and the second slide rail 24 junction 240 is provided with a driving means, the driving means 240 drives the third slide rail 26, so that the third linear slide 26 moves the second slide 24 is movable along. 该箝制部28与该第三滑轨26相连接且与该第三滑轨26的连接处设有一驱动装置260,该驱动装置260驱动箝制部28,使其沿着该第三滑轨26线性移动。 The clamp portion 28 is provided and is connected to a drive means 260 at the third slide rail 26 is connected with the third slide rail 26, the driving device 260 drives the clamp unit 28, so that the third slide rail 26 along linear mobile. 于图1中,该无线射频辨识(RFID)测试系统还设有-控制装置3(例如可程序逻辑控制器PLC)及一处理装置4(例如个人计算机),该控制装置3与该测试机2电连接,该处理装置4则与该控制装置3电连接;该处理装置4设有一显示器40及存储器(图中未示出)。 In FIG. 1, the radio frequency identification (RFID) test system is further provided with - a control device 3 (e.g., programmable logic controller PLC) and a processing device 4 (e.g. a personal computer), the control means 3 of the test machine 2 electrically connected to the processing means 4 is electrically connected to the control device 3; the processing means 4 is provided with a display 40 and a memory (not shown). 当进行测试时,将该设有无线射频辨识(RFID)巻标10的待测物1置于该测试机2前方,并以该箝制部28固定该无线射频辨识(RFID)读取机12,然后操作该处理装置4,使可藉由该控制装置3控制该操作机2;故该第二滑轨24、 该第三滑轨26,以及该箝制部28则开始依序进行相对移动,同时该无线射频辨识(RFID)读取机12进行读取该无线射频辨识(RFID)巻标10的操作,并将结果传回该处理装置4进行记录;如此,便可于不同高度处得到如图2般的测试结果(其中的阴影区A是可读取的范围)。 When tested, with the radio frequency identification (RFID) labeled analytes Volume 1 10 2 is placed in front of the tester, and 28 fixed to the radio frequency identification (RFID) reader 12 of the clamping portion, the processing means 4 is then operated so that the operation of the control unit 3 may be 2 by the control means; thus, the second slide 24, the third slide rail 26, and the clamping unit 28 sequentially starts a relative movement, while the radio frequency identification (RFID) reader 12 operates to read the radio frequency identification (RFID) Volume 10 of the standard, and the results back to the processing means 4 for recording; thus, can be obtained at different heights in FIG. 2 like test results (wherein a is the shaded area of ​​the read range). 虽然于本发明的较佳实施例中,将设有无线射频辨识(RFID)巻标的待测物置于该测试机的前方,而以该箝制部固定该无线射频辨识(RFID)读取机; 然而,人们亦可将该无线射频辨识(RFID)读取机置于该测试机的前方,而以该箝制部固定该设有无线射频辨识(RFID)巻标的待测物(当该待测物体积及重量较小时)。 Although in the preferred embodiment of the present invention, will be provided with radio frequency identification (RFID) Volume test subject was placed in front of the tester, and clamped to the fixed portion of the radio frequency identification (RFID) reader; however people also the radio frequency identification (RFID) reader placed in front of the tester, and clamped to the fixing portion is provided with the radio frequency identification (RFID) volume target analyte (if the analyte volume and the weight is small). 此外,于本发明中,该测试机的操作可分为自动或手动方式。 Further, in the present invention, the operation of the tester can be divided automatically or manually. 由上可知,本发明的较佳实施方式是以测试机带动重量轻的无线射频辨识(RFID)读取机运动,因此不需使用金属来制作机体,由此便可避免金属对电磁波所造成的干扰,故能得到良好的测试结果,有效改善传统装置系统的缺陷。 From the above, the preferred embodiment of the present invention is light-weight tester driven radio frequency identification (RFID) reader motion, therefore need to make use of a metal body, whereby the metal can prevent electromagnetic waves caused by interference, so that good results can be obtained, effectively improve the defects of the conventional apparatus system. 以上所述仅为本发明的较佳实施例,当不能以此限定本发明所实施的范围。 The above are only preferred embodiments of the present invention, when the range of the embodiments of the present invention can not be defined in this. 因此凡依本发明权利要求所作的均等变化与修饰的,皆应属于本发明的保护范围之内。 Where the claims of the invention therefore made under this modifications and alterations, and all should be within the scope of the present invention.

Claims (8)

1. 一种无线射频辨识测试系统,其特征在于:其包括: 一待测物,一无线射频辨识读取机、一测试机、一处理装置与一控制装置,其中,该待测物上设有一无线射频辨识卷标; 该测试机包括: 一底座; 一第一滑轨,其具有长条外形且固定于该底座上; 一第二滑轨,其具有长条外形且位于该第一滑轨上,该第二滑轨垂直于第一滑轨,且可沿着该第一滑轨线性移动; 一第三滑轨,其具有长条外形且位于该第二滑轨上,该第三滑轨分别垂直于第一滑轨及第二滑轨,且可沿着该第二滑轨线性移动;以及一箝制部,其与该第三滑轨相连接且可沿着第三滑轨线性移动;该箝制部固定该待测物及该无线射频辨识读取机其中之一; 该处理装置与该控制装置电连接,该控制装置与该测试机电连接,并将无线射频辨识读取机读取的结果传回该处理装置进行记录,获 1. A radio frequency identification testing system, characterized in that: it comprises: an analyte, a radio frequency identification reader, a tester, a processing device and a control device, disposed on the analyte a radio frequency identification tag; the testing machine comprising: a base; a first slide rail having an elongated shape and is fixed on the base; and a second rail having an elongated shape and is located in the first slide the upper rail, the second rail perpendicular to the first slide, the first slide rail and can move along the linear; a third slide rail having an elongated shape and is located on the second rail, the third respectively, perpendicular to the first slide rail and a second rail, and can linearly move along the second slide rail; and a clamp portion, which is connected with the third slide rail and can slide along the third linear movement; fixing the clamp portion of the analyte and one of the radio frequency identification reader wherein; the processing means is electrically connected to the control means, the control means is connected to the test electronics, and the radio frequency identification reader reads results taken returns the processing means for recording, by the 得可读取的范围。 You have read range.
2、 如权利要求1所述的无线射频辨识测试系统,其中该第二滑轨与该第一滑轨的连接处设有一第一驱动装置,该第一驱动装置驱动第二滑轨,使该第二滑轨可沿着该第一滑轨线性移动。 Testing radio frequency identification system as claimed in claim 1, wherein the first and the second slide rail is provided with a connector at a first drive means, the first driving means for driving the second slide, so that the the second slide is movable along the first linear rail.
3、 如权利要求1所述的无线射频辨识测试系统,其中该第三滑轨与该第二滑轨的连接处设有一第二驱动装置,该第二驱动装置驱动该第三滑轨,使该第三滑轨沿着该第二滑轨线性移动。 Testing radio frequency identification system as claimed in claim 1, wherein the third slide rail and is connected at the second slide rail is provided with a second drive means, the second drive means for driving the third slide rails the third slide rail linear movement along the second rail.
4、 如权利要求1所述所述的无线射频辨识测试系统,其中该箝制部与该第三滑轨的连接处设有一第三驱动装置,该第三驱动装置驱动箝制部,使该箝制部沿着该第三滑轨线性移动。 4 test radio frequency identification system as claimed in claim 1, wherein the clamp portion is connected with the third slide rail is provided at a third driving means, the third driving means for driving the clamping unit, so that the clamping portion linearly movable along the third rail.
5、 如权利要求1所述的无线射频辨识测试系统,其中该测试机以手动方式操作。 5, as claimed in claim 1, said test radio frequency identification system, wherein the manually operated test machine.
6、 如权利要求1所述的无线射频辨识测试系统,其中该处理装置还设有一显示单元。 Testing radio frequency identification system as claimed in claim 1, wherein the processing means further is provided with a display unit.
7、 如权利要求1所述的无线射频辨识测试系统,其中该处理装置还设有一记忆单元。 Testing radio frequency identification system as claimed in claim 1, wherein the processing means further is provided with a memory unit.
8、 如权利要求1所述的无线射频辨识测试系统,其中该控制装置控制该测试机,使得该第二滑轨、该第三滑轨,以及该箝制部可彼此相对移动。 8 test radio frequency identification system as claimed in claim 1, wherein the control means controls the tester, so that the second slide rail, the third rail, and the clamp portion are movable relative to each other.
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