CN107066121A - 一种具有rfid感应器矩阵的磁悬浮鼠标 - Google Patents
一种具有rfid感应器矩阵的磁悬浮鼠标 Download PDFInfo
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Abstract
本发明涉及一种具有RFID感应器矩阵的磁悬浮鼠标,包括鼠标托盘以及鼠标本体,鼠标托盘的空腔内固定设置有电磁线圈、距离感应器、微型控制器、磁力控制器;所述的鼠标托盘上方固定设置有RFID感应器矩阵;所述的鼠标本体是设置在鼠标托盘上方,鼠标本体包括具有中空结构的壳体,固定设置在壳体内腔的半球形磁铁以及从上到下依次设置在壳体表面的第一RFID识别码、第二RFID识别码、第三RFID识别码。本发明所述的一种具有RFID感应器矩阵的磁悬浮鼠标,其结构合理,具有结构简单、使用方便、智能化程度高等优点,有效解决现有鼠标操作依赖外部平面的问题。
Description
技术领域
本发明涉及电脑外设领域,尤其是涉及一种具有RFID感应器矩阵的磁悬浮鼠标。
背景技术
已知技术中,随着电脑在我国的大范围普及,鼠标是最常用的电脑外置设备被越来越多的人使用,但是鼠标具有一个致命的缺点,即鼠标不能悬空工作,而是需要在与平面接触的情况下才能使用,在操作鼠标的过程中,手与鼠标工作的平面不断摩擦、压迫,容易导致手部疲劳甚至产生病变,影响使用者的身体健康,所以有必要发明一种不需要依赖平面也能工作的鼠标。
发明内容
本发明要解决的技术问题是:为了克服上述中存在的问题,提供了一种具有RFID感应器矩阵的磁悬浮鼠标,其结构合理,具有结构简单、使用方便、智能化程度高等优点,有效解决现有鼠标操作依赖外部平面的问题。
本发明解决其技术问题所采用的技术方案是:一种具有RFID感应器矩阵的磁悬浮鼠标,包括鼠标托盘以及鼠标本体,所述鼠标托盘是中空圆盘结构,鼠标托盘的空腔内固定设置有电磁线圈、距离感应器、微型控制器、磁力控制器;所述的距离感应器是设置在鼠标托盘内腔上壁面,且距离感应器测量端穿出鼠标托盘上表面;所述的鼠标托盘上方固定设置有RFID感应器矩阵;
所述的鼠标本体是设置在鼠标托盘上方,鼠标本体包括具有中空结构的壳体,固定设置在壳体内腔的半球形磁铁以及从上到下依次设置在壳体表面的第一RFID识别码、第二RFID识别码、第三RFID识别码。
进一步的,所述的电磁线圈是固定设置在鼠标托盘内腔上侧壁面的圆盘结构,且电磁线圈朝向鼠标托盘内腔的侧面上设置有屏蔽罩。
进一步的,所述的第一RFID识别码、第二RFID识别码、第三RFID识别码是相互平行的环形结构。
进一步的,所述的微型控制器是分别与磁力控制器、距离感应器相互电连接。
进一步的,所述的磁力控制器是与电磁线圈相互电连接。
进一步的,所述的微型控制器是与外部电源相互电连接。
进一步的,所述的鼠标本体上设置有缓冲胶垫。
本发明的有益效果是:一种具有RFID感应器矩阵的磁悬浮鼠标,包括鼠标托盘以及鼠标本体,鼠标托盘上设置有RFID感应器矩阵,鼠标本体是设置于鼠标托盘的上,且鼠标本体上设置有RFID识别码,鼠标本体内腔固定设置有半球形磁铁,通过鼠标托盘上设置的电磁线圈和磁力控制器的作用下鼠标本体定向的悬浮于鼠标托盘上方,RFID感应器矩阵通过扫描鼠标本体上的RFID识别码便能检测出鼠标的移动方向,所以不需要在外部平面上移动本发明便能才做鼠标,而且能悬空操作;其结构合理,具有结构简单、使用方便、智能化程度高等优点,有效解决现有鼠标操作依赖外部平面的问题。
附图说明
下面结合附图和实施例对本发明进一步说明。
图1是本发明所述一种具有RFID感应器矩阵的磁悬浮鼠标的整体结构示意图;
图2是本发明所述一种具有RFID感应器矩阵的磁悬浮鼠标的鼠标本体剖面结构示意图。
附图中标记分述如下:1、鼠标托盘,11、电磁线圈,111、屏蔽罩,12、距离感应器,13、微型控制器,14、磁力控制器,15、RFID感应器矩阵,2、鼠标本体,21、第一RFID识别码,22、第二RFID识别码,23、第三RFID识别码,24、壳体,25、半球形磁铁,26、缓冲胶垫。
具体实施方式
现在结合附图对本发明作进一步详细的说明。这些附图均为简化的示意图,仅以示意方式说明本发明的基本结构,因此其仅显示与本发明有关的构成。
如图1所示的一种具有RFID感应器矩阵的磁悬浮鼠标,包括鼠标托盘1以及鼠标本体2,所述鼠标托盘1是中空圆盘结构,鼠标托盘1的空腔内固定设置有电磁线圈11、距离感应器12、微型控制器13、磁力控制器14;所述的鼠标托盘1上方固定设置有RFID感应器矩阵15;所述的距离感应器12是设置在鼠标托盘1内腔上壁面,且距离感应器12测量端是穿出鼠标托盘1上表面;所述的电磁线圈11是固定设置在鼠标托盘1内腔上侧壁面的圆盘结构,且电磁线圈11朝向鼠标托盘1内腔的侧面上设置有屏蔽罩111,以免电磁线圈11工作时影响其他电子设备的正常工作。
如图2所示,所述的鼠标本体2是设置在鼠标托盘1上方,鼠标本体2包括具有中空结构的壳体24,固定设置在壳体24内腔的半球形磁铁25以及从上到下依次设置在壳体24表面的第一RFID识别码21、第二RFID识别码22、第三RFID识别码23。
距离感应器12用于检测鼠标本体2的悬浮高度,以便RFID标识码能被RFID感应器矩阵15扫描到,当RFID感应器矩阵15不能扫描到RFID标识码时,微型控制器13通过磁力控制器14控制电磁线圈11以升高或者降低鼠标本体2的高度。
所述的微型控制器13是分别与磁力控制器14、距离感应器12相互电连接,所述的磁力控制器14是与电磁线圈11相互电连接。
在一种可能的实施例中,电磁线圈11由碗状磁铁阵列取代,碗状磁铁阵列由若干同一朝向极性不同的扇形磁铁组成,扇形磁铁之间做屏蔽处理,鼠标本体2在半球形磁铁25与碗状磁铁阵列的相斥力作用下悬浮于鼠标托盘上方。
在一种实施例中,RFID感应器矩阵15是设置在鼠标托盘1的开口上,并沿着开口以圆环状布置,所述的第一RFID识别码21、第二RFID识别码22、第三RFID识别码23是相互平行的环形结构。在另一种实施例中,RFID感应器矩阵15是以一定的夹角设置在鼠标托盘1上,且所述的第一RFID识别码21、第二RFID识别码22、第三RFID识别码23是以同样的夹角交叉设置在鼠标本体2朝向鼠标托盘1的一面。
在一种实施例中,所述的微型控制器13是与外部电源相互电连接。在另一种实施例中,鼠标托盘1内腔设置有锂电池,所述的微型控制器13是与锂电池相互连接,且鼠标托盘1上设置有锂电池的充电口。
在一种实施例中,所述的鼠标本体2上设置有缓冲胶垫26,在另一种实施例中,在鼠标托盘上设置有缓冲胶垫。
本发明所述的一种具有RFID感应器矩阵的磁悬浮鼠标,包括鼠标托盘以及鼠标本体,鼠标托盘上设置有RFID感应器矩阵,鼠标本体是设置于鼠标托盘的上,且鼠标本体上设置有RFID识别码,鼠标本体内腔固定设置有半球形磁铁,通过鼠标托盘上设置的电磁线圈和磁力控制器的作用下鼠标本体定向的悬浮于鼠标托盘上方,RFID感应器矩阵通过扫描鼠标本体上的RFID识别码便能检测出鼠标的移动方向,所以不需要在外部平面上移动本发明便能才做鼠标,而且能悬空操作;其结构合理,具有结构简单、使用方便、智能化程度高等优点,有效解决现有鼠标操作依赖外部平面的问题。
以上述依据本发明的理想实施例为启示,通过上述的说明内容,相关工作人员完全可以在不偏离本项发明技术思想的范围内,进行多样的变更以及修改。本项发明的技术性范围并不局限于说明书上的内容,必须要根据权利要求范围来确定其技术性范围。
Claims (5)
1.一种具有RFID感应器矩阵的磁悬浮鼠标,其特征是:包括鼠标托盘(1)以及鼠标本体(2),所述鼠标托盘(1)是中空圆盘结构,鼠标托盘(1)的空腔内固定设置有电磁线圈(11)、距离感应器(12)、微型控制器(13)、磁力控制器(14);所述的距离感应器(12)是设置在鼠标托盘(1)内腔上壁面,且距离感应器(12)测量端穿出鼠标托盘(1)上表面;所述的鼠标托盘(1)上方固定设置有RFID感应器矩阵(15);
所述的鼠标本体(2)是设置在鼠标托盘(1)上方,鼠标本体(2)包括具有中空结构的壳体(24),固定设置在壳体(24)内腔的半球形磁铁(25)以及从上到下依次设置在壳体(24)表面的第一RFID识别码(21)、第二RFID识别码(22)、第三RFID识别码(23);
所述的电磁线圈(11)是固定设置在鼠标托盘(1)内腔上侧壁面的圆盘结构,且电磁线圈(11)朝向鼠标托盘(1)内腔的侧面上设置有屏蔽罩(111);
所述的第一RFID识别码(21)、第二RFID识别码(22)、第三RFID识别码(23)是相互平行的环形结构。
2.根据权利要求1所述的一种具有RFID感应器矩阵的磁悬浮鼠标,其特征是:所述的微型控制器(13)是分别与磁力控制器(14)、距离感应器(12)相互电连接。
3.根据权利要求1所述的一种具有RFID感应器矩阵的磁悬浮鼠标,其特征是:所述的磁力控制器(14)是与电磁线圈(11)相互电连接。
4.根据权利要求1所述的一种具有RFID感应器矩阵的磁悬浮鼠标,其特征是:所述的微型控制器(13)是与外部电源相互电连接。
5.根据权利要求1所述的一种具有RFID感应器矩阵的磁悬浮鼠标,其特征是:所述的鼠标本体(2)上设置有缓冲胶垫(26)。
Priority Applications (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201611079913.2A CN107066121A (zh) | 2016-11-30 | 2016-11-30 | 一种具有rfid感应器矩阵的磁悬浮鼠标 |
US15/404,430 US20180150146A1 (en) | 2016-11-30 | 2017-01-12 | Magnetic suspension mouse having rfid sensor array |
PCT/IB2017/052572 WO2018100441A1 (zh) | 2016-11-30 | 2017-05-03 | 一种具有rfid感应器矩阵的磁悬浮鼠标 |
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US20130147743A1 (en) * | 2011-12-12 | 2013-06-13 | Lester F. Ludwig | Spherical Touch Sensors and Signal/Power Architectures for Trackballs, Globes, Displays, and Other Applications |
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CN104142823B (zh) * | 2014-06-30 | 2016-04-27 | 腾讯科技(深圳)有限公司 | 一种输入设备及控制系统 |
CN104503602A (zh) * | 2014-12-17 | 2015-04-08 | 济南大学 | 一种基于立体感应的无线鼠标 |
CN206224405U (zh) * | 2016-11-30 | 2017-06-06 | 黄文超 | 一种具有rfid感应器矩阵的磁悬浮鼠标 |
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CN104793766A (zh) * | 2015-01-20 | 2015-07-22 | 无锡华系天下科技有限公司 | 一种基于射频标签的无线鼠标实现方法 |
CN205193745U (zh) * | 2015-10-27 | 2016-04-27 | 陕西芝麻粒电子科技有限公司 | 一种磁悬浮无线鼠标 |
CN105656356A (zh) * | 2016-01-25 | 2016-06-08 | 梁周 | 一种磁悬浮系统装置 |
CN105553337A (zh) * | 2016-02-02 | 2016-05-04 | 杨欢 | 一种磁悬浮系统 |
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