WO2015127868A1 - 一种体液有形成分分析仪 - Google Patents
一种体液有形成分分析仪 Download PDFInfo
- Publication number
- WO2015127868A1 WO2015127868A1 PCT/CN2015/072971 CN2015072971W WO2015127868A1 WO 2015127868 A1 WO2015127868 A1 WO 2015127868A1 CN 2015072971 W CN2015072971 W CN 2015072971W WO 2015127868 A1 WO2015127868 A1 WO 2015127868A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- body fluid
- touch screen
- forming component
- display
- analyzer
- Prior art date
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Classifications
-
- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
- G06F3/01—Input arrangements or combined input and output arrangements for interaction between user and computer
- G06F3/03—Arrangements for converting the position or the displacement of a member into a coded form
- G06F3/041—Digitisers, e.g. for touch screens or touch pads, characterised by the transducing means
-
- G—PHYSICS
- G16—INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
- G16H—HEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
- G16H40/00—ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices
- G16H40/60—ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices
- G16H40/63—ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for local operation
Definitions
- the invention relates to a body fluid forming component analyzer, in particular to a body fluid forming component analyzer which uses a touch screen for human-computer interaction operation.
- the body fluid forming analyzer on the market generally adopts an ordinary liquid crystal display.
- the human-computer interaction input is connected to the mouse and keyboard through an external computer, which causes the following inadequacies and inconveniences:
- mouse and keyboard generally have a relatively high failure rate, which will affect the user's experience.
- the current popular method of controlling devices or instruments is to perform human-computer interaction through a touch screen.
- the operator generally only needs to click on the touch screen to perform program setting, status detection, command action, etc. on the device or instrument.
- the operator only needs one hand or even a single finger to control and operate the instrument, which greatly improves the convenience of human-computer interaction.
- the touch screen has a transparent touchable area and a wire portion of the edge.
- the visible area is placed in front of the conventional display, and the lead end of the wire portion is connected to the control unit, and the touch screen and the display work together by the control program.
- the installation of the touch screen does not significantly increase the original size of the device or instrument. Because the touch screen is generally thin, the installation position is only in front of the original display of the device or the instrument, and is basically at the control end, and has no effect on the actual execution end of the device or the instrument.
- the mainstream touch screen is a capacitive touch screen.
- the capacitive touch screen can realize multi-touch technology, which makes the touch experience of the operator more comfortable.
- the body fluid with a touch screen has a forming analyzer.
- it also enables the operator of the body fluid to form a sub-analyzer to get a more comfortable human-computer interaction experience.
- the technical problem to be solved by the present invention is to use the touch screen on a body fluid forming component analyzer to take advantage of the touch screen, and to further improve the operation of the operator by combining the mounting position of the touch screen. Comfort.
- the invention provides a body fluid forming component analyzer with a touch screen.
- the body fluid-forming component analyzer with a touch screen of the present invention is equipped with a touch screen, and the operator can operate the body fluid forming component analyzer through the touch screen.
- the touch screen is mounted in front of the display where the body fluid is formed into a sub-analyzer; the display and the touch screen can also be moved together and installed at other locations as described below.
- the touch screen of the body fluid forming sub-analyzer supports multi-touch technology, and the multi-touch enables the operator to have a more comfortable touch experience than the single touch technology.
- the touch screen of the body fluid forming component analyzer can be installed on the front, side, back or top surface of the body fluid forming analyzer.
- the corresponding adjustment can be made according to the specific situation of the peripheral equipment arrangement, and the principle can be conveniently used by the operator. It is also possible to separate the display and the touch screen from the body fluid forming analyzer, and place or mount the body fluid on the wall surrounding the analyzer.
- the touch screen of the body fluid forming component analyzer closely fits the display of the body fluid forming analyzer. This has the benefit of effectively preventing dust or other impurities from entering between the two, thereby avoiding the effects of dust or other impurities on the touch screen.
- the touch screen of the body fluid forming component analyzer is spaced apart from the body fluid forming display analyzer. This has the benefit of reducing the signal interference of the display to the touch screen.
- the touch screen of the body fluid forming component analyzer is spaced apart from the display of the body fluid forming component analyzer, and the edge of the touch screen and the edge of the display are sealed by an organic composite material by means of tape or glue, thereby effectively preventing Dust or other impurities between the two can reduce the signal interference of the display on the touch screen.
- the touch screen of the body fluid forming component analyzer can be mounted and positioned by the load bearing structure.
- the carrying structure may be a pylon, a bracket or a mechanical arm or the like, and the touch screen is fixed on the supporting structure, and the supporting structure is fixedly mounted on the wall body on or near the body fluid forming analyzer.
- the load-bearing structure is a fixed structure, that is, there is no component combination in the load-bearing structure that can be relatively telescopic, rotated or moved.
- the load-bearing structure includes a fixed portion and a movable portion that are connected to each other, and the movable structure is movable relative to the fixed portion.
- the pylon, the bracket or the robot arm has a movable portion that is retractable, rotatable or movable relative to the fixed portion.
- the touch screen is fixedly mounted to the movable portion, and the display also needs to be mounted on the movable portion together with the touch screen, and the fixed portion is mounted on the body fluid forming analyzer or the wall. on.
- a rotating bracket is used as the bearing member, which is composed of two pivotally connected quadrangular frames, the touch screen is mounted on one of the frames, and the other frame is fixed in the body fluid.
- the frame to which the touch screen is attached is referred to as a movable portion of the load-bearing structure
- the frame fixed to the body fluid-forming sub-analyzer is referred to as a fixed portion of the load-bearing structure.
- the mechanical arm is used as the bearing member, and the base portion of the mechanical arm fixed to the wall by the expansion screw is a fixed portion of the bearing structure, and the other end movable relative to the base is carried.
- the movable part of the structure is carried.
- the body fluid having the component forming analyzer may be integrated with the main body, or may be disconnected from the main body and connected by a cable.
- the touch screen is installed in front of the display. When the display is separated from the main unit, the touch screen and the display can be connected together and moved together with the display.
- the body fluid with touch screen of the invention has a forming analyzer which is formed by a body fluid compared with a conventional mouse keyboard, and has the following beneficial effects:
- Figure 1 is a schematic illustration of a preferred embodiment of a body fluid dispensing analyzer with a touch screen of the present invention.
- the touch screen 2 and the display of the body fluid forming component analyzer 1 are installed in front of the analyzer body, and the touch screen 2 is attached to the display, so that dust or other impurities can be effectively prevented between the two. Thereby the influence of dust or other impurities on the use of the touch screen 2 is avoided.
- the touch screen 2 is fixed on the body fluid forming component analyzer 1 by a bracket. One end of the bracket is fixed around the display in front of the body fluid forming analyzer 1 and the other end is fixed to the touch screen.
- the fixing manner can be glued, bolted, and slotted. Wait.
- the operator can stand in front of the body fluid forming analyzer 1 and operate the body fluid forming analyzer with one hand, and the catalyst screen 2 supports multi-touch technology, which enables the operator to have a more comfortable touch experience.
- peripheral input devices such as a mouse or a keyboard around the body fluid forming analyzer 1. This saves space and the instrument itself is more compact and beautiful.
- the body fluid has a catalyst screen and a display that are mounted on the top surface of the body fluid forming analyzer, and the touch screen is spaced apart from the display to provide a gap between the two, which can reduce the signal interference of the display on the touch screen.
- the catalyst screen is fixed on the body fluid forming sub-analyzer through the bracket, and one end of the bracket is fixed around the display on the top surface of the body fluid forming analyzer, and the other end is fixed to the touch screen, and the fixing manner can be glued, bolted, card slotted, etc. .
- the embodiment is mainly for the position where the body fluid forming analyzer is placed lower, and the touch screen is placed on the top surface thereof, so that the operator can operate the body fluid forming analyzer, and the catalyst screen supports multi-touch technology, and the operation can be performed. People have a more comfortable touch experience.
- the difference from the second embodiment is that the display and the edge of the touch screen are sealed by an organic composite material, thereby effectively preventing the touch effect between the two due to dust or other impurities on the premise of reducing the signal interference of the display on the touch screen. Have an adverse effect.
- the catalyst screen and the display are integrated into one by a fixed frame or edge gluing, and the fixed touch screen bracket is replaced by a rotating bracket, which includes two quadrilaterals that are pivotally connected and can be opened and closed.
- the frame is similar to the opening and closing of the display part and the keyboard part of the notebook computer.
- the touch screen and the display are fixed on any frame of the rotating bracket, and are connected to the main body of the body fluid forming analyzer, and the other frame is fixed on the top surface of the body fluid forming analyzer.
- the operational contact faces of the front side of the display and the touch screen face upward, and when the frame is in the open positions, the operational contact faces of the front of the display and the touch screen face the operator.
- the display and the touch screen can be adjusted to a suitable tilt angle for different peripheral conditions or different operating habits of different operators.
- the difference from the fourth embodiment is that the rotating bracket is mounted on the side or the rear of the body fluid forming analyzer.
- the rotating bracket When the frame of the rotating bracket is closed, the operating contact surface of the front surface of the display and the touch screen is formed with a component analyzer facing away from the body fluid.
- the mounted rotating bracket has a pivot axis that is perpendicular to the horizontal direction, so that the display and the touch screen can be opened and closed in the left and right direction. It is more conducive to the operator to choose the appropriate station according to the surrounding conditions.
- the difference from the fifth embodiment is that when the frame of the rotating bracket is closed, the operating contact surface of the front surface of the display and the touch screen is formed to form a sub-analyzer for the body fluid.
- the frame of the rotating bracket can be closed to protect the touch screen surface.
- the catalyst screen and the display supporting the multi-touch technology are integrated into one body by a fixed frame or edge gluing, and are separated from the main body of the body fluid forming analyzer, and connected by a cable.
- the bracket is fixed on the wall of the body analyzer by the expansion screw, and the display and the touch screen are hung on the bracket (structure such as a wall-mounted LCD TV) or fixed on the bracket by a fixed connection.
- the host body of the body fluid forming analyzer can be more compact, and the display or the touch screen can be replaced, and the control space and the operation end are separated by the wall space, thereby avoiding mutual interference between the control action and the operation action.
- the difference from the seventh embodiment is that the rotating bracket is used, and the pivoting bracket after the installation is perpendicular to the horizontal direction, so that the display and the touch screen can be opened and closed in the left-right direction. It is more conducive to the operator to choose the appropriate station according to the surrounding conditions.
- the catalyst screen and the display supporting the multi-touch technology are integrated into one body by a fixed frame or edge gluing, and are separated from the main body of the body fluid forming analyzer, and connected by a cable.
- the mechanical arm is used as a load-bearing structure for connecting the touch screen and the display, and the base end of the mechanical arm is fixed by the expansion screw to the wall body forming the periphery of the analyzer, or the ceiling of the body fluid forming analyzer.
- the end of the arm opposite the base of the arm is attached to the back of the display.
- the arm can be extended and rotated relative to the base, which effectively utilizes the surrounding space, and can adjust the integrated display and the touch screen at various angles and various high and low positions, basically satisfying the operator's presence in body fluids.
- An arbitrary position around the analyzer is formed to perform a control operation for forming a body fluid analyzer.
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- General Health & Medical Sciences (AREA)
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Abstract
一种带有触摸屏(2)的体液有形成分分析仪(1),仪器上装有触摸屏(2),可通过触摸屏(2)对仪器进行操作,并通过触摸屏(2)的安装位置来进一步配合各种实际使用中的需求。上述带有触摸屏(2)的体液有形成分分析仪(1)相比传统的采用鼠标键盘的体液有形成分分析仪,外观更简洁,并且节省了空间,提供给操作人员更舒适的人机交互体验。
Description
技术领域
本发明涉及体液有形成分分析仪,尤其涉及一种采用触摸屏进行人机交互操作的体液有形成分分析仪。
背景技术
目前市场上的体液有形成分分析仪普遍采用的是普通液晶屏显示,人机交互输入是通过外置电脑接鼠标和键盘输入,会造成以下一些不足和不便:
1 、需要额外增加仪器的输入设备,增加了这些设备的摆放空间。
2 、有了这些外部输入设备,降低了仪器的整体外观简洁性。
3 、既使用鼠标又需要用键盘输入时,操作者动作繁复,不简洁。
4 、鼠标和键盘一般故障率相对较高,会影响使用者的使用感受。
当前比较流行的对设备或仪器进行控制操作的方式是通过触摸屏进行人机交互操作。操作人员一般只需在触摸屏上进行点选,即可对设备或仪器进行程序设置、状态检测、指令动作等操作。操作人员只需要单手甚至单指既能对仪器进行控制和操作,极大提高了人机交互的便捷性。
触摸屏具有透明的可触控区域和边缘的导线部分,可视区域安置于传统显示器前,导线部分的引出端与控制单元连接,通过控制程序实现触摸屏和显示器的协同工作。
触摸屏的安装不会大幅度的增加设备或仪器原本的体积。因为触摸屏一般较薄,安装位置也只是在设备或仪器的原有显示器前,基本处于控制端,对设备或仪器的实际执行端不会产生影响。
目前主流的触摸屏是电容触摸屏,较之前的电阻触摸屏,电容触摸屏可实现多点触摸技术,使操作人员的触控体验更舒适。
目前还没有一种体液有形成分分析仪是使用触摸屏作为人机交互界面来对仪器进行操作控制。
因此,本领域的技术人员致力于开发一种
带有触摸屏的体液有形成分分析仪。以使仪器能够节省空间,外形更加美观,同时也使体液有形成分分析仪的操作人员可以得到更为舒适的人机交互体验。
发明内容
有鉴于现有技术的上述缺点,本发明所要解决的技术问题是在将触摸屏用于体液有形成分分析仪上,以发挥触摸屏的优势,并结合触摸屏的安装位置使其进一步提高操作人员的操作舒适性。
本发明提供了一种带有触摸屏的体液有形成分分析仪。本发明的带有触摸屏的体液有形成分分析仪装有触摸屏,操作人员可以通过触摸屏对体液有形成分分析仪进行操作。触摸屏安装在体液有形成分分析仪的显示器前;也可将显示器和触摸屏一起进行移动,安装于如下文所述的其他各位置。
进一步地,体液有形成分分析仪的触摸屏支持多点触摸技术,相比于单点触摸技术,多点触摸可使操作人员能有更加舒适的触控体验。
进一步地,体液有形成分分析仪的触摸屏可安装在体液有形成分分析仪的前面、侧面、后面或顶面。可以根据周边设备布置的具体情况来做相应的调整,以操作人员能方便使用为原则。同样也可以采用将显示器和触摸屏与体液有形成分分析仪分离,将放置或安装于体液有形成分分析仪周边的墙体上。
进一步地,体液有形成分分析仪的触摸屏与体液有形成分分析仪的显示器紧密地贴合。这样做的益处是可以有效防止两者之间进灰尘或其它杂质,从而避免灰尘或其它杂质对触摸屏使用的影响。
进一步地,体液有形成分分析仪的触摸屏与体液有形成分分析仪的显示器之间间隔开。这样做的益处是可以减少显示器对触摸屏的信号干扰。
进一步地,体液有形成分分析仪的触摸屏与体液有形成分分析仪的显示器之间间隔开,且触摸屏边缘和显示器边缘采用有机复合材料通过胶带或粘胶等方式进行密封连接,这样既有效防止两者之间进灰尘或其它杂质,又可以减少显示器对触摸屏的信号干扰。
进一步地,体液有形成分分析仪的触摸屏可通过承载结构来安装定位。承载结构可以是挂架、支架或机械臂等类似装置,触摸屏固定在承载结构上,同时承载结构固定安装在体液有形成分分析仪上或其附近的墙体上。
进一步地,承载结构是固定结构,即承载结构中没有可以相对伸缩、旋转或移动的部件组合。
进一步地,承载结构包括相互连接的固定部分和可动部分,可动结构能够相对于与所述固定部分移动。如挂架、支架或机械臂上具有可伸缩、旋转或相对于固定部分可移动的可动部分。
进一步地,当采用具有可动部分的承载结构时,触摸屏固定安装于可动部分,此时显示器也需要与触摸屏一起安装于可动部分,固定部分安装在体液有形成分分析仪上或墙体上。
在本发明的较佳实施方式中,采用转动支架作为承载部件,其由枢轴连接的可开合的两个四边形框架组成,将触摸屏安装于其中一个框架上,另一个框架固定在体液有形成分分析仪上。此时连接触摸屏的框架称为承载结构的可动部分,固定在体液有形成分分析仪上的框架称为承载结构的固定部分。
在本发明的另一较佳实施方式中,采用机械臂作为承载部件,机械臂通过膨胀螺丝固定在墙体上的基座部分是承载结构的固定部分,可相对基座运动的另一端为承载结构的可动部分。
本发明中体液有形成分分析仪的显示器可以是与主机一体的,也可以是脱离主机、并用线缆连接的。触摸屏是安装于显示器前方的,当显示器与主机分离时,可将触摸屏和显示器连接成一体,随显示器一起移动。
本发明的带有触摸屏的体液有形成分分析仪相比传统的采用鼠标键盘的体液有形成分分析仪,有以下有益效果:
1 、节省了仪器的使用空间。
2 、使仪器的外观更为简洁美观。
3 、可单手操作,提高使用者的操作体验。
4 、去除了鼠标、键盘的故障和使用寿命的影响。
5
、可充分利用仪器周边的一些不便于被利用的空间(如仪器上方、周围墙面)来装置显示器和触摸屏以满足操作人员不同的站位需要。
以下将结合附图对本 发明 的构思、具体结构及产生的技术效果作进一步说明,以充分地了解本 发明
的目的、特征和效果。
附图说明
图1是本发明的带有触摸屏的体液有形成分分析仪的一个较佳实施例的示意图。
具体实施方式
实施例一
如图1所示,体液有形成分分析仪1的触摸屏2和显示器都安装在分析仪本体的前面,并且触摸屏2与显示器相贴合,这样可以有效防止两者之间进灰尘或其它杂质,从而避免灰尘或其它杂质对触摸屏2使用的影响。触摸屏2通过支架固定在体液有形成分分析仪1上,该支架一端固定在位于体液有形成分分析仪1前面的显示器周围,另一端固定触摸屏,固定方式可采用胶合、螺栓连接、卡槽连接等。操作人员可以站在体液有形成分分析仪1前方,用单手对体液有形成分分析仪进行操作,并且触媒屏2支持多点触摸技术,可使操作人员有更舒适的触控体验。同时体液有形成分分析仪1周围不必再增加外设输入设备,如鼠标、键盘,这样节省了空间,同时仪器本身更加简洁美观。
实施例二
体液有形成分分析仪的触媒屏和显示器都安装在体液有形成分分析仪的顶面,并且触摸屏与显示器间隔开一段距离,使两者间有间隙,这样可以减少显示器对触摸屏的信号干扰。触媒屏通过支架固定在体液有形成分分析仪上,该支架一端固定在位于体液有形成分分析仪顶面的显示器周围,另一端固定触摸屏,固定方式可采用胶合、螺栓连接、卡槽连接等。本实施例主要针对当体液有形成分分析仪放置的位置较低,触摸屏置于其顶面更加便于操作人员对体液有形成分分析仪进行操作,并且触媒屏支持多点触摸技术,可使操作人员有更舒适的触控体验。
实施例三
与实施例二的区别在于,显示器与触摸屏边缘用有机复合材料进行密封,这样在减少显示器对触摸屏的信号干扰的前提下,又有效防止了两者之间因为进灰尘或其它杂质而对触摸效果产生不利影响。
实施例四
与实施例二的区别在于,采用固定框架或边缘胶合等类似方式将触媒屏和显示器结合为一体,将固定触摸屏的支架替换为转动支架,其包括由枢轴连接的可开合的两个四边形框架,类似于笔记本电脑中显示器部分和键盘部分的开合,两框架的开合之间设置有数个档位,处于每个档位时,两框架可以相对固定。将触摸屏与显示器固定于转动支架的任一框架上,其与体液有形成分分析仪的主机用线缆连接;将另一框架固定在体液有形成分分析仪的顶面。在转动支架的框架闭合时,显示器正面和触摸屏的操作接触面朝上,当框架处于打开的各个档位时,显示器正面和触摸屏的操作接触面朝向操作人员。这样就可以针对不同周边情况或不同操作人员的操作习惯,来将显示器和触摸屏调整到合适的倾斜角度。
实施例五
与实施例四的区别在于,将转动支架安装在体液有形成分分析仪的侧面或后面,当转动支架的框架闭合时,显示器正面和触摸屏的操作接触面背向体液有形成分分析仪。安装后的转动支架,其枢轴是垂直于水平方向,这样可以对显示器和触摸屏进行左右方向的开合。更有利于操作人员根据周边情况选择合适站位。
实施例六
与实施例五的区别在于,当转动支架的框架闭合时,显示器正面和触摸屏的操作接触面面向体液有形成分分析仪。这样在不使用体液有形成分分析仪时,可闭合转动支架的框架来保护触摸屏表面。
实施例七
采用固定框架或边缘胶合等类似方式将支持多点触摸技术的触媒屏和显示器结合为一体,并与体液有形成分分析仪的主机分离,通过线缆连接。将支架通过膨胀螺丝固定在体液有形成分分析仪周边的墙体上,显示器和触摸屏挂置在支架上(结构如挂壁式液晶电视)或采用固定连接的方式固定在支架上。这样可以使体液有形成分分析仪的主机更加简洁,并有利于显示器或触摸屏的更换,利用墙体空间将控制端和操作端分离,避免了控制动作与操作动作的相互干扰。
实施例八
与实施例七的区别在于,采用转动支架,安装后的转动支架,其枢轴是垂直于水平方向,这样可以对显示器和触摸屏进行左右方向的开合。更有利于操作人员根据周边情况选择合适站位。
实施例九
采用固定框架或边缘胶合等类似方式将支持多点触摸技术的触媒屏和显示器结合为一体,并与体液有形成分分析仪的主机分离,通过线缆连接。采用机械臂做为连接触摸屏和显示器的承载结构,机械臂的基座端用膨胀螺丝固定在体液有形成分分析仪周边的墙体,或者是体液有形成分分析仪上方的天花板上。与机械臂基座相对的机械臂末端连接在显示器背面。机械臂可相对于基座进行伸缩和转动,这样有效利用了周围空间,并可以对一体化后的显示器和触摸屏进行多种角度以及多种高低位置的调整,基本上可以满足操作人员在体液有形成分分析仪周边的任意位置,来进行对体液有形成分分析仪的控制操作。
以上详细描述了本 发明 的较佳具体实施例。应当理解,本领域的普通技术无需创造性劳动就可以根据本 发明
的构思作出诸多修改和变化。因此,凡本技术领域中技术人员依本 发明
的构思在现有技术的基础上通过逻辑分析、推理或者有限的实验可以得到的技术方案,皆应在由权利要求书所确定的保护范围内。
Claims (14)
- 一种 体液有形成分分析仪,包括分析仪本体和显示器,其特征在于,所述显示器前装有所述触摸屏,可通过所述触摸屏操作所述分析仪本体。
- 如权利要求 1 所述的 体液有形成分分析仪 , 其特征在于,所述触摸屏支持多点触摸技术。
- 如权利要求 1 所述的 体液有形成分分析仪 , 其特征在于,所述触摸屏安装在所述分析仪本体的前面、侧面、后面或顶面。
- 如权利要求 1 所述的 体液有形成分分析仪 , 其特征在于,所述触摸屏与所述显示器紧密地贴合。
- 如权利要求 1 所述的 体液有形成分分析仪 , 其特征在于,所述触摸屏与所述显示器之间间隔开。
- 如权利要求 5 所述的 体液有形成分分析仪 , 其特征在于,所述触摸屏边缘与所述显示器边缘密封连接。
- 如权利要求 1 所述的 体液有形成分分析仪 , 其特征在于,所述触摸屏固定安装在承载结构上,所述承载结构固定安装在所述体液有形成分分析仪上或墙体上。
- 如权利要求 7 所述的 体液有形成分分析仪 , 其特征在于,所述承载结构是固定结构。
- 如权利要求 7 所述的 体液有形成分分析仪 , 其特征在于,所述承载结构包括相互连接的固定部分和可动部分,所述可动部分能够相对于与所述固定部分移动。
- 如权利要求 9 所述的 体液有形成分分析仪 , 其特征在于,所述触摸屏固定安装于可动部分,所述固定部分安装在所述体液有形成分分析仪上或墙体上。
- 如权利要求 9 所述的 体液有形成分分析仪 , 其特征在于,所述承载结构由枢轴连接的第一框架和第二框架,所述触摸屏固定安装于所述第一框架,所述第二框架安装在所述体液有形成分分析仪上。
- 如权利要求 11 所述的 体液有形成分分析仪 , 其特征在于,所述第一框架和所述第二框架皆为四边形框架。
- 如权利要求 9 所述的 体液有形成分分析仪 , 其特征在于,所述承载结构为机械臂,所述机械臂包括基座,所述基座固定在墙体上,所述触摸屏固定安装于所述机械臂的端部。
- 如权利要求 13 所述的 体液有形成分分析仪 , 其特征在于,所述显示器和所述触摸屏为一体,所述显示器的背面与所述机械臂的所述端部相连。
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