CN220772977U - 医疗检测设备用的检测组件和医疗检测设备 - Google Patents
医疗检测设备用的检测组件和医疗检测设备 Download PDFInfo
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Abstract
本申请提供一种医疗检测设备用的检测组件和医疗检测设备,包括:壳体和检测电极,壳体具有顶面、底面、至少一侧面、进液口和出液口,至少一侧面分别连接顶面、底面,壳体内设有腔体。其中,进液口和出液口分别连通腔体,顶面邻近至少一侧面区域凹陷形成凹槽,检测电极位于凹槽,进液口和出液口位于壳体的同一面。上述方式,检测电极设置在检测组件壳体的顶面和至少一侧面区域凹陷形成的凹槽内,检测电极所处平面与顶面平行,检测电极不位于检测组件的一表面上,因此,检测组件插入插槽的过程中,插槽开口的边缘不会与检测组件的检测电极产生接触,缩小了插槽开口的尺寸,减少了医疗检测设备的体积,也减少了检测组件的厚度。
Description
技术领域
本申请的所公开实施例涉及样本分析技术领域,且更具体而言,涉及医疗检测设备用的检测组件和医疗检测设备。
背景技术
样品检测的过程中,需将检测组件插入医疗检测设备的插槽,使检测组件上的检测电极和医疗检测设备的插槽内的接触电极接触,进而使得医疗检测设备内的检测电路能够接收到检测组件传过来的信号,从而实现样品检测。
其中,检测组件大体为盒状六面体,检测电极设置于检测组件的一个表面。因此,在检测组件插入医疗检测设备的插槽时,为了避免插槽开口的边缘与检测组件表面的检测电极产生接触,造成检测电极的损坏,因此,插槽的开口需要开设的比检测组件的横截面大一定尺寸,且突出于检测组件表面的检测电极也会增加检测组件的厚度。
实用新型内容
根据本申请的实施例,本申请提出医疗检测设备用的检测组件和医疗检测设备,以解决上述问题。
本申请提供一种医疗检测设备用的检测组件,包括:壳体和检测电极,所述壳体具有顶面、底面、至少一侧面、进液口和出液口,所述至少一侧面分别连接所述顶面、所述底面,所述壳体内设有腔体。其中,所述进液口和所述出液口分别连通所述腔体,所述顶面邻近所述至少一侧面区域凹陷形成凹槽,所述检测电极位于所述凹槽,所述凹槽位于所述顶面的部分在所述至少一侧面具有敞口,所述进液口和所述出液口位于所述壳体的同一面。
本申请提供另一种医疗检测设备,包括仪器主体,所述仪器主体包括插槽和接触电极,所述插槽用于插设检测组件,当上述的检测组件插入所述医疗检测设备时,所述接触电极与所述检测组件的检测电极接触。
本申请的有益效果有:检测电极设置在检测组件壳体的顶面和至少一侧面区域凹陷形成的凹槽内,检测电极所处平面与顶面平行,检测电极不位于检测组件的一表面上,因此,检测组件插入插槽的过程中,插槽开口的边缘不会与检测组件的检测电极产生接触,缩小了插槽开口的尺寸,减少了医疗检测设备的体积,也减少了检测组件的厚度。
应当理解的是,以上的一般描述和后文的细节描述仅是示例性和解释性的,而非限制本申请。
附图说明
下面将结合附图及实施方式对本申请作进一步说明,附图中:
图1是本申请一实施例的医疗检测设备用的检测组件的结构示意图;
图2是本申请另一实施例的医疗检测设备用的检测组件的结构示意图;
图3是本申请另一实施例的医疗检测设备用的检测组件的结构示意图;
图4是本申请一实施例的检测组件的组装示意图;
图5是本申请一实施例的检测组件的第二壳体的俯视图;
图6是本申请一实施例的医疗检测设备的结构示意图。
具体实施方式
在本申请中提及“实施例”意味着,结合实施例描述的特定特征、结构或特性可以包含在本申请的至少一个实施例中。在说明书中的各个位置出现该短语并不一定均是指相同的实施例,也不是与其它实施例互斥的独立的或备选的实施例。本领域技术人员显式地和隐式地理解的是,本文所描述的实施例可以与其它实施例相结合。
本申请中术语“和/或”,仅仅是一种描述关联对象的关联关系,表示可以存在三种关系,例如,A和/或B,可以表示:单独存在A,同时存在A和B,单独存在B这三种情况。另外,本文中字符“/”,一般表示前后关联对象是一种“或”的关系。此外,本文中的“多”表示两个或者多于两个。另外,本文中术语“至少一种”表示多种中的任意一种或多种中的至少两种的任意组合,例如,包括A、B、C中的至少一种,可以表示包括从A、B和C构成的集合中选择的任意一个或多个元素。另外,本申请中的术语“第一”、“第二”、“第三”仅用于描述目的,而不能理解为指示或暗示相对重要性或者隐含指明所指示的技术特征的数量。
样品检测的过程中,需将检测组件插入医疗检测设备的插槽,使检测组件上的检测电极和医疗检测设备的插槽内的接触电极接触,进而使得医疗检测设备内的检测电路能够接收到检测组件传过来的信号,从而实现样品检测。
其中,检测组件大体为盒状六面体,检测电极设置于检测组件的一个表面。为了在上述插入过程中方便医疗设备上的接触电极避让检测组件,需要医疗设备内配置接触电极的驱动组件,驱动组件能够在上述插入过程之前将接触电极退回插槽之外的医疗设备内部,并在插入过程结束后驱动接触电极向插槽运动直至接触检测组件表面的检测电极。医疗检测设备上的插槽内空间在插入过程之前并没有得到有效利用,同时,为了避让检测组件表面的检测电极,插槽的开口需要开设得比检测组件横截面大一定尺寸,进一步增大医疗检测设备的体积;此外,突出于检测组件表面的检测电极也会增加检测组件的厚度。
为了解决上述问题,本申请提供如下技术方案。其中,为使本领域的技术人员更好地理解本申请的技术方案,下面结合附图和具体实施方式对本申请的技术方案做进一步详细描述。
请参阅图1、图2和图3,图1是本申请一实施例的医疗检测设备用的检测组件的结构示意图,图2是本申请另一实施例的医疗检测设备用的检测组件的结构示意图,图3是本申请另一实施例的医疗检测设备用的检测组件的结构示意图。该检测组件70包括:壳体7006和检测电极71,壳体7006具有顶面70061、底面70062、至少一侧面70063、进液口7003和出液口7004,至少一侧面70063分别连接顶面70061、底面70062,壳体7006内设有腔体7006a。其中,进液口7003和出液口7004分别连通腔体7006a,顶面70061邻近至少一侧面70063区域凹陷形成凹槽77,检测电极71位于凹槽77,凹槽77位于顶面70061的部分在至少一侧面70063具有敞口78,进液口7003和出液口7004位于壳体7006的同一面,优选的,进液口7003和出液口7004皆位于壳体7006朝向试剂盒的底面70062。
在此实施例中,检测组件70大致形状为长方体,包括一个顶面70061、一个底面70062和四个侧面70063,四个侧面70063的顶侧和底侧与顶面70061和底面70062边缘连接,并围设出一个腔体7006a,且在底面70062设有进液口7003和出液口7004,通过进液口7003可以向腔体7006a输送试剂盒中液包的试剂,也可以通过出液口7004将腔体7006a内的废液输出,并将废液通过管道传输至试剂盒中的废液袋。
请参阅图2,顶面70061的长度方向为x方向,代表检测组件的长度;顶面70061的宽度方向为y方向,代表检测组件的宽度;侧面70063的宽度方向为z方向,代表检测组件的高度,凹槽77的长宽高方向分别对应检测组件的长宽高方向。其中,顶面70061和一侧面70063凹陷形成凹槽77,凹槽77的深度小于检测组件的深度,凹槽77的宽度和长度小于顶面70061的宽度和长度,且检测电极71位于凹槽77中,该凹槽77位于顶面70061的部分在至少一侧面具有敞口78。
可选的,在另一实施例中,顶面70061和三相邻侧面70063共同凹陷形成凹槽77,凹槽77的深度小于检测组件的深度,凹槽77的长度等于顶面70061的长度,凹槽77的宽度小于三侧面中相对的两个侧面70063的长度,使该检测组件70呈阶梯状,且检测电极71位于凹槽77中,该凹槽77位于顶面70061的部分在至少一侧面70063具有敞口78。
因此,在此实施例中,检测电极设置在检测组件壳体的顶面和至少一侧面区域凹陷形成的凹槽内,检测电极所处平面与顶面平行,检测电极不位于检测组件的一表面上,因此,检测组件插入插槽的过程中,插槽开口的边缘不会与检测组件的检测电极产生接触,缩小了插槽开口的尺寸,减少了医疗检测设备的体积,也减少了检测组件的厚度。且在检测组件插入医疗检测设备过程中,将设有凹槽的一侧面先插入插槽,使设有凹槽的一侧面与槽底抵触,此时,可以将医疗设备上的接触电极设置在插槽底部的空间中。因此,检测组件插入插槽的过程中接触电极无需避让检测组件,且可以在插槽底部的空间中设置接触电极,使插槽内空间在插入过程之前得到有效利用。
本申请的另一些实施例中,顶面70061和底面70062平行设置,至少一侧面70063数量为四,四个侧面70063两两连接围绕设置,其中一侧面70063和顶面70061相接的部分凹陷形成凹槽77和敞口78,凹槽77和敞口78的宽度均小于顶面70061和一侧面70063的相应宽度。凹槽77对应顶面70061的部分具有平面77a和侧壁77b,平面77a平行于顶面70061和底面70062,侧壁77b垂直于平面77a,且分别连接顶面70061和平面77a,检测电极71设置于平面77a。
在此实施例中,顶面70061和一侧面70063凹陷形成凹槽77,凹槽77的宽度和长度小于顶面70061的宽度和长度,凹槽77的深度小于检测组件的深度,敞口78的长度和宽度小于一侧面70063的长度和宽度,且凹槽77包括一个平面77a和三个侧面77b,并形成一个敞口78,其中,三个侧面77b的顶侧与顶面70061凹陷的边缘连接,且三个侧面77b的其中两个侧面77b的侧边与壳体7006的侧面70063凹陷的边缘连接,其中,检测电极71位于该凹槽77的平面77a。其中,敞口78的长度和宽度可以分别小于或等于凹槽77的长度和高度,优选为,敞口78的长度和宽度分别等于凹槽77的长度和高度。
请参阅图4,图4是本申请一实施例的检测组件的组装示意图。在此图中,壳体7006包括:第一壳体7006b和第二壳体7006c,第一壳体7006b背对第二壳体7006c的表面为顶面70061,检测组件70包括:电路板72,电路板72具有第一区域72a和第二区域72b,第二区域72b中设有检测电极71。第二壳体7006c包括:底板7006ca和环绕底板7006ca的至少一个第一侧板7006cb,第一侧板7006cb的底侧与底板7006ca的边缘连接,其中一第一侧板7006cb远离底板7006ca的一侧设有第一缺口73,底板7006ca和第一侧板7006cb形成容纳腔7006cc,底板7006ca背对第一壳体7006b的表面为底面70062,至少一个第一侧板7006cb的外侧表面为至少一侧面70063。第一壳体7006b配合至少一个第一侧板7006cb,以遮盖容纳腔7006cc,电路板72位于底板7006ca和第一壳体7006b之间,第一区域72a位于容纳腔7006cc中,第二区域72b位于容纳腔7006cc外的凹槽77位置,以形成凹槽77的平面77a。
在此实施例中,壳体7006包括第一壳体7006b和第二壳体7006c,第一壳体7006b套设在第二壳体7006c上,且第一壳体7006b遮盖第二壳体7006c的容纳腔7006cc,形成腔体7006a,在第一壳体7006b和第二壳体7006c间设置电路板72,且在电路板72的第二区域72b设置检测电极71,其中,电路板72的第一区域72a位于腔体7006a内,电路板72的第二区域72b位于凹槽77和敞口78中,使检测电极71暴露在由第一壳体7006b的顶面70061凹陷和第二壳体7006c至少一第一侧板7006cd的第一缺口73形成的凹槽77中,且电路板72的第二区域72b形成凹槽77的平面77a。
在本申请的另一些实施例中,第一壳体7006b包括盖板7006ba和环绕盖板7006ba的至少一个第二侧板7006bb,第二侧板7006bb的顶侧与盖板7006ba的边缘连接,盖板7006ba背对第二壳体7006c的表面为顶面70061,盖板7006ba邻近第一缺口73的位置设有第二缺口74,对应第二缺口74位置的第二侧板7006bb以第二缺口74的形状延伸设置,第一缺口73、第二缺口74、对应第二缺口74位置的第二侧板7006bb和第二区域72b共同形成凹槽77,对应第二缺口位置的第二侧板形成凹槽77的侧壁77b。
在此实施例中,第一壳体7006b包括盖板7006ba和至少一第二侧板7006bb,第二侧板7006bb的顶侧与盖板7006ba的边缘连接,其中,盖板7006ba上设有第二缺口74,且一第二侧板7006bb的形状与第二缺口74的形状对应,即第二区域72b的形状的边缘与一第二侧板7006bb的形状的边缘连接,其中,第二缺口74位置的第二侧板7006bb形成凹槽77的侧壁77b。第二缺口74与至少一第一侧板7006cb的第一缺口73相邻,因此,第一缺口73、第二缺口74、对应第二缺口74位置的第二侧板7006bb和第二区域72b共同形成凹槽77。
在本申请的另一些实施例中,壳体7006包括第三壳体75,第三壳体75包括安装板75a和围绕安装板75a的至少一个第三侧板75b,第三侧板75b的底侧和安装板75a的边缘连接,安装板75a和至少一个第三侧板75b均设置于第二壳体7006c的容纳腔7006cc内,至少一个第三侧板75b的顶侧和至少一个第一侧板7006cb的顶侧连接,电路板72放置于安装板75a,并且位于安装板75a与第一壳体7006b之间。对应第一缺口73位置的第三侧板75b具有第三缺口76,第三缺口76形状和第一缺口73形状一致。
在此实施例中,第三壳体75设置在第二壳体7006c的容纳腔7006cc内,且第三壳体75的至少一第三侧板75b的顶侧与至少一第二壳体7006c的第二侧板7006bb的顶侧边缘连接,第三侧板75b的底侧和安装板75a的边缘连接,其中,安装板75a与底板7006ca和盖板7006ba平行,且在安装板75a上放置电路板72。其中一第三侧板75b具有第三缺口76,第三缺口76的形状与第一缺口73的形状相同,且第三侧板75b的高度略大于第一缺口73的深度。当电路板72放置在安装板75a后,电路板72上表面所在的水平面77a等于或者略高于第一缺口73凹陷的水平面77a。其中,第二壳体7006c和第三壳体75可以一体成型,也可以拆卸连接。
请参阅图5,图5是本申请一实施例的检测组件的第二壳体的俯视图。在此图中,安装板75a靠近第三侧板75b的边缘设有凸肋75c,凸肋75c环绕电路板72周缘,以对电路板72进行限位。
在此实施例中,凸肋75c围绕的形状与电路板72的形状一致,且围绕在电路板72的周缘,对电路板72进行限位,防止电路板72在容纳腔7006cc内发生位移,使得电路板72的第二区域72b上的检测电极71始终处于固定位置,当检测组件70插入插槽后,避免接触电极与检测电极71在接触过程中出现错位的现象。
可选的,当电路板72放置在安装板75a后,电路板72上表面所在的水平面77a等于或者略高于凸肋75c的高度。
在本申请的另一些实施例中,检测组件70包括若干固定件79。其中,第一壳体7006b的盖板7006ba上设有第一通孔7006x,电路板72上设有第二通孔7006y,安装板75a上设有第三通孔(图未示),底板7006ca上设有第四通孔7006q,固定件79穿过第四通孔7006q和第三通孔、第二通孔7006y和第一通孔7006x,使第一壳体7006b、电路板72和第二壳体7006c固定。
因此,在此实施例中,固定件79有两个,且固定件79穿过盖板7006ba、安装板75a和底板7006ca上的通孔,使得第一壳体7006b、电路板72和第二壳体7006c固定。
在本申请的另一些实施例中,第二侧板7006bb的高度大于等于第一侧板7006cb高度的四分之一,小于等于第一侧板7006cb高度的三分之二。
在本申请的另一些实施例中,第二侧板7006bb的高度大于等于第一侧板7006cb高度的四分之一,小于等于第一侧板7006cb高度的四分之三。
在本申请的另一些实施例中,第二区域72b为长方形区域,或者正方形区域。
在此实施例中,检测电极71可以有22个,分两列排列,每列有11个,因此检测电极71排列的整体形状为长方形,在第二区域72b中放置检测电极71,因此第二区域72b形状可以与检测电极71排列的形状相同,即第二区域72b的形状可以为长方形;或者检测电极71排列的整体形状为长方形,第二区域72b形状可以为正方形;或者检测电极71排列的整体形状为正方形,第二区域72b形状可以为长方形;或者检测电极71排列的整体形状为正方形,第二区域72b形状可以为正方形。
在本申请的另一些实施例中,凹槽77为长方体状,或者正方体状。
因此,在此实施例中,凹槽77的形状可以与第二区域72b的形状一致,即第二区域72b位长方形区域,则凹槽77可以为形状大小一致的长方体状;或者凹槽77的形状可以大于第二区域72b的形状,即第二区域72b位长方形区域,则凹槽77可以为长度和宽度更长的长方体状/正方体状,只要第二区域72b中的检测电极71皆位于凹槽77的底面70062即可。
在本申请的另一些实施例中,第一侧板7006cb和底板7006ca为一体式连接。
请参阅图6,图6是本申请一实施例的医疗检测设备的结构示意图。在此图中,该医疗检测设备包括仪器主体,仪器主体包括插槽4301a和接触电极9043,插槽4301a用于插设检测组件70,当上述的检测组件70插入医疗检测设备时,接触电极9043与检测组件70的检测电极71接触。
因此,在此实施例中,检测组件70的检测电极71位于检测组件70的顶面70061凹陷和至少一侧面凹陷形成的凹槽77内,当检测组件70插入医疗检测设备的插槽后,驱动医疗检测设备内的接触电极向检测电极71移动,使检测电极71和接触电极接触,从而实现样品检测。同时,由于检测电极71位于凹槽77内,医疗检测设备内的接触电极不需要避让检测组件70的顶面70061的检测电极71,医疗检测设备内的接触电极与检测组件70上检测电极71的距离可以设计为小于检测组件70的整体厚度,如此能够大大降低检测组件70整体厚度对医疗检测设备的插槽的开口大小的依赖程度。
所属领域的技术人员易知,可在保持本申请的教示内容的同时对装置及方法作出诸多修改及变动。因此,以上公开内容应被视为仅受随附权利要求书的范围的限制。
Claims (13)
1.一种医疗检测设备用的检测组件,其特征在于,包括:
壳体,所述壳体具有顶面、底面、至少一侧面、进液口和出液口,所述至少一侧面分别连接所述顶面、所述底面,所述壳体内设有腔体;
检测电极;
其中,所述进液口和所述出液口分别连通所述腔体,所述顶面邻近所述至少一侧面区域凹陷形成凹槽,所述检测电极位于所述凹槽,所述凹槽位于所述顶面的部分在所述至少一侧面具有敞口;
所述进液口和所述出液口位于所述壳体的同一面。
2.根据权利要求1所述的检测组件,其特征在于,
所述顶面和所述底面平行设置,所述至少一侧面数量为四,所述四个侧面两两连接围绕设置,其中一所述侧面和所述顶面相接的部分凹陷形成所述凹槽和所述敞口,所述凹槽和所述敞口的宽度均小于所述顶面和所述一侧面的相应宽度;
所述凹槽对应所述顶面的部分具有平面和侧壁,所述平面平行于所述顶面和所述底面,所述侧壁垂直于所述平面,且分别连接所述顶面和所述平面,所述检测电极设置于所述平面。
3.根据权利要求1所述的检测组件,其特征在于,所述壳体包括:第一壳体和第二壳体,所述第一壳体背对所述第二壳体的表面为所述顶面,所述检测组件包括:电路板,所述电路板具有第一区域和第二区域,所述第二区域中设有所述检测电极;
所述第二壳体包括:底板和环绕所述底板的至少一个第一侧板,所述第一侧板的底侧与所述底板的边缘连接,其中一所述第一侧板远离所述底板的一侧设有第一缺口,所述底板和所述第一侧板形成容纳腔,所述底板背对所述第一壳体的表面为所述底面,所述至少一个第一侧板的外侧表面为所述至少一侧面;
所述第一壳体配合所述至少一个第一侧板,以遮盖所述容纳腔,所述电路板位于所述底板和所述第一壳体之间,所述第一区域位于所述容纳腔中,所述第二区域位于所述容纳腔外的所述凹槽位置,以形成所述凹槽的平面。
4.根据权利要求3所述的检测组件,其特征在于,
所述第一壳体包括盖板和环绕所述盖板的至少一个第二侧板,所述第二侧板的顶侧与所述盖板的边缘连接,所述盖板背对所述第二壳体的表面为所述顶面,所述盖板邻近所述第一缺口的位置设有第二缺口,对应所述第二缺口位置的所述第二侧板以所述第二缺口的形状延伸设置,所述第一缺口、所述第二缺口、所述对应所述第二缺口位置的所述第二侧板和所述第二区域共同形成所述凹槽,对应所述第二缺口位置的所述第二侧板形成所述凹槽的侧壁。
5.根据权利要求4所述的检测组件,其特征在于,包括:
第三壳体,所述第三壳体包括安装板和围绕所述安装板的至少一个第三侧板,所述第三侧板的底侧和所述安装板的边缘连接,所述安装板和所述至少一个第三侧板均设置于所述第二壳体的所述容纳腔内,所述至少一个第三侧板的顶侧和所述至少一个第一侧板的顶侧连接,所述电路板放置于所述安装板,并且位于所述安装板与所述第一壳体之间;
对应所述第一缺口位置的所述第三侧板具有第三缺口,所述第三缺口形状和所述第一缺口形状一致。
6.根据权利要求5所述的检测组件,其特征在于,所述安装板靠近所述第三侧板的边缘设有凸肋,所述凸肋环绕所述电路板周缘,以对所述电路板进行限位。
7.根据权利要求5所述的检测组件,其特征在于,包括若干固定件;
其中,所述第一壳体的所述盖板上设有第一通孔,所述电路板上设有第二通孔,所述安装板上设有第三通孔,所述底板上设有第四通孔,所述固定件穿过所述第四通孔、所述第三通孔、所述第二通孔和所述第一通孔,使所述第一壳体、所述电路板和所述第二壳体固定。
8.根据权利要求4所述的检测组件,其特征在于,
所述第二侧板的高度大于等于所述第一侧板高度的四分之一,小于等于所述第一侧板高度的三分之二。
9.根据权利要求4所述的检测组件,其特征在于,
所述第二侧板的高度大于等于所述第一侧板高度的四分之一,小于等于所述第一侧板高度的四分之三。
10.根据权利要求3所述的检测组件,其特征在于,
所述第二区域为长方形区域,或者正方形区域。
11.根据权利要求3所述的检测组件,其特征在于,
所述第一侧板和所述底板为一体式连接。
12.根据权利要求1所述的检测组件,其特征在于,
所述凹槽为长方体状,或者正方体状。
13.一种医疗检测设备,其特征在于,包括仪器主体,所述仪器主体包括插槽和接触电极,所述插槽用于插设检测组件,当权利要求1-12其中之一所述的检测组件插入所述医疗检测设备时,所述接触电极与所述检测组件的检测电极接触。
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