WO2017067268A1 - 多参数即时检验无线传输智能腕表 - Google Patents
多参数即时检验无线传输智能腕表 Download PDFInfo
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- WO2017067268A1 WO2017067268A1 PCT/CN2016/092213 CN2016092213W WO2017067268A1 WO 2017067268 A1 WO2017067268 A1 WO 2017067268A1 CN 2016092213 W CN2016092213 W CN 2016092213W WO 2017067268 A1 WO2017067268 A1 WO 2017067268A1
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- test
- wireless transmission
- smart
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- wristwatch
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- 238000007689 inspection Methods 0.000 title claims abstract description 22
- 238000012360 testing method Methods 0.000 claims abstract description 63
- 238000001514 detection method Methods 0.000 claims abstract description 24
- 238000012545 processing Methods 0.000 claims abstract description 4
- 210000004369 blood Anatomy 0.000 claims description 23
- 239000008280 blood Substances 0.000 claims description 23
- DDRJAANPRJIHGJ-UHFFFAOYSA-N creatinine Chemical class CN1CC(=O)NC1=N DDRJAANPRJIHGJ-UHFFFAOYSA-N 0.000 claims description 16
- 229940109239 creatinine Drugs 0.000 claims description 8
- 210000002966 serum Anatomy 0.000 claims description 8
- LEHOTFFKMJEONL-UHFFFAOYSA-N Uric Acid Chemical compound N1C(=O)NC(=O)C2=C1NC(=O)N2 LEHOTFFKMJEONL-UHFFFAOYSA-N 0.000 claims description 7
- TVWHNULVHGKJHS-UHFFFAOYSA-N Uric acid Natural products N1C(=O)NC(=O)C2NC(=O)NC21 TVWHNULVHGKJHS-UHFFFAOYSA-N 0.000 claims description 7
- 238000004891 communication Methods 0.000 claims description 7
- 150000002632 lipids Chemical class 0.000 claims description 7
- 229940116269 uric acid Drugs 0.000 claims description 7
- 238000012544 monitoring process Methods 0.000 claims description 6
- 230000033001 locomotion Effects 0.000 claims description 4
- 238000012795 verification Methods 0.000 claims description 4
- 230000036760 body temperature Effects 0.000 claims description 3
- 230000003860 sleep quality Effects 0.000 claims description 3
- 230000003993 interaction Effects 0.000 claims description 2
- 210000000707 wrist Anatomy 0.000 claims description 2
- WQZGKKKJIJFFOK-GASJEMHNSA-N Glucose Natural products OC[C@H]1OC(O)[C@H](O)[C@@H](O)[C@@H]1O WQZGKKKJIJFFOK-GASJEMHNSA-N 0.000 claims 1
- 239000008103 glucose Substances 0.000 claims 1
- 230000036541 health Effects 0.000 abstract description 6
- 230000006870 function Effects 0.000 description 11
- 238000003780 insertion Methods 0.000 description 4
- 230000037431 insertion Effects 0.000 description 4
- 230000015654 memory Effects 0.000 description 4
- 238000013461 design Methods 0.000 description 3
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- 239000000463 material Substances 0.000 description 2
- 238000000034 method Methods 0.000 description 2
- 208000017667 Chronic Disease Diseases 0.000 description 1
- QVGXLLKOCUKJST-UHFFFAOYSA-N atomic oxygen Chemical compound [O] QVGXLLKOCUKJST-UHFFFAOYSA-N 0.000 description 1
- 238000011161 development Methods 0.000 description 1
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- 238000005516 engineering process Methods 0.000 description 1
- 230000003862 health status Effects 0.000 description 1
- 239000002184 metal Substances 0.000 description 1
- 238000010295 mobile communication Methods 0.000 description 1
- 238000011022 operating instruction Methods 0.000 description 1
- 229910052760 oxygen Inorganic materials 0.000 description 1
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- 229910052594 sapphire Inorganic materials 0.000 description 1
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Images
Classifications
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B5/00—Measuring for diagnostic purposes; Identification of persons
- A61B5/145—Measuring characteristics of blood in vivo, e.g. gas concentration or pH-value ; Measuring characteristics of body fluids or tissues, e.g. interstitial fluid or cerebral tissue
Definitions
- the utility model relates to a smart wearable device, and more particularly to a multi-parameter instant check smart watch with wireless transmission function.
- smart wearable devices Since Google released Google Glass in 2012, smart wearable devices have begun to enter people's lives. In recent years, the development of smart wearable devices has been in the ascendant, becoming the most popular electronic products after smartphones and tablets. At present, among a wide variety of smart wearable devices, smart watch products are particularly popular among consumers because of their rich application functions.
- Apple Watch One of the highlights of smart watch products represented by Apple Watch is the ability to monitor sports and health status compared to other portable devices such as smartphones and laptops.
- This type of smart watch generates and collects electrical signals reflecting the pulse pressure, heart rate, temperature and other information of the human body through the sensor module, processes the collected electrical signals, displays them on the screen through a visual program, and transmits them to the smartphone through electromagnetic waves.
- the terminal so that the wearer can instantly understand his or her exercise state, sleep quality, and the like.
- the present invention aims to provide a multi-parameter instant test wireless transmission smart watch capable of performing on-the-spot inspection on various physiological indexes such as heart rate, body temperature, blood oxygen, blood sugar, and serum creatinine.
- the utility model provides a multi-parameter instant test wireless transmission smart watch.
- the smart wristwatch includes a wristwatch body and a watchband, and the wristwatch body may include a casing assembly including a watch upper cover as a casing frame, a lower case cover joined to a lower portion of the upper cover, and a top cover An upper transparent surface portion, the upper cover includes a side wall formed with at least one opening; an operating component for issuing an operation command to the smart wristwatch; and detecting a component disposed in the housing assembly and electrically connected to the operating component, the detection control component controls the detection function of the smart wristwatch and obtains detection data according to the operation instruction from the operation component; the power component, the setting thereof Within the housing assembly for powering other components of the smart wristwatch.
- the smart wristwatch according to the present invention further includes a quick-inspection assembly having a test strip socket portion.
- the test strip socket portion is disposed inside the outer casing assembly and has at least one slot that communicates with the outside of the smart wristwatch through the opening.
- the test strip socket portion is for receiving a test paper and generating a corresponding electrical signal according to the type of test paper inserted into the slot, such as a test paper for measuring blood sugar, blood uric acid, serum creatinine, and blood lipids, and sample information carried.
- the detection control component includes a real-time inspection module electrically connected to the test strip socket portion, and performs corresponding data processing on the electrical signal from the test strip socket portion to obtain and store a real-time inspection result related to the sample information (such as The test data reflecting the blood sugar, blood uric acid, serum creatinine and blood lipid levels of the wearer of the smart watch, etc.).
- a real-time inspection module electrically connected to the test strip socket portion, and performs corresponding data processing on the electrical signal from the test strip socket portion to obtain and store a real-time inspection result related to the sample information (such as The test data reflecting the blood sugar, blood uric acid, serum creatinine and blood lipid levels of the wearer of the smart watch, etc.).
- the smart watch according to the present invention can perform real-time inspection and data transmission on a plurality of physiological parameters such as blood sugar, blood uric acid, serum creatinine and blood lipid, and realizes multi-use of a table. It greatly enhances the functional scalability and practicality of existing smart watches in health care.
- the test strip slot of the smart wristwatch according to the present invention communicates with the outside through an opening provided in the side wall of the upper cover of the watch, facilitating the insertion operation of the test paper.
- 1a is a top view of an embodiment of a smart wristwatch of the present invention.
- Figure 1b is a front elevational view of an embodiment of the smart wristwatch of the present invention.
- FIG. 2 is an exploded view of main parts of the wristwatch body of an embodiment of the smart wristwatch of the present invention
- FIG. 3 is a schematic view of an upper cover of an embodiment of the smart wristwatch of the present invention.
- FIG. 4 is a schematic view of a lower cover of an embodiment of the smart wristwatch of the present invention.
- Figure 5a is a perspective view of another embodiment of the smart wristwatch of the present invention.
- Figure 5b is a side elevational view of another embodiment of the smart wristwatch of the present invention.
- the multi-parameter instant test wireless transmission smart wristwatch includes a wristwatch body 100 and a watchband 200.
- the material and color of the strap 200 can be arbitrarily selected according to design requirements.
- the wristwatch body 100 includes a housing assembly 1, an instant inspection assembly 2, an operation assembly 3, a detection control assembly 4, and a power supply assembly.
- the outer casing assembly 1 includes an upper cover 11 and a lower cover. Cover 12 and surface portion 13. The watch upper cover 11 functions as a frame of the wristwatch case.
- the upper cover 11 is formed as a frame surrounded by four side walls 15, and one of the side walls 15 is provided with at least one opening 16. Depending on the design, the four side walls 15 may be perpendicular or at an angle to the ground.
- the watch lower cover 12 is joined to the lower portion of the watch upper cover 11 and closes the lower portion of the watch upper cover 11, and the surface portion 13 is joined to the upper portion of the watch upper cover 11 and closes the upper portion of the watch upper cover 11.
- the watch upper cover 11, the watch lower cover 12, and the surface portion 13 constitute the outer casing of the wristwatch main body 100 of the smart wristwatch. 3 and 4 show specific structures of an example of the upper cover 11 and the lower cover 12, respectively.
- the watch upper cover 11 and the watch lower cover 12 may be made of materials commonly used in the art such as metal or plastic.
- the surface portion 13 is transparent, for example, made of glass or sapphire or the like.
- the lower lid 12 has a curved surface to better conform to the wrist physiological curve for more comfortable wearing.
- the watch lower cover 12 and the surface portion 13 are both airtightly joined to the watch upper cover 11 by a seal such as a seal ring.
- the housing assembly 1 can also include a nameplate 14 that is joined to the other of the four side walls 15 that is not provided with at least one opening 16.
- the nameplate 14 can be printed with the logo information such as the trademark of the product. Shown in the drawing is a housing assembly 1 in the case where the wristwatch has a square surface portion 13.
- the surface portion 13 may have a different shape such as a polygon, an ellipse or a circle according to design requirements, and the upper cover 11 and the lower cover 12 may have a shape matching the shape of the surface portion 13.
- the surface portion 13 is circular and the four side walls of the upper lid 11 are perpendicular to the ground.
- the upper cover 11 may also be formed as a frame surrounded by the corresponding plurality of side walls 15; in the case where the surface portion is elliptical or circular,
- the watch upper cover may also be formed as a circular frame surrounded by consecutive side walls 15, and at least one opening 16 is provided at a desired position of the side wall 15.
- the instant inspection assembly 2 of the smart wristwatch includes a test strip socket portion 21.
- the test strip socket portion 21 is disposed inside the outer casing assembly 1, and the test paper socket portion 21 is provided with at least one slot 22 which communicates with the outside of the smart wristwatch through an opening 16 provided in the side wall of the upper cover 11.
- the test strip socket portion 21 is for receiving various types of test papers for measuring blood sugar, blood uric acid, serum creatinine, blood lipids, etc., and generates corresponding electrical signals according to the type of the inserted test paper and the sample information carried by the test paper.
- the user inserts various test papers into the slots 22 of the test strip socket portion 21 through the opening 16.
- the size of the test strip socket portion 21 and the size and arrangement of the slots 22 can be compatible with the insertion of the above-mentioned various types of test papers.
- the size of the test strip socket portion 21 is 15 mm x 6 mm, and the slot 22 is in a parallel opening manner.
- the socket 22 of the test strip socket portion 21 and the opening 16 are not aligned, and a fixing member may be provided in the outer casing assembly 1 of the wristwatch.
- the slot 22 of the test strip socket portion 21 is always aligned with the opening 16 by the fixing of the fixing member.
- a fixture can be placed adjacent the opening 16.
- the slot 22 may be provided with a detachable cover to prevent foreign matter such as dust, water, etc. from entering the slot 22.
- the operation assembly 3 includes a side wall 15 disposed on the upper cover 11 of the watch.
- Various manipulation buttons 31 in the opening and a touch screen 32 disposed under the surface portion 13 disposed in the outer casing assembly 1.
- the wearer can issue an operation command to the smart watch by performing operations on the touch screen 32 and the respective keys to implement various functions such as switching on, setting options, detecting, viewing data, and the like.
- the button 31 and the opening 16 are disposed on the same side wall 15 in the illustrated embodiment, it is apparent that they may be disposed on different side walls 15, such as opposite side walls 15, as desired.
- the detection control unit 4 is also disposed in the housing assembly 1, and the detection control unit 4 is electrically connected to the operation unit 3, and controls various functions of the smart watch according to an operation instruction from the operation unit 3 to obtain various detection data.
- the detection control component 4 includes various control modules that implement various detection and control functions, such as sensors, printed circuit boards (PCBs), memories, and the like.
- the detection control unit 4 includes a real-time inspection control module composed of, for example, a sensor, a PCB main board, and a memory, which is connected to the test strip socket portion 21.
- the real-time inspection control module performs corresponding data processing on the electrical signal from the test strip socket portion 21, and obtains a real-time test result related to physiological parameters such as blood sugar, blood uric acid, serum creatinine, and blood lipid in the collected sample, and can perform the test.
- the resulting data is stored and transmitted.
- the test results can be stored in a memory and displayed on the touch screen 32.
- the detection control component may further include a motion and sleep monitoring control module, such as a PCB circuit board of an inductor that integrates parameters that reflect the movement distance, heart rate, body temperature, and the like of the wearer to reflect the motion state and sleep quality.
- the detection control component may further include a wireless data transmission module connected to the various control modules described above through a connection line.
- the wireless data transmission module can have two transmission modes. First, for example, by integrating the mobile communication module and the SIM card of the corresponding operator on the circuit board, the data is transmitted by using a remote long-distance public network communication such as GPRS, 3G, 4G, and a remote server or a mobile terminal such as a computer, a tablet computer, or a mobile phone. Interaction.
- the wireless data transmission module sends the above verification and monitoring results to a designated server or a mobile terminal such as a computer, a tablet, a mobile phone, or the like, or automatically downloads data required for system update from a remote server.
- a designated server or a mobile terminal such as a computer, a tablet, a mobile phone, or the like
- data exchange with other health medical devices is realized by wireless short-distance private network communication, for example, a separate sphygmomanometer with a corresponding wireless transmission module, etc. measuring instrument.
- a power supply assembly is further disposed in the outer casing assembly 1, and the power supply assembly is connected to the operation assembly 3 and the detection control assembly 4 through a connection line to supply power to the respective components.
- the smart watch of the present invention can limit or even remove the high power consumption functions such as call, video entertainment, and web browsing which are commonly available in smart watches currently on the market. In order to extend the standby time of the smart wristwatch of the present invention to about one week, the practicality of the product is greatly improved.
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Abstract
一种多参数即时检验无线传输智能腕表,其包括腕表主体(100)和表带(200),腕表主体(100)包括外壳组件(1)、即时检验组件(2)、操作组件(3)、检测控制组件(4)和电源组件。即时检验组件(2)具有试纸插口部(21),试纸插口部(21)设置于外壳组件(1)内部并且具有通过设置于外壳组件(1)的表上盖(11)的侧壁(15)的开口(16)与智能腕表外部连通的至少一个插槽(22),试纸插口部(21)用于接纳试纸并根据插入插槽(22)的试纸的类型和所携带的样本信息生成相应的电信号。检测控制组件(4)包括即时检验模块,其与试纸插口部(21)电连接,即时检验控制模块对来自试纸插口部(21)的所述电信号进行相应的数据处理,获得并存储与所述样本信息相关的即时检验结果。实现了一表多用,大大提高了智能腕表在健康医疗方面的功能扩展性和实用性。
Description
本实用新型涉及智能可穿戴设备,更加具体地,涉及具有无线传输功能的多参数即时检验智能腕表。
从2012年谷歌发布谷歌眼镜(Google Glass)开始,智能可穿戴设备开始走入人们的生活。近年来,智能可穿戴设备的发展方兴未艾,成为继智能手机和平板电脑之后最受人关注的电子产品。目前,在种类繁多的智能可穿戴设备中,智能腕表类产品因为具有丰富的应用功能尤其受到消费者的喜爱。
与智能手机、笔记本电脑等其它便携设备相比,以Apple Watch为代表的智能腕表类产品的亮点之一在于具有运动和健康状态监测功能。这类智能腕表通过传感器模块生成并采集反映人体的脉搏压力、心率、温度等信息的电信号,对采集到的电信号进行处理,通过可视化程序显示在屏幕上并通过电磁波发送给智能手机等终端,从而使佩戴者即时地了解自己的运动状态、睡眠质量等。
然而,随着健康和医疗成为可穿戴技术的一大主要分支,目前市场上智能腕表所提供的简单的心率、体温监测功能已经无法满足消费者,尤其是患有慢性疾病的消费者的需求。一方面,这部分消费者迫切需求智能腕表能够提供更丰富的监测和即时检验(POCT)功能,以有助于他们更加全面地管理自己的健康状态。另一方面,对于这一细分市场而言,当前市场上的智能腕表产品在体积和电池电量有限的情况下却兼容了社交通讯、影音娱乐等太多与健康和医疗无关的功能,使得产品的续航时间短,专业应用缺乏,用户体验度差,实用性不高。
实用新型内容
鉴于以上问题,本实用新型旨在提供一种能够对心率、体温、血氧、血糖、血肌酐等多种生理指标进行即时检验的多参数即时检验无线传输智能腕表。
本实用新型提供了一种多参数即时检验无线传输智能腕表。所述智能腕表包括腕表主体和表带,所述腕表主体可以包括:外壳组件,其包括作为外壳框架的表上盖、接合至表上盖下部的表下盖、接合至表上盖上部的透明的表面部,所述表上盖包括形成有至少一个开口的侧壁;操作组件,其用于对所述智能腕表发出操作指令;检测控
制组件,其设置于外壳组件内并与操作组件电连接,根据来自操作组件的所述操作指令,检测控制组件对所述智能腕表的检测功能进行控制并获得检测数据;电源组件,其设置于所述外壳组件内,用于向所述智能腕表的其它组件供电。根据本实用新型的智能腕表还包括即时检验组件,其具有试纸插口部。试纸插口部设置于外壳组件内部并且具有通过开口与所述智能腕表外部连通的至少一个插槽。试纸插口部用于接纳试纸并根据插入所述插槽的试纸的类型(诸如用于测量血糖、血尿酸、血肌酐和血脂的试纸等)和所携带的样本信息生成相应的电信号。检测控制组件包括即时检验模块,该模块与试纸插口部电连接,对来自所述试纸插口部的所述电信号进行相应的数据处理,获得并存储与所述样本信息相关的即时检验结果(诸如反映所述智能腕表的佩戴者的血糖、血尿酸、血肌酐和血脂水平的检验数据等)。
根据本实用新型的智能腕表能够对血糖、血尿酸、血肌酐、血脂等多项生理参数进行即时检验和数据传输,实现了一表多用。大大提高了现有智能腕表在健康医疗方面的功能扩展性和实用性。另外,根据本实用新型的智能腕表的试纸插槽通过设置于表上盖的侧壁的开口与外部连通,便于试纸的插入操作。
下面,将参照附图进一步对本实用新型的具体实施方式进行说明。在各个附图中,用相同的附图标记表示相同或类似的元件。其中,
图1a为本实用新型智能腕表一实施例的俯视图;
图1b为本实用新型智能腕表一实施例的主视图;
图2为本实用新型智能腕表一实施例的腕表主体的主要部件的分解图;
图3为本实用新型智能腕表一实施例的上盖的示意图;
图4为本实用新型智能腕表一实施例的下盖的示意图;
图5a为本实用新型的智能腕表另一实施例的立体图;
图5b为本实用新型的智能腕表另一实施例的侧视图。
如图1a和图1b所示,根据本实用新型的多参数即时检验无线传输智能腕表包括腕表主体100和表带200。表带200的材料和颜色可以根据设计需要任意选择。如图1a和图1b并结合图2所示,腕表主体100包括:外壳组件1、即时检验组件2、操作组件3、检测控制组件4和电源组件。如图2所示,外壳组件1包括表上盖11、表下
盖12和表面部13。表上盖11起到腕表外壳的框架的作用。在表面部13为矩形或正方形的情况下,表上盖11被形成为由四个侧壁15围成的框架,其中一个侧壁15设置有至少一个开口16。根据设计需要,四个侧壁15可以与地面垂直或呈一定倾角。表下盖12接合至表上盖11的下部并封闭表上盖11的下部,表面部13接合至表上盖11的上部并封闭表上盖11的上部。表上盖11、表下盖12和表面部13构成智能腕表的腕表主体100的外壳。图3和图4分别示出了表上盖11和表下盖12的示例的具体结构。表上盖11和表下盖12可以由金属或塑料等本领域内常用的材料制成。表面部13是透明的,例如由玻璃或蓝宝石等制成。优选地,表下盖12具有弯曲表面以更加贴合腕部生理曲线,使佩戴更加舒适。优选地,表下盖12和表面部13均是通过例如密封圈等密封件气密性地接合至表上盖11。外壳组件1还可以包括铭板14,铭板14接合至四个侧壁15中的未设置有至少一个开口16的另一个侧壁15。铭板14可以印刻有产品的商标等文字图案信息。附图中示出的是在腕表具有方形表面部13的情况下的外壳组件1。根据设计需要,表面部13可以具有多边形、椭圆或圆形等不同的形状,表上盖11和表下盖12可以具有与表面部13形状相匹配的形状。在图5a和图5b所示的实施例中,表面部13为圆形并且表上盖11的四个侧壁均与地面垂直。可以替代地,在表面部13为多边形形状的情况下,表上盖11还可以被形成为由相应的多个侧壁15围成的框架;在表面部为椭圆形或圆形的情况下,表上盖还可以被形成为由连贯的侧壁15围成的圆形框架,并且将至少一个开口16设置在该侧壁15的需要的位置处。
如图1和图2所示,根据本实用新型的智能腕表的即时检验组件2包括试纸插口部21。试纸插口部21设置于外壳组件1内部,并且试纸插口部21设置有至少一个插槽22,插槽22通过设置于表上盖11侧壁的开口16与智能腕表的外部连通。试纸插口部21用于接纳用于测量血糖、血尿酸、血肌酐、血脂等的各类试纸,并根据插入的试纸的类型和试纸所携带的样本信息生成相应的电信号。在使用时,用户将各种试纸通过开口16插入试纸插口部21的插槽22中。试纸插口部21的尺寸以及插槽22的大小及布置方式能够兼容上述各类试纸的插入。例如,试纸插口部21的尺寸为15mm×6mm,插槽22采用平行开口方式。此外,为了避免反复插入试纸导致试纸插口部21松动,进而导致试纸插口部21的插槽22与开口16无法对准,在腕表的外壳组件1内还可以设置有固定件。通过固定件的固定,试纸插口部21的插槽22始终与开口16对准。例如,固定件可以设置在开口16附近。另外,插槽22还可以设置有能够拆卸的护盖以防止外部的灰尘、水等异物进入插槽22中。
如图1、图2和图5a、图5b所示,操作组件3包括设置于表上盖11的侧壁15的
开孔中的各种操控按键31以及设置于外壳组件1内的位于表面部13下方的触摸屏32。佩戴者能够通过对触摸屏32及各个按键的操作对智能腕表发出实现例如开关机、选项设置、进行检测、查看数据等各种功能的操作指令。虽然在图示的实施例中按键31与开口16设置于同一侧壁15,但显然可以根据需要将它们设置于不同的侧壁15,例如相对的两个侧壁15。
检测控制组件4也设置于外壳组件1内,检测控制组件4与操作组件3电连接,根据来自操作组件3的操作指令对智能腕表的各种功能进行控制并获得各种检测数据。检测控制组件4包括实现各种检测和控制功能的各种控制模块,这些模块例如由传感器、印刷电路板(PCB)和存储器等组成。例如,所述检测控制组件4包括由例如传感器、PCB主板和存储器等组成的即时检验控制模块,它与试纸插口部21连接。所述即时检验控制模块对来自试纸插口部21的电信号进行相应的数据处理,获得与采集的样本中的血糖、血尿酸、血肌酐、血脂等生理参数相关的即时检验结果,并且能够对检验结果数据进行存储和传输。例如,能够将检验结果存储在存储器中并显示在触摸屏32上。所述检测控制组件还可以包括运动和睡眠监测控制模块,该模块例如由集成有对佩戴者的运动距离、心率、体温等反映运动状态和睡眠质量的参数进行监测的感应器的PCB电路板构成,其通过连接线与操作组件3连接,从而根据来操作组件3的操作指令对上述生理参数进行实时监测并将数据存储在存储器中和/或显示在触摸屏32上。所述检测控制组件还可以包括无线数据传输模块,其通过连接线与上述各种控制模块连接。无线数据传输模块可以具有两种传输模式。一是例如通过将移动通信模块与相应运营商的SIM卡内置在电路主板上,从而利用GPRS、3G、4G等无线远距离公网通讯与远程服务器或电脑、平板电脑、手机等移动终端进行数据交互。例如,无线数据传输模块将上述检验和监测结果发送至指定的服务器或电脑、平板电脑、手机等移动终端或者从远程服务器上自动下载系统更新所需的数据。二是例如通过将RF专网数据通信协议模块绑定在电路主板上,从而利用无线短距离专网通讯实现与其它健康医疗设备的数据交换,例如具有相应的无线传输模块的单独的血压计等测量仪器。
在外壳组件1内还设置有电源组件,电源组件通过连接线与操作组件3和检测控制组件4连接,为各组件供电。根据需要,本实用新型的智能腕表可以对目前市售的智能腕表普遍具有的通话、影音娱乐、网页浏览等高耗电功能予以限制甚至去除。以使得本实用新型的智能腕表的待机时间延长至一周左右,较大地提高了产品的实用性。
Claims (12)
- 一种多参数即时检验无线传输智能腕表,包括腕表主体(100)和表带(200),所述腕表主体(100)包括:外壳组件(1),所述外壳组件(1)包括作为外壳框架的表上盖(11)、接合至所述表上盖(11)下部的表下盖(12)、接合至所述表上盖(11)上部的透明的表面部(13),所述表上盖(11)包括形成有至少一个开口(16)的侧壁(15);操作组件(3),所述操作组件(3)用于对所述智能腕表发出操作指令;检测控制组件(4),所述检测控制组件(4)设置于所述外壳组件(1)内并与所述操作组件(3)电连接,根据来自所述操作组件(3)的所述操作指令,所述检测控制组件(4)对所述智能腕表的检测功能进行控制并获得检测数据;电源组件,其设置于所述外壳组件(1)内,用于向所述智能腕表的其它组件供电;其特征在于,所述智能腕表还包括即时检验组件(2),所述即时检验组件(2)具有试纸插口部(21),所述试纸插口部(21)设置于所述外壳组件(1)内部并且具有通过所述开口(16)与所述智能腕表外部连通的至少一个插槽(22),所述试纸插口部(21)用于接纳试纸并根据插入所述插槽(22)的试纸的类型和所携带的样本信息生成相应的电信号;所述检测控制组件(4)包括即时检验模块,其与所述试纸插口部(21)电连接,所述即时检验控制模块对来自所述试纸插口部(21)的所述电信号进行相应的数据处理,获得并存储与所述样本信息相关的即时检验结果。
- 如权利要求1所述的多参数即时检验无线传输智能腕表,其特征在于,所述外壳组件(1)还包括铭板(14),所述铭板(14)接合至所述表上盖(11)的所述侧壁(15)。
- 如权利要求1所述的多参数即时检验无线传输智能腕表,其特征在于,所述即时检验组件(2)还包括设置在所述开口附近的固定件,所述固定件防止所述试纸插口部(21)松动,以确保所述插槽(22)始终与所述开口(16)对准。
- 如权利要求1所述的多参数即时检验无线传输智能腕表,其特征在于,所述操作组件(3)包括设置于所述表面部(13)下方的触摸屏(32)和设置于所述表上盖(11)的所述侧壁(15)的操控按键(31),所述即时检验结果能够实时显示在所述触摸屏(32)上。
- 如权利要求4所述的多参数即时检验无线传输智能腕表,其特征在于,所述检测控制组件(4)还包括运动和睡眠监测控制模块,该模块对反映所述智能腕表的佩戴者的运动状态和睡眠质量的参数进行实时监测,并将监测结果实时显示在所述触摸屏(32)上。
- 如权利要求1或5所述的多参数即时检验无线传输智能腕表,其特征在于,所述检测控制组件(4)还包括无线数据传输模块,通过所述无线数据传输模块,所述检测控制组件(4)能够与远程服务器、移动终端和/或具有相应的无线传输模块的测量仪器进行数据交互。
- 如权利要求6所述的多参数即时检验无线传输智能腕表,其特征在于,所述无线数据传输模块具有无线远距离公网通讯和无线短距离专网通讯这两种通讯模式。
- 如权利要求1所述的多参数即时检验无线传输智能腕表,其特征在于,所述试纸包括用于测量血糖、血尿酸、血肌酐和血脂的试纸,并且所述即时检验结果包括反映所述智能腕表的佩戴者的血糖、血尿酸、血肌酐和血脂水平的检验数据。
- 如权利要求5所述的多参数即时检验无线传输智能腕表,其特征在于,所述参数包括所述智能腕表的佩戴者的运动距离、心率和体温。
- 如权利要求1所述的多参数即时检验无线传输智能腕表,其特征在于,所述表下盖(12)具有贴合人体腕部生理曲线的弯曲表面。
- 如权利要求1所述的多参数即时检验无线传输智能腕表,其特征在于,所述试纸插口部(21)的尺寸为15mm×6mm。
- 如权利要求1所述的多参数即时检验无线传输智能腕表,其特征在于,所述插槽(22)采用平行开口方式。
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