TWM463572U - Separation type physiological measurement device - Google Patents
Separation type physiological measurement device Download PDFInfo
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- TWM463572U TWM463572U TW102209686U TW102209686U TWM463572U TW M463572 U TWM463572 U TW M463572U TW 102209686 U TW102209686 U TW 102209686U TW 102209686 U TW102209686 U TW 102209686U TW M463572 U TWM463572 U TW M463572U
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- measuring device
- radio frequency
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- 238000000926 separation method Methods 0.000 title claims 2
- 238000005259 measurement Methods 0.000 title description 15
- 238000004891 communication Methods 0.000 claims description 20
- 238000012360 testing method Methods 0.000 claims description 18
- 239000000758 substrate Substances 0.000 claims description 12
- 230000005540 biological transmission Effects 0.000 claims description 5
- 239000008280 blood Substances 0.000 description 14
- 210000004369 blood Anatomy 0.000 description 14
- HVYWMOMLDIMFJA-DPAQBDIFSA-N cholesterol Chemical compound C1C=C2C[C@@H](O)CC[C@]2(C)[C@@H]2[C@@H]1[C@@H]1CC[C@H]([C@H](C)CCCC(C)C)[C@@]1(C)CC2 HVYWMOMLDIMFJA-DPAQBDIFSA-N 0.000 description 12
- 230000036772 blood pressure Effects 0.000 description 10
- LEHOTFFKMJEONL-UHFFFAOYSA-N Uric Acid Chemical compound N1C(=O)NC(=O)C2=C1NC(=O)N2 LEHOTFFKMJEONL-UHFFFAOYSA-N 0.000 description 6
- TVWHNULVHGKJHS-UHFFFAOYSA-N Uric acid Natural products N1C(=O)NC(=O)C2NC(=O)NC21 TVWHNULVHGKJHS-UHFFFAOYSA-N 0.000 description 6
- QVGXLLKOCUKJST-UHFFFAOYSA-N atomic oxygen Chemical compound [O] QVGXLLKOCUKJST-UHFFFAOYSA-N 0.000 description 6
- 235000012000 cholesterol Nutrition 0.000 description 6
- 239000001301 oxygen Substances 0.000 description 6
- 229910052760 oxygen Inorganic materials 0.000 description 6
- 229940116269 uric acid Drugs 0.000 description 6
- 238000010586 diagram Methods 0.000 description 5
- 102000001554 Hemoglobins Human genes 0.000 description 4
- 108010054147 Hemoglobins Proteins 0.000 description 4
- 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 description 2
- WQZGKKKJIJFFOK-VFUOTHLCSA-N beta-D-glucose Chemical compound OC[C@H]1O[C@@H](O)[C@H](O)[C@@H](O)[C@@H]1O WQZGKKKJIJFFOK-VFUOTHLCSA-N 0.000 description 2
- 201000010099 disease Diseases 0.000 description 2
- 208000037265 diseases, disorders, signs and symptoms Diseases 0.000 description 2
- 239000007789 gas Substances 0.000 description 2
- 239000008103 glucose Substances 0.000 description 2
- 150000003278 haem Chemical class 0.000 description 2
- 201000005569 Gout Diseases 0.000 description 1
- 206010020772 Hypertension Diseases 0.000 description 1
- 208000007502 anemia Diseases 0.000 description 1
- 206010012601 diabetes mellitus Diseases 0.000 description 1
- 230000002526 effect on cardiovascular system Effects 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 230000003902 lesion Effects 0.000 description 1
- 230000007774 longterm Effects 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 238000012544 monitoring process Methods 0.000 description 1
- NJPPVKZQTLUDBO-UHFFFAOYSA-N novaluron Chemical compound C1=C(Cl)C(OC(F)(F)C(OC(F)(F)F)F)=CC=C1NC(=O)NC(=O)C1=C(F)C=CC=C1F NJPPVKZQTLUDBO-UHFFFAOYSA-N 0.000 description 1
- 230000004962 physiological condition Effects 0.000 description 1
- 238000001179 sorption measurement Methods 0.000 description 1
- 230000002792 vascular Effects 0.000 description 1
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- Measurement Of The Respiration, Hearing Ability, Form, And Blood Characteristics Of Living Organisms (AREA)
Description
本創作係有關於量測裝置,尤其有關於生理資訊量測裝置。
This creation is about measuring devices, especially about physiological information measuring devices.
對於中老年人來說,高血壓、糖尿病、痛風、心血管阻塞、貧血等為好發疾病,多數中老年人都有誘發上述疾病的潛在因子,因而必須在家自行監控血壓、血糖、膽固醇、尿酸、血紅素與血氧等生理資訊。
請參閱「圖1」所示,習知生理資訊量測裝置,如血壓機1,可藉由一壓脈帶2束於使用者的手臂(圖未示),而用於量測使用者的血壓,藉由監控血壓的變化,可早期發現病灶,早期治療而有助於使用者健康的維持。
此外,目前亦有各種生物試片問世,各種生物試片其在滴入使用者的檢體,如血液等等,可用於量取血糖、膽固醇、尿酸、血紅素與血氧等生理資訊,生物試片在插入一判讀機之後,再藉由該判讀機的判讀,即可讓使用者得到各種生理資訊。
上述習知的血壓機、生物試片與配合生物試片使用的判讀機,雖可量測取得血壓、血糖、膽固醇、尿酸、血紅素與血氧等生理資訊,然顯然的使用者必須在家同時準備前述兩種機台,才能滿足量測上的需求,其不但購置成本高且佔用空間,難以滿足使用上的需求。
為此,如台灣公告第M390127號專利已揭露一種分離式的量測裝置,然而其透過抽插介面直接接觸的結合方式,在長久使用之後,容易會有接觸不良的問題,而造成可靠度上的問題。
又習知生理資訊量測裝置僅有簡單的歷史量測記錄功能,當有多人使用同一生理資訊量測裝置時,則需手動另行記錄,或者在量測時主動登載量測者的身分,然而對於中老年人來說,其顯有操作上的困擾,而無法滿足使用上的需要。
For middle-aged and elderly people, high blood pressure, diabetes, gout, cardiovascular obstruction, anemia, etc. are good diseases. Most middle-aged and elderly people have potential factors that induce these diseases. Therefore, blood pressure, blood sugar, cholesterol, and uric acid must be monitored at home. Physiological information such as hemoglobin and blood oxygen.
Referring to FIG. 1 , a conventional physiological information measuring device, such as a blood pressure machine 1, can be used to measure a user by using a vascular band 2 on a user's arm (not shown). Blood pressure, by monitoring changes in blood pressure, can detect lesions early, and early treatment can help users maintain their health.
In addition, various biological test strips are also available. Various biological test pieces are used to measure the blood glucose, cholesterol, uric acid, hemoglobin and blood oxygen, etc., which are instilled into the user's sample, such as blood. After the test piece is inserted into an interpreter, the user can obtain various physiological information by the interpretation of the interpreter.
The above-mentioned conventional blood pressure machine, biological test piece and the interpretation machine used with the biological test piece can measure physiological information such as blood pressure, blood sugar, cholesterol, uric acid, hemoglobin and blood oxygen, but obviously the user must be at home at the same time. The above two types of machines can be prepared to meet the requirements of measurement, which is not only expensive to purchase but also takes up space, and it is difficult to meet the demand for use.
For this reason, as disclosed in Taiwan Patent No. M390127, a separate measuring device has been disclosed. However, the direct contact through the drawing interface is prone to contact failure after long-term use, resulting in reliability. The problem.
It is also known that the physiological information measuring device has only a simple historical measurement recording function. When more than one person uses the same physiological information measuring device, it needs to be manually recorded separately, or the identity of the measuring person is actively posted during the measurement. However, for middle-aged and elderly people, it has obvious operational problems and cannot meet the needs of use.
爰此,本創作之主要目的在於揭露一種具高可靠度且自動辨別身分的分離式生理量測裝置,以滿足使用上的需要。
本創作為一種分離式生理量測裝置,供配合一身份手環使用,該身份手環內設有一無線射頻辨識標籤,該分離式生理量測裝置包含一底座與一手持測試儀,其中該底座包含一底座控制基板與一置放空間,該底座控制基板具有一血壓計模組、辨識該無線射頻辨識標籤的一底座無線射頻辨識模組、一底座近場通訊模組與連結該血壓計模組、該底座無線射頻辨識模組與該底座近場通訊模組的一底座微控制器。
而該手持測試儀包含一測試儀控制基板、一顯示器與一操作介面,該測試儀控制基板具有供量測生理數據的一生物感測器模組、辨識該無線射頻辨識標籤的一測試儀無線射頻辨識模組、一測試儀近場通訊模組與一測試儀微控制器。
其中該測試儀微控制器連結該顯示器、該生物感測器模組、該操作介面、該測試儀無線射頻辨識模組、該測試儀近場通訊模組,且該手持測試儀放置於該底座的置放空間內且讓該底座近場通訊模組與該測試儀近場通訊模組連結以交換該底座與該手持測試儀的量測數據。
據此,本創作的該底座無線射頻辨識模組與該測試儀無線射頻辨識模組可透過非接觸式的方式連結而交換量測數據,且皆可直接辨識該身份手環以取得己身的歷史量測資料,據此形成一可靠度高,且可量測多種生理數據如血糖、膽固醇、尿酸、血紅素、血氧與血壓的生理量測裝置,同時滿足使用者掌握己身的生理狀況的需求。
Therefore, the main purpose of this creation is to disclose a separate physiological measuring device with high reliability and automatic identification to meet the needs of use.
The present invention is a separate physiological measuring device for use with an identity bracelet. The identity bracelet has a radio frequency identification tag. The separate physiological measuring device comprises a base and a handheld tester, wherein the base The utility model comprises a base control substrate and a placement space, the base control substrate has a sphygmomanometer module, a base radio frequency identification module for identifying the radio frequency identification tag, a base near field communication module and the blood pressure meter module The base, the base radio frequency identification module and a base microcontroller of the base near field communication module.
The handheld tester includes a tester control substrate, a display and an operation interface. The tester control substrate has a biosensor module for measuring physiological data, and a tester for identifying the radio frequency identification tag. Radio frequency identification module, a tester near field communication module and a tester microcontroller.
The tester microcontroller is connected to the display, the biosensor module, the operation interface, the tester radio frequency identification module, the tester near field communication module, and the handheld tester is placed on the base The pedestal near field communication module is coupled to the tester near field communication module to exchange measurement data of the base and the handheld tester.
Accordingly, the base radio frequency identification module of the present invention and the radio frequency identification module of the tester can exchange measurement data through a contactless manner, and both can directly identify the identity bracelet to obtain its own body. Historical measurement data, according to which a physiological measurement device with high reliability and measuring various physiological data such as blood sugar, cholesterol, uric acid, hemoglobin, blood oxygen and blood pressure is formed, and the physiological condition of the user is grasped at the same time. Demand.
習知
1‧‧‧血壓機
2‧‧‧壓脈帶
本創作
10‧‧‧身份手環
11‧‧‧無線射頻辨識標籤
20‧‧‧底座
201‧‧‧底座控制基板
21‧‧‧血壓計模組
211‧‧‧壓力泵
212‧‧‧壓脈帶
213‧‧‧氣壓管
22‧‧‧底座無線射頻辨識模組
23‧‧‧底座近場通訊模組
24‧‧‧底座微控制器
25‧‧‧置放空間
26‧‧‧氣壓孔
27‧‧‧脈帶收納槽
28‧‧‧收納蓋板
29‧‧‧傳輸介面
30‧‧‧手持測試儀
301‧‧‧測試儀控制基板
31‧‧‧顯示器
32‧‧‧生物感測器模組
33‧‧‧操作介面
34‧‧‧測試儀無線射頻辨識模組
35‧‧‧測試儀近場通訊模組
36‧‧‧測試儀微控制器
37‧‧‧溫度計模組
38‧‧‧試片插槽
40‧‧‧生物試片
50‧‧‧電源輸入孔
60‧‧‧第一磁鐵
61‧‧‧第二磁鐵
70‧‧‧使用者
71‧‧‧手臂Conventional knowledge
1‧‧‧ blood pressure machine
2‧‧‧Curve belt creation
10‧‧‧idental bracelet
11‧‧‧RF tags
20‧‧‧Base
201‧‧‧Base control board
21‧‧‧ sphygmomanometer module
211‧‧‧pressure pump
212‧‧‧Curve belt
213‧‧‧Pneumatic tube
22‧‧‧Base Radio Frequency Identification Module
23‧‧‧Base Near Field Communication Module
24‧‧‧Base Microcontroller
25‧‧‧Place space
26‧‧‧Air pressure hole
27‧‧‧Chain storage trough
28‧‧‧ accommodating cover
29‧‧‧Transport interface
30‧‧‧Handheld tester
301‧‧‧Tester control board
31‧‧‧ display
32‧‧‧Biosensor Module
33‧‧‧Operator interface
34‧‧‧Tester Radio Frequency Identification Module
35‧‧‧Tester near field communication module
36‧‧‧Tester Microcontroller
37‧‧‧ Thermometer module
38‧‧‧ test strip slot
40‧‧‧ Biological test strips
50‧‧‧Power input hole
60‧‧‧First magnet
61‧‧‧second magnet
70‧‧‧Users
71‧‧‧ Arm
圖1,係習知血壓計結構圖。
圖2,係本創作立體結構圖。
圖3,係本創作手持測試儀與底座拆解示意圖。
圖4,係本創作元件連結方塊圖。
圖5,係本創作使用示意圖。
Figure 1 is a structural diagram of a conventional sphygmomanometer.
Figure 2 is a three-dimensional structure diagram of the present creation.
Figure 3 is a schematic diagram of the disassembly of the handheld tester and the base.
Figure 4 is a block diagram of the authoring component.
Figure 5 is a schematic diagram of the use of this creation.
為使貴委員對本創作之特徵、目的及功效,有更加深入之瞭解與認同,茲列舉較佳實施例並配合圖式說明如后:
請參閱「圖2」、「圖3」與「圖4」所示,本創作為一種分離式生理量測裝置,其供配合一身份手環10(如「圖5」所示)使用,該身份手環10內設有一無線射頻辨識標籤11,該分離式生理量測裝置包含一底座20與一手持測試儀30。
該底座20包含一底座控制基板201與一置放空間25,該底座控制基板201具有一血壓計模組21、辨識該無線射頻辨識標籤11的一底座無線射頻辨識模組22、一底座近場通訊模組23與連結該血壓計模組21、該底座無線射頻辨識模組22與該底座近場通訊模組23的一底座微控制器24,其中該血壓計模組21具有一壓力泵211與一壓脈帶212,而該底座20設有一氣壓孔26,該氣壓孔26與該壓力泵211連通,而該壓脈帶212具有一氣壓管213,該氣壓管213與該壓脈帶212連通,並該氣壓管213插設於該氣壓孔26上,且該底座20設有一脈帶收納槽27,該脈帶收納槽27供置放該壓脈帶212,又該底座20設有一收納蓋板28,該收納蓋板28遮蓋該脈帶收納槽27。
而該手持測試儀30包含一測試儀控制基板301、一顯示器31與一操作介面33,該測試儀控制基板301具有供量測生理數據的一生物感測器模組32、辨識該無線射頻辨識標籤11的一測試儀無線射頻辨識模組34、一測試儀近場通訊模組35與一測試儀微控制器36。又該測試儀微控制器36連結該顯示器31、該生物感測器模組32、該操作介面33、該測試儀無線射頻辨識模組34、該測試儀近場通訊模組35,且該手持測試儀30可以具有與該測試儀微控制器36連結的一溫度計模組37,該溫度計模組37可以為額溫槍,可用以量測人體的溫度,亦可具有與該生物感測器模組32連結的一試片插槽38,該試片插槽38配合插入一生物試片40使用,該生物試片40可供滴入一檢體(圖未示)而取得生理數據,如該檢體為血液,則該生理數據可為尿酸、血糖、膽固醇、血紅素與血氧的任一種。
其中,該手持測試儀30可以單獨使用,或是放置於該底座20的置放空間25內使用,且當該手持測試儀30放置於該底座20的置放空間25內使用時,為讓該底座近場通訊模組23與該測試儀近場通訊模組35連結,其為一非接觸式的連接,因此可以交換該底座20與該手持測試儀30的量測數據。
又該底座20可以設有一傳輸介面29,該傳輸介面29連結該底座微控制器24,該傳輸介面29可以為一USB介面,以供連接外部資訊設備,如電腦、智慧型手機、SMART電視等等。而該底座20亦可已設有一電源輸入孔50,該電源輸入孔50連結該底座微控制器24,以作為外部電壓輸入用。此外,該底座20於該置放空間25設置一第一磁鐵60,而該手持測試儀30設置對應吸附該第一磁鐵60的第二磁鐵61,以藉由該第一磁鐵60與該第二磁鐵61彼此間的吸附力,輔助固定該手持測試儀30於該底座20的容置空間內。
請再配合「圖5」所示,本創作該底座20上的該壓脈帶212可束緊使用者70的手臂71,並透過該壓力泵211的充氣與放氣,該血壓計模組21即可量取使用者的手臂71。換句話說,本創作的手持測試儀30結合於該底座20之後,即可用於量測血壓,而單獨使用手持測試儀30時,只要插入該生物試片40,即可依據該生物試片40的種類而進行量測,包含但不限於血糖、膽固醇、尿酸、血紅素與血氧等生理量測數據。且上述的生理量測數據可由該顯示器31顯示出來。
如上所述,本創作的該底座無線射頻辨識模組與該測試儀無線射頻辨識模組為透過非接觸式的方式連結而交換量測數據,因此可增加使用壽命而增加可靠度,且該底座無線射頻辨識模組與該測試儀無線射頻辨識模組皆可直接辨識身份手環以取得歷史量測資料,不需使用者額外輸入個人資料,可增加使用上的便利性,據此形成一可靠度高,且可量測多種生理數據的生理量測裝置,可滿足使用上的需求。
綜上所述僅為本創作的較佳實施例而已,並非用來限定本創作之實施範圍,即凡依本創作申請專利範圍之內容所為的等效變化與修飾,皆應為本創作之技術範疇。
In order to enable your members to have a deeper understanding and recognition of the features, purposes and effects of this creation, the preferred embodiment is illustrated with the following description:
Please refer to Figure 2, Figure 3 and Figure 4, which is a separate physiological measuring device for use with an identity bracelet 10 (as shown in Figure 5). A wireless radio frequency identification tag 11 is disposed in the identity bracelet 10, and the separate physiological measurement device includes a base 20 and a handheld tester 30.
The base 20 includes a base control substrate 201 and a placement space 25. The base control substrate 201 has a sphygmomanometer module 21, a base radio frequency identification module 22 for identifying the radio frequency identification tag 11, and a base near field. The communication module 23 and a base microcontroller 24 connecting the sphygmomanometer module 21, the base radio frequency identification module 22 and the base near field communication module 23, wherein the sphygmomanometer module 21 has a pressure pump 211 And a pressure pulse belt 212, wherein the base 20 is provided with a gas pressure hole 26 communicating with the pressure pump 211, and the pressure pulse belt 212 has a gas pressure tube 213, and the pressure tube 212 and the pressure pulse belt 212 The base tube 20 is provided with a venous storage groove 27 for arranging the cuff tape 212, and the base 20 is provided with a housing. The cover plate 28 covers the rim storage groove 27.
The handheld tester 30 includes a tester control substrate 301, a display 31 and an operation interface 33. The tester control substrate 301 has a biosensor module 32 for measuring physiological data, and the radio frequency identification is recognized. A tester radio frequency identification module 34 of the tag 11, a tester near field communication module 35 and a tester microcontroller 36. The tester microcontroller 36 is coupled to the display 31, the biosensor module 32, the operation interface 33, the tester radio frequency identification module 34, the tester near field communication module 35, and the handheld The tester 30 can have a thermometer module 37 coupled to the tester microcontroller 36. The thermometer module 37 can be a temperature gun that can be used to measure the temperature of the human body, and can also have a mold with the biosensor. A test strip slot 38 is connected to the group 32. The test strip slot 38 is inserted into a biological test strip 40. The biological test strip 40 can be dropped into a sample (not shown) to obtain physiological data. When the sample is blood, the physiological data may be any of uric acid, blood sugar, cholesterol, heme, and blood oxygen.
The handheld tester 30 can be used alone or placed in the placement space 25 of the base 20, and when the handheld tester 30 is placed in the placement space 25 of the base 20, The base near field communication module 23 is coupled to the tester near field communication module 35, which is a non-contact connection, so that the measurement data of the base 20 and the handheld tester 30 can be exchanged.
The base 20 can be provided with a transmission interface 29, and the transmission interface 29 is coupled to the base microcontroller 24. The transmission interface 29 can be a USB interface for connecting external information devices, such as a computer, a smart phone, a SMART TV, etc. Wait. The base 20 may also be provided with a power input hole 50 that is coupled to the base microcontroller 24 for external voltage input. In addition, the base 20 is provided with a first magnet 60 in the placement space 25, and the handheld tester 30 is provided with a second magnet 61 corresponding to the first magnet 60 for the first magnet 60 and the second The adsorption force of the magnets 61 to each other assists in fixing the handheld tester 30 in the accommodating space of the base 20.
As shown in FIG. 5, the cuff 212 on the base 20 can tighten the arm 71 of the user 70 and inflate and deflate through the pressure pump 211. The sphygmomanometer module 21 The user's arm 71 can be measured. In other words, the handheld tester 30 of the present invention can be used for measuring blood pressure after being coupled to the base 20, and when the handheld tester 30 is used alone, the biological test strip 40 can be inserted according to the biological test strip 40. Measurements include, but are not limited to, physiological measurements such as blood glucose, cholesterol, uric acid, heme, and blood oxygen. And the above physiological measurement data can be displayed by the display 31.
As described above, the base radio frequency identification module of the present invention and the radio frequency identification module of the tester exchange measurement data through a non-contact manner, thereby increasing the service life and increasing the reliability, and the base Both the radio frequency identification module and the radio frequency identification module of the tester can directly identify the identity bracelet to obtain historical measurement data, and the user is not required to input additional personal data, thereby increasing the convenience of use, thereby forming a reliable The physiological measuring device with high degree and measuring a variety of physiological data can meet the needs of use.
The above is only the preferred embodiment of the present invention, and is not intended to limit the scope of implementation of the present invention, that is, the equivalent changes and modifications of the content of the patent application scope of the present invention should be the technology of the creation. category.
20‧‧‧底座 20‧‧‧Base
201‧‧‧底座控制基板 201‧‧‧Base control board
211‧‧‧壓力泵 211‧‧‧pressure pump
212‧‧‧壓脈帶 212‧‧‧Curve belt
213‧‧‧氣壓管 213‧‧‧Pneumatic tube
25‧‧‧置放空間 25‧‧‧Place space
26‧‧‧氣壓孔 26‧‧‧Air pressure hole
27‧‧‧脈帶收納槽 27‧‧‧Chain storage trough
28‧‧‧收納蓋板 28‧‧‧ accommodating cover
29‧‧‧傳輸介面 29‧‧‧Transport interface
30‧‧‧手持測試儀 30‧‧‧Handheld tester
301‧‧‧測試儀控制基板 301‧‧‧Tester control board
31‧‧‧顯示器 31‧‧‧ display
33‧‧‧操作介面 33‧‧‧Operator interface
37‧‧‧溫度計模組 37‧‧‧ Thermometer module
38‧‧‧試片插槽 38‧‧‧ test strip slot
40‧‧‧生物試片 40‧‧‧ Biological test strips
50‧‧‧電源輸入孔 50‧‧‧Power input hole
60‧‧‧第一磁鐵 60‧‧‧First magnet
61‧‧‧第二磁鐵 61‧‧‧second magnet
Claims (9)
一底座,該底座包含一底座控制基板與一置放空間,該底座控制基板具有一血壓計模組、辨識該無線射頻辨識標籤的一底座無線射頻辨識模組、一底座近場通訊模組與連結該血壓計模組、該底座無線射頻辨識模組與該底座近場通訊模組的一底座微控制器;以及
一手持測試儀,該手持測試儀包含一測試儀控制基板、一顯示器與一操作介面,該測試儀控制基板具有供量測生理數據的一生物感測器模組、辨識該無線射頻辨識標籤的一測試儀無線射頻辨識模組、一測試儀近場通訊模組與一測試儀微控制器,其中該測試儀微控制器連結該顯示器、該生物感測器模組、該操作介面、該測試儀無線射頻辨識模組與該測試儀近場通訊模組,該手持測試儀放置於該底座的置放空間內且讓該底座近場通訊模組與該測試儀近場通訊模組連結以交換該底座與該手持測試儀的量測數據。A separate physiological measuring device is provided for use with an identity bracelet, wherein the identity bracelet is provided with a radio frequency identification tag, and the separate physiological measuring device comprises:
a base, the base comprises a base control substrate and a placement space, the base control substrate has a sphygmomanometer module, a base radio frequency identification module for identifying the radio frequency identification tag, and a base near field communication module and a base microcontroller connecting the sphygmomanometer module, the base radio frequency identification module and the base near field communication module; and a handheld tester comprising a tester control substrate, a display and a An operating interface, the tester control substrate has a biosensor module for measuring physiological data, a tester radio frequency identification module for identifying the radio frequency identification tag, a tester near field communication module and a test a microcontroller, wherein the tester microcontroller is coupled to the display, the biosensor module, the operation interface, the tester radio frequency identification module, and the tester near field communication module, the handheld tester Positioned in the placement space of the base and connect the base near field communication module to the tester near field communication module to exchange the base and the handheld tester Test data.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| TW102209686U TWM463572U (en) | 2013-05-24 | 2013-05-24 | Separation type physiological measurement device |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| TW102209686U TWM463572U (en) | 2013-05-24 | 2013-05-24 | Separation type physiological measurement device |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| TWM463572U true TWM463572U (en) | 2013-10-21 |
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| TW102209686U TWM463572U (en) | 2013-05-24 | 2013-05-24 | Separation type physiological measurement device |
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| Country | Link |
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| TW (1) | TWM463572U (en) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| TWI595859B (en) * | 2016-01-08 | 2017-08-21 | 豪展醫療科技股份有限公司 | Physiological status monitoring device |
-
2013
- 2013-05-24 TW TW102209686U patent/TWM463572U/en not_active IP Right Cessation
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| TWI595859B (en) * | 2016-01-08 | 2017-08-21 | 豪展醫療科技股份有限公司 | Physiological status monitoring device |
| US11160462B2 (en) | 2016-01-08 | 2021-11-02 | Avita Corporation | Physiological status monitoring device |
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