CN203662727U - Measuring device - Google Patents

Measuring device Download PDF

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Publication number
CN203662727U
CN203662727U CN201320538887.0U CN201320538887U CN203662727U CN 203662727 U CN203662727 U CN 203662727U CN 201320538887 U CN201320538887 U CN 201320538887U CN 203662727 U CN203662727 U CN 203662727U
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CN
China
Prior art keywords
circuit board
measuring device
sub
housing
flexible
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Expired - Lifetime
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CN201320538887.0U
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Chinese (zh)
Inventor
吴卫
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RAIING MEDICAL Co
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RAIING MEDICAL Co
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Priority to CN201320538887.0U priority Critical patent/CN203662727U/en
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  • Measuring Pulse, Heart Rate, Blood Pressure Or Blood Flow (AREA)
  • Measuring And Recording Apparatus For Diagnosis (AREA)

Abstract

The utility model discloses a measuring device. Elastic deformation of the measuring device is available. The measuring device comprises a circuit board (1) and a shell (2), wherein the circuit board (1) is arranged in the shell (2) and is a flexible or rigid circuit board, and the shell (2) is flexible. The measuring device at least can be adapted to the curve of a human body and be closely attached to the human body, and thus the detection accuracy is improved.

Description

A kind of measuring device
Technical field
This utility model relates to a kind of medical equipment field device, relates in particular to a kind of measuring device.
Background technology
In the diagnosis and treatment of disease, measuring device is extremely important for testing result, and can measuring device closely be fitted in detected part, is a very crucial factor that affects testing result.But existing measuring device is non deformable mostly, and between human body, fitness not closely, has caused the error of measurement result thus, has affected the diagnosis of doctor to disease, has also affected the treatment of disease simultaneously.
Therefore, be desirable to provide a kind of can fitting tightly with human body, can improve the measuring device of accuracy of detection.
Summary of the invention
For this reason, the utility model proposes a kind of new measurement of at least a portion that can address the above problem.
According to an aspect of the present utility model, a kind of measuring device is provided, it is characterized in that: described measuring device is elastically deformable,
Described measuring device comprises circuit board (1) and housing (2), and described circuit board (1) is arranged in described housing (2);
Described circuit board (1) is a flexibility/or rigid circuit board, and described housing (2) is flexible.
Alternatively, according to an embodiment of the present utility model, it is characterized in that: described circuit board is made up of polylith rigidity sub-circuit board, described housing is joined together to form collapsibly by multiple sub-housings, each described sub-circuit board is separately positioned in a described sub-housing, and described sub-housing is rigidity.
Alternatively, according to an embodiment of the present utility model, it is characterized in that: described circuit board is made up of the flexible sub-circuit board of polylith, described housing is joined together to form collapsibly by multiple sub-housings, each described sub-circuit board is separately positioned in a described sub-housing, and described sub-housing is flexible.
Alternatively, according to an embodiment of the present utility model, it is characterized in that: described circuit board is joined together to form collapsibly by polylith rigidity sub-circuit board, described housing is flexible.
Alternatively, according to an embodiment of the present utility model, it is characterized in that: described measuring device further comprises the inductive probe being arranged on described circuit board, described inductive probe is used for sensing and receives the parameter of measurand.
Alternatively, according to an embodiment of the present utility model, it is characterized in that: described measuring device further comprises the sender unit being connected with described inductive probe, described sender unit receives the parameter of the described measurand that described inductive probe records, and the parameter of described measurand is emitted to signal receiving device.
Alternatively, according to an embodiment of the present utility model, it is characterized in that: described measuring device further comprises the battery being arranged on described circuit board, described battery is used to described circuit board power supply.
Alternatively, according to an embodiment of the present utility model, it is characterized in that: the color of described housing is for dark, in order to avoid light to affect the certainty of measurement of described measuring device.
The measuring device that this utility model provides at least can be complied with body curve and fit tightly with human body making, thereby improves accuracy of detection.
Brief description of the drawings
By reading below detailed description of the preferred embodiment, various other advantage and benefits will become cheer and bright for those of ordinary skill in the art.Accompanying drawing is only for the object of preferred implementation is shown, and do not think restriction of the present utility model.And in whole accompanying drawing, represent identical parts by identical reference marks.Wherein in the accompanying drawings, the multiple identical parts of alphabetic flag instruction after reference number, in the time of these parts of general reference, will omit its last alphabetic flag.In the accompanying drawings:
Fig. 1 shows the measuring device structural representation according to a kind of preferred implementation of the present utility model;
Fig. 2 shows according to the structural representation of the housing of a kind of preferred implementation of the present utility model;
Fig. 3 shows according to the structural representation of the circuit board of a kind of preferred implementation of the present utility model;
Fig. 4 shows according to the structural representation in the circuit board front of a kind of preferred implementation of the present utility model; And
Fig. 5 shows according to the structural representation of the back of circuit board of a kind of preferred implementation of the present utility model.
Wherein: circuit board 1, sub-circuit board 1-1, sub-circuit board 1-2, sub-circuit board 1-3, housing 2, sub-housing 2-1, sub-housing 2-2, sub-housing 2-3, inductive probe 3, battery 4, sender unit 5.
Detailed description of the invention
This utility model provides many applicable creative concepts, and this creativeness concept can be reflected in a large number of in concrete context.The specific embodiment of describing in following embodiment of the present utility model is only as the exemplary illustration of detailed description of the invention of the present utility model, and do not form the restriction to this utility model scope.
Below in conjunction with accompanying drawing and concrete embodiment, the utility model will be further described.
As shown in Figure 1, a kind of measuring device, is characterized in that: described measuring device is deformable.
Described measuring device comprises circuit board 1 and housing 2, and described circuit board 1 is arranged in described housing 2.
Described measuring device is that the described measuring device of deformable finger can be out of shape accordingly according to body curve.
Described measuring device includes but not limited to measure the device of body temperature, heart rate, blood pressure, pulse.Wherein, the device of take temperature comprises the device of measuring axillaty temperature, also comprises the device of measuring forehead temperature.
In the diagnosis and treatment of disease, measuring device is extremely important for testing result, and can measuring device closely be fitted in detected part, is a very crucial factor that affects testing result.But existing measuring device is non deformable mostly, and between human body, fitness not closely, has caused the error of measurement result thus, has affected the diagnosis of doctor to disease, has also affected the treatment of disease simultaneously.
In order to address this problem, the measuring device that this utility model provides is deformable, at least can comply with body curve and fit tightly with human body making, thereby improve accuracy of detection.
Embodiment 1
Described measuring device comprises circuit board 1 and housing 2, and described circuit board 1 is arranged in described housing 2.
Described circuit board 1 is a flexibility/or rigid circuit board, and described housing 2 is flexible.In the present embodiment, described circuit board 1 is a circuit board, and the described housing 2 of described measuring device is flexible.In order to adapt to the needs of body curve, the present embodiment can be divided into two sub-embodiment, and its difference is only: in one of them sub-embodiment, described circuit board 1 is a flexible PCB; In another sub-embodiment, described circuit board 1 is a rigid circuit board.
Rigid circuit board refers to the circuit board that can not deform under external force impact.
Flexible PCB is that the one of making as base material taking polyimides or mylar has height reliability, excellent flexible printed circuit.Be called for short soft board or FPC, have that distribution density is high, lightweight, the feature of thin thickness.
Described housing 2 can be out of shape and the material of skin contactable makes by silica gel, rubber and part organic/inorganic composite material etc.By contrast, silica gel, Heat stability is good, stable chemical nature high with its absorption property, have the preferred material that becomes body described in this utility model compared with good performances such as high mechanical strengths.
As shown in Figure 4, described measuring device further comprises the inductive probe 3 being arranged on described circuit board 1, and described inductive probe 3 is for sensing and receive the parameter of measurand.
Device or device that described inductive probe 3 includes but not limited to experience specified measuring range and converts available signal according to certain rule to.Described inductive probe comprises what prior art provided, also comprises what WeiLai Technology provided.
Described inductive probe 3 can be stored in the parameter of the measurand sensing the storage device being arranged on described circuit board, after completing, detection use the mode of the wire communications such as USB that data are spread out of, also can be by infrared, bluetooth, near field communication (NFC) (Near Field Communication, be called for short NFC) etc. mode the parameter of described measurand is transferred to signal receiving device, thereby realize existing real-time communication, so that the health of the real-time monitored patient of medical worker.
For the parameter of described measurand that described inductive probe 3 is recorded realizes real-time communication, preferably, as shown in Figure 4, described measuring device further comprises the sender unit 5 being connected with described inductive probe 3, described sender unit 5 is for the parameter of the described measurand that receives described inductive probe 3 and record, and the parameter of described measurand is emitted to signal receiving device.
As shown in Figure 5, described measuring device further comprises the battery 4 being arranged on described circuit board 1, and described battery 4 is used to described circuit board 1 to power.Described battery 4 is button cell.
Button cell (button cell) also claim button cell, refers to that overall dimensions resembles the battery of a little button, and in general diameter is larger, thinner thickness (with respect to prismatic battery as batteries such as No. 5 AA on market).Button cell is from profile, battery to be divided, and equal corresponding cell classification has prismatic battery, rectangular cell, Special-shaped battery.
The color of described housing can be dark, in order to avoid light to affect the certainty of measurement of described measuring device.Alternatively, the color of described housing is selected black or brown.
Embodiment 2
Difference from Example 1 is, described circuit board 1 by polylith rigidity sub-circuit board 1-1,1-2 ... 1-n composition, described housing 2 by multiple sub-housing 2-1,2-2 ... 2-n is joined together to form collapsibly, each described sub-circuit board 1-1,1-2 ... 1-n be arranged on described sub-housing 2-1, a 2-2 ... in 2-n, described sub-housing 2-1,2-2 ... 2-n is rigidity.Wherein, described n >=2.
Preferably, as shown in Figure 2, described circuit board 1 is made up of three rigidity sub-circuit boards, and described housing 2 is joined together to form collapsibly by three sub-housing 2-1,2-2,2-3, and every described rigidity sub-circuit board is separately positioned in a sub-housing 2-1,2-2,2-3.Wherein, described sub-housing 2-1,2-2,2-3 are rigidity.
Embodiment 3
Difference from Example 2 is, described circuit board 1 by the flexible sub-circuit board 1-1 of polylith, 1-2 ... 1-n composition, described housing 2 by multiple sub-housing 2-1,2-2 ... 2-n is joined together to form collapsibly, each described sub-circuit board 1-1,1-2 ... 1-n be arranged on described sub-housing 2-1, a 2-2 ... in 2-n, described sub-housing 2-1,2-2 ... 2-n is flexible.
In the present embodiment, preferably, n=6, that is: six flexible sub-circuit boards are arranged in six sub-housings of flexibility, thereby the measuring device that this utility model provides can be applied to medical detection field more widely, as need to be monitored on the concurrency diabetics health of body temperature, heart rate, blood pressure simultaneously.Preferably, in the present embodiment, can inductive probe 3 be set respectively on different sub-circuit boards as required, to realize the synchronous detecting of multiple tested points.
Embodiment 4
Be with embodiment 1,2 and 3 differences, described circuit board 1 by polylith rigidity sub-circuit board 1-1,1-2 ... 1-n is joined together to form collapsibly, and described housing 2 is flexible.Be in the present embodiment, polylith rigidity sub-circuit board is arranged in a flexible housing 2.
Preferably, as shown in Figure 3, described circuit board 1 is joined together to form collapsibly by three rigidity sub-circuit board 1-1,1-2,1-3.Described rigidity sub-circuit board 1-1,1-2,1-3 are arranged in a housing 2, and described housing 2 is flexible.
It should be noted that, components and parts and the materials such as the mentioned circuit board 1 of this utility model, sub-circuit board 1-1, sub-circuit board 1-2, sub-circuit board 1-3, housing 2, sub-housing 2-1, sub-housing 2-2, sub-housing 2-3, inductive probe 3, battery 4, sender unit 5, comprise what prior art provided, also comprise what WeiLai Technology provided.
It should be noted, above-described embodiment describes this utility model instead of this utility model is limited, and those skilled in the art can design alternative embodiment in the case of not departing from the scope of claims.In the claims, any reference marks between bracket should be configured to limitations on claims.Word " comprises " not to be got rid of existence and is not listed as element or step in the claims.Being positioned at word " " before element or " one " does not get rid of and has multiple such elements.The use of word first, second and C grade does not represent any order.Can be title by these word explanations.

Claims (8)

1. a measuring device, is characterized in that: described measuring device is elastically deformable,
Described measuring device comprises circuit board (1) and housing (2), and described circuit board (1) is arranged in described housing (2);
Described circuit board (1) is a flexibility/or rigid circuit board, and described housing (2) is flexible.
2. measuring device according to claim 1, it is characterized in that: described circuit board (1) by polylith rigidity sub-circuit board (1-1,1-2 ... 1-n) composition, described housing (2) be by multiple sub-housings (2-1,2-2 ... 2-n) be joined together to form collapsibly, each described sub-circuit board (1-1,1-2 ... 1-n) be separately positioned on a described sub-housing (2-1,2-2 ... 2-n), described sub-housing (2-1,2-2 ... 2-n) be rigidity.
3. measuring device according to claim 1, it is characterized in that: described circuit board (1) by the flexible sub-circuit board of polylith (1-1,1-2 ... 1-n) composition, described housing (2) be by multiple sub-housings (2-1,2-2 ... 2-n) be joined together to form collapsibly, each described sub-circuit board (1-1,1-2 ... 1-n) be separately positioned on a described sub-housing (2-1,2-2 ... 2-n), described sub-housing (2-1,2-2 ... 2-n) be flexible.
4. measuring device according to claim 1, is characterized in that: described circuit board (1) by polylith rigidity sub-circuit board (1-1,1-2 ... 1-n) be joined together to form collapsibly, described housing (2) is flexible.
5. measuring device according to claim 1, is characterized in that: described measuring device further comprises the inductive probe (3) being arranged on described circuit board (1), and described inductive probe (3) is for sensing and receive the parameter of measurand.
6. measuring device according to claim 5, it is characterized in that: described measuring device further comprises the sender unit (5) being connected with described inductive probe (3), described sender unit (5) is for the parameter of the described measurand that receives described inductive probe (3) and record, and the parameter of described measurand is emitted to signal receiving device.
7. measuring device according to claim 1, is characterized in that: described measuring device further comprises the battery (4) being arranged on described circuit board (1), and described battery (4) is used to described circuit board (1) power supply.
8. according to the measuring device described in any one in claim 1~7, it is characterized in that: the color of described housing is for dark, in order to avoid light to affect the certainty of measurement of described measuring device.
CN201320538887.0U 2013-08-30 2013-08-30 Measuring device Expired - Lifetime CN203662727U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201320538887.0U CN203662727U (en) 2013-08-30 2013-08-30 Measuring device

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Application Number Priority Date Filing Date Title
CN201320538887.0U CN203662727U (en) 2013-08-30 2013-08-30 Measuring device

Publications (1)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105361865A (en) * 2014-08-18 2016-03-02 三星电子株式会社 Wearable biometric information measurement device

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105361865A (en) * 2014-08-18 2016-03-02 三星电子株式会社 Wearable biometric information measurement device
US10575741B2 (en) 2014-08-18 2020-03-03 Samsung Electronics Co., Ltd Wearable biometric information measurement device
CN105361865B (en) * 2014-08-18 2021-06-08 三星电子株式会社 Wearable biological characteristic information measuring device

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Legal Events

Date Code Title Description
C14 Grant of patent or utility model
GR01 Patent grant
PE01 Entry into force of the registration of the contract for pledge of patent right

Denomination of utility model: Measuring device and shaft body detection equipment

Effective date of registration: 20160926

Granted publication date: 20140625

Pledgee: Silicon Valley Bank Co.,Ltd.

Pledgor: RAIING MEDICAL Co.

Registration number: 2016310000039

PLDC Enforcement, change and cancellation of contracts on pledge of patent right or utility model
PC01 Cancellation of the registration of the contract for pledge of patent right
PC01 Cancellation of the registration of the contract for pledge of patent right

Date of cancellation: 20201127

Granted publication date: 20140625

Pledgee: Silicon Valley Bank Co.,Ltd.

Pledgor: RAIING MEDICAL Co.

Registration number: 2016310000039

CP02 Change in the address of a patent holder
CP02 Change in the address of a patent holder

Address after: 102200 Area C, Floor 2, Building 10, No. 738, Changliu Road, Machikou Town, Changping District, Beijing

Patentee after: RAIING MEDICAL Co.

Address before: Room 408, Building of Beijing Xinchuang Yuxuan Technology Incubator Co., Ltd., No. 11, Huatong Road, Science Park, Changping District, Beijing 102200

Patentee before: RAIING MEDICAL Co.

CX01 Expiry of patent term
CX01 Expiry of patent term

Granted publication date: 20140625