CN210130836U - Shared body fat measuring scale - Google Patents

Shared body fat measuring scale Download PDF

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Publication number
CN210130836U
CN210130836U CN201821742992.5U CN201821742992U CN210130836U CN 210130836 U CN210130836 U CN 210130836U CN 201821742992 U CN201821742992 U CN 201821742992U CN 210130836 U CN210130836 U CN 210130836U
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electrode
measuring
base
chest
fat
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CN201821742992.5U
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袁鹏
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Zhengzhou Pinchuan Technology Co Ltd
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Zhengzhou Pinchuan Technology Co Ltd
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Abstract

The utility model discloses a sharing body fat measures balance relates to a body fat is called, including the base that is used for placing the foot, the visceral fat measuring device who sets up the pressure sensor who is used for measuring weight in the base and be used for measuring human abdominal cavity and chest cavity fat, visceral fat measuring device is including gluing formula abdominal chest area and setting up the electrode array in gluing formula abdominal chest area, electrode array is including the first electrode that is used for measuring abdominal cavity portion and chest portion one side and the second electrode that is used for measuring abdominal cavity portion and chest portion opposite side, the base is connected with the display screen through the bracing piece. The utility model discloses the electrode that will glue the interior setting of formula abdomen chest area is fixed on the truck, can effectively measure human viscera fat content to can make preliminary judgement to the health status of health in the daily, avoid often coming and going the hospital and measure, saved a large amount of manpowers and financial resources.

Description

Shared body fat measuring scale
Technical Field
The utility model relates to a body fat is called, in particular to sharing body fat measures balance.
Background
With the continuous development of economy in China, people pay more and more attention to body health and plasticity, so that the body fat rate is more and more concerned by people.
Obesity can induce various acute and chronic diseases, affect life quality and shorten life span. Among them, visceral fat obesity is a person who has a higher possibility of suffering from diabetes, hypertension, arteriosclerosis and ischemic cardiovascular and cerebrovascular diseases than subcutaneous fat obesity and a person who has normal body weight. Therefore, the method has great significance for detecting visceral fat.
At present, the shared body fat scale can only measure the whole body fat of a human body, the body fat rate of the human body is obtained by measuring feet or hands or simultaneously measuring the feet and the hands and analyzing BIA according to the height, the weight and the sex of the human body, however, the body fat rate obtained by the measurement is the whole body fat of the human body and cannot be obtained for visceral fat which is most important for the health of the human body.
At present, the measurement of the visceral fat of a human body is mainly obtained through computed tomography, nuclear magnetic resonance imaging and ultrasonic instruments, but due to the fact that equipment is large in size, inconvenient to operate and high in price, the visceral fat is not suitable for daily use, people need to go to a hospital to register, queue and the like for testing in order to obtain the visceral fat, and due to the fact that the number of examination people in the hospital is large, a large amount of manpower, financial resources and the like are required to be consumed for obtaining the visceral fat content, and the measurement is extremely inconvenient.
Therefore, there is a need for improvement of the prior art to solve the above technical problems.
SUMMERY OF THE UTILITY MODEL
In view of this, an object of the present invention is to provide a shared body fat measuring scale, which can measure the visceral fat content of a human body, thereby preliminarily determining the health condition of the human body. The method is realized by the following technical scheme:
the utility model discloses a sharing body fat measures balance, including the base, set up the visceral fat measuring device who is used for measuring the pressure sensor of weight and is used for measuring human abdominal cavity and chest cavity fat in the base, visceral fat measuring device is including gluing formula abdomen chest area and setting up the electrode array in gluing formula abdomen chest area, electrode array is including the first electrode that is used for measuring abdomen portion and chest portion one side and the second electrode that is used for measuring abdomen portion and chest portion opposite side, the base is connected with the display screen through the bracing piece.
Further, still including being used for measuring the whole fat measuring device of human whole fat, whole fat measuring device includes handheld portion, sets up the third electrode in handheld portion both sides and sets up the fourth electrode mechanism in the base respectively, and fourth electrode mechanism is including setting up the fourth electrode at the base and being equipped with the adhesive formula instep area of fifth electrode.
Furthermore, the base is also provided with a containing box which is used for placing the sticky type instep strap and can be drawn, the containing box is provided with idler wheels, and the base is internally provided with a sliding chute matched with the idler wheels.
Further, still including the height measuring mechanism who is used for measuring the height, height measuring mechanism includes ultrasonic ranging appearance.
Furthermore, a single chip microcomputer is arranged in the supporting rod and electrically connected with a pressure sensor, an analog/digital converter, a display driver, a memory, an ultrasonic distance meter, a data input device and a power module; the display driver is connected with the display; the analog/digital converter is connected with the first electrode, the second electrode, the third electrode, the fourth electrode and the fifth electrode.
The utility model has the advantages that: the utility model fixes the electrode arranged in the adhesive abdominal-chest belt on the trunk, which can effectively measure the fat content of the internal organs of the human body, thereby preliminarily judging the health condition of the human body in daily life, avoiding frequently going to and fro to measure in hospitals, and saving a large amount of manpower and financial resources; meanwhile, compared with the prior art that the upper limb, the lower limb or the combination of the upper limb and the lower limb are measured, the body health condition can be better judged by adopting the fat content of the abdomen and the chest which is measured by the adhesive type abdomen-chest belt; other advantageous effects of the present invention will be further described with reference to the following embodiments.
Drawings
The invention will be further described with reference to the following figures and examples:
fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic structural view of the adhesive type abdominal and thoracic band of the present invention;
FIG. 3 is a schematic structural view of the adhesive type instep belt of the present invention;
FIG. 4 is a schematic block diagram of the present invention;
fig. 5 is a circuit connection diagram of the present invention.
In the figure: 1. a base; 2. a support bar; 3. a display screen; 4. a fourth electrode; 5. adhesive type instep belt; 6. a hanging rod; 7. a sticky abdominal and chest belt; 8. a hand-held portion; 9. a third electrode; 10. a telescopic rod; 11. a strut; 12. an ultrasonic range finder; 51. a fifth electrode; 71. a first electrode; 72. second electrode
Detailed Description
As shown in the figure: the shared body fat measuring scale in the embodiment comprises a base 1, a pressure sensor arranged in the base 1 and used for measuring weight and a visceral fat measuring device used for measuring fat in abdominal cavities and thoracic cavities of human bodies, wherein a person stands on the base 1, the visceral fat measuring device comprises a sticky abdominal-chest belt 7 and an electrode array arranged in the sticky abdominal-chest belt 7, the electrode array comprises a first electrode 71 used for measuring one side of the abdominal cavity and the chest and a second electrode 72 used for measuring the other side of the abdominal cavity and the chest, the base 1 is connected with a display screen 3 through a support rod 2, a hanging rod 6 used for placing the sticky abdominal-chest belt 7 is arranged on the support rod 2, and two ends of the hanging rod 6 are connected with the support rod 2; when the visceral fat content needs to be tested, the adhesive type abdominal and thoracic belt 7 is bound on the trunk of a human body, the first electrode 71 is arranged on the same side of the abdominal cavity part and the thoracic cavity part of the human body, the second electrode 72 is arranged on the side opposite to the first electrode, and the fixing is carried out through the adhesive part of the adhesive type abdominal and thoracic belt 7; the first electrode 71 and the second electrode 72 are both made of electrode plates made of stainless steel, titanium alloy and the like, and the adhesive abdominal-chest belt 7 is in contact with the skin of the trunk as much as possible, so that the accuracy of measuring the visceral fat content is guaranteed.
In the embodiment, the device also comprises an integral fat measuring device for measuring the integral fat of the human body, wherein the integral fat measuring device comprises a handheld part 8, third electrodes 9 respectively arranged at two sides of the handheld part 8 and a fourth electrode mechanism arranged in the base 1, the fourth electrode mechanism comprises a fourth electrode 4 arranged on the base 1 and an adhesive type instep belt 5 provided with a fifth electrode 51, and the fifth electrode and the fourth electrode are oppositely arranged; the handheld part 8 can be arranged on two sides of the display screen 3, the handheld part 8 comprises a left hand part and a right hand part, the left hand part and the right hand part are respectively provided with a third electrode 9, and the third electrode 9 comprises an electrode slice for placing a thumb and an electrode slice for placing an index finger; the fourth electrode 4 is arranged in the base, and the adhesive type instep belt 5 is also divided into a left foot and a right foot; adopt the electrode that sets up in the electrode that glues formula instep 5 and the setting of base 1, compare with prior art's electrode setting in the base, partly electrode is in the base, and the instep department is measured to partly electrode setting outside the base, combines with the electrode of handheld portion, can avoid the influence of human pressure to the electrode to the holistic fat volume of more accurate measurement human body.
In this embodiment, still be equipped with the drawable box that holds that is used for placing sticky formula instep area 5 on the base 1, hold and be equipped with the gyro wheel on the box, be equipped with in the base with gyro wheel assorted spout, hold the box and set up two respectively in the both sides of base, hold the gyro wheel on the box and move in the spout of base to the realization holds pulling open and closing of box, thereby makes sticky formula instep area place when not using and holds the box, prolongs the life of sticky formula instep area.
In this embodiment, still include the height measuring mechanism who is used for measuring the height, height measuring mechanism includes ultrasonic ranging appearance 12 and the telescopic link 10 of setting on bracing piece 2, telescopic link 10 is connected with branch 11 perpendicular with telescopic link 10, be equipped with ultrasonic ranging appearance 12 on the branch 11, ultrasonic ranging appearance 12 adopts HC-SR04 ultrasonic ranging appearance, ultrasonic ranging appearance 12 includes supersonic generator and ultrasonic receiver, supersonic generator utilizes the piezoelectric effect, convert the electric energy into the ultrasonic wave, supersonic generator sends the ultrasonic wave and meets human top barrier, the ultrasonic wave returns, ultrasonic receiver receives the echo, convert ultrasonic vibration into the signal of telecommunication, transmit to the singlechip and handle the calculation, thereby calculate the height.
In the embodiment, a single chip microcomputer is arranged in the support rod 2, the single chip microcomputer is an 80C51 single chip microcomputer, and the single chip microcomputer is electrically connected with a pressure sensor, an analog/digital converter, a display driver, a memory, an ultrasonic distance meter, a data input device, a power supply module and a battery; the pressure sensor adopts MPX5010DP, and transmits signals to the singlechip through a second analog-to-digital converter which also adopts an ADC0809 analog-to-digital converter; the analog-to-digital converter adopts an ADC0809 analog-to-digital converter, and is connected with the first electrode, the second electrode, the third electrode, the fourth electrode and the fifth electrode; the first electrode and the second electrode obtain electric signals of internal organs of a human body or the electric signals of the third electrode, the fourth electrode and the fifth electrode are transmitted to an 80C51 singlechip through an analog/digital converter; the display driver is connected with the display, the display screen adopts an LCD display screen, and the LCD is RT-1602C; the memory adopts an ERPOM memory, the ERPOM memory is a 24LCO2B memory produced by Microchip company, and obesity grade information corresponding to the weight and the height is output according to different obesity evaluation standards according to requirements; the ultrasonic distance meter adopts an HC-SR04 ultrasonic distance meter; the data input device can input sex, height, weight and the like; a two-dimensional code generation source is embedded into the single chip microcomputer, the obtained information is generated into a two-dimensional code to be displayed on a display screen, and a user scans through a handheld end, such as a mobile phone, a tablet and the like, so that the height, the weight and the body fat of a measurer are obtained.
The working principle is as follows: starting a power supply, standing on a base, inputting gender through a data input device, if testing the whole fat content of a human body, wearing a sticky instep belt on the instep, simultaneously respectively placing a left hand and a right hand on a handheld part, placing a thumb on one side of a third electrode of the handheld part, placing a forefinger on the other side of a fourth electrode of the handheld part, converting electric signals measured by the third electrode, the fourth electrode and the fifth electrode into direct-current signals through a signal converter, converting the direct-current signals through an analog-to-digital converter and then sending the direct-current signals to a singlechip, simultaneously respectively transmitting electric signal information of weight and height to the singlechip through a pressure sensor and an ultrasonic range finder, generating two-dimensional codes according to the received height, weight, gender and body fat signals and displaying the two-dimensional codes on a display screen, and scanning through a handheld end, such as a mobile phone, a flat plate and the like to obtain the height, the gender and the body height of, Body weight and body fat; if a measurer needs to measure the visceral fat content, the measurer stands on the base, the first electrodes of the abdominal cavity part and the chest part on the adhesive type abdominal-chest belt are placed on one side of the trunk, the second electrode is aligned to the opposite side of the first electrode, the first electrode and the second electrode are fixed through the adhesive part of the adhesive type abdominal-chest belt, electric signals measured by the first electrode and the second electrode are converted into direct-current signals through a signal converter, the direct-current signals are converted through an analog-digital converter and then sent to the single chip microcomputer, meanwhile, the pressure sensor and the ultrasonic range finder respectively transmit electric signal information of the weight and the height to the single chip microcomputer, the single chip microcomputer can generate two-dimensional codes according to the received height, weight, sex and body fat signals, the two-dimensional codes are displayed on a display screen, and the height, the weight and the body fat of the measurer are obtained through scanning of a handheld end.
Finally, although the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the present invention can be modified or replaced by other means without departing from the spirit and scope of the present invention, which should be construed as limited only by the appended claims.

Claims (5)

1. A shared body fat measuring scale is characterized in that: including the base, set up pressure sensor that is used for measuring weight in the base and be used for measuring the internal organ fat measuring device of human abdominal cavity and chest fat, internal organ fat measuring device is including gluing formula abdominal chest area and setting up the electrode array in gluing formula abdominal chest area, and the electrode array is including the first electrode that is used for measuring abdominal cavity portion and chest portion one side and the second electrode that is used for measuring abdominal cavity portion and chest portion opposite side, and the base is connected with the display screen through the bracing piece.
2. The shared body fat measurement scale of claim 1, wherein: the whole fat measuring device comprises a handheld portion, third electrodes and a fourth electrode mechanism, the third electrodes are arranged on two sides of the handheld portion respectively, the fourth electrode mechanism is arranged in the base, and the fourth electrode mechanism comprises a fourth electrode arranged on the base and a sticky type instep belt provided with a fifth electrode.
3. The shared body fat measurement scale of claim 2, wherein: the base is further provided with a drawable containing box for placing the sticky type instep belt, the containing box is provided with idler wheels, and the base is internally provided with a sliding chute matched with the idler wheels.
4. The shared body fat measurement scale of claim 3, wherein: still including the height measuring mechanism who is used for measuring the height, height measuring mechanism includes ultrasonic ranging appearance.
5. The shared body fat measurement scale of claim 4, wherein: a single chip microcomputer is arranged in the supporting rod and electrically connected with a pressure sensor, an analog/digital converter, a display driver, a memory, an ultrasonic range finder, a data input device and a power supply module; the display driver is connected with the display; the analog/digital converter is connected with the first electrode, the second electrode, the third electrode, the fourth electrode and the fifth electrode.
CN201821742992.5U 2018-10-26 2018-10-26 Shared body fat measuring scale Active CN210130836U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821742992.5U CN210130836U (en) 2018-10-26 2018-10-26 Shared body fat measuring scale

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821742992.5U CN210130836U (en) 2018-10-26 2018-10-26 Shared body fat measuring scale

Publications (1)

Publication Number Publication Date
CN210130836U true CN210130836U (en) 2020-03-10

Family

ID=69701629

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201821742992.5U Active CN210130836U (en) 2018-10-26 2018-10-26 Shared body fat measuring scale

Country Status (1)

Country Link
CN (1) CN210130836U (en)

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Address after: Room 74, 18th Floor, Building 13, No. 279 West Third Ring Road, High tech Industrial Development Zone, Zhengzhou City, Henan Province, 450001

Patentee after: Zhengzhou Pinchuan Technology Co.,Ltd.

Address before: No. 505B, 5th Floor, Incubator 1 #, Environmental Protection Technology Innovation and Entrepreneurship Complex, Xinmi City, Henan Province, China, Southwest Corner of the Intersection of Miqi Road and Renhe Road, Quliang Town, Xinmi City, Zhengzhou City, 452375

Patentee before: Zhengzhou Pinchuan Technology Co.,Ltd.

CP02 Change in the address of a patent holder