Local human body composition analyzer
A technology of human body composition and analyzer, applied in medical science, sensors, diagnostic recording/measurement, etc., can solve problems such as not suitable for regular use of the human body, difficulty in measuring fat content, existence of radiation, etc., to achieve portability and low manufacturing cost , Lightweight effect
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Embodiment 1
[0064] Such as figure 1 and 2 As shown, a partial body composition analyzer includes a measuring body 1 , electrodes, a circuit board 2 and a light guide plate 3 . The electrodes are located on one side of the measuring body 1 and are in contact with the measured parts of the human body to obtain impedance values. The circuit board 2 is inside the measuring body 1 , and a light source and a processor for obtaining measurement results through impedance values are arranged on the circuit board 2 . The light guide plate 3 is located in the measurement body 1 and corresponds to the position above the circuit board 2, and the light guide plate 3 makes the light emitted by the light source form a light effect with uniform distribution of light and emits to the outside to indicate the current working status.
[0065] The measuring body 1 is a circular arc block structure, and its bottom side is used to contact with the measuring parts of the human body. The electrodes include t...
Embodiment 2
[0068] In this embodiment, the measuring body 1 is improved into a structure that is convenient to hold, and it is partly consistent with Embodiment 1, specifically as follows:
[0069] Such as Figure 4 As shown, the measuring body 1 has a circular arc block structure, and the bottom side of the measuring body 1 is used for contacting with the measurement site of the human body, and the middle part is a hollow structure for holding. The electrodes include two excitation electrodes 4 and two measurement electrodes 5 . The two excitation electrodes 4 are respectively located at the bottom side of the measuring body 1 close to the two ends and are used to generate excitation current. The two measuring electrodes 5 are respectively located on the bottom side of the measuring body 1 and correspond between the two excitation electrodes 4 , and are used to measure the voltage drop generated by the excitation current passing through the human body and obtain the impedance value.
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Embodiment 3
[0073] In this embodiment, the measuring body 1 is improved into a foldable and unfolded structure that is convenient for storage and suitable for measurement of people of different body types, which is partly consistent with the first embodiment, specifically as follows:
[0074] Such as Figure 8 and 9 As shown, the measuring body 1 includes a main shell 9 and two wing shells 10 . One ends of the two wing shells 10 are respectively rotatably mounted on both sides of the main shell 9, and after turning the two wing shells 10, they can be retracted to the outside of the main shell 9 and folded or toward the main shell 9. The outer shell 9 is unfolded for measurement. The electrodes include two excitation electrodes 4 and two measurement electrodes 5 . One excitation electrode 4 and one measurement electrode 5 are respectively provided on the bottom sides of the two wing shells 10 deployed toward the outside of the main shell 9, and the two measurement electrodes 5 are in th...
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