A physiological data collector for sub-health prevention and control
A technology of physiological data and collectors, applied in the field of public health, can solve problems such as lack of time and freedom, decline in quality of life, difficulty in persisting in the labor force, etc., and achieve the effect of wireless remote transmission, small size, and easy portability
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Embodiment 1
[0026] see figure 1 , figure 2, a physiological data collector for sub-health prevention and control, its appearance is similar to a handheld terminal of a smart phone, and consists of a miniUSB interface (1), a casing (2), a touch screen (3), a switch (4), a digital selection device B(5), A / D module(6), amplifier(7), digital selector A(8), blood glucose test strip socket(9), blood pressure machine interface(10), blood lipid line interface(11), embedded micro It consists of a processor (12) and a communication unit (13). figure 1 is the front view of the collector, figure 2 is the internal structure diagram of the collector.
[0027] The blood glucose test strip socket (9), the blood pressure machine interface (10), the blood lipid line interface (11) are connected to the input end of the number selector A (8), and the output end of the number selector A (8) is connected to the input of the amplifier (7) Terminal connection, the output end of amplifier (7) is connected w...
Embodiment 2
[0030] see image 3 , is the realization method of the invention to realize the centralized collection of physiological data and the automatic identification and data transmission of the wireless network. The following describes how each function is implemented:
[0031] 1. Centralized collection of physiological parameters
[0032] The centralized collection of physiological parameters is realized through the interconnection of the embedded microprocessor (12), the A / D module (6), the amplifier (7), and the number selector A (8).
[0033] Embedded microprocessor (12) can adopt the 32-bit RISC microprocessor S3C2410X based on ARM920T kernel that Samsung (Samsung) introduces. The processor has a built-in Linux operating system, which can be used to implant self-developed application software to realize application control. The processor has its own ROM, RAM and SD interface. The ROM can be used to store the application program, the RAM can provide the memory required for the...
Embodiment 3
[0049] see Figure 4 , the human-machine interface of the present invention is realized after the mutual connection work of touch screen (3), liquid crystal screen (15), driving circuit (14) and embedded microprocessor (12), and liquid crystal screen (15) can provide the display of data, The touch screen (3) can provide application program control and data entry.
[0050] Liquid crystal screen (15) selects the LTS350Q1-PE1 liquid crystal screen of Samsung (Samsung) TFT-LCD type for use, and has designed the driving circuit (14) supporting it, the LCD controller of embedded microprocessor (12) (S3C2410X) , TFT-LCD drive circuit (14) and LTS350Q1-PE1 LCD screen (15) are combined to form an embedded liquid crystal display system, see Figure 4 . The driving circuit (14) includes a timing controller 101, a DC-DC converter 102, a common power generator 103, a backlight driving circuit 104 and the like.
[0051] The LTS350Q1-PE1 liquid crystal screen (15) is integrated with digit...
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