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Miniature electronic antipyretic instrument

A fever-reducing instrument and electronic technology, applied in the field of medical devices, can solve the problems that the cooling process cannot be monitored and controlled remotely, affect the use and promotion of the device, and the operation process is cumbersome and time-consuming, so as to achieve suitable promotion and application, convenient nursing, and cooling. good effect

Pending Publication Date: 2018-06-19
王衡
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The above-mentioned physical cooling methods all have defects such as high manual labor intensity, tedious and time-consuming operation process, and low cooling and fever-reducing efficiency.
Existing antipyretic devices often use refrigerants to cool down and antipyretic. The cooling efficiency is low and cannot work continuously. The cooling process cannot be monitored in real time and remotely controlled. The temperature control accuracy is low, which affects the use and promotion of the device.

Method used

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  • Miniature electronic antipyretic instrument
  • Miniature electronic antipyretic instrument
  • Miniature electronic antipyretic instrument

Examples

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Embodiment Construction

[0022] Such as Figure 1 to Figure 4 As shown, a miniature electronic fever reducer includes a housing 1, a refrigeration system 2, a control system 3, a battery 4, a power switch 5, a first filler 6, a display screen 7, a first temperature probe 8-1, and a second temperature probe 8-1. Probe 8-2, cooling indicator light 9, power indicator light 10 and charging socket 11;

[0023] The housing 1 includes a middle housing 1-1 and two side housings 1-2, the side housings 1-2 are symmetrical to both sides of the middle housing 1-1, and the side housings 1-2 and The middle shell 1-1 is movably connected, such as hinged. The middle shell 1-1 includes a first working surface 1-11, and the side shell 1-2 is a square hollow cavity structure and includes a second working surface 1-11. 21. The side surface 1-22 and the heat dissipation surface 1-23, the first working surface 1-11 and the second working surface 1-21 are all concave arc surfaces; the shell 1 also includes a strap platform...

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Abstract

The invention belongs to the technical field of medical instruments, and relates to a miniature electronic antipyretic instrument. The miniature electronic antipyretic instrument comprises a shell, two refrigerating systems, a control system, a battery, a power switch, a first filler, a display screen, a first temperature probe, and a second temperature probe, wherein the shell comprises one middle shell and two side shells, the two refrigerating systems are arranged in the side shells separately, the control system is arranged in the side shells, and the battery is arranged in the middle shell. Due to a power-on refrigerating effect of a semiconductor, a temperature control circuit controls an electronic refrigerating sheet to refrigerate, so that the miniature electronic antipyretic instrument can help reduce physical temperature of a patient, has a good temperature reduction effect, controls the temperature more accurately, can cool down the forehead constantly and effectively, enables people to nurse a patient with fever conveniently, saves medical expenses, uses no refrigerant, can work continuously, and has a longer service life.

Description

technical field [0001] The invention belongs to the technical field of medical devices, and relates to a miniature electronic fever-reducing instrument. Background technique [0002] At present, the physical cooling method for patients with fever is usually to use alcohol with a concentration of 25% to 50% to scrub the patient's skin to stimulate the skin blood vessels of the patient with fever to expand, thereby increasing the heat dissipation capacity of the skin. Volatile, absorbing and taking away a large amount of heat, lowering the patient's body temperature, thereby relieving symptoms; or applying ice packs to the patient's forehead to reduce fever and cool down. The above-mentioned physical cooling methods all have defects such as high manual labor intensity, tedious and time-consuming operation process, and low cooling and fever-reducing efficiency. Existing antipyretic devices often use refrigerants to cool down and reduce fever. The cooling efficiency is low and ...

Claims

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Application Information

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IPC IPC(8): A61F7/00
CPCA61F7/007A61F2007/0007A61F2007/0096A61F2007/0075
Inventor 王衡
Owner 王衡
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