A portable visual acuity screening instrument and an optical path structure thereof

A portable, vision-based technology, applied in optometry, retinoscopy, medical science, etc., can solve the problem of less, only spherical mirror (myopia, hyperopia), cylinder (astigmatism) and axial (astigmatism angle, poor repeatability) , low accuracy of test results, etc.

Active Publication Date: 2019-01-15
SHANGHAI BEIGAO MEDICAL TECH
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  • Abstract
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  • Claims
  • Application Information

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Problems solved by technology

[0005] However, the above two portable vision screening instruments also have their own advantages and disadvantages: the portable optometry instrument using Hartmann-Shark technology is generally called a monocular vision screening instrument. Its advantage is accurate measurement, but there are relatively few measurement items and can only Measuring spherical mirror (myopia, hyperopia), cylindrical mirror (astigmatism) and axial position (astigmatism angle), and can only be measured with one eye; portable vision screening instrument using camera technology, generally called binocular vision screening instrument, which can simultaneously Measure the spherical lens (myopia, hyperopia), cylinder lens (astigma

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  • A portable visual acuity screening instrument and an optical path structure thereof
  • A portable visual acuity screening instrument and an optical path structure thereof
  • A portable visual acuity screening instrument and an optical path structure thereof

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Embodiment

[0092] (1) Portable vision screening instrument

[0093] The portable vision screening instrument of the present invention includes a circuit system and an optical path structure, wherein:

[0094] 1. The circuit system is a dual-processor structure, which includes the following components: 1. # ARM processor, 2 # ARM processor, FPGA, 1 # SDRAM, 2 # SDRAM, ultrasonic ranging circuit, temperature detection circuit, storage circuit, ambient light detection circuit, interface circuit, power supply circuit, lithium battery, wireless charging circuit, laser power circuit and display interface; where:

[0095] 1 # ARM processor and 2 # The ARM processors all use STM32F429, which are equipped with CCD interface and SDRAM interface;

[0096] FPGA uses Altera's EP4CE6F17C8;

[0097] 1 # SDRAM and 2 # SDRAM adopts 32M H57V256GTR of HYNIX Company;

[0098] The ultrasonic ranging circuit adopts a 500kHz single-probe transceiver integrated ultrasonic ranging module, and its emiss...

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Abstract

The present invention relates to the field of medical detection equipment and visual acuity screening instrument, in particular to a portable visual acuity screening instrument and an optical path structure thereof. The visual acuity screening instrument comprises a circuit system and an optical path structure. The circuit system is a dual-processor structure, which comprises an ARM processor, anFPGA, an SDRAM, an ultrasonic ranging circuit, a temperature detection circuit, an ambient light detection circuit, a wireless charging circuit and the like. The optical structure includes near-infrared light source, a collimator lens, a CCD image sensor, a HS sensor, a high-pass filter and so on. The instrument of the present invention can be used for adults, Fast, accurate and comprehensive visual screening and analysis for infants and children, patients with special diseases and other groups can be used to detect spherical lens power, cylindrical lens power, cylindrical lens angle, pupil size, pupil distance, refractive abnormality and fixation direction, which is suitable for hospitals, physical examination centers, schools, optical shops and other institutions.

Description

technical field [0001] The invention relates to the fields of medical testing equipment and vision screening instruments, in particular to a portable vision screening instrument, its optical path structure and its application in medical testing. Background technique [0002] At present, the vision screening instrument (refractor) used in hospital ophthalmology and glasses industry is mainly desktop optometry equipment. The subjects of optometry are mainly adults or children who have reached a certain age and can actively cooperate. to observe. Desktop optometry equipment can be divided into subjective optometry and objective optometry according to their different optometry principles. Subjective optometry requires feedback from the testee to make the test results more accurate; while objective optometry does not require Feedback from the testee avoids human error. However, both subjective optometry and objective optometry require the behavior of the subject to cooperate. I...

Claims

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Application Information

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IPC IPC(8): A61B3/103A61B3/036A61B3/11
CPCA61B3/0075A61B3/036A61B3/103A61B3/111A61B3/112
Inventor 田海波洪川
Owner SHANGHAI BEIGAO MEDICAL TECH
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