Escape system for a sinking car and an optoelectronic component thereof
10352086 ยท 2019-07-16
Inventors
Cpc classification
B60R21/00
PERFORMING OPERATIONS; TRANSPORTING
G02B6/4248
PHYSICS
B60J7/0573
PERFORMING OPERATIONS; TRANSPORTING
B60R22/322
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60R22/32
PERFORMING OPERATIONS; TRANSPORTING
B60R21/00
PERFORMING OPERATIONS; TRANSPORTING
B60J7/057
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An escape system for a sinking car and an optoelectronic component thereof are disclosed. The optoelectronic component includes a housing and an optoelectronic module. The escape system for a sinking car includes an optoelectronic component and a motherboard. A lighting unit of the escape system for a sinking car and an optoelectronic component thereof is installed on a car to emit light. After the car fell into water, by the characteristic that when light passes through a medium, the attenuation in light energy can be detected effectively because light is absorbed by that medium (such as liquid), the car sinking signal can be received and transmitted quickly, thereby actually taking the opportunities of rescue to reduce casualties.
Claims
1. An optoelectronic component comprising: a housing, an interior of which is provided with a holding space, and a side of which is opened with a through-hole, with that two shield plates are disposed correspondingly on two sides of the through-hole, and an angle is provided between each of the shield plates and the side of the housing; and an optoelectronic module, which is disposed inside the holding space and includes a lighting unit, a receiver, a computation unit connected electrically to the receiver, and a signal transmission unit connected electrically to the computation unit, wherein the lighting unit projects a light beam, the receiver receives the light beam projected by the lighting unit and analyzes the luminous intensity of the light beam, and the computation unit compares the luminous intensity transmitted by the receiver with a built-in luminous intensity setting; when the luminous intensity is smaller than the setting of the luminous intensity, the computation unit generating a car sinking signal, and the signal transmission unit sending out that car sinking signal through a wire communication or wirelessly, wherein the angle is between 5 and 65, the equation that the receiver uses to analyze the luminous intensity of the light beam is
2. The optoelectronic component according to claim 1, wherein the lighting unit is a monochrome lighting element, a monochrome lighting device, an LED or an optical fiber.
3. The optoelectronic component according to claim 1, wherein an inner side of the through-hole is further provided with a water permeable layer.
4. The optoelectronic component according to claim 3, wherein the water permeable layer is a layer of material containing fiber or a layer of cloth.
5. An escape system for a sinking car, bcing provided on a car and comprising: the optoelectronic component according to claim 1; and a motherboard which is connected electrically to the optoelectronic component, wherein after receiving the car sinking signal transmitted by the signal transmission unit, the motherboard connects electrically a motor of the car to activate a car window, and connects electrically an electromagnetic switch of the car to unlock a seat belt.
6. The escape system according to claim 5, wherein the escape system is further provided with an UPS which supplies electricity required by the escape system uninterruptedly.
7. The escape system according to claim 5, wherein the escape system is further connected electrically to an APP inside a mobile device installed in the car or held by the driver, and after receiving the car sinking signal, the escape system turns on an automatic positioning function in the APP.
8. The escape system according to claim 7, wherein the APP further sends out a distress text or dials a distress call through a voice assistance or an automatic dialing mechanism.
9. The escape system according to claim 5, wherein the motherboard is further connected electrically to a horn of the car and turns on the horn to sound after receiving the car sinking signal.
10. The escape system according to claim 5, wherein the motherboard is provided with a control unit.
11. The escape system according to claim 10, wherein the control unit is connected electrically to a motor, plural car lamps and a horn.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
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(6)
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(7) For the examiners to understand the technical features, the content, and the advantages of the present invention, as well as the benefits that the present invention can achieve, the present invention is hereinafter described in details with the accompanying drawings and the expression in the form of an embodiment. The drawings used in the description are only for illustration and as assistance to the specification, which may not be necessarily true in scale and precise configuration after the implementation of the present invention. Therefore, one should not interpret according to the scale and configuration in the accompanying drawings to limit the claims of the present invention on practical implementation.
(8) First, as shown in
(9) The optoelectronic module 12 is disposed in the holding space 111 and includes a lighting unit 121, a receiving unit 122, a computation unit 123 that is connected electrically to the receiving unit 122, and a signal transmission unit 124 that is connected electrically to the computation unit 123. The lighting unit 121 projects a light beam, whereas the receiving unit 122 receives the light beam projected by the lighting unit 121 and analyzes the luminous intensity of the light beam. The computation unit 123 compares the luminous intensity transmitted by the receiving unit 122 with a built-in luminous intensity. When the luminous intensity is smaller than the setting of the luminous intensity, the computation unit 123 will generate a car sinking signal, and the signal transmission unit 124 will send out the car sinking signal through a wire communication or wirelessly. Besides that, the lighting unit 121 is a monochrome lighting element, a monochrome lighting device, an LED or an optical fiber. In the first preferred embodiment of the present invention, the lighting unit 121 that manifests a monochrome lighting element emits a light beam, whereas the receiving unit 122 receives the light beam projected by the lighting unit 121 and analyzes the luminous intensity of the light beam. The equation that the receiving unit 122 uses to analyze the luminous intensity of the light beam is
(10)
(11) where A is the absorbance, I is the luminous intensity after light passes through a medium, I.sub.0 is the luminous intensity before light passes through that medium, and Tis the transmittance or the percentage of light transmission. It can be seen from the above equation that the more light is absorbed, the smaller the magnitude of T is, and the larger the magnitude of A is. In addition, the Beer-Lambert law also shows that when a beam of monochrome light irradiates on a surface of absorption medium and passes through a certain thickness, as the medium absorbs part of light energy, the intensity of the transmitted light will be attenuated. Therefore, the larger the concentration of the absorption medium is, the larger the thickness of the medium is, and the weaker the luminous intensity of light is. Next, the computation unit 123 compares the luminous intensity transmitted by the receiving unit 122 with a built-in luminous intensity. If the luminous intensity is smaller than the setting of luminous intensity, the computation unit 123 will generate a car sinking signal, and the signal transmission unit 124 will send out the car sinking signal through a wire communication or wirelessly. It is due to that when the car falls into water and after light penetrates a medium, light energy is attenuated to detect whether the car falls into water, because light is absorbed by the medium (such as liquid). In addition, as light conducts rapidly, it will facilitate sending out the car sinking signal quickly upon receiving that car sinking signal immediately, thereby taking the chances of rescue.
(12) Furthermore, an inner side of the through-hole 112 is further provided with a water permeably layer 114 that is a layer of material containing fiber or a layer of cloth. Referring to
(13) Moreover, to achieve the abovementioned object, the present invention also discloses another kind of escape system for a sinking car 2. Referring to
(14) Furthermore, at least an optoelectronic component 1 can be installed on the front side of a car 3 head, the rear side of a car tail, inside the front left door, inside the front right door, inside the rear left door and inside the rear right door, respectively. When the optoelectronic component 1 on the front side of the car head detects anomaly, the motherboard 21 will notify the motors that activate the car windows on the doors at the front, rear, left and right side, as well as the sunroof, in order to descend the car windows and open the sunroof. When the optoelectronic component 1 on the rear side of the car tail detects anomaly, the motherboard 21 will notify the motors that activate the car windows on the doors at the front, rear, left and right side, as well as the sunroof, in order to descend the car windows and open the sunroof. When the optoelectronic component 1 inside the front left door or the optoelectronic component 1 inside the rear left door detects anomaly, the motherboard 21 will notify the motors that activate the car windows on the front right door and the rear right door, as the direction of escape is opposite to the direction that the car fell into water. When the optoelectronic component 1 inside the front right door or the optoelectronic component 1 inside the rear right door detects anomaly, the motherboard 21 will notify the motors that activate the car windows on the front left door and the rear left door. Moreover, the sunroof on a top of the car 3 can be installed with an optoelectronic component 1. When the optoelectronic component 1 on the top of the car detects anomaly, the motherboard 21 will control to close the sunroof and to activate the motors that operate all the car windows on the doors at the right and left side, in order to descend the car windows.
(15) On the other hand, referring to
(16) Moreover, as shown in
(17) Accordingly, in comparison with the existing technology and product, the escape system for a sinking car and an optoelectronic component thereof, in accordance with the present invention, are advantageous in that by the characteristic that when light passes through a medium, the attenuation in light energy can be detected effectively because light is absorbed by the medium (such as liquid), the car sinking message can be received and transmitted quickly, so that the chances of rescue can be taken to reduce casualties.
(18) It is of course to be understood that the embodiments described herein is merely illustrative of the principles of the invention and that a wide variety of modifications thereto may be effected by persons skilled in the art without departing from the spirit and scope of the invention as set forth in the following claims.