DUST SCANNER
20220125268 · 2022-04-28
Inventors
Cpc classification
F21Y2107/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V33/0044
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21W2131/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2107/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21V5/046
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21Y2115/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F21S9/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21V5/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Proposed in the present disclosure is a dust scanner allowing various foreign substances existing on a floor to be clearly identified in a field of view of a cleaner user, the dust scanner including: a plurality of LED lighting components; a transmissive body including a parabolic surface having a vertical cross-section convex toward an outside, formed to be transparent, and configured to transmit light beams emitted from the LED lighting components located at an inside thereof to an outside; and blocking plates each closing and sealing a top end and a bottom end between the LED lighting components and the transmissive body, wherein each of the LED lighting components is disposed at a focal point of the parabolic surface, whereby the light beams transmitted to the parabolic surface are projected in parallel to a floor without spreading up and down.
Claims
1. A dust scanner, comprising: a plurality of LED lighting components (10); a transmissive body (100) including a parabolic surface (110) having a vertical cross-section convex toward an outside, the transmissive body being formed to be transparent and configured to transmit light beams emitted from the plurality of LED lighting components (10) located at an inside thereof to an outside; and blocking plates (200) each closing and sealing a top end and a bottom end between the plurality of LED lighting components (10) and the transmissive body (100), wherein each of the plurality of LED lighting components (10) is disposed at a focal point of the parabolic surface (110), the focal point being spaced apart from the transmissive body (100) by a predetermined interval, whereby the light beams transmitted to the parabolic surface (110) are projected in parallel to a floor without spreading up and down.
2. The dust scanner of claim 1, wherein the blocking plates (200) extend so as to protrude outward beyond an outermost point of the parabolic surface (110).
3. The dust scanner of claim 1, wherein each of the plurality of LED lighting components (10) is disposed at a center of each side surface of an inner body (300) having a polygonal cross-section, and the transmissive body (100) is formed in a shape surrounding an outside of the inner body (300).
4. The dust scanner of claim 3, wherein the inner body (300) is provided on each side surface thereof with a reflective plate (310) capable of reflecting the light beams, and each of the plurality of LED lighting components (10) is provided at the a center of the reflective plate (310) by penetrating therethrough.
5. The dust scanner of claim 1, wherein the vertical cross-section of the transmissive body (100) has a hemispherical shape.
Description
DESCRIPTION OF DRAWINGS
[0010]
[0011]
[0012]
[0013]
[0014]
[0015]
[0016]
[0017]
MODE FOR INVENTION
[0018] Proposed in the present disclosure is a dust scanner that allows various foreign substances such as debris, dust, and the like existing on a floor to be clearly identified in a field of view of a cleaner user by projecting light beams at a height adjacent to the floor of an area to be cleaned, the dust scanner including: a plurality of LED lighting components; a transmissive body including a parabolic surface having a vertical cross-section convex toward an outside, formed to be transparent, and configured to transmit the light beams emitted from the plurality of LED lighting components located at an inside thereof to an outside; and blocking plates each closing and sealing a top end and a bottom end between the plurality of LED lighting components and the transmissive body, wherein each of the plurality of LED lighting components is disposed at a focal point of the parabolic surface, the focal point being spaced apart from the transmissive body by a predetermined interval, whereby the light beams transmitted to the parabolic surface are projected in parallel to a floor without spreading up and down.
[0019] The scope of the present disclosure is not limited to embodiments described below, and various modifications may be made by those of ordinary skill in the art without departing from the technical gist of the present disclosure.
[0020] Hereinafter, the dust scanner of the present disclosure will be described in detail with reference to
[0021]
[0022] As shown in
[0023] At this time, as each of the plurality of LED lighting components 10 and the transmissive body 100 are arranged to be spaced apart by a predetermined interval, the dust scanner further includes the blocking plates 200 that each close and seal the top end and the bottom end between the plurality of LED lighting components 10 and the transmissive body 100. The blocking plates 200 each block the light beams emitted from the plurality of LED lighting components 10 from advancing to a top side and a bottom side of a space between the plurality of LED lighting components 10 and the transmissive body 100, thereby serving to allow the light beams to be focused only in the outer direction of the transmissive body 100.
[0024] On the other hand, each of the plurality of LED lighting components 10 in the present disclosure is disposed at the focal point of the parabolic surface 110 as shown in
[0025] As such, in the present disclosure, the light beams advancing straight in parallel to the floor are projected far while being maintained to be low, so foreign substances such as dust, dirt, and the like are clearly identified in the field of view of the cleaner user through not only the shadows generated by the foreign substances but also the light beams reflected from the foreign substances. Accordingly, even when a large area is to be cleaned, efforts of locally performing recleaning because of cleaning not being done well is reduced. As a result, cleaning efficiency is improved.
[0026] Each of the plurality of LED lighting components 10 is disposed on each side surface of an inner body 300 having a polygonal cross-section, as shown in
[0027] The transmissive body 100 may be formed such that a height of the parabolic surface 110 is the same as that of the inner body 300 and formed in a shape surrounding the outside of the inner body 300 so that the light beams may be projected 360° in all directions since the light beams are prevented from spreading only in the up and down direction as above. That is, as shown in
[0028] As such, the dust scanner of the present disclosure, in which the light beams are projected 360° in all directions, is provided separately from a cleaning mechanism such as a vacuum cleaner and the like, and as shown in
[0029] As shown in
[0030] In addition, as shown in
[0031] On the other hand, as shown in
[0032] In addition, the transmissive body 100 may be formed such that the inner surface is formed in a plane to form a “planar convex lens” shape. That is, the vertical cross-section of the transmissive body 100 may have a hemispherical shape. In this case, the cost of manufacturing the transmissive body 100 may be reduced compared to the above two shapes. When the transmissive body 100 is formed in a shape surrounding the inner body 300, it is possible to obtain the effect that durability of at least a certain level may be ensured.
[0033] On the other hand, the blocking plates 200 may block the light beams generated only between the plurality of LED lighting components 10 and the transmissive body 100 but may be formed to be the same as the outermost point of the parabolic surface 110 or to extend beyond the outermost point of the parabolic surface 110 in order to improve the straightness for the light beams having passed through the transmissive body 100 as shown in
[0034] In addition, the present disclosure may be provided with a lower case 400, the lower case 400 being: placed on a floor surface by being formed in a plate shape; and provided on a top side thereof with the inner body 300 provided with the plurality of LED lighting components 10 and the transmissive body 100 surrounding the inner body 300. In addition, the lower case 400 may be provided with a first blocking plate 200 placed on the top surface thereof, and the first blocking plate 200 may be provided on a top surface thereof with the inner body 300 and the transmissive body 100.
[0035] A second blocking plate 200 corresponding to the first blocking plate 200 placed on the top surface of the lower case 400 may be placed on a top end of the inner body 300 and the transmissive body 100, and the corresponding second blocking plate 200 may be provided with an upper case 500 on a top side thereof, the upper case 500 including a power supply means 510 such as a battery at an inside thereof and a switch 520 capable of turning on/off the plurality of LED lighting components 10 on an outside thereof.
[0036] In addition, although not shown in the drawings, the upper case 500 may become a controller configured to receive power from an external outlet and to supply the power to the plurality of LED lighting components 10. The controller may be applied to both cases where the power control means is provided and is not provided and may not only serve to deliver the power to the plurality of LED lighting components 10 but also adjust an on-off time, an on-off sequence, illuminance, and the like of the plurality of LED lighting components 10 according to a user's selection or a pre-set rule.
[0037] On the other hand, the present disclosure may be applied to, for example, a head of the cleaning mechanism, a wet mop cleaner, or the like in which foreign substances such as dust and the like are substantially sucked. In this case, it is difficult to provide the plurality of LED lighting components 10 so that the light beams are projected 360° in all directions due to a structure of the head of the cleaning mechanism. Therefore, it is rather effective to identify foreign substances by allowing the light beams to be projected only in a direction in which the head of the cleaning mechanism is facing.
[0038] Accordingly, in order to allow the emitted light beams to be transmitted to a predetermined range of the outside in a front of the plurality of LED lighting components 10, an arrangement formed by the transmissive body 100 and the plurality of LED lighting components 10 may be a fan shape as shown in
TABLE-US-00001 <Description of the Reference Numerals in the Drawings> A: cleaner 10: LED lighting 101: transmissive body 110: parabolic surface 200: blocking plate 300: inner body 310: reflective plate 320: reflective mirror 400: lower case 500: upper case 510: power supply means 520: switch