Interactive high-clarity glass electronic whiteboard
10372275 ยท 2019-08-06
Inventors
Cpc classification
B32B2307/50
PERFORMING OPERATIONS; TRANSPORTING
B32B27/06
PERFORMING OPERATIONS; TRANSPORTING
B32B2307/40
PERFORMING OPERATIONS; TRANSPORTING
B32B2307/4023
PERFORMING OPERATIONS; TRANSPORTING
B32B3/08
PERFORMING OPERATIONS; TRANSPORTING
B32B9/005
PERFORMING OPERATIONS; TRANSPORTING
B32B17/00
PERFORMING OPERATIONS; TRANSPORTING
B32B2255/00
PERFORMING OPERATIONS; TRANSPORTING
B43L1/00
PERFORMING OPERATIONS; TRANSPORTING
G06F3/0446
PHYSICS
B32B15/20
PERFORMING OPERATIONS; TRANSPORTING
B32B5/02
PERFORMING OPERATIONS; TRANSPORTING
G06F2203/04103
PHYSICS
G06F3/0445
PHYSICS
International classification
B32B3/08
PERFORMING OPERATIONS; TRANSPORTING
B32B27/06
PERFORMING OPERATIONS; TRANSPORTING
B32B15/04
PERFORMING OPERATIONS; TRANSPORTING
B32B9/00
PERFORMING OPERATIONS; TRANSPORTING
B32B5/02
PERFORMING OPERATIONS; TRANSPORTING
B43L1/00
PERFORMING OPERATIONS; TRANSPORTING
B32B17/06
PERFORMING OPERATIONS; TRANSPORTING
B32B3/12
PERFORMING OPERATIONS; TRANSPORTING
B32B15/20
PERFORMING OPERATIONS; TRANSPORTING
B32B17/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An interactive high-clarity glass electronic whiteboard having a writing board body; the writing board body includes a base board and an ultra-thin tempered glass. The front of the base board attaches with the ultra-thin tempered glass. The attaching surface of the ultra-thin tempered glass attaching the base board is adhered with a non-transparent interlayer. A non-transparent coating is adhered to an attaching surface of the ultra-thin tempered glass attaching the base board A writing surface of the ultra-thin tempered glass is a matte surface with anti-glare treatment.
Claims
1. An interactive high-clarity glass electronic whiteboard, comprising: a writing board body, wherein the writing board body comprises a base board, an ultra-thin tempered glass having an attaching surface, and a touch sensing module; a first side of the base board attached to the touch sensing module; an ink layer printed on the attaching surface of the ultra-thin tempered glass, the ink layer comprising a non-transparent interlayer; the ultra-thin tempered glass further comprising a writing surface of the interactive high-clarity glass electronic whiteboard, the writing surface opposite of the attaching surface, and the writing surface of the ultra-thin tempered glass comprising a matte surface having an anti-glare treatment; wherein the non-transparent interlayer is a film having a color chosen from a list of white or beige, the film attached to the ultra-thin tempered glass and the attaching surface; wherein the film has a surface which is a matte surface with an anti-glare treatment; and wherein the base board comprises an aluminum honeycomb panel and a surface of the aluminum honeycomb panel is bonded with an aluminum plate and wherein the ultra-thin tempered glass and a green board are attached to the aluminum plate respectively.
2. The interactive high-clarity glass electronic whiteboard of claim 1, wherein the ultra-thin tempered glass comprises a thickness of 0.3 mm to 2 mm.
3. The interactive high-clarity glass electronic whiteboard of claim 1, wherein the first side of the base board is adhered to a nontransparent coating layer.
4. The interactive high-clarity glass electronic whiteboard of claim 1, wherein an infrared sensor module is mounted on a mounting surface of the ultra-thin tempered glass.
5. The interactive high-clarity glass electronic whiteboard of claim 1, wherein the touch sensing module is adhered between the non-transparent interlayer or a non-transparent coating layer and the base board.
6. The interactive high-clarity glass electronic whiteboard of claim 5, wherein the touch sensing module is a touch sensing module selected from a list comprising capacitive touch sensing module and inductive touch sensing module.
7. The interactive high-clarity glass electronic whiteboard of claim 6, wherein the capacitive touch sensing module comprises a transparent plastic film having a front side and a back side, and wherein the front side and the back side of the transparent plastic film further comprise horizontal conductive film lines and vertical conductive film lines respectively.
8. The interactive high-clarity glass electronic whiteboard of claim 1, wherein a non-transparent coating layer is a white ink layer printed on the attaching surface of the ultra-thin tempered glass attaching the base board.
9. The interactive high-clarity glass electronic whiteboard of claim 1, further comprising a green board affixed to a back side of the base board.
10. The interactive high-clarity glass electronic whiteboard of claim 1, wherein the base board comprises a board type chosen from a list of magnesia board, aluminum honeycomb panel, high-density extruded board, and fiber board.
11. The interactive high-clarity glass electronic whiteboard of claim 10, wherein a side of the aluminum honeycomb panel is bonded to the ultra-thin tempered glass with an aluminum plate.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
DETAILED DESCRIPTION OF THE INVENTION
(4) The preferred embodiments of the present invention are further described in detail below with reference to the accompanying drawings.
Embodiment 1
(5) As shown in
(6) Further, the capacitive touch sensing module 13 comprises a transparent plastic film 131. A front side and a back side of the transparent plastic film are provided with horizontal conductive film lines 132 and vertical conductive film lines 133 respectively.
(7) Further, the base board 11 is an aluminum honeycomb panel. A side of the aluminum honeycomb panel that only attaches with the capacitive touch sensing module 13 is bonded with an aluminum plate 111. The green board 14 is directly affixed with the aluminum honeycomb panel.
Embodiment 2
(8) As shown in
(9) The film between the ultra-thin tempered glass and the base board of the present invention can be beige in color. By using a beige or white film as a soft non-transparent interlayer to attach with the ultra-thin tempered glass, air bubbles will not be produced, and then when the ultra-thin tempered glass is attached to the base board, covering by the non-transparent film blocks air bubbles produced in such attachment to produce a hard screen from being seen on a surface of the screen, so it is not necessary to carry out a process of removing bubbles; the white ink printed on the attaching surface of the ultra-thin tempered glass attaching with the base board directly covers the air bubbles produced in attachment. Therefore it is also not necessary to carry out a process of removing bubbles; when the back of the non-transparent interlayer attaches with the capacitive touch sensing module, the non-transparent interlayer also covers the lines on the film, so the diameter which the conductive film lines span across may be enlarged appropriately. Further, no additional blackening and hiding process is required. The non-transparent interlayer design does not only simplify the manufacturing process but also improve production efficiency.
(10) A thickness of the ultra-thin tempered glass of the present invention is preferably 0.32 mm, thereby preventing partial superimposition of a word over its shadow and thus achieving better display effects; a frame can also be provided to surround the outer boundaries of the writing board, making the writing board better in appearance and having a higher stability; the material of the base board is not limited to the aluminum honeycomb panel. It can also be a board material which is not easy to deform and have a high degree of smoothness, such as a magnesia board or a high-density extruded board; capacitive touch sensing module may have a structure not limited to the embodiments as well. It can be an ordinary ITO conductive layer or a GG touch panel. The horizontal conductive film lines and the vertical conductive film lines are made of any one of copper, aluminum, gold, silver, and conductive carbon paste; when the present invention uses an infrared sensor module to realize the touch function, the manufacturing cost can be greatly reduced; the interactive high-clarity glass electronic whiteboard of the present invention has a light weight. It can be directly mounted on a frame and flip sides manually. It can also be mounted on a support in a rotatable manner.