The present disclosure relates to the field of a liquid crystal display (LCD), and more particularly to a box used for packaging a display panel component.
At present, many methods for packaging a liquid crystal (LC) panel are used in a panel field. A most common use that a box used for packaging an LC glass is manufactured by foaming molding buffer material. A stereoplasm box manufactured by injection molding or blow molding can also be used.
An open cell (OC) display panel component is a display panel component which has been assembled, and where a circuit board is arranged on the display panel component. Because the display panel component includes a printed circuit board (PCB), height of an entire display panel component 200 is not uniform, which makes for a decreased internal volume of the stereoplasm box for components. As shown in
Because of the height difference T, the display panel components are prone to damage (namely the panel cells are prone to damage because of an extrusion caused by the display panel components arranged unevenly). As shown in
However, at present, the typical box 100 has a small internal volume for components, which results in large costs of transportation and storage. Thus, it is necessary to improve packaging of the display panel components.
In view of the above-described problems, the aim of the present disclosure is to provide a box used for packaging a plurality of display panel components.
The aim of the present disclosure is achieved by the following method.
A box used for packaging a display panel component comprises a first receiving cavity receiving a panel cell of the display panel component and a second receiving cavity receiving a printed circuit board (PCB) of the display panel component. The second receiving cavity is arranged at one side of the first receiving cavity. A bottom of the second receiving cavity is lower in height than a bottom of the first receiving cavity.
In one example, the bottom of the second receiving cavity and the bottom of the first receiving cavity are parallel to each other. When an internal volume for components of the box is small, a structure of the box of the present disclosure is used, which allows the PCBs of the display panel components 200 to be disposed evenly, thereby avoiding overlarge height of the PCBs laid in the box.
In one example, the bottom of the second receiving cavity is tilted towards the bottom of the first receiving cavity, a connector arranged on the PCB of the display panel component is disposed at a first side of the second receiving cavity. When the internal volume for components of the box is large, a height difference T between total height of the PCBs of the display panel components and total height of the panel cells of the display panel components in the box is large. The depth of the second receiving cavity is too large, which leads the chip on film (COF) to fall off. Thus, the bottom of the second receiving cavity is tilted, the PCB of the display panel component is laid on the first side, where the connector is arranged on the PCB, the COF of the display panel component is laid on the second side (the tilted bottom of the second receiving cavity causes the depth of the first side of the second receiving cavity is greater than the depth of the second side of the second receiving cavity), the PCBs are not loose, thus, the COF of the PCB are not prone to fall off, thereby effectively ensuring security of open cell (OC).
In one example, a second side of the bottom of the second receiving cavity is connected with one side of the bottom of the first receiving cavity, which effectively protects the COF.
In one example, the first receiving cavity is arranged is a main sub-box of the box, and the second receiving cavity is arranged in an external accessory sub-box of the box, a notch is arranged at one side of the main sub-box. The accessory sub-box is sleeved in the notch
In one example, the notch is a rectangular structure. The accessory sub-box comprises a recess portion forming the second receiving cavity and a limit external eave. A shape of the recess portion corresponds to a shape of the notch. Length and width of the limit external eave is greater than length and width of the notch. The accessory sub-box is fixed in the notch through limit of the limit external eave. The accessory sub-box is directly fixed in the notch through limit of the limit external eave, which is easy operation and stable.
In one example, two sides of the recess portion are configured with a limit surface. The accessory sub-box may not move and tilt when the accessory sub-box is sleeved in the notch through the limit surfaces.
In one example, the bottom of the second receiving cavity and the bottom of the first receiving cavity are parallel to each other. A height difference between total height of the PCBs of the display panel components and total height of the panel cells of the display panel components in the box is the height difference T. The depth of the second receiving cavity is greater than or equal to the height difference T, which avoids the PCBs and electronic components arranged on the PCBs from protruding above a top horizontal plane of the box (namely a horizontal plane of a topside display panel component), thereby improving the internal volume of the box and ensuring security of the display panel components.
In one example, the bottom of the second receiving cavity is tilted towards the bottom of the first receiving cavity, a connector arranged on the PCB of the display panel component is laid on a first side of the second receiving cavity. A height difference between total height of the PCBs of the display panel components and total height of the panel cells of the display panel components in the box is T. The depth of the second receiving cavity receiving the PCB of the display panel component is greater than or equal to the height difference T, which avoids the PCBs and electronic components arranged on the PCBs from protruding above a top horizontal plane of the box (namely a horizontal plane of a topside display panel component), thereby improving the internal volume of the box and ensuring security of the display panel components.
In one example, a bottom of the box is configured with a stiffener, which improves structure strength of the box. Thus, distortion structural distortion of the box, which results in damage of the panel cells, does not happen when the box includes a plurality of display panel components.
The box of the present disclosure used for packaging display panel components comprises the first receiving cavity receiving the panel cell of the display panel component and the second receiving cavity receiving the printed circuit board (PCB) of the display panel component. The second receiving cavity is arranged at one side of the first receiving cavity. The bottom of the second receiving cavity is lower in height than the bottom of the first receiving cavity, which allows the PCB laid is the second receiving cavity is lower in height than the panel cell laid in the first receiving cavity, thus, a height difference T caused by a connector arranged on the PCB may be completely offset or partly offset (When N display panel components are disposed in the box, the height difference T is formed between the height of the panel cells and the height of connectors arranged on the PCB, namely T=n*k). Furthermore, sheet materials used to add to the height may be canceled or a thickness of the sheet materials can be reduced. Because a total height of the PCBs and the panel cells is reduced, the internal volume for components of the box is improved when the height of the box is not changed.
The present disclosure will further be described in detail in accordance with the figures and the exemplary examples.
As shown in
As shown in the
The lower bottom of the second receiving cavity 120 of the first example may be formed by directly modifying a typical box. Because a bottom of the typical box is thick and volume of the second receiving cavity 120 is small, which does not obviously affect structural strength of the box.
In the first example, the height difference between total height of the PCBs 203 of the display panel components and total height of the panel cells 201 of the display panel components in the box 100 is T, and height of the second receiving cavity is more than or equal to the height difference T, which avoids the PCBs 203 and electronic components arranged on the PCBs 203 from protruding above a top horizontal plane of the box 100 (namely a horizontal plane of a topside display panel component), thereby improving the internal volume of the box 100 and ensuring security of the display panel components 200.
As shown in the
A second example is shown in
In the second example, the height difference between total height of the PCBs 203 of the display panel components 200 and total height of the panel cells 201 of the display panel components 200 in the box 100 is T. Depth of the first side of the second receiving cavity receiving the PCBs 203 of the display panel components 200 is greater than or equal to the height difference T, which avoids the PCBs and the electronic components arranged on the PCBs from protruding above top horizontal plane of the box 100 (namely a horizontal plane of a topside display panel component), thereby improving the internal volume of the box 100 and ensuring security of the box 100.
As shown in
A third example is shown in
The notch 117 is a rectangular structure. As shown in
A bottom of the second receiving cavity 120 of the third example is tilted, as shown in
The present disclosure is described in detail in accordance with the above contents with the specific preferred examples. However, this present disclosure is not limited to the specific examples. For the ordinary technical personnel of the technical field of the present disclosure, on the premise of keeping the conception of the present disclosure, the technical personnel can also make simple deductions or replacements, and all of which should be considered to belong to the protection scope of the present disclosure.
Number | Date | Country | Kind |
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2013 1 0213051 | May 2013 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2013/077554 | 6/20/2013 | WO | 00 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2014/190570 | 12/4/2014 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
3635331 | Zucker | Jan 1972 | A |
5126725 | Yanagisawa | Jun 1992 | A |
8294844 | Chen | Oct 2012 | B2 |
8358387 | Choi | Jan 2013 | B2 |
8432525 | Choi | Apr 2013 | B2 |
8497936 | Park | Jul 2013 | B2 |
8506106 | Kim | Aug 2013 | B2 |
8720691 | Hu | May 2014 | B2 |
8727119 | Hsiao | May 2014 | B2 |
8864357 | Kim | Oct 2014 | B2 |
9045273 | Guo | Jun 2015 | B2 |
20030223020 | Lee | Dec 2003 | A1 |
20040264211 | Han | Dec 2004 | A1 |
20050078469 | Jeong | Apr 2005 | A1 |
20050183305 | Hirata | Aug 2005 | A1 |
20070035689 | Ryu | Feb 2007 | A1 |
20070046617 | Song | Mar 2007 | A1 |
20070139578 | Zhou | Jun 2007 | A1 |
20080030645 | Nam | Feb 2008 | A1 |
20090059539 | Ryu | Mar 2009 | A1 |
20090310058 | Kim | Dec 2009 | A1 |
20100259881 | Choi | Oct 2010 | A1 |
20110116001 | Chen et al. | May 2011 | A1 |
20120019989 | Qiu | Jan 2012 | A1 |
20120236588 | Shin | Sep 2012 | A1 |
20130039036 | Son | Feb 2013 | A1 |
20130215359 | Chun | Aug 2013 | A1 |
20140022822 | Lee | Jan 2014 | A1 |
20140262927 | Guo | Sep 2014 | A1 |
20140332422 | Hu | Nov 2014 | A1 |
20140340610 | Hu | Nov 2014 | A1 |
20140347864 | Kawada | Nov 2014 | A1 |
20140362325 | Lee | Dec 2014 | A1 |
20150023001 | Lee | Jan 2015 | A1 |
20150219839 | Jung | Aug 2015 | A1 |
Number | Date | Country |
---|---|---|
101554944 | Oct 2009 | CN |
101575023 | Nov 2009 | CN |
TW201118012 | Jun 2011 | CN |
202110373 | Jan 2012 | CN |
102616469 | Aug 2012 | CN |
102897436 | Jan 2013 | CN |
102910378 | Feb 2013 | CN |
102991884 | Mar 2013 | CN |
203173159 | Sep 2013 | CN |
2002332023 | Nov 2002 | JP |
2003276790 | Oct 2003 | JP |
10-2011-0070547 | Jun 2011 | KR |
20-2011-0008397 | Aug 2011 | KR |
Entry |
---|
Huang Rong, the International Searching Authority written comments, Jan. 2014, CN. |
Number | Date | Country | |
---|---|---|---|
20150223350 A1 | Aug 2015 | US |