Liquid Crystal Display Device Having Enclosure Snugly Engaged With Display Panel
20170299914 · 2017-10-19
Assignee
Inventors
Cpc classification
G02F1/133317
PHYSICS
G02F2201/56
PHYSICS
International classification
Abstract
A liquid crystal display panel comprises an enclosure configured with a bezel frame which includes a lateral wall and a bezel attached to the lateral wall. A substrate with a leading edge defines at least of a positioning slot corresponding to the resilient tab, and a display panel module with optical components is supported on the substrate. A space is defined under the bezel with at least one resilient tab extending into the space. Wherein when the leading edge of the substrate is inserted into the space, interengagement is created between the resilient tab and the positioning slot.
Claims
1. An enclosure for mounting a liquid crystal display module, comprising a bezel frame including a lateral wall and a bezel attached to the lateral wall, a retaining gap being defined under the bezel, at least one resilient tab extending into the retaining gap; a substrate having a leading edge defining with at least of an positioning slot corresponding to the resilient tab, and a display panel supported on the substrate; wherein when the leading edge of the substrate is inserted into the retaining gap, interengagement is created between the resilient tab and the positioning slot.
2. The enclosure as recited in claim 1, wherein when the leading edge is inserted into the retaining gap, a top surface of the display panel is flushed with a top surface of the bezel.
3. The enclosure as recited in claim 1, wherein the resilient tab is configured by a pair of prongs extending from the lateral wall of the bezel frame.
4. The enclosure as recited in claim 3, wherein each of the prongs is formed with a lead-in for insertion into the positioning slot of the substrate.
5. The enclosure as recited in claim 1, wherein both the resilient tab and the positioning slot have a dovetail-shaped configuration.
6. The enclosure as recited in claim 1, wherein further comprises a base frame interengaged with the bezel frame.
7. The enclosure as recited in claim 1, wherein the bezel frame is formed with a mounting portion rooted into a trough defined in the base frame.
8. An enclosure for mounting a substrate of a liquid crystal display, comprising a base frame providing a bottom wall and a supporting platform extending from the bottom wall, the base frame further including a first peripheral wall extending upward; a bezel frame interengaged with the base frame, and a lateral wall corresponding to the first peripheral wall of the base frame; wherein when the bezel frame is assembled to the base frame, a retaining gap is jointly defined by the bezel of the bezel frame and the supporting platform of the base frame.
9. The enclosure as recited in claim 8, wherein at least one resilient tab formed on the lateral wall of the bezel frame and extending into the retaining gap.
10. The enclosure as recited in claim 9, wherein the resilient tab is configured with a pair of prongs.
11. The enclosure as recited in claim 10, wherein the resilient tab has a dovetail-shaped configuration.
12. The enclosure as recited in claim 8, wherein the lateral wall of the bezel frame is aligned with the first peripheral wall of the base frame.
13. The enclosure as recited in claim 12, joints are formed on mating ends of the bezel frame and the first peripheral wall of the base frame.
14. A liquid crystal display panel, comprising an enclosure configured with a bezel frame which includes a lateral wall and a bezel extending from the lateral wall, wherein at least a resilient tab is formed on the lateral wall of the bezel frame; a substrate having a leading edge defining with at least of an positioning slot corresponding to the resilient tab, and a display panel module with optical components supported on the substrate; a space being defined under the bezel with the resilient tab extending into the space; and wherein when the leading edge of the substrate is inserted into the space, interengagement is created between the resilient tab and the positioning slot.
15. The liquid crystal display panel as recited in claim 14, wherein the bezel frame includes a supporting platform in the space under the bezel so as to define a retaining gap in which the resilient tab reaches therein.
16. The liquid crystal display panel as recited in claim 14, wherein the enclosure further includes a base frame having a supporting platform to jointly define the retaining gap with the bezel of the bezel frame when the bezel frame is assembled with the base frame.
17. The liquid crystal display panel as recited in claim 15, wherein the resilient tab is configured with a pair of prongs.
18. The liquid crystal display panel as recited in claim 17, wherein each of the prongs is provided with a lead-in.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0019] Embodiments of the invention will now be described more fully hereinafter with reference to the accompanying drawings, in which embodiments of the invention are shown.
[0020] Referring to
[0021] The bezel frame 30 is configured with a lateral wall 31, a bezel 32, a supporting platform 33, and a mounting portion 34. The bezel 32 extends from a top end of the lateral wall 31. In this embodiment, the supporting platform 32 extends also from the lateral wall 31 and jointly define a retaining gap 35 with the bezel 32. The bezel 32 is preferably formed with a lead-in surface 321. The mounting portion extends downward from the supporting platform 32. The mounting portion 34 is in parallel with respect to the lateral wall 31 such that a retaining trough 36 is defined therebetween.
[0022] The liquid crystal display panel module 20 includes a thin-film transistor (TFT) substrate 22 and a color filter (CF) substrate 21 mounted on top of the TFT substrate 22 which is larger than the CF substrate 21 in dimension. A lead-in edge 23 is spared in the liquid crystal display panel module 20 and which can be readily inserted into the retaining gap 35 in a way such that a top surface of the liquid crystal display panel module 20 is flushed with a top surface of the bezel 32. The TFT substrate 22 is defined with a gluing area, and the arrangement of the supporting platform 33, the lead-in surface 321 of the bezel 32 can be readily used to control the flowing direction of the glue in that gluing area. Specially, the lead-in surface 321 will preferably lead the glue to flow out of the retaining gap 35 and settle in an area between the CF substrate 21 and the lead-in surface 321 of the bezel 32.
[0023] The base frame 40 includes a bottom wall 41, a first peripheral wall 42 extending upward from the bottom wall 41. A mounting space 43 is defined by the bottom wall 41, the first peripheral wall 42 and the supporting platform 33 for housing the optical components 50 therebetween. The first peripheral wall 42 is properly fitted into the retaining trough 36 defined between the lateral wall 31 and the mounting portion 34 so as to keep all elements in correct and intended positions. It should be noted that the mounting portion 34 can be omitted and replaced by the first peripheral wall 42 and the supporting platform 33.
[0024] Referring now to
[0025] Referring to
[0026] The resilient tab 38 is configured by a first prong 381 and a second prong 382. Each of the first and second prongs 381, 382 is defined with a lead-in 383. The first and second prongs 381, 382 extend from the lateral wall 31 into the retaining gap 35 so as to meet and engage with the positioning slot 24 of the lead-in edge 23 of the TFT substrate 22. Every two adjacent resilient tabs 38 jointly a receiving space 384. The interengagement between the resilient tabs 38 and the positioning slots 24 can be readily appreciated by the disclosure of
[0027] Referring to
[0028] The liquid crystal display device 200 is substantially similar to the liquid crystal display device 100. The difference resides the engagement or assembly between the bezel frame 30′ and the base frame 40′. In this embodiment, the base frame 40′ is formed with a second peripheral wall 44 and jointly defining a mounting trough 45 along with the first peripheral wall 42′ so as to securely receive the mounting portion 34′ of the bezel frame 30′.
[0029] It can be readily appreciated from
[0030] It should be noted that the lateral wall 31′, the supporting platform 33′ and the mounting portion 34 can be made individually, and then assembled together; or alternatively, they can be integrally formed.
[0031] Referring to
[0032] The liquid crystal display device 300 is substantially similar to the liquid crystal display device 200. The difference again resides the engagement or assembly between the bezel frame 30″ and the base frame 40″.
[0033] In this embodiment, the supporting platform 33″ is integrally formed with the base frame 40″ while extending upward to define the retaining gap 35 (see
[0034] In this embodiment, the base frame 40′ is formed with a second peripheral wall 44 and jointly defining a mounting trough 45 along with the first peripheral wall 42′ so as to securely receive the mounting portion 34′ of the bezel frame 30′. Both the lateral wall 31″ and the first peripheral wall 41″ is defined with mating joints 311 at their mating ends for readily and convenient engagement.
[0035] In this third embodiment, the bottom wall 41″, the first peripheral wall 42″, the second peripheral wall 44″ and the supporting platform 33″ can be formed individually, and then assembled together, or they can be integrally formed together. It is noted that the lateral wall 31″ of the bezel frame 30″ is preferably formed separately.
[0036] From the above descriptions of the preferable embodiments, it can be readily appreciated that with the interengagement between the retaining tabs and the positioning slots between the bezel frame and the TFT substrate, the purpose and goal of the present invention can be properly achieved. Mostly importantly, the top surface of the display panel is flushed with the top surface of the bezel through this effective arrangement. Other benefits can be readily achieved as well.
[0037] It is believed that the present embodiments and their advantages will be understood from the foregoing description, and it will be apparent that various changes may be made thereto without departing from the spirit and scope of the invention or sacrificing all of its material advantages, the examples hereinbefore described merely being preferred or exemplary embodiments of the invention.