Light guide assembly for an LCD or the like
10466403 ยท 2019-11-05
Assignee
Inventors
Cpc classification
G02B6/0036
PHYSICS
G02B6/0088
PHYSICS
International classification
B62J6/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
An apparatus and method for assembling a display device to which is coupled a light guide that has smooth surfaces for light-transmission and at least one surface that is for light scattering and internal reflection. The method includes depositing a reflective coating on that surface, and installing the display device with coupled light guide in an interior of a meter housing or casing. A portion of the casing interior is filled with a component, such as epoxy, for sealing the case interior to protect the display device and light guide against water and dust penetration. All surfaces of the light guide are protected from direct contact with the epoxy. This approach greatly simplifies the assembly process and yields a robust display that also prevents light leakage from the light guide.
Claims
1. A light guide assembly for coupling with a display device and a light source, the light guide assembly comprising: a light-transmissive light guide having: an inlet for receiving light that enters the light guide to propagate along a path through the light guide; an outlet surface from which emanates the light that propagates through the guide, the emanating light providing light to a display device when the outlet surface is coupled to the display device; an angled surface disposed between the inlet and the outlet surface and having a reflective coating applied thereto, wherein the inlet, the angled surface, and the outlet are collectively configured such that light propagating through the guide from the inlet to the angled surface proceeds in a first direction that is substantially perpendicular to a plane of the outlet surface, is reflected by the angled surface, and thereafter proceeds from the angled surface towards the outlet surface in a second direction that is substantially parallel to the plane of the outlet surface; and a plurality of protuberances dispersed across a rear surface of the light guide that is opposite the outlet surface of the light guide, the protuberances having outer surfaces and being disposed in the path of the light that propagates within the guide so that the light that is propagating in the second direction from the angled surface towards the outlet surface impinges upon and is scattered by the protuberances, wherein the protuberances protrude from an otherwise planar portion of the rear surface, wherein the reflective coating is further applied to the outer surfaces of the protuberances and to the planar portion of the rear surface such that light impinging on the protuberances and on the planar portion of the rear surface is reflected therefrom through the outlet surface of the light guide in a third direction that is substantially perpendicular to the plane of the outlet surface.
2. The light guide assembly of claim 1, wherein the reflective coating is applied by vacuum deposition.
3. The light guide assembly of claim 1, further comprising: a seal component adhered to the reflective coating such that the coating is between the light guide and the seal component, the seal component surrounding and encapsulating the light guide, but not contacting the outlet surface of the light guide, wherein at least a portion of the display device is coupled to the light guide adjacent to the outlet surface.
4. The light guide assembly of claim 3, wherein the display device has a display face and an opposing backlit face and is coupled to the light guide with the backlit face adjacent to the outlet surface of the light guide, the assembly further comprising a peripheral seal disposed around the outlet surface between the light guide and display device for preventing fluid from moving between the backlit face and the outlet surface.
5. The light guide assembly of claim 4, further comprising: a casing inside of which the coupled display device and light guide are mounted so that the display face is sealed against an opening in the casing, the casing having an interior space behind the display device within which resides the light guide, wherein the seal component is an epoxy that fills a part of the interior space to encapsulate the coupled display device and light guide therein.
6. The light guide assembly of claim 1, wherein each protuberance in the plurality of protuberances is cylindrically-shaped.
7. The light guide assembly of claim 6, wherein respective diameters of the respective protuberances increase with distance from the angled surface.
8. The light guide assembly of claim 1, wherein the light guide comprises a rim integrally formed with and generally surrounding the outlet surface, and the reflective coating is applied to at least a portion of the rim.
9. The light guide assembly of claim 8, wherein the rim projects forwardly relative to the outlet surface.
10. The light guide assembly of claim 1, wherein respective sizes of the respective protuberances increase with distance from the angled surface.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(8) Shown in
(9) With reference to
(10) One of the components mounted to the PCB 32 is an array of light emitting diodes (LEDs) 36, which may comprise three separate diodes, emitting blue-, red- and green-wavelength light. In this embodiment, there are two such LED arrays 36 (hereafter referred to as simply LEDs) carried on the PCB 32.
(11) The LCD 28 is backlit with light that is directed through a backlit face 38 on the inward-facing surface of the LCD, so that the display face 40 on the opposite surface of the LCD 28 is sufficiently illuminated for viewing through the opening 23.
(12) With reference to
(13) The light guide 42 includes a downwardly extending pair of inlets 44 that each include a recess 45 (
(14) The general path of the light propagating through the light guide 42 is depicted by arrows 46 in
(15) As indicated by the path arrow 46 the light propagating through the light guide 42 emanates from an outlet surface 52 of the light guide 42. That surface 52 is adjacent to but slightly spaced from the backlit face 38 of the LCD 28 owing to a peripheral rim 54 integrally formed in the light guide 42 to extend upwardly (
(16) An adhesive is applied to the flat, contact surface 56 of the rim 54 to bond that surface to the edges of the backlit face 38 of the LCD 28. This configuration provides a peripheral seal surrounding the spaced-apart junction of the light guide outlet surface 52 and the backlit face 38 of the LCD 28, thereby preventing fluid from moving between the backlit face and the outlet surface, which would degrade the quality of the display.
(17) With particular reference to
(18) It is noteworthy here that as the distance from the source of light, LEDs 36, increases, (that is, right to left in
(19) While the cylindrical-shaped, outwardly protruding protuberances 60 are described as preferred as light traps mentioned above, it is contemplated that other configurations of the light guide rear surface 58 may be employed for accomplishing the light scattering as discussed above. For instance, the rear surface need not be planar, and may be configured with inwardly protruding recesses or pockets of various regular and irregular shapes. Thus, as used here, the term protuberances can be considered as extending inwardly or outwardly, and have various shapes.
(20) As noted earlier, with all of the meter components assembled, including the light guide assembly and coupled display as just described, the remaining interior space 30 of the casing 22 (
(21) As noted earlier, any light propagating through the acrylic light guide 42 can be lost (leaked) from the guide before reaching the guide's outlet surface 52 if the seal component 62 described above comes in direct contact with any surface of the guide. Accordingly, prior to applying the seal component 62, and for that matter prior to assembling the light guide and related components, many of the exterior surfaces of the light guide 42 are coated with reflective material so that the reflective material is applied directly to the light guide, between the guide and the later-applied seal component 62.
(22) In a preferred embodiment the reflective material is a thin film of aluminum applied, for example, by vacuum deposition.
(23) The contact surfaces 56 (
(24) The reflective coating is also applied to the angled surface 48 (
(25) With particular reference to
(26) By coating the entirety of the rear surface 58 (that is, all of surfaces 66, 68) that surface is completely protected against potentially light leaking contact with the seal component 62 as well as any other contaminants (fine dust, etc.) that may over time make its way into the interior of the meter casing 22.
(27) Put another way, any surface of the light guide 42 that may be exposed to direct contact with the seal component 62 when mounted in the casing 22 may be covered with the reflective coating, but the surfaces specifically mentioned as coated above should be so coated for best results.
(28) While the foregoing description was made in the context of preferred embodiments, it is contemplated that modifications to those embodiments may be made without departure from the invention as claimed. For instance, backlit displays other than LCD type may be employed, and seal components other than epoxy are contemplated.