Elongated lead frame and a method of manufacturing an elongated lead frame
10665766 ยท 2020-05-26
Assignee
Inventors
- Gerard Kums (Molenstede, BE)
- NORBERTUS ANTONIUS MARIA SWEEGERS (LIEROP, NL)
- Floris Maria Hermansz Crompovets (Bunde, NL)
- Christian Kleijnen (Ittervoort, NL)
Cpc classification
F21Y2103/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H01L33/62
ELECTRICITY
H05K2201/066
ELECTRICITY
H01L23/49568
ELECTRICITY
F21Y2107/70
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H05K2201/2009
ELECTRICITY
H01L21/4821
ELECTRICITY
H05K1/189
ELECTRICITY
H01L23/4951
ELECTRICITY
International classification
H01L33/62
ELECTRICITY
H01L25/075
ELECTRICITY
H01L21/48
ELECTRICITY
H05K1/18
ELECTRICITY
Abstract
An elongated lead frame (100) for a plurality of solid state light emitters (116), an elongated lighting assembly and a method of manufacturing an elongated lead frame are provided. The elongated lead frame comprises a first patterned layer (310) of an electrically conductive material and a second patterned layer (320) of an electrically isolating material. The first patterned layer comprising two electrically conductive tracks (102) that comprise first structures (316, 316) for a first layer of a stack of light emitter islands and two electrically conductive connections between the first structures, at least one of the electrically conductive tracks comprises in between pairs of neighboring first structures a winded portion for forming a flexible electrically conductive connection in between the pairs of neighboring first structures. The second patterned layer comprising second structures for a second layer of the stack of the light emitter islands, the second patterned layer is provided on top of the first patterned layer.
Claims
1. An elongated lead frame for a plurality of solid state light emitters, the elongated lead frame comprising: a first patterned layer of an electrically conductive material, the first patterned layer comprising two electrically conductive tracks that comprise first structures for a first layer of a stack of light emitter islands and two electrically conductive connections between the first structures, at least one of the electrically conductive tracks comprises in between pairs of neighboring first structures a winded portion for forming a flexible electrically conductive connection in between the pairs of neighboring first structures, a second patterned layer of an electrically isolating material, the second patterned layer comprising second structures for a second layer of the stack of the light emitter islands, the second patterned layer is provided on top of the first patterned layer and the second structures are provided on the first structures, wherein the light emitter islands have a rigid structure, wherein in between pairs of neighboring light emitter islands the first electrically conductive track is not mechanically coupled to the winded portion of the second electrically conductive track by means of a rigid material; and a third patterned layer of an electrically conductive material, the third patterned layer comprising third structures for a third layer of the stack of the light emitter islands, the third pattern layer is provided on top of a stack formed by the first patterned layers and the second patterned layer, wherein the third structures are provided on the second structures at an opposite surface of the second structures than the surface to which the first structures are provided.
2. An elongated lead frame according to claim 1, wherein also another one of the two electrically conductive tracks comprises winded portions in between the pairs of neighboring light emitter islands for obtaining a further flexible electrically conductive track in between the pairs of neighboring light emitter islands.
3. An elongated lead frame according to claim 1, wherein the third patterned layer of an electrically conductive material comprises a plurality of series electrically conductive wires, each series electrically conductive wire being coupled between a first one of the third structure and a neighboring second one of the third structures for providing an electrical connection in a series arrangement of a subset of the plurality of solid state light emitters, the series electrically conductive wires being arranged near or at a longitudinal central axis of the elongated lead frame.
4. An elongated lead frame according to claim 3, wherein the plurality of series electrically conductive wires have a central portion at which a width of said series electrically conductive wires is about equal to a height of said series electrically conductive wires.
5. An elongated lead frame according to claim 1, wherein at least two of the third structures form electrodes for receiving one of the plurality of solid state light emitters.
6. An elongated lead frame according to claim 5, wherein the first structures for a first layer of a stack of light emitter islands are electrically isolated from each other by a first elongated area extending in a first direction within the first layer and the third structures for a third layer of the stack of the light emitter islands are electrically isolated from each other by a second elongated area extending in a second direction within the third layer, the second direction being different from the first direction.
7. An elongated lead frame according to claim 5, comprising a plurality of through holes in the second patterned layer, the through holes being filled with an electrically conductive material for electrically connecting one of the third structures with one of the first structures.
8. An elongated lead frame according to claim 7, wherein the electrically conductive material of a subset of the through holes s ohmic for creating a series resistor.
9. An elongated lighting assembly according to claim 5, wherein each one of the plurality of solid state light emitters is arranged at the two electrodes of a respective one of the light emitter islands.
10. An elongated lighting assembly according to claim 9 further comprising a light transmitting flexible material encapsulating the elongated lead frame provided with the plurality of solid state light emitters, wherein the light transmitting flexible material is shaped in a bar-shape or a rod-shape, the light transmitting flexible material is also provided in a space in between pairs of neighboring light emitter islands in between the two electrically conductive tracks.
11. An elongated lead frame for a plurality of solid state light emitters, the elongated lead frame comprising: a first patterned layer of an electrically conductive material, the first patterned layer comprising two electrically conductive tracks that comprise first structures for a first layer of a stack of light emitter islands and two electrically conductive connections between the first structures, at least one of the electrically conductive tracks comprises in between pairs of neighboring first structures a winded portion for forming a flexible electrically conductive connection in between the pairs of neighboring first structures, a second patterned layer of an electrically isolating material, the second patterned layer comprising second structures for a second layer of the stack of the light emitter islands, the second patterned layer is provided on top of the first patterned layer and the second structures are provided on the first structures, wherein the light emitter islands have a rigid structure, wherein in between pairs of neighboring light emitter islands the first electrically conductive track is not mechanically coupled to the winded portion of the second electrically conductive track by means of a rigid material; and wherein elongated lead frame further comprises a further electrically isolating layer and a further metal element, the further electrically isolating layer is provided in between the further metal element and one of the first patterned layer and third patterned layer, the further metal elements are one of a flat metal element of which an area is coupled to the further electrically isolating layer, a metal element bended in a U shape having in between the legs of the U shape a flat area that is coupled to the further electrically isolating layer.
12. An elongated lead frame according to claim 11, wherein at least one of the second patterned layer and the further electrically isolating layer is heat conductive.
13. Method of manufacturing an elongated lead frame for a plurality of solid state light emitters, the method comprising: providing a first patterned layer of an electrically conductive material, the first patterned layer comprising two electrically conductive tracks that comprise first structures for a first layer of a stack of light emitter islands and two electrically conductive connections between the first structures, at least one of the electrically conductive tracks comprises in between pairs of neighboring first structures a winded portion for forming a flexible electrically conductive connection in between the pairs of neighboring first structures, providing a second patterned layer of an electrically isolating material, the second patterned layer comprising second structures for a second layer of the stack of the light emitter islands, the second patterned layer is provided on top of the first patterned layer; and providing a third patterned layer of an electrically conductive material, the third patterned layer comprising third structures for a third layer of the stack of the light emitter islands, the third pattern layer is provided on top of a stack formed by the first patterned layers and the second patterned layer.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) These and other aspects of the invention will be apparent from and elucidated further with reference to the embodiments described by way of example in the following description and with reference to the accompanying drawings, in which
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(13) The figures are purely diagrammatic and not drawn to scale. In the Figures, elements which correspond to elements already described may have the same reference numerals.
DETAILED DESCRIPTION OF EMBODIMENTS
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(16) It is to be noted that the two electrically conductive tracks 152, 154 are at the winded portions 164, 164, which means at areas in between pairs of neighboring light emitter islands 162, 162, 162, not mechanically coupled to each other by means of a rigid/stiff material. This means that, for example, air is in between them, or that they are coupled to each other by means of a flexible material. Thereby it is allowed that one of the winded portions in between a specific pair of neighboring light emitter islands may be bent or may be (de-)formed in another shape independently of the bending/deformation of the other one of the winded portions in between the specific pair of neighboring light emitter islands. Thereby, the regions in between pairs of neighboring light emitter islands have a high flexibility and, as such, the elongated lead frame 150 is relatively flexible. This reasoning also applies to the two electrically conductive tracks 102, 104 of
(17) Suitable materials for the two electrically conductive tracks and electrodes are copper, copper alloys, iron/nickel alloys or aluminum.
(18) Discussed characteristics of the above discussed elongated lead frames 100, 150 do also apply to the embodiments of the hereinafter discussed elongated lead frames unless it is explicitly stated that the hereinafter discussed elongated lead frames have other, additional or alternative characteristics.
(19) In
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(21) The electrically isolating layer 320 and the electrically isolating pad 320 may be made of a dielectric material. However, embodiments of these elements are not limited to material that have all the characteristics of the dielectric material because it is only relevant that the layer 320 and pad 322 are electrically isolating.
(22) The series electrically conductive wires 332 have at least a portion where the height of the series electrically conductive wires 332 is about equal to the width of the series electrically conductive wires 332. The height being about equal to the width means that the height does not deviate more than 20% from the width, or, optionally, does not deviate more than 10% from the width, or, optionally, does not deviate more than 5% from the width. Thereby the series electrically conductive wires 332 have a central portion that can be bent thereby contributing the flexibility of the elongated lead frame 300. The series electrically conductive wires 332 are arranged close to a central longitudinal axis of the elongated lead frame 300 such that they have to bend only a little bit when the whole elongated lead frame 300 is bent. The series electrically conductive wires 332 is coupled to one of the second areas 334, 336 of a first light emitter island and is coupled to one of the second areas of a neighboring second light emitter island. Respective second areas of neighboring light emitter islands that face each other are coupled to each other via the series electrically conductive wires 332 and the series electrically conductive wires 332 are attached to these respective second areas at the edges of the areas that face each other and, more in particular, at about central position of these edges.
(23) It can also be seen in
(24) As can be seen in
(25) As can be seen in
(26) Suitable materials for the first layer 310 and/or second layer 330 are copper, copper alloys, iron/nickel alloys or aluminum. Suitable materials for the second layer 320, such as for the electrically isolating pads 322, are polyimide, polyesters and/or epoxies. However, embodiments are not limited to these examples. It is important that the first layer 310 and the second layer 330 are made of an electrically conductive material and the second layer 320 is made of an electrically isolating material.
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(29) The further metal element 580 of
(30) The U shaped further metal element 580 is electrically isolated by the further electrically isolating layer from the first metal layer and/or the second metal layer. As such the U shaped further metal element 580 is an element that may be touched, in use, by user because it does not conduct a current or has a (too) high voltage. Because the U shaped further metal element 580 is electrically neutral it can also be brought in contact with parts of a device or an apparatus in which the elongated lead frame or elongated lighting assembly is integrated for example for fastening the elongated lead frame or elongated lighting assembly, but also for transferring heat to cooling elements.
(31) Optionally, the further electrically isolating layer 570 may be heat conductive. If the further electrically isolating layer is relatively thin, a relatively large amount of heat can be transported towards the U shaped further metal element 580. Alternatively, if the further electrically isolating layer is somewhat thicker, but has a good heat conductivity coefficient, quite a lot of heat can also be transported towards the U shaped further metal element 580. Then the U shaped further metal element 580 is well able to conduct, in use, the heat away from the elongated lead frame and to transfer, in use, the heat towards the environment of the elongated lead frame/the elongated lighting assembly.
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(42) In an embodiment, a method of manufacturing an elongated lighting assembly is provided that comprises the method 1500 of manufacturing an elongated lead frame. The method of manufacturing an elongated lighting assembly also comprises the stage of providing solid state light emitters to the structures of the third layer of the stack of the light emitter islands. After this stage, the elongated lighting assembly 1400 presented in
(43) It is to be noted that in the above process also the further electrically isolating layer and the further metal element may be provided to the elongated lead frame by means of the same sort of processing steps.
(44) It is to be noted that the above process is not necessarily only applied by using separate sheets that are placed in between press blocks. The above process may also be provided as s continuous process in which the patterned layers are provided on a roll and that a reel-to-reel process is used wherein the patterned layers are continuously provided by the rolls and wherein, at a specific location, the layers are locally heated and pressed together.
(45) In summary, this documents provides an elongated lead frame for a plurality of solid state light emitters, an elongated lighting assembly and a method of manufacturing an elongated lead frame. The elongated lead frame comprises a plurality of light emitter islands and two electrically conductive tracks. The plurality of light emitter islands comprising two electrodes for receiving one of the plurality of solid state light emitters and for providing power to the one of the plurality of solid state light emitters. The light emitter islands having a rigid structure. The two electrically conductive tracks are arranged along the elongated lead frame for transporting power for the plurality of solid state light emitters. At least one of the two electrically conductive tracks comprises winded portions in between pairs of neighboring light emitter islands for obtaining a flexible electrically conductive track in between the pairs of neighboring light emitter islands.
(46) Further embodiments of the invention are disclosed in the subsequent clauses:
(47) 1. An elongated lead frame for a plurality of solid state light emitters, the elongated lead frame comprising:
(48) a plurality of light emitter islands comprising two electrodes for receiving a respective one of the plurality of solid state light emitters and for providing power to the respective one of the plurality of solid state light emitters, the light emitter islands having a rigid structure,
(49) two electrically conductive tracks being arranged along the elongated lead frame for transporting power for the plurality of solid state light emitters, wherein at least one of the two electrically conductive tracks comprises winded portions in between pairs of neighboring light emitter islands for obtaining a flexible electrically conductive track in between the pairs of neighboring light emitter islands.
(50) 2. An elongated lead frame according to clause 1, wherein also another one of the two electrically conductive tracks comprises winded portions in between the pairs of neighboring light emitter islands for obtaining a further flexible electrically conductive track in between the pairs of neighboring light emitter islands.
(51) 3. An elongated lead frame according to any one of the preceding clauses, wherein, in between the pairs of neighboring light emitter islands, the two electrically conductive tracks are not mechanically coupled to each other by means of a rigid material.
(52) 4. An elongated lead frame according to any one of the preceding clauses, further comprising a plurality of series electrically conductive wires, each series electrically conductive wire being coupled between a first light emitter island and a neighboring second light emitter island for providing an electrical connection in a series arrangement of a subset of the plurality of solid state light emitters, the series electrically conductive wires being arranged near or at a longitudinal central axis of the elongated lead frame.
(53) 5. An elongated lead frame according to clause 4, wherein the plurality of series electrically conductive wires have a central portion at which a width of said series electrically conductive wires is about equal to a height of said series electrically conductive wires.
(54) 6. An elongated lead frame according to any one of the preceding clauses, wherein the plurality of the light emitter islands are formed by stacks of a first layer comprising first metal areas, an electrically isolating layer and a second layer comprising second metal areas, wherein a first one of the first metal areas is part of a first one of the two electrically conductive tracks, a second one of the first metal areas is part of a second one of the two electrically conductive tracks, and wherein at least two of the second metal areas form the two electrodes for receiving one of the plurality of solid state light emitters.
(55) 7. An elongated lead frame according to clause 6, wherein the first metal areas are electrically isolated from each other by a first elongated area extending in a first direction within the first layer and the second metal areas are electrically isolated from each other by a second elongated area extending in a second direction within the second layer, the second direction being different from the first direction.
(56) 8. An elongated lead frame according to clause 6 or 7 when directly or indirectly referring to clause 4, wherein each electrically conductive wire of the plurality of series electrically conductive wires is coupled between a respective one of the second metal areas of the first light emitter island and a respective one of the second metal areas of the neighboring second light emitter island.
(57) 9. An elongated lead frame according to any one of the clauses 6 to 8 comprising a plurality of through holes in the electrically isolating layer of the stacks of a subset of the plurality of light emitter islands, the through holes being filled with an electrically conductive material for electrically connecting one of the second metal areas with one of the first metal areas.
(58) 10. An elongated lead frame according to clause 9, wherein the electrically conductive material of a subset of the through holes is ohmic for creating a series resistor.
(59) 11. An elongated lead frame according to any one of the clauses 6 to 9, wherein the stacks of the plurality of the light emitter islands comprise a further electrically isolating layer and a further metal element, the further electrically isolating layer is provided in between the further metal element and one of the first layer and second layer, the further metal elements are one of
(60) a flat metal element of which an area is coupled to the further electrically isolating layer,
(61) a metal element bended in a U shape having in between the legs of the U shape a flat area that is coupled to the further electrically isolating layer.
(62) 12. An elongated lead frame according to any one of the clauses 6 to 11, wherein at least one of the electrically isolating layer and the further electrically isolating layer is heat conductive.
(63) 13. An elongated lighting assembly comprising:
(64) a plurality of solid state light emitters,
(65) an elongated lead frame according to any one of the clauses 1 to 12, wherein each one of the plurality of solid state light emitters is arranged at the two electrodes of a respective one of the light emitter islands.
(66) 14. An elongated lighting assembly according to clause 13 further comprising a light transmitting flexible material encapsulating the elongated lead frame provided with the plurality of solid state light emitters, wherein
(67) the light transmitting flexible material is shaped in a bar-shape or a rod-shape,
(68) the light transmitting flexible material is also provided in a space in between pairs of neighboring light emitter islands in between the two electrically conductive tracks, and
(69) optionally, when directly or indirectly referring to clause 11, the further metal element partially protrudes out of the light transmitting flexible material.
(70) 15. Method of manufacturing an elongated lead frame for a plurality of solid state light emitters, the method comprising:
(71) providing a first patterned layer of an electrically conductive material, the first patterned layer comprising two electrically conductive tracks that comprise first structures for a first layer of a stack of light emitter islands and two electrically conductive connections between the first structures, at least one of the electrically conductive tracks comprises in between pairs of neighboring first structures a winded portion for forming a flexible electrically conductive connection in between the pairs of neighboring first structures,
(72) providing a second patterned layer of an electrically isolating material, the second patterned layer comprising second structures for a second layer of the stack of the light emitter islands, the second patterned layer is provided on top of the first patterned layer,
(73) providing a third patterned layer of an electrically conductive material, the third patterned layer comprising third structures for a third layer of the stack of the light emitter islands, the third pattern layer is provided on top of a stack formed by the first patterned layers and the second patterned layer,
(74) applying a hot press lamination process to a stack of the first patterned layer, the second patterned layer and the third patterned layer,
(75) removing tie bar structures of the first patterned layer, the second layer, and/or the third patterned layer.
(76) It is noted, that in this document the word comprising does not exclude the presence of other elements or steps than those listed and the word a or an preceding an element does not exclude the presence of a plurality of such elements, that any reference signs do not limit the scope of the claims. Further, the invention is not limited to the embodiments, and the invention lies in each and every novel feature or combination of features described above or recited in mutually different dependent claims.