1. Field of the Invention
The present invention relates generally to an optical device, and more particularly to an optical lens and a method of making the same.
2. Description of the Related Art
In recent days, consumer electronic devices, such as cell phone, laptop, tablet, and PDA, are equipped with lens module to catch images. These consumer electronic devices are made as smaller and lighter as possible for user to carry and operate in an easy way so that lens modules and the lens mounted in the lens module are asked smaller and lighter accordingly.
The conventional lens module 60 has several drawbacks, including: a weak structure, even there are the fillers 74 therein; high cost; large size, especially the housing 70 makes it thicker; and lens modules with different specifications need different housings.
The primary objective of the present invention is to provide a lens module and a method of making such lens module, which the lens module has strong structure, small size, and low cost.
According to the objective of the present invention, a method of making lens modules includes the following steps:
Provide a plurality of lens members between a first die and a second die, wherein the lens member has a substrate having a conductor pattern, an image sensor on the substrate and electrically connected to the conductor pattern, a barrel mounted on the substrate, and a lens mounted in the barrel and above the image sensor; the first die has a plurality of positioning portions to respectively touch bottoms of the substrates of the lens members; the second die has a plurality of contacting portions to respectively touch at least a portion of each of the lenses; and a runner is formed between the lens members.
Provide a housing material between the first die and the second die to fill the runner with the housing material, and then curing the housing material, wherein the housing material embeds the lens members except the bottoms of the substrates touching the first die and the portions of the lenses touching the second die.
Remove the first die and the second die to obtain a block; and
Cutting the block to obtain a plurality of the lens module, wherein each of the lens module includes a housing formed by the housing material, and the lens member in the housing.
In an embodiment, the positioning portions of the first die are recesses on the first die, and the recesses are complementary to the substrates.
In an embodiment, the contacting portions of the second die are recesses on the second die, and the recesses are complementary to the portions of the lenses.
In an embodiment, the second die is flexible to be deformed by the lenses to form the contacting portions when the second die is put on the lens members and pressed.
In an embodiment, the contacting portions of the second die are posts on the second die to respectively touch the lenses by distal ends of the posts.
In an embodiment, the method of the present invention further includes the step of providing solder bumps on the bottoms of the substrates after the step of removing the first die and the second die.
In an embodiment, the method of the present invention further includes the step of providing solder balls on the bottoms of the substrates after the step of removing the first die and the second die.
In an embodiment, the housing material is selected from the group consisting of epoxy, natural rubber, and thermosetting plastic.
The present invention further provides a lens module, including a lens member including a substrate having a conductor pattern, an image sensor on the substrate and electrically connected to the conductor pattern, a barrel mounted on the substrate, and a lens mounted in the barrel and above the image sensor; and a housing embedding the lens member, wherein the housing has an opening on a top thereof to expose at least a portion of the lens of the lens member; and the housing has a cavity complementary to the lens member.
In an embodiment, the portion of the lens extends out of the housing through the opening.
In an embodiment, the lens is behind the opening, and touches a rear end of the opening.
In an embodiment, the substrate has a portion not covered by the housing, on which solder bumps are provided to electrically connect to the conductor pattern.
In an embodiment, the substrate has a portion not covered by the housing, on which solder balls are provided to electrically connect to the conductor pattern.
Therefore, the present invention is faster than the conventional method, and the lenses made by the method of the present invention are thinner and lighter than the lenses made by the conventional method.
As shown in
A. Put a plurality of lens members 10 on a first die 20:
The lens members 10 are pre-made before performing the method of the present invention. Each lens member 10, as shown in
B. Put a second die 26 on the lens members 10:
In the present embodiment, the second die 26 has the same size as the first die 20, and has a plurality of contacting portions 28 thereon to touch the lenses 18 of the lens members 10 respectively. In the present embodiment, the second die 26 is a rigid board with a plurality of recesses thereon, and the recesses are the contacting portions 28. The recesses are arranged in a matrix form, and the shapes of the recesses are complementary to at least a portion of the lenses 18 so that each lens 18 may has a portion received in the recess, and a sidewall of recess will tightly touch the lens 18, as shown in
An alternate way is that the second die 26 is made of a flexible material, such as silicon rubber, therefore, the second die 26 will be partially deformed by the lenses 18 to tightly contact the lenses 18 when one puts the second die 26 on the lens members 10 and presses it.
A holder (not shown) will be applied to the first die 20 and the second die 26 to fix them for the following steps. The holder is a well-known skill, so we don't describe the detail here.
C. Provide a housing material 30 between the first die 10 and the second die 26, and then solidify it:
The housing material 30 may be epoxy, natural rubber, or thermosetting plastics, and epoxy is chosen in the present embodiment. Molten epoxy is poured into the runner 22 to fill a space between the first die 10 and the second die 26. At this stage, the epoxy will embed the lens members 10 except for the bottoms of the substrates 12 which tightly touch the positioning portions 22 of the first die 20, and the portions of the lenses 18 which tightly touch the contacting portions 28. Next, cool the epoxy 30 for curing.
D. Remove the first die 10 and the second die 26, as shown in
E. Providing solder bumps 32 on the bottoms of the substrates 12 of the lens members 10 to electrically connect to the conductor patterns respectively. As shown
F. Cut the block, as shown in
The lens module 34 made by the method of the present invention has the following advantages:
1. The housing 36 firmly embeds the lens member 10 therein without any gap therebetween to make the lens module 34 a firm rigid unit, and therefore, the lens module 34 will has a strong structure.
2. The height of the lens module 34 is reduced.
3. Any kind of lens member may be applied in the same process of the method of the present invention.
4. The cost of manufacture is lower than the conventional method.
The description above is a few preferred embodiments of the present invention and the equivalence of the present invention is still in the scope of claim construction of the present invention.
This application is a divisional of application Ser. No. 13/526,220, filed Jun. 18, 2012, the entire disclosure of which is hereby incorporated by reference.
Number | Date | Country | |
---|---|---|---|
Parent | 13526220 | Jun 2012 | US |
Child | 14486249 | US |