Near Field Communication Ring Having a Flat-Bar Flexible Printed Circuit and a Processing Flow Thereof
20180240000 ยท 2018-08-23
Inventors
Cpc classification
G06K19/0723
PHYSICS
International classification
Abstract
Embodiments disclosed herein show an NFC ring having a flat-bar FPC and a processing flow thereof, and more particularly to an NFC ring and a processing flow thereof, wherein by providing a flat-bar FPC, the signal transmission and reception effect as well as the anti-interference efficiency can be improved, along with that the processing flow can be simplified to improve the production efficiency and the yield of the product. In addition, the NFC ring can be made more miniaturized, and the data in the NFC ring can be prevented from being stolen by the unique induction method thereof.
Claims
1. An near field communication ring having a flat-bar flexible printed circuit, comprising: a flat-bar FPC is equipped with anti-interference function, with an interior of the flat-bar FPC being provided with plural antenna beams, an IC (Integrated Circuit), a capacitor and plural pads; wherein a crystal glue is filled into a containing groove, an outer annular surface of a ring body is provided with the groove for installing the flat-bar FPC (Flexible Printed Circuit) and the crystal glue.
2. A processing flow of the near field communication ring having a flat-bar flexible printed circuit, comprising steps of: a) putting a T-end of a proper flat-bar FPC into a top groove of a ring body for positioning and fixation; b) enclosing the flat-bar FPC into a containing groove of the ring body; c) pulling the flat-bar FPC to enclose the flat-bar FPC tightly; d) fixing a tail end of the annular-shaped flat-bar FPC to facilitate subsequent processing procedure; e) welding the plural pads on the flat-bar FPC and performing a first functional test of product; f) filling crystal glue into the containing groove after passing the first functional test, polishing a glue surface as request and passing a functional test to accomplish the product.
3. A processing flow of the near field communication ring having a flat-bar flexible printed circuit, comprising steps of: a) putting a small T-end of a proper flat-bar FPC into a top groove of a ring body for positioning and fixation; b) enclosing the flat-bar FPC into a containing groove of the ring body along an arrow on drawings; c) pulling the flat-bar FPC, so that the flat-bar FPC is enclosed tightly and then fixed; d) welding plural pads on the flat-bar FPC and performing a first functional test of product; e) filling a crystal glue into the containing groove after passing the first functional test, polishing a glue surface as request and passing a functional test to accomplish the product.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0037] The present disclosure relates to an NFC (Near Field Communication) ring having a flat-bar FPC (flexible printed circuit) and a processing flow thereof, and more particularly to an NFC ring and a processing flow thereof, wherein by providing a flat-bar FPC, the signal transmission and reception effect as well as the anti-interference efficiency can be improved, along with that the processing flow can be simplified to improve the production efficiency and the yield of the product. In addition, the NFC ring can be made more miniaturized, and the data in the NFC ring can be prevented from being stolen by the unique induction method thereof.
[0038] Referring to
[0039] An interior of the flat-bar FPC A2 that has been already equipped with the anti-interference function is provided with plural antenna beams A21 in an equal length, an IC (Integrated Circuit) A22, a capacitor A23 and plural pads A24, A25. By enclosing the flat-bar FPC A2 on the groove surface of the ring body A1 and welding the plural pads A24, A25, the NFC magnetic induction area can be maximized, thereby improving the signal transmission and reception effect as well as the efficiency in preventing from the interference among the metallic ingredients and the electronic parts on the ring body. In addition, the processing flow of the NFC ring A0 can be simplified to improve the production efficiency and the yield of the product effectively. Furthermore, the NFC ring A0 can be made more miniaturized.
[0040] The crystal glue A3 which is solidified under a normal temperature is used to seal the abovementioned components, achieving the purposes of water-proofing and beautification to the product.
[0041] Referring to
[0042] Referring to
[0043] Referring to
[0044] Step 1
[0045] A T-end of a proper flat-bar FPC A2 is put into the top groove A12 of the ring body A1 for positioning and fixation.
[0046] Step 2
[0047] The flat-bar FPC A2 is enclosed into the annular groove A11 of the ring body A1 along an arrow on the drawings.
[0048] Step 3
[0049] The flat-bar FPC A2 is pulled and enclosed tightly.
[0050] Step 4
[0051] A tail end of the annular-shaped flat-bar FPC A2 is fixed to facilitate the subsequent processing procedure.
[0052] Step 5
[0053] The plural pads A24, A25 on the flat-bar FPC A2 are welded, and a first functional test of the product is performed.
[0054] Step 6
[0055] The crystal glue A3 is filled into the annular groove A11 of the ring body A1 after passing the first functional test, the glue surface is polished as request, and then the product is accomplished after passing a functional test.
[0056] Referring to
[0057] Step 1
[0058] A small T-end of a proper flat-bar FPC B2 is put into the top groove A12 of the ring body A1 for positioning and fixation.
[0059] Step 2
[0060] The flat-bar FPC B2 is enclosed into the annular groove A11 of the ring body A1 along an arrow on the drawings.
[0061] Step 3
[0062] The flat-bar FPC B2 is pulled and enclosed tightly, and then fixed.
[0063] Step 4
[0064] The plural pads B24, B25 on the flat-bar FPC B2 are welded, and a first functional test of the product is performed.
[0065] Step 5
[0066] The crystal glue A3 is filled into the annular groove A11 of the ring body A1 after passing the first functional test, the glue surface is polished as request, and then the product is accomplished after passing a functional test.
[0067] Referring to
[0068] Accordingly, by comparing the processing flow of embodiments of the present invention with the processing flow of a conventional NFC ring using a surrounding antenna coil, one can easily find out the advancement of embodiments of the present invention that the production efficiency and the yield of the product are improved effectively and accurately, as well as that the processing flow is more simplified.
[0069] It is of course to be understood that the embodiments described herein is merely illustrative of the principles of the invention and that a wide variety of modifications thereto may be effected by persons skilled in the art without departing from the spirit and scope of the invention as set forth in the following claims.