CONNECTOR AND LABEL FORMING METHOD THEREOF
20220184742 ยท 2022-06-16
Inventors
Cpc classification
G06K19/06159
PHYSICS
B44B3/02
PERFORMING OPERATIONS; TRANSPORTING
B44B3/009
PERFORMING OPERATIONS; TRANSPORTING
B23K26/359
PERFORMING OPERATIONS; TRANSPORTING
B23K2101/36
PERFORMING OPERATIONS; TRANSPORTING
International classification
B23K26/359
PERFORMING OPERATIONS; TRANSPORTING
B23K37/04
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A connector and labeling forming method thereof is provided. The method includes: a laser engraving device generating a laser beam, and controlling the laser beam to engrave a label on a labeling part of a metal shell of a connector. The connector includes a metal shell and a label. The metal shell has a labeling part and the label is engraved on the labeling part by a laser beam. As such, the invention can engrave the label on the labeling part of the metal shell of the connector by using the laser engraving technology to replace the traditional self-adhesive label, thereby being able to solve all the problems caused by the self-adhesive label.
Claims
1. A label forming method of a connector, comprising: a laser engraving device generating a laser beam, and controlling the laser beam to engrave a label on a labeling part of a metal shell of a connector.
2. The label forming method of a connector according to claim 1, wherein before the step of engraving the label, the following step is further included: setting the connector in the laser engraving device; and, after the step of engraving the label, the following step is further included: removing the connector from the laser engraving device.
3. The label forming method of a connector according to claim 2, wherein the step of setting the connector in the laser engraving device further includes the following steps: inspecting whether the appearance of the connector meets the standard; when the appearance of the connector meets the standard, lifting a cover of a laser jig, and setting the connector in a positioning groove of the laser jig; covering the cover of the laser jig to fix the connector, and the labeling part being exposed through a hollow part of the cover; and, placing the laser jig in the laser engraving device; wherein, the step of engraving the label further includes the following steps: the laser beam passing through the hollow part of the cover to engrave the label on the labeling part.
4. The label forming method of a connector according to claim 3, wherein the step of removing the connector from the laser engraving device further includes the following steps: removing the laser jig from the laser engraving device; and, lifting the cover of the laser jig and removing the connector from the positioning groove.
5. The label forming method of a connector according to claim 2, wherein after the step of removing the connector, the following step is further included: inspecting whether the label conforms to the standard.
6. The label forming method of a connector according to claim 1, wherein the step of engraving the label further includes the following steps: opening a laser universal product code program, and selecting a specific laser engraving program from the laser universal product code program; scanning a serial number barcode with a code scanner; confirming whether the serial number barcode being correct; after confirming that the serial number barcode being correct, starting the laser engraving device; the laser engraving device generating a laser beam according to the selected specific laser engraving program, and controlling the laser beam to engrave the label on the labeling part.
7. The label forming method of a connector according to claim 1, wherein the step of engraving the label further includes the following steps: the laser engraving device controlling the laser beam to engrave the label on a metal surface or a transfer paint surface of the labeling portion.
8. The label forming method of a connector according to claim 1, wherein the connector is a small form-factor pluggable transceiver, a quad small form-factor pluggable transceiver, or an octal small form-factor pluggable transceiver.
9. A connector, comprising: a metal shell, having a labeling part; and a label, being engraved on the labeling part by a laser beam.
10. The connector according to claim 9, wherein the labeling portion has a metal surface or a transfer paint surface, and the label is engraved on the metal surface or transfer paint surface of the labeling portion by a laser beam.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0020] The present invention will be apparent to those skilled in the art by reading the following detailed description of a preferred embodiment thereof, with reference to the attached drawings, in which:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0039] The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention.
[0040] Referring to
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[0042] More specifically, in step S110, as shown in
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[0045] Specifically, as shown in
[0046] Preferably, the connector 10 is a small form-factor pluggable (SFP) transceiver, a quad small form-factor pluggable (QSFP) transceiver or an octal small package pluggable (OSFP) transceiver.
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[0049] In summary, the present invention can use laser engraving technology to engrave the label 12 on the labeling part 111 of the metal shell 11 of the connector 10, instead of the traditional self-adhesive label 12, so as to achieve the following multifold effects:
[0050] First of all, the label 12 will not fall off, no matter how much rubbed, the label 12 will not be dirty and fuzzy; therefore, it is easy to identify, and the barcode scanner can scan the serial number barcode.
[0051] Furthermore, the label 12 has no ink and will not cause allergic reactions in the human.
[0052] In addition, the label 12 has no adhesive and will not have any problems caused by the adhesive.
[0053] In addition, laser engraving technology has the advantages of wide engraving range, fast engraving speed, high engraving quality, low engraving energy consumption, high processing efficiency and high processing accuracy. Therefore, the laser engraving technology can engrave the texts and patterns of the label 12 within a small area, with high precision and high complexity. The present invention can be applied to the label 12 of the connector 10 that needs to produce a large number and rapid formation of various texts and patterns. In addition, the labeling part 111 does not generate carbonized black edges and can maintain its original color.
[0054] It is worth mentioning that the label 12 does not exceed the boundary of the labeling part 111. Therefore, during the process of plugging and unplugging the connector 10, the label 12 will not touch a conductive shrapnel for electromagnetic interference (EMI) prevention of a socket of a server, so that the conductive shrapnel will not be damaged. Moreover, in the process of unplugging the connector 10, the label 12 will not touch the socket of the server, and the label 12 will not make the connector 10 stuck in the socket of the server, so that the connector 10 can be easily removed from the socket of the server.
[0055] Although the present invention has been described with reference to the preferred embodiments thereof, it is apparent to those skilled in the art that a variety of modifications and changes may be made without departing from the scope of the present invention which is intended to be defined by the appended claims.