The present invention generally relates to an improved transmission mechanism of vertical circuit board etching device, and more particularly to a novel vertical circuit board etching device of which a whole a set of feeding and etching mechanism, including a transmission mechanism, is more hermetically housed in an enclosure to prevent an etchant liquid that is sprayed inside the enclosure from being contaminated by external dusts to get crystallized and which comprise a peg-like tooth based transmission roller set for transmission of power that has a simple structure so that malfunctioning is not easy to occur and maintenance and repairing are easy.
With the progress of microelectronics and the increasing desire of general consumers for electronic products of compact size, light weight, and powerful functionality, the electronic products that are available in the market are getting increasingly small, sophisticated, and compact. This makes it necessary to form increasingly thinner wiring on a copper-plated surface of a circuit board that carries various electronic components that are contained in various electronic products. Etching operations that are applied to make circuits on the circuit board are thus subjected to severe challenge for quality thereof. It is also challenging to collect, and reuse, the etchant liquid that is applied to the etching operations through a spraying and etching process without contamination by tiny dusts and thus undesired crystallization so as to ensure the purity and quality of the etchant liquid and thus meet the current standards for internal circuit boards of precision electronic products. This is the cause of the emergence of the vertical circuit board etching device to overcome the issue of excessive etching caused by etchant solution being deposited on the top of a circuit board for an excessively long period of time in an etching operation where the circuit board is conveyed horizontally.
A conventional vertical circuit board etching device generally comprises the following components:
two rows of closely arranged vertically-erected rolling/feeding roller shafts that are opposite to each to clamp a circuit board therebetween;
a power transmission gear train that is arranged to supply rotation power to top ends of each row of rolling/feeding roller shafts;
etchant spraying tubes that are vertically erected outside the two rows of rolling/feeding roller shafts and are in communication with etchant liquid supply pipes; and
an enclosure.
Although the conventional vertical circuit board etching device is structured to have most of the components housed in the enclosure, yet the power transmission gear train includes a primary gear set that initially receives the power supplied from an external power device and secondary gears are arranged to operate in two levels of vertical heights for transmission and direction change of power so that the power transmission gear train is generally exposed above a top board of the enclosure to connect to the external power device for receiving the power transmitted therefrom. Thus, the top board of the enclosure must comprise openings formed therein to correspond to the top ends of the rolling/feeding roller shafts for the extension of the top ends of the roller shafts therethrough to fit to corresponding power transmission gears of the power transmission gear train. In addition, all the gears used are bevel gears or spur gears that are operated through engagement between thin and sharp teeth. The following shortcomings are thus caused:
(1) Since the top board of the enclosure must comprise a number of spaced openings at locations corresponding to the top ends of the roller shafts, in a spraying and etching operation, the etchant liquid that is so sprayed to splash around can easily penetrate through the locations where the openings are formed in the top of the enclosure and get lost. Consequently, after several batches of continuous manufacturing process, the amount of the etchant liquid remaining in the enclosure cannot be precisely identified. In addition, the sprayed etchant liquid may be contaminated by dusts that fall into the enclosure through the openings and thus get crystallized. This affects the etching operation and the quality of the etchant liquid.
(2) All the gears of the power transmission gear train, including the primary gear set and the secondary gears, are bevel gears or spur gears that are operated through engagement between thin and sharp teeth. Although these gears are manufactured through precision machining, yet the engaging faces of the thin and sharp teeth may easy get stuck due to dust or crystallized etchant liquid accumulated thereon, making transmission of power fail. Such a problem, if getting very severe, may lead to undesired impact and breaking of the tips of the teeth and consequently malfunctioning may occur very frequently. In addition, the gears that engage each other with thin and sharp teeth may cause an issue of being hard to properly re-align the tips of the teeth to a desired transmission angle during the disassembling and repairing operation. This makes the maintenance very inconvenient.
The present invention aims to provide an improved transmission mechanism of vertical circuit board etching device, wherein the vertical circuit board etching device comprises a plurality of pairs of clamping/rolling/feeding roller shafts, a transmission mechanism, a plurality of etchant spraying tubes, and an enclosure. The enclosure is divided into an up portion that forms a feeding and etching chamber and a lower portion that forms a chemical liquid tank. The pairs of clamping/rolling/feeding roller shafts are vertically inserted in the feeding and etching chamber in a single row. The etchant spraying tubes comprise spray nozzles facing the pairs of clamping/rolling/feeding roller shafts and are vertically erected in the feeding and etching chamber respectively at locations adjacent to the pairs of clamping/rolling/feeding roller shafts. The etchant spraying tubes have lower ends extending into the chemical liquid tank. The transmission mechanism is mounted on an inner bottom board of the feeding and etching chamber to correspond to lower ends of the pairs of clamping/rolling/feeding roller shafts, whereby with the transmission mechanism coupled to an external power device, each of the pairs of clamping/rolling/feeding roller shafts is rotated to roll and feed forward a vertically arranged circuit board for etching. Particularly, the transmission mechanism is modified to comprise transmission roller sets including peg-like teeth that are for transmission of power to each clamping/rolling/feeding roller shaft and are mounted to a driving shaft that is arranged parallel beside longitudinally lined-up pairs of clamping/rolling/feeding roller shafts to respectively correspond to the pairs of clamping/rolling/feeding roller shafts and an end of the driving shaft is coupled to an external power device, whereby the whole set of feeding and etching mechanism, including the transmission mechanism, is more hermetically housed in the enclosure and no through hole is necessary in the top of the enclosure so that the sprayed etchant liquid is not contaminated by external dust to get crystallized and the quality of the etching operation an the mass of the etching liquid can be maintained. This is the goal of the present invention.
Further, the present invention provides an improved transmission mechanism of vertical circuit board etching device, which adopts peg-liked tooth based transmission rollers that has a simple structure to transmit power so that the problem of being easily of dirt accumulation and thus making aligning transmission angle of thin and sharp teeth difficult can be avoided, whereby it is hard to malfunction and is easy to maintain and repair. This is another goal of the present invention.
The foregoing objectives and summary provide only a brief introduction to the present invention. To fully appreciate these and other objects of the present invention as well as the invention itself, all of which will become apparent to those skilled in the art, the following detailed description of the invention and the claims should be read in conjunction with the accompanying drawings. Throughout the specification and drawings identical reference numerals refer to identical or similar parts.
Many other advantages and features of the present invention will become manifest to those versed in the art upon making reference to the detailed description and the accompanying sheets of drawings in which a preferred structural embodiment incorporating the principles of the present invention is shown by way of illustrative example.
The following descriptions are exemplary embodiments only, and are not intended to limit the scope, applicability or configuration of the invention in any way. Rather, the following description provides a convenient illustration for implementing exemplary embodiments of the invention. Various changes to the described embodiments may be made in the function and arrangement of the elements described without departing from the scope of the invention as set forth in the appended claims.
Detailed structure of the transmission mechanism 30 is shown in a partial exploded view of
Since each pair of clamping/rolling/feeding roller shafts 10, 11, 12, 20, 21, 22 is operated in the same way, in the illustration of
In summary, the present invention provides an improved transmission mechanism of vertical circuit board etching device enables the whole set of feeding and etching mechanism, including the transmission mechanism, to be completely housed in the enclosure so that the sprayed etchant liquid is not contaminated by external dust to get crystallized. Further, transmission rollers including peg-like teeth that are of a simple structure are used to transmit power so as to achieve an effect of being not easy to get malfunctioning and being easy to maintain and repair.
It will be understood that each of the elements described above, or two or more together may also find a useful application in other types of methods differing from the type described above.
While certain novel features of this invention have been shown and described and are pointed out in the annexed claim, it is not intended to be limited to the details above, since it will be understood that various omissions, modifications, substitutions and changes in the forms and details of the device illustrated and in its operation can be made by those skilled in the art without departing in any way from the spirit of the present invention.
Number | Date | Country | Kind |
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101126338 | Jul 2012 | TW | national |