Desoldering apparatus and method
10363623 ยท 2019-07-30
Inventors
Cpc classification
B23K3/029
PERFORMING OPERATIONS; TRANSPORTING
B23K1/0016
PERFORMING OPERATIONS; TRANSPORTING
International classification
B23K1/018
PERFORMING OPERATIONS; TRANSPORTING
B23K3/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Disclosed is a solder punch tool and method of using the same. The solder punch tool includes an extensible rod, such as a graphite rod, extensible from a first end of the solder punch tool, and a metal punch on an opposite end of the solder punch tool. Optionally, an A/C power cord and a light may each be removably attachable to the solder punch tool. In use, a user may melt solder clogging a hole in a printed circuit board, push a portion of the extensible rod through the hole and the molten solder, break off a portion of the extensible rod extending through the hole in the printed circuit board, and push such broken portion of the extensible rod through the hole using the metal punch so as to clear the hole to receive a replacement component.
Claims
1. A method for removing solder from a printed circuit board, comprising the steps of: providing a solder removal tool, said solder removal tool further comprising: a hollow shaft adapted for one-handed gripping by a user, said hollow shaft having a first end and a second end opposite said first end; an extensible rod extensible from said first end of said shaft; and a metal punch extending outward from said second end of said hollow shaft; pushing said extensible rod through molten solder in a hole in a printed circuit board; breaking off a portion of said extensible rod so that said broken-off portion remains in said hole in said printed circuit board; and pushing said broken portion of said extensible rod through said hole using said metal punch.
2. The method of claim 1, said solder removal tool further comprising a drive within said hollow shaft and engaging said extensible rod to incrementally extend said extensible rod from said first end of said shaft.
3. The method of claim 1, wherein said extensible rod further comprises graphite.
4. The method of claim 1, wherein said metal punch is removably attached to said second end of said hollow shaft.
5. The method of claim 1, wherein said solder removal tool further comprises a graphite carrier tube within said hollow shaft.
6. The method of claim 5, wherein said metal punch is removably positioned within an end of said graphite carrier tube.
7. The method of claim 1, wherein said solder removal tool further comprises a removable cap positioned over said metal punch.
8. The method of claim 1, wherein said solder removal tool further comprises an electrical connector housing attached to said shaft.
9. The method of claim 8, wherein said solder removal tool further comprises a light removably attached to said housing.
10. The method of claim 8, wherein said solder removal tool further comprises an A/C connector removably attached to said housing.
11. The method of claim 10, wherein said electrical connection extends from said housing to said extensible rod.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The numerous advantages of the present invention may be better understood by those skilled in the art by reference to the accompanying drawings in which:
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION
(6) The following description is of a particular embodiment of the invention, set out to enable one to practice an implementation of the invention, and is not intended to limit the preferred embodiment, but to serve as a particular example thereof. Those skilled in the art should appreciate that they may readily use the conception and specific embodiments disclosed as a basis for modifying or designing other methods and systems for carrying out the same purposes of the present invention. Those skilled in the art should also realize that such equivalent assemblies do not depart from the spirit and scope of the invention in its broadest form.
(7) Disclosed herein is a hand-held solder punch tool configured for assisting in opening clogged holes on a PCB that have become clogged by molten solder. With reference to the perspective view of
(8) In certain configurations, extensible rod 14 is preferably formed of graphite, although other materials may likewise form rod 14 that are preferably (i) easily breakable, and (ii) of such material that will not stick to molten solder, for purposes described in greater detail below.
(9) With continued reference to
(10) Each of extensible rod 14 and fixed rod 16 preferably has a diameter sized to fit closely within a standard hole in a PCB, thus allowing both extensible rod 14 and fixed rod 16 to pass through such holes in a PCB with very little clearance, again for purposes discussed in greater detail below.
(11) Further, and with continued reference to
(12)
(13) Metal punch 160 is positioned at a back end of solder punch tool 10, and more particularly at the back end of graphite carrier tube 170, such that punch 160 extends in a direction opposite and parallel to the longitudinal axis of extensible rod 140. In a particularly preferred embodiment, the exterior end of carrier tube 170 preferably includes a punch cap receiver 172 having an internal, generally cylindrical cavity, which cavity in punch cap receiver receives therein a base 162 of metal punch 160. As shown in
(14) With continued reference to
(15) Optionally, an internal electrical supply 150 may be provided between electrical connector housing 122 and extensible rod 140 and configured to supply current to extensible rod 140. More particularly, electrical connectors 152a and 152b may extend from electrical connector housing 122 toward the dispensing end of solder punch tool 10. The distal ends of electrical connectors 152a and 152b (i.e., the ends adjacent the dispensing end of solder punch tool 10) are spaced apart so as to form a gap therebetween, which gap is sized so that the distal ends of electrical connectors 152a and 152b will be in contact with extensible rod 140, but will allow longitudinal movement of extensible rod 140 when engaged by drive 130. When extensible rod 140 is formed of graphite, with electrical current supplied to internal electrical supply 150, extensible rod 140 completes an electrical circuit, such that current runs through extensible rod 140. When such current is supplied to extensible rod 140, it will significantly heat to the point of allowing extensible rod 140 itself to serve as a soldering iron.
(16) In accordance with further aspects of the invention, the hand-held solder punch tool 10 described above may be used in the following exemplary manner, and as shown schematically in
(17) Optionally, in order to desolder the component from the PCB, and as a preliminary step, the user may apply electrical current to the extensible rod 140, touch extensible rod 140 to the solder connection to melt the solder, remove the component from the PCB, and engage drive 130 to extend additional, unused extensible rod 140 (some having been spent and evaporated during the desoldering operation) to carry out the remaining steps of the process described above.
(18) When desired, light source 18 or 127 may be manually positioned to shine on the hole that is to be processed, and power switch 123 may be operated to power light source 18 or 127 so as to aid the operator in viewing the working field on the PCB requiring placement of the extensible rod and fixed rod.
(19) Having now fully set forth the preferred embodiments and certain modifications of the concept underlying the present invention, various other embodiments as well as certain variations and modifications of the embodiments herein shown and described will obviously occur to those skilled in the art upon becoming familiar with said underlying concept. It should be understood, therefore, that the invention may be practiced otherwise than as specifically set forth herein.