Currently, there are many writing instruments, for example, retractable ball-point pens, known in the art that have built-in lamps, such as LED lamps, thus making the pen usable in a dark environment. Usually, retractable pens with built-in lamps work as follows: when a pen's writing end is extended out of the pen, the built-in lamp turns on, and when the pen's writing end is retracted, the lamp turns off. However, pens of the above kind have a serious shortcoming: the lamp always turns on when the pen's writing end is out, which reduces a lamp battery life as the lamp stays turned on even in a bright environment when the lamp is not needed for writing.
There are retractable lamp pens known in the art that have separate switches for turning a built-in pen lamp on and off. However, the above solution also has a shortcoming in that it requires providing additional hardware associated with a lamp switch, which results in increased cost, assembly problems, and diminished reliability compared to a conventional retractable pen. Furthermore, a user has to use two separate switches in one pen, one for extending a pen's writing end out of the pen's body, and another for illuminating the lamp. Therefore, there is a need to provide a retractable pen having a built-in lamp that would switch on only when necessary, for example, in a dark environment, and that could be turned off in a light environment, wherein extending and retracting the writing end of the pen and turning on and off the built-in lamp can be operated by a single switch.
The following summary is provided to introduce a selection of concepts in a simplified form that are further described below in the Detailed Description. This summary is not intended to identify key features of the claimed subject matter, nor is it intended to be used as an aid in determining the scope of the claimed subject matter.
An embodiment of a retractable lamp pen is disclosed. In one embodiment, the lamp pen includes a tubular pen body having at least a partially transparent upper portion, a lower portion, and a guiding slot axially disposed inside the upper portion. The pen further includes a pen tip removably attachable to the lower portion of the pen body and partially enclosing the lower portion of the pen body, a refill disposed in the lower portion of the pen body, a cap partially enclosing an upper part of the pen body, a conductive rotating slide, a lamp that is disposed toward the lower end of the pen body, and a battery cartridge.
The conductive rotating slide has an outer surface and is fixedly disposed in the cap. The conductive rotating slide further comprises a conductive connector fixedly disposed in the rotating slide, and a conductive bar axially disposed on the outer surface of the rotating slide.
The battery cartridge is disposed in the upper portion of the pen body, and has an upper end and a lower end. The upper end of the battery cartridge comprises a helical end surface with a higher locating slot disposed at a highest point of the helical end surface, an auxiliary higher slot disposed adjacent to the higher locating slot, a stop protruding axially between the higher locating slot and the auxiliary higher locating slot, and a lower locating slot disposed at a lowest point of the helical end surface.
The battery cartridge further comprises a guiding bar disposed axially on an outer surface of the battery cartridge and having a slot aligned with the mounting slot and extending through the guiding bar to the higher locating slot of the helical end surface.
The battery cartridge is adapted to hold a battery such that the conductive connector of the rotating slide is electrically connected to the battery.
The lamp has a first lead and a second lead, the first lead being electrically connected to the battery and the second lead being disposed in the mounting slot of the battery cartridge such that the second lead is fixedly connected through the guiding bar to the higher locating slot.
In a first position of the rotating slide, the conductive bar engages the lower locating slot and the refill is retracted from within the pen tip. Rotating the rotating slide from the first position in a first direction causes the conductive bar to slide on the helical end surface until the conductive bar engages the higher locating slot and the guiding bar engages the guiding slot, thereby pushing the battery cartridge downward in the pen body so that the refill extends out of the pen tip. The second lead of the lamp electrically connects to the conductive bar such that the lamp is illuminated.
Rotating the rotating slide from the first position in a second direction causes the conductive bar to slide on the helical end surface until the conductive bar engages the auxiliary higher locating slot and the guiding bar engages the guiding slot, thereby pushing the battery cartridge downward in the pen body so that the refill extends out of the pen tip and the second lead of the lamp is not electrically connected to the conductive bar.
Returning the rotating slide to the first position causes the conductive bar to slide on a helical end surface until the conductive bar engages the lower locating slot. A reset spring inserted between the lower end of the battery cartridge and the pen tip pushes the battery cartridge upward in the pen body so that the refill is withdrawn inside the pen body.
The foregoing aspects and many of the attendant advantages of this invention will become more readily appreciated as the same become better understood by reference to the following detailed description, when taken in conjunction with the accompanying drawings, wherein:
The pen body 10 may be enclosed by a sheath 14. In one embodiment, the sheath 14 has a plurality of through apertures 103 that serve to let through light emanating from a built-in pen lamp. The operation of the lamp is described below in greater detail. One skilled in the art will appreciate that the sheath 14 may be constructed in a number of ways that would allow for a light produced by a built-in lamp to illuminate a writing surface or otherwise allow the lamp pen to serve as a flashlight. Therefore, the above-described solution is by no means limiting, but simply illustrative. The cap 2 effectively comprises an upper portion, and the sheath 14 effectively comprises a lower portion of the lamp pen.
As illustrated in
A battery cartridge 7 is disposed inside the pen body 10. An end of the tail plug 9 is inserted into a lower end of the battery cartridge 7. In one embodiment, an upper plate 71 and a lower plate 72 are integrally disposed in the battery cartridge 7. An inner cavity 73 for accommodating one or more batteries 16 is formed between the upper plate 71 and the lower plate 72. In one embodiment, as best seen in
A lamp 15, in one embodiment an LED lamp, is disposed inside the battery cartridge 7. In one embodiment, a lamp pin inserting sheet 8 is also disposed inside the battery cartridge 7 so that a cathode of the lamp 15 is connected to a cathode of the battery 16 through the lamp pin inserting sheet 8.
As shown in
In one embodiment, a diameter of an upper end of the conductive spring 5 is larger than a diameter of a lower end thereof. Referring now to
With reference to
The battery cartridge 7 includes both higher and lower locating slots. A higher locating slot 77 is disposed on one side of the post 76, and an auxiliary higher locating slot 78 is disposed on the other side of the post 76 on the helical end surface 75. A lower locating slot 79 is disposed at the lowest point of the helical end surface 75. In operation, as described below in greater detail, the higher locating slot 77, the auxiliary higher locating slot 78, or the lower locating slot 79 alternately engages with the conductive bar 31 of the rotating slide 3 as the rotating slide is rotated.
As best seen in
In the above embodiment, the rotating slide 3 is made of plastic, and the surface of the rotating slide 3 is covered with a conductive layer in order to implement the conductive function of the rotating slide 3.
In one embodiment, the electric circuit of the lamp pen operates as follows. The conductive spring 5 fixed inside the conductive rotating slide 3 contacts the anode of the battery 16, and the cathode of the battery 16 contacts the cathode of the lamp 15. The conductive spring 5 is electrically connected with the conductive bar 31 through the conductive surface of the conductive rotating slide 3. The anode of the lamp 15 is fixedly connected to the higher locating slot 77. When the higher locating slot 77 engages with the conductive bar 31 on the rotating slide 3, the anode of the lamp 15 contacts the conductive bar 31 to form a closed electric circuit, thus turning on the lamp 15. Simultaneously, when the conductive bar 31 engages with the higher locating slot 77, the battery cartridge 7 is pushed downward in the pen body 10 so that the refill 13 extends out of the pen tip 11 and writing can be performed with the lamp 15 turned on. The lamp 15 is turned off by rotating the rotating slide 3 so that the conductive bar 31 disengages from the higher locating slot 77. Because the rotating slide 3 is fixedly disposed in the cap 2, rotating the pen body 10 relative to the cap 2 or rotating the cap 2 relative to the pen body 10 will rotate the rotating slide 3.
The post 76 is disposed at the highest point of the helical end surface 75, and the higher locating slot 77 and the auxiliary higher locating slot 76 are disposed at opposite sides of the post 76 so that the pen may be used in three different positions.
In the first position, when the rotating slide 3 is rotated toward the lower locating slot 79 on the helical end surface 75, the battery cartridge 7 is forced upward inside the pen body 10 by the rest spring 12 and the refill 13 retracts into the pen tip 11. The lamp 15 stays off in this position.
In the second position, when the rotative slide 3 is rotated in one direction and the conductive bar 31 engages with the higher locating slot 77, the refill 13 extends out of the pen tip 11, the lamp 15 turns on, and the pen is ready for use in a dark environment.
In the third position, when the rotative slide 3 is rotated in another direction and the conductive bar 31 engages with the auxiliary higher locating slot 78, the refill 13 extends out of the pen tip 11, but the lamp 15 stays off because the anode of the lamp 15, connected to the higher locating slot 77 but not the auxiliary higher locating slot 78, is not electrically connected to the conductive bar 31. Thus, the pen is ready for use in a light environment, while the energy of the battery 16 is saved.
The mounting slot 701 is disposed adjacent to, and matches, the slot in the guiding bar 70, and the anode of the lamp 15 is disposed inside the mounting slot 701 and the guiding bar 70, so that the anode of the lamp 15 is protected from being damaged during assembly. Furthermore, this construction affords a good electrical contact between the anode of the lamp 15 and the higher locating slot 77.
While illustrative embodiments have been illustrated and described, it will be appreciated that various changes can be made therein without departing from the spirit and scope of the invention.
Number | Date | Country | Kind |
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200810121906.3 | Oct 2008 | CN | national |