The number and types of electronic devices that are commercially available have increased tremendously the past few years, and this increase shows no signs of abating. The functionality that each of these devices packs in has increased as well.
Much of this increased functionality is generated by components, circuits, and other apparatus that may be located on a main logic board, or motherboard, in the device. Additional functionality may be included by inserting additional device components inside a device's housing. These additional device components may connect to the components, circuits, and other apparatus on the main logic board.
The additional device components may connect to the main logic board using wires. For example, these wires may be connected to an additional device component on one end, and a plug on the second end. Specifically, each of these wires may be crimped using a wire crimp. The wire crimps may then be inserted into a crimp terminal pug. The crimp terminal plug may be inserted into a crimp terminal receptacle. The crimp terminal receptacle may be attached to a main logic board. Contacts in the crimp terminal plug may connect and form electrical pathways from the wire crimps to the main logic board.
On occasion, it may be desirable to connect two of the crimp terminal receptacle contacts together. One way of doing this is to use a wire jumper. That is, a wire may be crimped using a crimp on each end. Each end of the wire may then be inserted into a crimp terminal plug, thereby forming the desired connection.
But the use of these wires may provide a connection between a main logic board and an additional device component that has an undesirable appearance. For example, the use of such a wire may make it appear that a design error had been committed, and that a wire jumper had been employed to correct the error. This may provide an undesired, and incorrect, impression to users.
Thus, what is needed are apparatus that may be able to connect two crimp terminal receptacle contacts in a wirefree manner. It may also be desirable that this apparatus be able to be readily manufactured.
Accordingly, embodiments of the present invention provide wirefree, unibody jumpers that may be used with crimp terminals. These jumpers may connect two or more adjacent or nearby crimp terminal openings in a plug housing.
An illustrative embodiment of the present invention may provide a jumper that is formed from a single piece of metal or other conductive material. In various embodiments of the present invention, a form may be stamped from a sheet of metal or other conductive material. The conductive material may be a copper alloy, such as Cu—Ni—Si, phosphor bronze, Be—Cu, Ti—Cu, or other conductive material. A jumper may be formed by folding or bending the stamped form. The jumper may then be inserted into two or more adjacent or nearby crimp terminal openings in a crimp terminal plug housing.
Once inserted, jumpers according to the present invention may provide an aesthetically pleasing, highly robust and reliable connection between two or more contacts in a crimp terminal receptacle. Specifically, the lowprofile provided by embodiments of the present invention may provide an attractive appearance, particularly when compared to a wire jumper. Also, the low profile may provide a connection that may be unlikely to become tangled with wires attaching to a crimp terminal plug, and may be unlikely to become snagged on circuitry and apparatus during assembly. Moreover, these jumpers may be unlikely to be accidently removed or displaced when a device enclosure is opened for maintenance or other reasons.
In various embodiments of the present invention, the folding or bending of the stamped form may be done in various ways. In some embodiments of the present invention, two crimp inserts on the jumper are formed at opposite ends of the stamped form. To bring the two crimp inserts into proximity to each other, the stamped form is bent such that one of the two crimp inserts is moved 180 degrees relative to the other. This brings the two crimp inserts into alignment such that they may be inserted into two or more adjacent or nearby crimp terminal openings in a crimp terminal plug housing.
In other embodiments of the present invention, two crimp inserts on the jumper are formed in parallel in the stamped form. A joining portion between the two crimp inserts is bent 180 degrees such that the two crimp inserts are brought into proximity to each other. This brings the two crimp inserts into a closelyaligned arrangement such that they may be inserted into two or more adjacent or nearby crimp terminal openings in a crimp terminal plug housing. These embodiments may be of particular value when connecting three or more crimp terminal openings.
In other embodiments of the present invention, two crimp inserts on the jumper are again formed in parallel in the stamped form. Each of the crimp inserts are folded back towards each other such that the two crimp inserts are brought into proximity. That is, each of the crimp inserts are folded back 180 degrees towards each other. This brings the two crimp inserts into a closelyaligned arrangement such that they may be inserted into two or more adjacent or nearby crimp terminal openings in a crimp terminal plug housing.
In various embodiments of the present invention, a jumper may connect to receptacle contacts, where the receptacle contacts are at least substantially similar, or the same, as other receptacle contacts in the receptacle. That is, the same or similar receptacle contacts that may connect to a crimp wire may also be used to connect to a jumper according to an embodiment of the present invention. In other embodiments of the present invention, some modification to one or more of the receptacle contacts may be made to provide a connection to a jumper according to an embodiment of the present invention.
In various embodiments of the present invention, a jumper may be inserted into crimp terminal openings, where the crimp terminal openings are at least substantially similar to, or the same as, other crimp terminal openings in the crimp terminal plug. That is, the same or similar crimp terminal openings that may accept a crimp wire may also be used to accept a crimp insert on a jumper according to an embodiment of the present invention. In other embodiments of the present invention, some modification or alteration to one or more of the crimp terminal openings may be made to accept a crimp insert on a jumper according to an embodiment of the present invention. For example, sections of plastic or other nonconductive material may be used to separate crimp wire openings in a plug housing. Some of one or more plastic sections may be altered or modified such that a jumper according to an embodiment of the present invention may be inserted. In some embodiments of the present invention, these modifications may be made to improve the appearance of these jumpers.
The appearance of these jumpers may be further improved in various ways in various embodiments of the present invention. For example, a cap, formed of plastic or other material, may be used. In other embodiments of the present invention, a jumper may be plated such that it has a desirable color or finish. For example, a jumper according to an embodiment of the present invention may be plated with nickel to be black to match a crimp terminal plug. In other embodiments of the present invention, paint, labels, or other layers or films may be used to provide an aesthetically pleasing appearance. These caps, labels, plating, or other layers may enhance the appearance of a jumper, and the jumper and these caps, labels, plating, or other layers may provide a highly robust and reliable connection between two or more contacts in a crimp terminal receptacle.
In various embodiments of the present invention, these jumpers may be used to convey one or more bits of information. For example, a jumper may have two crimp inserts, the two crimp inserts arranged to be inserted into two adjacent or nearby crimp wire openings in a crimp terminal plug. The presence or absence of the jumper may convey one bit of information. In another embodiment of the present invention, a jumper may have three crimp inserts, the three crimp inserts arranged to be inserted into three adjacent or nearby crimp wire openings in a crimp terminal plug. The presence or absence of the jumper may convey one bit of information. Also, jumpers having two crimp inserts may be inserted into two of the three crimp terminal openings in one of three ways. In this way, jumpers according to embodiments of the present invention may be used to convey one of five states. In still other embodiments of the present invention, jumpers having four or more crimp inserts may be used.
These bits, or states, may be used to convey various types of information in various embodiments of the present invention. For example, these bits may convey device type, manufacturer identification information, revision information, device size or capacity, or other information. The information may concern various device components, such as batteries, speakers, control mechanisms, screens, or other device components.
Various embodiments of the present invention may incorporate one or more of these and the other features described herein. A better understanding of the nature and advantages of the present invention may be gained by reference to the following detailed description and the accompanying drawings.
This figure illustrates a side view of crimp terminal connector 110, which may reside on main logic board 105. Crimp terminal connector 110 may include terminal plug 130 which may be inserted into crimp terminal receptacle 120. Device components 150 may communicate with electronic circuitry 160 via crimp terminal connector 110. Specifically, device component 150 may be connected to wires 140. Wires 140 may have their ends crimped and inserted into openings in crimp terminal plug 130. The crimped ends of wires 140 may connect to contacts (not shown) in crimp terminal receptacle 120. Contacts in crimp terminal receptacle 120 may connect to electronic circuitry 160 via traces 165.
In various embodiments of the present invention, device components 150 may be various types of electronic components. For example, device component 150 may be a battery, speaker, memory module, control device, or other circuit, apparatus, or component. In various embodiments of the present invention, information regarding device component 150 may be conveyed to electronic circuitry, such as electronic circuitry 160. In embodiments of the present invention, this information may be conveyed by the presence or absence of one or more jumpers, which may be inserted into crimp terminal plug 130. These jumpers may provide electrical connections between two or more contacts in crimp terminal receptacle 120. The presence, or absence, of these connections may be used to convey information about device component 150. For example, information such as device type, manufacturer identification information, revision information, device size or capacity, or other information, may be conveyed by the presence or absence of these jumpers. An example of such a jumper and a crimp terminal plug is shown in the following figure.
Again, crimp terminal plug 130 may be inserted into crimp terminal receptacle 120. An example is shown in the following figure.
Embodiments of the present invention may provide jumpers that are easily manufactured. Various embodiments the present invention may achieve this by providing jumpers that are manufactured from a single piece of conductive material, such as a copper alloy. Examples are shown in the following figures.
Again, jumper 400 may be manufactured from a single piece of conductive material. The conductive material may be a copper alloy, such as Cu—Ni—Si, phosphor bronze, Be—Cu, Ti—Cu, or other conductive material. Specifically, first crimp insert 410 and second crimp insert 420 may be formed. At this point, first crimp insert 410 and second crimp insert 420 may oppose each other. Joining portion 430 may be bent or folded 180 degrees such that first crimp insert 410 and second crimp insert 420 are brought parallel and in close proximity to each other. By initially forming first crimp insert 410 and a second crimp insert 420, then bending joining portion 430, first crimp insert 410 and second crimp insert 420 may be close enough to fit in adjacent openings in crimp terminal plug 120.
Again, in this embodiments the present invention, jumper 400 may be manufactured by forming first crimp insert 410 and second crimp insert 420 on opposite ends of a piece, then bringing them close together by bending joining portion 430. Other examples of this general method are shown in the following figures.
In other embodiments of the present invention, the crimp insert portions may be initially formed in parallel, after which a joining portion is folded to bring the crimp inserts into close proximity. An example is shown in the following figure.
In other embodiments of the present invention, the crimp inserts may be folded back towards each other. For example, they may both be folded approximately 180 degrees back towards each other to form a jumper. Examples are shown in the following figures.
Again, jumpers according to embodiments of the present invention may be inserted in to two or more openings in a crimp terminal plug. These jumpers may be used to provide an electrical connection between two or more contacts in a crimp terminal receptacle. These jumpers may provide an aesthetic improvement over a conventional wire jumper. These jumpers may also provide a highly robust and reliable connection between two or more contacts in a crimp terminal receptacle. Specifically, the lowprofile provided by embodiments of the present invention may provide a connection that may be unlikely to be in the way or, or become tangled with, wires attaching to a crimp terminal plug, and may be unlikely to become snagged on circuitry and apparatus during assembly. Moreover, these jumpers may be unlikely to be accidently removed or displaced when a device enclosure is opened for maintenance or other reasons. An example is shown in the following figure.
In this example, divider 1110 may be substantially the same or similar to dividers 1112 and 1114. That is, jumper 500 may be configured such that divider 1110 does not need to be different from dividers 1112 and 1114. This may also be true in the example shown in
In other embodiments of the present invention, a divider, such as divider 1110 that separates openings in crimp terminal plug 130, may be modified or altered as compared to dividers 1112 and 1114. Again, this may enable the use of a lower profile for the jumper (such as jumpers 600 and 900), which may aid in improving and appearance of a jumper and crimp terminal plug combination. Also, this lower profile may aid in preventing the jumper from getting in the way of, or becoming snagged in, wires of the crimp terminal plug or on circuits or apparatus during assembly. Examples are shown in the following figures.
In various embodiments of the present invention, other steps may be taken to improve the appearance and functionality of jumpers according to embodiments of the present invention. For example, caps, labels, plating, or other films or coatings may be used to improve the appearance of a jumper. In one specific example, some or all of a jumper may be plated to match a color or texture of a crimp terminal plug. These caps, labels, plating, or other layers may enhance the appearance of a jumper, and the jumper and these caps, labels, plating, or other layers may provide a highly robust and reliable connection between two or more contacts in a crimp terminal receptacle. Examples of various caps that may be used to improve the appearance of a jumper according to an embodiment of the present invention are shown in the following figures.
In various embodiments of the present invention, these tabs may have various shapes. For example, a cap may have a shape that is readily grasped by fingers or a tool. An example is shown in the following figure.
The above description of embodiments of the invention has been presented for the purposes of illustration and description. It is not intended to be exhaustive or to limit the invention to the precise form described, and many modifications and variations are possible in light of the teaching above. The embodiments were chosen and described in order to best explain the principles of the invention and its practical applications to thereby enable others skilled in the art to best utilize the invention in various embodiments and with various modifications as are suited to the particular use contemplated. Thus, it will be appreciated that the invention is intended to cover all modifications and equivalents within the scope of the following claims.
This application claims the benefit of U.S. provisional patent application No. 61/481,690, filed May 2, 2011, which is incorporated by reference.
Number | Date | Country | |
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61481690 | May 2011 | US |