FIELD OF THE INVENTION
[0001] The present invention generally pertains to the structure of plug and socket, more
particularly, relates to the structure of combinative plug and socket which can be
assembled to form diverse male/female connector.
DESCRIPTION OF THE PRIOR ART
[0002] Most of the terminal or connector structures used in current electronics industry
are design of male and female connection primary used for electrical connection or
data transmission. Various terminals and connectors were developed in the past to
fulfill all kinds of transmission specification in the field of industry and consumer
electronics, such as audio/video (AV) terminals, S terminal, component terminal, DVI
(digital visual interface) terminal, and the most popular HDMI (high definition multimedia
interface) terminal for the transmission of high resolution video signal, to name
just a few. In the application of printed circuit board, the manner of male-female
connection is utilized in the connecting of circuit board with electronic components,
flat cables, and other peripheral or hardware equipments. For example, FIG. 1 illustrates
the schematic view of a conventional flexible flat cable (FCC) connector for the connection
between, hard disk and motherboard. The flat cable 100 is generally provided with
a female header 102 in it's free end, while a corresponding box header 104 is fixed
and welded on the motherboard 107. The connection of female header 102 and box header
104 allows the transmission of data signal therebetween. As showed in the figure,
the box header 104 has two rows of pins 106 in arrangement welded upon the motherboard
107 to support the connection. Each pin has their corresponding socket on the female
header 102. Again, every socket has their corresponding wire 108 connected therewith
to establish the electrical connection.
[0003] The design of male/female connector structure are widely used in electronic industry,
especially for those who need the connection of various peripheral equipments with
motherboard, such as supply wire, data cable, CPU socket, RAM slot, etc. The transmission
specification is changed and modified as the performance of electronic product became
more and more powerful, thus there are diversified structures of male and female connector
provided to fulfill this requirement, each with their features, such as different
pin count, pin length, pitch, and socket number. The header of main power supply of
a conventional ATX spec (Advanced Technology Extended), for example, is a 24-pin structure,
while the one of ATX 12V spec is a 4-pin structure; In addition, the flat cable connectors
for the floppy is a 34-pin design, the flat cable connector for ATA/IDE (Advanced
Technology Attachment / Integrated Device Electronics), and the one for UDMA spec
(Ultra Direct Memory Access) is 80-pin connector structure. Except the variation in
the pin count, the pin layout in various connectors may also be significantly different.
For example, the aforementioned box header for ATX 12V spec is a 4-pin disposition
in a 2x2 arrangement. Within same 4-pin disposition, the power wire for hard disk
or CD-ROM player is in a single-rowed 4-pin arrangement. Anticipatively, more and
more header specification will be purposed in the future with the development of the
electronic product and technology.
SUMMARY OF THE INVENTION
[0004] In order to fulfill the possible modification of current connector and new transmission
specification to be developed in the future, the present invention provides a novel,
combinative structure to enhance the modifiability of conventional plug and socket.
The structures in present invention are composed of a plurality of plugs and sockets
combined each other to form pin header or female header with different shapes and
pin layout.
[0005] The plug unit and socket unit in present invention are provided with tenons and mortises
portion for interlocking to form combined male connector or female connector. In addition,
the plug units and socket units are flush-jointed in equal pitch to form the straight,
ordered structures of male header or female header to achieve the electron connection.
[0006] One object of present invention is to provide the combinative plug and socket structures
to form male/female connectors with different pin layout and pin count.
[0007] The forgoing forms and other forms, objects, and aspects as well as features and
advantages of the present invention will become further apparent from the following
detailed description of the presently preferred embodiments, read in conjunction with
the accompanying drawings. The detailed description and drawings are merely illustrative
of the present invention rather than limiting the scope of the present invention being
defined by the appended claims and equivalents thereof.
BRIEF DESCRIPTION OF THE DRAWINGS
[0008]
FIG. 1 illustrates a conventional flexible flat cable connector;
FIG. 2a illustrates several combinative plugs in accordance with one embodiment of
the present invention;
FIG. 2b illustrates a pin header form by combinative plug showed in FIG.2a in accordance
with one embodiment of the present invention;
FIG. 2c illustrates an irregular pin header form by combinative plugs in FIG.2a in
accordance with one embodiment of the present invention;
FIG. 3a illustrates several combinative sockets in accordance with one embodiment
of the present invention;
FIG. 3b illustrates a female header form by combinative sockets in FIG 3a in accordance
with one embodiment of the present invention;
FIG. 3c illustrates an irregular female header form by combinative sockets in FIG
3a in accordance with one embodiment of the present invention;
FIG. 4a illustrates several combinative sockets with dovetail members in accordance
with one embodiment of the present invention;
FIG. 4b illustrates a female header form by combinative sockets showed in FIG.4a in
accordance with one embodiment of the present invention;
FIG. 5a illustrates a double headed plug with dovetail members in accordance with
one embodiment of the present invention;
FIG. 5b illustrates a regular pin header formed by combinative plugs showed in FIG
5a in accordance with one embodiment of the present invention;
FIG. 5c illustrates an irregular pin header formed by combinative plugs showed in
FIG. 6 illustrates the pin header and female header formed by the combinative plugs
and sockets with identification mark thereon in accordance with one embodiment of
the present invention;
FIG. 7 illustrates the combinative pin header and female header applied on the circuit
board in accordance with one embodiment of the present invention;
DESCRIPTIQN OF THE PREFERRED EMBODIMENT
[0009] The invention will now be described in greater detail with preferred embodiments
of the invention and illustrations attached. Nevertheless, it should be recognized
that the preferred embodiments of the invention is only for illustrating. Besides
the preferred embodiment mentioned here, present invention can be practiced in a wide
range of other embodiments besides those explicitly described, and the scope of the
present invention is expressly not limited expect as specified in the accompanying
Claims.
[0010] Referring now to FIG 2a, which illustrates one of the combinative plug units 201
in the embodiment of present invention. The combinative plug in present invention
has various forms and shapes. As showed in figure every individual plug unit is comprised
of a body portion 203, a wire portion 205, and a pin portion 207. The wire portion
205 of plug unit 201 is coupled with pin portion 207 within the body portion 203 to
provide electrical connection. The wire portion 205 is extended from the top side
of body portion 203. The other end of the wire portion 203 may be coupled with an
identical combinative plug or other connector for the data transmission. The pin portion
207 of plug unit 201 is firmly attached on body portion 203 and also coupled with
the wire portion 205 within the body portion 203. The pin portion 207 can be inserted
into a corresponding socket to achieve the electrical connection. The detail will
be described in following embodiment.
[0011] As the left of. FIG. 2a showing the plug unit 201 of present invention, the body
portion 203 in the embodiment of present invention is in rectangular shape. Two circular
tenons 209 are formed on the sidewall thereof for interlocking with corresponding
mortises to achieve the assembly. In the mid of FIG. 2a, two circular mortises 208
are formed on the sidewall of plug unit 201. The mortise 208 is dimensioned to receive
the tenon 209 and interlock with each other. In the embodiment of present invention,
other forms of plug unit may be provided to achieve better modifiability. As showed
in the right of FIG 2a, except two tenons 202 formed on the front sidewall of the
body portion 203, two more tenons 204 are formed on the other sidewall of body portion
203. Tenon 202 and Tenon 204 can interlock with the plug unit in different directions
respectively to form a complicated pin header structure with particular pin layout.
[0012] Referring now to FIG 2b, which is the schematic view of a pin header form by the
combinative plug unit 201 showed in FIG.2a. As showed in the figure, the plug units
201 are combined with each other by the interlocking member (ex. the tenons and mortises)
on the body portion 203. A plurality of combinative plug units 200 can form a one-row
pin header 206 with equal pitch. Except the single row arrangement, the structure
with multiple rows is also provided in the embodiment of present invention. As showed
in FIG 2c, combinative plug unit 201 can achieve free arrangement by tenon 202 and
204 on different sidewalls. Further, user may decide the desired numbers and sizes
of combinative plug unit 200 to be used, including the dimension of the body portion
203, the length and thickness of pin portion 207, the type of wire portion 205 for
data transmission, to form various male/female connectors and achieve better modifiability.
[0013] In another embodiment of present invention, a combinative socket unit 301 corresponding
to the combinative plug unit 201 of FIG. 2 is provided in FIG. 3a. In the figure,
the combinative socket unit 301 has a rectangular body portion 303 similar to the
body portion 203. Different interlocking members are formed on the sidewall of body
portion 303, including the circular tenon 305 and mortise 307 showed in the figure.
A plurality of socket units 301 may be combined together to form a female header in
particular shape. The body portion 303 is fixed and welded on a base or a printed
circuit board. An opening 309 is formed on the top of body portion 303 allowing the
insertion of corresponding pin portion to establish the electrical connection. The
pin portion is firmly clipped in the body portion 303 after inserting to maintain
good contact. Similar to FIG 2a, the combinative socket unit 301 may form female header
302 in different size and shape by interlocking members, as showed in the FIG. 3b
and FIG. 3c. The combined female header 302 in FIG. 3b and FIG. 3c can connect with
corresponding pin header 206 in FIG. 2b and FIG. 2c to achieve the electrical connection.
[0014] Note that the female header 302 formed by combinative socket units 301 is welded
on the circuit board, while the pin header 206 structure formed by combinative plug
units 201 is disposed on the free end of flat cable to connect with female header
302. However, in other embodiment, pin header e 206 structure may also be welded on
circuit board, while the socket base 302 structure be the free end of flat cable depending
on the user consideration.
[0015] In still another embodiment of present invention, the combinative plug and socket
can be combined by interlocking members different from the FIG 2. As show in the FIG.
4a and FIG. 4b, the structures of socket unit 401 and female header 402 with dovetail
joint members are provided respective. In the figure, every combinative socket unit
401 has a rectangular body portion 403, where different interlocking members are formed
thereon, such as the dovetail tennon 405 and dovetail recess 409 showed in the figure,
to provide the combinative property. The dovetail tennon 405 of socket unit 401 can
be slided into the dovetail recess 406 of another socket unit 401 to interlock two
socket units. A plurality of socket units 401 may be combined together for forming
a female header with particular shape or pin layout, as showed in the FIG 4b. In the
embodiment, female header of different sizes and shapes may be obtained by the interlocking
of dovetail members. The combined female header 402 can be connected with a corresponding
pin header to establish the electrical connection. Note that the drawings of embodiment
are for the description only, the dovetail members on every socket unit 401 may not
be in specific form or number. For example, one single socket unit 401 may be provided
with two dovetail tenons 405 or recess 409 to attain better stability, and the size
and the position of dovetail members on the body portion may be different too. Moreover,
the manner of dovetail joint can be applied in the aforementioned combinative plug
unit. As showed in the FIG. 5a, which illustrate a double headed plug unit 500 with
dovetail members. The double headed plug unit 500 has pin portion 501 on both sides,
two dovetail tenons 505 and two dovetail recesses 507 are formed on the sidewalls
of body portion 503 to interlock with other plug unit 500 for forming particular pin
header. FIG 5b illustrates the structure of a regular double headed pin header. The
pin header in FIG 5b is composed of twelve plug units 500 with dovetail joint. Note
that the design of the present invention may also be applied in the combination of
conventional plug and socket unit various male/female connectors. Another example
is showed in FIG 5c, which illustrates an irregular structure of double headed pin
header. In the present invention, the structure with all kinds of pin layout and pin
number can be achieved by the interlocking of respective interlocking members as long
as the arrangement of the plug unit and socket unit is practicable. Moreover, the
plug unit and socket unit in present invention may be alternatively combined to form
a structure comprising both plug and socket feature for better modifiability and wider
application.
[0016] In addition, because the plug and socket of present invention can be combined to
form various complicated male/female connector structures, it is important to identify
every insert unit among numerous identical plug units and socket units. Accordingly,
FIG. 6 shows the combinative plug and socket structures with the feature of identification
mark. In this figure, the identification mark 605 is formed on the blank sidewall
of body portion in every unit. Before the combination, user may define the marks and
their corresponding pin and function. For example, number "1" may denotes the pin
for power-on, number "2" may denote the pin for reset, number "3", "4", "5" may denote
the pins for every supply port (PW1, PW2, PW3), etc. After the numbers and sequence
of the combinative unit are defined, user may combine the plug units and/or socket
units into a integrated pin header and/or female header with diverse shapes and pin
layouts.
[0017] Referring to FIG 7, which illustrates the combinative plug units and socket units
applied on PCB board. The most preferable advantage of present invention is that user
can obtain various male/female connector structure depending on their demand or configureation
to adapt to all kinds of circuit design and layout. As showed in the embodiment of
FIG 7, all kinds of circuit devices are disposed on the specific area of circuit board
700, such as chip 701, capacitor 703, resistor 705, and so on. For the disposition
of normal circuit board, circuit designer usually reserves certain rectangular area
for all kinds of functional I/O terminals to be disposed, such as the female header
706 for supply wire showed in the figure. For those circuit boards with high device
density, it is difficult to reserve enough rectangular area for disposition use. Accordingly,
the design of irregular male/female connector structure in present invention is adaptive
to all kinds of circuit layout As showed in FIG 7, a U-shape pin header 707 is disposed
around the chip 701 on the circuit board 700. The U-shape pin header 707 is formed
by a plurality of plug units combined together, and a corresponding U-shape female
header 709 may connect with pin header 707 to achieve the electrical connection for
power supply or data transmission. The shape of pin header 707 and female header 709
is not limited in rectangular and U-shaped. Any shapes formed by the arrangement of
plug units and socket units are desirable to apply in the circuit board. The pin layout
can be modified by easy swapping of the plug units and/or socket units to obtain better
modifiability and adaptability
[0018] While the embodiments of the present invention disclosed herein are presently considered
to be preferred embodiments, various changes and modifications can be made without
departing from the spirit and scope of the present invention. The scope of the invention
is indicated in the appended claims, and all changes that come within the meaning
and range of equivalents are intended to be embraced therein.
1. Combinative plug and socket structure, comprising:
body portion, wherein at least one interlocking member is formed on the sidewall of
said body portion to combine said combinative plug and socket structure with at least
one other said combinative plug and socket structure to form connectors.
2. The combinative plug and socket structure of claim 1, wherein said connectors have
various pin counts and pin layouts.
3. The combinative plug and socket structure of claim 1, wherein said connectors are
used as transmission terminal for all kinds of electronic devices.
4. The combinative plug and socket structure of claim 1, further comprising a transmission
line coupled with said structure.
5. The combinative plug and socket structure of claim 1, wherein said connector is fixed
and welded on a PCB board (printed circuit board).
6. The combinative plug and socket structure of claim 1, wherein said connector is a
male or female connector.
7. The combinative plug and socket structure of claim 1, wherein said interlocking members
are tenons and mortises.
8. The combinative plug and socket structure of claim 1, wherein said interlocking members
are dovetail tenons and dovetail recesses.
9. The combinative plug and socket structure of claim 1, further comprising an identification
mark formed on said structure to identify every plug unit and socket unit.