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EP 0 538 982 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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08.01.1997 Bulletin 1997/02 |
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Date of filing: 04.06.1992 |
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Integral connector system for credit card size I/O card external connector
Kompakte Steckeranordnung mit externem I/O-Kartenstecker im Format einer Kreditkarte
Système de connexion intégrale pour connecteur externe au format I/O d'une carte de
crédit
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| (84) |
Designated Contracting States: |
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DE FR GB |
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Priority: |
24.10.1991 US 782210
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Date of publication of application: |
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28.04.1993 Bulletin 1993/17 |
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Proprietors: |
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- INTEL CORPORATION
Santa Clara, CA 95052 (US)
- ITT CORPORATION
Secaucus,
New Jersey 07096-0002 (US)
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Inventors: |
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- MacGregor, Duncan David
Shingle Springs,
California 95682 (US)
- Perkins, Carl
Irvine,
California 92714 (US)
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| (74) |
Representative: Wombwell, Francis |
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Potts, Kerr & Co.
15, Hamilton Square Birkenhead
Merseyside L41 6BR Birkenhead
Merseyside L41 6BR (GB) |
| (56) |
References cited: :
AU-D- 4 750 585 DE-A- 3 331 035 US-A- 4 871 319
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DE-A- 2 918 185 US-A- 4 293 179 US-A- 4 878 847
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
|
BACKGROUND OF THE INVENTION
1. Field of the Invention
[0001] The present invention relates to electronic packaging for cards and electrical connectors.
2. Description of Related Art
[0002] Computers are usually constructed with a plurality of electronic cards that are coupled
to a motherboard. The cards have a connector at one end that plug into mating connectors
mounted on a motherboard. The cards will typically have another connector on the opposite
end to allow the computer to be coupled to an external device. Such a connector is
commonly found on internal modem or facsimile cards.
[0003] High density connectors are commonly of the pin/socket type. Pin/socket connectors
have electrically conductive pins and mating sockets that are embedded in separate
dielectric housings. Most pin/socket connectors have a metal shell around the dielectric
housings. The shell provides structural support for the connector and protects the
dielectric and electrical contacts from being damaged. The shell may have a pair of
tabs or ears that allow the connector to be bolted onto the card. Connector attachment
is somewhat time consuming, typically requiring the installation of fasteners. It
would therefore be desirable to have a connector that can be attached to an electronic
card without fasteners.
[0004] It has always been desirable to add additional cards to a computer system. In most
personal computers, a cover must be removed to add or replace the cards. With laptop
computers removing the cover or disassembling the housing is impractical. It is desirable
to have a computer that allows a card to be plugged into the system through a slot
in the housing. Because laptop computers are relatively thin, the slots are somewhat
narrow. It has been found that standard pin/socket connectors are two wide to allow
the cards to be inserted into the narrow slots. It would therefore be desirable to
provide a thin connector that can allow a card to be inserted into a portable computer
system such as a laptop.
SUMMARY OF INVENTION
[0005] The present invention is a connector that can be attached to a printed circuit board.
The connector has a plastic connector housing which includes a contact body and a
frame. The contact body contains a plurality of electrically conductive pins that
can be mated with the sockets of an external connector. The frame is integral with
the contact body and extends around the edges of the printed circuit board. The frame
has a ridge that allows the printed circuit board to be mounted directly to the connector.
There is no requirement for screws or other fasteners to attach the connector. The
frame provides structural support for the contact body, so that there is no need for
a metal shell, thereby reducing the width of the connector. The present connector
can therefore be used on electronic cards with a small profile, such that the cards
can be inserted through a narrow slot of a computer housing.
[0006] Therefore it is object of this invention to provide an electronic card that can be
inserted into a portable computer.
[0007] It is also an object of this invention to provide a connector with a narrow profile.
[0008] It is also an object of this invention to provide a plastic connector that has the
structural integrity of a connector with a metal shell.
[0009] This object is achieved by means of the features of claim 1.
BRIEF DESCRIPTION OF THE DRAWINGS
[0010] The objects and advantages of the present invention will become more readily apparent
to those skilled in the art after reviewing the following detailed description and
accompanying drawings, wherein:
Figure 1 is a perspective view of a connector of the present invention;
Figure 2 is a cross-sectional view of the connector of Fig. 1;
Figure 3 is a perspective view of the connector mounted onto a printed circuit board.
DETAILED DESCRIPTION OF THE INVENTION
[0011] Referring to the drawings more particularly by reference numbers, Figures 1 and 3
show a connector 10 of the present invention. The connector 10 has a contact body
12 that houses a plurality of electrical contacts 14. Extending from the body 12 is
a first end section 16. Extending from the first end section 16 are first 18 and second
20 edge sections. The end and edge sections are integrally formed with the contact
body 12. The connector 10 is typically constructed from a dielectric material such
as polycarbonate, or other plastic material that is injection molded into the shape
shown. The plastic may be metal plated to provide a protective surface. The connector
10 may have a pair of support beams 22 that provide structural support for the edge
sections 18 and 20.
[0012] Figure 2 shows a cross-section of the connector 10. The connector 10 has a first
ridge 24 that extends around the entire length of the connector 10. The first ridge
24 provides an area for a printed circuit board 26 to be mounted onto the connector
10. The circuit board 26 typically has a width less than the distance between the
ridge walls 28 of the edge sections, such that the board 26 can be merely placed onto
the connector 10. The board 26 may be bonded onto the first ridge 24 with an epoxy
or other adhesive to firmly attach the two pieces together.
[0013] The printed circuit board 26 usually has a number of electronic device 30 attached
thereto. The circuit board 26 has a plurality of conductive leads that terminate at
either pads 34, or plated through holes, on the ends of the board 26. The electrical
contacts 14 typically have tails 36 that are soldered onto the pads or into the holes,
after the connector 10 is mounted onto the circuit board 26. The conductive leads
couple the contacts 14 to the electronic devices 30.
[0014] The contacts 14 are typically gold plated copper pins located within a pair of slots
38 formed within the contact body 12. The pins 14 can be inserted into sockets 40
embedded within a mating external connector 42. The slots 38 are adapted to allow
the external connector 42 to be inserted into the contact body 12, to engage the pins
14 and sockets 40. The connectors can be keyed by making one slot larger than the
other slot, so that the pins 14 are always coupled to the correct sockets 40. The
contact body 14 is preferably molded with contact holes formed therein, whereby the
pins 14 can be snapped into the holes as is known in the art. Although the connector
10 is shown and described to have pins 14, it is to be understood that the contact
body 12 may have sockets 40 wherein the external connector 42 would have pins.
[0015] A second connector 44 can be connected to the opposite end of the printed circuit
board 26. The second connector 44 is preferably attached to the circuit board 26,
before the connector 10 is mounted onto the board 26. As an alternate embodiment,
the second connector 44 can be integrally molded with the connector 10. The second
connector 44 typically has sockets 46 embedded into a housing 48. The sockets 46 have
tails that are soldered onto the board as described above. The second connector 44
plugs into another connector (not shown) that has mating pins. The other connector
is typically attached to the motherboard of a computer system. The edge sections may
each have molded in channels 50. The channels 50 may combine with a locating edge
or pin within the computer, to guide in the board and align the second connector 44
with the motherboard connector.
[0016] A pair of covers 52 can be attached to the connector 10 to enclose the printed circuit
board 26. As shown in Fig. 2, the connector 10 may have a pair of second ridges 54
that support the covers 52. The second ridges are constructed so that the covers 52
are flush the top of the connector 10, to create a very thin electronic card. Each
side of the covers 52 may have a pair of tabs 56 that fit within slots 58 in the edge
sections, to provide an easy means of attaching the covers 52. The covers 52 are preferably
constructed from sheet metal to provide additional structural support for the connector
10 and protection of the electronic devices 30 from electromagnetic interference (EMI).
[0017] The connector 10 has a narrow profile, so that the assembled card can be inserted
through a narrow opening in a portable computer, to allow the board to be coupled
to the system. The board may provide a communication I/O function such as a modem
or facsimile, wherein the computer can be connected to communications means by plugging
the external connector 42 into the connector 10.
1. An electronic card, comprising:
a printed circuit board (26) having first and second ends, and first and second edges;
a connector housing (10) attached to said printed circuit board (26), said connector
housing having a contact body (12) attached to said first end of said printed circuit
board (26) and a frame (16, 18, 20) extending from said contact body (12), said frame
having a first end section (16) that extends along said first end of said printed
circuit board (26) and first and second edge sections (18, 20) that extend along said
first and second edges of said printed circuit board (26) respectively, characterised in that said connector housing (10) has a pair of spaced apart support beams (22) extending
between said first and second edge sections (18, 20), said contact body (12) being
integrally formed with said frame (16, 18, 20), and in that a pair of covers (52)
are attached to said connector housing (10) to enclose said printed circuit board
(26), which covers (52) include tabs (56) which engage in slots (58) in said first
and second edge sections (18, 20).
2. The electronic card as recited in claim 1, further comprising a second connector (48)
attached to said second end of said printed circuit board (26) and to said frame of
said connector housing (10).
3. The electronic card as recited in claim 2, wherein said second connector (48) is integral
with said frame.
4. The electronic card as recited in claim 3, wherein said first and second edge sections
(18, 20) have channels (50) formed therein.
5. The electronic card as recited in claim 4, wherein said frame (16, 18, 20) has a ridge
supporting the edges of said printed circuit board (26) which is captured and supported
between said frame (16, 18, 20) and one of said covers (52).
6. The electronic card as recited in claim 5, wherein said connector housing (10) has
a pair of second ridges (54) constructed to support said covers (52).
1. Elektronische Karte mit:
- einer gedruckten Leiterplatte (26) mit einem ersten und einem zweiten Ende sowie
mit einem ersten und zweiten Rand;
- einem Steckergehäuse (10), welches an der gedruckten Leiterplatte (26) angebracht
ist, wobei das Steckergehäuse einen Kontaktkörper (12) hat, der an dem ersten Ende
der gedruckten Leiterplatte (26) angeordnet ist, und einen Rahmen (16, 18, 20) hat,
der sich von dem Kontaktkörper (12) erstreckt, wobei der Rahmen einen ersten Endabschnitt
(16) hat, der sich entlang dem ersten Ende der gedruckten Leiterplatte (26) erstreckt,
und erste und zweite Randbereiche (18, 20) hat, die sich jeweils entlang dem ersten
und zweiten Rand der gedruckten Leiterplatte (26) erstrecken, dadurch gekennzeichnet, daß das Steckergehäuse (10) ein Paar von im Abstand zueinander angeordneten Stützträgern
(22) hat, die sich zwischen den ersten und zweiten Randbereichen (18, 20) erstrecken,
daß der Kontaktkörper (12) in dem Rahmen (16, 18, 20) integriert ausgebildet ist,
und daß ein Paar von Abdeckungen (22) mit dem Steckergehäuse (10) verbunden sind,
um die gedruckte Leiterplatte (26) zu umschließen, wobei die Abdeckungen (52) Zungen
(56) haben, die in Schlitze (58) der ersten und zweiten Randbereiche (18, 20) eingreifen.
2. Elektronische Karte nach Anspruch 1, die außerdem ein zweites Steckerelement (48)
besitzt, welches mit dem zweiten Ende der gedruckten Leiterplatte (26) und mit dem
Steckergehäuse (10) verbunden ist.
3. Elektronische Karte nach Anspruch 2, bei der das zweite Steckerelement (48) im Rahmen
integriert ist.
4. Elektronische Karte nach Anspruch 3, bei der die ersten und zweiten Randbereiche (18,
20) darin ausgebildete Kanäle (50) haben.
5. Elektronische Karte nach Anspruch 4, bei der der Rahmen (16, 18, 20) eine Schulter
hat, die die Ränder der gedruckten Leiterplatte (26), die zwischen dem Rahmen (16,
18, 20) und einer der Abdeckungen (52) gestützt und festgehalten wird, trägt.
6. Elektronische Karte nach Anspruch 5, bei der das Steckergehäuse (10) ein Paar zweite
Schultern (54) hat, die so ausgebildet sind, daß sie die Abdeckungen (52) tragen.
1. Carte électronique, comportant :
une carte à circuit imprimé (26), ayant des première et seconde extrémités, et des
premier et second bords ;
un boîtier de connecteur (10), fixé à ladite carte à circuit imprimé (26), ledit boîtier
de connecteur ayant un corps de contact (12) fixé à ladite première extrémité de ladite
carte à circuit imprimé (26) et un châssis (16, 18, 20) s'étendant à partir dudit
corps de contact (12), ledit châssis ayant un premier tronçon d'extrémité (16) qui
s'étend le long de ladite première extrémité de ladite carte à circuit imprimé (26)
et des premier et second tronçons de bord (18, 20) qui s'étendent le long desdits
premier et second bords de ladite carte à circuit imprimé (26), respectivement, caractérisé
en ce que ledit boîtier de connecteur (10) comporte une paire de poutres de support
(22), espacées l'une de l'autre, s'étendant entre lesdits premier et second tronçons
de bord (18, 20), ledit corps de contact (12) étant formé d'un bloc avec ledit châssis
(16, 18, 20), et en ce que deux couvercles (52) sont fixés audit boîtier de connecteur
(10) pour enfermer ladite carte à circuit imprimé (26), lesquels couvercles (52) comportent
des pattes (56) qui viennent en prise dans des encoches (58) formées dans lesdits
premier et second tronçons de bord (18, 20).
2. Carte électronique selon la revendication 1, comportant en outre un second connecteur
(48) fixé à ladite seconde extrémité de ladite carte à circuit imprimé (26) et audit
châssis dudit boîtier de connecteur (10).
3. Carte électronique selon la revendication 2, dans laquelle ledit second connecteur
(48) est formé d'un bloc avec ledit châssis.
4. Carte électronique selon la revendication 3, dans laquelle lesdits premier et second
tronçons de bord (18, 20) comportent des canaux (50) formés dans ceux-ci.
5. Carte électronique selon la revendication 4, dans laquelle ledit châssis (16, 18,
20) comporte un rebord supportant les bords de ladite carte à circuit imprimé (26)
qui est capturée et supportée entre ledit châssis (16, 18, 20) et l'un desdits couvercles
(52).
6. Carte électronique selon la revendication 5, dans laquelle ledit boîtier de connecteur
(10) comporte deux seconds rebords (54) réalisés pour supporter lesdits couvercles
(52).

