CN103066450A - Multiport rj stack connector with interlocking mechanism - Google Patents

Multiport rj stack connector with interlocking mechanism Download PDF

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Publication number
CN103066450A
CN103066450A CN2012104098832A CN201210409883A CN103066450A CN 103066450 A CN103066450 A CN 103066450A CN 2012104098832 A CN2012104098832 A CN 2012104098832A CN 201210409883 A CN201210409883 A CN 201210409883A CN 103066450 A CN103066450 A CN 103066450A
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type
connector
connectors
femula connectors
connector body
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CN2012104098832A
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Chinese (zh)
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阿兰·L·波克拉斯
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Priority claimed from US13/654,762 external-priority patent/US20130102195A1/en
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Abstract

Disclosed is a multiport RJ connector that includes vertically stacked RJ-type female connectors, including from a bottom to a top first, second and third RJ-type female connectors. Each RJ-type female connector includes an opening that houses a plurality of contacts including contact portions arranged side-by-side. Each contact includes a contact pin that extends from the corresponding contact portion toward the bottom of the connector body. The lengths of the contacts pins of the first RJ-type female connector are longer than the contacts pins of the second RJ-type female connector which are longer than the contacts pins of the first RJ-type female connector. First and second complementary interlocking structures are included on opposite sides of the connector body. The first or second interlocking structure of the connector body is configured to mate with a respective second or first complementary interlocking structure of another connector body.

Description

Multiport RJ stacking connector with mutual interlocking gear
Technical field
The present invention relates to comprise that at least three arrange the multiport rj connector of the rj connector of vertical stackings, wherein the rj connector of vertical stacking has the corresponding contact of the diapire that extends to the multiport rj connector in order to be inserted in the printed circuit board (PCB) (PCB).Present invention resides at least three stacking in the common connector body that can be installed on PCB RJ type Femula connectors.The connector body of each multiport rj connector can optionally be installed on the connector body of another multiport rj connector in order to form highdensity connector.
Background technology
Rj connector is the electric connector for the Internet and computer product.Rj connector also is applied to telephone industry.
Registered jack generally is used for telephone system, data network is connected with low-speed serial.Cheap, the relatively easy termination of these connectors and be easy to plug.Registered jack typically has transparent plastic body, and this main body has pulls together connector (Femula connectors) and plug (convex type connector) are locked lug or spring bolt and the locking bolt breach that puts in place when connecting.
According to the employed term in scientific and technological industry field, these modularization connectors are called as " RJ " connector.This naming convention is accurate not from the angle of technology, but but is widely used.RJ is the acronym of Registered Jack (registered jack), and this Registered Jack is the 1970's AT﹠amp; T company is the part of code system that telephone service and device class are developed.This system that is called as generic service command code (USOC) use the name with letter r J beginning represent socket under construction capacity and should be how to they distributions for they and public phone network are coupled together.
Registered Jack (RJ) is the standardization physical network interface, and the socket structure and the Wiring pattern that are used for telecommunication or data equipment are connected with server are all provided by LEC or inter-exchange carrier.The standardized designs of these connectors and distribution thereof is called as RJ11, RJ14, RJ21, RJ45, RJ48 etc.Very major part in these interface standards is usually used in the North America, although the some of them interface uses in the world.
RJ type Femula connectors has the Socket casing (or opening) that inserts to form connection for RJ type convex type connector.RJ type concave type housing has many spendable structures, comprising: single port; Two ports of a row of horizontal arrangement; And the Stackable connector, it is the row of stacking rj connector.Yet at existing structure with in arranging, these Stackable connectors only are made of two rows.
Summary of the invention
The present invention relates to be contained in three or more RJ type Femula connectors of the vertical stacking in the connector body, in order to be increased in density and the quantity of RJ type Femula connectors in single component or the unit.Because the density of RJ type Femula connectors increases, so the present invention has also increased the quantity that needs the contact pin that extends, thereby the degree of depth of connector increases to be provided for these contact pins are held and is housed in space in the connector body.The row of these RJ type Femula connectors has the orientation of the symmetry of the minimized in size that keeps connector usually.In the present invention, the orientation of the symmetry of connector helps to make connector body to have space-saving little size.
More particularly, the present invention includes the RJ type Femula connectors of a plurality of vertical stackings that are positioned at connector body, this connector body can be installed on the connector body of similar stacking RJ type Femula connectors, in order to increase density and the quantity of port.In a non-limiting example, RJ type Femula connectors of the present invention comprises top row RJ type Femula connectors, middle row's RJ type Femula connectors and end row RJ type Femula connectors in each connector body, each connector body can be installed on another connector body that has equally three stacking RJ type Femula connectors, thereby they have around and enclose the single covering members of whole RJ type Femula connectors in fact.
The invention still further relates to multiport rj connector assembly, this multiport rj connector assembly comprises a plurality of multiport rj connectors (connector body) that are bonded together, and each multiport rj connector comprises three stacking RJ type Femula connectors.Multiport rj connector assembly can comprise the structures such as three ports, six ports, nine ports, 12 ports, ten five-port, 18 ports, 21 ports.
Can predict, each multiport rj connector can be installed to another multiport rj connector or comprise USB, HDMI and the connector of the other types of SATA connector on.Can be for all installing and using same interlocking structure.In an indefiniteness embodiment, this interlocking structure can comprise from one of multiport rj connector main body side-prominent plastics wedging part, this plastics wedging part inserts and is locked in the groove on the opposite side that is positioned at another multiport rj connector main body, and this groove is aimed at identical position with this plastics wedging part.Therefore, when USB, HDMI and SATA connector were installed, outstanding plastics wedging part was aimed at identical position to finish installation.
With USB, HDMI or SATA connector combination in order to it is connect when installing and locking together, can keep comprising identical height and the size of the multiport rj connector of three RJ type Femula connectors.
The invention still further relates to the method that all types of connectors that are used for the Internet and computer industry are installed.The method comprises: the connector body that will accommodate three RJ type Femula connectors engages with another connector body that accommodates two or three or more RJ type Femula connectors, to be increased in the density of connector in the single multiport RJ type connector assembly.
More particularly, a kind of multiport rj connector is provided, it comprises: connector body, it comprises the RJ type Femula connectors of vertical stacking, and the RJ type Femula connectors of described vertical stacking comprises a RJ type Femula connectors, the 2nd RJ type Femula connectors and the 3rd RJ type Femula connectors from the bottom of described connector body to the top; Each RJ type Femula connectors comprises a plurality of contacts with contact portion that are arranged side by side in the opening of this RJ type Femula connectors, wherein, each contact comprises the contact pin that extends towards the bottom of described connector body from described contact portion, the length of the contact pin that extends from the contact portion of described the 3rd RJ type Femula connectors is longer than the length of the contact pin that extends from the contact portion of described the 2nd RJ type Femula connectors, and the length of the contact pin that extends from the contact portion of described the 2nd RJ type Femula connectors is longer than the length of the contact pin that extends from the contact portion of a described RJ type Femula connectors; And be positioned at complementary the first interlocking structure and complementary the second interlocking structure on the two opposite sides of described connector body, wherein, the first interlocking structure of described connector body or the second interlocking structure are configured to match with corresponding complementary the second interlocking structure or complementary first interlocking structure of another connector body.
Described connector body can comprise conduction on end face, the back side and at least one side that is positioned at described connector body and the covering members of magnetic conduction.Described connector body can not comprise cover in the following position at least one described conduction and the covering members of magnetic conduction: the bottom surface of described connector body; Near and the front of the described connector body the opening of each RJ type Femula connectors.
The opening of each RJ type Femula connectors can be configured to admit complementary RJ type connector.
At least one contact pin can comprise the extension pin.
Described a plurality of contacts of each RJ type Femula connectors can be arranged side by side by along continuous straight runs between the both sides of described connector body.
The opening of each RJ type Femula connectors can comprise the locking bolt breach.The locking bolt breach of two RJ type Femula connectors in described three RJ type Femula connectors can be along top or the bottom alignment of equidirectional towards described connector body.The locking bolt breach of another RJ type Femula connectors in described three RJ type Femula connectors can be orientated towards bottom or the top of described connector body in opposite direction.
Can comprise LED at the opening adjacent with each RJ type Femula connectors.
Described the first interlocking structure can be groove, and the second interlocking structure can be the wedging part.
The opening of each RJ type Femula connectors can comprise towards the corresponding top of described connector body and top and the bottom of bottom alignment.The contact portion of described the 2nd RJ type Femula connectors can be arranged on the bottom of the opening of described the 2nd RJ type Femula connectors, and the contact portion of described the 3rd RJ type Femula connectors can be arranged on the bottom of described the 3rd RJ type Femula connectors.The contact portion of a described RJ type Femula connectors is arranged on the top of the opening of a described RJ type Femula connectors.One or more integrated magnetic parts can be included in the described connector body and can be connected with one or more contacts.
The present invention has also disclosed a kind of multiport rj connector assembly, it comprises the multiport rj connector of a plurality of the above-mentioned types that are bonded together, and the first interlocking structure of one of them multiport rj connector engages with the second interlocking structure of another multiport rj connector.Described multiport rj connector can comprise: cover the covering members of each multiport rj connector, perhaps cover the single covering members of described a plurality of multiport rj connectors.
Description of drawings
Fig. 1 is mounted in the perspective view of an example of the multiport rj connector of the present invention on the PCB;
Fig. 2 A is the view along the intercepting of the line II-II among Fig. 1;
Fig. 2 B is independent view and the exploded view of the contact pin shown in Fig. 2 A, and contact pin comprises and the isolated extension pin of contact pin;
Fig. 2 C is the contact pin among Fig. 2 B and extends the view that pin is bonded together;
Fig. 3 A is the side by side perspective view of observing from the rear of two examples of multiport rj connector shown in Figure 1;
Fig. 3 B is the end-view of the first interlocking structure that has the form of groove among Fig. 3 A;
Fig. 3 C is the vertical view of the second interlocking structure, and this second interlocking structure has the wedging part opened by the sidewall spacers of pillar and multiport rj connector or the form of wedge shape part;
Fig. 4 illustrates the independent perspective view that the second interlocking structure among Fig. 3 C (wedging part) is inserted to the first interlocking structure (groove) among Fig. 3 B;
Fig. 5 is the perspective view of observing from the rear of three examples of the multiport rj connector of type shown in Figure 1, and the first interlocking structure that passes through them and second interlocking structure of these three multiport rj connectors are bonded together;
Fig. 6 is the view along the intercepting of the line VI-VI among Fig. 3 A;
Fig. 7 is the independent view of an example of the contact of the RJ type Femula connectors among Fig. 1, and this contact comprises RJ contact portion and contact pin part; And
Fig. 8 is the front view of four examples of spaced apart multiport rj connector shown in Figure 1 at the top of PCB, arrow among the figure illustrates the movement of multiport rj connector, and the multiport rj connector moves together and forms the multiport rj connector assembly that is made of four multiport rj connectors that are bonded together by their the first interlocking structure and second interlocking structures separately.
Embodiment
Present invention is described below with reference to the accompanying drawings, and in the accompanying drawings, similar Reference numeral represents similar element.
With reference to figure 1, multiport rj connector 2 of the present invention comprises connector body 4, and connector body 4 accommodates the RJ type Femula connectors 6 of three or more vertical stackings.In multiport rj connector 2 shown in Figure 1, connector body 4 accommodates respectively a RJ type Femula connectors 6-1, the 2nd RJ type Femula connectors 6-2, the 3rd RJ type Femula connectors 6-3.Although this illustrate and the multiport rj connector 2 with three RJ type Femula connectors 6 is discussed, but should not be considered as the present invention and be confined to this, this is because can predict the RJ type Femula connectors 6 that connector body 4 can comprise four or more vertical stackings.
RJ type Femula connectors 6-1,6-2 and 6-3 comprise respectively opening 8-1,8-2 and 8-3.Opening 8-1 is included in a plurality of contact 10-1(that are arranged side by side in the opening 8-1 and is shown in phantom line).Similarly, opening 8-2 comprises a plurality of contact 10-2 that are arranged side by side and opening 8-3 comprises a plurality of contact 10-3 that are arranged side by side.
With reference to figure 2A to Fig. 2 C and continue with reference to figure 1, each contact 10-1 comprises RJ contact portion 12-1 and contact pin 14-1, and contact pin 14-1 extends in order to insert the through hole 16 of printed circuit board (PCB) (PCB) 18 towards the bottom of connector body 4 from contact portion 12-1.
Each contact 10-2 comprises contact portion 12-2 and contact pin 14-2, and contact pin 14-2 extends in order to insert the through hole 16 of PCB 18 towards the bottom of connector body 4 from contact portion 12-2.At last, each contact 10-3 comprises RJ contact portion 12-3 and contact pin 14-3, and contact pin 14-3 extends in order to insert the through hole 16 of PCB 18 towards the bottom of connector body 4 from contact portion 12-3.Shown in Fig. 2 B and Fig. 2 C, the far-end 21 of any one contact pin 14 can with extend that pin 20 engage so that interior and increase the length of described contact pin 14 in order to help described contact pin 14 to insert the through hole 16 of PCB 18 when needed.
Although Fig. 1 and Fig. 2 A show the far-end of the contact pin 14 of otch 22 extensions from connector body 4, but should not be considered as the present invention and be confined to this, this is not have otch 22 because the connector body 4 that has the ability to anticipate can form, shown in the imaginary line 24 among Fig. 1 and Fig. 2 A.
Also continue with reference to figure 1 and Fig. 2 A with reference to figure 3A to Fig. 3 C, Fig. 3 A to Fig. 3 C shows the perspective view at the back side of two multiport rj connectors 2.As seen from the figure, each multiport rj connector 2 comprises complementary the first interlocking structure 26 and complementary the second interlocking structure 28 at the two opposite sides of connector body 4.In illustrated embodiment, each example of the first interlocking structure 26 is that groove and each example of the second interlocking structure 28 are the wedging parts.Can find out from Fig. 3 A to Fig. 3 C, the first interlocking structure of connector body 4 or the second interlocking structure are configured to match with corresponding complementary the second interlocking structure or complementary first interlocking structure of other connector bodies 4.Although this illustrate and the first interlocking structure 26 of discussing and the second interlocking structure 28 be groove and wedging part, should not be considered as the present invention and be confined to this, this also has the ability to anticipate because of other complementary interlocking structures of use.
Fig. 4 shows the independent view of a wedging part 28 and a groove 26, wherein wedges part 28 in the back side insertion groove 26 of connector body 4 (shown in the dotted arrow Fig. 4).
Fig. 5 illustrates the rear perspective view of three multiport rj connectors 2 that are bonded together via complementary first interlocking structure 26 of adjacent connector body 4 and complementary the second interlocking structure 28.
Fig. 6 shows along the cutaway view of the intercepting of the line VI-VI among Fig. 3 A, wherein more has been shown clearly in the array of contact pin 14-1 to 14-3.In illustrated embodiment, contact pin 14-1 to 14-3 has formed 3 * 7 contact pin 14 arrays.Yet, should not be considered as the present invention and be confined to this, this is because use the contact pin array of other sizes also to have the ability to anticipate.
Fig. 7 shows the independent view of the single contact 10 that comprises RJ contact portion 12 and contact pin part 14.Extend the length that pin 20 extends contact pin 14 if utilize, then contact pin 14 comprises that its original contact pin partly adds extension pin 20.
Fig. 8 shows four multiport rj connectors, 2/ connector body 4 that is spaced apart from each other at the top of PCB 18.Four multiport rj connectors 2 shown in Fig. 8 can be as shown in arrow 30 mobile and be locked together via the first interlocking structure 26 on the adjacent connector 2 and the second interlocking structure 28 like that together.Subsequently, the contact pin of four multiport rj connectors 2 insert in known manner in the through hole (not shown in Fig. 8) of PCB 18 and in known manner fixing (welding) in this through hole.
Especially as shown in Figure 1, each RJ type Femula connectors comprises locking bolt breach 32, and locking bolt breach 32 is used for cooperating with the spring bolt 34 of this RJ type convex type connector 36 when the opening 8 of one of RJ type convex type connector 36 insertion RJ type Femula connectors 6 of coupling.Such as Fig. 1 and shown in Figure 8, each example of the locking bolt breach 32 of RJ type Femula connectors 6-1 is towards the bottom of corresponding connector body 4.In contrast, each example of the locking bolt breach 32 of the RJ type Femula connectors 6-2 of multiport rj connector 2 and 6-3 is towards the top of connector body 4.Locking bolt breach towards the bottom (or top) and in addition the layout of two locking bolt breach RJ type Femula connectors 6-1 to 6-3 of (or bottom) towards the top help contact pin 14-1 and 14-3(and any extension pin 20) compact cabling.This layout of locking bolt breach 32 is orientated (towards the top of connector body 4 or the bottom of connector body 4) in the same direction with all locking bolt breach 32 layout is compared and is also helped to make RJ type Femula connectors 6-1 to 6-3 to obtain compacter layout and make connector body 4 obtain lower whole height.
Orientation owing to the locking bolt breach 32 of each the RJ type Femula connectors 6 shown in Fig. 1, the contact portion 12 of RJ type Femula connectors 6-2 and 6-3 arranges or is oriented in the bottom of opening 8-2 and 8-3, and the RJ contact portion 12-1 of RJ type Femula connectors 6-1 arranges or be oriented in the top of opening 8-1 simultaneously.
Preferably, each multiport rj connector 2 can optionally comprise the conduction of end face, the back side and at least one side (being preferably two sides) that are positioned at connector body 4 and (ground connection) covering members 38 of magnetic conduction.Because each example of multiport rj connector 2 engages with PCB 18, therefore on the bottom surface of connector body (being positioned proximate in use PCB18), can optionally not comprise the covering members 38 of conduction and magnetic conduction.Similarly, the covering members 38 that on the opening 8 of each RJ type Femula connectors 6, does not comprise conduction and magnetic conduction.
When a plurality of multiport rj connectors 2 that comprise respectively covering members 38 are bonded together (Fig. 5) via complementary first interlocking structure 26 of adjacent connection main body 4 and complementary the second interlocking structure 28, the covering members 38 of these adjacent connectors 2 can: (1) forms between the two by contact (directly and/or via the interlocking structure 26 and 28 that connects) and is electrically connected; (2) thus electrically contact with Mechanical Contact with the ground wire of PCB 18 or plane in known manner via any suitable device and to be electrically connected with ground wire or the plane of PCB 18; Perhaps (3) conduction of consisting of at the covering members 38 that all forms around a plurality of multiport rj connectors 2 and between the adjacent described multiport rj connector 2 by described a plurality of adjacent connectors 2 thus and (ground connection) covering members 44(Fig. 5 of magnetic conduction).
As selection, each multiport rj connector 2 can not comprise covering members 38.In this optional embodiment, when a plurality of multiport rj connectors 2 are joined together (Fig. 5) via complementary first interlocking structure 26 of adjacent connector body 4 and complementary the second interlocking structure 28, the adjacent connector body 4 that independent covering members 44' can be arranged to cover a plurality of joints to be forming the ground connection covering members around described a plurality of multiport rj connectors 2, and this covering members 44' has one or more openings of the opening 8 of the RJ type Femula connectors 6 that helps to lead to described a plurality of multiport rj connectors 2.Thereby covering members 44' can electrically contact with Mechanical Contact with the ground wire of PCB 18 or plane in known manner via any suitable device subsequently and is electrically connected with ground wire or the plane of PCB 18.In the present embodiment, covering members 44' without any part between adjacent multiport rj connector 2.
Each RJ type Femula connectors 6 can optionally comprise near be positioned at its opening 8 LED 40(or the lamp of any other suitable kind or type).Each LED 40 can be connected with grounding component with signal or electric power contact 10 as required in the following manner or covering members 38 is connected: this mode allows LED 40 via signal or electric power contact 10 applying or data transfer and luminous in response to electric power.
One or more among the RJ type Femula connectors 6-1 to 6-3 or all can optionally in the main body 4 of multiport rj connector 2, comprise one or more integrated magnetic part 42(Fig. 1).Each integrated magnetic part can be winding part, and winding part is such as but not limited to winding inductor.Can be referring to US 8,177 about the detailed description of other devices that can comprise integrated magnetic part 42,585 and US 8,033,871, these two pieces of patents are incorporated this paper by reference into.In the situation that those of ordinary skills think fit and/or expect, each integrated magnetic part can be connected with one or more contacts 10.
Invention has been described with reference to the accompanying drawings.Obviously, reading and understanding on the basis of above-mentioned detailed description, those skilled in the art can make amendment and modification.The present invention should be interpreted as comprising and fall into appended claims and equivalents limited range thereof with interior all modifications and modification.
The application requires the U.S. Provisional Patent Application No.61/628 of submission on October 24th, 2011,074 priority, and the full content of this application is incorporated this paper by reference into.

Claims (13)

1. multiport rj connector comprises:
Connector body, it comprises the RJ type Femula connectors of vertical stacking, and the RJ type Femula connectors of described vertical stacking comprises a RJ type Femula connectors, the 2nd RJ type Femula connectors and the 3rd RJ type Femula connectors from the bottom of described connector body to the top;
Each RJ type Femula connectors comprises a plurality of contacts with contact portion that are arranged side by side in its opening, wherein, each contact comprises the contact pin that extends towards the bottom of described connector body from described contact portion, the length of the contact pin that extends from the contact portion of described the 3rd RJ type Femula connectors is longer than the length of the contact pin that extends from the contact portion of described the 2nd RJ type Femula connectors, and the length of the contact pin that extends from the contact portion of described the 2nd RJ type Femula connectors is longer than the length of the contact pin that extends from the contact portion of a described RJ type Femula connectors; And
Be positioned at complementary the first interlocking structure and complementary the second interlocking structure on the two opposite sides of described connector body, wherein, the first interlocking structure of described connector body or the second interlocking structure are configured to match with corresponding complementary the second interlocking structure or complementary first interlocking structure of another connector body.
2. connector according to claim 1, wherein, described connector body comprises conduction on end face, the back side and at least one side that is positioned at described connector body and the covering members of magnetic conduction.
3. connector according to claim 2, wherein, described connector body do not comprise cover in the following position at least one described conduction and the covering members of magnetic conduction:
The bottom surface of described connector body; And
Near the front of the described connector body the opening of each RJ type Femula connectors.
4. connector according to claim 1, wherein, the open construction of each RJ type Femula connectors is for admitting complementary RJ type connector.
5. connector according to claim 1, wherein, at least one contact pin comprises the extension pin.
6. connector according to claim 1, wherein, described a plurality of contacts of each RJ type Femula connectors along continuous straight runs between the both sides of described connector body is arranged side by side.
7. connector according to claim 1, wherein:
The opening of each RJ type Femula connectors comprises the locking bolt breach;
The locking bolt breach of two RJ type Femula connectors in described three RJ type Femula connectors is along top or the bottom alignment of equidirectional towards described connector body; And
The locking bolt breach of another RJ type Femula connectors in described three RJ type Femula connectors is orientated towards bottom or the top of described connector body in opposite direction.
8. connector according to claim 1 also comprises the LED adjacent with the opening of each RJ type Femula connectors.
9. connector according to claim 1, wherein:
Described the first interlocking structure is groove, and described the second interlocking structure is the wedging part.
10. connector according to claim 1, wherein:
The opening of each RJ type Femula connectors comprises towards the corresponding top of described connector body and top and the bottom of bottom alignment;
The contact portion of described the 2nd RJ type Femula connectors is arranged on the bottom of the opening of described the 2nd RJ type Femula connectors, and the contact portion of described the 3rd RJ type Femula connectors is arranged on the bottom of described the 3rd RJ type Femula connectors; And
The contact portion of a described RJ type Femula connectors is arranged on the top of the opening of a described RJ type Femula connectors.
11. connector according to claim 1 also comprises the magnetic part that is positioned at described connector body, described magnetic part is connected with at least one contact.
12. a multiport rj connector assembly comprises the multiport rj connector a plurality of according to claim 1 that is bonded together, wherein, the first interlocking structure of a multiport rj connector engages with the second interlocking structure of another multiport rj connector.
13. multiport rj connector according to claim 12 also comprises: the covering members that covers each multiport rj connector; Perhaps cover the single covering members of described a plurality of multiport rj connectors.
CN2012104098832A 2011-10-24 2012-10-24 Multiport rj stack connector with interlocking mechanism Pending CN103066450A (en)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
US201161628074P 2011-10-24 2011-10-24
US61/628,074 2011-10-24
US13/654,762 2012-10-18
US13/654,762 US20130102195A1 (en) 2011-10-24 2012-10-18 Multiport RJ Stack Connector With Interlocking Mechanism to Attach to Additional Multiport Stack

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CN103066450A true CN103066450A (en) 2013-04-24

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Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6425781B1 (en) * 1999-01-28 2002-07-30 Bel-Fuse, Inc. RJ jack with integrated interface magnetics
CN1465121A (en) * 2000-09-17 2003-12-31 贝尔费斯股份有限公司 High density rj connector assembly
CN101589511A (en) * 2006-10-23 2009-11-25 阿兰·L·波克拉斯 Multiple function RJ connector with split internal housing opening cavity
US7786009B2 (en) * 2004-06-29 2010-08-31 Pulse Engineering, Inc. Universal connector assembly and method of manufacturing

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6425781B1 (en) * 1999-01-28 2002-07-30 Bel-Fuse, Inc. RJ jack with integrated interface magnetics
CN1465121A (en) * 2000-09-17 2003-12-31 贝尔费斯股份有限公司 High density rj connector assembly
US7786009B2 (en) * 2004-06-29 2010-08-31 Pulse Engineering, Inc. Universal connector assembly and method of manufacturing
CN101589511A (en) * 2006-10-23 2009-11-25 阿兰·L·波克拉斯 Multiple function RJ connector with split internal housing opening cavity
US8033871B2 (en) * 2006-10-23 2011-10-11 Pocrass Alan L Multiple function RJ connector with split internal housing opening cavity

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Application publication date: 20130424