CN201081874Y - Computer system and connector assembly - Google Patents
Computer system and connector assembly Download PDFInfo
- Publication number
- CN201081874Y CN201081874Y CNU2006200071031U CN200620007103U CN201081874Y CN 201081874 Y CN201081874 Y CN 201081874Y CN U2006200071031 U CNU2006200071031 U CN U2006200071031U CN 200620007103 U CN200620007103 U CN 200620007103U CN 201081874 Y CN201081874 Y CN 201081874Y
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- Prior art keywords
- connector
- network interface
- interface unit
- shell
- computer system
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Abstract
The utility model provides a computer system and connector components. The connector component of the utility model comprises a bracket which is arranged on the front panel of the case; an outer shell which is encased in the bracket; a plurality of connectors outwards relative to the surface of the front board, which are encased in the outer shell; a plurality of cables, which are connected to the outer shell and internal connectors ports on a network interface card in the case. The computer system of the utility model comprises a case provided with a base and a front board; the network interface card provided with the internal connectors ports and arranged in the case; the connector components which are coupled with the front board and the network interface card, which comprises the outer shell encased in the bracket; a plurality of connectors which are outwards relative to the surface of the front board and are encased in the outer shell; a plurality of cables, which are connected to the outer shell and the ports on the network interface card.
Description
Technical field
Embodiment of the present utility model relates to encapsulation field, relates in particular to the cabinet of server.
Background technology
The progress of server technology need have highly compact and the addressable connector that interconnects and be connected with cable of being used to.So far, standard high power capacity server make ethernet port can with aspect lack flexibility.Typical server can comprise a mainboard, and it has one or more Gigabit Ethernet network interfaces behind in system.When these connectors placed the server back, it was to be difficult to or danger close sometimes that cable is connected to these connectors.Therefore, expectation is by improving access on the front panel that these connectors is placed cabinet.
Provide the prior art of front-panel connector access property that many shortcomings are arranged.5 classes (CAT5) the cable route that technology will be grown is by the intraware in the cabinet and leave the back side of cabinet.Subsequently, these cable loopbacks are gone into connector on the network interface card (NIC).This technology can cause the destruction to the integrated circuit board assembly, and it is dangerous to form assembling, jeopardizes Electromagnetic Compatibility, perhaps owing to a large amount of interconnection points reduce signal integrity.Another technology with substrate shortened one inch or more than so that provide the space to come the ethernet side opening connector of internal loopback to the substrate to the CAT5 cable.This technology has identical problem.In addition, owing to shortened integrated circuit board, it can cause makes or assembly problem.
The utility model content
For addressing the above problem, the utility model provides a kind of connector assembly, and it comprises: support, and it is installed on the front panel of cabinet; Shell, it is packed in the described support; Face outer a plurality of connectors with respect to front panel, described a plurality of connectors are packed in described shell; And a plurality of cables, they are connected to the internal connector port on the network interface unit in described shell and the cabinet.
According on the other hand of the present utility model, a kind of computer system also is provided, it comprises: the cabinet with pedestal and front panel; The interior network interface unit of described cabinet with internal connector port; And with the connector assembly of described front panel and network interface unit coupling, comprising: support, it is installed on the described front panel; Shell, it is packed in the described support; Face outer a plurality of connectors with respect to front panel, described a plurality of connectors are packed in described shell; And a plurality of cables, they are connected to the described port on described shell and the network interface unit.
The utility model has overcome many shortcomings of prior art, has avoided the destruction to the integrated circuit board assembly, improves Electromagnetic Compatibility and signal integrity.
Description of drawings
Understand embodiment of the present utility model best by the reference the following description and drawings, accompanying drawing is used to illustrate embodiment of the present utility model.Among the figure:
Figure 1A is the diagrammatic sketch that the system that wherein can implement an embodiment of the utility model is shown.
Figure 1B is the diagrammatic sketch that illustrates according to the server of an embodiment of the utility model.
Fig. 2 is the diagrammatic sketch that illustrates according to the connector assembly of an embodiment of the utility model.
Fig. 3 A and 3B illustrate according to the connector in the connector assembly of an embodiment of the utility model.
Fig. 4 is the flow chart according to the process of the assembly connector assembly of an embodiment of the utility model.
Fig. 5 is the flow chart according to the process of the stube cable of an embodiment of the utility model.
Embodiment
An embodiment of the present utility model is a connector assembly.One support is installed on the front panel of cabinet.The shell seal of support of packing into faces outer a plurality of connectors with respect to front panel.A plurality of cables are connected to the internal connector port on the network interface unit (NIC) in shell and the cabinet.
In the following description, many specific detail are provided.But, be appreciated that embodiment of the present utility model can implement under the situation of these specific detail not having.In other example, not shown known circuit, structure and technology are to avoid the understanding of fuzzy this description.
An embodiment of the present utility model can be described as a process, and it is depicted as a flow process, flow chart, structure chart or block diagram usually.Although flow chart can be described as sequential process with operation, many operations can walk abreast or carry out concomitantly.In addition, can reset operating sequence.When finishing its operation, termination procedure.One process can be corresponding to a method, program, step, manufacture method etc.
An embodiment of the present utility model provides the technology of the connector assembly in the server.This server has mechanical frame cabinet.Connector is closed in the shell.Shell is packed in support or the module escutcheon.With the support setting or be installed on the front panel of server so that simple and easy access to be provided.Arrive the rear portion that has NIC or have the plate/card of network interface unit through frame from the inner route of the cable of connector.Cable ends at the one or more connector ports on the NIC.By module network connect and intactly inside cable be routed to peripheral board or card, this assembly enables unique platform class framework, wherein provides network insertion to the front portion of server system.This preposition NIC (NIF) notion is to satisfy the solution of the framework needs of platform class application and network security server.
Figure 1A is the diagrammatic sketch that the system 100 that wherein can implement an embodiment of the present utility model is shown.System's 100 expressions use the Local Area Network of 10 Gigabit Ethernet to use.System 100 comprises two campuses district 20 and 50 and link 25.
In the campus district 20 and 50 each all represents to use network interconnection to come the enterprise of link personal computers (PC), work station and server.They can have the gathering to 10 Gigabit Ethernet down links of a plurality of 1000BASE-SXs or 1000BASE-T section.Link 25 can be the monomode fiber link of going up connection two campuses district 20 and 50 apart from (for example 40km) long.
LAN42 provides and being connected such as server, PC or the work station of server 70 and PC/ work station 75. Server 40 or 70 provides specific operation to support computing environment.They can be the printing server, the storage servers that links to each other with mass storage device (such as tape drive, Redundant Array of Inexpensive Disc (RAID)) that link to each other with various printers, be used to provide such as the media server of the multimedia service of video, audio frequency or figure or any server with specific function.Each server all comprises the one or more network interface unit (NIC) that have with the network concatenation ability of corresponding LAN usually.
Figure 1B is the diagrammatic sketch that illustrates according to server 40/70 shown in Figure 1A of an embodiment of the utility model.Server 40/70 comprises cabinet 110, NIC120, adapter stent 130, integrated circuit board 140, mainboard 150 and connector assembly 160.Server 40/70 can comprise greater or less than above assembly.
NIC120 provides the network connectivity with server 40/70.In one embodiment, NIC120 and 32 and 64 periphery component interconnections (PCI) bus standard compatibility.Its common accord with PCI local bus version 2 .2, PCI-X local bus version 1.0 or PCI-Express standard.An above NIC120 can be arranged in the server 40/70.It can occupy a connector slot on the mainboard 150.Usually, NIC120 supports standard ethernet minimum and largest frames size (64 or 1518 byte), frame format and IEEE 802.2 local controlling links (LLC) standards.It can also support full duplex Gigabit Ethernet interface, based on the current control of frame and the physical layer of definition wired ethernet and other standard of data link layer.It can support the copper Gigabit Ethernet of IEEE 802.3ab definition or the optical fiber Gigabit Ethernet of IEEE 802.3z definition.
NIC120 has one or more internal connector port ones 25.The quantity of connector port 125 can be from 1 to 4.Port one 25 can support copper or fiber optic cables to connect.Connect for copper cable, it can comprise RJ-45 Shielded Twisted Pair (STP) or unshielded twisted pair (UTP) connector that is used for 5 classes (CAT5), surpasses 5 classes (CAT5e) or the connection of 6 classes (CAT6) copper cable.It also can comprise duplexing subscriber's connector (SC), direct insertion (ST) connector or small-shape factor (SFF) the local connector (LC) that is used for the fiber optic cables connection.The half-duplex that it can be supported to be used for the full duplex of 10/100/1000Mbps and be used for 10/100Mbps.
Mainboard 150 provides the main computational resource of server 40/70.It generally includes one or more processors or CPU (CPU), Memory Controller (MC), i/o controller (IOC), memory bank and input/output device.Processor can be the framework of any kind, such as the processor that uses Hyper-Threading, safety, network, digital media technology, single core processor, multi-core processor, flush bonding processor, mobile processor, microcontroller, digital signal processor, the superscale computer, vector processor, single-instruction multiple-data (SIMD) computer, complex instruction set computer (CISC) (CISC), Reduced Instruction Set Computer (RISC), very long instruction word (VLIW) or mixed architecture.Memory Controller provides the control and the configuration of memory and input/output device.It can be integrated into chipset, and multinomial function that this chipset is integrated is such as figure, medium, isolated execution pattern, host to peripheral bus interface, memory control, power management etc.Storage system code and data.Main storage 30 is usually with dynamic random access memory (DRAM), static RAM (SRAM) or comprise those the memory of other type that does not need to refresh.IOC can have the many functions that are designed to support the I/O function.IOC also can be with MC or is integrated into chipset dividually, in order to realize the I/O function.IOC can comprise many interfaces and I/O function, such as periphery component interconnection (PCI) bus interface, processor interface, interrupt control unit, direct memory access (DMA) (DMA) controller, power management logic, timer, System Management Bus (SMBus), USB (USB) interface, big capacity storage interface, low pin count (LPC) interface, radio interconnected, direct media interface (DMI) etc.Big capacity storage interface and mass storage device interfaces are so that the archive information of storage such as code, program, file, data and application program.Big capacity storage interface can comprise small computer system interface (SCSI), serial SCSI, advanced technology attachment (ATA) (parallel and/or serial), integrated drive electronics (IDE), enhancement mode IDE, ATA packet interface (ATAPI) etc.Mass storage device can comprise compact-disc (CD) read-only memory (ROM), digital video/universal disc (DVD), floppy drive, hard disk drive, tape drive and any other magnetic or optical storage.Mainboard can have many PCI, PCI Express (PCI-X or PCI-E) connector slot.Usually NIC120 is inserted one of these connector slots.
By the one or more ports on the NIC120 being extended to the front panel 118 of cabinet 110, connector assembly 160 provides NIF solution.Connector assembly 160 provides several advantages, comprises that the simple and easy access that network is connected, clean and tidy or organized cable connect and the signal integrity of improvement.Connector assembly 160 provides the copper and the optical fiber connector on the plate 118 in front simultaneously.Connector assembly 160 is positioned at cabinet 110 inside.
Fig. 2 is the diagrammatic sketch that illustrates according to connector assembly 160 shown in Figure 1B of an embodiment of the utility model.Connector assembly 160 comprises support 210, shell 220, some connectors 230, cable 250 and miter guide 260.Connector assembly 160 can comprise greater or less than above assembly.For example, it can comprise more than one support, and more than one shell, or the connector of an above type are in order to provide the copper and the optical fiber connector on the plate 118 in front.
Shell 220 is packed into or is held connector 230.Its protection connector 230 is avoided the influence of short circuit, dust, dirt, moisture and electrical interference.Usually, it is made by molded plastics, and can have or not have the metal skirt that is used for EMC (Electro Magnetic Compatibility).Shell 220 is packed in the support 210.Connector 230 can comprise and is used for the internuncial many connectors of Gigabit Ethernet.They can be similar to the connector (Figure 1B) that NIC connector port 125 places, inside on the NIC120 use.They can comprise that being used for copper cable connects (for example, the RJ-45 connector) or be used for the connector that fiber optic cables connect (for example, ST, SC or SFF LC connector).Connector 230 can be arranged by any form easily, shown in Fig. 3 A and 3B.Connector 230 is electrically connected to the cable 250 in the shell 220.This waits by welding, crimping and realizes.Cable 250 can be encoded to mate with connector by look.The look encoding scheme can be followed NBS (ANSI)/telecommunications industry association (TIA)/electronic industries alliance (EIA) standard.
Cable 250 is connected to inside NIC connector port 125 on the NIC120 (Figure 1B) in shell 220 and the cabinet 110.Cable 250 can comprise copper or fiber optic cables/circuit.Copper cable can be the CAT5 cable line (4 pairs or 2 pairs) with RJ45UTP/STP connector compatibility.Fiber optic cables can be 50 μ m or the 62.5mm multimode duplex cables with SC or LC connector compatibility.Cable 250 can comprise pigtail tap, patch cord, twisted-pair feeder or any combination.They can be solid or braid.They can carry out the look coding according to the ANSI/TIA/EIA-568-B.3 standard.Cable 250 can utilize that one or more cable zips knot 255 is tied up, combination or ligation together.
Miter guide 260 is positioned near one or more inner NIC connector ports 125, so that tie up these cables before inner NIC connector port 125 places stop.It is used to strengthen cable machinery intensity, clearly makes cable 250 routes by system, and prevent cable 250 in cabinet 110 other card or assembly on fall or land.It can be attached to the adapter stent 130 on the NIC, makes it be basically perpendicular to NIC120.It has the slot that inserts cable 250 and cable is tightly kept by it.
In order to provide the maximum of space effectively to use, NIC120 can be with respect to pedestal 115 horizontal positioned of cabinet 110.NIC120 also can be oriented to and makes inner NIC connector port 125 be positioned at the beeline place of leaving shell 220.In one embodiment, can be with NIC120 Rotate 180 °, make port one 25 the most close shells 220.Cable 250 can advance to miter guide 260 from shell 220 on rectilinear direction.In cabinet 110, the length of cable 250 is shorter, and scope can be from 3 inches to 8 inches.Because cable 250 directly advances to inside NIC connector port 125 on the NIC from connector 230, and connects (for example, integrated circuit board) without any other signal, so can keep signal integrity.This has promoted the longer cable route that obtains the ability of good signal quality and enable equipment.
Fig. 3 A and 3B show according to the connector in the connector assembly of an embodiment of the utility model 230.Connector 230 can be arranged by multiple structure 310,330,350 or 370.
Fig. 4 is the flow chart that illustrates according to the process 400 of the assembly connector assembly of an embodiment of the utility model.In when beginning, process 400 is installed on support on the front panel of machine box for server (frame 410).Then, process 400 is placed a shell with (frame 420) in the support of packing into.This shell seal faces outer many connectors with respect to front panel.Connector can be the copper or the optical fiber connector.They can form by any structure form such as 2 * 2 or 1 * 4.
Subsequently, connect many cables (frame 430) between the one or more inner NIC connector port on the NIC of process 400 in connector shell and cabinet.Cable length can be similar to the distance between the port on shell and the NIC.Subsequently, process 400 finishes.
Fig. 5 is the flow chart that illustrates according to the process shown in Figure 4 430 that is used for stube cable of an embodiment of the utility model.
During beginning, process 430 is inserted near the miter guide slot (frame 510) of cable by being provided with the NIC.This miter guide is attached to the adapter stent on the NIC.Then, process 430 is placed NIC (frame 520) with respect to cabinet base level ground.Then, process 430 directed NIC are so that one or more NIC connector port is positioned at the beeline place (frame 530) with shell.This can realize with the side of putting upside down NIC by NIC being rotated 180 °, perhaps by design NIC so that inner NIC connector port realize towards interior with respect to front panel.Then, process 430 ends at cable the connector (frame 540) of port.Subsequently, process 430 finishes.
At the connector assembly of the signal integrity that effectively uses and improve that front panel access property, space are provided embodiment of the present utility model has been described.Connector assembly adopts the NIF notion to come the supporting platform level to use and network security server market.Used Gigabit Ethernet to connect property embodiment as an illustration although describe, embodiment of the present utility model can be applicable to the connection of other type.The structure of connector can be different in the shell, to adapt to special connection.For example, can use the connector of the advanced technology attachment (ATA) that is used for small computer system interface (SCSI), serial or parallel, USB (USB), IEEE 1394, PDA(Personal Digital Assistant), cell phone etc.
Though described the utility model according to some embodiment, those of ordinary skill in the art will recognize that the utility model does not need described embodiment, and can implement with the modifications and variations in the spirit and scope of appended claims.Therefore, more than describe and be considered to illustrative and nonrestrictive.
Claims (16)
1. connector assembly comprises:
Support, it is installed on the front panel of cabinet;
Shell, it is packed in the described support;
Face outer a plurality of connectors with respect to front panel, described a plurality of connectors are packed in described shell; And
A plurality of cables, they are connected to the internal connector port on the network interface unit in described shell and the cabinet.
2. connector assembly as claimed in claim 1 is characterized in that, described connector comprises:
One trip link actuator; And
The indicating device at each described connector place is used to indicate connectivity or activity.
3. connector assembly as claimed in claim 1 is characterized in that, also comprises:
Be arranged near the described port and have the miter guide of the slot that is used to keep described cable.
4. connector assembly as claimed in claim 3 is characterized in that, described network interface unit is placed with respect to the base level of described cabinet.
5. connector assembly as claimed in claim 4 is characterized in that, described network interface unit is oriented to and makes described port be in the beeline place with described shell.
6. connector assembly as claimed in claim 4 is characterized in that, described miter guide is attached to horizontal surface, so that described miter guide is approximately perpendicular to described network interface unit.
7. connector assembly as claimed in claim 4 is characterized in that, one of described connector is to be connected one of compatible copper and optical fiber connector with Gigabit Ethernet.
8. connector assembly as claimed in claim 7 is characterized in that, one of described connector is one of RJ-45 and LC connector.
9. computer system comprises:
Cabinet with pedestal and front panel;
The interior network interface unit of described cabinet with internal connector port; And
Connector assembly with described front panel and network interface unit coupling comprises:
Support, it is installed on the described front panel;
Shell, it is packed in the described support;
Face outer a plurality of connectors with respect to front panel, described a plurality of connectors are packed in described shell; And
A plurality of cables, they are connected to the described port on described shell and the network interface unit.
10. computer system as claimed in claim 9 is characterized in that, described connector comprises:
One trip link actuator; And
The indicating device at each place of described connector is used to indicate connectivity or activity.
11. computer system as claimed in claim 9 is characterized in that, described connector assembly also comprises:
Be positioned near the described port and have the miter guide of the slot that is used to keep described cable.
12. computer system as claimed in claim 11 is characterized in that, described network interface unit is placed with respect to the base level of described cabinet.
13. computer system as claimed in claim 12 is characterized in that, described network interface unit is oriented to and makes described port be in the beeline place with described shell.
14. computer system as claimed in claim 12 is characterized in that, described miter guide is attached to horizontal surface, so that described miter guide is approximately perpendicular to described network interface unit.
15. computer system as claimed in claim 12 is characterized in that, one of described connector is to be connected one of compatible copper and optical fiber connector with Gigabit Ethernet.
16. computer system as claimed in claim 15 is characterized in that, one of described connector is one of RJ-45 and LC connector.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CNU2006200071031U CN201081874Y (en) | 2006-03-27 | 2006-03-27 | Computer system and connector assembly |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CNU2006200071031U CN201081874Y (en) | 2006-03-27 | 2006-03-27 | Computer system and connector assembly |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN201081874Y true CN201081874Y (en) | 2008-07-02 |
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CNU2006200071031U Expired - Fee Related CN201081874Y (en) | 2006-03-27 | 2006-03-27 | Computer system and connector assembly |
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| Country | Link |
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| CN (1) | CN201081874Y (en) |
Cited By (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN103544800A (en) * | 2012-07-10 | 2014-01-29 | 纬创资通股份有限公司 | Active warning device and warning method for active warning device of server |
| CN103869423A (en) * | 2013-07-10 | 2014-06-18 | 连展科技电子(昆山)有限公司 | Optical fiber adapter |
| CN105720457A (en) * | 2015-10-20 | 2016-06-29 | 无锡美凯能源科技有限公司 | Micro power grid frame module rapid wiring method and apparatus |
| CN105830044A (en) * | 2013-12-16 | 2016-08-03 | 思科技术公司 | Integrated connector for universal power over ethernet |
| CN117130537A (en) * | 2022-05-18 | 2023-11-28 | 广州飞锡科技有限公司 | storage server |
-
2006
- 2006-03-27 CN CNU2006200071031U patent/CN201081874Y/en not_active Expired - Fee Related
Cited By (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN103544800A (en) * | 2012-07-10 | 2014-01-29 | 纬创资通股份有限公司 | Active warning device and warning method for active warning device of server |
| CN103544800B (en) * | 2012-07-10 | 2015-08-19 | 纬创资通股份有限公司 | Active warning device and warning method for active warning device of server |
| CN103869423A (en) * | 2013-07-10 | 2014-06-18 | 连展科技电子(昆山)有限公司 | Optical fiber adapter |
| CN105830044A (en) * | 2013-12-16 | 2016-08-03 | 思科技术公司 | Integrated connector for universal power over ethernet |
| CN105720457A (en) * | 2015-10-20 | 2016-06-29 | 无锡美凯能源科技有限公司 | Micro power grid frame module rapid wiring method and apparatus |
| CN117130537A (en) * | 2022-05-18 | 2023-11-28 | 广州飞锡科技有限公司 | storage server |
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| C14 | Grant of patent or utility model | ||
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| CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20080702 |