CN202978991U - Device for displaying receiving and transmitting data traffic of Ethernet port based on light-emitting diodes - Google Patents
Device for displaying receiving and transmitting data traffic of Ethernet port based on light-emitting diodes Download PDFInfo
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- CN202978991U CN202978991U CN 201220706054 CN201220706054U CN202978991U CN 202978991 U CN202978991 U CN 202978991U CN 201220706054 CN201220706054 CN 201220706054 CN 201220706054 U CN201220706054 U CN 201220706054U CN 202978991 U CN202978991 U CN 202978991U
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- ethernet port
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Abstract
The utility model discloses a device for displaying receiving and transmitting data traffic of an Ethernet port based on light-emitting diodes, relates to an Ethernet device, and solves the problem that, currently, an Ethernet distribution device cannot detect the data traffic of each Ethernet port in real time and cannot timely display the detection result range. Vertical columns of the light-emitting diodes are all mounted on the front panel of a distribution frame main body, and each two columns of the light-emitting diodes are mounted above one Ethernet port; a control part is mounted on the rear panel of the distribution frame main body; the traffic signal output end of each Ethernet port is connected with the traffic signal acquisition end of the control part, and the traffic signal output end of the control part is connected with the traffic signal input end of each vertical column of light-emitting diodes. The device for displaying receiving and transmitting data traffic of the Ethernet port based on the light-emitting diodes can be widely used for detecting the real-time traffic data of the Ethernet port and displaying the detection result range in real time.
Description
Technical field
The utility model relates to a kind of Ethernet device.
Background technology
Under present ethernet standard, the computer of same network segment all is under a broadcast domain, and the broadcast data that each terminal is sent can be received by other computer.When certain station terminal infects virus or breaks down and when sending broadcast data packet in a large number, the rapid decline of the data transmission performance of the whole network segment often causes whole terminals of this network segment all can't use network.And the best method that solves this class problem is the data traffic of checking each port, begin to locate the fault terminal from sending the maximum terminal of packet, the method of checking at present the port data flow is mainly by the built-in systemic-function of switch, check the traffic statistics data of each port by software mode, can not directly detect in real time and the testing result scope is shown in real time by the data traffic of electrical power wiring assembly to each ethernet port.
The utility model content
The problem that the utility model can not detect in real time the data traffic of each ethernet port and the testing result scope be carried out show in real time in order to solve present Ethernet electrical power wiring assembly, thus a kind of device based on diode displaying ethernet port transceiving data flow is provided.
Based on the device of diode displaying ethernet port transceiving data flow, it comprises distributing frame main body, the perpendicular row of even number light-emitting diode and control assembly;
The perpendicular row of described light-emitting diode are installed on the front panel of distributing frame main body, and the perpendicular row of every two row light-emitting diodes are arranged on the top of an ethernet port, and control assembly is arranged on the rear board of distributing frame main body;
The flow signal output of each ethernet port all is connected with the flow signal acquisition end of control assembly, and the flow signal output of control assembly is connected with the flow signal input of the perpendicular row of every row light-emitting diode.
Adopt the utility model based on the device of diode displaying ethernet port transceiving data flow, can detect in real time and show by lighting of light-emitting diode to the ethernet port data traffic range size of flow, make the non-technical personnel also can be not by external tool, see that intuitively each ethernet port receives, sends the data on flows on both direction and determines its situation of change, can begin to search abnormal with failure judgement from the larger port of flow when breaking down, can greatly shorten like this time of Ethernet fault judgement.
Description of drawings
Fig. 1 is the front view of apparatus structure described in the utility model;
Fig. 2 is the rearview of apparatus structure described in the utility model;
Fig. 3 is the modular structure schematic diagram of the control assembly 5 of device described in the utility model.
Embodiment
Embodiment one, in conjunction with Fig. 1 and Fig. 2, this embodiment is described.Based on the device of diode displaying ethernet port transceiving data flow, it comprises distributing frame main body 1, the perpendicular row 4 of even number light-emitting diode and control assembly 5;
The perpendicular row 4 of described light-emitting diode are installed on the front panel of distributing frame main body 1, and the perpendicular row 4 of every two row light-emitting diodes are arranged on the top of an ethernet port 2, and control assembly 5 is arranged on the rear board of distributing frame main body 1;
The flow signal output of each ethernet port 2 all is connected with the flow signal acquisition end of control assembly 5, and the flow signal output of control assembly 5 is connected with the flow signal input of the perpendicular row 4 of every row light-emitting diode.
The perpendicular row 4 of described two row light-emitting diodes are respectively used to show that corresponding ethernet port 2 receives and the data traffic of sending on both direction.
What embodiment two, this embodiment were different from embodiment one is that described control assembly 5 adopts DC power supply, powered battery or external rectifier power supply.
What embodiment three, this embodiment were different from embodiment one is that described device is equipped with cue mark 3 between the perpendicular row 4 of every row light-emitting diode and ethernet port 2.
Described cue mark 3 is used to indicate the direction of the data traffic of perpendicular row 4 demonstrations of every row light-emitting diode.
Embodiment four, in conjunction with Fig. 3, this embodiment is described.What this embodiment was different from embodiment one is that described control assembly 5 comprises data traffic acquisition module 5-1, data flux statistics module 5-2 and data traffic display module 5-3;
The flow signal output of each ethernet port 2 is connected with the flow signal input of data traffic acquisition module 5-1 simultaneously, the flow signal output of data traffic acquisition module 5-1 is connected with the flow signal input of data flux statistics module 5-2, the flow signal output of data flux statistics module 5-2 is connected with the flow signal input of data traffic display module 5-3, and the flow signal output of data traffic display module 5-3 is connected with the flow signal input of the perpendicular row 4 of light-emitting diode;
The flow signal input of described data traffic acquisition module 5-1 is the flow signal acquisition end of control assembly 5, and the flow signal output of data traffic display module 5-3 is the flow signal output of control assembly 5.
Adopt the utility model based on the device of diode displaying ethernet port transceiving data flow, the perpendicular row 4 of two row light-emitting diodes are arranged on ethernet port 2 tops, be respectively used to show that ethernet port 2 receives and the flow situation of transmission, make the data traffic on ethernet port 2 both directions, convert the number that the perpendicular row 4 of respective leds are lighted to, so just can be at the scene erect row 4 according to light-emitting diode and light the height of demonstration and judge that interface transmission data volume is maximum.
Claims (4)
1. based on the device of diode displaying ethernet port transceiving data flow, it is characterized in that it comprises distributing frame main body (1), the perpendicular row of even number light-emitting diode (4) and control assembly (5);
The perpendicular row of described light-emitting diode (4) are installed on the front panel of distributing frame main body (1), and the perpendicular row of every two row light-emitting diodes (4) are arranged on the top of an ethernet port (2), and control assembly (5) is arranged on the rear board of distributing frame main body (1);
The flow signal output of each ethernet port (2) all is connected with the flow signal acquisition end of control assembly (5), and the flow signal output of control assembly (5) is connected with the flow signal input of the perpendicular row of every row light-emitting diode (4).
2. the device based on diode displaying ethernet port transceiving data flow according to claim 1, is characterized in that described control assembly (5) adopts DC power supply, powered battery or external rectifier power supply.
3. the device based on diode displaying ethernet port transceiving data flow according to claim 1, is characterized in that described device is equipped with cue mark (3) between the perpendicular row of every row light-emitting diode (4) and ethernet port (2).
4. the device based on diode displaying ethernet port transceiving data flow according to claim 1, is characterized in that described control assembly (5) comprises data traffic acquisition module (5-1), data flux statistics module (5-2) and data traffic display module (5-3);
The flow signal output of each ethernet port (2) is connected with the flow signal input of data traffic acquisition module (5-1) simultaneously, the flow signal output of data traffic acquisition module (5-1) is connected with the flow signal input of data flux statistics module (5-2), the flow signal output of data flux statistics module (5-2) is connected with the flow signal input of data traffic display module (5-3), and the flow signal output of data traffic display module (5-3) is connected with the flow signal input of the perpendicular row of light-emitting diode (4);
The flow signal input of described data traffic acquisition module (5-1) is the flow signal acquisition end of control assembly (5), and the flow signal output of data traffic display module (5-3) is the flow signal output of control assembly (5).
Priority Applications (1)
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CN 201220706054 CN202978991U (en) | 2012-12-19 | 2012-12-19 | Device for displaying receiving and transmitting data traffic of Ethernet port based on light-emitting diodes |
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CN 201220706054 CN202978991U (en) | 2012-12-19 | 2012-12-19 | Device for displaying receiving and transmitting data traffic of Ethernet port based on light-emitting diodes |
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CN 201220706054 Expired - Fee Related CN202978991U (en) | 2012-12-19 | 2012-12-19 | Device for displaying receiving and transmitting data traffic of Ethernet port based on light-emitting diodes |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103095522A (en) * | 2012-12-19 | 2013-05-08 | 黑龙江省电力有限公司信息通信分公司 | Device for displaying receiving and sending data traffic of Ethernet port based on light-emitted diode (LED) |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN103095522A (en) * | 2012-12-19 | 2013-05-08 | 黑龙江省电力有限公司信息通信分公司 | Device for displaying receiving and sending data traffic of Ethernet port based on light-emitted diode (LED) |
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CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20130605 Termination date: 20201219 |
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CF01 | Termination of patent right due to non-payment of annual fee |