CN218214009U - SoC array server of matrix type LED indicating lamp - Google Patents

SoC array server of matrix type LED indicating lamp Download PDF

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Publication number
CN218214009U
CN218214009U CN202222315620.7U CN202222315620U CN218214009U CN 218214009 U CN218214009 U CN 218214009U CN 202222315620 U CN202222315620 U CN 202222315620U CN 218214009 U CN218214009 U CN 218214009U
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soc
indicator
led
board
lamp
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肖家祺
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Qishuo Shenzhen Technology Co ltd
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Qishuo Shenzhen Technology Co ltd
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Abstract

The utility model provides a SoC array server of matrix LED pilot lamp, include: the SoC board card comprises a plurality of SoC chips and an exchange board, wherein the exchange board is used for connecting the SoC chips with external data; the fan module is used for dissipating heat of the SoC board card; the BMC mainboard is used for monitoring and managing the SoC board card; the LED lamp module comprises a lamp panel and LED lamp modules, the LED lamp modules are arranged in an array mode, the lamp panel can exchange data with the exchange board, the lamp panel controls the LED lamp modules according to the data exchanged from the exchange board, and the LED lamp modules comprise a plurality of indicator lamps arranged in an array mode; the power supply is used for supplying power to the SoC board card, the fan module, the BMC mainboard and the indicator light module; the case is used for accommodating the SoC board card, the fan module, the BMC mainboard, the indicator light module and the power supply. The utility model provides a SoC array server of matrix LED pilot lamp can let the maintenance personal realize the purpose of the fault source of quick definite SoC array server.

Description

SoC array server of matrix type LED indicating lamp
Technical Field
The utility model relates to a SoC array server field especially relates to a SoC array server of matrix LED pilot lamp.
Background
The SoC array server is a server based on an SoC chip, and is generally used for cloud mobile phones and cloud games. The SoC array server generally has a plurality of SoC chips (e.g. 60, 64, 128, etc.), and compute node cards developed based on high-performance SoC communicate with each other or with the outside through a high-speed network. In the prior art, the SoC array server has a plurality of SoC chips, and when a fault occurs, a maintenance worker cannot quickly determine a fault source of the SoC array server and maintain the SoC array server.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art, the utility model provides a SoC array server of matrix LED pilot lamp to realize the purpose that maintenance personal can confirm the trouble source fast when SoC array server breaks down. To this end, an embodiment provides an SoC array server of a matrix type LED indicator lamp, including:
the SoC board card comprises a plurality of SoC chips and a switching board, and the switching board is used for connecting the SoC chips with external data;
the fan module is used for dissipating heat of the SoC board card;
the BMC mainboard is used for monitoring and managing the SoC board card;
the LED lamp module comprises a lamp panel and an LED lamp module, the LED lamp module is arranged in an array mode, the lamp panel can exchange data with the exchange board, the lamp panel controls the LED lamp module according to the data exchanged from the exchange board, and the LED lamp module comprises a plurality of indicator lamps;
the power supply is used for supplying power to the SoC board card, the fan module, the BMC mainboard and the indicator light module;
and the case is used for accommodating the SoC board card, the fan module, the BMC mainboard, the indicator light module and the power supply.
As a further alternative of the SoC array server with the matrix LED indicator, the indicator correspondingly displays the operating state of an SoC chip.
As a further alternative of the SoC array server with the matrix LED indicator, the indicator is turned on for indicating that the corresponding SoC chip has been started and enters the system, and the indicator is turned off for indicating that the corresponding SoC chip is not started or is not working normally.
As a further alternative of the SoC array server of the matrix LED indicator, the lamp panel may exchange data with the BMC motherboard, and the lamp panel controls the LED lamp module according to the data exchanged from the BMC motherboard.
As a further alternative of the SoC array server of the matrix LED indicator, one of the indicator is a power indicator.
As a further alternative of the SoC array server of the matrix LED indicator, one of the indicator is a power indicator.
As a further alternative of the SoC array server of the matrix LED indicator, the power indicator displays yellow to indicate that the SoC array server of the matrix LED indicator is in a standby state, the power indicator displays green to indicate that the SoC array server of the matrix LED indicator is powered on, and the power indicator is turned off to indicate that the SoC array server of the matrix LED indicator is not powered on.
As a further alternative of the SoC array server of the matrix LED indicator, one of the indicator is a system indicator.
As a further alternative of the SoC array server with the matrix LED indicator, the system indicator is turned on constantly to indicate that the SoC board has entered the system, and the system indicator is turned off to indicate that the SoC board has not entered the system or the system is abnormal.
As a further alternative of the SoC array server of the matrix LED indicator lamps, one of the indicator lamps is a network indicator lamp.
As a further alternative of the SoC array server with the matrix LED indicator, the network indicator is turned on for indicating that the SoC board has accessed the network, and the network indicator flickers for indicating that the SoC board is transmitting data with the outside: and the network indicator lamp is turned off to indicate that the SoC board card is not connected to the network.
Implement the embodiment of the utility model provides a, will have following beneficial effect:
according to the SoC array server of matrix LED pilot lamp in above embodiment, because the LED lamp module array of pilot lamp module is arranged, the lamp plate of pilot lamp module can exchange data with the exchange board. The exchange board can read the operating condition of every SoC chip, and the exchange board transmits the operating condition data that read SoC chip for the lamp plate again, and the lamp plate is with the operating condition data one-to-one correspondence pilot lamp of SoC chip that reads. Because the LED lamp module group array is arranged, the pilot lamp on the LED lamp module group is also arranged in the array, so maintenance personnel correspond each pilot lamp and each SoC chip very easily, as long as corresponding pilot lamp shows unusually, then maintenance personnel can confirm the trouble fast and show the SoC chip that the pilot lamp corresponds at the anomaly to realize maintenance personnel and confirm the trouble source of SoC array server fast, and carry out the purpose of maintaining to SoC array server.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the description below are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
Wherein:
fig. 1 is an exploded schematic diagram of an SoC array server of a matrix LED indicator according to an embodiment of the present invention;
fig. 2 shows a schematic structural diagram of an SoC array server of a matrix LED indicator according to an embodiment of the present invention;
FIG. 3 shows a partial enlarged view at A in FIG. 2;
fig. 4 is a front view of an SoC array server of a matrix LED indicator provided in accordance with an embodiment of the present invention;
fig. 5 shows a partial enlarged view at B in fig. 4.
Description of the main element symbols:
an SoC board card-10; an SoC chip-110; a switch board-120; a fan module-20; a BMC motherboard-30; an indicator light module-40; a lamp panel-410; an LED lamp module-420; an indicator light-4210; a power supply-50; a case-60; power indicator-4220; system indicator-4230; network indicator-4240.
Detailed Description
In order to facilitate understanding of the present invention, the present invention will be described more fully hereinafter with reference to the accompanying drawings. Preferred embodiments of the present invention are shown in the drawings. The invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided so that this disclosure will be thorough and complete.
It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. The terms "vertical," "horizontal," "left," "right," and the like as used herein are for illustrative purposes only.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used herein in the description of the invention is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
The embodiment of the utility model provides a matrix LED pilot lamp's SoC array server, please refer to FIG. 1-FIG. 3, this matrix LED pilot lamp's SoC array server includes:
the SoC board card 10 comprises a plurality of SoC chips 110, the SoC board card 10 further comprises a switch board 120, and the switch board 120 is used for connecting the SoC chips 110 with external data;
the fan module 20, the fan module 20 is used for dissipating heat to the SoC board card 10;
the BMC mainboard 30 and the BMC mainboard 30 are used for monitoring and managing the SoC board card 10;
the indicating lamp module 40 comprises a lamp panel 410 and LED lamp modules 420, the LED lamp modules 420 are arranged in an array mode, the lamp panel 410 can exchange data with the exchange board 120, the lamp panel 410 controls the LED lamp modules 420 according to the data exchanged from the exchange board 120, and the LED lamp modules 420 comprise a plurality of indicating lamps 4210 arranged in an array mode;
the power supply 50 is used for supplying power to the SoC board card 10, the fan module 20, the BMC mainboard 30 and the indicator light module 40;
the chassis 60 is used for accommodating the SoC board card 10, the fan module 20, the BMC motherboard 30, the indicator light module 40 and the power supply 50.
According to the SoC array server of the matrix LED indicator in the above embodiments, since the LED lamp modules 420 of the indicator lamp module 40 are arranged in an array, the lamp panel 410 of the indicator lamp module 40 can exchange data with the exchange panel 120. The switch board 120 can read the working state of each SoC chip 110, the switch board 120 transmits the working state data read by the SoC chip 110 to the lamp panel 410, and the lamp panel 410 corresponds the read working state data of the SoC chip 110 to one indicator lamp 4210. Because the LED lamp modules 420 are arranged in an array, and the indicator lamps 4210 on the LED lamp modules 420 are also arranged in an array, a maintenance person can easily correspond each indicator lamp 4210 to each SoC chip 110, and as long as the corresponding indicator lamp 4210 displays an abnormality, the maintenance person can quickly determine the SoC chip 110 corresponding to the abnormality display indicator lamp 4210, so that the purpose that the maintenance person quickly determines the fault source of the SoC array server and maintains the SoC array server is achieved.
In some embodiments, referring to fig. 4 and 5, indicator light 4210 correspondingly displays an operating state of SoC chip 110. In the embodiment, the relation between the indicator lamp 4210 and the SoC chip 110 is specifically defined, and the indicator lamp 4210 is mainly used for displaying whether the SoC chip 110 is working normally.
The operating state may refer to whether the SoC chip 110 is operating or not, or may refer to the saturation of the SoC chip 110. For example, one SoC chip 110 may support 4 cloud handsets, and the indicator light 4210 may represent how many cloud handsets are being supported by one SoC chip 110 in four colors.
In some embodiments, indicator light 420 is on for indicating that the corresponding SoC chip 110 has started and entered the system, and indicator light 420 is off for indicating that the corresponding SoC chip 110 is not started or is not working properly. In this embodiment, whether the SoC chip 110 corresponding to the indicator lamp 420 works normally or not is visually displayed by lighting the simple indicator lamp 420 or not, so that maintenance personnel can conveniently confirm a fault source.
In some embodiments, the lamp panel 410 is capable of exchanging data with the BMC motherboard 30, and the lamp panel 410 controls the LED lamp module 420 according to the data exchanged from the BMC motherboard 30. BMC: (Basebard Management Controller, baseboard Management Controller) supports industry standard IPMI specification. The specification describes management functions that have been built into the motherboard. These functions include: local and remote diagnostics, console support, configuration management, hardware management, and troubleshooting. The BMC board 30 may monitor and manage all module units of the server, such as the SoC board 10, the fan module 20, the indicator light module 40, the power supply 50, and various data interfaces. In this embodiment, the lamp panel 410 obtains the status information of other modules from the BMC motherboard 30, so as to control the LED lamp module 420 to display the status information of these modules.
In certain specific embodiments, one of the indicator lights 4210 is a power indicator light 4220. In the embodiment, the relationship between the power indicator 4220 and the power supply 50 is determined, and the power indicator 4220 is mainly used for displaying whether the power supply 50 of the SoC array server of the matrix LED indicator works normally.
In some specific embodiments, the power indicator 4220 displays yellow to indicate that the SoC array server of the matrix LED indicator is in a standby state, the power indicator 4220 displays green to indicate that the SoC array server of the matrix LED indicator is powered on, and the power indicator 4220 is turned off to indicate that the SoC array server of the matrix LED indicator is not powered on. Through the color change of the indicator lamp 4220, a maintenance worker can intuitively know the power-on state of the SoC array server of the matrix type LED indicator lamp.
In certain embodiments, referring to fig. 4 and 5, one of the indicator lights 4210 is a system indicator light 4230. In this embodiment, the relationship between the system indicator lamp 4230 and the system is determined, and the system indicator lamp 4230 is mainly used for displaying whether the system of the SoC array server of the matrix LED indicator lamp is normally turned on.
In some embodiments, the system indicator 4230 is turned on to indicate that the SoC board 10 has entered the system, and the system indicator 4230 is turned off to indicate that the SoC board 10 has not entered the system or a system abnormality. Whether the SoC board card 10 enters the system or whether the system is started abnormally is displayed by two states of extinguishing and long-lighting of the system indicator lamp 4230.
In some embodiments, please refer to fig. 4 and 5, wherein one of the indicator lights 4210 is a network indicator light 4240. In this embodiment, in order to determine the relationship between the network indicator lamp 4240 and the network connection, the network indicator lamp 4240 may display the network connection condition of the SoC array server of the matrix LED indicator lamp.
In some specific embodiments, the network indicator light 4230 is turned on for indicating that the SoC board 10 has accessed the network, the network indicator light 4240 is turned on for indicating that the SoC board 10 is transmitting data with the outside, and the network indicator light 4240 is turned off for indicating that the SoC board 10 does not access the network. In this embodiment, the maintenance personnel can not only visually see whether the SoC board 10 is connected to the network, but also see whether the SoC board 10 is working.
All possible combinations of the technical features of the above embodiments may not be described for the sake of brevity, but should be considered as within the scope of the present disclosure as long as there is no contradiction between the combinations of the technical features.
The above-mentioned embodiments only express several embodiments of the present invention, and the description thereof is more specific and detailed, but not construed as limiting the claims. It should be noted that, for those skilled in the art, without departing from the spirit of the present invention, several variations and modifications can be made, which are within the scope of the present invention. Therefore, the protection scope of the present invention should be subject to the appended claims.

Claims (10)

1. The utility model provides a SoC array server of matrix LED pilot lamp which characterized in that includes:
the SoC board card comprises a plurality of SoC chips and an exchange board, wherein the exchange board is used for connecting the SoC chips with external data;
the fan module is used for dissipating heat of the SoC board card;
the BMC mainboard is used for monitoring and managing the SoC board card;
the LED lamp module comprises a lamp panel and LED lamp modules, the LED lamp modules are arranged in an array mode, the lamp panel can exchange data with the exchange board, the lamp panel controls the LED lamp modules according to the data exchanged from the exchange board, and the LED lamp modules comprise a plurality of indicator lamps arranged in an array mode;
the power supply is used for supplying power to the SoC board card, the fan module, the BMC mainboard and the indicator light module;
and the case is used for accommodating the SoC board card, the fan module, the BMC mainboard, the indicator light module and the power supply.
2. The SoC array server with matrix LED indicator lights according to claim 1, wherein said indicator lights correspondingly display the operating status of one of said SoC chips.
3. The matrix type SoC array server with LED indicator lamps according to claim 2, wherein said indicator lamp is turned on for indicating that the corresponding SoC chip is started and enters the system, and said indicator lamp is turned off for indicating that the corresponding SoC chip is not started or not working normally.
4. The SoC array server with matrix LED indicator lights of claim 1, wherein the light board is capable of exchanging data with the BMC motherboard, the light board controlling the LED light modules according to the data exchanged from the BMC motherboard.
5. The SoC array server in matrix form with LED indicator lights of claim 1, wherein one of said indicator lights is a power indicator light.
6. The matrix type SoC array server of LED indicator lamps in claim 5, wherein the power indicator lamp displays yellow indicating that the matrix type SoC array server of LED indicator lamps is in a standby state, the power indicator lamp displays green indicating that the matrix type SoC array server of LED indicator lamps is powered on, and the power indicator lamp is turned off indicating that the matrix type SoC array server of LED indicator lamps is not powered on.
7. The matrix LED light matrix SoC array server of claim 1, wherein one of said lights is a system light.
8. The matrix LED SoC array server of claim 7, wherein the system indicator light is on constantly to indicate that the SoC board has entered the system, and the system indicator light is off to indicate that the SoC board has not entered the system or the system is abnormal.
9. The matrix LED light matrix SoC array server of claim 1, wherein one of said lights is a network light.
10. The SoC array server with matrix LED indicators of claim 9, wherein the network indicator lights are turned on for indicating that the SoC board is connected to the network, the network indicator lights are turned on for indicating that the SoC board is transmitting data with the outside, and the network indicator lights are turned off for indicating that the SoC board is not connected to the network.
CN202222315620.7U 2022-08-31 2022-08-31 SoC array server of matrix type LED indicating lamp Active CN218214009U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222315620.7U CN218214009U (en) 2022-08-31 2022-08-31 SoC array server of matrix type LED indicating lamp

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222315620.7U CN218214009U (en) 2022-08-31 2022-08-31 SoC array server of matrix type LED indicating lamp

Publications (1)

Publication Number Publication Date
CN218214009U true CN218214009U (en) 2023-01-03

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222315620.7U Active CN218214009U (en) 2022-08-31 2022-08-31 SoC array server of matrix type LED indicating lamp

Country Status (1)

Country Link
CN (1) CN218214009U (en)

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