Computer server system based on Feiteng S5000C processor
By integrating domestic hardware and high-performance memory into a computer server system based on the Feiteng S5000C processor, the technical risks and uncontrollable maintenance problems of computer servers in existing technologies have been solved, and an autonomous, secure, and reliable computer server system has been realized.
Patent Information
- Application Number
- CN202422764532.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-12
- Publication Date
- 2025-10-03
- Estimated Expiration
- 2034-11-12
AI Technical Summary
Existing computer server systems rely on foreign hardware, which poses technical risks and uncontrollable security risks in maintenance, making it difficult to achieve independent control and security.
It adopts a computer server system based on the Feiteng S5000C processor, integrating the first domestically produced Feiteng S5000C processor, PCIE to SATA module, BMC module, etc., combined with DDR5 and DDR4 memory modules, to provide high-performance, flexible computing and storage capabilities, and realize hardware management and expansion through C2C interface, CPLD module, etc.
It improves the autonomous security control and security reliability of computer server systems and reduces security risks in terms of technical risks and maintenance controllability.
Smart Images

Figure CN223413702U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of computers, and more particularly to a computer server system based on a Feiteng S5000C processor. Background Art
[0002] For a long time, most of the software and hardware products of my country's computer servers have been foreign products. The core technologies such as foreign high-performance processors and operating systems are completely closed to us. We are unable to deeply understand their core technical principles. There are technical risks and uncontrollable security risks in the use of products.
[0003] Information security is a crucial factor in future information warfare. In a networked warfare environment, the enemy has ubiquitous and difficult-to-defend locations for information attacks. To achieve independent control, the demand for domestically produced high-performance server platforms is imperative.
[0004] With the advancement of the digital age, industries such as finance, telecommunications, and education are facing growing demands for internet data processing and storage. This places higher demands on the performance, security, and independent reliability of computer servers. However, existing computer servers are still limited by foreign software and hardware. Although the degree of restriction has been reduced, the use of these products still carries relatively large technical risks and uncontrollable security risks.
[0005] To this end, the utility model provides a computer server system based on the Feiteng S5000C processor, which aims to solve the technical risks and maintenance uncontrollable security risks of computer servers in the existing technology. The use of domestic hardware products improves the autonomous security control and security reliability of the computer server system, thereby reducing the security risks in terms of technical risks and maintenance controllability when using the computer server system to a certain extent. Utility Model Content
[0006] In order to overcome the shortcomings of the existing technology, the utility model provides a computer server system based on the Feiteng S5000C processor, which aims to solve the technical risks and maintenance uncontrollable security risks of computer servers in the existing technology. The use of domestic hardware products improves the autonomous security control and security reliability of the computer server system, thereby reducing the security risks in terms of technical risks and maintenance controllability when using the computer server system to a certain extent.
[0007] The technical solution adopted by the utility model to solve its technical problems is: a computer server system based on the Feiteng S5000C processor, and its improvement is that the computer server system based on the Feiteng S5000C processor includes a first Feiteng S5000C processor, a second Feiteng S5000C processor, a PCIE to SATA module, a first PCIE to USB module, a BMC module, a PCIE to GBE module, an M.2 module, a second PCIE to USB module and an mPCIE module; the first Feiteng S5000C processor is connected to the second Feiteng S5000 processor; the PCIE to SATA module, the first PCIE to USB module, the PCIE to GBE module and the M.2 module are all connected to the first Feiteng S5000C processor; the second PCIE to USB module and the mPCIE module are both connected to the second Feiteng S5000C processor; the BMC module is connected to the first Feiteng S5000 processor, the first PCIE to USB module and the second PCIE to USB module.
[0008] In the above structure, the computer server system based on the Feiteng S5000C processor also includes a memory card and a memory expansion structure. The memory expansion interface is distributed on the first Feiteng S5000C processor and the second Feiteng S5000C processor, and the memory interface is connected to the memory card.
[0009] In the above structure, the memory card is a DDR5 memory module or a DDR4 memory module, wherein the operating voltage of the DDR5 memory module is 1.1V and the maximum data transmission rate is 4000MT / S; the operating voltage of the DDR4 memory module is 1.2V and the maximum data transmission rate is 3200MT / S.
[0010] In the above structure, the first Feiteng S5000C processor and the second Feiteng S5000C processor are both provided with a C2C interface, and the C2C interface of the first Feiteng S5000C processor is connected to the C2C interface of the second Feiteng S5000C processor.
[0011] In the above structure, the computer server system based on the Feiteng S5000C processor further includes a CPLD module, and the CPLD module is connected between the first Feiteng S5000C processor, the second Feiteng S5000C processor and the BMC module.
[0012] In the above structure, the first Feiteng S5000C processor and the second Feiteng S5000C processor are both provided with UART interface, GPIO interface, SPI interface and LPC interface, and the first Feiteng S5000C processor and the second Feiteng S5000C processor are both connected to the CPLD module through the UART interface, GPIO interface, SPI interface and LPC interface.
[0013] In the above structure, the computer server system based on the Feiteng S5000C processor also includes a PCIEX16SLOT0 interface, a PCIEX16 SLOT1 interface, a PCIEX16 SLOT2 interface, a PCIEX16 SLOT3 interface and a PCIEX16SLOT4 interface, the PCIEX16 SLOT0 interface and the PCIEX16 SLOT1 interface are set on the first Feiteng S5000C processor; the PCIEX16 SLOT2 interface, the PCIEX16 SLOT3 interface and the PCIEX16 SLOT4 interface are set on the second Feiteng S5000C processor.
[0014] In the above structure, the computer server system based on the Feiteng S5000C processor also includes a SlimSAS0 interface, a SlimSAS1 interface, a SlimSAS2 interface and a SlimSAS3 interface. The SlimSAS0 interface and SlimSAS1 interface are set on the first Feiteng S5000C processor; the SlimSAS2 interface and SlimSAS3 interface are set on the second Feiteng S5000C processor.
[0015] The beneficial effect of the present invention is that the first Feiteng S5000C processor, the second Feiteng S5000C processor, the PCIE to SATA module, the first PCIE to USB module, the BMC module, the PCIE to GBE module, the M.2 module, the second PCIE to USB module and the mPCIE module integrated in the computer server system of the present invention are all domestic products, which to a certain extent improves the autonomous security control and security reliability of the computer server system, and thus to a certain extent reduces the security risks in terms of technical risks and maintenance controllability when the computer server system is used. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 This is a block diagram of a computer server system based on the Feiteng S5000C processor of the present invention;
[0017] Figure 2 This is a schematic diagram of the overall structure of a computer server system based on the Feiteng S5000C processor of the present invention. DETAILED DESCRIPTION
[0018] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0019] The following will clearly and completely describe the concept, specific structure and technical effects of the present invention in combination with the embodiments and drawings, so as to fully understand the purpose, characteristics and effects of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of them. Based on the embodiments of the present invention, other embodiments obtained by technical personnel in this field without creative work are within the scope of protection of the present invention. In addition, all the connection / connection relationships involved in the patent do not refer to the direct connection of components, but refer to the fact that a better connection structure can be formed by adding or reducing connection accessories according to the specific implementation situation. The various technical features in the creation of the present invention can be combined interactively without conflicting with each other.
[0020] Reference Figure 1 As shown, the utility model discloses a computer server system based on the Feiteng S5000C processor, and its improvement is that the computer server system based on the Feiteng S5000C processor includes a first Feiteng S5000C processor, a second Feiteng S5000C processor, a PCIE to SATA module, a first PCIE to USB module, a BMC module, a PCIE to GBE module, an M.2 module, a second PCIE to USB module and an mPCIE module; the first Feiteng S5000C processor is connected to the second Feiteng S5000 processor; the PCIE to SATA module, the first PCIE to USB module, the PCIE to GBE module and the M.2 module are all connected to the first Feiteng S5000C processor; the second PCIE to USB module and the mPCIE module are both connected to the second Feiteng S5000C processor; the BMC module is connected to the first Feiteng S5000 processor, the first PCIE to USB module and the second PCIE to USB module.
[0021] It should be noted that, in the embodiment, the first Feiteng S5000C processor and the second Feiteng S5000C processor serve as the core computing components of the computer server system, and are used to provide computing and data processing capabilities. In this embodiment, the computer server system includes the first Feiteng S5000C processor and the second Feiteng S5000C processor. This dual-processor system can form an efficient computing platform, so that the computer processing system has more powerful computing and data processing capabilities; the role of the PCIE to SATA module is to use PCI Express (PCIE) interface is connected to the SATA interface device, wherein SATA is generally used to connect hard disks or solid-state drives (SSDs), while PCIE is a more efficient connection interface. In a computer server system, the PCIE to SATA module enables the server to connect and control SATA storage devices through the PCIE interface on the first Feiteng S5000C processor to achieve data storage and access; the first PCIE to USB module is used to convert the PCIE interface into a USB interface, so that the system can connect USB devices, such as external storage devices, USB peripherals, etc., and the first PCIE to USB module is connected to the first Feiteng S5000C processor, which provides an additional USB port for connecting various USB devices; the PCIE to GBE module is used to convert the PCIE interface into a Gigabit Ethernet interface (GBE), so that the computer server system is connected to network devices (such as switches, routers, etc.) through the PCIE bus, providing the computer server system with high-speed network communication capabilities, enabling data transmission and remote access; the M.2 module is generally used to connect storage devices with M.2 interfaces, especially solid-state drives (SSDs). M.The 2 interface is smaller than the traditional SATA interface and provides a higher transmission rate, which can improve the storage performance of the computer server system to provide fast data reading and writing capabilities; the second PCIE to USB module is similar in function to the first PCIE to USB module, providing an additional USB interface for connecting USB peripherals; the mPCIE module is used to connect to the module of the mini PCIE device, wherein the mini PCIE is a small PCIE interface, commonly used in laptops or embedded devices, usually used to connect wireless network cards, storage devices, etc. In the computer server system of this embodiment, the mPCIE module can expand the interface of the server; the BMC module is used to provide hardware-level management functions, allowing administrators to perform remote monitoring, control, diagnosis and other operations when the operating system is not started. The BMC module is connected to the first Feiteng S5000C processor, the first PCIE to USB module, and the second PCIE to USB module to monitor and manage various hardware components of the system and provide remote access capabilities; in the specific implementation of the present invention, the computer server system is connected to the module through a reasonable hardware combination, and has the advantages of high performance, flexibility and manageability. Specifically, the first Feiteng S5000C processor and the second Feiteng S5000C processor provide core computing capabilities; the PCIE to SATA module, M.2 module, etc. provide connections for high-speed storage devices; the first PCIE to USB module, the second PCIE to USB module and the mPCIE module expand the USB and mini The system has enhanced connectivity capabilities for PCIE devices; the PCIE-to-GBE module provides high-speed network communication capabilities, and the BMC module provides remote management and monitoring capabilities. Furthermore, the first Feiteng S5000C processor, second Feiteng S5000C processor, PCIE-to-SATA module, first PCIE-to-USB module, BMC module, PCIE-to-GBE module, M.2 module, second PCIE-to-USB module, and mPCIE module are all domestically produced. This significantly improves the independent security control, safety, and reliability of the computer server system, thereby reducing potential technical risks and maintenance controllability risks associated with the use of the computer server system.
[0022] Reference Figure 1 and Figure 2As shown, the computer server system based on the Feiteng S5000C processor also includes a memory card and a memory expansion structure. The memory expansion interface is distributed on the first Feiteng S5000C processor and the second Feiteng S5000C processor, and the memory interface is connected to the memory card; the memory card is a DDR5 memory module or a DDR4 memory module, wherein the operating voltage of the DDR5 memory module is 1.1V, and the maximum data transmission rate is 4000MT / S; the operating voltage of the DDR4 memory module is 1.2V, and the maximum data transmission rate is 3200MT / S.
[0023] It should be noted that, in this embodiment, by setting a memory expansion interface on the first Feiteng S5000C processor and the second Feiteng S5000C processor, the first Feiteng S5000C processor and the second Feiteng S5000C processor can independently access the memory modules connected to them, and enable the computer server system to fully exert its performance under the multi-core, multi-processor architecture, thereby reflecting the flexibility and scalability of the computer server system; the memory card (DDR4 / DDR5 memory module) refers to the physical memory module connected to the first Feiteng S5000C processor and the second Feiteng S5000C processor. These memory cards are inserted into the memory expansion interface to provide high-bandwidth, high-speed access data storage space for the first Feiteng S5000C processor and the second Feiteng S5000C processor; the memory card supported by the memory interface supports the connection of DDR4 memory modules or DDR5 memory modules, among which DDR4 memory modules are a relatively mature memory technology with an operating voltage of 1.2V and support higher data transmission DDR5 memory has a maximum data transfer rate of 3200MT / s (million transfers per second), which means it can process 3200 million data transfers per second. The operating voltage of 1.2V is relatively high, which is the general working standard of DDR4 memory, ensuring that the memory can work stably for a long time. The DDR5 memory module is the latest generation of memory technology. Compared with DDR4, DDR5 has higher performance potential and higher bandwidth, which is suitable for application scenarios that require a large amount of memory and high bandwidth. The maximum data transfer rate is 4000MT / s, which means it can process 4000 million data transfers per second, which is higher than the transmission rate of DDR4. The operating voltage of 1.1V is lower than that of DDR4, which means that DDR5 memory consumes relatively less power when working, which helps to improve energy efficiency and reduce the heat dissipation requirements of the server. In the design of specific computer server systems, by providing an expandable memory structure, administrators are allowed to flexibly increase memory according to actual needs, ensuring that the system can still maintain high operating efficiency under high load.
[0024] Continue to refer to Figure 1 and Figure 2As shown, the first Feiteng S5000C processor and the second Feiteng S5000C processor are both provided with a C2C interface, and the C2C interface of the first Feiteng S5000C processor is connected to the C2C interface of the second Feiteng S5000C processor.
[0025] It should be noted that, in this embodiment, the C2C interface is also called a Core-to-Core interface or a Chip-to-Chip interface, which refers to a high-speed communication interface for connecting the first Feiteng S5000C processor and the second Feiteng S5000C processor. It is usually used in multi-processor systems. Multiple processors often need to frequently exchange data and work together, and the C2C interface provides high-speed and efficient connection for such scenarios. The computer server system of this embodiment uses the C2C interface to enable the first Feiteng S5000C processor and the second Feiteng S5000C processor to share data, transmit signals and coordinate resources.
[0026] Continue to refer to Figure 1 and Figure 2 As shown, the calculator server system based on the Feiteng S5000C processor also includes a CPLD module, which is connected between the first Feiteng S5000C processor, the second Feiteng S5000C processor and the BMC module; the first Feiteng S5000C processor and the second Feiteng S5000C processor are both provided with a UART interface, a GPIO interface, an SPI interface and an LPC interface, and the first Feiteng S5000C processor and the second Feiteng S5000C processor are both connected to the CPLD module through the UART interface, the GPIO interface, the SPI interface and the LPC interface.
[0027] It should be noted that in this embodiment, the CPLD is a hardware logic module that can flexibly configure and control hardware. In the computer server system of this embodiment, the CPLD module is responsible for managing and coordinating the communication between the first Feiteng S5000C processor, the second Feiteng S5000C processor and the BMC module; in addition, the first Feiteng S5000C processor and the second Feiteng S5000C processor are both connected to the CPLD module through the UART interface, GPIO interface, SPI interface and LPC interface, wherein the UART interface is used for serial communication, usually for low-speed data exchange or debugging; the GPIO interface is used for direct interaction between the processor and external devices; the SPI interface is a high-speed, full-duplex synchronous serial communication protocol, usually used for short-distance communication, connecting BIOS FALSH chips, etc.; the LPC interface is a low-speed interface specifically used for communicating with peripherals, usually used to connect low-bandwidth external devices, etc.
[0028] Continue to refer to Figure 1 and Figure 2 As shown, the computer server system based on the Feiteng S5000C processor further includes a PCIEX16 SLOT0 interface, a PCIEX16 SLOT1 interface, a PCIEX16 SLOT2 interface, a PCIEX16SLOT3 interface and a PCIEX16 SLOT4 interface, wherein the PCIEX16 SLOT0 interface and the PCIEX16 SLOT1 interface are provided on the first Feiteng S5000C processor; the PCIEX16 SLOT2 interface, the PCIEX16 SLOT3 interface and the PCIEX16 The SLOT4 interface is set on the second Feiteng S5000C processor; the computer server system based on the Feiteng S5000C processor also includes a SlimSAS0 interface, a SlimSAS1 interface, a SlimSAS2 interface and a SlimSAS3 interface, the SlimSAS0 interface and the SlimSAS1 interface are set on the first Feiteng S5000C processor; the SlimSAS2 interface and the SlimSAS3 interface are set on the second Feiteng S5000C processor.
[0029] It should be noted that, in this embodiment, the design of the PCIEX16 SLOT0 interface, PCIEX16 SLOT1 interface, SlimSAS0 interface and SlimSAS1 interface can provide PCIE resources for the first Feiteng S5000C processor for expansion of PCIE device cards; the design of the PCIEX16 SLOT2 interface, PCIEX16 SLOT3 interface, PCIEX16 SLOT4, SlimSAS2 interface and SlimSAS3 interface can provide PCIE resources for the second Feiteng S5000C processor for expansion of PCIE device cards, thereby further ensuring the flexibility of the computer server system.
[0030] The above is a specific description of the preferred implementation of the present invention, but the invention of the present invention is not limited to the embodiments. Those skilled in the art can make various equivalent modifications or substitutions without violating the spirit of the present invention. These equivalent modifications or substitutions are all included in the scope defined by the claims of this application.
Claims
1. A computer server system based on Feiteng S5000C processor, characterized in that: The computer server system based on the Feiteng S5000C processor includes a first Feiteng S5000C processor, a second Feiteng S5000C processor, a PCIE to SATA module, a first PCIE to USB module, a BMC module, a PC IE to GBE module, an M.2 module, a second PCIE to USB module and an mPCIE module; the first Feiteng S5000C processor is connected to the second Feiteng S5000 processor; the PCIE to SATA module, the first PC IE to USB module, the PCIE to GBE module and the M.2 module are all connected to the first Feiteng S5000C processor; the second PCIE to USB module and the mPCIE module are both connected to the second Feiteng S5000C processor; the BMC module is connected to the first Feiteng S5000 processor, the first PCIE to USB module and the second PCIE to USB module.
2. A computer server system based on the Feiteng S5000C processor according to claim 1, characterized in that: The computer server system based on the Feiteng S5000C processor also includes a memory card and a memory expansion structure. The memory expansion interface is distributed on the first Feiteng S5000C processor and the second Feiteng S5000C processor, and the memory interface is connected to the memory card.
3. A computer server system based on the Feiteng S5000C processor according to claim 2, characterized in that: The memory card is a DDR5 memory module or a DDR4 memory module, wherein the operating voltage of the DDR5 memory module is 1.1V and the maximum data transmission rate is 4000MT / S; the operating voltage of the DDR4 memory module is 1.2V and the maximum data transmission rate is 3200MT / S.
4. A computer server system based on the Feiteng S5000C processor according to claim 1, characterized in that: The first Feiteng S5000C processor and the second Feiteng S5000C processor are both provided with a C2C interface, and the C2C interface of the first Feiteng S5000C processor is connected to the C2C interface of the second Feiteng S5000C processor.
5. The computer server system based on the Feiteng S5000C processor according to claim 1, characterized in that: The computer server system based on the Feiteng S5000C processor also includes a CPLD module, which is connected between the first Feiteng S5000C processor, the second Feiteng S5000C processor and the BMC module.
6. A computer server system based on the Feiteng S5000C processor according to claim 5, characterized in that: The first Feiteng S5000C processor and the second Feiteng S5000C processor are both provided with UART interface, GPIO interface, SPI interface and LPC interface, and the first Feiteng S5000C processor and the second Feiteng S5000C processor are both connected to the CPLD module through the UART interface, GPIO interface, SPI interface and LPC interface.
7. A computer server system based on the Feiteng S5000C processor according to claim 1, characterized in that: The computer server system based on the Feiteng S5000C processor also includes a PCIEX16SLOT0 interface, a PCIEX16SLOT1 interface, a PCIEX16 SLOT2 interface, a PC IEX16 SLOT3 interface and a PCIEX16 SLOT4 interface. The PCIEX16 SLOT0 interface and the PC IEX16 SLOT1 interface are set on the first Feiteng S5000C processor; the PCIEX16SLOT2 interface, the PCIEX16 SLOT3 interface and the PC IEX16SLOT4 interface are set on the second Feiteng S5000C processor.
8. The computer server system based on the Feiteng S5000C processor according to claim 1, characterized in that: The computer server system based on the Feiteng S5000C processor also includes a Sli mSAS0 interface, a SlimSAS1 interface, a SlimSAS2 interface and a SlimSAS3 interface. The Sli mSAS0 interface and the SlimSAS1 interface are arranged on the first Feiteng S5000C processor; the SlimSAS2 interface and the Sli mSAS3 interface are arranged on the second Feiteng S5000C processor.