Computer mainboard based on FT2000 + processor
By integrating domestically produced modules into a computer motherboard based on the FT2000+ processor to form a complete system architecture, the technical risks and uncontrollable maintenance issues of existing computer motherboards have been resolved, achieving independent control and reliable security.
Patent Information
- Application Number
- CN202520042183.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2035-01-07
AI Technical Summary
Existing computer motherboards rely on foreign high-performance processors, which poses technical risks and security vulnerabilities due to uncontrollable maintenance, making it difficult to meet the needs of the information technology innovation industry for independent control and security.
The computer motherboard uses an FT2000+ processor and integrates domestically produced BMC modules, X100 modules, memory modules, storage modules, network communication modules, and resource expansion modules. The FT2000+ processor and each module are electrically connected to form a complete system architecture, ensuring the independent control and security of the computer motherboard.
It improves the autonomous control and security reliability of computer motherboards, reduces security risks in terms of technical risks and maintenance controllability, and meets the high performance and security requirements of the information technology innovation industry.
Smart Images

Figure CN223884007U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to embedded system technical field more specifically, it relates to a kind of computer mainboard based on FT2000+ processor. BACKGROUND
[0002] All the time, our computer mainboard mostly uses foreign products, foreign high-performance processor and other core technologies are completely closed to us, we cannot master its core technology principle in depth, and there are technical risks and uncontrolled security risks in the process of product use.
[0003] With the development of digital era, the industry of financial, telecommunication, education, as represented, faces the growing demand of internet data processing and storage, which puts forward higher requirements on the performance, security and self-reliability of computer mainboard. However, the existing computer mainboard is still limited by foreign hardware and software products, although the degree of limitation is reduced, but there are still relatively large technical risks and uncontrolled security risks in the process of product use.
[0004] Therefore, the utility model provides a kind of computer mainboard based on FT2000+ processor, to solve the technical risks and uncontrolled security risks of computer mainboard in prior art, use domestic hardware products to improve the self-reliance, security and reliability of computer mainboard, and thus reduce the security risks in the process of computer mainboard use in terms of technical risks and maintenance controllability. CONTENT OF UTILITY MODEL
[0005] In order to overcome the shortcomings of prior art, the utility model provides a kind of computer mainboard based on FT2000+ processor, to solve the technical risks and uncontrolled security risks of computer mainboard in prior art, use domestic hardware products to improve the self-reliance, security and reliability of computer mainboard, and thus reduce the security risks in the process of computer mainboard use in terms of technical risks and maintenance controllability.
[0006] The technical scheme adopted by the utility model to solve its technical problems is: a kind of computer mainboard based on FT2000+ processor, its improvement lies in, the computer mainboard based on FT2000+ processor includes PCB circuit board, FT2000+ processor, BMC module, X100 module, memory module, storage module, network communication module and resource expansion module are provided on the PCB circuit board;The FT2000+ processor is electrically connected with BMC module, X100 module, memory module and resource expansion module;The storage module and network communication module are electrically connected with X100 module.
[0007] In the above structure, the memory module includes 8 pieces of DDR4, the FT2000+ processor is provided with MCU0 pin, MCU1 pin, MCU2 pin, MCU3 pin, MCU4 pin, MCU5 pin, MCU6 pin and MCU7 pin; the MCU0 pin, MCU1 pin, MCU2 pin, MCU3 pin, MCU4 pin, MCU5 pin, MCU6 pin and MCU7 pin are electrically connected with one piece of DDR4.
[0008] In the above structure, the resource expansion module includes PCIE X16 SLOT1 interface, PCIE X16 SLOT2 interface and PCIE X16 SLOT3 interface, the PCIE X16 SLOT1 interface, PCIE X16 SLOT2 interface and PCIEX16 SLOT3 interface are electrically connected with the FT2000+ processor.
[0009] In the above structure, the computer mainboard based on the FT2000+ processor further includes a SATA expansion interface, the SATA expansion interface includes an mSATA interface and three SATA 3.0 CNN interfaces; the X100 module is provided with a SATA0 pin, a SATA1 pin, a SATA2 pin and a SATA3 pin; the SATA0 pin is electrically connected with the mSATA interface; the SATA1 pin, the SATA2 pin and the SATA3 pin are respectively electrically connected with one SATA 3.0 CNN interface.
[0010] In the above structure, the storage module includes an M.2 hard disk; the X100 module is further provided with a PCIE0 pin, and the M.2 hard disk is electrically connected with the PCIE0 pin.
[0011] In the above structure, the network communication module includes an Ethernet controller chip WX1860A and a communication interface RJ45; the X100 module is further provided with a PCIE1 pin, and the Ethernet controller chip WX1860A is connected between the PCIE1 pin and the communication interface RJ45.
[0012] In the above structure, the X100 module is further provided with a PICE2 pin; the computer mainboard based on the FT2000+ processor further includes a minPCIE interface, and the minPCIE interface is electrically connected with the PICE2 pin.
[0013] In the above structure, the X100 module is further provided with three groups of USB3.0 pins; the computer mainboard based on the FT2000+ processor further comprises a rear USB3.0 interface and a front USB3.0 interface; the rear USB3.0 interface, the front USB3.0 interface and the BMC module are electrically connected with one group of USB3.0 pins respectively.
[0014] In the above structure, the computer mainboard based on the FT2000+ further comprises an RTC module; the FT2000+ processor is provided with an I2C0 pin, and the RTC module is electrically connected with the I2C0 pin.
[0015] In the above structure, the computer mainboard based on the FT2000+ further comprises a DB9 interface and a 3PIN TCM serial port; the FT2000+ processor is provided with a UART0 pin and a UART2 pin, the DB9 interface is electrically connected with the UART0 pin, and the 3PIN TCM serial port is electrically connected with the UART2 pin.
[0016] The FT2000+ processor, the BMC module, the X100 module, the memory module, the storage module, the network communication module and the resource expansion module integrated in the computer mainboard are all domestic products, which improves the independent control, the safety and the reliability of the computer mainboard to a certain extent, and further reduces the security risks in terms of technical risks and maintenance controllability when the computer mainboard is used. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 is a block diagram of the computer mainboard based on the FT2000+ processor of the utility model;
[0018] Figure 2 is a whole circuit connection diagram of the computer mainboard based on the FT2000+ processor of the utility model. DETAILED DESCRIPTION
[0019] The utility model is further explained in connection with the drawings and examples.
[0020] The concept, specific structure and generated technical effects of the present application will be clearly and completely described in combination with the embodiments and drawings, so as to fully understand the purposes, features and effects of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, other embodiments obtained by those skilled in the art without creative labor are within the protection scope of the present application. In addition, all the connection relationships involved in the patent do not mean that the components are directly connected, but means that the better connection structure can be composed by adding or reducing the connection auxiliary parts according to the specific implementation situation. The various technical features in the present application can be interactively combined without mutual contradiction and conflict.
[0021] Referring to Figure 1 and Figure 2 The utility model discloses a kind of computer mainboards based on FT2000+ processor, the computer mainboard based on FT2000+ processor includes PCB circuit board, FT2000+ processor, BMC module, X100 module, memory module, storage module, network communication module and resource extension module are arranged on the PCB circuit board;The FT2000+ processor is electrically connected with BMC module, X100 module, memory module and resource extension module;The storage module and network communication module are electrically connected with X100 module.
[0022] It should be noted that in the embodiment, the FT2000+ processor serves as a core computing unit of the computer motherboard, is responsible for overall data processing, operation and coordination of the work of each module of the computer motherboard, can execute program instructions, process data, manage system resources and the like; the BMC module serves as a management controller of the computer motherboard, is responsible for health monitoring and remote management of each part of the computer motherboard; the X100 module is used to support Ethernet connection, provides network access capability for the computer motherboard, and provides an additional storage interface to expand storage capacity; the memory module is used to temporarily store programs and data being run, and when the computer executes a task, the memory module can quickly access data and program codes; the storage module is used to persistently save system data, an operating system, application programs and user files and the like; the network interface module is used to support connection function of the computer and an external network; the resource expansion module is used to increase expansion capability of the motherboard, including connecting external hardware devices or expansion function modules (such as GPU, sound card, additional storage device and the like) through a slot; in the specific implementation of the utility model, the FT2000+ processor can coordinate, control and process data interaction with each module to ensure that the computer has good response speed and processing capability; the BMC module can work independently of the operating system, allowing administrators to still perform hardware diagnosis and maintenance when the operating system crashes or the server cannot normally start; the memory module closely cooperates with the FT2000+ processor to ensure quick access of data; the network communication module can ensure that the computer can access the Internet, access resources, or exchange data with other computers; the storage module provides large-capacity persistent storage space to ensure that data will not be lost even after the system is turned off; the resource expansion module provides flexible expansion space for users, so that the motherboard can increase additional hardware resources according to needs to improve the function of the computer; the computer motherboard based on the FT2000+ processor forms a complete system architecture through electrical connection of different hardware modules, can support computing, control, storage, network and expansion capability of the FT2000+ processor, ensures stable and efficient operation of the computer system, and the FT2000+ processor, the BMC module, the X100 module, the memory module, the storage module, the network communication module and the resource expansion module integrated in the computer motherboard are all domestic products, which to some extent improves independent security and control, safe and reliable degree of the computer motherboard, and further to some extent reduces security risks in terms of technical risks and maintenance controllability when the computer motherboard is used.
[0023] Referring to Figure 2As shown, the memory module includes 8 pieces of DDR4, and the FT2000+ processor is provided with MCU0 pin, MCU1 pin, MCU2 pin, MCU3 pin, MCU4 pin, MCU5 pin, MCU6 pin and MCU7 pin; the MCU0 pin, MCU1 pin, MCU2 pin, MCU3 pin, MCU4 pin, MCU5 pin, MCU6 pin and MCU7 pin are electrically connected with one piece of DDR4.
[0024] It should be noted that in the embodiment, the FT2000+ processor manages the work of the 8 pieces of DDR4 memory module through the MCU0 pin, MCU1 pin, MCU2 pin, MCU3 pin, MCU4 pin, MCU5 pin, MCU6 pin and MCU7 pin, each pin controls one memory channel, and the memory bandwidth is improved through the parallel working mode, so that the data transmission is more efficient, so as to improve the performance of the computer; and such a dual-channel memory architecture allows the processor to access the memory more efficiently, especially in high-performance application scenarios such as data analysis, large games or image processing.
[0025] Continuing to refer to Figure 2 As shown, the resource expansion module includes PCIE X16 SLOT1 interface, PCIE X16 SLOT2 interface and PCIE X16 SLOT3 interface, and the PCIE X16 SLOT1 interface, PCIE X16 SLOT2 interface and PCIEX16 SLOT3 interface are electrically connected with the FT2000+ processor.
[0026] It should be noted that in the embodiment, the PCIE X16 SLOT1 interface, PCIE X16 SLOT2 interface and PCIE X16 SLOT3 interface are used to provide additional I / O (input / output) channels or support specific hardware expansion to optimize the expansion performance of the computer motherboard.
[0027] Continuing to refer to Figure 2 As shown, the computer motherboard based on the FT2000+ processor further includes a SATA expansion interface, which includes an mSATA interface and three SATA 3.0 CNN interfaces; the X100 module is provided with a SATA0 pin, a SATA1 pin, a SATA2 pin and a SATA3 pin; the SATA0 pin is electrically connected with the mSATA interface; the SATA1 pin, the SATA2 pin and the SATA3 pin are respectively electrically connected with one SATA 3.0 CNN interface.
[0028] It should be noted that in the embodiment, the mSATA (Mini-SATA) is a smaller size SATA interface, commonly used in notebook computers, embedded systems or small devices, which provides a relatively small physical space, but still supports the same data transmission rate as the traditional SATA hard disk, and the mSATA interface is commonly used to connect the SSD (solid state disk); the SATA 3.0 CNN interface is a widely used storage interface, supporting a data transmission rate of up to 6 Gbps, commonly used to connect traditional hard drives (HDD) or solid state drives (SSD), and the SATA 3.0 CNN (Common Node Network) interface may mean that it supports standard SATA 3.0 storage devices (such as hard drives, SSDs) connection and can provide stable data transmission; in the embodiment of the utility model, the X100 module realizes data exchange between the computer mainboard and the device supporting the SATA expansion interface through the SATA0 pin, the SATA1 pin, the SATA2 pin and the SATA3 pin, and can support 4 storage devices to be connected at the same time, thereby maintaining a high data transmission rate.
[0029] The storage module comprises an M.2 hard disk; the X100 module is further provided with a PCIE0 pin, and the M.2 hard disk is electrically connected with the PCIE0 pin.
[0030] It should be noted that in the embodiment, the M.2 hard disk is a small, high-speed storage device commonly used in notebook computers, desktop computers and servers, and the M.2 hard disk is connected with the PCIE0 pin, which improves the data transmission rate of the storage device. Compared with the traditional SATA interface, the M.2 hard disk connected through the PCIE interface can provide higher bandwidth and lower latency.
[0031] Continuing to refer to Figure 2 The network communication module comprises an Ethernet controller chip WX1860A and a communication interface RJ45; the X100 module is further provided with a PCIE1 pin, and the Ethernet controller chip WX1860A is connected between the PCIE1 pin and the communication interface RJ45.
[0032] It should be noted that in the embodiment, the Ethernet controller chip WX1860A is a core component for network communication, responsible for converting data on a computer or device into an Ethernet signal and transmitting it through the network. The Ethernet controller is usually responsible for processing the construction, reception and verification of data frames, ensuring reliable transmission of data. The communication interface RJ45 is a commonly used network connection interface, used to connect computers, routers, switches and other devices to transmit Ethernet data. The communication interface RJ45 is usually connected with twisted pair wires to connect devices and is a standard interface for implementing LAN communication.
[0033] With reference to the X100 module shown in Figure 2 The X100 module is also provided with a PICE2 pin; the computer mainboard based on the FT2000+ processor further includes a minPCIE interface, which is electrically connected with the PICE2 pin.
[0034] It should be noted that in the embodiment, the minPCIE interface is a small PCI Express interface, which is usually used to support more compact and energy-saving hardware devices, especially in embedded systems and small computers. It is a variant of the PCIE interface, smaller in size and lower in power consumption, suitable for applications with limited space and low power consumption.
[0035] With reference to the X100 module shown in Figure 2 The X100 module is also provided with three groups of USB3.0 pins; the computer mainboard based on the FT2000+ processor further includes a rear USB3.0 interface and a front USB3.0 interface; the rear USB3.0 interface, the front USB3.0 interface and the BMC module are respectively electrically connected with a group of USB3.0 pins.
[0036] It should be noted that in the embodiment, the rear USB3.0 interface is usually located on the back panel of the computer mainboard, allowing users to connect various external devices such as USB flash drives, external hard drives, keyboards, mice, etc. The front USB3.0 interface is usually provided through the front panel of the case, making it convenient for users to connect external devices, especially devices that need to be quickly plugged in and out. In the specific implementation of the present application, the X100 module realizes the expansion of external devices through two groups of USB3.0 pins, and the remaining one group of USB3.0 pins is connected with the BMC module, so that the BMC module can centrally manage multiple USB devices, thereby enhancing the functions of the BMC module in device management, monitoring and maintenance.
[0037] With reference to the X100 module shown in Figure 2As shown, the FT2000+-based computer mainboard further comprises an RTC module; the FT2000+ processor is provided with an I2C0 pin, and the RTC module is electrically connected to the I2C0 pin.
[0038] It should be noted that in the present embodiment, the RTC module is a real-time clock module, and the FT2000+ processor synchronizes time with the RTC module through the I2C0 pin.
[0039] Continuing to refer to Figure 2 As shown, the FT2000+-based computer mainboard further comprises a DB9 interface and a 3PIN TCM serial port; the FT2000+ processor is provided with a UART0 pin and a UART2 pin, the DB9 interface is electrically connected to the UART0 pin, and the 3PIN TCM serial port is electrically connected to the UART2 pin.
[0040] It should be noted that in the present embodiment, the DB9 interface is a common 9-pin serial port (RS-232 standard), which is usually used to connect computers and external devices such as modems, printers, etc. The DB9 interface has 9 pins for transmitting data, control signals and ground; the 3PIN TCM serial port refers to a serial communication interface with 3 pins, commonly used in some simplified communication protocols such as TTL level (0V and 3.3V or 5V level), mainly used for communication between embedded systems, development boards and microcontrollers; in the specific implementation of the present application, the design of the two interfaces enables the FT2000+ processor to flexibly communicate with various types of external devices, adapting to different application scenarios. For example, the DB9 interface is suitable for serial communication of industrial equipment, while the 3PIN TCM serial port is more suitable for simple, low-voltage data exchange with embedded systems or sensors.
[0041] The above is a specific description of the preferred implementation of the present application, but the present application is not limited to the described embodiments, and those skilled in the art can make various equivalent modifications or substitutions without departing from the spirit of the present application. These equivalent modifications or substitutions are all included in the scope defined by the claims of the present application.
Claims
1. A computer motherboard based on FT2000+ processor, characterized in that, The FT2000+ processor-based computer mainboard comprises a PCB circuit board, wherein the PCB circuit board is provided with an FT2000+ processor, a BMC module, an X100 module, a memory module, a storage module, a network communication module and a resource expansion module; the FT2000+ processor is electrically connected with the BMC module, the X100 module, the memory module and the resource expansion module; and the storage module and the network communication module are electrically connected with the X100 module.
2. A computer motherboard based on FT2000+ processor according to claim 1, characterized in that, The memory module comprises eight DDR4s, and the FT2000+ processor is provided with MCU0 pin, MCU1 pin, MCU2 pin, MCU3 pin, MCU4 pin, MCU5 pin, MCU6 pin and MCU7 pin; the MCU0 pin, the MCU1 pin, the MCU2 pin, the MCU3 pin, the MCU4 pin, the MCU5 pin, the MCU6 pin and the MCU7 pin are electrically connected with one DDR4.
3. A computer motherboard based on FT2000+ processor according to claim 1, characterized in that, The resource expansion module comprises a PCIE X16 SLOT1 interface, a PCIE X16 SLOT2 interface and a PCIE X16 SLOT3 interface, and the PCIE X16 SLOT1 interface, the PCIE X16 SLOT2 interface and the PCIE X16 SLOT3 interface are electrically connected with the FT2000+ processor.
4. The computer motherboard based on FT2000+ processor according to claim 1, characterized in that, The FT2000+ processor-based computer mainboard further comprises a SATA expansion interface, wherein the SATA expansion interface comprises an mSATA interface and three SATA 3.0 CNN interfaces; the X100 module is provided with a SATA0 pin, a SATA1 pin, a SATA2 pin and a SATA3 pin; the SATA0 pin is electrically connected with the mSATA interface; and the SATA1 pin, the SATA2 pin and the SATA3 pin are respectively electrically connected with one SATA 3.0 CNN interface.
5. A computer motherboard based on FT2000+ processor according to claim 4, characterized in that, The storage module comprises an M.2 hard disk; and the X100 module is further provided with a PCIE0 pin, and the M.2 hard disk is electrically connected with the PCIE0 pin.
6. A computer motherboard based on FT2000+ processor according to claim 5, characterized in that, The network communication module comprises an Ethernet controller chip WX1860A and a communication interface RJ45; the X100 module is further provided with a PCIE1 pin, and the Ethernet controller chip WX1860A is connected between the PCIE1 pin and the communication interface RJ45.
7. A computer motherboard based on FT2000+ processor according to claim 6, characterized in that, The X100 module is further provided with a PICE2 pin; and the FT2000+ processor-based computer mainboard further comprises a minPCIE interface, and the minPCIE interface is electrically connected with the PICE2 pin.
8. A computer motherboard based on FT2000+ processor according to claim 7, characterized in that, The X100 module is further provided with three groups of USB3.0 pins; the FT2000+ processor-based computer mainboard further comprises a rear USB3.0 interface and a front USB3.0 interface; and the rear USB3.0 interface, the front USB3.0 interface and the BMC module are respectively electrically connected with one group of USB3.0 pins.
9. A computer motherboard based on FT2000+ processor according to claim 1, characterized in that, The FT2000+-based computer mainboard further comprises an RTC module; the FT2000+ processor is provided with an I2C0 pin, and the RTC module is electrically connected to the I2C0 pin.
10. A computer motherboard based on FT2000+ processor according to claim 1, characterized in that, The FT2000+-based computer mainboard further comprises a DB9 interface and a 3PIN TCM serial port; the FT2000+ processor is provided with a UART0 pin and a UART2 pin, the DB9 interface is electrically connected to the UART0 pin, and the 3PIN TCM serial port is electrically connected to the UART2 pin.