Network memory
By integrating a touchscreen and fingerprint module into the network storage, the operational difficulties of traditional network storage in the event of network instability or client problems are solved, enabling more convenient and intuitive local configuration and improving security.
Patent Information
- Application Number
- CN202423062739.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-11
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-11
AI Technical Summary
Traditional network storage devices cannot be operated or configured when the network is unstable or when there are problems with the mobile software/computer client, which reduces the operability and reliability of NAS devices.
A touchscreen and fingerprint module are integrated into the network storage, allowing configuration operations to be performed via the touchscreen and enhanced security via the fingerprint module.
It improves the operability and reliability of network storage, enhances security, and prevents accidental operation and data leakage by unauthorized personnel.
Smart Images

Figure CN223611934U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of memory, and particularly relates to a network memory. BACKGROUND
[0002] Boot readiness, hard disk read-write and other state display of a conventional network storage (NAS) product are mainly realized through different LED lamps on a mainboard. A few NAS devices output simple boot pictures and part of device states through liquid crystal display screens equipped in the NAS, but the operation and configuration of the NAS devices are performed through a network and with the help of related mobile phone software or computer clients. Thus, the NAS devices cannot be operated and configured in the case that the network is unstable and the related mobile phone software or computer clients have use problems, and the operability of the NAS devices is reduced. CONTENT OF THE UTILITY MODEL
[0003] The application embodiment provides a network memory, which can solve the problem that the NAS device cannot be operated and configured in the case that the network is unstable and the related mobile phone software or computer clients have use problems.
[0004] The application embodiment provides a network memory, which comprises a network memory mainboard, a touch display screen, a fingerprint module and a network storage host.
[0005] In the application embodiment, the network memory comprises a network memory mainboard, a touch display screen, a fingerprint module and a network storage host. The network memory mainboard is connected with a reset pin, image display data pins, a configuration pin for configuring a register of the touch display screen and an interrupt signal pin of the touch display screen. The network memory mainboard is connected with a data communication pin and an interrupt signal pin of the fingerprint module. The network memory can be configured and operated through the touch display screen, the operability and reliability of the network memory are improved, and the security of the network memory is improved through the fingerprint module. BRIEF DESCRIPTION OF DRAWINGS
[0006] Figure 1 FIG. 1 is a structural connection schematic diagram of a network memory provided by the application embodiment;
[0007] Figure 2 FIG. 2 is another structural schematic diagram of a network memory provided by the application embodiment;
[0008] Figure 3is a structural schematic diagram of a fingerprint module provided by an embodiment of the present application.
[0009] Figure 4 is a network memory framework schematic diagram provided by an embodiment of the present application.
[0010] Figure 5 is a functional flowchart of a touch display screen and a fingerprint module provided by an embodiment of the present application.
[0011] Legend:
[0012] Network memory mainboard-10, touch display screen-20, fingerprint module-30, fingerprint collection sub-module-310, fingerprint identification sub-module-320, driving sub-module-330, memory case-40. DETAILED DESCRIPTION
[0013] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without any creative work under the premise that the embodiments in the present application fall within the scope of protection of the present application.
[0014] The terms "first", "second", and the like in the specification and claims of the present application are used to distinguish similar objects, and are not used to describe a specific order or sequence. It should be understood that the data used in this way can be exchanged under appropriate circumstances, so that the embodiments of the present application can be implemented in an order other than those illustrated or described herein, and the objects distinguished by "first", "second", etc. are generally a class, and are not limited to the number of objects, for example, the first object can be one or more. In addition, "and / or" in the specification and claims indicates at least one of the connected objects, and the character " / ", generally indicates that the front and rear associated objects are in an "or" relationship.
[0015] A network memory provided by an embodiment of the present application will be described in detail below with reference to the drawings, specific embodiments and application scenarios.
[0016] Figure 1 is a structural connection schematic diagram of a network memory provided by an embodiment of the present application. As shown in Figure 1As shown, the network storage includes: a network storage motherboard 10; a touch display screen 20, the network storage motherboard 10 being connected to the touch display screen 20's reset pin, image display data pin, configuration pin for configuring the touch display screen 20's registers, and interrupt signal pin; and a fingerprint module 30, the network storage motherboard 10 being connected to the fingerprint module 30's data communication pins and interrupt signal pins. The touch display screen 20 and fingerprint module 30 are mounted on the network storage (NAS), with the touch display screen 20 connected to the network storage motherboard 10. The fingerprint module 30 is also connected to the network storage motherboard 10.
[0017] Touchscreen displays 20 can be categorized based on their working principle into: infrared touchscreens, resistive touchscreens, capacitive touchscreens, and surface acoustic wave touchscreens. In one embodiment, the touchscreen display 20 is a capacitive touchscreen display of the thin-film transistor (TFT) panel type. Specifically, a capacitive touchscreen display 20 with a TFT panel type can be selected. As an example, the touchscreen display 20 can have a size of 2.86 inches, a resolution of 376×RGB×960 pixels, a MIPI data type, and a 28-pin flexible flat cable as its external interface. The touchscreen display 20 can be installed on the network storage device using an adhesive backing. The metal ground plane of the touchscreen display 20 is located on the metal area on the back of the touchscreen display 20.
[0018] In one implementation, the network memory motherboard 10 has a snap-fit mounting bracket connected to the touch display screen 20 via a flexible flat cable. The flexible flat cable connects the touch display screen 20 to the reset pin, the image display data pin, the configuration pin, and the interrupt signal pin.
[0019] like Figure 1 As shown in this embodiment, the network memory motherboard 10 is connected to the touch display screen 20. The network memory motherboard 10 can be secured with a snap-fit bracket that matches the 28-pin flexible flat cable of the touch display screen 20. The touch display screen 20 is connected to the network memory motherboard 10 via a flexible flat cable with external 28 pins. The network memory motherboard 10 connects to the touch display screen 20's reset pin, image display data pin, configuration pin for configuring the touch display screen 20's registers, and interrupt signal pin. The pin definitions on the touch display screen 20 interface can be divided into the following five categories:
[0020] (1) Power supply: It is divided into the backlight positive power supply VLEDA and the backlight negative power supply VLEDK of the touch screen 20.
[0021] (2) Reset: The reset signal of the touch display screen 20.
[0022] (3) Mobile Industry Processor Interface (MIPI): image display data pin MIPI signal.
[0023] (4) I2C: I2C signal related to the configuration of the touch display screen 20 register.
[0024] (5) INT: INT interrupt indication signal output by the touch display screen 20 to the CPU of the network memory motherboard 10.
[0025] In an embodiment, the image display data pin of the touch display screen 20 is a Mobile Industry Processor Interface (MIPI) data pin. That is, the above-mentioned touch display screen 20 using MIPI data can be selected, but the embodiment of the application can also use touch display screens of other common interfaces, in addition to MIPI data, there can also be Low-Voltage Differential Signaling (LVDS), DP, RGB, High Definition Multimedia Interface (HDMI) and the like. In an embodiment, the configuration pin of the touch display screen 20 is an I2C communication interface pin, that is, the embodiment of the application can use a communication interface pin configured with an I2C signal, and of course it can also be a common UART, SPI and the like. Similarly, the size of the touch display screen 20 can also be adjusted according to the actual needs of the network memory.
[0026] In an implementation, the female seat of the network memory motherboard 10 connects the male seat of the fingerprint module 30, and the male seat connects the data communication pin and the interrupt signal pin of the fingerprint module 30.
[0027] As shown in Figure 1 , the fingerprint module 30 is connected to the network memory motherboard 10 through a 6-pin male seat (male seat), and the network memory motherboard 10 and the 6-pin male seat of the fingerprint module 30 are plugged into each other. The network memory motherboard 10 connects the data communication pin and the interrupt signal pin of the fingerprint module 30, and the pin definition of the interface of the fingerprint module 30 is roughly divided into the following three categories:
[0028] (1) Power supply: divided into power supply Vs of the fingerprint sensor (Sensor) and power supply Vm of the processing unit microcontroller unit (MCU) in the fingerprint module 30.
[0029] (2) UART: interface for data communication between the fingerprint module 30 and the CPU of the network memory motherboard 10.
[0030] (3) INT: the fingerprint module 30 is pressed to trigger, and an INT interrupt signal is sent to the CPU of the network storage mainboard 10.
[0031] In an embodiment, the data communication pin of the fingerprint module 30 is a UART data communication interface pin. That is, a round capacitive fingerprint module with a UART interface is selected, and the fingerprint module 30 can be set according to the requirements of the network storage, for example, a square fingerprint module can also be selected, and the interface can also be selected according to actual needs, such as I2C or SPI communication mode.
[0032] In an embodiment, the interrupt signal pin of the touch display screen 20 and the fingerprint module 30 is an INT interrupt signal pin. That is, the touch display screen 20 can output an INT interrupt indication signal to the CPU of the network storage mainboard 10, and the fingerprint module 30 is pressed to trigger, and an INT interrupt signal is sent to the CPU of the network storage mainboard 10.
[0033] The network storage provided by the embodiment of the application comprises a network storage mainboard 10; a touch display screen 20, the network storage mainboard 10 is connected with a reset pin, an image display data pin, a configuration pin for configuring a register of the touch display screen 20 and an interrupt signal pin of the touch display screen 20; and a fingerprint module 30, the network storage mainboard 10 is connected with a data communication pin and an interrupt signal pin of the fingerprint module 30. The time, the calendar, the central processing unit (CPU), the memory, the hard disk and other hardware state information can be displayed through the touch display screen 20, and the boot screen and the support of the personalized theme image switching can be displayed, which enriches the local output display capability of the data and the image. The touch display screen 20 can support the user to perform the configuration operation on the NAS on the touch display screen 20. Compared with the traditional NAS which can only perform the configuration operation on the NAS network storage through the mobile phone software and the computer client, the local configuration operation on the network storage can be more convenient and more intuitive, and the operability and the reliability of the network storage are improved.
[0034] In the embodiment of the application, the network storage is provided with the fingerprint module 30, and the fingerprint recognition function is added. In this way, when the user uses the network storage, the fingerprint recognition needs to be performed first, and only in the case that the fingerprint recognition is successful, the network storage can be normally used. The local touch screen of the NAS network storage can be prevented from being misoperated by the idle and miscellaneous people, the data and the configuration operation safety of the NAS device can be effectively enhanced, the data leakage can be prevented, and the safety of the network storage is enhanced.
[0035] In an implementation manner, the fingerprint module 30 further comprises: a fingerprint collection sub-module 310; a fingerprint identification sub-module 320 connected to the fingerprint collection sub-module 310; and a driving sub-module 330 connected to the fingerprint collection sub-module 310 and the fingerprint identification sub-module 320.
[0036] Specifically, as shown in Figure 3 the fingerprint module 30 mainly comprises the fingerprint collection sub-module 310, the fingerprint identification sub-module 320 and the driving sub-module 330 (an extended function module), the fingerprint identification sub-module 320 is connected to the fingerprint collection sub-module 310, and the driving sub-module 330 is connected to the fingerprint collection sub-module 310 and the fingerprint identification sub-module 320. The fingerprint module 30 can be divided into an optical fingerprint module 30, a capacitive fingerprint module 30 and a radio frequency fingerprint module 30 (a scratch fingerprint module 30) according to a fingerprint identification mode. For example, in the embodiment of the present application, a circular capacitive fingerprint module 30 can be used, the size can be φ17.05±0.05mm, the pixel is 160×160Pixel, the data type is UART, the external interface is a 6 Pin pin male seat sub, and the maximum storage capacity is 100 fingerprint IDs.
[0037] In an implementation manner, the network storage further comprises: a storage case 40, the network storage mainboard 10 is located inside the storage case 40, and the touch display screen 20 is located on the storage case 40; a conductive cloth space is provided on a metal ground of a shell of the storage case 40, the conductive cloth space is provided with a conductive cloth, and the metal ground of the shell of the storage case 40 is connected to a metal ground of the touch display screen 20 through the conductive cloth.
[0038] Specifically, as shown in Figure 4 the network storage further comprises the storage case 40, the network storage mainboard 10 is located inside the storage case 40, and the touch display screen 20 is located on the storage case 40; a conductive cloth space is provided on a metal ground of a shell of the storage case 40, the conductive cloth space is provided with a conductive cloth, and the metal ground of the shell of the storage case 40 is connected to a metal ground of the touch display screen 20 through the conductive cloth.
[0039] The touch display screen 20 can be pasted on a plastic part on the front of the storage case 40 through an adhesive, the fingerprint module 30 is fixed by plug-in of a male seat and a female seat between the network storage mainboard 10 and the network storage mainboard 10, and by locking screws, the network storage mainboard 10 is fixed in the storage case 40 by limiting holes and fixed holes and screws.
[0040] In the embodiment of the present application, a conductive cloth space is designed on the metal shell of the memory case 40, and the conductive cloth space is provided with a conductive cloth. The metal shell of the touch display screen 20 and the metal shell of the memory case 40 can be effectively overlapped through the conductive cloth. In this way, the anti-static passing ability of the network memory in the ESD static test can be enhanced. The touch display screen 20 can strike a discharge of ±4KV, and the air discharge is ±8KV.
[0041] Figure 4 A network memory framework diagram provided by the embodiment of the present application is shown in FIG. 1. Figure 4 As shown in FIG. 1, the touch display screen 20 and the fingerprint module 30 on the network memory are connected with the network memory mainboard 10 and communicate with each other. Figure 5 A function flow diagram of the touch display screen 20 and the fingerprint module 30 provided by the embodiment of the present application is shown in FIG. 2. Figure 5 As shown in FIG. 2, the touch display screen 20 of the network memory can display time, calendar, CPU, memory, hard disk and other hardware state indication information, and can also display a boot screen and support personalized theme image switching, thereby enriching the local output display capability of data and images. When a user uses the network memory, the user needs to perform fingerprint identification first. In the case that the fingerprint identification is successful, the user can normally use the network memory, and can perform local operation and configuration of the network memory by operating the touch display screen 20. In the case that the fingerprint identification fails, the user cannot operate the touch display screen 20.
[0042] In the embodiment of the present application, the network memory is embedded with the touch display screen 20, which can display time, calendar, CPU, memory, hard disk and other hardware state information, and can also display a boot screen and support personalized theme image switching. The touch display screen 20 can support local configuration and operation of the NAS network memory by a user. Compared with the traditional NAS which can only be configured and operated by a mobile phone software and a computer client, the embodiment of the present application can more conveniently and intuitively perform local configuration and operation of the network memory. The fingerprint module on the network memory can protect the local configuration and operation of the touch display screen 20, prevent irrelevant people from misoperation, and enhance the security of the configuration and operation of the NAS network memory.
[0043] The embodiments of the present application are described above in combination with the drawings, but the present application is not limited to the above-described specific embodiments. The above-described specific embodiments are only illustrative, but not restrictive. Those skilled in the art can make many forms under the inspiration of the present application without departing from the scope of the present application and the protection scope of the claims.
Claims
1. A network memory, characterized by The network memory comprises: a network memory mainboard; a touch display screen, the network memory mainboard being connected to reset pins, image display data pins, configuration pins for configuring registers of the touch display screen, and interrupt signal pins of the touch display screen; a fingerprint module, the network memory mainboard being connected to data communication pins and interrupt signal pins of the fingerprint module.
2. The network memory of claim 1, wherein, The network memory further comprises: a memory case, the network memory mainboard being located inside the memory case, and the touch display screen being located on the memory case; an outer shell of the memory case is provided with a conductive cloth space, the conductive cloth space being provided with conductive cloth, and the outer shell of the memory case is connected to metal ground of the touch display screen through the conductive cloth.
3. The network memory of claim 1, wherein, The fingerprint module further comprises: a fingerprint collection sub-module; a fingerprint identification sub-module, the fingerprint identification sub-module being connected to the fingerprint collection sub-module; a driving sub-module, the driving sub-module being connected to the fingerprint collection sub-module and the fingerprint identification sub-module.
4. The network memory of claim 1, wherein, The network memory mainboard is provided with a buckle fixing seat sub-connection, the buckle fixing seat sub-connection being connected to a flexible flat cable of the touch display screen, the flexible flat cable being connected to reset pins, image display data pins, configuration pins, and interrupt signal pins of the touch display screen.
5. The network memory of claim 1, wherein, The network memory mainboard is provided with a female seat, the female seat being connected to a male seat of the fingerprint module, the male seat being connected to data communication pins and interrupt signal pins of the fingerprint module.
6. The network memory of claim 1, wherein, The touch display screen is a capacitive touch display screen of a thin film transistor panel type.
7. The network memory of claim 1, wherein, The image display data pins of the touch display screen are mobile industry processor (MIPI) data pins.
8. The network memory of claim 1, wherein, The configuration pins of the touch display screen are I2C communication interface pins.
9. The network memory of claim 1, wherein, The data communication pins of the fingerprint module are UART data communication interface pins.
10. The network memory of claim 1, wherein, The interrupt signal pins of the touch display screen and the fingerprint module are INT interrupt signal pins.