Intelligent lintel billboard system for micro-module data center channel
By introducing data collectors and data processing boxes into the micro-module data center access lintel system, the problem of limited functionality in existing technologies is solved, enabling rich display content and multi-functional displays to meet users' customized needs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-18
- Publication Date
- 2026-03-06
AI Technical Summary
Existing micro-module data center access lintel solutions are limited in function and display content, failing to meet the ever-increasing demands of users.
Design a micro-module data center channel intelligent lintel signage system, including a data collector, a data processing box, and a bar display screen. The data collector collects key data, the data processing box processes the data and displays it as visualized data. It supports multiple platforms, has rich display content and functions, and the interface can be customized according to customer needs.
It fulfills the multifunctional and customized needs of the micro-module data center access lintel system, displays rich content, supports cross-platform display, has simple networking communication, and is fully functional.
Smart Images

Figure CN223977557U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of micro-module data center technology, and in particular to a smart door lintel system for micro-module data center channels. Background Technology
[0002] With the development of the Internet industry, micro-modules have become popular in data center construction due to their advantages such as high efficiency and energy saving, flexible deployment, rapid construction and easy maintenance. At present, existing micro-module channel lintel solutions are mainly based on LED monochrome or three-color dot matrix screens, which have relatively simple display content, functions and communication, and the displayed content is also relatively limited. As user needs increase, the existing micro-module channel lintels are increasingly unable to meet the user's needs.
[0003] To address the shortcomings of existing technologies, a micro-module data center channel intelligent lintel signage system needs to be designed. Utility Model Content
[0004] The purpose of this invention is to address the shortcomings of existing technologies by proposing a micro-module data center channel intelligent lintel signage system.
[0005] A smart signage system for a micro-module data center access point includes a data acquisition unit, a data processing box, a bar display screen, and a power distribution system. The data acquisition unit is equipped with LAN, COM, DI, and DO interfaces to collect key data from the micro-module data center. The data processing box has RJ45-1 and RJ45-2 interfaces. The LAN interface is connected to the RJ45-1 interface via a switch. The data acquisition unit operates in slave mode, while the data processing box operates in master mode. The data processing box actively acquires the key data collected by the data acquisition unit and processes it into visualized data. The RJ45-2 interface is connected to the bar display screen to display the visualized data. The data processing box also includes an interface configuration design module. The power input terminals on both the data processing box and the bar display screen are connected to the power output terminals provided by the power distribution system to obtain power supply.
[0006] Furthermore, the COM interface includes RJ45-COM1, RJ45-COM2, RJ45-COM3, RJ45-COM4, RJ45-COM5, and RJ45-COM6. RJ45-COM1 is connected to a cabinet, RJ45-COM2 and RJ45-COM3 are each connected to several precision air conditioners, RJ45-COM4 is connected to several temperature and humidity sensors, RJ45-COM5 is connected to a water leakage sensor, and RJ45-COM6 is connected to a UPS (Uninterruptible Power Supply).
[0007] Furthermore, the DI interface includes an RJ45-DI1 interface, an RJ45-DI2 interface, an RJ45-DI3 interface, and an RJ45-DI4 interface. The RJ45-DI1 interface and the RJ45-DI2 interface are both connected to smoke sensors, and the RJ45-DI3 interface and the RJ45-DI4 interface are both connected to infrared sensors.
[0008] Furthermore, the DO interface includes an RJ45-DO1 interface, an RJ45-DO2 interface, an RJ45-DO3 interface, and an RJ45-DO4 interface. The RJ45-DO1 interface is connected to an audible and visual alarm, the RJ45-DO2 interface is connected to a door magnetic sensor, the RJ45-DO3 interface is connected to a green tri-color light, and the RJ45-DO4 interface is connected to a red tri-color light.
[0009] Furthermore, the DI interface transmits DI signals, and the DO interface transmits DO signals.
[0010] Furthermore, the communication protocol used between the LAN interface and the RJ45-1 interface is MODBUS TCP.
[0011] Furthermore, the data processing box is model cMT-FHDX-920, and the bar display screen is either LED or LCD.
[0012] Beneficial effects: This utility model collects key data from the micro-module data center through a data acquisition device. The data processing box acquires the key data and processes it into visualized data, which is then displayed on a bar display screen. It supports cross-platforms such as WINDOWS web / Android APP / IOS web, and has simple networking and communication. It displays rich content and has comprehensive functions. The interface configuration design module in the data processing box can be customized according to customer needs to play looping videos, pictures, and welcome screens, solving the multi-functional and customized needs of the micro-module data center channel intelligent door system. Attached Figure Description
[0013] Figure 1 This is a schematic diagram of the intelligent lintel signage system for a micro-module data center channel of this utility model.
[0014] Figure 2 This is a schematic diagram showing the connection of each interface between the data acquisition device and the data processing box of this utility model;
[0015] In the picture:
[0016] 1. Data acquisition unit; 2. Data processing box; 3. Bar display screen; 4. Power distribution system. Detailed Implementation
[0017] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0018] Please refer to Figures 1-2 This embodiment proposes a smart doorway signage system for a micro-module data center, including a data acquisition unit 1, a data processing box 2, a bar display screen 3, and a power distribution system 4. The data acquisition unit 1 is equipped with LAN, COM, DI, and DO interfaces. The data acquisition unit 1 is a CA86201 model and collects key data from the micro-module data center, including temperature and humidity, smoke detection, PUE value, fire safety, skylight status, and access control leakage information within the micro-module. The data processing box 2 is a cMT-FHDX-920 model and is equipped with RJ45-1 and RJ45-2 interfaces. In addition, it provides RS232 and RS485 network interfaces. The LAN interface connects to the RJ45-1 interface via a switch, and the communication protocol between the LAN interface and the RJ45-1 interface is MODBUS. The system uses TCP, with data acquisition unit 1 operating in slave mode and data processing box 2 operating in master mode. Data processing box 2 actively acquires key data collected by data acquisition unit 1 and processes it into visualized data. An RJ45-2 interface connects to a bar display screen 3 to display the visualized data. This visualized data can include information such as room name, time, date, temperature and humidity within the micro-module, smoke detection, PUE value, fire safety, skylight status, and access control leakage. The display content is rich and comprehensive. The bar display screen 3 is LED or LCD, supports HDMI / RJ45 interfaces, and supports resolutions such as 1920*1080, 1920*480, and 1920*540, which can be adjusted according to actual needs. Data processing box 2 also includes an interface configuration design module, allowing for customization of looping videos, images, and welcome screens according to customer requirements, addressing the multi-functional and customized needs of the micro-module data center access intelligent door system. The power input terminals on data processing box 2 and bar display screen 3 are connected to the power output terminals provided by the power distribution system 4 to obtain power. This system supports cross-WINDOWS... It supports various platforms including web, Android app, and iOS web, and features simple network communication and diverse interface functions.
[0019] The COM interfaces on data acquisition unit 1 include RJ45-COM1, RJ45-COM2, RJ45-COM3, RJ45-COM4, RJ45-COM5, and RJ45-COM6. RJ45-COM1 is connected to a cabinet; RJ45-COM2 and RJ45-COM3 are each connected to several precision air conditioners; RJ45-COM4 is connected to several temperature and humidity sensors to collect ambient temperature and humidity data from the micro-module data center; and RJ45-COM5 is connected to a water leakage sensor. The sensor collects water leakage information from the micro-module data center access control system. The RJ45-COM6 interface connects to a UPS (Uninterruptible Power Supply) to provide uninterruptible power to the data acquisition unit 1. Both the cabinet and the precision air conditioner have RS485 interfaces to establish communication connections with the data acquisition unit 1 and transmit equipment parameter information. The cabinet transmits parameters such as voltage, current, power, and frequency, while the precision air conditioner transmits parameters such as supply air temperature and humidity, and return air temperature and humidity. The DI interfaces include RJ45-DI1, RJ45-DI2, RJ45-DI3, and RJ45-DI4 interfaces. The interface transmits DI signals. RJ45-DI1 and RJ45-DI2 interfaces are both connected to smoke sensors, and RJ45-DI3 and RJ45-DI4 interfaces are both connected to infrared sensors. The DO interface includes RJ45-DO1, RJ45-DO2, RJ45-DO3, and RJ45-DO4 interfaces. The DO interface transmits DO signals. In this embodiment, RJ45-DO1 and RJ45-DO2 interfaces are configured as active. An audible and visual alarm is connected through RJ45-DO1 interface. The DO2 interface is connected to a door magnetic sensor to obtain skylight status information. The RJ45-DO3 and RJ45-DO4 interfaces are set to passive mode. A green tri-color light is connected to the RJ45-DO3 interface, and a red tri-color light is connected to the RJ45-DO4 interface. The red tri-color light indicates a level 1 alarm, such as a high temperature alarm, a power outage alarm, or other important alarm indication. The green tri-color light indicates a level 2 alarm, which is a lower alarm level. All equipment alarms in the micro-module data center are triggered by an audible and visual alarm. Warning information is collected by connecting the audible and visual alarm, the red tri-color light, and the green tri-color light.
[0020] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A micro-module data center passageway intelligent lintel signboard system, characterized in that: The application relates to a data acquisition and display system for a micro-module data center, which comprises a data collector (1), a data processing box (2), a bar-shaped display screen (3) and a power distribution system (4); the data collector (1) is provided with a LAN interface, a COM interface, a DI interface and a DO interface; the data collector (1) is used for collecting key data of the micro-module data center; the data processing box (2) is provided with an RJ45-1 interface and an RJ45-2 interface; the LAN interface is connected with the RJ45-1 interface through a switch; the data collector (1) adopts a slave mode, and the data processing box (2) adopts a master mode; the data processing box (2) actively acquires the key data collected by the data collector (1) and processes the key data into visual data; the visual data is displayed through the bar-shaped display screen (3) connected with the RJ45-2 interface; the data processing box (2) is further provided with an interface configuration design module; the power input ends of the data processing box (2) and the bar-shaped display screen (3) are connected with power output ends provided by the power distribution system (4) to acquire power supply; the model of the data processing box (2) is cMT-FHDX-920.
2. The micro module data center aisle intelligent header sign system of claim 1, wherein: The COM interface comprises an RJ45-COM1 interface, an RJ45-COM2 interface, an RJ45-COM3 interface, an RJ45-COM4 interface, an RJ45-COM5 interface and an RJ45-COM6 interface; the RJ45-COM1 interface is connected with a column head cabinet; the RJ45-COM2 interface and the RJ45-COM3 interface are connected with a plurality of precision air conditioners; the RJ45-COM4 interface is connected with a plurality of temperature and humidity sensors; the RJ45-COM5 interface is connected with a water leakage sensor; and the RJ45-COM6 interface is connected with an electric appliance UPS.
3. The micro module data center aisle intelligent header sign system of claim 1, wherein: The DI interface comprises an RJ45-DI1 interface, an RJ45-DI2 interface, an RJ45-DI3 interface and an RJ45-DI4 interface; the RJ45-DI1 interface and the RJ45-DI2 interface are connected with smoke sensors; and the RJ45-DI3 interface and the RJ45-DI4 interface are connected with infrared sensors.
4. The micro module data center aisle intelligent header sign system of claim 1, wherein: The DO interface comprises an RJ45-DO1 interface, an RJ45-DO2 interface, an RJ45-DO3 interface and an RJ45-DO4 interface; the RJ45-DO1 interface is connected with an audible and visual alarm; the RJ45-DO2 interface is connected with a door magnetic sensor; the RJ45-DO3 interface is connected with a green three-color lamp; and the RJ45-DO4 interface is connected with a red three-color lamp.
5. The micro module data center aisle intelligent header sign system of claim 1, wherein: The DI interface transmits a DI signal, and the DO interface transmits a DO signal.
6. The micro module data center aisle intelligent header sign system of claim 1, wherein: The communication protocol adopted by the LAN interface and the RJ45-1 interface is MODBUS TCP.
7. The micro module data center aisle intelligent header sign system of claim 1, wherein: The bar-shaped display screen (3) is an LED or an LCD.