A data acquisition device gateway based on starburst technology

CN224804957UActive Publication Date: 2026-09-25SHANGHAI SULONG INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202521405824.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-07
Publication Date
2026-09-25
Estimated Expiration
2035-07-07

AI Technical Summary

Technical Problem

传统的无线连接技术,具有高时延,高功耗,覆盖范围低,存在安全隐患,这种传输方式存在使用连接断续,信号差等现象,影响了数据传输效果,影响了设备使用体验,另外,长时间使用后工作效率低

Benefits of technology

1.通过支架可以将星闪模组固定在电路板上,实现稳固可靠的数据处理结构的效果通过星闪互联技术,有效地提高覆盖范围,传输稳定,低时延,减少了传输过程中不稳定,比较慢的现象,提高了工作效率。通过星闪互联技术,有效降低设备的电量消耗,延长设备的使用时间,减少了电池的更换。 通过星闪技术采用了多种抗干扰技术,如频域分集、空域分集、时域分集、频域扩展等,可以有效抵抗多径衰落、同频干扰、异频干扰等无线信道的不利影响。相比蓝牙技术,星闪技术的抗干扰能力可提升10dB以上。

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Abstract

The utility model relates to internet technical field especially based on a kind of data acquisition equipment gateway of star flash technology, including circuit board, the top left side of circuit board is provided with USB interface, the top right side of circuit board is provided with star flash module group, star flash module group is fixedly installed on the top of circuit board by support, the support includes first gasket, second gasket, cylinder and extension section integrally formed, the top of circuit board is provided with through-hole that penetrates from top to bottom, the bottom of circuit board is located at first gasket, the top of circuit board is located at second gasket, the inside of through-hole is located at cylinder, the top of second gasket is located at extension section. By adopting the above technical scheme, star flash module group can be fixed on circuit board by support, and the stable and reliable data processing structure is realized.
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Description

Technical Field

[0001] This utility model relates to the field of Internet technology, and in particular to a data acquisition device gateway based on StarFlash technology. Background Technology

[0002] The StarSpark data acquisition gateway utilizes StarSpark technology to provide stronger connectivity for HarmonyOS's Internet of Things (IoT) ecosystem. This next-generation wireless connectivity technology comprises a StarSpark access layer, a basic service layer, and a basic application layer. The access layer, based on its functionalities, is divided into management nodes (Grant nodes) and terminal nodes (Terminal nodes). A single management node can simultaneously connect to and manage multiple terminal nodes, employing centralized scheduling and multi-transmitter / multi-receive capabilities to avoid conflicts caused by node polling, achieving extremely high concurrency. Compared to traditional wireless connections, this new technology offers lower latency, lower power consumption, wider coverage, and enhanced security. Traditional wireless technologies suffer from high latency, high power consumption, low coverage, and security vulnerabilities. These transmission methods also experience intermittent connections and poor signal strength, impacting data transmission quality and user experience. Furthermore, their efficiency decreases after prolonged use.

[0003] This product also features Wi-Fi / BT functionality. The integration of StarFlash technology further enhances its capabilities. StarFlash and Wi-Fi / BT complement each other, jointly driving the development of the Internet of Things. In addition, the ultra-low latency, high speed, high concurrency, and high reliability of the new technology have resulted in a higher market response for the device. Utility Model Content

[0004] The purpose of this invention is to provide a data acquisition device gateway based on StarFlash technology to solve the problems existing in the prior art.

[0005] The above-mentioned technical objective of this utility model is achieved through the following technical solution: A data acquisition device gateway based on StarSpark technology includes a circuit board. A USB interface is provided on the top left side of the circuit board, and a StarSpark module is provided on the top right side of the circuit board. The StarSpark module is fixedly mounted on the top of the circuit board by a bracket. The bracket is integrally formed by a first pad, a second pad, a cylinder, and an extension section. A through hole is provided on the top of the circuit board. The first pad is located at the bottom of the circuit board, the second pad is located at the top of the circuit board, the cylinder is located inside the through hole, and the extension section is located on top of the second pad.

[0006] By adopting the above technical solution, the star-flash module can be fixed on the circuit board using a bracket, thus achieving a stable and reliable data processing structure.

[0007] In a further embodiment, both the first gasket and the second gasket are annular pieces.

[0008] In a further embodiment, the extension segment is a rectangular structure.

[0009] In a further embodiment, the end of the extension is configured to curve upwards.

[0010] In a further embodiment, the four corners of the top of the circuit board are provided with threaded holes that extend vertically through the board.

[0011] In summary, this utility model has the following beneficial effects: 1. The StarSpark module can be fixed to the circuit board using a bracket, achieving a stable and reliable data processing structure. StarSpark interconnection technology effectively improves coverage, ensures stable transmission, and reduces latency, minimizing instability and slowness during transmission and improving work efficiency. StarSpark interconnection technology also effectively reduces device power consumption, extends device lifespan, and reduces battery replacements. StarSpark technology employs various anti-interference techniques, such as frequency domain diversity, spatial domain diversity, time domain diversity, and frequency domain spread, effectively resisting the adverse effects of multipath fading, co-channel interference, and inter-channel interference in wireless channels. Compared to Bluetooth technology, StarSpark technology offers over 10dB better anti-interference capabilities. Attached Figure Description

[0012] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0013] In the diagram, 1. USB interface; 2. Starlight module; 3. Circuit board; 4. Stand. Detailed Implementation

[0014] The present invention will be further described in detail below with reference to the accompanying drawings.

[0015] Identical parts are indicated by the same reference numerals. It should be noted that the terms "front," "rear," "left," "right," "upper," and "lower" used in the following description refer to the attached figures. Figure 1 In this specification, the terms "bottom surface" and "top surface," "inner" and "outer" refer to the direction toward or away from the geometry of a specific component. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this specification, "a plurality of" means two or more, unless otherwise explicitly and specifically defined by the direction of the center.

[0016] Example 1: like Figure 1 As shown, a data acquisition device gateway based on StarSpark technology includes a circuit board 3. A USB interface 1 is provided on the top left side of the circuit board 3, and a StarSpark module 2 is provided on the top right side of the circuit board 3. The StarSpark module 2 is fixedly mounted on the top of the circuit board 3 by a bracket 4. The bracket 4 is integrally formed by a first pad, a second pad, a cylinder, and an extension section. The top of the circuit board 3 is provided with a through hole running vertically. The first pad is located at the bottom of the circuit board 3, the second pad is located at the top of the circuit board 3, the cylinder is located inside the through hole, and the extension section is located at the top of the second pad. Both the first pad and the second pad are annular pieces. The extension section has a rectangular structure. The end of the extension section is designed to be curved upwards. Each of the four corners of the top of the circuit board 3 is provided with a threaded hole running vertically.

[0017] Implementation process: The StarSpark module can be fixed on the circuit board using a bracket, achieving a stable and reliable data processing structure. StarSpark interconnection technology effectively improves coverage, ensures stable transmission, and reduces latency, minimizing instability and slowness during transmission, thus improving work efficiency. StarSpark interconnection technology also effectively reduces device power consumption, extends device lifespan, and reduces battery replacements. StarSpark technology employs various anti-interference techniques, such as frequency domain diversity, spatial domain diversity, time domain diversity, and frequency domain spread, effectively resisting the adverse effects of multipath fading, co-channel interference, and inter-channel interference in wireless channels. Compared to Bluetooth technology, StarSpark technology offers over 10dB better anti-interference capabilities.

[0018] In the embodiments disclosed in this utility model, the terms "installation," "connection," "linking," and "fixing" should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; "linking" can be a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in the embodiments disclosed in this utility model according to the specific circumstances.

[0019] This specific embodiment is merely an explanation of the present utility model and is not intended to limit the present utility model. After reading this specification, those skilled in the art can make modifications to this embodiment without contributing any inventive step, but as long as they are within the scope of the claims of the present utility model, they are protected by patent law.

Claims

1. A data acquisition device gateway based on star-flash technology, characterized in that: The circuit board (3) is provided with a USB interface (1) on the top left side and a star flash module (2) on the top right side. The star flash module (2) is fixedly installed on the top of the circuit board (3) by a bracket (4). The bracket (4) is integrally formed by a first pad, a second pad, a cylinder and an extension section. The top of the circuit board (3) is provided with a through hole that runs vertically through the circuit board. The first pad is located at the bottom of the circuit board (3), the second pad is located at the top of the circuit board (3), the cylinder is located inside the through hole, and the extension section is located at the top of the second pad.

2. The data acquisition device gateway based on star-flash technology according to claim 1, characterized in that: Both the first gasket and the second gasket are circular rings.

3. The data acquisition device gateway based on star-flash technology according to claim 1, characterized in that: The extension section has a rectangular structure.

4. A data acquisition device gateway based on star-flash technology according to claim 1, characterized in that: The end of the extension is configured to curve upwards.

5. A data acquisition device gateway based on star-flash technology according to claim 1, characterized in that: The circuit board (3) has threaded holes running vertically through each of its four corners.