Multi-channel mobile phone data acquisition connector assembly

Through the design of a multi-channel data acquisition connector assembly, using electrical components such as controllers, wireless transceivers and timers, a multi-channel data transmission and wireless network is constructed, which solves the low efficiency problem of existing technologies and realizes efficient and reliable data acquisition and fault detection.

CN223414906UActive Publication Date: 2025-10-03SHANDONG PROVINCIAL PUBLIC SECURITY DEPT MATERIAL EVIDENCE IDENTIFICATION RES CENT
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202422730271.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-08
Publication Date
2025-10-03
Estimated Expiration
2034-11-08

AI Technical Summary

Technical Problem

Existing data acquisition components can only transmit data in one direction, resulting in low efficiency and a lack of fault detection and early warning mechanisms, which affects the timeliness of data transmission.

Method used

A multi-channel mobile phone data acquisition connector component is designed. It adopts controller integrated control to build multiple data transmission channels, and displays the status through indicator lights. A wireless transmission network is established using a wireless transceiver, and a timer realizes real-time data acquisition. It has fault detection and early warning functions.

Benefits of technology

It realizes the simultaneous collection of multiple sets of data, improves the collection efficiency and data volume, and can detect and eliminate faults in a timely manner to ensure the timeliness of data transmission.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223414906U_ABST
    Figure CN223414906U_ABST
Patent Text Reader

Abstract

A multi-channel mobile phone data acquisition connector assembly comprises a shell, a plurality of data transmission channels are evenly arranged in the shell, one end of each data transmission channel is connected with a mobile phone end through a data line, and the other end of each data transmission channel is connected with a controller in the shell so that mobile phone data can be transmitted to the controller to be stored; the data transmission channel is connected with the controller through an instruction input device so as to collect the collected mobile phone data to the controller; the two sides of the upper end part of each data transmission channel are respectively connected with a positive conductive plate and a negative conductive plate through springs, so that when a data line is inserted into the data transmission channel, a loop is formed to lighten an indicating lamp to display the use state of the data transmission channel; the controller is electrically connected with a timer and a wireless transceiver, and the wireless transceiver is used for establishing a wireless transmission network between the controller and the data processing end and transmitting mobile phone data to the data processing end; and the timer is used for transmitting a clock pulse signal to the controller so as to realize real-time acquisition and transmission of mobile phone data.
Need to check novelty before this filing date? Find Prior Art

Description

Technical field:

[0001] The utility model relates to a multi-channel mobile phone data acquisition connector component. Background technology:

[0002] Mobile phone data refers to the various parameters and information generated by the various apps installed on the mobile phone during operation. In order to test and provide feedback on the performance and working status of the mobile phone, all mobile phone data needs to be collected and interacted to ensure that staff can obtain the corresponding mobile phone data in a timely manner.

[0003] The working principles of existing data acquisition components are mostly similar to those of data cables. Data interaction is carried out between the mobile phone end and the data processing end, so that the data processing end analyzes and processes the collected mobile phone data. Due to the single data transmission direction of the data cable, the data processing end can only collect one group of mobile phone data at the same time node, resulting in low overall work efficiency and a small amount of mobile phone data collection. At the same time, the existing data acquisition components have no verification link. Once a fault occurs in the data transmission path, it cannot be detected and warned in time, resulting in users being unable to troubleshoot the fault in time and delaying the transmission of mobile phone data. Utility model content:

[0004] The embodiment of the present utility model provides a multi-channel mobile phone data acquisition connector assembly with a reasonable structural design. Based on the integrated control function of the controller and in combination with multiple types of electrical components and functional components, it can construct multiple data transmission channels for collecting and transmitting mobile phone data. It can collect multiple groups of mobile phone data at the same time node, thereby improving the collection efficiency and the amount of mobile phone data collected. At the same time, the use status of each data transmission channel is displayed via an indicator light. When a fault occurs, it can be detected, warned and eliminated in time, thereby ensuring the timeliness of mobile phone data collection and transmission, and solving the problems existing in the prior art.

[0005] The technical solution adopted by the present invention to solve the above technical problems is:

[0006] A multi-channel mobile phone data acquisition connector assembly includes a housing with multiple data transmission channels evenly arranged inside the housing. One end of the data transmission channel is connected to the mobile phone via a data cable, and the other end is connected to a controller inside the housing to transmit mobile phone data to the controller for storage.

[0007] The data transmission channel is connected to the controller via a command input device to collect the collected mobile phone data to the controller; the upper end of each data transmission channel is connected to a positive conductive plate and a negative conductive plate via springs, so that when the data line is inserted into the data transmission channel, a loop is formed and an indicator light is lit to indicate the usage status of the data transmission channel;

[0008] A timer and a wireless transceiver are electrically connected to the controller. The wireless transceiver is used to establish a wireless transmission network between the controller and the data processing end to transmit mobile phone data to the data processing end; the timer is used to transmit a clock pulse signal to the controller to realize real-time collection and transmission of mobile phone data.

[0009] The controller model is STM32F103C8T6, and 64 pins are provided on the controller. The controller is connected to the instruction input device through pin 4, the controller is connected to the wireless transceiver through pins 20 and 21, and the controller is connected to the timer through pin 45.

[0010] The model of the command input device is TLP290, and four pins are provided on the command input device. Pin No. 1 of the command input device is connected to the data transmission channel, and a ninth resistor, a tenth resistor and a fourth capacitor are connected in parallel between pin No. 1 and pin No. 2 of the command input device, and a fifth capacitor and an eighth resistor are connected in parallel between pin No. 3 and pin No. 4 of the command input device, and pin No. 3 of the command input device is connected to pin No. 4 of the controller.

[0011] The model of the wireless transceiver is ESP8266, and 8 pins are provided on the wireless transceiver. The wireless transceiver is connected to the 21st pin of the controller through the 4th pin, and the wireless transceiver is connected to the 20th pin of the controller through the 8th pin.

[0012] The model of the timer is DS1302, and there are 8 pins on the timer. A fourth capacitor and a fourth resistor are provided between pins 6 and 7 of the timer, and pin 7 of the timer is connected to pin 45 of the controller.

[0013] The bottom of the housing is a curved surface to increase the signal transmission area of ​​the wireless transceiver.

[0014] A protective resistor is provided between the positive conductive plate, the negative conductive plate and the indicator light.

[0015] The utility model adopts the above structure, connects one end of the data transmission channel to the mobile phone end, and connects the other end to the controller in the shell to transmit the mobile phone data to the controller for storage; connects the data transmission channel and the controller through the instruction input device to collect the collected mobile phone data to the controller; connects the positive conductive plate and the negative conductive plate through the spring, so that when the data line is inserted into the data transmission channel, a loop is formed and the indicator light is lit to display the use status of the data transmission channel; establishes a wireless transmission network between the controller and the data processing end through the wireless transceiver to transmit the mobile phone data to the data processing end; transmits the clock pulse signal to the controller through the timer to realize the real-time collection and transmission of mobile phone data, and has the advantages of being practical, efficient, simple and reliable. Description of the drawings:

[0016] Figure 1 It is a structural diagram of the present utility model.

[0017] Figure 2 This is a structural diagram of the data transmission channel of the present utility model.

[0018] Figure 3 This is the electrical schematic diagram of the controller of the present utility model.

[0019] Figure 4 This is the electrical principle diagram of the timer of the present utility model.

[0020] Figure 5 This is the electrical schematic diagram of the wireless transceiver of the present utility model.

[0021] Figure 6 This is the electrical schematic diagram of the instruction input device of the present utility model.

[0022] In the figure, 1. shell, 2. data transmission channel, 3. positive conductive plate, 4. negative conductive plate, 5. indicator light. Specific implementation method:

[0023] In order to clearly illustrate the technical features of this solution, the present invention is described in detail below through specific implementation methods and in conjunction with the accompanying drawings.

[0024] like Figure 1-6 As shown in , a multi-channel mobile phone data acquisition connector assembly includes a housing, and multiple data transmission channels are evenly arranged in the housing. One end of the data transmission channel is connected to the mobile phone end through a data cable, and the other end is connected to the controller in the housing to transmit the mobile phone data to the controller for storage;

[0025] The data transmission channel is connected to the controller via a command input device to collect the collected mobile phone data to the controller; the upper end of each data transmission channel is connected to a positive conductive plate and a negative conductive plate via springs, so that when the data line is inserted into the data transmission channel, a loop is formed and an indicator light is lit to indicate the usage status of the data transmission channel;

[0026] A timer and a wireless transceiver are electrically connected to the controller. The wireless transceiver is used to establish a wireless transmission network between the controller and the data processing end to transmit mobile phone data to the data processing end; the timer is used to transmit a clock pulse signal to the controller to realize real-time collection and transmission of mobile phone data.

[0027] The controller model is STM32F103C8T6, and 64 pins are provided on the controller. The controller is connected to the instruction input device through pin 4, the controller is connected to the wireless transceiver through pins 20 and 21, and the controller is connected to the timer through pin 45.

[0028] The model of the command input device is TLP290, and four pins are provided on the command input device. Pin No. 1 of the command input device is connected to the data transmission channel, and a ninth resistor, a tenth resistor and a fourth capacitor are connected in parallel between pin No. 1 and pin No. 2 of the command input device, and a fifth capacitor and an eighth resistor are connected in parallel between pin No. 3 and pin No. 4 of the command input device, and pin No. 3 of the command input device is connected to pin No. 4 of the controller.

[0029] The model of the wireless transceiver is ESP8266, and 8 pins are provided on the wireless transceiver. The wireless transceiver is connected to the 21st pin of the controller through the 4th pin, and the wireless transceiver is connected to the 20th pin of the controller through the 8th pin.

[0030] The model of the timer is DS1302, and there are 8 pins on the timer. A fourth capacitor and a fourth resistor are provided between pins 6 and 7 of the timer, and pin 7 of the timer is connected to pin 45 of the controller.

[0031] The bottom of the housing is a curved surface to increase the signal transmission area of ​​the wireless transceiver.

[0032] A protective resistor is provided between the positive conductive plate, the negative conductive plate and the indicator light.

[0033] The working principle of a multi-channel mobile phone data acquisition connector assembly in an embodiment of the present invention is: based on the integrated control function of the controller, in conjunction with multiple types of electrical components and functional components, it can construct multiple data transmission channels to collect and transmit mobile phone data, and can collect multiple groups of mobile phone data at the same time node, thereby improving the collection efficiency and the amount of mobile phone data collected. At the same time, the usage status of each data transmission channel is displayed through the indicator light. When a fault occurs, it can be detected and warned in time to ensure the timeliness of mobile phone data collection and transmission.

[0034] In the overall scheme, it mainly includes a shell 1, and multiple data transmission channels 2 are evenly arranged in the shell 1. One end of the data transmission channel 2 is connected to the mobile phone end through a data line, and the other end is connected to the controller in the shell to transmit the mobile phone data to the controller for storage; the data transmission channel is connected to the controller through an instruction input device to collect the collected mobile phone data to the controller; the upper end of each data transmission channel is connected to a positive conductive plate 3 and a negative conductive plate 4 on both sides through springs, so that when the data line is inserted into the data transmission channel, a loop is formed to light up the indicator light 5 to display the usage status of the data transmission channel; a timer and a wireless transceiver are electrically connected to the controller, and the wireless transceiver is used to establish a wireless transmission network between the controller and the data processing end to transmit the mobile phone data to the data processing end; the timer is used to transmit a clock pulse signal to the controller to realize real-time collection and transmission of mobile phone data.

[0035] The core component of this application is a controller, model STM32F103C8T6, which has 64 pins. The controller is connected to the instruction input device through pin 4, the controller is connected to the wireless transceiver through pins 20 and 21, and the controller is connected to the timer through pin 45, thus forming an overall hardware circuit. The above-mentioned overall hardware circuit is used to control the data transmission channel and realize the wireless collection and transmission of mobile phone data through the wireless communication network.

[0036] Preferably, the model of the command input device is TLP290, and four pins are provided on the command input device. Pin No. 1 of the command input device is connected to the data transmission channel, and a ninth resistor, a tenth resistor and a fourth capacitor are connected in parallel between pin No. 1 and pin No. 2 of the command input device, and a fifth capacitor and an eighth resistor are connected in parallel between pin No. 3 and pin No. 4 of the command input device. Pin No. 3 of the command input device is connected to pin No. 4 of the controller, so that the mobile phone data of the data transmission channel is collected and transmitted to the controller for storage.

[0037] Preferably, the model of the wireless transceiver is ESP8266, and 8 pins are provided on the wireless transceiver. The wireless transceiver is connected to the pin 21 of the controller through pin 4, and the wireless transceiver is connected to the pin 20 of the controller through pin 8, thereby building a wireless transmission network between the controller and the data processing end to realize remote transmission and collection of mobile phone data.

[0038] Preferably, the timer model is DS1302, and there are 8 pins on the timer. A fourth capacitor and a fourth resistor are provided between the sixth and seventh pins of the timer. The seventh pin of the timer is connected to the forty-fifth pin of the controller, which can continuously transmit a clock pulse signal to the controller to realize real-time collection of mobile phone data.

[0039] During actual use, the mobile phone is inserted into the data transmission channel 2 through the data cable, forming a path between the positive conductive plate 3 and the negative conductive plate 4. At this time, if the indicator light 5 is on, it means that the data transmission channel 2 has entered the working state and can be used normally; the mobile phone data is collected into the controller through the command input device. During this process, the timer will continuously transmit the clock pulse signal to the controller to realize real-time collection and transmission; after the mobile phone data is collected in the controller, the wireless communication network established between the controller and the data processing end is used to realize remote wireless transmission of the mobile phone data, and the data processing end receives the corresponding mobile phone data.

[0040] In this application, each data transmission channel 2 is independently set and can enter the working state at the same time node. Compared with the existing acquisition connector components, it can greatly improve the overall work efficiency.

[0041] In order to increase the signal transmission area of ​​the wireless transceiver, the bottom of the housing 1 is designed to be a curved surface to ensure smooth transmission of mobile phone data.

[0042] It should be noted that a protective resistor is provided between the positive conductive plate, the negative conductive plate and the indicator light to avoid damage to the indicator light and ensure long-term operation of the indicator light.

[0043] To sum up, a multi-channel mobile phone data acquisition connector assembly in an embodiment of the present invention is based on the integrated control function of the controller, and cooperates with multiple types of electrical components and functional components to construct multiple data transmission channels for collecting and transmitting mobile phone data. It can collect multiple groups of mobile phone data at the same time node, thereby improving the collection efficiency and the amount of mobile phone data collected. At the same time, the usage status of each data transmission channel is displayed through the indicator light. When a fault occurs, it can be detected, warned and eliminated in time to ensure the timeliness of mobile phone data collection and transmission.

[0044] The above specific implementation methods cannot be used as a limitation on the protection scope of the present utility model. For those skilled in the art, any replacement, improvement or transformation made to the implementation methods of the present utility model falls within the protection scope of the present utility model.

[0045] Anything not described in detail in the present invention is well known to those skilled in the art.

Claims

1. A multi-channel mobile phone data acquisition connector assembly, characterized by: The device comprises a housing, wherein a plurality of data transmission channels are evenly arranged in the housing, one end of the data transmission channel is connected to the mobile phone via a data line, and the other end is connected to the controller in the housing to transmit the mobile phone data to the controller for storage; The data transmission channel is connected to the controller via a command input device to collect the collected mobile phone data to the controller; the upper end of each data transmission channel is connected to a positive conductive plate and a negative conductive plate via springs, so that when the data line is inserted into the data transmission channel, a loop is formed and an indicator light is lit to indicate the usage status of the data transmission channel; A timer and a wireless transceiver are electrically connected to the controller. The wireless transceiver is used to establish a wireless transmission network between the controller and the data processing end to transmit mobile phone data to the data processing end; the timer is used to transmit a clock pulse signal to the controller to realize real-time collection and transmission of mobile phone data.

2. A multi-channel mobile phone data acquisition connector assembly according to claim 1, characterized in that: The controller model is STM32F103C8T6, and 64 pins are provided on the controller. The controller is connected to the instruction input device through pin 4, the controller is connected to the wireless transceiver through pins 20 and 21, and the controller is connected to the timer through pin 45.

3. A multi-channel mobile phone data acquisition connector assembly according to claim 2, characterized in that: The model of the command input device is TLP290, and four pins are provided on the command input device. Pin No. 1 of the command input device is connected to the data transmission channel, and a ninth resistor, a tenth resistor and a fourth capacitor are connected in parallel between pin No. 1 and pin No. 2 of the command input device, and a fifth capacitor and an eighth resistor are connected in parallel between pin No. 3 and pin No. 4 of the command input device, and pin No. 3 of the command input device is connected to pin No. 4 of the controller.

4. The multi-channel mobile phone data acquisition connector assembly according to claim 2, characterized in that: The model of the wireless transceiver is ESP8266, and 8 pins are provided on the wireless transceiver. The wireless transceiver is connected to the 21st pin of the controller through the 4th pin, and the wireless transceiver is connected to the 20th pin of the controller through the 8th pin.

5. The multi-channel mobile phone data acquisition connector assembly according to claim 2, characterized in that: The model of the timer is DS1302, and there are 8 pins on the timer. A fourth capacitor and a fourth resistor are provided between pins 6 and 7 of the timer, and pin 7 of the timer is connected to pin 45 of the controller.

6. The multi-channel mobile phone data acquisition connector assembly according to claim 1, characterized in that: The bottom of the housing is a curved surface to increase the signal transmission area of ​​the wireless transceiver.

7. The multi-channel mobile phone data acquisition connector assembly according to claim 1, characterized in that: A protective resistor is provided between the positive conductive plate, the negative conductive plate and the indicator light.