Distributed data acquisition device
The positioning and conveying mechanism and telescopic device driven by servo motors realize the automatic positioning, conveying and starting of the distributed data acquisition device, which solves the problem of manual assisted conveying, improves the reliability and scalability of the system and increases the work efficiency.
Patent Information
- Application Number
- CN202520476779.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-03-18
AI Technical Summary
Existing distributed data acquisition devices cannot automatically deliver materials to the acquisition location or automatically activate the information acquisition device during different data acquisition times, requiring human assistance, which leads to low operating efficiency and increased costs.
A distributed data acquisition device was designed, which adopts a servo motor driven positioning and conveying mechanism and a telescopic device to realize the automatic positioning, conveying and starting of the information acquisition device. Through the collaborative work of multiple information acquisition devices on the support frame, the data acquisition task can be distributed and expanded.
It enables automatic positioning, delivery, and activation of the information collection device, improving the system's reliability and scalability, increasing operational efficiency, and reducing labor costs.
Smart Images

Figure CN223911178U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of distributed data acquisition devices, specifically a kind of distributed data acquisition device belongs to data acquisition technical field. BACKGROUND
[0002] The technical background of distributed data acquisition device can be traced back to the fusion needs of industrial automation, Internet of Things (IoT) and edge computing fields, and its core is to realize real-time acquisition, transmission and collaborative processing of multi-source heterogeneous data through distributed sensor nodes and communication architecture. With the development of Industry 4.0 and smart city, traditional centralized data acquisition systems face bottlenecks in scalability, fault tolerance and real-time performance, and distributed technology effectively solves the problems of bandwidth pressure, single point failure and complex environment adaptability in large-scale deployment scenarios through localized computing, edge storage and adaptive networking capabilities. Relying on 5G, LoRa and other communication technologies and microservice architecture, it promotes data acquisition to evolve towards low latency, high reliability and dynamic scalability, becoming the core infrastructure in the fields of intelligent manufacturing, environmental monitoring and energy management.
[0003] Although the distributed data acquisition device in the prior art realizes high-precision real-time monitoring of material performance parameters in a wide area through a multi-node collaborative architecture, its modular design supports flexible deployment of sensor arrays in complex working conditions, effectively breaking through the physical limitations of traditional centralized acquisition. However, during different data acquisition, the material cannot be automatically transported to the information acquisition position of the data acquisition device, and the information acquisition device cannot be automatically opened. Generally, it needs human assistance to complete, which is time-consuming and labor-intensive, slows down work efficiency and increases work cost. Therefore, we provide a kind of distributed data acquisition device to solve the above problems. UTILITY MODEL CONTENT
[0004] To solve the above problems, the utility model provides a kind of distributed data acquisition device to solve the above problems, and the specific technical scheme is:
[0005] A kind of distributed data acquisition device, including support frame, the support frame is provided with positioning conveying mechanism, the positioning conveying mechanism includes fixed plate, the fixed plate is fixedly installed with servo motor, the fixed plate is fixedly installed with steering gear, the servo motor is connected with transmission belt, the output end of the steering gear is fixedly connected with the heteromorphous rotary disc, the heteromorphous rotary disc is fixedly connected with the object tray, the steering gear is fixedly installed with support plate, the support plate is slidably connected with multiple groups of sliding plates, multiple groups of sliding plates are all provided with clamping groove, multiple groups of sliding plates are all installed with elastic return device.
[0006] Preferably, the fixed plate is fixedly connected with the support frame, the transmission belt is in transmission connection with the diverter, the elastic return device is in transmission connection with the different male rotating disc, and the two moving blocks of the elastic return device are fixed on the upper surfaces of the two sliding plates respectively.
[0007] Preferably, the support frame is provided with a plurality of storage cabinets, is provided with a plurality of balance supports, is provided with the first information acquisition device, is internally provided with the first clamping block, is clamped with the clamping groove, is provided with the first sensor, is in network connection with the first information acquisition device, and is provided with the first telescopic device.
[0008] Preferably, the first telescopic device can drive the first information acquisition device to move to a data acquisition position or drive the first information acquisition device to return to a standby position, the support frame is provided with the second information acquisition device, the second information acquisition device is internally provided with the second clamping block, the second clamping block is clamped with the clamping groove, the second information acquisition device is provided with the second sensor, and the second sensor is in network connection with the second information acquisition device.
[0009] Preferably, the second information acquisition device is provided with the second telescopic device, the second telescopic device can drive the second information acquisition device to move to a data acquisition position or drive the second information acquisition device to return to a standby position, the support frame is provided with the third information acquisition device, the third information acquisition device is internally provided with the third clamping block, and the third clamping block is clamped with the clamping groove.
[0010] Preferably, the third information acquisition device is provided with the third sensor, the third sensor is in network connection with the third information acquisition device, the third information acquisition device is provided with the third telescopic device, the third telescopic device can drive the third information acquisition device to move to a data acquisition position or drive the third information acquisition device to return to a standby position, and the support frame is provided with the fourth information acquisition device.
[0011] Preferably, the fourth information acquisition device is internally provided with the fourth clamping block, the fourth clamping block is clamped with the clamping groove, the fourth information acquisition device is provided with the fourth sensor, the fourth sensor is in network connection with the fourth information acquisition device, the fourth information acquisition device is provided with the fourth telescopic device, the fourth telescopic device can drive the fourth information acquisition device to move to a data acquisition position or drive the fourth information acquisition device to return to a standby position.
[0012] Compared with the prior art, the utility model has the following beneficial effects:
[0013] 1、 the distributed data acquisition device through the installation of the collection piece in the storage tray, control servo motor rotation, and then drive the storage tray rotation, when the storage tray moves to the designated position, control servo motor closes, at the same time, the opposite rotating disc drives the elastic return device of the storage tray parking side to stretch to both sides, and then drive the two sliding plates of the storage tray parking side to move to the side away from each other, so that the limit of the information acquisition device of the storage tray parking side is closed, through the sensor built-in in the information acquisition device can inductive limit device closed, then control information acquisition device work, realizes the automatic positioning of the device, and automatically starts the information acquisition device.
[0014] 2、 the distributed data acquisition device through the control first information acquisition device, second information acquisition device, third information acquisition device, fourth information acquisition device built-in telescopic device, can first information acquisition device, second information acquisition device, third information acquisition device, fourth information acquisition device is transported to the work position quickly, or moves to the standby work position, through the cooperation of first information acquisition device, second information acquisition device, third information acquisition device, fourth information acquisition device, the data acquisition task is dispersed to multiple independent nodes to work together, greatly improves the reliability and scalability of the system. BRIEF DESCRIPTION OF DRAWINGS
[0015] Figure 1 is the three-dimensional structure diagram of the utility model;
[0016] Figure 2 is the three-dimensional structure split diagram of the utility model conveying mechanism.
[0017] BRIEF DESCRIPTION OF DRAWINGS: 1, support frame; 2, positioning conveying mechanism; 201, fixed plate; 202, servo motor; 203, steering gear; 204, transmission belt; 205, opposite rotating disc; 206, storage tray; 207, sliding plate; 208, clamping groove; 209, elastic return device; 3, storage cabinet; 4, balance support; 5, first information acquisition device; 6, second information acquisition device; 7, third information acquisition device; 8, fourth information acquisition device. DETAILED DESCRIPTION
[0018] The utility model will be further described with reference to the drawings.
[0019] Please refer to Figure 1 , Figure 2, including support frame 1, support frame 1 is provided with positioning conveying mechanism 2, positioning conveying mechanism 2 includes fixed plate 201, fixed plate 201 is fixedly installed with servo motor 202, fixed plate 201 is fixedly installed with steering gear 203, servo motor 202 is transmission connected with transmission belt 204, the output end of steering gear 203 is fixedly connected with the female rotating disc 205, the female rotating disc 205 is fixedly connected with the article tray 206, steering gear 203 is fixedly installed with support plate, support plate is slidably connected with a plurality of sliding plates 207, a plurality of sliding plates 207 are all provided with clamping grooves 208, a plurality of sliding plates 207 are all installed with elastic return devices 209, fixed plate 201 is fixedly connected with support frame 1, transmission belt 204 is transmission connected with steering gear 203, elastic return device 209 is transmission connected with the female rotating disc 205, the two moving blocks of elastic return device 209 are fixed on the upper surfaces of the two sliding plates 207 respectively.
[0020] The servo motor 202 in the application is a common electrical equipment in the prior art, and the model or internal structure thereof will not be described in detail, which can be replaced by other power sources, the steering gear 203 and the elastic return device 209 are prior art, and will not be described in detail, the material of the transmission belt 204 is preferably a triangular belt, the two mutually symmetrical elastic return devices 209 on one side of the article tray 206 are extruded by the female rotating disc 205, so that the two mutually symmetrical sliding plates 207 are clamped, and the clamping grooves 208 drive the clamping blocks of the data acquisition device to move, the movement of the clamping blocks of the data acquisition device can release the limiting of the data acquisition device, the data acquisition device can be started to work through the sensor built-in in the data acquisition device when the limiting of the data acquisition device is released, the collection piece is installed on the article tray 206, the servo motor 202 is controlled to rotate, thereby driving the transmission belt 204 to rotate, simultaneously driving the steering gear 203 to rotate, simultaneously driving the female rotating disc 205 to rotate, the article tray 206 is driven to rotate through the rotation of the female rotating disc 205, when the article tray 206 moves to a specified position, the servo motor 202 is controlled to be closed, simultaneously the elastic return devices 209 on one side of the article tray 206 are stretched to two sides by the female rotating disc 205, thereby driving the two sliding plates 207 on one side of the article tray 206 to move to the side away from each other, so that the limiting of the information acquisition device on one side of the article tray 206 is closed, the sensor built-in in the information acquisition device can sense the closing of the limiting device, and then the information acquisition device is controlled to work, so that the automatic positioning conveying of the collection piece and the automatic starting of the information acquisition device are realized.
[0021] Please refer to Figure 1 , Figure 2The support frame 1 is provided with a plurality of storage cabinets 3, the support frame 1 is provided with a plurality of balance supports 4, the support frame 1 is installed with a first information acquisition device 5, the first information acquisition device 5 is internally provided with a first clamping block, the first clamping block is clamped with the clamping groove 208, the first information acquisition device 5 is provided with a first sensor, the first sensor is network connected with the first information acquisition device 5, the first information acquisition device 5 is provided with a first telescopic device, the first telescopic device can drive the first information acquisition device 5 to move to a data acquisition position, or drive the first information acquisition device 5 to return to a standby position, the support frame 1 is installed with a second information acquisition device 6, the second information acquisition device 6 is internally provided with a second clamping block, the second clamping block is clamped with the clamping groove 208, the second information acquisition device 6 is provided with a second sensor, the second sensor is network connected with the second information acquisition device 6, the second information acquisition device 6 is provided with a second telescopic device, the second telescopic device can drive the second information acquisition device 6 to move to a data acquisition position, or drive the second information acquisition device 6 to return to a standby position, the support frame 1 is installed with a third information acquisition device 7, the third information acquisition device 7 is internally provided with a third clamping block, the third clamping block is clamped with the clamping groove 208, the third information acquisition device 7 is provided with a third sensor, the third sensor is network connected with the third information acquisition device 7, the third information acquisition device 7 is provided with a third telescopic device, the third telescopic device can drive the third information acquisition device 7 to move to a data acquisition position, or drive the third information acquisition device 7 to return to a standby position, the support frame 1 is installed with a fourth information acquisition device 8, the fourth information acquisition device 8 is internally provided with a fourth clamping block, the fourth clamping block is clamped with the clamping groove 208, the fourth information acquisition device 8 is provided with a fourth sensor, the fourth sensor is network connected with the fourth information acquisition device 8, the fourth information acquisition device 8 is provided with a fourth telescopic device, the fourth telescopic device can drive the fourth information acquisition device 8 to move to a data acquisition position, or drive the fourth information acquisition device 8 to return to a standby position.
[0022] By controlling the telescopic device built in the first information acquisition device 5, the second information acquisition device 6, the third information acquisition device 7 and the fourth information acquisition device 8, the first information acquisition device 5, the second information acquisition device 6, the third information acquisition device 7 and the fourth information acquisition device 8 can be quickly transported to the working position or moved to the standby position, and the data acquisition task is dispersed to multiple independent nodes for cooperative work through the cooperation of the first information acquisition device 5, the second information acquisition device 6, the third information acquisition device 7 and the fourth information acquisition device 8, so that the reliability and expansibility of the system are greatly improved
[0023] The utility model discloses a in using: through the installation spare part is gathered in the storage tray 206, control servo motor 202 rotates, and then drive transmission belt 204 rotates, simultaneously drive steering gear 203 rotates, simultaneously drive the rotation of the opposite sex rotating disc 205, through the rotation of the opposite sex rotating disc 205 and then drive storage tray 206 rotates, when storage tray 206 moves to the designated position, control servo motor 202 closes, simultaneously the opposite sex rotating disc 205 drive storage tray 206 stops and stays one side elastic return force device 209 stretches to both sides, and then drive storage tray 206 stops and stays one side two sliding plates 207 move to the side of mutual far away, to make storage tray 206 stops and stays one side information acquisition device's limit closes, through the sensor built -in information acquisition device can response limit device closes, then control information acquisition device carries out the work, realizes this device automatic positioning conveying collection spare part, and the purpose of automatic starting information acquisition device, through the control first information acquisition device 5, second information acquisition device 6, third information acquisition device 7, fourth information acquisition device 8 built -in telescopic device, can first information acquisition device 5, second information acquisition device 6, third information acquisition device 7, fourth information acquisition device 8 carry out fast conveying to the work position, or move to the standby work position, through the cooperation of first information acquisition device 5, second information acquisition device 6, third information acquisition device 7, fourth information acquisition device 8 disperses data acquisition task to multiple independent nodes collaborative work, and the reliability and expansibility of system have been improved greatly.
[0024] The technical principles of the utility model are described above in combination with specific embodiments. These descriptions are only for explaining the principles of the utility model, and cannot be interpreted as limiting the protection scope of the utility model in any way. Based on the explanations here, other specific embodiments of the utility model can be conceived by those skilled in the art without creative labor, and these embodiments will all fall within the protection scope of the claims of the utility model.
Claims
1. A distributed data acquisition device, comprising a support frame (1), characterized in that: The support frame (1) is provided with a positioning and conveying mechanism (2). The positioning and conveying mechanism (2) includes a fixed plate (201). A servo motor (202) is fixedly installed on the fixed plate (201). A steering gear (203) is fixedly installed on the fixed plate (201). A transmission belt (204) is connected to the servo motor (202). A non-circular rotating disk (205) is fixedly connected to the output end of the steering gear (203). A storage tray (206) is fixedly connected to the non-circular rotating disk (205). A support plate is fixedly installed on the steering gear (203). Multiple sets of sliding plates (207) are slidably connected to the support plate. Each set of sliding plates (207) has a slot (208). Each set of sliding plates (207) is equipped with an elastic return device (209).
2. The distributed data acquisition device according to claim 1, characterized in that: The fixed plate (201) is fixedly connected to the support frame (1), the transmission belt (204) is connected to the steering gear (203), the elastic return device (209) is connected to the anisotropic rotating disk (205), and the two moving blocks of the elastic return device (209) are respectively fixed on the upper surface of the two sliding plates (207).
3. The distributed data acquisition device according to claim 2, characterized in that: The support frame (1) is provided with multiple storage cabinets (3), the support frame (1) is provided with multiple balance supports (4), the support frame (1) is equipped with a first information acquisition device (5), the first information acquisition device (5) is provided with a first snap-fit block inside, the first snap-fit block snaps into the slot (208), the first information acquisition device (5) is provided with a first sensor, the first sensor is network connected to the first information acquisition device (5), and the first information acquisition device (5) is provided with a first telescopic device.
4. A distributed data acquisition device according to claim 3, characterized in that: The first telescopic device can move the first information acquisition device (5) to the data acquisition position or move the first information acquisition device (5) back to the work position. The support frame (1) is equipped with a second information acquisition device (6). The second information acquisition device (6) is provided with a second snap-fit block inside. The second snap-fit block snaps into the slot (208). The second information acquisition device (6) is provided with a second sensor. The second sensor is connected to the second information acquisition device (6) via a network.
5. A distributed data acquisition device according to claim 4, characterized in that: The second information acquisition device (6) is provided with a second telescopic device. The second telescopic device can move the second information acquisition device (6) to the data acquisition position or move the second information acquisition device (6) back to the waiting position. The support frame (1) is equipped with a third information acquisition device (7). The third information acquisition device (7) is provided with a third snap-fit block inside. The third snap-fit block snaps into the slot (208).
6. A distributed data acquisition device according to claim 5, characterized in that: The third information acquisition device (7) is equipped with a third sensor, which is connected to the third information acquisition device (7) via a network. The third information acquisition device (7) is equipped with a third telescopic device, which can move the third information acquisition device (7) to the data acquisition position or move the third information acquisition device (7) back to the waiting position. The support frame (1) is equipped with a fourth information acquisition device (8).
7. A distributed data acquisition device according to claim 6, characterized in that: The fourth information acquisition device (8) is provided with a fourth snap-fit block inside, which snaps into the slot (208). The fourth information acquisition device (8) is provided with a fourth sensor, which is network-connected to the fourth information acquisition device (8). The fourth information acquisition device (8) is provided with a fourth telescopic device, which can move the fourth information acquisition device (8) to the data acquisition position or move the fourth information acquisition device (8) back to the waiting position.