MEMS data receiving device for silicon substrate

By introducing a transfer and guidance structure and a data receiving structure into the silicon-based MEMS data receiving device, the problem of inconvenient installation is solved, stable signal transmission and rapid installation are achieved, and the assembly stability and signal transmission efficiency of the device are improved.

CN223639257UActive Publication Date: 2025-12-05SHANGHAI CHENYI MEASUREMENT TECH CO LTD
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Patent Information

Application Number
CN202520253418.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-18
Publication Date
2025-12-05
Estimated Expiration
2035-02-18

AI Technical Summary

Technical Problem

Existing silicon-based MEMS data receiving devices are not convenient for efficient docking during installation and cannot be quickly switched.

Method used

It adopts a transition guidance structure and a data receiving structure, including components such as connecting metal plates, connecting seats, insertion guide rods and docking conductive plates, and realizes signal transmission and stable support through electrical connection and mechanical fixation.

Benefits of technology

This improves the assembly stability and signal transmission efficiency of the device, ensures the robust support of the data receiver, and enables rapid and reliable installation and signal transmission.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an MEMS data receiving device for a silicon substrate, which comprises a switching guide structure and a data receiving structure, the switching guide structure is fixedly arranged on the data receiving structure, and the switching guide structure and the data receiving structure are electrically connected; the switching guide structure comprises a connecting metal sheet, a communicating seat, an insertion guide rod and a butt joint conducting strip, the side end of the connecting metal sheet is communicated with the communicating seat, the side end of the communicating seat is communicated with the insertion guide rod, and the side end of the insertion guide rod is communicated with the butt joint conducting strip; the data receiving structure comprises a protective sleeve, a data receiver, a fixed limiting seat, a butt joint communication seat, a supporting plate block, a spring limiting rod, a track conductive groove seat, a side plate block, an adjusting plate, a spring adjusting rod and a bottom protective frame, and the fixed limiting seat is connected with the data receiver in a limiting manner. According to the MEMS data receiving device for the silicon substrate, the purpose of rapid installation is achieved through the structural arrangement.
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Description

TECHNICAL FIELD

[0001] The utility model relates to MEMS data receiving technical field, concretely is a silicon base with MEMS data receiving device. BACKGROUND

[0002] MEMS sensor is an important branch of MEMS device, as an important component of micro-electro-mechanical system, MEMS sensor is the functional device of micro-electro-mechanical system perception and signal processing, this kind of sensor adopts MEMS manufacturing technology, namely microelectronic manufacturing technology and micro-mechanical processing manufacturing technology, and its material, working principle, manufacturing process etc. have considerable difference with traditional sensor.

[0003] According to Chinese patent publication No. CN222262713U, it relates to a radio frequency receiving technical field, and discloses a silicon base MEMS radio frequency receiving device. Including adjusting mechanism, the surface of adjusting mechanism is provided with fixed mechanism, the surface of fixed mechanism is provided with main body mechanism, the adjusting mechanism is located in the inside of fixed mechanism, the main body mechanism is located in the inside of adjusting mechanism, the adjusting mechanism includes two adjusting blocks, the bottom of adjusting block is fixedly connected with adjusting plate, four inclined plates are two groups, two inclined plates are fixedly connected with driven plate, the silicon base MEMS radio frequency receiving device, two adjusting blocks are moved away from the direction of placing groove, stress is applied to inclined plate through adjusting plate and inclined groove, slider is driven away from placing groove, it is convenient to place radio frequency receiver into the inside of placing groove, then the adjusting block is loosened, adjusting plate and driven plate are reset under the action of elasticity, the surface of radio frequency receiver is clamped, and the effect that radio frequency receiver is conveniently assembled and disassembled is achieved.

[0004] However, the silicon base MEMS data receiving device has the following problems: it is not convenient for efficient docking installation, cannot be quickly switched, and needs to be improved. UTILITY MODEL CONTENTS

[0005] The utility model aims at providing a silicon base MEMS data receiving device to solve the problems in the above background.

[0006] To achieve the above object, the utility model provides the following technical scheme: a silicon base MEMS data receiving device, including switching guide structure and data receiving structure, the data receiving structure is fixed with switching guide structure, and switching guide structure, data receiving structure are electrically connected and set up;

[0007] The switching guide structure includes connecting metal sheet, communication seat, insertion guide rod and butt joint conductive sheet, the side end of connecting metal sheet is communicated with communication seat, the side end of communication seat is communicated with insertion guide rod, and the side end of insertion guide rod is communicated with butt joint conductive sheet.

[0008] The data receiving structure comprises a protective sleeve, a data receiver, a fixed limiting seat, a docking communication seat, a support plate, a spring limiting rod, a track conductive groove seat, a side plate, an adjusting plate, a spring adjusting rod and a bottom guard frame, the data receiver is connected in limiting mode on the fixed limiting seat, the data receiver is provided with the protective sleeve in fixed mode, and the lower end of the data receiver is electrically connected with the docking communication seat.

[0009] Specifically, the docking communication seat is fixed on the support plate, the docking communication seat is electrically connected with the track conductive groove seat through a wire, the side end of the track conductive groove seat is fixedly connected with the side plate, and the side plate is fixedly connected with the bottom guard frame.

[0010] Specifically, the spring adjusting rod is elastically and telescopically connected to the bottom guard frame, the side end of the spring adjusting rod is movably connected with the adjusting plate, and the side end of the adjusting plate is fixedly connected with the spring limiting rod.

[0011] Specifically, the adjusting plate is telescopically adjusted through the action of the spring adjusting rod, the adjusting plate drives the spring limiting rod to move, and the spring limiting rod is clamped and fixed with the data receiver.

[0012] Specifically, the plug-in guide rod, the docking conductive sheet and the track conductive groove seat are plug-in fixed, and the track conductive groove seat is electrically conducted through the plug-in guide rod, the docking conductive sheet, the communication seat and the connecting metal sheet.

[0013] Specifically, the communication seat is fixed between the fixed limiting seat and the support plate, and can be fixed by a colloid subsequently.

[0014] Compared with the prior art, the utility model has the advantages that:

[0015] I. By installing the switching guide structure, the connecting metal sheet in the switching guide structure is electrically connected with the plug-in guide rod through the communication seat, the plug-in guide rod is provided with the docking conductive sheet, the docking conductive sheet can be fixed with the track conductive groove seat, so that the electric conduction treatment work is carried out, the signal transmission treatment is carried out, the communication seat can be fixed between the fixed limiting seat and the support plate, and the stability of assembly is improved.

[0016] II. By installing the data receiving structure, the data receiver in the data receiving structure can be electrically connected with the docking communication seat, the docking communication seat is connected with the track conductive groove seat through a wire, the signal conduction work is carried out, the adjusting plate can move with the bottom guard frame through the spring adjusting rod, drives the spring limiting rod to move and adjust, so that the spring limiting rod can be fixed in limiting mode with the data receiver, the stable support work of the data receiver is carried out, and the stable support ability of the data receiver is improved. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1The utility model discloses a main body structure schematic diagram;

[0018] Figure 2 The utility model discloses a main body split diagram;

[0019] Figure 3 The utility model discloses an adapter guide structure's perspective view;

[0020] Figure 4 The utility model discloses a data receiving structure split diagram.

[0021] In the drawing: 1 - adapter guide structure;2 - data receiving structure;3 - connecting metal sheet;4 - intercommunication seat;5 - insert guide rod;6 - butt joint conductive sheet;7 - protective sleeve;8 - data receiver;9 - fixed limit seat;10 - butt joint intercommunication seat;11 - support plate;12 - spring limit rod;13 - track conductive groove seat;14 - side plate;15 - adjusting plate;16 - spring adjusting rod;17 - bottom protection frame. Specific implementation

[0022] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the utility model.

[0023] Please refer to Figures 1-4 The utility model provides a technical scheme: a MEMS data receiving device for silicon base, including adapter guide structure 1 and data receiving structure 2, data receiving structure 2 is fixed with adapter guide structure 1, and adapter guide structure 1, data receiving structure 2 are electrically connected;

[0024] Adapter guide structure 1 includes connecting metal sheet 3, intercommunication seat 4, insert guide rod 5 and butt joint conductive sheet 6, and the side end of connecting metal sheet 3 is connected with intercommunication seat 4, the side end of intercommunication seat 4 is connected with insert guide rod 5, and the side end of insert guide rod 5 is connected with butt joint conductive sheet 6, by installing adapter guide structure 1, the connecting metal sheet 3 in adapter guide structure 1 is electrically connected with insert guide rod 5 through intercommunication seat 4, and insert guide rod 5 is equipped with butt joint conductive sheet 6, butt joint conductive sheet 6 can be fixed with track conductive groove seat 13, so as to carry out the electric conduction treatment work, carries out the transmission processing of signal, and intercommunication seat 4 can be fixed between fixed limit seat 9 and support plate 11 position, improves the stability of assembly;

[0025] The data receiving structure 2 comprises a protective sleeve 7, a data receiver 8, a fixed limiting seat 9, a docking communication seat 10, a support plate 11, a spring limiting rod 12, a track conductive groove seat 13, a side plate 14, an adjusting plate 15, a spring adjusting rod 16 and a bottom guard frame 17, the data receiver 8 is connected in position on the fixed limiting seat 9, the protective sleeve 7 is fixedly arranged on the data receiver 8, the lower end of the data receiver 8 is electrically connected with the docking communication seat 10, the data receiver 8 in the data receiving structure 2 can be electrically connected with the docking communication seat 10 by installing the data receiving structure 2, the docking communication seat 10 is connected with the track conductive groove seat 13 through wires, signal transmission work is carried out, the adjusting plate 15 can move with the bottom guard frame 17 through the spring adjusting rod 16, drive the spring limiting rod 12 to move and adjust, so that the spring limiting rod 12 can be fixed in position with the data receiver 8, the stable support work of the data receiver 8 is carried out, and the stable support capacity of the data receiver 8 is improved.

[0026] The docking communication seat 10 is fixed on the support plate 11, and the docking communication seat 10 is electrically connected with the track conductive groove seat 13 through wires, the side end of the track conductive groove seat 13 is fixedly connected with the side plate 14, and the side plate 14 is fixedly connected with the bottom guard frame 17.

[0027] The bottom guard frame 17 is elastically and telescopically connected with the spring adjusting rod 16, the side end of the spring adjusting rod 16 is movably connected with the adjusting plate 15, and the side end of the adjusting plate 15 is fixedly connected with the spring limiting rod 12.

[0028] The adjusting plate 15 is telescopically adjusted through the action of the spring adjusting rod 16, the adjusting plate 15 drives the spring limiting rod 12 to move, and the spring limiting rod 12 is fixedly connected with the data receiver 8.

[0029] The insertion guide rod 5 and the docking conductive sheet 6 are insertedly fixed with the track conductive groove seat 13, and the track conductive groove seat 13 conducts electricity through the insertion guide rod 5, the docking conductive sheet 6, the communication seat 4 and the connecting metal sheet 3.

[0030] The communication seat 4 is fixed between the fixed limiting seat 9 and the support plate 11, and can be fixed by a colloid subsequently.

[0031] Working principle: when needing to work, the user installs the data receiving structure 2 with the adapter guide structure 1, the insertion guide rod 5, the butt joint conductive sheet 6 in the adapter guide structure 1 are inserted into the track conductive groove seat 13, the communication seat 4 is fixed between the fixed limiting seat 9, the support plate 11 at this time, then the protection cover 7, the data receiver 8 can be put into the inside of the fixed limiting seat 9, the bottom of the data receiver 8 is connected with the butt joint communication seat 10, the conductive work can be carried out, the adjusting plate 15 is rebounded under the action of the spring adjusting rod 16 at this time, is fixed with the data receiver 8 through the spring limiting rod 12, so that the signal receiving and transmission work are realized, through installing the adapter guide structure 1, the connecting metal sheet 3 in the adapter guide structure 1 is electrically connected with the insertion guide rod 5 through the communication seat 4, and the insertion guide rod 5 is provided with the butt joint conductive sheet 6, the butt joint conductive sheet 6 can be fixed with the track conductive groove seat 13, so that the conductive treatment work is carried out, the signal transmission processing is carried out, the communication seat 4 can be fixed between the fixed limiting seat 9, the support plate 11 position, improves the stability of assembly, through installing the data receiving structure 2, the data receiver 8 in the data receiving structure 2 can be electrically connected with the butt joint communication seat 10, the butt joint communication seat 10 is connected with the track conductive groove seat 13 through a wire, the signal conduction work is carried out, the adjusting plate 15 can be moved with the bottom guard frame 17 through the spring adjusting rod 16, drives the spring limiting rod 12 to move adjustment, so that the spring limiting rod 12 can be fixed with the data receiver 8, the stable support work of the data receiver 8 is carried out, the stable support ability of the data receiver 8 is improved to complete the work.

[0032] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A MEMS data receiving device for silicon-based use, characterized by: It includes a switching guide structure (1) and a data receiving structure (2), the data receiving structure (2) is fixedly provided with the switching guide structure (1), and the switching guide structure (1) and the data receiving structure (2) are electrically connected; The switching guide structure (1) includes a connecting metal sheet (3), a communication seat (4), an insertion guide rod (5) and a butt joint conductive sheet (6), the side end of the connecting metal sheet (3) is communicated and provided with the communication seat (4), the side end of the communication seat (4) is communicated and provided with the insertion guide rod (5), and the side end of the insertion guide rod (5) is communicated and provided with the butt joint conductive sheet (6); The data receiving structure (2) includes a protective sleeve (7), a data receiver (8), a fixed limiting seat (9), a butt joint communication seat (10), a support plate (11), a spring limiting rod (12), a track conductive groove seat (13), a side plate (14), an adjusting plate (15), a spring adjusting rod (16) and a bottom guard frame (17), the fixed limiting seat (9) is limitingly connected with the data receiver (8), the data receiver (8) is fixedly provided with the protective sleeve (7), and the lower end of the data receiver (8) is electrically connected with the butt joint communication seat (10).

2. The MEMS data receiving device for silicon-based use according to claim 1, characterized by: The butt joint communication seat (10) is fixed on the support plate (11), the butt joint communication seat (10) is electrically connected with the track conductive groove seat (13) through a wire, the side end of the track conductive groove seat (13) is fixedly connected with the side plate (14), and the side plate (14) is fixedly connected with the bottom guard frame (17).

3. The MEMS data receiving device for silicon-based use according to claim 2, characterized by: The bottom guard frame (17) is elastically and telescopically connected with the spring adjusting rod (16), the side end of the spring adjusting rod (16) is movably connected with the adjusting plate (15), and the side end of the adjusting plate (15) is fixedly connected with the spring limiting rod (12).

4. The MEMS data receiving device for silicon-based use according to claim 3, characterized by: The adjusting plate (15) is telescopically adjusted through the action of the spring adjusting rod (16), the adjusting plate (15) drives the spring limiting rod (12) to move, and the spring limiting rod (12) is clamped and fixed with the data receiver (8).

5. The MEMS data receiving device for silicon-based use according to claim 4, characterized by: The insertion guide rod (5), the butt joint conductive sheet (6) and the track conductive groove seat (13) are inserted and fixed, and the track conductive groove seat (13) conducts electricity through the insertion guide rod (5), the butt joint conductive sheet (6), the communication seat (4) and the connecting metal sheet (3).

6. A MEMS data receiving device for silicon-based use according to claim 5, characterized in that: The communication seat (4) is fixed between the fixed limiting seat (9) and the support plate (11), and can be further fixed by a colloid.

Citation Information

Patent Citations

  • Radio frequency receiving device of silicon-based MEMS

    CN222262713U