Precise engraving device for infrared sensing element

Through the design of the limiting components and engraving components of the precision engraving device of infrared sensing elements, the problem of imprecise control of traditional clamping mechanisms is solved, and efficient and environmentally friendly infrared sensing element processing is achieved.

CN223146632UActive Publication Date: 2025-07-25HUIZHOU XINYONGCHENG SENSING TECH CO LTD
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Patent Information

Application Number
CN202422914450.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-27
Publication Date
2025-07-25
Estimated Expiration
2034-11-27

AI Technical Summary

Technical Problem

Traditional clamping mechanisms are difficult to provide precise and stable control, resulting in insufficiency in engraving accuracy and efficiency in infrared sensing elements during processing.

Method used

A precision engraving device for infrared sensing elements is designed, using a combination of limiting components and engraving components, which are clamped and fixed by the spring seat and clamping, and can achieve precise position control in conjunction with the hydraulic system, and are equipped with dust removal components to improve processing quality.

Benefits of technology

It realizes precise engraving of infrared sensing elements of different forms and processing degrees, improves processing efficiency and product quality, and provides an environmentally friendly processing environment.

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Abstract

The utility model is suitable for the technical field of infrared sensing elements, and provides an infrared sensing element precise carving device which comprises a base, a hydraulic cylinder is fixedly connected to the outer wall of the base, a platen is fixedly connected to one end of the hydraulic cylinder, a limiting assembly is arranged on the outer wall of the platen, a vertical rod is fixedly connected to the outer wall of the base, and a sliding block is arranged on the vertical rod. A top frame is fixedly connected to the outer wall of the vertical rod, a carving assembly is arranged on the inner wall of the top frame, and a dust removal assembly is arranged on the outer wall of the table plate. Wherein the limiting assembly comprises a side frame and a sponge inserting plate, the side frame and the sponge inserting plate are fixedly arranged on the outer wall of the table plate, a plurality of inserting holes are formed in the outer wall of the sponge inserting plate, the outer wall of the side frame is fixedly connected with a spring seat, and the outer wall of the spring seat is fixedly connected with a clamping plate; through the arrangement of the limiting assembly, in the using process, an infrared sensing element needing to be engraved is inserted into or placed on a sponge inserting plate, the infrared sensing element is clamped and fixed through spring seats and clamping plates on the two sides, and therefore the infrared sensing element is used in cooperation with the engraving assembly for engraving.
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Description

Technical Field

[0001] The utility model belongs to the technical field of infrared sensing elements, and particularly relates to a precision engraving device for infrared sensing elements. Background Art

[0002] Semiconductor infrared sensing elements, also known as photoelectric sensors, utilize the photoelectric effect of semiconductor materials to convert infrared light signals into electrical signals. Due to their unique measurement characteristics, these elements can not only be directly used for light quantity measurement but also indirectly measure physical or chemical quantities that can be converted into light quantity. According to different photoelectric effects, semiconductor infrared sensing elements are divided into photoconductive type and photovoltaic type. The photoconductive type, i.e., photoresistor, is composed of a uniform semiconductor material; while the photovoltaic type includes photodiodes, phototransistors, photocells, photofield effect transistors, and light-controlled thyristors, etc., which are all semiconductor devices with specific structures.

[0003] The key parameters and characteristics of these elements include sensitivity, detectivity, illumination rate, illumination characteristics, volt-ampere characteristics, spectral characteristics, time and frequency response characteristics, and temperature characteristics, and these characteristics are affected by the selected materials, device structures, and manufacturing processes. Semiconductor infrared sensing elements play an important role in the fields of precision measurement, optical communication, computing technology, imaging, night vision, remote sensing, guidance, robotics, quality inspection, security alarm, etc.

[0004] In the processing of semiconductor infrared sensing elements, precision engraving is a key step to improve the photoelectric conversion efficiency. However, due to the different types of infrared sensing elements and the diverse forms of elements under different processing degrees, traditional clamping mechanisms are difficult to provide precise and stable control, which limits the processing precision and efficiency.

[0005] To overcome this challenge, it is necessary to design a new type of precision engraving device for infrared sensing elements, which can provide a high-fitting clamping function to ensure precise engraving operations on infrared sensing elements with different forms and processing degrees. The design of this device should fully consider the sensitivity and complexity of semiconductor infrared sensing elements to ensure that the elements will not be damaged during the processing, while improving the processing efficiency and product quality.

[0006] Therefore, developing a high-precision clamping and engraving device that can adapt to different forms and processing degrees of infrared sensing elements is of great significance for improving the overall performance and processing quality of semiconductor infrared sensing elements. Summary of the Utility Model

[0007] The present utility model provides a precision engraving device for infrared sensing elements, aiming to solve the problem that in the processing of infrared sensing elements, precision engraving is required to improve the optoelectronic conversion efficiency of the device; when engraving different infrared sensing elements and infrared sensing elements with different processing degrees, their shapes are different, and it is difficult for general clamping mechanisms to achieve a good clamping control effect, thus making it difficult to carry out cooperative processing.

[0008] The present utility model is implemented as follows. The precision engraving device for infrared sensing elements includes a base: a hydraulic cylinder is fixedly connected to the outer wall of the base, one end of the hydraulic cylinder is fixedly connected to a table board, a limiting component is arranged on the outer wall of the table board, a vertical rod is fixedly connected to the outer wall of the base, a top frame is fixedly connected to the outer wall of the vertical rod, an engraving component is arranged inside the top frame, and a dust removal component is arranged on the outer wall of the table board;

[0009] Among them, the limiting component includes a side frame and a sponge insertion plate fixedly arranged on the outer wall of the table board. Several insertion holes are formed in the outer wall of the sponge insertion plate. A spring seat is fixedly connected to the outer wall of the side frame, and a clamping plate is fixedly connected to the outer wall of the spring seat.

[0010] Preferably, the spring seat includes two sleeve shells that are slidably connected to each other, and several springs are arranged inside the two sleeve shells.

[0011] Preferably, the engraving component includes a large sliding frame slidably arranged inside the top frame and a large hydraulic rod fixedly arranged on the outer wall of the top frame. A positioning plate is arranged at the bottom of the large sliding frame. A small hydraulic rod is fixedly connected to the outer wall of the positioning plate. One end of the positioning plate is fixedly connected to a small sliding frame, and an engraving head is arranged at the bottom of the small sliding frame.

[0012] Preferably, two slide rails are arranged at the bottom of the large sliding frame, and the outer wall of the slide rail is slidably and fittingly connected to the inner wall of the slide rail.

[0013] Preferably, the dust removal component includes a small bracket fixedly arranged on the table board. A blower is arranged inside the small bracket. A collecting ball is spirally connected to the air outlet end of the blower, and an air inlet cover is arranged at the air inlet end of the blower.

[0014] Preferably, filter cotton is arranged inside the collecting ball, and exhaust holes are formed in the outer wall of the collecting ball.

[0015] Compared with the prior art, the embodiments of the present application mainly have the following beneficial effects:

[0016] Through the setting of the limiting component, during use, the infrared sensing element to be engraved is inserted or placed on the sponge insertion plate, and it is clamped and fixed by the spring seats and clamping plates on both sides, so as to realize the cooperation with the engraving component for engraving, improve the use effect of the device, and provide convenience for users. Brief Description of the Drawings

[0017] Figure 1 is the front view of the present utility model;

[0018] Figure 2 is the structural schematic diagram of the limit component of the present utility model;

[0019] Figure 3 is the structural schematic diagram of the engraving component of the present utility model;

[0020] Figure 4 is the structural schematic diagram of the dust removal component of the present utility model.

[0021] In the figure: 1. Table board; 2. Limit component; 201. Side frame; 202. Spring seat; 203. Clamping plate; 204. Sponge insertion plate; 3. Engraving component; 301. Large sliding frame; 302. Small sliding frame; 303. Engraving head; 304. Large hydraulic rod; 4. Dust removal component; 401. Blower; 402. Collection ball; 403. Small bracket; 5. Hydraulic cylinder; 6. Base; 7. Top frame. Detailed Description of the Preferred Embodiment

[0022] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the technical field to which this application belongs; the terms used in the description of this application are only for the purpose of describing specific embodiments and are not intended to limit this application; the terms "including" and "having" and any variations thereof in the description and claims of this application and the above description of the drawings are intended to cover non-exclusive inclusion. The terms "first", "second", etc. in the description and claims of this application or the above drawings are used to distinguish different objects and not to describe a specific order.

[0023] Reference to "embodiment" herein means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of this application. The phrase does not necessarily refer to the same embodiment at every occurrence in the specification, nor is it an independent or alternative embodiment mutually exclusive of other embodiments. Those skilled in the art will explicitly and implicitly understand that the embodiments described herein can be combined with other embodiments.

[0024] An embodiment of the present utility model provides a precision engraving device for infrared sensing elements, as Figures 1-4 shown, including a base 6: A hydraulic cylinder 5 is fixedly connected to the outer wall of the base 6, one end of the hydraulic cylinder 5 is fixedly connected to a table board 1, a limit component 2 is arranged on the outer wall of the table board 1, a vertical rod is fixedly connected to the outer wall of the base 6, a top frame 7 is fixedly connected to the outer wall of the vertical rod, an engraving component 3 is arranged on the inner wall of the top frame 7, and a dust removal component 4 is arranged on the outer wall of the table board 1;

[0025] Among them, the limiting component 2 includes a side frame 201 fixedly arranged on the outer wall of the table board 1 and a sponge insertion board 204. A plurality of jacks are arranged on the outer wall of the sponge insertion board 204. A spring seat 202 is fixedly connected to the outer wall of the side frame 201, and a clamping plate 203 is fixedly connected to the outer wall of the spring seat 202;

[0026] The spring seat 202 includes two sleeve shells that are slidably connected to each other, and a plurality of springs are arranged on the inner walls of the two sleeve shells.

[0027] It should be noted that in the existing processing of infrared sensing elements, precise engraving is required to improve the optoelectronic conversion efficiency of the device; for different infrared sensing elements and infrared sensing elements with different processing degrees, their shapes are different, and it is difficult for general clamping mechanisms to achieve good clamping control effects, thus making it difficult to carry out cooperative processing.

[0028] Specifically, in this embodiment, this solution mainly realizes the cooperation with the engraving component 3 for engraving by setting the limiting component 2. During use, the infrared sensing element to be engraved is inserted or placed on the sponge insertion board 204, and the two side spring seats 202 and the clamping plate 203 clamp and fix it, thereby improving the use effect of the device and providing convenience for users.

[0029] In a further preferred embodiment of the present utility model, as Figures 1-4 shown, the engraving component 3 includes a large sliding frame 301 slidably arranged on the inner wall of the top frame 7 and a large hydraulic rod 304 fixedly arranged on the outer wall of the top frame 7. A positioning plate is arranged at the bottom of the large sliding frame 301. A small hydraulic rod is fixedly connected to the outer wall of the positioning plate. One end of the positioning plate is fixedly connected to a small sliding frame 302, and an engraving head 303 is arranged at the bottom of the small sliding frame 302;

[0030] Two slide rails are arranged at the bottom of the large sliding frame 301, and the outer wall of the slide rail is slidably connected to the inner wall of the slide rail.

[0031] In this embodiment, through the setting of the engraving component 3 and its cooperation with the hydraulic cylinder 5, the relative positions between the infrared sensing element on the limiting component 2 and the engraving component 3 are started and controlled. The large hydraulic rod 304 and the small hydraulic rod are started and controlled to realize the position movement adjustment of the engraving head 303 in the left - right and front - back directions, so as to carry out engraving, improving the use effect of the device and providing convenience for users.

[0032] In a further preferred embodiment of the present utility model, as Figures 1-4 shown, the dust removal component 4 includes a small support 403 fixedly arranged on the table board 1. A blower 401 is arranged on the inner wall of the small support 403. A collection ball 402 is spirally connected to the air outlet end of the blower 401, and an air inlet hood is arranged at the air inlet end of the blower 401;

[0033] The inner wall of the collection ball 402 is provided with filter cotton, and exhaust holes are formed in the outer wall of the collection ball 402.

[0034] In this embodiment, through the arrangement of the dust removal component 4, the dust generated during the engraving process can be absorbed and processed, improving the environmental protection effect of the device and providing convenience for users.

[0035] It should be noted that for the foregoing embodiments, for the sake of simple description, they are all expressed as a series of action combinations. However, those skilled in the art should know that the present invention is not limited by the described action sequence, because according to the present invention, certain steps may be adopted in other sequences or simultaneously. Secondly, those skilled in the art should also know that the embodiments described in the specification are all preferred embodiments, and the actions and modules involved are not necessarily essential to the present invention.

[0036] In several embodiments provided by the present application, it should be understood that the disclosed device can be implemented in other ways. For example, the device embodiments described above are merely illustrative. For example, the above division of units can be implemented in other ways during actual implementation. For example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the shown or discussed coupling or communication connection between each other can be through some interfaces. The indirect coupling or communication connection between devices or units can be in the form of telecommunications or other forms.

[0037] The units described as separate components above may or may not be physically separated. The components shown as units may or may not be physical units, that is, they can be located in one place, or can be distributed to multiple network units. Some or all of the units can be selected according to actual needs to achieve the purpose of the solution of this embodiment.

[0038] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the protection scope of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, rather than all embodiments. Based on these embodiments, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present invention. Although the present invention has been described in detail with reference to the above embodiments, those of ordinary skill in the art can still, without conflict, make combinations, additions, deletions or other adjustments to the features in the embodiments of the present invention according to the situation without creative efforts, so as to obtain different technical solutions that are essentially not divorced from the concept of the present invention, and these technical solutions also belong to the scope of protection of the present invention.

Claims

1. Precision engraving device for infrared sensing element, characterized in that Comprising a base (6): An outer wall of the base (6) is fixedly connected to a hydraulic cylinder (5), one end of the hydraulic cylinder (5) is fixedly connected to a platen (1), an outer wall of the platen (1) is provided with a limiting component (2), an outer wall of the base (6) is fixedly connected to a vertical rod, an outer wall of the vertical rod is fixedly connected to a top frame (7), an inner wall of the top frame (7) is provided with a carving component (3), and an outer wall of the platen (1) is provided with a dust removal component (4); Among them, the limiting component (2) includes a side frame (201) and a sponge insertion plate (204) fixedly arranged on the outer wall of the platen (1). A plurality of insertion holes are formed in an outer wall of the sponge insertion plate (204). An outer wall of the side frame (201) is fixedly connected to a spring seat (202), and an outer wall of the spring seat (202) is fixedly connected to a clamping plate (203).

2. The precision engraving device for infrared sensing elements according to claim 1, characterized in that, The spring seat (202) includes two sleeve shells that are slidably connected to each other, and a plurality of springs are arranged on inner walls of the two sleeve shells.

3. The precision engraving device for infrared sensing elements according to claim 1, characterized in that, The carving component (3) includes a large sliding frame (301) slidably arranged on an inner wall of the top frame (7) and a large hydraulic rod (304) fixedly arranged on an outer wall of the top frame (7). A positioning plate is arranged at a bottom of the large sliding frame (301). A small hydraulic rod is fixedly connected to an outer wall of the positioning plate. One end of the positioning plate is fixedly connected to a small sliding frame (302), and a carving head (303) is arranged at a bottom of the small sliding frame (302).

4. The infrared sensing element precision engraving device according to claim 3, characterized in that, Two slide rails are arranged at a bottom of the large sliding frame (301), and an outer wall of the slide rail is slidably and fittingly connected to an inner wall of the slide rail.

5. The precision engraving device for infrared sensing elements according to claim 1, characterized in that, The dust removal component (4) includes a small support (403) fixedly arranged on the platen (1). A blower (401) is arranged on an inner wall of the small support (403). An air outlet end of the blower (401) is spirally connected to a collection ball (402), and an air inlet end of the blower (401) is provided with an air inlet cover.

6. The precision engraving device for infrared sensing elements according to claim 5, characterized in that, A filter cotton is arranged on an inner wall of the collection ball (402), and exhaust holes are formed in an outer wall of the collection ball (402).