A drug content detection device

By designing a retractable anti-fall plate and support unit, the problem of damage to portable drug testing instruments when dropped is solved, achieving equipment stability and continuous testing, and ensuring the accuracy and safety of the tests.

CN122269598APending Publication Date: 2026-06-23SHANDONG LAMPENG MEDICAL TESTING LABORATORY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHANDONG LAMPENG MEDICAL TESTING LABORATORY CO LTD
Filing Date
2026-04-02
Publication Date
2026-06-23

AI Technical Summary

Technical Problem

Existing portable drug detection devices are easily damaged by drops at drug enforcement sites, affecting the accuracy and stability of the detection. In addition, the display screen is fragile, which can cause detection interruptions.

Method used

A retractable drop guard and support unit are designed to protect the equipment in all directions. Combined with the opening and closing of the automatic heat dissipation slot, it ensures that the equipment can buffer the impact and provide stable support when dropped, while preventing dust and moisture from entering when not in operation.

Benefits of technology

It effectively reduces the risk of damage to internal components, ensures the stability and accuracy of testing, avoids testing interruptions, and improves the safety and reliability of equipment use.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses a drug content detection device, relating to the field of drug detection technology. It includes a device housing and an operation panel. The top of the housing has a printing component, and the bottom has a detection port. The operation panel is mounted on the housing, and a heat dissipation groove is located on the rear side of the housing. It also includes a mounting shell fixed to the outside of the housing. Rectangular slots communicating with the mounting shell are provided at four positions (front, back, left, and right). Two transmission rods are symmetrically arranged inside the mounting shell, and both ends of the two transmission rods are connected to anti-drop units. This invention utilizes multiple retractable anti-drop plates (first and second types) to extend simultaneously during use, providing comprehensive protection for the top, bottom, and sides of the housing. This effectively buffers the impact of accidental drops or collisions, reducing the risk of damage to the precision detection components inside the device.
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Description

Technical Field

[0001] This invention relates to the field of drug detection technology, specifically to a drug content detection device. Background Technology

[0002] Drug testing is an important component of drug enforcement and analysis. It involves testing the bodily fluids (such as urine, saliva, and blood) of a person being tested to determine whether they are a drug user and, if so, to identify the specific type of drug.

[0003] Currently, laser Raman spectroscopy is a portable and rapid instrument for detecting substances. It uses laser Raman spectroscopy to collect and analyze the characteristic scattering spectra of molecules, enabling accurate identification of drug components and their concentrations. This device typically features a compact design, making it convenient for law enforcement officers to carry and operate in various on-site environments. During actual testing, the operator simply places the prepared sample card into the device's detection window, sets the detection program, and the internal laser source emits a specific wavelength of laser light onto the sample. The sample molecules absorb the laser energy, undergoing energy level transitions and scattering Raman spectra containing information about molecular vibrations and rotations. The device's built-in spectral analysis module compares the collected Raman spectra with a pre-set drug standard spectral database, calculates the types and relative percentages of each drug component in the sample using algorithms, and quickly displays the results on the device's screen. The entire detection process can usually be completed within seconds to minutes, greatly improving the efficiency and accuracy of rapid on-site drug screening.

[0004] However, existing portable drug testing instruments are not drop-resistant. If they are accidentally dropped during drug enforcement operations, the outer casing of the device may break, internal precision optical components (such as laser emitters and spectral detectors) may shift or be damaged, and even the circuit connections may become loose, directly affecting the accuracy and stability of subsequent tests. The display screen of some devices is also prone to cracking or displaying abnormalities when dropped, making the test results unreadable and forcing the interruption of the testing process, which brings inconvenience to on-site law enforcement work. Summary of the Invention

[0005] The purpose of this invention is to provide a drug content detection device to solve the problems mentioned in the background art.

[0006] To achieve the above objectives, the present invention provides the following technical solution: a drug content detection device, comprising: The device includes a housing and an operation panel. The top of the housing is equipped with a printing component, the bottom of the housing is equipped with a detection port, the operation panel is mounted on the housing, and the rear of the housing is equipped with a heat dissipation groove. Also includes: A mounting shell fixed to the outside of the device housing has rectangular slots at four positions (front, back, left, and right) that communicate with it. Two drive rods are symmetrically arranged inside the mounting shell. Both ends of the two drive rods are connected to anti-drop units, and a drive component is connected to the middle of one of the drive rods. The two drive rods are connected by a synchronous belt assembly. Two sets of support units rotatably mounted on the outside of the mounting housing, the two sets of support units being used for tilting and supporting the equipment; and... A closed unit is located inside the housing of the device and cooperates with the heat dissipation groove. A connecting member is provided between the closed unit and the anti-drop unit.

[0007] Preferably, the anti-fall unit includes: anti-fall plate one and anti-fall plate two, both of which are slidably sleeved with the corresponding rectangular grooves. A transmission component one is connected between anti-fall plate one and the first transmission rod, and a transmission component two is connected between anti-fall plate two and the first transmission rod.

[0008] Preferably, the transmission component one includes: a threaded cylinder one, a limiting plate one rotatably connected to the outer side of the threaded cylinder one, one end of the limiting plate one being fixed to the inner wall of the mounting shell, a stud one threadedly connected to the inner side of the threaded cylinder one, a bevel gear set one being transmitted between the transmission rod and the threaded cylinder one, and one end of the stud one being fixedly connected to the anti-fall plate one.

[0009] Preferably, the transmission component two includes: a worm gear one fixedly connected to the end of the transmission rod; a worm wheel one meshing with one side of the worm gear one; a threaded cylinder two fixedly sleeved in the central hole of the worm wheel one; studs two threadedly connected to both ends of the threaded cylinder two, with the threads in the threaded cylinder two rotating in opposite directions; a limiting plate two rotatably connected to both ends of the threaded cylinder two; one end of the limiting plate two fixedly connected to the mounting shell; a limiting plate three fixedly sleeved on the outer side of the end rod of the worm gear one; one end of the limiting plate three fixedly connected to the outer wall of the equipment housing; and one end of the studs two fixedly connected to the anti-fall plate two.

[0010] Preferably, the driving component includes: a driving rod, the outer side of which is rotatably connected to the inner and outer sides of the mounting housing via a bearing, a bevel gear set two being connected between the driving rod and the transmission rod, and a rotating block being fixedly connected to one end of the driving rod located outside the mounting housing.

[0011] Preferably, the support unit includes: rotating arms symmetrically arranged on both sides of the equipment housing, an arc-shaped support rod fixed between the two rotating arms, a rotating shaft fixed at one end of each rotating arm, and the rotating shaft being rotatably connected to the mounting housing via a bearing, and a transmission component 3 being provided between the rotating shaft and the transmission rod.

[0012] Preferably, the transmission component three includes: a worm gear two, a reduction gear set is connected between the transmission rod and the worm gear two, a worm wheel two is meshed on one side of the worm gear two, the worm wheel two is fixedly sleeved with the rotating shaft, and a limit plate four is rotatably connected to both sides of the worm gear two, the limit plate four is fixed to the inner wall of the mounting shell.

[0013] Preferably, the sealing unit includes: a sealing block, the number of which matches the number of heat dissipation slots, a fixing plate fixed to the top of the plurality of sealing blocks, and the fixing plate and the second anti-fall plate being fixedly connected by a connector.

[0014] Preferably, the connector includes: a linkage plate fixedly connected to the inner side of the second anti-fall plate, a connecting plate fixedly attached to the top of the linkage plate, the fixed plate and the linkage plate being fixedly connected by the connecting plate, and a sliding groove provided on the equipment housing, the connecting plate being slidably connected to the sliding groove.

[0015] Preferably, both the first and second anti-fall plates are made of elastic rubber, and the outer surfaces of the first and second anti-fall plates are provided with anti-slip textures.

[0016] Compared with the prior art, the beneficial effects of the present invention are: (1) The present invention uses multiple retractable anti-fall plates I and multiple anti-fall plates II to extend multiple anti-fall plates I and multiple anti-fall plates II simultaneously when using the testing equipment, thereby forming an all-round wrapping protection for the top, bottom and sides of the equipment shell, effectively buffering the impact force generated when the equipment is accidentally dropped or collided, and reducing the risk of damage to the precision testing components inside the equipment.

[0017] (2) During the extension of the first and second anti-fall plates, the present invention can drive the support unit to unfold synchronously through the transmission rod, so that the support unit extends from both sides of the equipment housing and unfolds to a suitable angle, providing stable support for the equipment and preventing the equipment from tipping over due to uneven tabletops or accidental contact when placed.

[0018] (3) When the second anti-fall plate is unfolded outward, the connection will drive the closing unit to move, so that the heat sink can be opened automatically, ensuring that the heat sink can be properly ventilated and dissipated when the equipment is in use, and ensuring the stability of the equipment during long-term operation. When the equipment is not in use, the first and second anti-fall plates are retracted, and the closing unit re-seals the heat sink to prevent dust, water vapor and other impurities from entering the equipment and causing corrosion to the internal components. Attached Figure Description

[0019] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of a partial internal structure of the present invention; Figure 3 This is a schematic diagram of the anti-drop unit of the present invention; Figure 4 This is a schematic diagram of the structure of the outer casing and mounting shell of the device of the present invention; Figure 5 This is a schematic diagram of the structure of transmission component one and transmission component two of the present invention; Figure 6 This is a schematic diagram of the structure of the support unit of the present invention; Figure 7 This is a schematic diagram of the closed unit structure of the present invention; Figure 8 For the present invention Figure 3 Enlarged view of region A in the middle.

[0020] In the diagram: 1. Equipment casing; 101. Operation panel; 102. Printing assembly; 103. Detection port; 104. Heat dissipation groove; 2. Mounting shell; 201. Rectangular groove; 202. Transmission rod; 203. Drive component; 2031. Drive rod; 2032. Bevel gear set two; 2033. Rotating block; 3. Anti-fall unit; 301. Anti-fall plate one; 302. Anti-fall plate two; 303. Transmission component one; 3031. Threaded cylinder one; 3032. Limiting plate one; 3033. Stud one; 3034. Bevel gear set one; 304. Transmission component II; 3041, Worm Gear I; 3042, Worm Wheel I; 3043, Threaded Sleeve II; 3044, Stud II; 3045, Limiting Plate II; 3046, Limiting Plate III; 4, Support Unit; 401, Rotating Arm; 402, Arc-shaped Support Rod; 403, Rotating Shaft; 404, Transmission Component III; 4041, Worm Gear II; 4042, Reduction Gear Set; 4043, Worm Wheel II; 4044, Limiting Plate IV; 5, Sealing Unit; 501, Sealing Block; 502, Fixing Plate; 6, Connecting Component; 601, Linkage Plate; 602, Connecting Plate. Detailed Implementation

[0021] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0022] Example 1: Please refer to Figure 1 - Figure 8 The illustrated drug content detection device includes: a device housing 1 and an operation panel 101. The top of the device housing 1 is provided with a printing component 102, which uses a built-in thermal printer. The specific structure is not described in detail as it is existing technology. The bottom of the device housing 1 is provided with a detection port 103, which is connected to the built-in detection module of the device. The reagent card after sample addition can be inserted into the detection port 103 at the bottom of the device for automatic identification and detection. The operation panel 101 is installed on the device housing 1, and the rear side of the device housing 1 is provided with a heat dissipation groove 104 to dissipate heat from the device. Specific testing procedures: The operator first takes out the testing equipment, connects the power and turns it on, enters the account and password through the operation panel 101 to log in to the system, and then places the personnel's ID card on the recognition area on the back of the equipment to automatically read the identity information, or inserts the reagent kit ID card to read the reagent information on the equipment interface; Then, the staff put the collected samples into the lysis buffer bottle and let them react for about 5 minutes, or put them into a grinder to grind them, then add the lysis buffer and mix well. Then, use a pipette to draw up the processed lysis buffer and drop it into the sample application window of the test reagent card. Insert the reagent card with the sample added into the detection port 103 at the bottom of the device, and click the "Start Test" button on the screen of the operation panel 101. The device will complete the test in 5-10 seconds, automatically analyze and display the results. The device will automatically print a paper test report through the printing component 102, which includes the test time, personnel information, drug type and results.

[0023] It also includes: a mounting shell 2 fixed to the outside of the equipment housing 1. The mounting shell 2 has rectangular slots 201 connected to it at four positions: front, back, left, and right. Two transmission rods 202 are symmetrically arranged inside the mounting shell 2. The two ends of the two transmission rods 202 are connected to the anti-drop unit 3. The middle of one of the transmission rods 202 is connected to the driving component 203. The two transmission rods 202 are connected to each other by a synchronous belt assembly. Through the design of multiple retractable anti-drop plates 301 and multiple anti-drop plates 302, it is convenient to extend multiple anti-drop plates 301 and multiple anti-drop plates 302 at the same time when using the testing equipment, so as to form a comprehensive wrapping protection for the top, bottom and sides of the equipment housing, effectively buffering the impact force generated when the equipment is accidentally dropped or collided, and reducing the risk of damage to the precision testing components inside the equipment. Two sets of support units 4 are rotated and installed on the outside of the mounting shell 2. The two sets of support units 4 are used to support the equipment at an angle. During the extension of the first anti-fall plate 301 and the second anti-fall plate 302, the support units 4 can be driven to unfold synchronously through the transmission rod 202, so that the support units 4 can extend from both sides of the equipment shell and unfold to a suitable angle, providing stable support for the equipment and preventing the equipment from tipping over due to uneven tabletops or accidental contact when placed. A closed unit 5 is located inside the equipment housing 1 and cooperates with the heat dissipation slot 104. A connecting piece 6 is provided between the closed unit 5 and the anti-drop unit 3. The closed unit 5 is driven by the connecting piece 6 to open the heat dissipation slot 104 automatically, ensuring that the heat dissipation slot 104 can be properly ventilated and dissipated when the equipment is in use, and ensuring the stability of the equipment during long-term operation. When the equipment is not in use, the first anti-drop plate 301 and the second anti-drop plate 302 are retracted, and the closed unit 5 re-seals the heat dissipation slot 104 to prevent dust, moisture and other impurities from entering the equipment and corroding the internal components.

[0024] For further details, please refer to [link / reference]. Figure 3 and Figure 5The anti-fall unit 3 includes an anti-fall plate 301 and an anti-fall plate 302. Both anti-fall plates 301 and 302 are slidably sleeved with corresponding rectangular grooves 201. A transmission component 303 is connected between the anti-fall plate 301 and the first transmission rod 202, and a transmission component 304 is connected between the anti-fall plate 302 and the first transmission rod 202. The transmission component 303 includes a threaded cylinder 3031. A limiting plate 3032 is rotatably connected to the outer side of the threaded cylinder 3031. One end of the limiting plate 3032 is fixed to the inner wall of the mounting shell 2. A stud 3033 is threadedly connected to the inner side of the threaded cylinder 3031. A bevel gear set 3034 is connected between the transmission rod 202 and the threaded cylinder 3031. One end of the stud 3033 is connected to the anti-fall plate. 301 is fixedly connected; the transmission component 204 includes a worm gear 3041 fixedly connected to the end of the transmission rod 202, a worm wheel 3042 meshing with one side of the worm gear 3041, a threaded cylinder 3043 fixedly sleeved in the middle hole of the worm wheel 3042, studs 3044 threaded to both ends of the threaded cylinder 3043, and the threads in the threaded cylinder 3043 are opposite in direction, and limit plates 3045 are rotatably connected to both ends of the threaded cylinder 3043, one end of the limit plate 3045 is fixedly connected to the mounting shell 2, a limit plate 3046 is fixedly sleeved on the outer side of the end of the worm gear 3041, one end of the limit plate 3046 is fixed to the outer wall of the equipment shell 1, and one end of the studs 3044 is fixedly connected to the anti-fall plate 302.

[0025] Among them, see Figure 8 The driving component 203 includes a driving rod 2031. The outer side of the driving rod 2031 is rotatably connected to the inner and outer sides of the mounting shell 2 via a bearing. A bevel gear set 2032 is connected between the driving rod 2031 and the transmission rod 202. A rotating block 2033 is fixedly connected to one end of the driving rod 2031 located outside the mounting shell 2.

[0026] Specifically, to prevent the equipment from falling and breaking during use, the operator manually rotates the rotating block 2033 before use. The rotating block 2033 drives the drive rod 2031 to rotate. The drive rod 2031 drives one of the transmission rods 202 to rotate via the bevel gear set 2032. The end of the transmission rod 202 also drives the other transmission rod 202 to rotate synchronously via the synchronous belt assembly. When the two transmission rods 202 rotate, they simultaneously drive the bevel gear sets 3034 on both sides, thereby driving the threaded cylinder 3031 to rotate. The threaded cylinder 3031 drives the stud 3033 to move. 033 pushes the first anti-fall plate 301 out of the rectangular slot 201. At the same time, the transmission rod 202 will drive the first worm gear 3041 to rotate. The first worm gear 3041 drives the first worm wheel 3042 to rotate. The first worm wheel 3042 drives the second threaded cylinder 3043 to rotate. The second threaded cylinder 3043 drives the second studs 3044 at both ends to move away from each other. This causes the second studs 3044 to push the second anti-fall plate 302 out of the rectangular slot 201 simultaneously. Thus, before using the equipment, multiple first anti-fall plates 301 and multiple second anti-fall plates 302 are extended at the same time, thereby forming a comprehensive wrapping protection for the top, bottom and sides of the equipment shell.

[0027] It should be noted that both the drop guard 1 (301) and drop guard 2 (302) are made of elastic rubber. The outer surface of drop guard 1 (301) and drop guard 2 (302) is provided with anti-slip texture. The use of elastic rubber material can not only effectively buffer the impact force when the equipment is accidentally dropped, reducing damage to the precision detection components inside the equipment through its own elastic deformation, but also has good flexibility and will not easily crack due to long-term use or minor collisions. In addition, the anti-slip texture on the outer surface can significantly increase the friction when the hand holds the equipment, preventing the operator from slipping and dropping the equipment during the testing process, further improving the safety and stability of the equipment during use.

[0028] Example 2: Please refer to Figure 3 and Figure 6 This embodiment further illustrates Example 1, with the difference being that the equipment support method has been optimized and improved.

[0029] Specifically, the support unit 4 includes rotating arms 401 symmetrically arranged on both sides of the equipment housing 1. An arc-shaped support rod 402 is fixed between the two rotating arms 401. A rotating shaft 403 is fixed to one end of the rotating arm 401, and the rotating shaft 403 is rotatably connected to the mounting housing 2 through a bearing. A transmission component 3 404 is provided between the rotating shaft 403 and the transmission rod 202. The transmission component 3 404 includes a worm gear 2 4041. A reduction flat gear set 4042 is connected between the transmission rod 202 and the worm gear 2 4041. A worm wheel 2 4043 meshes with one side of the worm gear 2 4041. The worm wheel 2 4043 is fixedly sleeved with the rotating shaft 403. Limiting plates 4044 are rotatably connected to both sides of the worm wheel 2 4043. The limiting plates 4044 are fixed to the inner wall of the mounting housing 2.

[0030] The principle of support unit 4 supporting the equipment is as follows: When the transmission rod 202 rotates, it drives the worm gear 4041 to rotate synchronously through the reduction gear set 4042. The worm gear 4041 then drives the worm wheel 4043 meshing with it to rotate. Since the worm wheel 4043 is fixedly sleeved on the rotating shaft 403, the rotating shaft 403 will rotate with the rotation of the worm wheel 4043, thereby driving the rotating arm 401 to rotate around the axis of the rotating shaft 403. The setting of the reduction gear set 4042 can effectively reduce the speed transmitted from the transmission rod 202 to the worm gear 4041, making the unfolding and retraction of the rotating arm 401 more stable and controllable, and avoiding excessive movement or impact of the support unit 4 due to excessive speed. When the rotating arm 401 rotates to a suitable angle, the arc-shaped support rod 402 will extend and unfold from both sides of the equipment housing to form a stable support structure, providing reliable support for the equipment and effectively preventing the equipment from sliding or tipping over when placed directly on a flat surface such as a desktop, further improving the stability of the equipment during use.

[0031] Example 3: Please refer to Figure 3 and Figure 7 This embodiment further illustrates Example 1, with the difference being the optimization and improvement of the heat dissipation method of the device.

[0032] Specifically, the sealing unit 5 includes sealing blocks 501, the number of sealing blocks 501 and heat dissipation slots 104 are matched, and a fixing plate 502 is fixed on the top of the multiple sealing blocks 501. The fixing plate 502 and the second anti-fall plate 302 are fixedly connected by a connector 6. The connector 6 includes a linkage plate 601 fixedly connected to the inner side of the second anti-fall plate 302. A connecting plate 602 is fixed on the top of the linkage plate 601. The fixing plate 502 and the linkage plate 601 are fixedly connected by the connecting plate 602. A sliding groove is provided on the equipment housing 1, and the connecting plate 602 is slidably connected to the sliding groove.

[0033] The working principle of the sealing unit 5 for opening and closing the heat dissipation slot 104 is as follows: When the equipment is in a non-working state, the sealing block 501 can seal the heat dissipation slot 104 under the action of the fixed plate 502. At this time, since the fixed plate 502 is fixedly connected to the linkage plate 601 through the connecting plate 602, and the linkage plate 601 is fixed to the second anti-fall plate 302, when the second anti-fall plate 302 is in a closed state, it will pull the fixed plate 502 through the linkage plate 601 and the connecting plate 602, so that the sealing block 501 is tightly embedded in the heat dissipation slot 104, forming an effective sealing structure to prevent dust, water vapor and other impurities from entering the equipment through the heat dissipation slot 104. When the equipment is started and enters the working state and needs to dissipate heat, the second anti-fall plate 302 can be opened to drive the linkage plate 601 to move. The linkage plate 601 pushes the fixed plate 502 through the connecting plate 602, so that the sealing block 501 slides out of the heat dissipation slot 104, exposing the heat dissipation slot 104, thereby realizing the timely dissipation of heat inside the equipment. This allows the opening and closing of the heat dissipation slot 104 to be linked with the status of the anti-drop plate 302, ensuring the protective performance of the equipment when it is not in operation, and enabling efficient heat dissipation when it is in operation, thereby improving the overall practicality and reliability of the equipment.

[0034] It should be noted that, in this document, relational terms such as "first" and "second" are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus.

[0035] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A drug content detection device, comprising: The device housing (1) and the operation panel (101) are provided. The top of the device housing (1) is provided with a printing component (102), the bottom of the device housing (1) is provided with a detection port (103), the operation panel (101) is mounted on the device housing (1), and the rear side of the device housing (1) is provided with a heat dissipation groove (104). Its characteristic is that it further includes: A mounting shell (2) is fixed to the outside of the outer casing (1) of the device. Rectangular slots (201) are provided at four positions (front, back, left, and right) of the mounting shell (2) and communicate with them. Two transmission rods (202) are symmetrically arranged inside the mounting shell (2). Both ends of the two transmission rods (202) are connected to anti-drop units (3), and a driving component (203) is connected to the middle of one of the transmission rods (202). The two transmission rods (202) are connected by a synchronous belt assembly. Two sets of support units (4) are rotatably mounted on the outside of the mounting shell (2), and the two sets of support units (4) are used to tilt and support the equipment; and, A closed unit (5) is provided inside the housing (1) of the device and cooperates with the heat dissipation groove (104). A connector (6) is provided between the closed unit (5) and the anti-drop unit (3).

2. The drug content detection device according to claim 1, characterized in that: The anti-fall unit (3) includes: anti-fall plate one (301) and anti-fall plate two (302). Both anti-fall plate one (301) and anti-fall plate two (302) are slidably sleeved with the corresponding rectangular groove (201). A transmission component one (303) is connected between anti-fall plate one (301) and the first transmission rod (202). A transmission component two (304) is connected between anti-fall plate two (302) and the first transmission rod (202).

3. The drug content detection device according to claim 2, characterized in that: The transmission component 1 (303) includes: a threaded cylinder 1 (3031), a limiting plate 1 (3032) is rotatably connected to the outer side of the threaded cylinder 1 (3031), one end of the limiting plate 1 (3032) is fixed to the inner wall of the mounting shell (2), a stud 1 (3033) is threadedly connected to the inner side of the threaded cylinder 1 (3031), a bevel gear set 1 (3034) is transmitted between the transmission rod (202) and the threaded cylinder 1 (3031), and one end of the stud 1 (3033) is fixedly connected to the anti-fall plate 1 (301).

4. The drug content detection device according to claim 2, characterized in that: The transmission component two (304) includes: a worm gear one (3041) fixedly connected to the end of the transmission rod (202), a worm wheel one (3042) meshing with one side of the worm gear one (3041), a threaded cylinder two (3043) fixedly sleeved in the middle hole of the worm wheel one (3042), and studs two (3044) threadedly connected to both ends of the threaded cylinder two (3043), and the threads in the threaded cylinder two (3043) are opposite in direction. Both ends of the threaded cylinder (3043) are rotatably connected to the limiting plate (3045). One end of the limiting plate (3045) is fixedly connected to the mounting shell (2). The outer side of the end of the worm gear (3041) is fixedly sleeved with the limiting plate (3046). One end of the limiting plate (3046) is fixed to the outer wall of the equipment shell (1). One end of the stud (3044) is fixedly connected to the anti-fall plate (302).

5. The drug content detection device according to claim 1, characterized in that: The driving component (203) includes: a driving rod (2031), the outer side of the driving rod (2031) is rotatably connected to the inner and outer sides of the mounting shell (2) via a bearing, a bevel gear set (2032) is connected between the driving rod (2031) and the transmission rod (202), and a rotating block (2033) is fixedly connected to one end of the driving rod (2031) located outside the mounting shell (2).

6. The drug content detection device according to claim 1, characterized in that: The support unit (4) includes: rotating arms (401) symmetrically arranged on both sides of the equipment housing (1), an arc-shaped support rod (402) fixed between the two rotating arms (401), a rotating shaft (403) fixed at one end of the rotating arm (401), and the rotating shaft (403) is rotatably connected to the mounting housing (2) through a bearing, and a transmission component (404) is provided between the rotating shaft (403) and the transmission rod (202).

7. The drug content detection device according to claim 5, characterized in that: The transmission component three (404) includes: worm gear two (4041), a reduction gear set (4042) is connected between the transmission rod (202) and the worm gear two (4041), a worm wheel two (4043) is meshed on one side of the worm gear two (4041), the worm wheel two (4043) is fixedly sleeved with the rotating shaft (403), and a limit plate four (4044) is rotatably connected to both sides of the worm gear (4041), the limit plate four (4044) is fixed to the inner wall of the mounting shell (2).

8. The drug content detection device according to claim 3, characterized in that: The sealing unit (5) includes: a sealing block (501), the number of the sealing block (501) and the number of the heat dissipation groove (104) are matched, and a fixing plate (502) is fixed on the top of the multiple sealing blocks (501), and the fixing plate (502) and the second anti-fall plate (302) are fixedly connected by a connector (6).

9. A drug content detection device according to claim 8, characterized in that: The connector (6) includes: a linkage plate (601) fixedly connected to the inner side of the second anti-fall plate (302), a connecting plate (602) fixed on the top of the linkage plate (601), the fixing plate (502) and the linkage plate (601) being fixedly connected through the connecting plate (602), a sliding groove being provided on the equipment housing (1), and the connecting plate (602) being slidably connected to the sliding groove.

10. A drug content detection device according to claim 2, characterized in that: Both the first anti-fall plate (301) and the second anti-fall plate (302) are made of elastic rubber, and the outer surfaces of the first anti-fall plate (301) and the second anti-fall plate (302) are provided with anti-slip textures.