CN114486853B - Food Raman spectrum detection amplifying instrument capable of resisting interference - Google Patents

Food Raman spectrum detection amplifying instrument capable of resisting interference Download PDF

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Publication number
CN114486853B
CN114486853B CN202210120279.1A CN202210120279A CN114486853B CN 114486853 B CN114486853 B CN 114486853B CN 202210120279 A CN202210120279 A CN 202210120279A CN 114486853 B CN114486853 B CN 114486853B
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block
spring
connecting rod
spectrum detection
rod
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CN114486853A (en
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张玉
翟彦
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Southwest University
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Southwest University
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01NINVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
    • G01N21/00Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
    • G01N21/62Systems in which the material investigated is excited whereby it emits light or causes a change in wavelength of the incident light
    • G01N21/63Systems in which the material investigated is excited whereby it emits light or causes a change in wavelength of the incident light optically excited
    • G01N21/65Raman scattering

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  • Nuclear Medicine, Radiotherapy & Molecular Imaging (AREA)
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  • Life Sciences & Earth Sciences (AREA)
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  • Investigating, Analyzing Materials By Fluorescence Or Luminescence (AREA)

Abstract

The invention provides a food Raman spectrum detection amplifying instrument capable of resisting interference, and relates to the technical field of spectrum detection amplifying instruments. The control device controls the abutting rod to move and separate or abut against the abutting hole, so that the position of the light barrier is adjusted, the irradiation of an external light source to a sample is reduced, the rotating angle of the light barrier is changed, and the control device is used for blocking part of external light source interference.

Description

Food Raman spectrum detection amplifying instrument capable of resisting interference
Technical Field
The invention relates to the technical field of spectrum detection amplifying instruments, in particular to a food Raman spectrum detection amplifying instrument capable of resisting interference.
Background
Along with the continuous development of economy, various processed foods full of precious in Lin and Lang enrich the lives of people, food safety and human health are increasingly emphasized by society, food safety detection is more necessary, a spectrum detector based on food safety detection is commonly used, and the spectrum detector is also called as a spectrum detection amplifying instrument, mainly used for amplifying and detecting a spectrum, so that the effect of ensuring the safety of foods and the like is achieved. When the spectrum detector is used, a small sample needs to be placed on the detection table, and the sample is detected by the spectrum detector.
If the application number is: CN202121747780.8 provides a full spectrum detector based on food safety detection, which comprises a main body, a crushing box for placing a sample is slidably connected inside the left side of the main body, a fixed shaft is arranged inside the left side of the main body, a ring sleeve is rotatably connected to the outer side of the fixed shaft, and a placing rack for placing a plurality of test tubes into the device at the same time is arranged at the upper end of the main body; however, in the above technical scheme, in the using process, the following problems may be encountered, for example, in the using process of the spectrum detector, because some light blocking structures are absent, in the detecting process, external light is prone to cause interference to the irradiation of too much sample, and further a detection link is prone to making mistakes, and certain influence is brought to the detecting process of the spectrum detector inconveniently, so we propose a food raman spectrum detection amplifying instrument capable of resisting interference to solve the above problems.
Disclosure of Invention
Technical problem to be solved
The invention provides a food Raman spectrum detection amplifying instrument capable of resisting interference, and aims to solve the problems that in the use process of a spectrum detector in the prior art, due to the lack of some light blocking structures, external light easily interferes with the irradiation of a sample too much, so that the detection link is easy to make mistakes, and the detection process of the spectrum detector is affected to a certain extent and is inconvenient.
(II) technical scheme
In order to achieve the purpose, the invention adopts the technical scheme that:
the utility model provides a can resist food raman spectroscopy of interference and enlarge instrument, includes the support frame, the mounting groove has been seted up to the one end that the workstation was kept away from to the support frame, the internally mounted of mounting groove has spectral detection to enlarge the appearance body, first circular block is installed through first bolt in the lower extreme periphery of spectral detection enlargies the appearance body, the lower fixed surface of first circular block installs the connecting cylinder, a plurality of is seted up admittedly to the hole of straining in the periphery of connecting cylinder, the lower fixed surface of connecting cylinder installs the second circular block, the inside spout that has all been seted up near the one end of connecting cylinder with first circular block to the second circular block, the inside of spout is provided with the pin rod subassembly, the pin rod subassembly is including supporting tight pole and link, the link is passed to the one end of tight pole, the both ends of link all with slide bar fixed connection, two the peripheral fixed mounting of slide bar has the connecting rod, the one end of connecting rod is provided with spring assembly, spring assembly includes pulling block and connecting rod, the pulling block is established with the connecting rod cover and is connected, the lower extreme fixed mounting of connecting rod has the barn door.
Preferably, the lower fixed surface of workstation installs the landing leg, the last fixed surface of workstation installs the fixed block, the last fixed surface of fixed block connects the support frame, the support frame is bent shape and sets up.
Preferably, the lower surface of the supporting frame is fixedly provided with fixing frames, the inner sides of the two fixing frames are fixedly connected with the spectrum detection amplifier body through second bolts, and the periphery of the spectrum detection amplifier body is tightly abutted to the inner wall of the mounting groove.
Preferably, one end of the abutting rod is fixedly provided with a pull ring, one end of the abutting rod, which is far away from the pull ring, abuts against the inside of the abutting hole, and the abutting holes are annularly distributed with the center of the connecting cylinder.
Preferably, a connecting block is fixedly mounted at one end of the abutting rod, one end surface of the connecting block is fixedly connected with a first spring, one end of the first spring is fixedly connected with the connecting frame, and the first spring is sleeved with the abutting rod and connected with the abutting rod.
Preferably, the link is arc-shaped, a through groove is formed in the link, and the upper end and the lower end of the sliding rod are both connected with the inner wall of the sliding groove in a sliding manner.
Preferably, the two slide bars are symmetrical about the center of the first circular block, the upper end of the pull block is fixedly connected with the lower end of the second spring, the lower surface of the pull block abuts against the upper surface of the mounting block, the upper end of the second spring is fixedly connected with the lower surface of the ejector block, a through hole is formed in the pull block, a guide rod is slidably connected inside the through hole, and the upper end of the guide rod is fixedly connected with the ejector block.
Preferably, the lower surface of the ejector block is fixedly connected with the upper end of the connecting rod, and the connecting rod is sleeved with the second spring.
Preferably, one end, far away from the top block, of the connecting rod is fixedly connected with the bottom block, the upper surface of the bottom block is abutted against the lower surface of the mounting block, an opening is formed in the mounting block, and the connecting rod penetrates through the opening.
Preferably, the two light barriers are symmetrical about the center of the first circular block, the two light barriers are obliquely arranged, and a reflective film is fixedly mounted inside the two light barriers through a third bolt.
Compared with the prior art, the invention has the following beneficial effects:
the invention can drive the abutting rod and the connecting block to move after the pull ring is pulled, the connecting block can pull the first spring to generate a reaction force, meanwhile, the abutting rod can be separated from the abutting hole and cannot abut against the abutting hole any more, at the moment, the connecting frame can be rotated to drive the sliding rod to slide in the sliding groove, so that the connecting frame can move circularly, the light barrier is driven to move circularly by the connecting rod and the spring assembly in the center of the first circular block during the circular motion of the connecting frame, after the position of the light barrier is determined, the pull ring is loosened to enable the first spring to pull the abutting rod to return through the connecting block and abut against the inner part of the abutting hole again, so that the position of the light barrier is fixed, the irradiation of an external light source to a sample is reduced, the rotating angle of the light barrier is changed by arranging the baffle, and adjusting the light barrier, and the rotating angle of the light barrier is used for blocking part of the interference of the external light source;
upwards spur and draw the piece to remove on the connecting rod and promote the compression of second spring simultaneously and produce reaction force, draw the piece to remove and no longer support tightly with the upper surface of installation piece, rotatable connecting rod drives the barn door and rotates this moment, to the angle modulation of barn door, block the light source of appointed angle, loosen and draw a piece second spring can promote and draw the piece playback and support tightly with the installation piece, angle after fixed barn door rotates, reach the nimble regulation of barn door angle, better block the light source, meanwhile the reflectance coating can rotate with it when the barn door rotates, be used for reflecting the light that spectrum detection enlarger body sent, reduce the condition that spectrum detection enlarger body light disperses.
Drawings
FIG. 1 is a schematic diagram of the overall structure of a food Raman spectrum detection amplifying instrument capable of resisting interference according to the invention;
FIG. 2 is a schematic diagram of a rear view of a Raman spectrum detection amplifying apparatus for food capable of resisting interference according to the present invention;
FIG. 3 is a schematic view of a pin assembly of a Raman spectrum detection amplifying apparatus for food capable of resisting interference according to the present invention;
FIG. 4 is a schematic view of the connection structure of the pin rod assembly and the connecting cylinder of the interference-resistant food Raman spectrum detection amplifying instrument;
FIG. 5 is an enlarged view of the food Raman spectrum detection amplifying apparatus capable of resisting interference according to the present invention at a position a;
FIG. 6 is a schematic diagram of the spring assembly of the Raman spectrum detection amplifying apparatus for food capable of resisting interference according to the present invention;
fig. 7 is a schematic diagram of an enlarged structure at b of the food raman spectrum detection amplifying instrument capable of resisting interference according to the present invention.
In the figure: 1. a support leg; 2. a work table; 3. a fixed block; 4. a support frame; 5. mounting grooves; 6. a pin rod assembly; 601. a pull ring; 602. a tightening rod; 603. connecting blocks; 604. a first spring; 605. a connecting frame; 606. a through groove; 607. a slide bar; 7. a first bolt; 8. a spring assembly; 801. pulling the block; 802. a second spring; 803. a top block; 804. a connecting rod; 805. a bottom block; 806. mounting blocks; 807. an opening; 808. a through hole; 809. a guide bar; 9. a connecting cylinder; 10. a second circular block; 11. a chute; 12. a spectrum detection amplifier body; 13. a connecting rod; 14. a first circular block; 15. a light barrier; 16. a second bolt; 17. a fixed mount; 18. abutting against the hole; 19. a third bolt; 20. a reflective film.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be obtained by a person skilled in the art without making any creative effort based on the embodiments in the present invention, belong to the protection scope of the present invention.
Examples
As shown in fig. 1 to 7, a food raman spectrum detection amplifying instrument capable of resisting interference, including a support frame 4, a mounting groove 5 is provided at one end of the support frame 4 far from a workbench 2, a spectrum detection amplifying instrument body 12 is installed inside the mounting groove 5, a first circular block 14 is installed at the lower end periphery of the spectrum detection amplifying instrument body 12 through a first bolt 7, a connecting cylinder 9 is fixedly installed at the lower surface of the first circular block 14, a plurality of abutting holes 18 are fixedly provided at the periphery of the connecting cylinder 9, a second circular block 10 is fixedly installed at the lower surface of the connecting cylinder 9, a sliding groove 11 is respectively provided inside one end of the second circular block 10 and one end of the first circular block 14 close to the connecting cylinder 9, a pin rod assembly 6 is provided inside the sliding groove 11, the pin rod assembly 6 includes an abutting rod 602 and a connecting frame 605, one end of the abutting rod 602 passes through the connecting frame 605, both ends of the connecting frame 605 are fixedly connected with sliding rods 607, connecting rods 13 are fixedly installed at the periphery of two sliding rods 607, a spring assembly 8 is provided at one end of the connecting rod 13, the spring assembly 8 includes an abutting block 801 and a connecting rod 804, and a light blocking plate 15 is installed at the lower end of the connecting rod 804.
In this application, the lower fixed surface of workstation 2 installs landing leg 1, and the last fixed surface of workstation 2 installs fixed block 3, and the last fixed surface of fixed block 3 connects support frame 4, and support frame 4 is bent shape and sets up. The lower surface fixed mounting of support frame 4 has mount 17, and the inboard of two mount 17 passes through second bolt 16 and spectrum detection amplifier body 12 fixed connection, and the periphery of spectrum detection amplifier body 12 supports tightly with the inner wall of mounting groove 5.
It should be noted that, before spectral detection enlarger body 12 was taken off, the accessible was twisted and is moved first bolt 7 and make spectral detection enlarger body 12 and mount 17 separation, directly pull out spectral detection enlarger body 12 alright, the accessible was placed the sample in the top of workstation 2 before detecting, if the volume of sample is less, the accessible adds the device platform on workstation 2, makes the sense terminal of sample be in between two barn doors 15, improves the result of use of barn door 15 like this.
In the present application, a pull ring 601 is fixedly installed at one end of the tightening rod 602, which is far away from the pull ring 601, is tightened with the inside of the tightening hole 18, and the tightening holes 18 are annularly distributed in the center of the connecting cylinder 9. The one end fixed mounting that supports tight pole 602 has connecting block 603, the one end surface and the first spring 604 fixed connection of connecting block 603, the one end and the link 605 fixed connection of first spring 604, first spring 604 establishes with supporting tight pole 602 cover and is connected. The connecting frame 605 is arc-shaped, the inside of the connecting frame 605 is provided with a through groove 606, and the upper end and the lower end of the sliding rod 607 are both connected with the inner wall of the sliding groove 11 in a sliding manner.
It should be noted that, by adjusting the light barrier 15, the rotation angle of the light barrier 15 is changed, so as to block a part of light source interference outside, in the first step, the pull ring 601 can be pulled, the tightening rod 602 and the connecting block 603 can be driven to move after the pull ring 601 is pulled, the connecting block 603 can drive the first spring 604 to generate a reaction force, meanwhile, the tightening rod 602 can be separated from the tightening hole 18 and no longer tightened, at this time, the rotatable connecting frame 605 can drive the sliding rod 607 to slide inside the sliding groove 11, so that the connecting frame 605 can move circumferentially, the connecting frame 605 moves circumferentially through the connecting rod 13 and the spring assembly 8 to drive the light barrier 15 to move circumferentially around the center of the first circular block 14, after the position of the light barrier 15 is determined, the pull ring 601 is released, so that the first spring 604 pulls the tightening rod 602 to return to the position through the connecting block 603, and then tightly press against the inside of the tightening hole 18 again, so as to complete the fixing of the position of the light barrier 15, thereby reducing the irradiation of the sample by the external light source, and it should be further illustrated that, when the connecting frame rotates, the tightening rod 602 and the tightening hole 18 can be accurately controlled by the tightening the inside of the tightening rod 602.
In the application, two sliding rods 607 are symmetrical about the center of the first circular block 14, the upper end of the pulling block 801 is fixedly connected with the lower end of the second spring 802, the lower surface of the pulling block 801 is abutted against the upper surface of the mounting block 806, the upper end of the second spring 802 is fixedly connected with the lower surface of the top block 803, a through hole 808 is formed in the pulling block 801, a guide rod 809 is slidably connected inside the through hole 808, and the upper end of the guide rod 809 is fixedly connected with the top block 803. The lower surface of the top block 803 is fixedly connected with the upper end of the connecting rod 804, and the connecting rod 804 is sleeved with the second spring 802. One end of the connecting rod 804, which is far away from the top block 803, is fixedly connected with the bottom block 805, the upper surface of the bottom block 805 is abutted against the lower surface of the mounting block 806, an opening 807 is formed in the mounting block 806, and the connecting rod 804 penetrates through the opening 807. The two light barriers 15 are symmetrical about the center of the first circular block 14, the two light barriers 15 are obliquely arranged, and the reflective film 20 is fixedly mounted inside the two light barriers 15 through a third bolt 19.
It should be noted that, the pulling block 801 is pulled upward to move on the connecting rod 804 and push the second spring 802 to compress to generate a reaction force, the pulling block 801 moves and is not abutted against the upper surface of the mounting block 806, at this time, the connecting rod 804 can be rotated to drive the light barrier 15 to rotate, the angle of the light barrier 15 is adjusted, a light source at a specified angle is blocked, the second spring 802 which releases the pulling block 801 can push the pulling block 801 to return to abut against the mounting block 806, the rotated angle of the light barrier 15 is fixed, so as to achieve flexible adjustment of the angle of the light barrier 15, better block the light source, meanwhile, the reflective film 20 can rotate along with the light barrier 15 when the light barrier 15 rotates, so as to reflect the light emitted by the spectrum detection amplifier body 12 and reduce the situation of light dispersion of the spectrum detection amplifier body 12, what needs to be explained is that the pulling block 801 slides on the guide rod 809 through the through hole 808 when moving, the guide rod 809 is used for guiding the pulling block 801, and simultaneously preventing the pulling block 801 from rotating unexpectedly, when the light barrier 15 needs to be cleaned, the light barrier 15 can be moved upward and can drive the pulling block 801 to move out and then to drive the pulling block 801 to move out to connect with the opening 15.
The working principle of the interference-resistant food Raman spectrum detection amplifying instrument is as follows:
firstly, in the detection process, the rotation angle of the light barrier 15 can be changed by adjusting the light barrier 15, and the light barrier 15 is used for blocking part of external light source interference, in the first step, the pull ring 601 can be pulled, the tightening rod 602 and the connecting block 603 can be driven to move after the pull ring 601 is pulled, the connecting block 603 can be driven to move, the first spring 604 can be driven to generate a reaction force by the movement of the connecting block 603, meanwhile, the tightening rod 602 can be separated from the tightening hole 18 and can not be tightened, at the moment, the connecting frame 605 can be rotated to drive the sliding rod 607 to slide in the sliding chute 11, so that the connecting frame 605 can move circumferentially, the light barrier 15 can be driven to move circumferentially by the connecting rod 13 and the spring assembly 8, the center of the first circular block 14 is moved circumferentially, after the position of the light barrier 15 is determined, the pull ring 601 is released, so that the first spring 604 pulls the tightening rod 602 to return to the position to be tightened again in the tightening hole 18, and the position of the light barrier 15 is fixed, and the irradiation of an external light source to a sample is reduced;
meanwhile, the pulling block 801 can be pulled upwards to move on the connecting rod 804 and push the second spring 802 to compress to generate a reaction force, the pulling block 801 moves and is not abutted against the upper surface of the mounting block 806, at the moment, the connecting rod 804 can be rotated to drive the light barrier 15 to rotate, the angle of the light barrier 15 is adjusted, a light source at a specified angle is blocked, the pulling block 801 can be loosened, the second spring 802 can push the pulling block 801 to return to the position to be abutted against the mounting block 806, the rotated angle of the light barrier 15 is fixed, the angle of the light barrier 15 is adjusted flexibly, the light source is blocked better, meanwhile, the reflecting film 20 can rotate along with the light barrier 15 when the light barrier 15 rotates, the reflecting film is used for reflecting light emitted by the spectrum detection amplifier body 12, and the condition of light dispersion of the spectrum detection amplifier body 12 is reduced.
The foregoing shows and describes the general principles and features of the present invention, together with the advantages thereof. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, which are given by way of illustration of the principles of the present invention, but that various changes and modifications may be made without departing from the spirit and scope of the invention, and such changes and modifications are within the scope of the invention as claimed. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (7)

1. A food Raman spectrum detection amplifying instrument capable of resisting interference comprises a support frame (4), and is characterized in that: the device comprises a supporting frame (4), a workbench (2), a first circular block (14), a connecting cylinder (9), a plurality of abutting holes (18), a second circular block (10), a sliding groove (11), a pin rod assembly (6), a abutting rod (602) and a connecting frame (605), a connecting rod (13), a connecting rod (804) and a spring (801), wherein one end of the supporting frame (4) far away from the workbench (2) is provided with a mounting groove (5), the inside of the mounting groove (5) is provided with a spectrum detection amplifier body (12), the periphery of the lower end of the spectrum detection amplifier body (12) is provided with the first circular block (14) through a first bolt (7), the lower surface of the connecting cylinder (9) is fixedly provided with the connecting cylinder (9), the insides of the ends of the second circular block (10) and the first circular block (14) close to the connecting cylinder (9) are both provided with sliding grooves (11), the inside of the sliding groove (11) is provided with the pin rod assembly (6), the pin rod assembly (6) comprises the abutting rods (602) and the connecting frame (605), one end of the abutting rod (602) passes through the connecting frame (605), both ends of the connecting frame (605) are fixedly connected with the sleeve (607), the connecting rod assembly of two connecting rod (13), the connecting rod (804), the connecting rod assembly of the connecting rod (804), the connecting rod assembly (801), one spring (801) is provided with the connecting rod (804), the spring (13), the connecting rod assembly (804), the spring (801), the connecting rod (801), the spring (801), the connecting rod assembly (804) is provided with the spring (804), the spring (8) is provided with the spring (804), the lower end of the connecting rod (804) is fixedly provided with a light barrier (15);
the two sliding rods (607) are symmetrical about the center of the first circular block (14), the upper end of the pulling block (801) is fixedly connected with the lower end of the second spring (802), the lower surface of the pulling block (801) is tightly abutted to the upper surface of the mounting block (806), the upper end of the second spring (802) is fixedly connected with the lower surface of the top block (803), a through hole (808) is formed in the pulling block (801), a guide rod (809) is connected in the through hole (808) in a sliding manner, and the upper end of the guide rod (809) is fixedly connected with the top block (803);
the lower surface of the top block (803) is fixedly connected with the upper end of a connecting rod (804), and the connecting rod (804) is sleeved with a second spring (802);
one end of the connecting rod (804) far away from the top block (803) is fixedly connected with the bottom block (805), the upper surface of the bottom block (805) is abutted against the lower surface of the mounting block (806), an opening (807) is formed in the mounting block (806), and the connecting rod (804) is penetrated through the opening (807).
2. The food Raman spectrum detection amplification instrument capable of resisting interference according to claim 1, wherein: the lower fixed surface of workstation (2) installs landing leg (1), the last fixed surface of workstation (2) installs fixed block (3), the last fixed surface of fixed block (3) connects support frame (4), support frame (4) are curved shape and set up.
3. The food raman spectrum detection amplifying instrument capable of resisting interference according to claim 1, wherein: the lower fixed surface of support frame (4) installs mount (17), two the inboard of mount (17) is through second bolt (16) and spectrum detection amplifier body (12) fixed connection, the periphery of spectrum detection amplifier body (12) supports tightly with the inner wall of mounting groove (5).
4. The food Raman spectrum detection amplification instrument capable of resisting interference according to claim 1, wherein: one end of the abutting rod (602) is fixedly provided with a pull ring (601), one end, far away from the pull ring (601), of the abutting rod (602) abuts against the inside of the abutting hole (18), and the abutting holes (18) are distributed in a central ring shape of the connecting cylinder (9).
5. The food Raman spectrum detection amplifying instrument capable of resisting interference according to claim 4, wherein: the one end fixed mounting who supports tight pole (602) has connecting block (603), the one end surface and first spring (604) fixed connection of connecting block (603), the one end and link (605) fixed connection of first spring (604), first spring (604) and support tight pole (602) cover and establish and be connected.
6. The food raman spectrum detection amplifying instrument capable of resisting interference according to claim 1, wherein: the connecting frame (605) is arranged in an arc shape, the through groove (606) is formed in the connecting frame (605), and the upper end and the lower end of the sliding rod (607) are connected with the inner wall of the sliding groove (11) in a sliding mode.
7. The food Raman spectrum detection amplification instrument capable of resisting interference according to claim 1, wherein: the two light barriers (15) are symmetrical with the center of the first circular block (14), the two light barriers (15) are obliquely arranged, and the reflecting film (20) is fixedly mounted inside the two light barriers (15) through a third bolt (19).
CN202210120279.1A 2022-02-09 2022-02-09 Food Raman spectrum detection amplifying instrument capable of resisting interference Active CN114486853B (en)

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CN202210120279.1A CN114486853B (en) 2022-02-09 2022-02-09 Food Raman spectrum detection amplifying instrument capable of resisting interference

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CN114486853B true CN114486853B (en) 2022-11-18

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US3488103A (en) * 1968-03-19 1970-01-06 Webb James E Anti-glare improvement for optical imaging systems
US4568188A (en) * 1982-04-08 1986-02-04 Carl-Zeiss Stiftung, Heidenheim/Brenz Microscope photometer
JPH10274799A (en) * 1997-03-31 1998-10-13 Inon:Kk Ring light stroboscope provided with rotary light shielding plate for light balance and light quantity control
CN102866134A (en) * 2012-08-28 2013-01-09 中国科学院光电研究院 Optical system for laser-induced detection
WO2017221914A1 (en) * 2016-06-24 2017-12-28 日本精機株式会社 Blind spot assist device

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US7786418B2 (en) * 2008-11-21 2010-08-31 Raytheon Company Multimode seeker system with RF transparent stray light baffles
US8570507B1 (en) * 2012-09-06 2013-10-29 Bruker Optics, Inc. Method and apparatus for acquiring Raman spectra without background interferences
GB201511318D0 (en) * 2015-06-29 2015-08-12 Secr Defence Improved spatially-offset raman spectroscopy
US11536668B2 (en) * 2020-07-09 2022-12-27 Vitrox Technologies Sdn. Bhd. Apparatus for use in an automated optical inspection

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3488103A (en) * 1968-03-19 1970-01-06 Webb James E Anti-glare improvement for optical imaging systems
US4568188A (en) * 1982-04-08 1986-02-04 Carl-Zeiss Stiftung, Heidenheim/Brenz Microscope photometer
JPH10274799A (en) * 1997-03-31 1998-10-13 Inon:Kk Ring light stroboscope provided with rotary light shielding plate for light balance and light quantity control
CN102866134A (en) * 2012-08-28 2013-01-09 中国科学院光电研究院 Optical system for laser-induced detection
WO2017221914A1 (en) * 2016-06-24 2017-12-28 日本精機株式会社 Blind spot assist device

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