CN217818783U - Synchronous locking fixed photoelectric sensor - Google Patents

Synchronous locking fixed photoelectric sensor Download PDF

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Publication number
CN217818783U
CN217818783U CN202221616777.7U CN202221616777U CN217818783U CN 217818783 U CN217818783 U CN 217818783U CN 202221616777 U CN202221616777 U CN 202221616777U CN 217818783 U CN217818783 U CN 217818783U
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CN
China
Prior art keywords
photoelectric infrared
photoelectric
subassembly
infrared transmitter
infrared receiver
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Active
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CN202221616777.7U
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Chinese (zh)
Inventor
周奇
熊宇
朱炯翟
陈慧挺
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Zhongshan Torch Polytechnic
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Zhongshan Torch Polytechnic
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Priority to CN202221616777.7U priority Critical patent/CN217818783U/en
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Abstract

The utility model discloses a synchronous locking fixed photoelectric sensor, including photoelectric infrared transmitter and photoelectric infrared receiver photoelectric infrared transmitter with set up between the photoelectric infrared receiver and can draw close or open synchro control mechanism in step, respectively be provided with down the subassembly on photoelectric infrared transmitter and the photoelectric infrared receiver, it is provided with the side pressure subassembly to push down subassembly one side, push down the subassembly with be provided with the linkage subassembly between the side pressure subassembly, receiving terminal and transmitting terminal can realize the both sides edge of the tight transmission band of synchronized clip, and the installation is swift, simultaneously, and the in-process that presss from both sides each other is last to be provided with from the locking structure, more stable when making the installation, and strong adaptability simultaneously can be installed on the transmission band of different widths in step.

Description

Synchronous locking fixed photoelectric sensor
Technical Field
The utility model relates to an infrared photoelectric sensor, in particular to synchronous locking fixed photoelectric sensor.
Background
Infrared photoelectric sensor includes transmitting terminal and receiving terminal, and the interval sets up usually, for example installs in the both sides of conveyer belt for detect the object and send signal after through, but traditional mounting means need install transmitting terminal and receiving terminal one by one, and the installation effectiveness is slow, consequently need design a structure that can synchronous installation also can guarantee installation stability.
Therefore, further improvement is required in the existing infrared photoelectric sensor.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a synchronous locking fixed photoelectric sensor, guarantee the stability of installation when can realizing receiving terminal and the synchronous installation of transmitting terminal.
In order to achieve the above purpose, the utility model adopts the following scheme:
the utility model provides a synchronous locking fixed photoelectric sensor, includes photoelectric infrared transmitter and photoelectric infrared receiver photoelectric infrared transmitter with set up the synchronous control mechanism that can draw close or open in step between the photoelectric infrared receiver, respectively be provided with down the subassembly on photoelectric infrared transmitter and the photoelectric infrared receiver, it is provided with the side pressure subassembly to push down subassembly one side, push down the subassembly with be provided with the linkage subassembly between the side pressure subassembly.
Further, the synchronous control mechanism is including the slide rail, respectively be provided with the slider on photoelectric infrared transmitter and the photoelectric infrared receiver, two the slider is installed the activity on the slide rail, slide rail one side is provided with the screw rod mount pad, be provided with adjusting screw on the screw rod mount pad, adjusting screw includes positive thread part and reverse thread part, respectively be provided with the regulating block on photoelectric infrared transmitter and the photoelectric infrared receiver, two respectively be provided with positive screw hole and reverse thread hole on the regulating block, positive screw hole with the cooperation of positive thread part, reverse thread hole with the cooperation of reverse thread part.
Furthermore, the pressing assembly comprises a plurality of vertical shaft sleeves arranged on the photoelectric infrared transmitter or the photoelectric infrared receiver, vertical guide shafts are movably arranged in the vertical shaft sleeves, and a pressing plate is connected between the vertical guide shafts.
Furthermore, the number of the vertical shaft sleeves is two, and the two vertical shaft sleeves are respectively arranged on two sides of the photoelectric infrared transmitter or the photoelectric infrared receiver.
Further, the lower surface of the lower pressing plate is provided with a rubber anti-skid pad.
Furthermore, the lateral pressure assembly comprises a transverse guide hole arranged on the photoelectric infrared emitter or the photoelectric infrared receiver, a transverse guide shaft is movably arranged in the transverse guide hole, and a lateral pressure plate is arranged at the inner end of the transverse guide shaft.
Further, the linkage subassembly is including setting up the first articulated shaft of vertical guide shaft lateral wall, horizontal guide shaft lateral wall is provided with the second articulated shaft, first articulated shaft with it has the drive connecting rod to articulate between the second articulated shaft.
Further, the end of the adjusting screw is provided with an adjusting handle.
To sum up, compared with the prior art, the utility model discloses its beneficial effect is:
the utility model provides a not enough that current infrared photoelectric sensor exists, through the utility model discloses a structure setting possesses following advantage, and receiving terminal and transmitting terminal can realize the both sides edge of the tight transmission band of synchronized gripping, and the installation is swift, simultaneously, and the in-process that presss from both sides tightly each other is provided with from the tight structure of auto-lock, more stable when making the installation, and strong adaptability can be installed on the transmission band of different widths in step simultaneously, and simple structure, convenient to use.
Drawings
Fig. 1 is a perspective view of the present invention;
FIG. 2 is a front view of the present invention;
FIG. 3 is an enlarged view of a portion of FIG. 2;
fig. 4 is a right side view of the present invention.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-4, the utility model provides a synchronous locking fixed photoelectric sensor, including photoelectric infrared transmitter 1 and photoelectric infrared receiver 2, set up the synchronous control mechanism 3 that can draw close or open synchronously between photoelectric infrared transmitter 1 and photoelectric infrared receiver 2, respectively be provided with on photoelectric infrared transmitter 1 and photoelectric infrared receiver 2 and push down subassembly 6, push down subassembly 6 one side and be provided with side pressure subassembly 4, be provided with linkage subassembly 5 between push down subassembly 6 and the side pressure subassembly 4;
synchronous control mechanism 3 is including slide rail 301, respectively be provided with slider 302 on photoelectricity infrared transmitter 1 and the photoelectricity infrared receiver 2, two slider 302 is installed the activity on slide rail 301, slide rail 301 one side is provided with screw rod mount pad 307, be provided with adjusting screw 303 on the screw rod mount pad 307, adjusting screw 303 includes positive thread portion 3031 and reverse thread portion 3032, respectively be provided with regulating block 304 on photoelectricity infrared transmitter 1 and the photoelectricity infrared receiver 2, two respectively be provided with positive screw hole and reverse thread hole on the regulating block 304, positive thread hole with positive thread portion 3031 cooperation, reverse thread hole with reverse thread portion 3032 cooperation.
The installation principle is as follows: the photoelectric infrared transmitter 1 and the photoelectric infrared receiver 2 are respectively arranged on two sides of a conveying belt, and at the moment, the synchronous control mechanism 3 is adjusted;
the synchronous control mechanism 3 can enable the two photoelectric infrared transmitters 1 and the two photoelectric infrared receivers 2 to be mutually close or mutually open, and the two sides of the conveying belt are gradually clamped in the mutual closing process of the photoelectric infrared transmitters 1 and the photoelectric infrared receivers 2;
at this time, the side pressure components 4 on the two sides realize extrusion and retreat towards the outside;
the in-process that moves back, through the drive 5 stimulations of linkage subassembly 6 extrusion towards the below down, in the extrusion, the upper surface of pasting tight transmission band both sides baffle is fixed, locks two photoelectric infrared transmitter 1 and photoelectric infrared receiver 2 prevent to become flexible.
Push down subassembly 6 including set up in a plurality of vertical axle sleeves 601 on photoelectric infrared transmitter 1 or photoelectric infrared receiver 2, vertical axle sleeve 601 internalization is provided with vertical guide 602, and is a plurality of be connected with holding down plate 603 between the vertical guide 602.
Vertical axle sleeve 601 is two, two vertical axle sleeve 601 sets up respectively photoelectric infrared transmitter 1 or photoelectric infrared receiver 2's both sides.
The lower surface of the lower pressing plate 603 is provided with a rubber non-slip mat 100.
Side pressure subassembly 4 is in including setting up horizontal guide hole 401 on photoelectric infrared transmitter 1 or photoelectric infrared receiver 2, horizontal guide hole 401 internalization is provided with horizontal guide shaft 402, horizontal guide shaft 402 inner is provided with side pressure board 403.
Linkage subassembly 5 is including setting up the first articulated shaft 501 of vertical guide shaft 602 lateral wall, horizontal guide shaft 402 lateral wall is provided with second articulated shaft 502, first articulated shaft 501 with it has drive connecting rod 503 to articulate between the second articulated shaft 502.
Adjusting screw 303 tip is provided with adjusting handle 200.
The basic principles and main features of the present invention and the advantages of the present invention have been shown and described above, and it should be understood by those skilled in the art that the present invention is not limited by the above embodiments, and the description in the above embodiments and the description is only illustrative of the principles of the present invention, and the present invention can be modified in various ways without departing from the spirit and scope of the present invention, and these modifications and changes fall into the scope of the present invention as claimed. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (8)

1. The utility model provides a synchronous locking fixed photoelectric sensor, includes photoelectricity infrared transmitter (1) and photoelectricity infrared receiver (2), its characterized in that: photoelectric infrared transmitter (1) with set up between photoelectric infrared receiver (2) and can draw close or open synchro control mechanism (3) in step, respectively be provided with down on photoelectric infrared transmitter (1) and photoelectric infrared receiver (2) and push down subassembly (6), it is provided with side pressure subassembly (4) to push down subassembly (6) one side, push down subassembly (6) with be provided with linkage subassembly (5) between side pressure subassembly (4).
2. A synchronous lock-in fixed photosensor according to claim 1 wherein: the synchronous control mechanism (3) comprises a sliding rail (301), sliding blocks (302) are arranged on the photoelectric infrared transmitter (1) and the photoelectric infrared receiver (2) respectively, the two sliding blocks (302) are mounted on the sliding rail (301) to move, a screw mounting seat (307) is arranged on one side of the sliding rail (301), an adjusting screw (303) is arranged on the screw mounting seat (307), the adjusting screw (303) comprises a positive thread part (3031) and a negative thread part (3032), adjusting blocks (304) are arranged on the photoelectric infrared transmitter (1) and the photoelectric infrared receiver (2) respectively, a positive thread hole and a negative thread hole are arranged on the two adjusting blocks (304) respectively, the positive thread hole is matched with the positive thread part (3031), and the negative thread hole is matched with the negative thread part (3032).
3. A synchronous lock-in fixed photosensor according to claim 1 wherein: the pressing assembly (6) comprises a plurality of vertical shaft sleeves (601) arranged on the photoelectric infrared transmitter (1) or the photoelectric infrared receiver (2), vertical guide shafts (602) are movably arranged in the vertical shaft sleeves (601), and pressing plates (603) are connected between the vertical guide shafts (602).
4. A synchronous lock-in fixed photosensor according to claim 3 wherein: the photoelectric infrared transmitter is characterized in that the number of the vertical shaft sleeves (601) is two, and the two vertical shaft sleeves (601) are respectively arranged on two sides of the photoelectric infrared transmitter (1) or the photoelectric infrared receiver (2).
5. A synchronous lock-in fixed photosensor according to claim 4 wherein: the lower surface of the lower pressing plate (603) is provided with a rubber anti-skid pad (100).
6. A synchronous lock-in fixed photosensor according to claim 5 characterized in that: the lateral pressure component (4) comprises a transverse guide hole (401) arranged on the photoelectric infrared transmitter (1) or the photoelectric infrared receiver (2), a transverse guide shaft (402) is movably arranged in the transverse guide hole (401), and a lateral pressure plate (403) is arranged at the inner end of the transverse guide shaft (402).
7. A synchronous lock-in fixed photosensor according to claim 6 wherein: linkage subassembly (5) are including setting up first articulated shaft (501) of vertical guide shaft (602) lateral wall, horizontal guide shaft (402) lateral wall is provided with second articulated shaft (502), first articulated shaft (501) with it has drive connecting rod (503) to articulate between second articulated shaft (502).
8. A synchronous lock-in fixed photosensor according to claim 2 characterized by: and an adjusting handle (200) is arranged at the end part of the adjusting screw rod (303).
CN202221616777.7U 2022-06-27 2022-06-27 Synchronous locking fixed photoelectric sensor Active CN217818783U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221616777.7U CN217818783U (en) 2022-06-27 2022-06-27 Synchronous locking fixed photoelectric sensor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221616777.7U CN217818783U (en) 2022-06-27 2022-06-27 Synchronous locking fixed photoelectric sensor

Publications (1)

Publication Number Publication Date
CN217818783U true CN217818783U (en) 2022-11-15

Family

ID=83993167

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221616777.7U Active CN217818783U (en) 2022-06-27 2022-06-27 Synchronous locking fixed photoelectric sensor

Country Status (1)

Country Link
CN (1) CN217818783U (en)

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