CN216852164U - Oil field supervisory equipment - Google Patents
Oil field supervisory equipment Download PDFInfo
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- CN216852164U CN216852164U CN202123169827.XU CN202123169827U CN216852164U CN 216852164 U CN216852164 U CN 216852164U CN 202123169827 U CN202123169827 U CN 202123169827U CN 216852164 U CN216852164 U CN 216852164U
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- camera
- bottom plate
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- roof
- compression spring
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- 230000006835 compression Effects 0.000 claims abstract description 38
- 238000007906 compression Methods 0.000 claims abstract description 38
- 230000035939 shock Effects 0.000 claims abstract description 38
- 238000009434 installation Methods 0.000 claims abstract description 13
- 238000013016 damping Methods 0.000 claims description 27
- 238000012806 monitoring device Methods 0.000 claims description 12
- 238000010521 absorption reaction Methods 0.000 claims description 8
- 230000000694 effects Effects 0.000 abstract description 3
- 239000006096 absorbing agent Substances 0.000 abstract 7
- 238000010030 laminating Methods 0.000 abstract 1
- 238000012544 monitoring process Methods 0.000 description 25
- 239000003921 oil Substances 0.000 description 25
- 230000002829 reductive effect Effects 0.000 description 16
- 230000001681 protective effect Effects 0.000 description 13
- 238000005381 potential energy Methods 0.000 description 4
- 230000000670 limiting effect Effects 0.000 description 2
- 238000000926 separation method Methods 0.000 description 2
- 230000009286 beneficial effect Effects 0.000 description 1
- 230000008602 contraction Effects 0.000 description 1
- 239000010779 crude oil Substances 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 238000012423 maintenance Methods 0.000 description 1
- 230000036961 partial effect Effects 0.000 description 1
- 230000002035 prolonged effect Effects 0.000 description 1
- 239000004576 sand Substances 0.000 description 1
- 230000006641 stabilisation Effects 0.000 description 1
- 238000011105 stabilization Methods 0.000 description 1
- 230000003068 static effect Effects 0.000 description 1
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Abstract
The utility model relates to an oil field supervisory equipment, relate to the supervisory equipment field, it includes the POE power, POE separator and camera, installation component and damper, POE power separates out power cord and network line through the POE separator, the power source intercommunication of power cord and camera, the network line interface intercommunication of signal line and camera, damper includes the roof, bottom plate and shock absorber post, the roof is located the shock absorber post top, the roof is connected with the shock absorber post, the bottom plate is located the shock absorber post below, the bottom plate is connected with the shock absorber post, the shock absorber post is provided with the resistance to compression spring along circumference, the inner circle and the shock absorber post laminating of resistance to compression spring, the top and the roof of resistance to compression spring are connected, the bottom and the bottom plate of resistance to compression spring are connected, the camera is located the roof top, the camera is connected with the roof, the installation component is located the damper below, the installation component is used for installing damper. This application has the effect that reduces supervisory equipment and receive vibrations to influence.
Description
Technical Field
The application relates to the field of monitoring equipment, in particular to oil field monitoring equipment.
Background
When crude oil is exploited, the oil field is often required to be monitored, so that the possibility of oil theft, oil pipeline damage and oil field accident occurrence is prevented from being reduced, early warning is achieved in advance, precaution is carried out in advance, and monitoring equipment is required to be installed near the oil field when the oil field is monitored.
The related technology discloses an oil field equipment management monitoring alarm device, which comprises a monitoring and part box, wherein the inner bottom wall of the part box is fixedly connected with a supporting rod and a supporting frame, the top of the supporting rod is fixedly connected with a first stepping motor, the output end of the first stepping motor is fixedly connected with a connecting block, the top of the supporting frame is fixedly connected with a second stepping motor, the output end of the second stepping motor is fixedly connected with a first gear, the bottom of the monitoring is fixedly communicated with a limiting pipe, the inner bottom wall of the limiting pipe is fixedly connected with a resetting compression-resistant spring, the top of the resetting compression-resistant spring is fixedly connected with a connecting plate, the top of the connecting plate is fixedly connected with a connecting rod, the connecting rod penetrates through the part box and extends to the top of the part box, the outer surface of one end of the connecting rod, which is positioned inside the part box, is fixedly connected with a second gear, and the second gear is meshed with the first gear and connected, the outer surface of one end of the connecting rod, which is positioned in the part box, is rotatably connected with the connecting block, the top of the connecting rod is fixedly connected with the bottom of the monitoring part box, and the bottom of the part box is fixedly connected with two sets of symmetrical electric push rods.
With respect to the related art in the above, the inventors consider that there is a drawback that the monitoring apparatus is easily affected by shock.
SUMMERY OF THE UTILITY MODEL
In order to reduce supervisory equipment and receive the influence of vibrations, this application provides an oil field supervisory equipment.
The application provides an oil field supervisory equipment adopts following technical scheme:
an oil field monitoring device comprises a POE power supply, a POE separator and a camera, wherein the POE power supply separates a power line and a network line through the POE separator, the power line is communicated with a power interface of the camera, the network line is communicated with a network line interface of the camera, the oil field monitoring device also comprises an installation component and a damping component, the damping component comprises a top plate, a bottom plate, a damping column and a compression spring, the top plate is positioned above the damping column, the top plate is connected with the damping column, the bottom plate is positioned below the damping column, the bottom plate is connected with the damping column, the compression spring is positioned outside the damping column, the compression spring is coaxially arranged with the damping column, the top of the compression spring is connected with the top plate, the bottom of the compression spring is connected with the bottom plate, the camera is positioned at the top of the top plate, the camera is connected with the top plate, the installation component is positioned below the damping component, the mounting assembly is used for mounting the shock absorption assembly.
Through adopting above-mentioned technical scheme, when supervisory equipment shakes, the vibrations of roof and bottom plate are transmitted to the resistance to compression spring, and the resistance to compression spring turns into the elastic potential energy with the kinetic energy of vibrations, makes the resistance to compression spring be reciprocating motion along the axial of shock-absorbing column to reduce the vibrations of roof and bottom plate, made the camera of installing at the roof remain stable, reduced supervisory equipment and received the influence of vibrations.
Optionally, the damping component further comprises a plurality of damping springs, the damping springs are evenly arranged at the edge of the top of the bottom plate, the bottoms of the damping springs are connected with the bottom plate, and one ends, far away from the bottom plate, of the damping springs are connected with the top plate.
Through adopting above-mentioned technical scheme, when roof and bottom plate vibrations, damping spring has reduced the possibility that roof and bottom plate edge rocked, makes the camera of installing at the roof remain stable, has reduced the influence that supervisory equipment received vibrations.
Optionally, the shock-absorbing assembly further comprises a protective cover, the protective cover is located between the top plate and the bottom plate and located outside the compression spring, the protective cover is connected with the top plate and the bottom plate.
Through adopting above-mentioned technical scheme, reduced the resistance to compression spring and influenced the probability that produces the damage by natural factors such as rainwater, gravel and sand, prolonged the life of resistance to compression spring, improved damper work's stability.
Optionally, the mounting assembly comprises a driving cylinder and a supporting plate, the supporting plate is located below the bottom plate and connected with the bottom plate, and the movable end of the driving cylinder is rotatably connected with one side, away from the bottom plate, of the supporting plate.
Through adopting above-mentioned technical scheme, when the position of camera is riseed to needs, start the driving cylinder, driving cylinder drive backup pad rises, and the backup pad is with damper and camera lifting to shooting position, closes the driving cylinder, and the camera keeps static state to monitor the oil field, and when the shooting position that needs change the camera, the rotation piece has improved the monitoring range of camera, is convenient for monitor the oil field.
Optionally, a rotating hole is formed in the bottom of the supporting plate, the mounting assembly further comprises a bearing, an outer ring of the bearing is coaxially arranged in the rotating hole, the outer ring of the bearing is fixedly connected with the supporting plate, and an inner ring of the bearing is coaxially and fixedly connected with the movable end of the driving cylinder.
Through adopting above-mentioned technical scheme, when the shooting position of camera needs to be changed, rotate the backup pad, the bearing drives the backup pad and rotates, has improved the monitoring range of camera, is convenient for monitor the oil field.
Optionally, the bearing outside is coaxial to be provided with fixed pipe, fixed pipe is located the backup pad below, fixed pipe is connected with the backup pad, the fixed orifices has been seted up to the lateral wall of fixed pipe, the axis of fixed orifices and the axis of fixed pipe intersect, be provided with fixing bolt in the fixed orifices, fixing bolt passes through the fixed orifices and is connected with fixed pipe bolted connection, fixing bolt's screw rod and the outer wall butt of actuating cylinder expansion end.
Through adopting above-mentioned technical scheme, when the direction of control of camera needs to be fixed, twist and move fixing bolt, make fixing bolt support tightly with the outer lane of bearing, the bearing keeps quiescent condition, and the direction of control of camera is fixed, has reduced the possibility that the camera rocked, has improved the stability of camera work.
Optionally, the top plate is detachably connected with the camera.
Through adopting above-mentioned technical scheme, when needs maintain the camera, pull down the camera from the roof, improved the convenience of maintenance camera.
Optionally, a mounting hole is formed in the top of the top plate, a through hole is formed in the shock absorption column, a connecting hole is formed in the bottom plate, the mounting hole, the through hole and the connecting hole are coaxially arranged and communicated, a threading hole is formed in the side face of the bottom plate and communicated with the connecting hole, the power line penetrates through the threading hole, the connecting hole, the through hole and the mounting hole and is communicated with a power interface of the camera, and the network line penetrates through the threading hole, the connecting hole, the through hole and the mounting hole and is communicated with a network line interface of the camera.
By adopting the technical scheme, the junction of the network cable and the camera network interface is located in the shock absorption assembly, the junction of the power supply network cable and the camera power interface is located in the shock absorption assembly, the protection performance of the junction of the camera and the circuit is improved, and the working stability of the monitoring equipment is improved.
In summary, the present application includes at least one of the following beneficial technical effects:
by arranging the POE power supply, the POE separator, the camera, the top plate, the bottom plate, the shock absorption columns, the compression-resistant springs and the mounting assembly, the vibration of the top plate and the bottom plate is reduced, the camera mounted on the top plate is kept stable, and the influence of vibration on the monitoring equipment is reduced;
by arranging the driving cylinder, the supporting plate and the rotating part, when the shooting direction of the camera needs to be changed, the rotating part is rotated, so that the monitoring range of the camera is improved, and the oil field can be monitored conveniently;
through seting up mounting hole, through-hole, connecting hole and through wires hole, make the junction of network line and camera network interface be located damper, make power supply line and camera power interface's junction be located damper's inside, improved the protective properties to camera and circuit connection department, improved supervisory equipment job stabilization nature.
Drawings
FIG. 1 is a schematic perspective view of an oilfield monitoring device of the present application;
FIG. 2 is a schematic cross-sectional view of an oilfield monitoring device of the present application;
fig. 3 is a schematic partial cross-sectional view of an oilfield monitoring device after a POE power supply and a POE splitter are hidden.
Description of reference numerals: 1. a POE power supply; 2. a POE separator; 3. a camera; 4. mounting the component; 41. a drive cylinder; 42. a support plate; 43. a bearing; 5. a shock absorbing assembly; 51. a top plate; 52. a base plate; 53. a shock-absorbing post; 54. a compression spring; 55. a protective cover; 56. a damping spring; 6. a power line; 7. a network line; 8. rotating the hole; 9. a fixed tube; 10. a fixing hole; 11. fixing the bolt; 12. mounting holes; 13. a through hole; 14. connecting holes; 15. and (6) threading holes.
Detailed Description
The present application is described in further detail below with reference to figures 1-3.
The embodiment of the application discloses an oil field supervisory equipment. Refer to fig. 1, supervisory equipment includes POE power 1, POE separator 2, camera 3, installation component 4, damper 5, power cord 6 and network line 7, POE power 1 passes through the net twine and is connected with POE separator 2, POE separator 2 is connected through the power interface of power cord 6 and camera 3 who separates, POE separator 2 is through the network interface connection of the network line 7 and camera 3 who separates, camera 3 sets up at damper 5 top, camera 3 is used for the control oil field, damper 5 is located installation component 4 tops, damper 5 is used for reducing the vibrations of camera 3, installation component 4 is used for placing damper 5 and the control direction of adjustment camera 3. When monitoring the oil field, be connected POE power 1's net twine and POE separator 2, power cord 6 with POE separator 2 separation and camera 3's power source intercommunication, with POE separator 2 separation's net twine 7 and camera 3's net twine interface intercommunication, install camera 3 on damper 5, damper 5 carries out shock attenuation processing to camera 3, install damper 5 on installation component 4, the monitoring equipment has been reduced and has been received the influence of vibrations.
Referring to fig. 2 and 3, the shock absorbing assembly 5 includes a top plate 51, a bottom plate 52, a shock absorbing column 53, a compression spring 54, a protective cover 55 and four shock absorbing springs 56, the top plate 51 and the bottom plate 52 are cuboid with identical shape and size, the shock absorbing column 53 is cylindrical, the cross-sectional area of the shock absorbing column 53 is smaller than the bottom area of the top plate 51 and the bottom plate 52, the top plate 51, the bottom plate 52 and the shock absorbing column 53 are all made of rubber, the top plate 51 and the bottom plate 52 are horizontally arranged at intervals, the shock absorbing column 53 is vertically arranged between the top plate 51 and the bottom plate 52, the axis of the shock absorbing column 53 passes through the centers of the top plate 51 and the bottom plate 52, the top of the shock absorbing column 53 is bonded with the top plate 51, the bottom of the shock absorbing column 53 is bonded with the bottom plate 52, the compression spring 54 is located outside the shock absorbing column 53, the compression spring 54 is coaxially arranged with the shock absorbing column 53, the protective cover 55 is a cylindrical rubber tube, the protective cover 55 is located outside the compression spring 54, protective cover 55 and the coaxial setting of resistance to compression spring 54, the top and the roof 51 of protective cover 55 bond, the bottom and the bottom plate 52 of protective cover 55 bond, resistance to compression spring 54's top and roof 51 bond, resistance to compression spring 54's bottom and bottom plate 52 bond, four even and vertical settings of damping spring 56 are in the edge at bottom plate 52 top, damping spring 56's bottom and bottom plate 52 bond, damping spring 56 keeps away from the one end and the roof 51 bonding of bottom plate 52, camera 3 is located roof 51 top. When vibration is generated near an oil field, the kinetic energy of the vibration is transmitted to the compression spring 54 through the bottom plate 52, the compression spring 54 converts the kinetic energy into elastic potential energy through telescopic motion along the length direction of the shock absorption column 53, so that the vibration of the top plate 51 and the camera 3 is reduced, the kinetic energy generated by the vibration of the edge of the bottom plate 52 is converted into the elastic potential energy through the four shock absorption springs 56 at the edge of the bottom plate 52, the possibility of the edge shaking of the top plate 51 and the bottom plate 52 is reduced, the camera 3 installed on the top plate 51 is kept stable, the influence of the vibration on monitoring equipment is reduced, and the possibility of the influence of the external environment on the compression spring 54 is reduced through the protective cover 55.
Referring to fig. 2 and 3, the mounting assembly 4 includes a driving cylinder 41, a supporting plate 42 and a bearing 43, the driving cylinder 41 is a multi-stage driving cylinder, the supporting plate 42 is cylindrical, the supporting plate 42 is located under the bottom plate 52, the supporting plate 42 is welded to the bottom plate 52, a circular rotation hole 8 is formed in the bottom of the supporting plate 42 along the axial direction, the upper half of the bearing 43 is located in the rotation hole 8, the bearing 43 is coaxially arranged with the circular rotation hole 8, the outer ring of the bearing 43 is in interference fit with the circular rotation hole 8, the driving cylinder 41 is located under the supporting plate 42, the movable end of the driving cylinder 41 is coaxially arranged with the bearing 43, the movable end of the driving cylinder 41 is in interference fit with the inner ring of the bearing 43, a fixing tube 9 is arranged on the outer side of the lower half of the bearing 43, the fixing tube 9 is cylindrical, the fixing tube 9 is coaxially arranged with the bearing 43, the fixing tube 9 is located under the supporting plate 42, the fixing tube 9 is welded to the supporting plate 42, a round fixing hole 10 is horizontally arranged on the side surface of the fixing tube 9, a fixing bolt 11 is arranged in the fixing hole 10, the fixing bolt 11 is in bolt connection with the fixing tube 9 through the fixing hole 10, when the fixing bolt 11 is in a screwing state, the screw head of the fixing bolt 11 is abutted against the movable end of the driving cylinder 41, the screw head of the fixing bolt 11 is positioned on one side of the fixing tube 9 far away from the bearing 43,
when the monitoring height of camera 3 needs to be changed, start driving cylinder 41, driving cylinder 41 drives camera 3 to rise and descend, when the monitoring direction of camera 3 needs to be changed, unscrew fixing bolt 11, rotate backup pad 42, bearing 43 drives backup pad 42 to rotate, when camera 3 rotates required monitoring direction, screw up fixing bolt 11, camera 3 monitors fixed area, the monitoring range of camera 3 is improved, be convenient for monitor the oil field, the possibility that camera 3 rocked has been reduced, the stability of camera 3 work has been improved.
Referring to fig. 2 and 3, a circular mounting hole 12 is formed in the top of the top plate 51 along the vertical direction, a circular through hole 13 is formed in the shock-absorbing column 53 along the vertical direction, a circular connecting hole 14 is formed in the bottom plate 52 along the vertical direction, the mounting hole 12, the through hole 13 and the connecting hole 14 are coaxially arranged and communicated, a circular threading hole 15 is formed in the side surface of the bottom plate 52, the threading hole 15 is communicated with the connecting hole 14, the power cord 6 passes through the threading hole 15 and the connecting hole 14, the through hole 13 and the mounting hole 12 are communicated with a power interface of the camera 3, the network cable 7 passes through the threading hole 15, the connecting hole 14, the through hole 13 and the mounting hole 12 and is communicated with a network cable interface of the camera 3, the power interface and the network cable interface of the camera 3 are both positioned under the camera 3, the power interface and the network cable interface of the camera 3 are both positioned in the mounting hole 12, the bottom of the camera 3 completely blocks an opening of the mounting hole 12, and the camera 3 is connected with the top plate 51 through bolts.
When the camera 3 needs to be installed and detached, the power line 6 and the network line 7 pass through the threading hole 15, the connecting hole 14 and the through hole 13 and fall into the installation hole 12, the power line 6 is communicated with the power interface of the camera 3, the network line 7 is communicated with the network interface of the camera 3, and then the camera 3 is installed on the top plate 51, so that the protection performance of the connection position of the camera 3 and a circuit is improved, and the working stability of the monitoring equipment is improved.
The implementation principle of the oil field monitoring equipment in the embodiment of the application is as follows: when the oil field needs to be monitored, a network cable interface of a POE power supply 1 is connected with a POE separator 2, a power line 6 separated from the POE separator 2 passes through a threading hole 15, a connecting hole 14, a through hole 13 and a mounting hole 12 to be connected with a power interface of a camera 3, a network cable 7 separated from the POE separator 2 passes through the threading hole 15, the connecting hole 14, the through hole 13 and the mounting hole 12 to be connected with a network interface of the camera 3, the camera 3 is mounted on a top plate 51, when the oil field vibrates, kinetic energy generated by the vibration is transmitted to a compression spring 54 and a damping spring 56 through a bottom plate 52, the compression spring 54 and the damping spring 56 convert momentum generated by the vibration into elastic potential energy through contraction and extension, the vibration amplitude of the top plate 51 is reduced, so that the influence of the camera 3 on the vibration is reduced, the compression spring 54 is protected by a protective cover 55, when the monitoring height of the camera 3 needs to be adjusted, the driving cylinder 41 is started to adjust the height of the camera 3, the supporting plate 42 is rotated when the monitoring angle of the camera 3 needs to be adjusted, and the fixing bolt 11 is screwed down when the monitoring angle of the camera 3 needs to be adjusted, so that the fixing bolt 11 is abutted to the movable end of the driving cylinder 41. This application has the effect that reduces the supervisory equipment and receive the influence of vibrations.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.
Claims (8)
1. The utility model provides an oil field supervisory equipment, includes POE power (1), POE separator (2) and camera (3), POE power (1) separates out power cord (6) and network line (7) through POE separator (2), power cord (6) and the power source of camera (3) communicate, network line (7) and the network line interface intercommunication of camera (3), its characterized in that: still include installation component (4) and damper component (5), damper component (5) include roof (51), bottom plate (52), shock attenuation post (53) and resistance to compression spring (54), roof (51) are located shock attenuation post (53) top, roof (51) are connected with shock attenuation post (53), bottom plate (52) are located shock attenuation post (53) below, bottom plate (52) are connected with shock attenuation post (53), resistance to compression spring (54) are located the outside of shock attenuation post (53), resistance to compression spring (54) and shock attenuation post (53) coaxial arrangement, the top of resistance to compression spring (54) is connected with roof (51), the bottom and the bottom of resistance to compression spring (54) are connected with bottom plate (52), camera (3) are located roof (51) top, camera (3) are connected with roof (51), installation component (4) are located damper component (5) below, the mounting component (4) is used for mounting the shock absorption component (5).
2. The oilfield monitoring device of claim 1, wherein: the damping assembly (5) further comprises a plurality of damping springs (56), the damping springs (56) are evenly arranged at the edge of the top of the bottom plate (52), the bottoms of the damping springs (56) are connected with the bottom plate (52), and one ends, far away from the bottom plate (52), of the damping springs (56) are connected with the top plate (51).
3. The oilfield monitoring device of claim 2, wherein: damper (5) still include safety cover (55), safety cover (55) are located between roof (51) and bottom plate (52), safety cover (55) are located resistance to compression spring (54) outside, safety cover (55) top is connected with roof (51), safety cover (55) bottom is connected with bottom plate (52).
4. The oilfield monitoring device of claim 1, wherein: the mounting assembly (4) comprises a driving cylinder (41) and a supporting plate (42), the supporting plate (42) is located below the bottom plate (52), the supporting plate (42) is connected with the bottom plate (52), and the movable end of the driving cylinder (41) is rotatably connected with one side, far away from the bottom plate (52), of the supporting plate (42).
5. The oilfield monitoring device of claim 4, wherein: rotation hole (8) have been seted up to backup pad (42) bottom, installation component (4) still include bearing (43), the outer lane coaxial setting of bearing (43) is in rotation hole (8), the outer lane of bearing (43) with backup pad (42) fixed connection, the inner circle of bearing (43) and the coaxial and fixed connection of expansion end of actuating cylinder (41).
6. The oilfield monitoring device of claim 5, wherein: the coaxial fixed pipe (9) that is provided with in bearing (43) outside, fixed pipe (9) are located backup pad (42) below, fixed pipe (9) are connected with backup pad (42), fixed orifices (10) have been seted up to the lateral wall of fixed pipe (9), the axis of fixed orifices (10) is crisscross with the axis of fixed pipe (9), be provided with fixing bolt (11) in fixed orifices (10), fixing bolt (11) are through fixed orifices (10) and fixed pipe (9) bolted connection, the screw rod of fixing bolt (11) and the outer wall butt of actuating cylinder (41) expansion end.
7. The oilfield monitoring device of claim 1, wherein: the top plate (51) is detachably connected with the camera (3).
8. The oilfield monitoring device of claim 1, wherein: the mounting hole (12) has been seted up at roof (51) top, through-hole (13) has been seted up in shock attenuation post (53), connecting hole (14) has been seted up along bottom plate (52), mounting hole (12), through-hole (13) and connecting hole (14) coaxial setting and intercommunication, through wires hole (15) have been seted up to bottom plate (52) side, through wires hole (15) and connecting hole (14) intercommunication, power cord (6) pass through wires hole (15), connecting hole (14), through-hole (13) and mounting hole (12) and the power source interface intercommunication of camera (3), network line (7) pass through wires hole (15), connecting hole (14), through-hole (13) and mounting hole (12) and the network line interface intercommunication of camera (3).
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202123169827.XU CN216852164U (en) | 2021-12-15 | 2021-12-15 | Oil field supervisory equipment |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202123169827.XU CN216852164U (en) | 2021-12-15 | 2021-12-15 | Oil field supervisory equipment |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN216852164U true CN216852164U (en) | 2022-06-28 |
Family
ID=82109094
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202123169827.XU Active CN216852164U (en) | 2021-12-15 | 2021-12-15 | Oil field supervisory equipment |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN216852164U (en) |
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2021
- 2021-12-15 CN CN202123169827.XU patent/CN216852164U/en active Active
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