Ring main unit UPS power integrated monitoring device
Technical Field
The utility model relates to the related field of UPS power supply monitoring, in particular to a ring main unit UPS power supply comprehensive monitoring device.
Background
The ring main unit is a group of electric equipment which is arranged in a metal or nonmetal insulating cabinet body or is made into an assembled spacing ring main unit, and the core part of the ring main unit adopts a load switch and a fuse, so that the ring main unit has the advantages of simple structure, small volume, low price, capability of improving power supply parameters and performance, power supply safety and the like;
The UPS is required to be installed in the ring main unit to realize stable and safe power supply activity, namely an uninterruptible power supply, is an uninterruptible power supply with an energy storage device, and is mainly used for providing uninterruptible power for equipment with higher requirements on power stability, and the ring main unit is required to supply power to an electric operating mechanism through the UPS after alternating current is powered off;
The utility model provides a looped netowrk cabinet UPS power integrated monitoring device for the prior application number CN202021813561.0, includes the box, the bottom of box is provided with the tray, the inner wall bottom of tray is provided with the supporting leg, the top of supporting leg is provided with the UPS power body, the front of UPS power body is provided with temperature sensor, the side of box is provided with the hinge, the side of box has the chamber door through hinge swing joint, the inner wall bottom side of box is provided with the baffle, the front of fixed plate is provided with control mainboard, voltage monitoring module, current monitoring module and electric quantity monitoring module respectively, and this looped netowrk cabinet UPS power integrated monitoring device is through setting up the box, can be convenient for place monitoring module and UPS power in its inside to be favorable to accomodating to cooperate temperature sensor, bleed fan and hair-dryer, can improve the radiating effect, improve the stability of UPS power operation;
Above-mentioned current looped netowrk cabinet UPS power integrated monitoring device, through monitoring component, temperature sensor, the mutual cooperation of bleed fan and hair-dryer, realize the UPS power and synthesize monitoring and supplementary heat dissipation cooperation, but when carrying out the installation of UPS power and cabinet body, whole step is comparatively loaded down with trivial details, need carry out the locking of many bolts, when leading to follow-up maintenance or change, need spend more time, and for this reason, need improve UPS power integral erection mode, realize dismantling the cooperation fast.
Disclosure of utility model
Therefore, in order to solve the defects, the utility model provides the ring main unit UPS power supply comprehensive monitoring device.
In order to achieve the purpose, the ring main unit UPS comprehensive monitoring device comprises a cabinet body, wherein the bottom of the cabinet body is connected with a base, the top of the cabinet body is provided with a top cover, the front side of the cabinet body is rotationally connected with a cabinet door, the upper end of the cabinet door is provided with a display screen, both sides of the lower end of the cabinet door are provided with radiating windows, a power supply main body is placed inside the cabinet door, temperature sensors are fastened on both sides of the inside of the cabinet door, a wireless alarm is arranged at the upper end of the right side of the inside of the cabinet body, a connecting plate is oppositely arranged on the left side of the wireless alarm, a voltage monitoring module, a current monitoring module, a control main board and an electric quantity monitoring module are respectively arranged on the front side of the connecting plate, a fan is correspondingly arranged on the inner side of the radiating windows, the ring main unit UPS comprehensive monitoring device further comprises a convenient installation device arranged inside the base, an air cylinder arranged in the middle of the installation frame, a clamping assembly connected to the air cylinder connecting end and arranged inside the base, and clamp assemblies arranged on both sides of the outer ends of the clamping assembly, and the clamp assemblies are arranged on the two sides of the inside the cabinet body.
Preferably, the clamping assembly comprises a transmission block connected to the connecting end of the air cylinder, connecting arms rotatably connected to two sides of the transmission block, tooth blocks connected to the outer sides of the connecting arms, a rack bar meshed with the lower end of the tooth blocks, a movable frame fixedly arranged on the outer side of the rack bar and a guide rod inserted into the lower end of the rack bar.
Preferably, the fixture component comprises clamping plates connected to two sides of the outer end of the clamping component, clamping grooves formed in the clamping plates, a heat conducting copper plate embedded in the clamping plates, heat conducting holes formed in the outer sides of the heat conducting copper plate, radiating fins embedded in the clamping plates, connecting strips fixedly arranged at the upper end and the lower end of the radiating fins, and locking rods locked at the tops of the radiating fins.
Preferably, the connecting arm, the tooth block, the rack bar and the movable frame are symmetrically arranged left and right along the transmission block, and one side, far away from the transmission block, of the connecting arm is rotationally connected with the tooth block.
Preferably, the tooth block is integrally arranged in a fan-shaped block shape, and the middle part of the tooth block is rotationally connected with the inside of the base.
Preferably, the guide rod is transversely fastened in the base, and the guide rod is respectively spliced with the tooth block and the movable frame.
Preferably, the clamping grooves are symmetrically formed along the inner part of the clamping plate at equal intervals up and down, and the clamping grooves are not formed in a penetrating manner up and down.
Preferably, the inner side of the radiating fin is propped against the inner side surface of the heat conducting copper plate, and the radiating fin is opposite to the heat conducting hole in the heat conducting copper plate.
The utility model has the beneficial effects that:
the utility model has the advantages that the convenient installation device is arranged, namely, the driving is carried out along with the cylinder, so that the transmission block arranged in the clamping assembly can realize push-pull transmission of the connecting arm, and therefore, the tooth block can be meshed with the transmission rack rod, the movable frame arranged on the outer side of the rack rod is moved, and the clamping plate in the clamping assembly is indirectly driven, so that the rapid clamping installation of the power supply main body is realized, and the advantages of convenient clamping installation or disassembly of the power supply main body and improvement of the integral maintenance efficiency are achieved.
The heat-conducting copper plate, the heat-conducting holes and the heat-radiating fins are matched in the clamp plate, so that the auxiliary heat-conducting and heat-radiating of the heat generated by the power supply main body can be realized, and the heat-radiating fins can be conveniently detached and replaced under the combination of the clamping grooves, the connecting strips and the locking bars, so that the advantages of auxiliary heat-conducting and heat-radiating are achieved, and the heat-radiating efficiency is enhanced.
Drawings
FIG. 1 is a schematic diagram of the structure of the present utility model;
FIG. 2 is a schematic diagram of the internal structure of the present utility model in elevation;
FIG. 3 is a schematic top view of a portable mounting device of the present utility model;
FIG. 4 is a schematic perspective view of a clamp assembly of the present utility model;
Fig. 5 is a schematic view of a three-dimensional disassembly structure of the clamp assembly of the utility model.
The intelligent cabinet temperature control device comprises a cabinet body-1, a base-2, a top cover-3, a cabinet door-4, a display screen-5, a radiating window-6, a power supply main body-7, a temperature sensor-8, a wireless alarm-9, a connecting plate-10, a voltage monitoring module-11, a current monitoring module-12, a control main board-13, an electric quantity monitoring module-14, a fan-15, a convenient installation device-16, an installation frame-161, an air cylinder-162, a clamping assembly-163, a transmission block-1631, a connecting arm-1632, a tooth block-1633, a rack bar-1634, a moving frame-1635, a guide rod-1636, a clamp assembly-164, a clamping plate-1641, a clamping groove-1642, a heat conducting copper plate-1643, a heat conducting hole-1644, a radiating fin-1645, a connecting bar-1646 and a lock rod-1647.
Detailed Description
In order to further explain the technical scheme of the utility model, the following is explained in detail through specific examples.
Referring to fig. 1-2, the utility model provides a ring main unit UPS power integrated monitoring device, which comprises a cabinet body 1, a base 2 is connected to the bottom of the cabinet body 1, a top cover 3 is arranged at the top of the cabinet body 1, a cabinet door 4 is rotatably connected to the front side of the cabinet body 1, a display screen 5 is arranged at the upper end of the cabinet door 4, radiating windows 6 are arranged on two sides of the lower end of the cabinet door 4, a power main body 7 is arranged in the cabinet door 4, temperature sensors 8 are fastened on two sides of the inner part of the cabinet door 4, a wireless alarm 9 is arranged at the upper right side of the inner part of the cabinet body 1, a connecting plate 10 is oppositely arranged on the left side of the wireless alarm 9, a voltage monitoring module 11, a current monitoring module 12, a control main board 13 and an electric quantity monitoring module 14 are respectively arranged at the front side of the connecting plate 10, a fan 15 is correspondingly arranged at the inner side of the radiating windows 6, and a convenient installation device 16 arranged in the base 2 is further provided.
Specifically, the control main board 13 is electrically connected with the display screen 5, the wireless alarm 9, the temperature sensor 8, the voltage monitoring module 11, the current monitoring module 12, the electric quantity monitoring module 14 and the fan 15 through wires, and the voltage monitoring module 11, the current monitoring module 12 and the electric quantity monitoring module 14 are electrically connected with the power supply main body 7 through wires.
Referring to fig. 3, the portable installation device 16 includes a mounting frame 161 disposed in the base 2 to implement installation and matching, a vertical bolt is locked in a middle portion of the mounting frame 161, and a cylinder 162 with a telescopic end extending downward, a clamping assembly 163 connected to a connection end of the bottom of the cylinder 162 and disposed in the base 2 to implement clamping and transmission matching, and clamp assemblies 164 symmetrically disposed on left and right sides of the clamping assembly 163, and the clamp assemblies 164 are symmetrically disposed at lower ends of left and right sides of the interior of the cabinet 1, and the clamp assemblies 164 on both sides respectively contact with the left and right sides of the power main body 7 in a propping manner.
The clamping assembly 163 includes a driving block 1631 connected to the bottom connecting end of the air cylinder 162, connecting arms 1632 symmetrically connected to the left and right sides of the driving block 1631 for connection and push-pull driving, tooth blocks 1633 correspondingly mounted on one sides of the connecting arms 1632 away from the driving block 1631, rack bars 1634 correspondingly meshed with the lower ends of the tooth blocks 1633, and two side rack bars 1634 are all in a transverse strip shape, and are correspondingly fixedly connected to a movable frame 1635 for realizing transverse movement driving at the outer ends of the two side rack bars 1634, and guide rods 1636 correspondingly connected to the lower ends of the two side rack bars 1634 in a transverse insertion manner for realizing stable support and movable guide matching.
The connecting arm 1632, the tooth block 1633, the rack rod 1634 and the moving frame 1635 are symmetrically arranged left and right along the transmission block 1631, one side of the connecting arm 1632 far away from the transmission block 1631 is rotationally connected with the tooth block 1633, the stable push-pull transmission state is formed by the connecting arm 1632 and the tooth block 1633, the whole tooth block 1633 is in a fan-shaped block shape, the middle part of the tooth block 1633 is rotationally connected with the inside of the base 2, the equidistant clamping transmission distance of the tooth blocks 1633 at two sides is ensured, the efficient clamping transmission is realized, the guide rod 1636 is transversely fastened in the base 2, the guide rod 1636 is respectively spliced with the tooth block 1633 and the moving frame 1635, and the guide rod 1636 can ensure that the tooth blocks 1633 and the moving frame 1635 at two sides realize stable relative or opposite movement.
Referring to fig. 4-5, the clamp assembly 164 includes clamping plates 1641 correspondingly mounted in the middle of the outer ends of the moving frames 1635 at two sides and correspondingly positioned at the left and right sides of the lower end of the inside of the cabinet 1, the middle of the clamping plates 1641 is rectangular and hollow, clamping grooves 1642 at the upper and lower ends of the inside of the clamping plates 1641 are symmetrically and equidistantly formed, the clamping grooves 1642 formed in two rows are rectangular and formed, the heat conducting copper plate 1643 correspondingly embedded in the clamping surface of the clamping plates 1641 to realize heat auxiliary external conduction fit generated by the power supply main body 7 is vertically and equidistantly formed in a plurality of rows of heat conducting holes 1644 at the outer side of the heat conducting copper plate 1643, heat radiating fins 1645 correspondingly embedded in the inside of the clamping plates 1641 and opposite to the front and rear sides of the heat conducting copper plate 1643 are symmetrically and fixedly connected to connecting strips 1646 at the upper and lower ends of the heat radiating fins 1645, and the connecting strips 1646 are matched with the shape of the clamping grooves 1642, and the upper connecting strips 1645 are fixedly clamped and mounted in the movable mode, and the upper connecting strips 1646 are correspondingly provided with mounting holes inside the heat radiating fins 1646 are screwed into the upper ends of the vertical clamping plates 1641, and the upper ends of the heat radiating fins 1645 are firmly screwed into the heat radiating fins 1646.
Further, the clamping grooves 1642 are symmetrically formed along the inner portion of the clamping plate 1641 at equal intervals up and down, the upper clamping groove 1642 and the lower clamping groove 1642 are not formed in a penetrating manner, stable positioning and mounting matching of the upper clamping groove 1642 and the lower clamping groove 1642 is guaranteed, the inner side of the heat dissipation fin 1645 abuts against the inner side face of the heat conduction copper plate 1643, the heat dissipation fin 1645 is opposite to the heat conduction hole 1644 in the heat conduction copper plate 1643, efficient combination of the heat dissipation fin 1645, the heat conduction copper plate 1643 and the heat conduction hole 1644 is guaranteed, and auxiliary heat dissipation matching is achieved.
The working principle is as follows:
When the ring main unit UPS comprehensive power supply monitoring device is to be used, the main board 13 can be controlled to enable the display screen 5, the wireless alarm 9, the temperature sensor 8, the voltage monitoring module 11, the current monitoring module 12, the electric quantity monitoring module 14 and the fan 15 to be electrically connected with the control main board 13 through wires, meanwhile, the voltage monitoring module 11, the current monitoring module 12 and the electric quantity monitoring module 14 are electrically connected with the power supply main body 7 through other wires, so that the wireless alarm 9 can be used for realizing the monitoring of specific conditions of the power supply main body 7 arranged at the lower end inside the cabinet body 1 in real time under the efficient monitoring cooperation of the temperature sensor 8, the voltage monitoring module 11, the current monitoring module 12 and the electric quantity monitoring module 14, the monitored data can be used for realizing clear display activity on the display screen 5 arranged at the upper end of the cabinet door 4, but when the running temperature of the power supply main body 7 is too high, the fan 15 can be used for enabling the fan 15 to quickly rotate through the heat dissipation window 6 to realize the auxiliary wind power supply main body 7, the stability of the whole running of the power supply main body 7 is ensured, and when the fan 15 is harder to realize the activity of the power supply main body 7, the wireless alarm 9 can be used for realizing the wireless alarm 9, the real-time work is avoided, and the external personnel is prevented from being damaged;
Secondly, in order to accelerate the overall installation efficiency of the power supply main body 7, a convenient installation device 16 is arranged in the base 2, so that the power supply main body 7 is rapidly clamped and installed, namely, after being placed at the lower end of the inner part of the cabinet body 1, the power supply main body 7 can be driven to be contracted by driving the cylinder 162 connected with the inner part of the installation frame 161, so that the movement of the bottom connected transmission block 1631 is realized, the connecting arms 1632 connected to the left side and the right side of the transmission block 1631 are rotated along with the movement of the transmission block 1631, the pushing of the external corresponding connecting tooth blocks 1633 is realized, the two side tooth blocks 1633 realize synchronous opposite rotation, and therefore, the corresponding meshing of the rack bars 1634 connected to the lower ends of the two side tooth blocks 1633 can realize transverse movement of the guide bars 1636 which are transversely spliced along the bottom, thus, the driving of the clamping plates 1641 arranged in the clamp assembly 164 can be realized, the two side clamping plates 1641 are relatively close to each other, the overall clamping and installation of the power supply main body 7 can be realized, and the rapid installation of the power supply main body 7 can be realized without excessively complicated steps;
If the power supply main body 7 needs to be taken out, the cylinder 162 is only required to be operated again to extend the cylinder 162, so that the connecting arms 1632 connected with two sides are realized by the transmission block 1631, the two-side tooth blocks 1633 are pulled, the two-side tooth blocks 1633 drive the two-side rack bars 1634 to move transversely and reversely, the two-side moving frames 1635 can drive the clamping plates 1641 correspondingly connected to move outwards to release the clamping locking of the power supply main body 7, and the whole power supply main body 7 can be taken out conveniently, so that the advantages of convenient clamping, mounting or dismounting of the power supply main body 7 and improvement of the whole maintenance efficiency are achieved;
Secondly, in order to further improve the overall heat dissipation efficiency of the power supply main body 7, the heat conduction copper plate 1643 is further arranged on the clamping surface of the clamping plate 1641 to realize auxiliary heat conduction activity, namely, when the clamping plate 1641 moves along with the outer side of the clamping assembly 163, the heat conduction copper plate 1643 contacts with the left side or the right side of the power supply main body 7, so that heat generated by the power supply main body 7 can be subjected to the heat conduction characteristic of the heat conduction copper plate 1643 to realize quick external conduction, meanwhile, in order to improve the heat conduction effect of the heat conduction copper plate 1643, a plurality of heat conduction holes 1644 are formed in the heat conduction copper plate 1643 at equal intervals, so that the heat external conduction efficiency is improved, and secondly, when the heat is conducted to the positions of the heat dissipation fins 1645 along with the heat conduction copper plate 1643 and the heat conduction holes 1644, the heat generated by the heat dissipation effect can be absorbed by a plurality of the heat dissipation fins 1645 in a matching manner, the generated heat is quickly conducted to the position of the fan 15, and the heat is quickly led out by the fan 15 to be in a high-efficiency cooling and matched manner, so that the auxiliary heat is capable of achieving external conduction and heat dissipation efficiency enhancement;
Secondly, when the heat dissipation fin 1645 is damaged at a certain position, the lock rod 1647 correspondingly connected to the upper end is rotated, so that the lock rod 1647 is screwed out of the upper side connecting bar 1646 to complete unlocking, the damaged heat dissipation fin 1645 can be taken out from the inside of the clamping plate 1641, and when the heat dissipation fin is reinstalled later, the heat dissipation fin 1645 can be installed in a pre-positioning mode through the connecting bar 1646 and the clamping grooves 1642 formed in the upper and lower parts of the inside of the clamping plate 1641, so that the installation accuracy and efficiency of the heat dissipation fin 1645 are improved.
The utility model provides a ring main unit UPS comprehensive monitoring device, which is provided with a convenient installation device 16, namely driven by a cylinder 162, a transmission block 1631 arranged in a clamping assembly 163 can realize push-pull transmission of a connecting arm 1632, so that a tooth block 1633 can engage with a transmission rack rod 1634, a movable frame 1635 arranged on the outer side of the rack rod 1634 moves and indirectly drives an internal clamping plate 1641 of a clamp assembly 164 to realize quick clamping and installation of a power supply main body 7, thereby achieving the advantages of convenient clamping and installation or disassembly of the power supply main body 7 and improving the overall maintenance efficiency, and the clamp assembly 164 is provided, namely, the heat conducting copper plate 1643, the heat conducting holes 1644 and the heat radiating fins 1645 which are arranged in the clamping plate 1641 are matched, so that the auxiliary external heat radiation of the power supply main body 7 can be realized, and the heat radiating fins 1645 can be conveniently disassembled and replaced under the combination of a clamping groove 1642, a connecting bar 1646 and a locking rod 1647, thereby achieving the advantages of auxiliary heat radiation efficiency.
The foregoing is merely a preferred example of the present utility model, and the present utility model is not limited thereto, but it is to be understood that modifications and equivalents of some of the technical features described in the foregoing embodiments may be made by those skilled in the art, although the present utility model has been described in detail with reference to the foregoing embodiments. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model should be included in the protection scope of the present utility model.