CN218290016U - Digital elevator control system - Google Patents

Digital elevator control system Download PDF

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Publication number
CN218290016U
CN218290016U CN202222407458.1U CN202222407458U CN218290016U CN 218290016 U CN218290016 U CN 218290016U CN 202222407458 U CN202222407458 U CN 202222407458U CN 218290016 U CN218290016 U CN 218290016U
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CN
China
Prior art keywords
elevator
monitoring module
control system
elevator control
switch portion
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Application number
CN202222407458.1U
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Chinese (zh)
Inventor
彭晖
毛先金
李生惠
杨光
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Schmidt Elevator Co ltd
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Schmidt Elevator Co ltd
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Priority to CN202222407458.1U priority Critical patent/CN218290016U/en
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Abstract

The utility model discloses a digital elevator control system, include: the general controller, the thing networking router, elevator remote monitoring cloud platform, emergency power supply battery voltage monitoring module, phone loop monitoring module, lock voltage monitoring module, safety circuit voltage monitoring module, band-type brake power supply voltage detection module and car position monitoring module are connected to general controller, general controller is connected to elevator remote monitoring cloud platform through material net router, elevator remote monitoring cloud platform communication is connected to cell-phone mobile device. The digital elevator control system solves the problem that monitoring data cannot be remotely and timely checked in the prior art.

Description

Digital elevator control system
Technical Field
The utility model relates to an electric field of elevator, concretely relates to digital elevator control system.
Background
Among the prior art, monitor elevator normal operating in order to realize, emergency power supply battery voltage monitoring module has been set up, telephone loop monitoring module, lock voltage monitoring module, safety circuit voltage monitoring module, band-type brake supply voltage detection module and car position monitoring module, though can realize respective monitoring, but when the elevator breaks down, hardly realize the direct propelling movement data of each monitoring module, lead to the data of detecting to hardly directly receive, need on-the-spot to look over each data through the controller, lead to the fault judgement efficiency lower, lead to elevator maintenance efficiency to reduce, be unfavorable for in-time high-efficient personnel in rescuing the elevator.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a digital elevator control system solves the problem that can not realize long-range in time looking over monitored data among the prior art.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the utility model discloses a digital elevator control system, include: the general controller, the thing networking router, elevator remote monitoring cloud platform, emergency power supply battery voltage monitoring module, phone loop monitoring module, lock voltage monitoring module, safety circuit voltage monitoring module, band-type brake power supply voltage detection module and car position monitoring module are connected to general controller, general controller is connected to elevator remote monitoring cloud platform through material net router, elevator remote monitoring cloud platform communication is connected to cell-phone mobile device.
Preferably, the car position monitoring module includes: a plurality of position switches, each position switch all corresponds a floor setting, and each position switch one end ground connection, each position switch other end all are connected to total controller.
Preferably, each position switch includes: the swiveling wheel, the swinging boom, the shell fragment, mount pad and execution switch portion, install the execution switch portion on the mount pad, the other swinging boom that installs of execution switch portion can rotate, the swinging boom is used for promoting execution switch portion closure, install the shell fragment between swinging boom and the mount pad, the shell fragment is used for making the swinging boom keep away from execution switch portion, the swiveling wheel is installed at the tip that the mount pad was stretched out to the swinging boom, elevator car outer wall is formed with and supplies the gliding guide rail of swiveling wheel, the guide rail inner wall is used for making the swinging boom promote execution switch portion closure through promoting the swiveling wheel.
Preferably, the mount includes: the elevator lift seat comprises a seat body and a seat cover, wherein one side of the seat body is arranged on the inner wall of an elevator shaft, the other side of the seat body is sunken to form a groove, a rotating arm is hinged in the groove, an execution switch part is arranged on the inner side wall of the groove, the seat cover is buckled with the seat body, and the seat cover blocks the rotating arm from being separated.
Preferably, the base is provided with a hinge shaft, and the hinge shaft passes through the rotating arm.
Preferably, the middle part of the elastic sheet is of an annular structure, an installation shaft passes through the middle part of the elastic sheet, and the seat cover limits the elastic sheet to be separated from the installation shaft.
Preferably, the top of the base body is formed with a convex part above the groove, the convex part is provided with the execution switch part, one side of the convex part close to the inner wall of the elevator shaft forms a cavity structure, and the cavity structure is used for a lead wire connected with the execution switch part to pass through.
Compared with the prior art, the utility model discloses following beneficial effect has:
through the setting of thing networking router, realized that total controller conveys each monitoring data to elevator remote monitoring cloud platform (the platform of constituteing such as computer and router), cell-phone mobile device acquires the monitoring data from elevator remote monitoring cloud platform, makes things convenient for maintenance personal to follow the long-range trouble that can all judge, makes things convenient for maintenance personal to prepare the maintenance part, improves maintenance efficiency, has improved rescue efficiency, has improved the security.
Additional advantages, objects, and features of the invention will be set forth in part in the description which follows and in part will become apparent to those having ordinary skill in the art upon examination of the following or may be learned from practice of the invention.
Drawings
Fig. 1 is a circuit block diagram of a digitized elevator control system;
fig. 2 is a schematic structural view of a position switch in the digital elevator control system;
FIG. 3 is a schematic view of the structure of the position switch after the seat cover is opened;
fig. 4 presents a schematic view of the structure of the guide rails on the elevator car.
Reference numerals are as follows: the intelligent elevator car position monitoring system comprises a master controller 1, an internet of things router 2, an elevator remote monitoring cloud platform 3, an emergency power supply battery voltage monitoring module 4, a telephone loop monitoring module 5, a door lock voltage monitoring module 6, a safety loop voltage monitoring module 7, a band-type brake power supply voltage detection module 8, a car position monitoring module 9, a rotating wheel 91, a rotating arm 92, an elastic sheet 93, a mounting seat 94, a seat body 941, a seat cover 942, a convex part 943, an execution switch part 95, a hinge shaft 96, a mounting shaft 97 and a guide rail 10.
Detailed Description
In order to make the utility model realize that technical means, creation characteristics, achievement purpose and effect are clearer and easily understand, it is right to combine below the figure and the detailed implementation mode the utility model discloses do further explanation:
as shown in fig. 1 to 4, the utility model discloses a digital elevator control system, include: general controller 1, thing networking router 2, elevator remote monitoring cloud platform 3, emergency power supply battery voltage monitoring module 4, phone loop monitoring module 5, lock voltage monitoring module 6, safety circuit voltage monitoring module 7, band-type brake power supply voltage detection module 8 and car position monitoring module 9 are connected to general controller 1, general controller 1 is connected to elevator remote monitoring cloud platform 3 through the material net router, elevator remote monitoring cloud platform 3 communication connection is to cell-phone mobile device.
The car position monitoring module 9 includes: a plurality of position switches, each position switch all corresponds a floor setting, and each position switch one end ground connection, each position switch other end all are connected to total controller 1. The elevator car position detection is realized, and when the elevator car is positioned on one floor, the elevator car interacts with the corresponding position switch to realize the operation of the trigger position switch.
Each position switch includes: the rotary wheel 91, the swinging boom 92, the shell fragment 93, mount pad 94 and execution switch portion 95, install execution switch portion 95 on the mount pad 94, execute switch portion 95 is other to install revolvable swinging boom 92, swinging boom 92 is used for promoting execution switch portion 95 to close, install the shell fragment 93 between swinging boom 92 and the mount pad 94, the shell fragment 93 is used for making swinging boom 92 keep away from execution switch portion 95, the tip that stretches out mount pad 94 at swinging boom 92 installs the swiveling wheel 91, the elevator car outer wall is formed with the gliding guide rail 10 of confession swiveling wheel 91, the guide rail 10 inner wall is used for making swinging boom 92 promote execution switch portion 95 to close through promoting swiveling wheel 91. The execution switch portion 95 is from reset switch structure, the guide rail 10 sets up on vertical direction, every position switch position is deviated at guide rail 10 both ends, guide rail 10 middle part is close to every position switch, therefore in the time of the operation, the guide rail 10 both ends will slowly contact with swiveling wheel 91, then slowly extrude swiveling wheel 91 and make swiveling wheel 91 deviate guide rail 10, make swiveling wheel 91 extrusion execution switch portion 95 simultaneously, execution switch portion 95 is triggered closed position, thereby judge the floor that the car has corresponded at this position switch.
The mount 94 includes: the base 941 and the seat cover 942, one side of the base 941 is installed on the inner wall of the elevator shaft, the other side of the base 941 is recessed to form a groove, the rotating arm 92 is hinged in the groove, the execution switch 95 is installed on the inner wall of the groove, the seat cover 942 is buckled with the base 941, and the seat cover 942 blocks the rotating arm 92 from being separated. The installation of the rotating arm 92 and the execution switch 95 between the seat body 941 and the seat cover 942 is realized, the rotating arm 92 can be limited to be separated after the seat cover 942 is buckled, and the middle part of the rotating arm 92 is penetrated by a hinge shaft 96, so that the installation of the rotating arm 92 is more convenient. The groove side wall is provided with an execution switch part 95, and the length of the rotating arm 92 departing from the end part of the rotating wheel 91 can be adjusted as required, so that the end part of the rotating arm 92 departing from the rotating wheel 91 can just extrude the execution switch part 95 after rotation.
A hinge shaft 96 is installed on the base body 941, and the hinge shaft 96 passes through the rotating arm 92. The pivot arm 92 is hinged and the hinge shaft 96 restricts the disengagement of the pivot arm 92.
The middle of the elastic piece 93 is a ring structure, the middle of the elastic piece 93 is penetrated by a mounting shaft 97, and the seat cover 942 restricts the elastic piece 93 from separating from the mounting shaft 97. Through the shape setting of shell fragment 93, and the cooperation of shell fragment 93 and installation axle 97, realized that installation axle 97 passes behind shell fragment 93 lock seat lid 942 and can realize the installation shell fragment 93 for the step of installation shell fragment 93 is simple.
The top of the base 941 is formed with a protrusion 943 above the groove, the protrusion 943 is installed with the actuating switch 95, and one side of the protrusion 943 close to the inner wall of the elevator shaft forms a cavity structure for a wire connected to the actuating switch 95 to pass through.
Finally, although the present invention has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the present invention can be modified or replaced by other means without departing from the spirit and scope of the present invention, which should be construed as limited only by the appended claims.

Claims (7)

1. A digitized elevator control system, comprising: the general controller, the thing networking router, elevator remote monitoring cloud platform, emergency power supply battery voltage monitoring module, phone loop monitoring module, lock voltage monitoring module, safety circuit voltage monitoring module, band-type brake power supply voltage detection module and car position monitoring module are connected to general controller, general controller is connected to elevator remote monitoring cloud platform through material net router, elevator remote monitoring cloud platform communication is connected to cell-phone mobile device.
2. The digital elevator control system according to claim 1, wherein the car position monitoring module comprises: a plurality of position switches, each position switch all corresponds a floor setting, and each position switch one end ground connection, each position switch other end all are connected to total controller.
3. A digitized elevator control system according to claim 2, wherein each position switch comprises: the swiveling wheel, the swinging boom, the shell fragment, mount pad and execution switch portion, install the execution switch portion on the mount pad, the other swinging boom that installs of execution switch portion can rotate, the swinging boom is used for promoting execution switch portion closure, install the shell fragment between swinging boom and the mount pad, the shell fragment is used for making the swinging boom keep away from execution switch portion, the swiveling wheel is installed at the tip that the mount pad was stretched out to the swinging boom, elevator car outer wall is formed with and supplies the gliding guide rail of swiveling wheel, the guide rail inner wall is used for making the swinging boom promote execution switch portion closure through promoting the swiveling wheel.
4. A digitized elevator control system according to claim 3, wherein the mounting base comprises: the elevator lift seat comprises a seat body and a seat cover, wherein one side of the seat body is arranged on the inner wall of an elevator shaft, the other side of the seat body is sunken to form a groove, a rotating arm is hinged in the groove, an execution switch part is arranged on the inner side wall of the groove, the seat cover is buckled with the seat body, and the seat cover blocks the rotating arm from being separated.
5. The digital elevator control system according to claim 4, wherein the base has a hinge shaft mounted thereon, the hinge shaft passing through the pivot arm.
6. The digital elevator control system according to claim 5, wherein the spring plate has a ring-shaped middle portion for a mounting shaft to pass through, and the seat cover restricts the spring plate from disengaging from the mounting shaft.
7. The digital elevator control system according to claim 6, wherein the top of the base body is formed with a protrusion above the groove, the protrusion is installed with the actuating switch portion, one side of the protrusion near the inner wall of the elevator shaft is formed with a cavity structure, and the cavity structure is used for a wire connected with the actuating switch portion to pass through.
CN202222407458.1U 2022-09-09 2022-09-09 Digital elevator control system Active CN218290016U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222407458.1U CN218290016U (en) 2022-09-09 2022-09-09 Digital elevator control system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222407458.1U CN218290016U (en) 2022-09-09 2022-09-09 Digital elevator control system

Publications (1)

Publication Number Publication Date
CN218290016U true CN218290016U (en) 2023-01-13

Family

ID=84813899

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222407458.1U Active CN218290016U (en) 2022-09-09 2022-09-09 Digital elevator control system

Country Status (1)

Country Link
CN (1) CN218290016U (en)

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