A temperature control monitoring device and a computer-controlled smart greenhouse

By designing mounting brackets, cable ties, and limiting mechanisms, the inconvenience of installing thermostats on pipe fittings in different directions was solved, enabling a quick and convenient installation and disassembly process and simplifying the operation procedure.

CN116058204BActive Publication Date: 2026-05-26RIZHAO POLYTECHNIC

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
RIZHAO POLYTECHNIC
Filing Date
2022-10-24
Publication Date
2026-05-26

AI Technical Summary

Technical Problem

The existing thermostat's mounting plate structure cannot be adapted to the installation of both horizontal and vertical pipe fittings, and the bolt fastening is time-consuming and labor-intensive, resulting in inconvenient installation.

Method used

A temperature control monitoring device was designed, including a mounting bracket, a wire harness mechanism, a vertical limiting mechanism, and a horizontal limiting mechanism. The device enables quick installation and removal of the mounting plate through structures such as a buckle groove, a limiting block, and a limiting rod, and is suitable for the installation requirements of horizontal and vertical pipe fittings.

Benefits of technology

It enables quick installation and removal of mounting plates on horizontal and vertical pipes, and the operation is simple and convenient, avoiding the time-consuming and labor-intensive problems caused by traditional bolt fixing.

✦ Generated by Eureka AI based on patent content.

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    Figure CN116058204B_ABST
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Abstract

This invention relates to the field of temperature controller technology, specifically to a temperature monitoring device including a temperature controller. A mounting bracket is attached to the surface of the temperature controller, and the mounting bracket is clamped onto the temperature controller by screws. A wire harness mechanism is provided at the bottom of the mounting bracket, and a mounting plate is provided on the surface of the mounting bracket. The mounting plate has a groove on its surface and is equipped with a vertical limiting mechanism and a horizontal limiting mechanism for limiting the mounting plate during installation. The advantages are: the temperature monitoring device proposed in this invention has a groove on the surface of the mounting plate, allowing the mounting plate to adapt to the installation requirements of both horizontal and vertical pipe fittings. Furthermore, the two installation methods are respectively matched with the vertical limiting mechanism and the horizontal limiting mechanism, enabling quick installation and removal of the mounting plate after it is attached to the pipe fitting. Compared to traditional bolt fixing, the vertical and horizontal limiting mechanisms are simpler and more convenient to operate.
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Claims

1. A temperature control monitoring device, comprising a temperature controller (1), wherein a mounting bracket (2) is fastened to the surface of the temperature controller (1), and the mounting bracket (2) is clamped onto the temperature controller (1) by a screw, characterized in that: A wire bundling mechanism is provided at the bottom end of the mounting bracket (2), and a mounting buckle plate (5) is provided on the surface of the mounting bracket (2). A buckle groove (6) is formed on the surface of the mounting buckle plate (5). A vertical limiting mechanism and a horizontal limiting mechanism are provided on the surface of the mounting buckle plate (5) for limiting during the installation of the mounting buckle plate (5). The vertical limiting mechanism includes a first limiting block (9), a through hole (10), a limiting stop bar (11), a lapping piece (12), an elastic traction piece (13), a clamping strip (14), a clamping groove (15), and a first pull ring (16). Two groups of first limiting blocks (9) are provided, and the two groups of first limiting blocks (9) are respectively fixed on two parallel side plates of the mounting buckle plate (5). Two first limiting blocks (9) are provided in each group, and the two first limiting blocks (9) are symmetrically distributed with respect to the buckle groove (6). The through hole (10) penetrates through the first limiting block (9), and the limiting stop bar (11) penetrates through the through holes (10) on the surfaces of the two first limiting blocks (9) arranged vertically; the lapping piece (12) is fixed at the top end of the limiting stop bar (11), the elastic traction piece (13) is fixed at the bottom surface of the lapping piece (12), the clamping strip (14) is in the shape of a right trapezoidal strip, the clamping strip (14) is fixed on the surface of the elastic traction piece (13), the clamping strip (14) is inserted into the clamping groove (15), the clamping groove (15) is formed on the surface of the first limiting block (9), and the first pull ring (16) is fixed on the surface of the elastic traction piece (13), and the first pull ring (16) and the clamping strip (14) are symmetrically distributed with respect to the elastic traction piece (13); the horizontal limiting mechanism includes a mounting groove (17), a limiting shaft rod (18), a through hole (19), a baffle plate (20), a resilient rubber plate (21), a connecting piece (22), a biting groove (23), a rubber protrusion (24), a second pull ring (25), a traction piece (26), and a second limiting block (27). The mounting grooves (17) correspond to the first limiting blocks (9) one by one, the mounting grooves (17) are formed on the side plates of the mounting buckle plate (5), the limiting shaft rods (18) are fixed on two parallel side walls of the mounting groove (17), and one limiting shaft rod (18) penetrates through the through hole (19), the through hole (19) is formed on the surface of the baffle plate (20), and the resilient rubber plate (21) is fixed between the baffle plate (20) and the connecting piece (22).

2. The temperature control monitoring device according to claim 1, characterized in that: The wire bundling mechanism includes a connecting plate (3) and wire bundling columns (4). The mounting bracket (2) is in a "U"-shaped plate structure. The connecting plate (3) is fixed on the bottom plate of the mounting bracket (2). The wire bundling columns (4) are in a "T"-shaped column structure. A plurality of wire bundling columns (4) are provided, and the plurality of wire bundling columns (4) are all fixed on the bottom surface of the connecting plate (3).

3. The temperature control monitoring device according to claim 1, characterized in that: The mounting buckle plate (5) is in a "U"-shaped plate structure. Two groups of buckle grooves (6) are provided, and the two groups of buckle grooves (6) are respectively formed on two parallel side plates of the mounting buckle plate (5). Elastic cushion members are provided on the surfaces of the mounting buckle plate (5) and the buckle grooves (6).

4. The temperature control monitoring device according to claim 3, characterized in that: The elastic gasket includes a first rubber gasket (7) and a second rubber gasket (8). Both the first rubber gasket (7) and the second rubber gasket (8) are in a "C"-shaped plate structure. The first rubber gasket (7) is fixed on the surface of the buckle groove (6), and the second rubber gasket (8) is fixed on the inner ring surface of the mounting buckle plate (5). Moreover, there are two groups of the second rubber gaskets (8), and the two groups of the second rubber gaskets (8) are symmetrically distributed up and down with respect to the buckle groove (6).

5. The temperature control monitoring device according to claim 1, characterized in that: The engaging groove (23) is formed on the surface of the connecting piece (22). The engaging groove (23) is in a "Ω"-shaped groove structure. Two groups of rubber protrusions (24) are symmetrically arranged on the surface of the engaging groove (23). The second pull ring (25) is fixed on the surface of the connecting piece (22), and the engaging groove (23) is buckled on another limiting shaft rod (18).

6. The temperature control monitoring device according to claim 1, characterized in that: The traction piece (26) is in a "□"-shaped plate structure. There are two groups of the traction pieces (26), and the two groups of the traction pieces (26) are symmetrically distributed with respect to the connecting piece (22). Moreover, the traction piece (26) is fixed on the surface of the connecting piece (22). The inner ring opening of the traction piece (26) is slidably connected with a second limiting block (27), and the second limiting block (27) is fixed on the surface of the baffle plate (20).

7. A computer-controlled smart greenhouse, characterized in that: It includes the temperature control monitoring device according to any one of the above-mentioned claims 1-6.