红外探头安装装置及控制模块
Through the design of the universal ball joint and universal ball rod structure, the infrared probe can emit signals in multiple directions, solving the problem of limited detection range and achieving wider detection coverage and flexible installation methods.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHUHAI UNITECH POWER TECHNOLOGY CO LTD
- Filing Date
- 2025-09-17
- Publication Date
- 2026-07-17
AI Technical Summary
The current installation method of infrared detectors in substations results in a limited detection range, failing to cover certain areas and affecting the detection effect.
The design employs a universal ball joint and universal ball rod structure, combined with a multi-directional mounting slot and connection hole design for the probe mounting base, allowing the infrared probe to emit signals in different directions and increasing the detection range through the rotatable ball.
The detection range of the infrared probe has been increased, improving the installation and detection effect. Furthermore, the installation method does not damage the installation interface and reduces the installation difficulty.
Smart Images

Figure CN224516414U_ABST
Abstract
Claims
1. An infrared probe mounting device, characterized by, The device includes a universal ball seat, a universal ball rod, and a probe mounting base. The universal ball rod includes a ball and a rod body. The ball is installed in the universal ball seat, and one end of the rod body is connected to the ball. The probe mounting base is provided with a first mounting slot and a second mounting slot. The first mounting slot is used to install the infrared probe, and the second mounting slot is used to install the rod body. The second mounting groove has a first groove wall in a first direction and a second groove wall in a second direction. The first direction is the signal emission direction of the infrared probe, and the second direction is perpendicular to the first direction. The first groove wall is provided with a first connecting hole, and the second groove wall is provided with a second connecting hole. The end of the rod away from the ball is selectively connected to either the first connecting hole or the second connecting hole.
2. The infrared probe mounting device of claim 1, wherein, The second mounting groove has a first opening opposite to the first groove wall in the first direction, and the second mounting groove has a second opening opposite to the second groove wall in the second direction.
3. The infrared probe mounting device of claim 1, wherein, The universal ball joint includes a universal base and a universal fixing seat. The universal fixing seat is connected to the universal base. The universal base and the universal fixing seat together define a receiving cavity. The ball is rotatably disposed in the receiving cavity.
4. A control module, characterized in that include: Bottom shell; The controller is connected to the bottom shell; The base plate includes a first part and a second part that are connected to each other. The first part is clamped between the base shell and the controller, and the second part extends from the outer periphery of the controller. The infrared probe mounting device as described in any one of claims 1-3, wherein the universal ball joint is mounted on the second part; An infrared sensor is installed in the first mounting slot; A wiring harness connects the infrared probe to the controller.
5. The control module of claim 4, wherein, The controller has a display screen on the front and a protrusion on the back. The base plate has a first opening and is fitted onto the protrusion through the first opening.
6. The control module of claim 5, wherein, The base plate is configured to be selectively fitted onto the protrusion in a first, second, third, and fourth orientation; When the base plate is fitted onto the protrusion in the first posture, the second part extends from the upper side of the controller; When the base plate is fitted onto the protrusion in the second posture, the second part extends out from the left side of the controller; When the base plate is fitted onto the protrusion in the third posture, the second part extends from the underside of the controller; When the base plate is fitted onto the protrusion in the fourth posture, the second part extends from the right side of the controller.
7. The control module of claim 6, wherein, The wall surface of the first opening includes a first hole wall surface, a second hole wall surface, a third hole wall surface and a fourth hole wall surface connected end to end. The first hole wall surface and the third hole wall surface are arranged opposite to each other, the second hole wall surface and the fourth hole wall surface are arranged opposite to each other, and the distance between the first hole wall surface and the third hole wall surface is equal to the distance between the second hole wall surface and the fourth hole wall surface. The outer peripheral surface of the protrusion includes an upper protrusion, a left protrusion, a lower protrusion, and a right protrusion connected end to end. The upper protrusion and the lower protrusion are arranged opposite to each other, and the left protrusion and the right protrusion are arranged opposite to each other. The distance between the upper protrusion and the lower protrusion is greater than the distance between the left protrusion and the right protrusion, and the distance between the upper protrusion and the lower protrusion is equal to the distance between the first hole wall and the third hole wall. When the base plate is fitted onto the protrusion in the first posture, the wall surface of the first hole abuts against the upper protrusion surface, and the wall surface of the third hole abuts against the lower protrusion surface; When the base plate is fitted onto the protrusion in the second posture, the wall surface of the second hole abuts against the upper protrusion surface, and the wall surface of the fourth hole abuts against the lower protrusion surface; When the base plate is fitted onto the protrusion in the third posture, the wall surface of the third hole abuts against the upper protrusion surface, and the wall surface of the first hole abuts against the lower protrusion surface; When the base plate is fitted onto the protrusion in the fourth posture, the wall surface of the fourth hole abuts against the upper protrusion surface, and the wall surface of the second hole abuts against the lower protrusion surface.
8. The control module of claim 6, wherein, The wall surface of the first opening includes a first hole wall surface, a second hole wall surface, a third hole wall surface and a fourth hole wall surface connected end to end. The first hole wall surface and the third hole wall surface are arranged opposite to each other, the second hole wall surface and the fourth hole wall surface are arranged opposite to each other, and the distance between the first hole wall surface and the third hole wall surface is equal to the distance between the second hole wall surface and the fourth hole wall surface. The outer peripheral surface of the protrusion includes an upper protrusion, a left protrusion, a lower protrusion, and a right protrusion connected from end to end. The upper protrusion and the lower protrusion are arranged opposite to each other, the left protrusion and the right protrusion are arranged opposite to each other, the distance between the upper protrusion and the lower protrusion is equal to the distance between the left protrusion and the right protrusion, and the distance between the upper protrusion and the lower protrusion is equal to the distance between the first hole wall and the third hole wall. When the base plate is fitted onto the protrusion in the first posture, the wall surface of the first hole abuts against the upper protrusion surface, and the wall surface of the third hole abuts against the lower protrusion surface; When the base plate is fitted onto the protrusion in the second posture, the wall surface of the second hole abuts against the upper protrusion surface, and the wall surface of the fourth hole abuts against the lower protrusion surface; When the base plate is fitted onto the protrusion in the third posture, the wall surface of the third hole abuts against the upper protrusion surface, and the wall surface of the first hole abuts against the lower protrusion surface; When the base plate is fitted onto the protrusion in the fourth posture, the wall surface of the fourth hole abuts against the upper protrusion surface, and the wall surface of the second hole abuts against the lower protrusion surface.
9. The control module of claim 5, wherein, The base plate has a second opening, which is connected to the first opening, and the wire harness passes through the second opening.
10. The control module according to claim 4, characterized in that, The inner wall of the bottom shell is provided with a screw post, the controller is provided with a through hole, and the control module also includes a threaded connector that passes through the through hole and is connected to the screw post.