Fountain Lamp With Liquid Temperature Display And Unified Control
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Solution Overview
Problem
Existing fountain lamps lack temperature measurement and display functions, and are inconvenient for function switching and operation, affecting their practicality and user experience.
Innovation Solution
A temperature measurable fountain lamp equipped with a temperature measuring device, pump device, lighting device, and control motherboard, allowing for real-time temperature measurement and display, along with centralized control of spraying and lighting modes.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Measurement precision
If a temperature measuring device is added to the fountain lamp, then the temperature measurement and display function is improved, but the device complexity increases
Solution Approach 1:
The control motherboard serves multiple functions: it controls the pump device for spraying, controls the lighting device for illumination, and processes temperature data from the probe. By integrating these control functions into a single motherboard, the patent reduces overall system complexity while adding temperature measurement capability to the existing fountain lamp.
Solution Approach 2:
The probe acts as an intermediary component that converts temperature information into electrical signals that can be processed by the control motherboard and displayed on the display device. This intermediary approach allows temperature measurement to be integrated without requiring direct complex interaction between the temperature sensing element and the control system.
2Ease of operation
If multiple functions (spraying, lighting, temperature display) are integrated into one device, then the ease of operation is improved, but the device complexity increases
Solution Approach 1:
The patent combines the control of the pump device, lighting device, and temperature display function into a single control motherboard. This merging of control functions allows users to operate all features through one unified system, improving ease of operation while managing complexity through integrated design rather than separate control units.
3Measurement precision
If the probe and housing are placed into liquid for temperature measurement, then the temperature measurement accuracy is improved, but the waterproofing requirements increase
Solution Approach 1:
The probe is partially positioned inside the housing and partially extends outward into the liquid. The housing provides a protective sealed environment for the electronic components, while the probe extends outward to measure liquid temperature. This nested arrangement allows the housing to act as a waterproof barrier while still enabling temperature measurement functionality.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
Enables real-time water temperature measurement and display, improves operational convenience through centralized control of functions, and enhances user experience by providing adjustable fountain and lighting effects.
Implementation Method 1
the probe is capable of being used for measuring a temperature value of the liquid
Implementation Method 2
the pump device is in communication with the water inlet opening for spraying the liquid to form a fountain
Implementation Method 3
the lighting device is installed inside the accommodating cavity for emitting light out of the housing
Data Source
AI summary
A temperature measurable fountain lamp includes a housing, a temperature measuring device, a pump device, a lighting device, and a control motherboard. The housing is provided with an accommodating cavity and a water inlet opening, and the water inlet opening is used for allowing liquid to enter the accommodating cavity. The temperature measuring device includes a probe and a display electrically connected to the probe. The probe is positioned on a lower side of the housing. The display is positioned on the housing. The probe and one part of the housing are used for being placed into the liquid, so that the probe is capable of being used for measuring a temperature value of the liquid. The display is used for displaying the temperature value of the liquid. The pump device is installed in the accommodating cavity. The lighting device is installed inside the accommodating cavity.


