Electric Range Air Guide Layout for EMI-Safe Wireless Communication
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Solution Overview
Problem
Existing electric ranges with induction heating methods face interference issues due to blocking structures, which hinder smooth wireless communication between the wireless communication circuit board and external devices.
Innovation Solution
The electric range incorporates a design with an air guide and element installation part that positions the wireless communication circuit board to avoid overlapping with metal components, allowing it to operate without electromagnetic interference, and includes a heat sink and blower fan for effective cooling.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Object-affected harmful factors
If a blocking structure is provided to block electromagnetic fields and electromagnetic waves, then electromagnetic interference is reduced, but wireless communication is hindered
Solution Approach 1:
The blocking structure is segmented into a first blocking structure and a second blocking structure positioned at different locations. The wireless communication circuit board is also segmented in its positioning, with the wireless communication unit located between these two blocking structures. This segmentation allows each component to fulfill its function without interfering with others.
Solution Approach 2:
The patent transitions from a two-dimensional planar layout to a three-dimensional spatial arrangement. The wireless communication circuit board is positioned vertically between the first and second blocking structures, utilizing the vertical dimension to achieve both electromagnetic shielding and wireless communication functionality simultaneously.
2Reliability
If the wireless communication circuit board is positioned to avoid blocking structures, then wireless communication is smooth, but electromagnetic shielding is reduced
Solution Approach 1:
The wireless communication unit acts as an intermediary element positioned between the first and second blocking structures. It benefits from the electromagnetic shielding provided by both blocking structures while maintaining its wireless communication functionality, as the blocking structures are positioned to shield without completely obstructing the wireless communication path.
3Device complexity
If metal components are positioned close to the wireless communication circuit board, then device complexity is reduced, but electromagnetic interference increases
Solution Approach 1:
The patent applies local quality by providing blocking structures at specific locations where electromagnetic interference is most likely to occur. The first blocking structure is positioned between the heating element and the wireless communication circuit board, while the second blocking structure is positioned at another critical location. This localized approach provides effective shielding without requiring complete shielding throughout the entire device.
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
This design enables smooth wireless communication with external devices by minimizing electromagnetic interference and ensures efficient cooling of heating elements, enhancing the overall performance and reliability of the electric range.
Implementation Method 1
A basic heating principle of an induction heating method is that, when a current is applied to a working coil or heating coil, heat is generated while a heating target is induction-heated
Implementation Method 2
A structure for blocking electromagnetic fields and electromagnetic waves needs to be provided in the electric range
Implementation Method 3
radio waves for communication that is transmitted from or received by the wireless communication circuit board
Data Source
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Figure 3
Figure 4~5
AI summary
An electric range is provided that may include a case, a cover plate coupled to an upper side of the case and having an upper surface on which a heating target can be disposed, and an air guide forming a flow path of air, wherein the air guide includes a element installation portion which is disposed in a portion of the air guide.