A MULTIMEDIA MECHANISM

TR202414778A3Pending Publication Date: 2026-06-22OYAK RENAULT OTOMOBIL FABRIKALARI ANONIM SIRKETI
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Patent Information

Application Number
TR202414778
Authority / Receiving Office
TR · TR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-10-30
Publication Date
2026-06-22

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Abstract

The invention relates to a multimedia mechanism (A) with a configuration that detects and stabilizes the multimedia device's temperature and / or prevents it from overheating, thereby eliminating energy, time, labor loss and maintenance costs arising from performance degradation and malfunctions caused by overheating in the multimedia device.
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Description

1 TARIFF A MULTIMEDIA MECHANISM TECHNICAL FIELD The invention addresses the cause of performance degradation and malfunctions in multimedia devices due to overheating. eliminating the resulting energy, time, labor loss and maintenance costs. 5 It relates to a multimedia mechanism configured to provide this. PREVIOUS TECHNIQUE In vehicles, in a location easily accessible to the driver while operating the vehicle. There are multimedia devices. These devices contain various sensors and cameras. systems, music listening options and settings, map and location settings, etc., many 10 The process is underway. Data input cables are used depending on the location and the area to which the multimedia devices are connected. Because they are indoors, they are exposed to conditions such as humidity and overheating. It can remain there. This enclosed area is completely surrounded by the vehicle console and the engine compartment. It is in a position that is open to the public. This situation arises when the multimedia system is running. This prevents the heat from dissipating and the device from cooling down naturally. For the multimedia device to operate at full performance, stable temperature and humidity are essential. This is necessary. Therefore, extra methods are needed for multimedia cooling. These cooling methods are designed as follows: traditional air-cooled systems, liquid cooling systems. Cooling systems are thermoelectric coolers. 20 Traditional air cooling methods have limited cooling capacity and high This is insufficient in hot weather. This prevents effective cooling of the multimedia system. This is happening. Clogging problems are encountered due to dust accumulation in the fans. In this case, the multimedia device experiences performance degradation due to insufficient cooling, quickly. A malfunction is occurring. This situation requires the multimedia system to be serviced and repaired. 25 This necessity leads to extra time, labor, and cost losses. 2 In liquid-cooled systems, complexity, high cost, and the risk of leakage arise. In addition to assembly and maintenance difficulties, these systems also have high energy consumption. There are many. Also, the complex component structure and the need for careful handling of liquids are important. These systems are located where safety is required during the liquid transport phase. Due to its complex component structure, it is expensive. Assembly and maintenance times are long, 5 Because it is costly, it leads to losses of time and labor. Thermoelectric coolers, on the other hand, have high energy consumption and low efficiency. This is the issue. Additionally, these systems require an extra heat sink. This situation... This leads to extra costs, time, and labor losses. It has difficulty in assembly and maintenance, requires additional energy, and has limited cooling capacity, and 10 It is insufficient at high temperatures. This situation hinders the effective cooling of multimedia. This is causing problems. Dust accumulation in the fans leads to clogging. This is encountered. In this case, performance issues due to insufficient cooling in the multimedia device. Low performance leads to frequent malfunctions. This situation necessitates servicing of the multimedia system. and the need for repairs leads to extra time, labor and cost losses. 15 It opens. Considering the problems mentioned above, multimedia devices To prevent performance problems, it is ensured that it does not overheat or create humidity. traditional air cooling systems, liquid cooling systems, and thermoelectric cooling. the use of multimedia devices and console architecture in which these systems are used 20 The goal is to prevent. In conclusion, all the problems mentioned above necessitate innovation in the relevant field. It has brought it to this state. THE PURPOSE OF THE INVENTION The present invention aims to eliminate the problems mentioned above and to provide technical solutions in the relevant field. It is introduced with the aim of creating an innovation. The aim of the invention is to prevent overheating in multimedia devices used in vehicles. to ensure that the multimedia device's performance does not decrease and that it has a long lifespan to provide. 3 The aim of the invention is to replace traditional air-cooled multimedia devices used in vehicles. By preventing the use of the system, time and work savings caused by fan contamination and clogging. by preventing power losses and ensuring efficient heat dissipation, multimedia The goal is to improve its performance and extend its lifespan. The purpose of the invention is to create a liquid cooling system in multimedia devices used in vehicles. by avoiding the use of costly, complex, and liquid transport systems The goal is to eliminate energy, cost, and maintenance-related expenses. The purpose of the invention is to create a thermoelectric cooler for multimedia devices used in vehicles. by preventing the use of the system due to high energy consumption and low performance The aim is to prevent the losses that occur. 10 The purpose of the invention is to eliminate energy losses and prevent multimedia use caused by overheating. This prevents the system from malfunctioning and ensures the overall thermal balance of the vehicle, thus both improving the vehicle's performance. and also the performance of the electronic system in multimedia is improved and heating is reduced the emergence of a multimedia mechanism that is controlled and provides continuous efficiency to provide. 15 A BRIEF DESCRIPTION OF THE INVENTION All the purposes mentioned above and those that will emerge from the detailed explanation below. The present invention, designed to achieve this, is a multimedia mechanism. The invention addresses the cause of performance degradation and malfunctions in multimedia devices due to overheating. eliminating the resulting energy, time, labor loss and maintenance costs. 20 configured to provide, stabilize, and / or maintain multimedia temperature by sensing its temperature. It is a multimedia mechanism with a configuration that prevents it from overheating, Its feature is that it absorbs the heat of the multimedia device as it heats up, thus protecting the multimedia device. a device that is connected to the vehicle to allow it to cool down, and which turns into liquid when it reaches a certain temperature. Multimedia 25 made of phase-changing material that can solidify as it cools. the plate, the first connecting piece with a fixed connection to the multimedia plate, mentioned The multimedia plate is moved by a device that attaches to the vehicle on one side and to the other side. A removable piston connected to the first connecting piece connected to the multimedia plate, The aforementioned piston is configured for connection to the vehicle body and multimedia plate. The second connector, by sensing the temperature of the multimedia device, adjusts the temperature to a certain level of 30°C. When it reaches that value, the piston moves the multimedia plate, the multimedia 4 The sensor that gives the command to make contact with the device is the aforementioned multimedia plate. It includes a sensor that enables temperature communication between the sensors. multimedia device overheating performance characterized by to prevent malfunctions and downtime, and to eliminate labor, time, and energy losses. It is a multimedia mechanism configured to remove. 5 BRIEF DESCRIPTION OF THE FIGURES Figure 1 shows a perspective view of a complete multimedia mechanism. EXPLANATION OF REFERENCE NUMBERS IN THE FIGURES A. A multimedia mechanism 1. Multimedia Plate 10 11. First connecting piece 2. Piston 21. Second connecting piece 3. Sensor 31. Sensor detectors 15 DETAILED DESCRIPTION OF THE INVENTION In this detailed description, the subject of the invention is an adjustable part holder (A), only the subject of the invention with examples that will not create any limiting effects so that it can be understood better It is explained. The invention addresses the cause of performance degradation and malfunctions in multimedia devices due to overheating. eliminating the energy, time, labor loss and maintenance costs that arise from this. configured to provide and maintain stability by sensing the multimedia temperature, and with a multimedia mechanism (A) that has a configuration that prevents it from overheating It is related. The invention is a multimedia mechanism (A), and as shown in Figure 1, the multimedia 25 plate (1), first connecting piece (11), piston (2), second connecting piece (21), sensor (3) consists of sensor elements (31). As can be seen in Figure 1, the multimedia plate (1) has at least two primary connections. part (11), at least two pistons (2), at least 4 second connecting parts (21) It is located. The second connecting piece (21) at one end of the piston (2), the first connecting piece (11) It is connected to the multimedia plate (1) via a removable connection. 5 at the other end of the piston (2) The second connecting piece (21) is attached to the vehicle chassis in a removable connection. The sensor detector (31) is connected to the multimedia plate (1). In this way The heat of the multimedia plate (1) is detected by the sensor (31) by the sensor (3) heating sensor (3) It indicates its value. As shown in Figure 1, a multimedia mechanism (A) is activated by sensor (3) 10 It sends a command to the piston (2) to ensure that the perceived heat is absorbed. This command In line with this, the piston (2) performs an opening movement and the multimedia connected to the piston The plate (1) moves and makes contact with the multimedia device. In line with this contact Heat from the multimedia device starts to transfer to the multimedia plate (1). Multimedia plate (1) thanks to its structure made of phase change material, a certain 15 It begins to turn into a liquid state when it absorbs heat. Meanwhile, the multimedia system on your device... By absorbing the heat, it ensures that the device's performance is not affected. In this way... This extends the device's lifespan and prevents performance issues. When the cooling process begins on the multimedia plate (1), it returns to its original solid state. This results in the solution of overheating problems in multimedia devices. This is ensured. As can be seen in Figure 1, a multimedia mechanism (A) is the multimedia plate (1) By being applied to a large surface area, it integrates into the hotspots of the multimedia device. When the device temperature monitored by sensor (3) reaches a certain threshold, It is directed to the hot zone via the piston (2); in this case the multimedia plate (1) is 25 During the phase change, it absorbs a large amount of heat by transitioning from solid to liquid, and This keeps the device's temperature under control, prevents overheating, and ensures the device's continuous operation. This ensures that it operates at the optimum temperature.

Claims

6 REQUESTS 1. The invention relates to performance degradation and malfunction caused by overheating in multimedia devices. eliminating the energy, time, labor loss and maintenance costs arising from this. configured to enable removal by sensing multimedia heat. a multimedia mechanism with a configuration that enables cooling (A) 5 Its characteristic is;  By absorbing the heat from the heating multimedia device, it protects the multimedia device from overheating. connected to the vehicle to ensure it cools down to a specific temperature. 10 phase-changing compounds that turn into a liquid when they reach the desired state and then back into a solid as they cool. multimedia plate made of material (1),  First connecting piece (11) with fixed connection to the multimedia plate (1),  A 15 that enables the mentioned multimedia plate (1) to move. first connected to the vehicle on one side and to the multimedia plate (1) on the other side Removable piston connected to the connecting piece (2),  The aforementioned piston (2) is attached to the vehicle body and multimedia plate (1) The second connecting piece (21) configured for connection, 20  By sensing the temperature of the multimedia device, when the temperature reaches a certain value, by moving the piston (2) the multimedia plate (1), multimedia sensor (3) that gives the command to touch the device,  Heat between the mentioned multimedia plate (1) and sensor (3) sensor that enables communication (31) It is characterized by its inclusion.