MULTI-SPECTRUM ADAPTIVE CAMOUFLAGE FABRIC SYSTEM

TR202512055A3Pending Publication Date: 2026-07-21NETAS TELEKOMUNIKASYON ANONIM SIRKETI
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Patent Information

Application Number
TR202512055
Authority / Receiving Office
TR · TR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-08-25
Publication Date
2026-07-21

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Abstract

The invention relates to a wearable fabric system used in the defense industry, providing active camouflage in the optical, thermal, and radar spectra to reduce the visibility of military personnel.
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Description

1 TARIFF MULTI-SPECTRUM ADAPTIVE CAMOUFLAGE FABRIC SYSTEM Technical Area The invention is used in the defense industry to reduce the visibility of military personnel. 5. It relates to the fabric system it has. State of the Art Current camouflage systems largely make detection difficult across the visual spectrum. fabrics developed for this purpose, with fixed patterns and color combinations These systems consist of 10 features that can only be seen with the naked eye or with optical devices. They aim to make observations more difficult, using night vision systems, thermal cameras, and It provides passive protection against radar detections. However, today's operational environments are dynamic, with instantaneous environmental changes occurring. It has certain conditions. In this case, passive camouflage is only effective in the visual spectrum. solutions can lead to the user being quickly identified, especially in low light 15 It is inadequate in conditions or environments with high thermal contrast. Some thermal insulation fabrics developed in recent years can maintain a specific temperature range. Although these technologies attempt to limit infrared (IR) reflection and emission, they pose environmental risks. They do not exhibit a reactive characteristic to sudden changes in factors; they have stable structures. Therefore, they are losing their effectiveness in various job profiles. Similarly, the current 20 some materials in technology aimed at reducing radar visibility (e.g. radar) Although absorbent coatings have been developed, such solutions are generally limited to fixed platforms. They are intended for use in mobile environments and, when made wearable, have limited effectiveness for mobile personnel. It shows. During the research conducted using the current technique, application number TR2023 / 008293 received 25 It has been encountered. The application uses a form that is relevant in the military and defense industry fields. It relates to structural radar-absorbing camouflage that can be detected. However, the application mentions military personnel. Active camouflage in optical, thermal and radar spectra to reduce visibility. It is not available. 2 In conclusion, due to the negative aspects described above and the current solutions being the subject of discussion... Due to its shortcomings, an improvement is needed in the relevant technical field. It has been made. Purpose of the Invention The invention was created by drawing inspiration from existing situations and addressing the aforementioned drawbacks. 5 It aims to solve the problem. The main purpose of the invention is to protect military personnel from enemy elements using optical, thermal, and radar. to make it difficult to detect them in their spectra, simultaneously in all three spectra. The goal is to provide active concealment / low visibility. The aim of the invention is to create a device that can react instantly to changes in environmental conditions and respond to them 10 The goal is to create a fabric that can change pattern and color accordingly. The invention aims to integrate light, heat, and electromagnetic waves into fabric. By analyzing the data obtained from its sensors, it automatically switches to the appropriate camouflage mode. The goal is to ensure it is passed through. The invention involves a microcontroller control mechanism that can be integrated into the fabric, with a minimum capacity of 15. It operates using energy consumption. The invention incorporates flexible solar panels and a user interface to meet the system's energy needs. an energy source that runs on batteries charged by kinetic energy derived from movement It has a management system. The aim of the invention is to create a lightweight, flexible, washable and durable fabric that can withstand harsh field conditions. The goal is to provide the structure. The structural and characteristic features and all the advantages of the invention are given in the figures below. This becomes clearer thanks to the detailed explanation written with references to these figures. This will be understood, and therefore the evaluation should also take these forms and detailed explanations into consideration. It needs to be done by taking precautions. 25 Figures that will help understand the invention. Figure 1 is a representative detail view of the fabric system that is the subject of the invention. Figure 2 shows the general view of the fabric system. 3 Explanation of Part References 1. Top layer 2. Middle layer 3. Radar-absorbing metadata coating 4. Light sensor 5 5. Electromagnetic wave sensitive sensor 6. Temperature sensor 7. Radar wave unit Detailed Description of the Invention This detailed description explains that the invention is a multispectral adaptive camouflage fabric. The preferred structures of the system are solely aimed at a better understanding of the subject. This is explained as follows. The invention is a multispectral adaptive camouflage fabric system, where the fabric is located light sensor (4) that detects ambient light level, radar or microwave signals The electromagnetic wave-sensitive sensor (5) is set to ambient temperature 15 for thermal signature detection. temperature sensor (6), light sensor (4), which regulates the temperature profile of the fabric. receive and analyze data from the electromagnetic wave sensitive sensor (5) and the temperature sensor (6) by reflecting the selected pattern and color of the top layer (1) of OLED based surface Optimizing the middle layer (2) which includes micro thermal control modules according to its temperature, radar absorbing meta material coating (3) absorbs radar reflections 20 It contains a microcontroller. OLED (Organic Light Emitting Diode) based top layer (1), It is the top layer of the fabric. Flexible OLED screen technology adapts to the surrounding environment. It can change its camouflage pattern and color. It contains 25 micro thermal control modules. middle layer (2), the fabric regulates body temperature or internal temperature according to the external environment It is an active thermal modulating layer that reduces visibility from infrared cameras. Top layer (1), heat regulation layer, control circuit unit and dynamic pattern It has a thermal regulation layer. The thermal regulation layer regulates the surface temperature according to the ambient temperature. It reduces visibility to thermal cameras by adjusting its settings. Especially infrared 30 It is used to interfere with detection in the spectrum. The control circuit unit is camouflaged. 4 It is the microcontroller unit that manages the patterns and temperature responses from the sensors. It controls the active layers based on the data. Dynamic pattern layer, adapting to environmental patterns and changing images in real time. It is a surface. It provides camouflage in the visual spectrum. Radar absorbing metadata coating (3) is the bottom layer of the fabric. Radar 5 It reduces visibility in the electromagnetic spectrum by absorbing or scattering signals. The control circuit is located in the lower layer of the fabric. The control circuit transmits electrical current. It is used for data communication. It distributes energy from the power source to the surface layers. The light sensor (4) detects the light level of the environment in which my fabric is located, and the OLED-based The top layer (1) is adjusted accordingly. Electromagnetic wave sensitive sensor 10 (5), radar absorbing metamaterial by detecting radar or microwave signals. It ensures that the coating (3) is compatible. The temperature sensor (6) determines the temperature profile of the fabric according to the ambient temperature for thermal footprint detection. It regulates the radar wave unit (7), the structure that prevents detection by radar and It represents electromagnetic insulation. 15 The working principle of the system described in the invention.  Environmental conditions (greenery, rocky areas, snowy ground) are analyzed by sensors.  The microcontroller processes the data it receives from the sensors using predefined algorithms. It matches it with.  The OLED-based top layer (1) reflects the selected pattern and color. 20  The middle layer (2) containing micro thermal control modules, adjusts the surface temperature to the ambient temperature. It optimizes accordingly.  Radar-absorbing metamaterial coating (3) absorbs radar reflections.

Claims

REQUESTS 1. It is a multi-spectral adaptive camouflage fabric system, characterized by:  Light sensor (4) that detects the light level of the environment in which my fabric is located,  electromagnetic waves that detect radar or microwave signals sensitive sensor (5), 5  Temperature profile of the fabric according to ambient temperature for thermal signature detection regulating temperature sensor (6),  light sensor (4), electromagnetic wave sensitive sensor (5) and temperature by receiving and analyzing data from the sensor (6); that OLED-based top layer (1) reflects the selected pattern and color, 10 medium containing micro-thermal control modules according to surface temperature optimizing layer (2), radar reflections of the radar-absorbing metamaterial coating (3) absorbing It contains a microcontroller. 15 2. Adaptive camouflage fabric system according to Claim 1, characterized by its ability to adapt to the surrounding environment. According to the camouflage pattern and color, it includes an upper layer (1).

3. Adaptive camouflage fabric system according to Claim 1, characterized by the fabric conforming to the body 20 and infrared cameras that regulate the temperature or internal temperature according to the external environment Including micro-thermal control modules with active thermal regulation that reduce visibility. It contains a middle layer (2).

4. Adaptive camouflage fabric system according to Claim 1, its feature is; 25  By regulating the surface temperature according to the ambient temperature, thermal cameras a heat regulation layer that reduces visibility to the opposite side,  Real-time display that adapts to environmental patterns It contains a top layer (1) which includes a dynamic pattern layer that can be changed.

5. Adaptive camouflage fabric system according to Claim 1, its feature is; to block radar signals. radar that reduces visibility in the electromagnetic spectrum by absorbing or scattering It contains absorbent meta material coating (3). 6 6. Adaptive camouflage fabric system according to Claim 1, characterized by the fact that the fabric's underside located in the layer, receiving electrical current and power from the power source for data communication. It contains a control circuit that distributes energy to the surface layers.

7. Adaptive camouflage fabric system according to Claim 1, its feature is; radar 5 It contains a radar wave unit (7) that prevents detection.