Ideal bed structure for everyone
The mattress structure addresses discomfort and waste by providing personalized heat transfer and support through a seven-zone system with air channels and varying firmness, ensuring continuous and deep sleep.
Patent Information
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2025-09-04
- Publication Date
- 2026-03-12
AI Technical Summary
Existing mattress technologies fail to provide personalized body heat transfer and optimal comfort for different body types, sleeping positions, and temperatures, leading to discomfort, sleep interruptions, and environmental waste due to frequent replacements.
A mattress structure with a seven-zone supportive filler system, incorporating air channels, lumbar and hip support, and varying firmness levels achieved through CNC-cut foam and memory foam layers, along with a breathable fabric and spring system, ensuring tailored comfort and support for each user.
Enables deeper and more continuous sleep by optimizing body heat transfer and pressure distribution, reducing spinal pressure, and extending mattress lifespan while being eco-friendly and user-friendly.
Smart Images

Figure TR2025051081_12032026_PF_FP_ABST
Abstract
Description
[0001] DESCRIPTION
[0002] IDEAL BED STRUCTURE FOR EVERYONE
[0003] Technical Field
[0004] The present invention relates to an ideal bed structure developed to provide users with a deeper and more continuous sleep experience by ensuring personalized maximum body heat transfer and optimal comfort and support on the same lying surface, particularly for different body types, sleeping positions, and body temperatures.
[0005] The invention functions through the creation of a filler system with air channels that provide maximum pressure distribution and lumbar-hip support, regardless of the user’s sleeping position, body profile, or body heat intensity. This is achieved by combining a foam cutting structure with nine consecutive rows of holes, a proportionally hole-free structure, and the integration of both perforated and two differently dense layers on the same surface.
[0006] Prior Art
[0007] Sleep is a natural resting state in which consciousness is completely or partially lost against external stimuli and the ability to respond is weakened. Sleep is a restorative process that occurs daily, improves quality of life, and is controlled and influenced at every level of biological structure — from genes and intracellular mechanisms to neural networks that regulate movement, autonomic functions, behavior, and cognitive processes. Sleep must be provided every night for sufficient duration and quality, as during sleep, the body stores physical and mental data, while memory and metabolic processes are regulated. Sleep quality depends on various environmental factors such as temperature, light, noise, and comfort. For restorative sleep, considering that human physiology varies among individuals, it is important that the bed is manufactured with high-quality materials and advanced technologies to balance the person’s body temperature and provide personalized comfort on the sleeping surface. A bed that meets these conditions positively affects sleep quality by increasing the duration of deep sleep and ensuring sleep stability. It also shortens the time needed to fall asleep.
[0008] When couples share a bed, differences in body profiles and sleeping positions may cause an increase in body temperature and a lack of harmony between the bed and the body’s comfort needs. These conditions may lead to difficulty falling asleep and frequent interruptions of sleep throughout the night, resulting in inefficient sleep periods. Poor sleep weakens the immune system and reduces the benefits of deep sleep, which negatively affects human health by increasing the risk of illness, and leads to significant stress, loss of productivity, and decreased performance during the day.
[0009] Sleep carried out under conditions where all the requirements of an ideal bed are met positively affects quality of life, health, daily performance, and relationships. The thermal structure of the human body during sleep and the maximum distribution of pressure applied are directly related to the components of the bed. By bringing temperature to an optimum level and providing pressure distribution tailored to each sleeping position and different body profiles, the aim is to enhance sleep quality with personalized support. In this way, deep sleep can be maximized and the sleep cycle can be completed at an ideal level. Accordingly, continuous new studies are being carried out on bed comfort.
[0010] In current techniques, in order to make beds more ideal, reversible mattresses with different firmness levels are offered, and seasonal transitions are managed by using cotton and wool to regulate body temperature. However, this method requires the bed to be flipped regularly, which also necessitates ventilation. Considering the weight of mattresses, this creates an additional effort and workload, and increases the risk of mattress deformation.
[0011] Furthermore, the physiological body temperatures of spouses or individuals sleeping on the same mattress surface may differ, which can create difficulties in ensuring ideal heat transfer. In some cases, the wool side may cause problems such as allergies or excessive warmth. The breathability of the fabric used in the mattress, combined with the wool and cotton filling thickness ranging between 1- 5 cm, may provide comfort through other layers of the mattress; however, when one side is firm and the other is soft, the pressure distribution differs depending on body profiles and sleeping positions. In this case, being exposed to a single type of firmness on the same mattress surface leads to a deviation from the ideal mattress type.
[0012] In the prior art, technologies such as independent comfort pads, memory foam layers, and cooling fabrics are used to increase mattress comfort. However, since these pads are either independent of the mattress structure or stitched at the edges, serious usage problems such as slipping and bunching occur for consumers. Moreover, comfort provided only by the pads is interrupted due to the inadequacy of the underlying layers, preventing an ideal sleep experience. While cooling fabrics may provide an initial cool sensation upon contact, the insufficient breathability of the inner mattress structure fails to adequately manage body temperature during seasonal changes. As a result, sufficient comfort and air circulation cannot be achieved for individuals with different body temperatures, profiles, or sleeping positions.
[0013] In addition, in existing techniques, mattresses with added pads, memory foams, or cooling fabrics are generally designed with marketing considerations to be sold separately. In this context, consumers often face confusion about which features best suit their needs. Pads or layers added later to the mattress surface usually contain soft foam or memory foam, while cooling fabrics are based on electrical systems or heat-conducting yam technology. Although these systems provide additional comfort, they do not combine all requirements at an ideal quality level, and thus fall short of being an ideal mattress for everyone. At the same time, this situation leads consumers to make incorrect choices, causes unnecessary mattress replacements, and consequently generates waste that contributes to global warming.
[0014] In the most advanced existing techniques, in order to improve mattress comfort for different body types and sleeping positions, CNC holes have been opened in certain foam layers within the internal structure, or perforated natural latex foams have been used to transfer heat away from the mattress surface. However, even in the most advanced systems, certain shortcomings arise. For example, excess perforations made to create air channels on the foam surface reduce the foam’s durability and excessively soften its structure. This situation poses the risk of shortening the comfort lifespan of the mattress. On the other hand, when firm foam or spring structures are used in the lower layers, body pressure distribution cannot be achieved, leading to unnecessary pressure on the spine. These points indicate that current technologies still require further development and improvement.
[0015] In this context, when working on mattress design and technologies, it is of great importance to carefully consider and research whether structural changes in the product truly enhance mattress comfort. Otherwise, the product will fail to provide an appropriate comfort level, leading to both consumer dissatisfaction and a shortened product lifespan. As a result, mattresses that cannot be used or fail to deliver adequate comfort may cause significant consumer loss and contribute to unnecessary waste management, thereby negatively impacting global warming. Summary of the Invention
[0016] This invention relates to an ideal bed structure developed to eliminate the aforementioned disadvantages by ensuring personalized maximum body heat transfer and providing optimal comfort and support on the same lying surface — particularly for different body types, sleeping positions, and body temperatures — thereby allowing users to experience deeper and more continuous sleep.
[0017] In line with sustainability and user-friendly design principles, the primary objective of the invention is to provide ideal sleep comfort on the same mattress surface for all user types, taking into account different body profiles, age groups, sleeping positions, and body temperatures. In this way, unnecessary confusion is avoided, and both material and intangible benefits are achieved for humanity and the environment.
[0018] Another objective of the invention is to present a nourishing mattress throughout the night with a washable, durable outer cover made of highly breathable and soft- touch fabric, incorporating washable conductive yarn technology for cooling and SkinPlus cell-renewal technology. With high-quality zippers and delicate fabric features, the mattress is designed to be both hygienic and washable, maintaining cleaning standards for long-term use.
[0019] The fundamental rationale of the invention is to enable the development of an ideal mattress for every individual by creating a seven-zone supportive filler system with air channels, utilizing an additional lumbar and hip support layer, and benefiting from the advantages of spring structures. Beyond existing systems, seven different regional firmness levels are achieved in the first two filler layers through perforations made on CNC-cut foam surfaces. By designing the perforation structure with nine rows and incorporating unperforated areas, personalized comfort and support are provided in each region with the required firmness and additional breathability. With this special design, 1 cm diameter perforated channels are created in areas corresponding to pressure points of the body to maximize airflow. The unperforated structures in other regions extend the filler’s durability while maintaining the ideal balance between comfort and ventilation. This method aims to prevent the filler structure from deforming and to extend its comfort lifespan.
[0020] In the second layer, in addition to the seven-zone supportive air channel structure, memory foam is applied. In this layer, memory foam of different densities (40 density on the sides and 50 density in the central part) is used, widening as the mattress width increases, to provide special support for the lumbar and hip regions. In this way, comfort and support are provided for different body profiles and sleeping positions, minimizing the load on the spine. This design prevents individuals with a high body mass index from being forced to use single-firmness mattress models, thereby eliminating discomfort.
[0021] In the third layer, a CNC-cut HR foam structure with channels, known for its comfort and durability, is used. This ensures air circulation and establishes a seven-zone supportive structure. The seven-zone support is distributed across all layers of the mattress as needed, and with filler material possessing a variable cell structure, the mattress’s durability and strength are enhanced, thereby extending its lifespan.
[0022] In the lower layer, the design is supported by a 1500-count spring system with enhanced density for seven specific zones, providing long-term comfort for every user.
[0023] Another objective of the invention is to ensure that individuals with different body profiles, sleeping in various positions on the same mattress surface, can achieve optimal body heat transfer without spinal pressure or circulatory problems. In this way, unnecessary sleep interruptions are prevented, allowing physiological needs to be met during high-quality and deep sleep stages. The ideal mattress structure, which users can utilize for many years, aims to prevent waste, provide a more economical product in the long term, and contribute to sustainability that is both user- and eco-friendly by reducing the carbon footprint and mitigating global warming.
[0024] DETAILED DESCRIPTION OF THE INVENTION
[0025] The ideal mattress structure developed to achieve the objectives of the present invention is illustrated in the accompanying figures.
[0026] Among these figures:
[0027] Figure 1 is a perspective view of the ideal mattress structure according to the invention.
[0028] Figure 2 is a side perspective view of the comfort layer of the ideal mattress structure according to the invention.
[0029] Figure 3 is a perspective view of the outer layer of the ideal mattress structure according to the invention.
[0030] Figure 4 is a perspective view of the ideal mattress structure according to the invention according to alternative outer layers.
[0031] Figure 5 is a perspective view of the closed state of the ideal mattress structure according to the invention.
[0032] The other components of the ideal mattress structure subject to the invention, which allow explanation, are numbered in the accompanying figures as follows:
[0033] 1. Mattress Structure
[0034] 2. Highly Breathable Outer Mattress Fabric
[0035] 3. Highly Breathable Spacer Channel Ventilation Inner Cover
[0036] 4. CNC-Cut Channeled Striped Foam 5. Perforated Layer Providing Air Transfer
[0037] 6. Extra-Density Reinforced Pocket Spring System
[0038] 7. Layer Providing Extra Lumbar and Hip Support by Offering Different Densities in the Same Layer with Regionally Perforated Memory Foam Structure
[0039] Subject Matter of the Invention: Ideal Mattress Structure (1) comprising;
[0040] A high air-permeable outer mattress fabric (2), located at the top of the mattress structure (1) on the surface that comes into direct contact with the user, which — through conductive yarn technology — ensures breathability of the mattress surface, prevents heat accumulation inside the mattress, provides a cooling sensation during sleep, and assists with moisture control,
[0041] A high air-permeable spacer-channeled ventilation inner cover (3), located beneath the high air-permeable outer mattress fabric (2) at the top layer of the mattress structure (1), which, thanks to spacer channels, allows free air circulation, prevents moisture and heat accumulation, creates a cooler and more comfortable sleeping environment, and helps maintain hygiene conditions within the mattress (1),
[0042] A CNC-cut striped foam layer (4), positioned between the outer mattress fabric (2) and the spring system (6), having a variable cell structure and enhanced strength that increases resistance as compression increases, and — through its striped channeled design — provides different firmness levels in different regions, offering support and comfort to the user’s body where needed, while also increasing breathability, distributing air evenly across all layers, and preventing heat accumulation,
[0043] A perforated layer (5), positioned beneath the spacer-channeled ventilation inner cover (3), which, through CNC cutting, combines a 9-row perforated and nonperforated structure on the same surface with different firmness levels, providing 7-zone support as needed, delivering extra comfort and softness, and ensuring pressure distribution tailored to different pressure points for each sleeping position while enabling air transfer,
[0044] An extra-densified pocket spring system (6), forming the core support system of the mattress structure (1), which ensures flexibility, durability, and support capacity of the mattress (1), balances body weight more evenly at every point through its densified structure, maintains spinal alignment, and minimizes pressure points,
[0045] A zonal perforated memory foam layer (7), positioned between the outer mattress fabric (2) and the spring system (6), in which two memory foam structures of different densities are combined on the same surface and CNC-cut into a 9-row perforated and non-perforated structure, thereby uniting two different density ratios on one surface, providing extra lumbar and hip support while allowing air circulation.
[0046] The invention enables the development of an ideal mattress for each individual by combining extra lumbar and hip support with the advantages of a spring structure. Beyond existing systems, seven different regional firmness levels have been achieved through the perforations made on the surface of CNC-cut foams in the first two filling layers. By designing the perforation structure in nine rows and leaving certain areas unperforated, the aim is to provide comfort and support specific to each region.
[0047] With this special design, in the sections corresponding to the body’s pressureintensive points, perforated channels with a diameter of 1 cm are created to increase air circulation and maximize airflow. In other regions, leaving areas unperforated extends the durability of the filling material while maintaining the balance between ideal comfort and air channels. Through this method, it is intended to prevent deterioration of the filling structure and extend the comfort lifespan of the mattress.
Claims
CLAIMS An ideal bed structure for everyone(l), comprising: a high air-permeable outer mattress fabric (2), located at the top of the mattress structure (1) on the surface that comes into direct contact with the user, which — through conductive yam technology — ensures breathability of the mattress surface, prevents heat accumulation inside the mattress, provides a cooling sensation during sleep, and assists with moisture control, a high air-permeable spacer-channeled ventilation inner cover (3), located beneath the high air-permeable outer mattress fabric (2) at the top layer of the mattress structure (1), which, thanks to spacer channels, allows free air circulation, prevents moisture and heat accumulation, creates a cooler and more comfortable sleeping environment, and helps maintain hygiene conditions within the mattress (1), a CNC-cut striped foam layer (4), positioned between the outer mattress fabric (2) and the spring system (6), having a variable cell structure and enhanced strength that increases resistance as compression increases, and — through its striped channeled design — provides different firmness levels in different regions, offering support and comfort to the user’s body where needed, while also increasing breathability, distributing air evenly across all layers, and preventing heat accumulation, a perforated layer (5), positioned beneath the spacer-channeled ventilation inner cover (3), which, through CNC cutting, combines a 9- row perforated and non-perforated structure on the same surface withdifferent firmness levels, providing 7-zone support as needed, delivering extra comfort and softness, and ensuring pressure distribution tailored to different pressure points for each sleeping position while enabling air transfer, an extra-densified pocket spring system (6), forming the core support system of the mattress structure (1), which ensures flexibility, durability, and support capacity of the mattress (1), balances body weight more evenly at every point through its densified structure, maintains spinal alignment, and minimizes pressure points, where in the combination of the above components characterized by a zonal perforated memory foam layer (7). positioned between the outer mattress fabric (2) and the spring system (6), in which two memory foam structures of different densities are combined on the same surface and CNC-cut into a 9-row perforated and non-perforated structure, thereby uniting two different density ratios on one surface, providing extra lumbar and hip support while allowing air circulation.
Citation Information
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