MULTI-WAY FAUCET
Patent Information
- Application Number
- TR202604516U
- Authority / Receiving Office
- TR · TR
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2026-03-27
- Publication Date
- 2026-06-22
- Estimated Expiration
- 2036-03-27
Smart Images

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Abstract
Description
1 TARIFF MULTI-WAY FAUCET Technical Area 5 This invention relates to the field of medical devices and intravenous treatment systems, and can be used in hospitals for multiple purposes. This allows for the simultaneous, safe, and controlled administration of excess fluid to the patient. It relates to multi-channel liquid dispensing devices. State of the Art 10 With current techniques, multiple fluids cannot be administered simultaneously during intravenous treatment in hospitals. Three-way taps are commonly used in situations where a specific type of water supply is required. The subject is three-way taps, which generally allow the simultaneous application of two different liquids. It is designed in this way. However, current three-way tap systems cannot handle more than two liquids simultaneously. This does not allow for controlled and safe application, and a larger number of liquids 15 This situation necessitates the use of additional equipment in cases where its application requires it. This complicates the implementation process, increases the risk of errors, and reduces ease of use. It reduces. In order for the patient to receive four different fluids simultaneously as part of medical treatment, the existing 20 In this technique, three three-way taps need to be connected to each other. This is how it is formed. Multiple connection structures can loosen at the connection points depending on the patient's movements. This can lead to separations, which can result in undesirable consequences such as the cannula coming out of the vein. This can lead to the following consequences: an increased number of connections increases the risk of infection, and interruptions in fluid flow... and can increase the risk of blockages in three-way taps. 25 of your existing three-way tap Lack of sufficient transparency can lead to early detection of blockages in the flow pathways. This makes it difficult to notice. Stoppers, which are used to turn off the tap, The lack of a stopcock (tap) function increases both the risk of developing an infection and It increases the risk of developing complications associated with intravenous fluid therapy. The total length created by three three-way taps used by adding them together is 30 for the patient's application. 2 This can lead to a loss of comfort and restricted movement in the region. This situation is particularly problematic during long periods of time. This increases the difficulties of use in patients requiring long-term intravenous treatment. Purpose of the Invention The aim of the invention is to ensure the equal distribution of four different fluids in patients receiving intravenous fluid therapy in hospitals. a single-piece apparatus that ensures timely, safe, controlled and effective application. It is about developing. One of the main advantages of the invention is that, thanks to its one-piece structure, it allows the patient to move freely. It does not restrict access and increases comfort in the application area. Furthermore, it eliminates the need for multiple connections. 40 By eliminating it, it reduces the risk of leakage from the vein, the risk of infection, and the risk of blockage. It reduces. The transparent structure of the device developed within the scope of the invention allows for the prevention of accidents that may occur in the intravenous system. This allows for the early detection of blockages. In addition, the device has 45 The fact that area stoppers have a stopcock feature reduces the risk of developing infection and intravenous fluid It reduces the likelihood of complications arising from the treatment. Explanation of the figures Figure 1. Top view of a multi-way faucet 50 Figure 2. Side view of the multi-way faucet. Figure 3. Bottom view of the multi-way faucet. Figure 4. Appearance of the device without the rotating male cover and stopper. Figure 5. View of the rotating male cover. Figure 6. View of a 360° rotary on / off switch. 55 Figure 7. Stopper view. 3 Explanation of the references in the figures. 1: Rotating male cover 60 2: Rotary male input 3: Four female luer lock connectors 4: Four stoppers with stopcock function 5: Four switches with on / off function 65 Description of the invention This useful model involves the simultaneous administration of four different fluids to patients receiving intravenous fluid therapy. It relates to a multi-way tap structure that allows for the dispensing of water. The device in question consists of one rotating male cap (1) and four male inlets (2). 70 Four different fluid lines are connected via these inlets with four female luer lock connectors (3). It is possible to connect to the system. At the end of each fluid line, there are four stopcocks to provide flow control. There are four stoppers (4). Thanks to these stoppers, the relevant liquid line can be opened or 75 It is possible to close it. Additionally, each flow path features a 360° rotatable opening to control fluid flow. It has a closing mechanism and its open / closed position is indicated by directional signs (arrows). There are four switches (5). Thanks to this structure, each liquid line can be controlled independently. This allows the fluid flow to be started or stopped as needed. How the invention can be applied to industry. The invention, a multi-way tap, is based on methods commonly used in the manufacture of medical devices and It can be produced using biocompatible plastic materials. The production process utilizes the existing three-way 85 4 It is carried out in a similar way to the production techniques of faucets, using injection molding. It has a structure suitable for mass production using this method. REQUESTS 1. Patients are given multiple fluids intravenously simultaneously, independently, and in a controlled manner for 90 days. It is a multi-way stopcock that enables the application of four different liquids simultaneously to patients. one rotary male cap (1), rotary male inlet (2), four to enable its application. It includes four female luer lock connectors (3), four stoppers (4) and four keys (5). 2. According to claim 1, it is a multi-way stopcock whose feature is that it allows patients to receive four different fluids simultaneously. 95 in the structure of a rotating male cap (1) with a connection that will enable its application. It is the fact that. 3. According to claim 1, it is a multi-way stopcock whose feature is that it allows patients to receive four different fluids simultaneously. It is in the form of a rotary male inlet (2) which will enable its application. 4. According to claim 1, it is a multiway tap and its feature is that it is connected by four female luer lock connectors (3). The flow paths are arranged in a compact structure, converging near the cannula inlet, at 100°. It is the fact that. 5. According to claim 1, it is a multi-way tap whose feature is that the flow is opened at the end of each outlet line. Stopper with stopcock feature that enables closing and flow control (4) It is the presence of. 6. According to claim 1, it is a multi-way tap and its feature is that on each outlet line, the fluid enters the vessel 105 A 360° rotatable, on / off position indicator that allows or prevents transmission. It contains four switches (5) with an on / off function, indicated by signs (arrows). 6. According to claim 1, it is a multi-way tap and its features include reducing the risk of leakage, the risk of infection, and the risk in the flow line. It is designed as a single-piece or integrated structure to reduce the risk of blockage. 7. According to claim 1, it is a multiway stopcock whose feature is to reduce flow delay in intravenous fluid administration by 110 and in a structure where the flow paths are isolated from each other in order to reduce unwanted interactions It is the fact that. 8. According to claim 1, it is a multi-way tap and its characteristic feature is that it can prevent leaks that may occur in the fluid flow paths. Its body is made of transparent material to allow blockages to be observed. that it has been done. 115 9. Multi-way tap according to claim 1, characterized by its high density suitable for medical use. It is made of polyethylene, polycarbonate, or polypropylene materials. SUMMARY 120 MULTI-WAY FAUCET The invention describes a procedure for hospitalized patients who can receive four different fluids simultaneously via intravenous administration. In patients requiring the administration of fluids, the fluids are delivered safely and controllably through a single apparatus. and relates to a multi-way tap that ensures efficient delivery. 125 The subject of the invention is a multi-way tap; one rotary male cover (1), one rotary male inlet (2), four 3 female luer lock connectors and at the end of each liquid line to ensure flow control. For this purpose, four stoppers (4) with stopcock feature are formed and on each flow path, 360° rotatable valve for turning the fluid flow on and off, with visual on / off position indicators (arrows). There are four switches (5) with an on / off function indicated by . This structure is 130 Thanks to this, it is possible to administer four different liquids simultaneously, safely and in a controlled manner. is happening.
Claims
1 TARIFF MULTI-WAY FAUCET Technical Area 5 This invention relates to the field of medical devices and intravenous treatment systems, and can be used in hospitals for multiple purposes. This allows for the simultaneous, safe, and controlled administration of excess fluid to the patient. It relates to multi-channel liquid dispensing devices. State of the Art 10 With current techniques, multiple fluids cannot be administered simultaneously during intravenous treatment in hospitals. Three-way taps are commonly used in situations where a specific type of water supply is required. The subject is three-way taps, which generally allow the simultaneous application of two different liquids. It is designed in this way. However, current three-way tap systems cannot handle more than two liquids simultaneously. This does not allow for controlled and safe application, and a larger number of liquids 15 This situation necessitates the use of additional equipment in cases where its application requires it. This complicates the implementation process, increases the risk of errors, and reduces ease of use. It reduces. In order for the patient to receive four different fluids simultaneously as part of medical treatment, the existing 20 In this technique, three three-way taps need to be connected to each other. This is how it is formed. Multiple connection structures can loosen at the connection points depending on the patient's movements. This can lead to separations, which can result in undesirable consequences such as the cannula coming out of the vein. This can lead to the following consequences: an increased number of connections increases the risk of infection, and interruptions in fluid flow... and can increase the risk of blockages in three-way taps. 25 of your existing three-way tap Lack of sufficient transparency can lead to early detection of blockages in the flow pathways. This makes it difficult to notice. Stoppers, which are used to turn off the tap, The lack of a stopcock (tap) function increases both the risk of developing an infection and It increases the risk of developing complications associated with intravenous fluid therapy. The total length created by three three-way taps used by adding them together is 30 for the patient's application. 2 This can lead to a loss of comfort and restricted movement in the region. This situation is particularly problematic during long periods of time. This increases the difficulties of use in patients requiring long-term intravenous treatment. Purpose of the Invention The aim of the invention is to ensure the equal distribution of four different fluids in patients receiving intravenous fluid therapy in hospitals. a single-piece apparatus that ensures timely, safe, controlled and effective application. It is about developing. One of the main advantages of the invention is that, thanks to its one-piece structure, it allows the patient to move freely. It does not restrict access and increases comfort in the application area. Furthermore, it eliminates the need for multiple connections. 40 By eliminating it, it reduces the risk of leakage from the vein, the risk of infection, and the risk of blockage. It reduces. The transparent structure of the device developed within the scope of the invention allows for the prevention of accidents that may occur in the intravenous system. This allows for the early detection of blockages. In addition, the device has 45 The fact that area stoppers have a stopcock feature reduces the risk of developing infection and intravenous fluid It reduces the likelihood of complications arising from the treatment. Explanation of the figures Figure 1. Top view of a multi-way faucet 50 Figure 2. Side view of the multi-way faucet. Figure 3. Bottom view of the multi-way faucet. Figure 4. Appearance of the device without the rotating male cover and stopper. Figure 5. View of the rotating male cover. Figure 6. View of a 360° rotary on / off switch. 55 Figure 7. Stopper view. 3 Explanation of the references in the figures. 1: Rotating male cover 60 2: Rotary male input 3: Four female luer lock connectors 4: Four stoppers with stopcock function 5: Four switches with on / off function 65 Description of the invention This useful model involves the simultaneous administration of four different fluids to patients receiving intravenous fluid therapy. It relates to a multi-way tap structure that allows for the dispensing of water. The device in question consists of one rotating male cap (1) and four male inlets (2). 70 Four different fluid lines are connected via these inlets with four female luer lock connectors (3). It is possible to connect to the system. At the end of each fluid line, there are four stopcocks to provide flow control. There are four stoppers (4). Thanks to these stoppers, the relevant liquid line can be opened or 75 It is possible to close it. Additionally, each flow path features a 360° rotatable opening to control fluid flow. It has a closing mechanism and its open / closed position is indicated by directional signs (arrows). There are four switches (5). Thanks to this structure, each liquid line can be controlled independently. This allows the fluid flow to be started or stopped as needed. How the invention can be applied to industry. The invention, a multi-way tap, is based on methods commonly used in the manufacture of medical devices and It can be produced using biocompatible plastic materials. The production process utilizes the existing three-way 85 4 It is carried out in a similar way to the production techniques of faucets, using injection molding. It has a structure suitable for mass production using this method. REQUESTS 1. Patients are given multiple fluids intravenously simultaneously, independently, and in a controlled manner for 90 days. It is a multi-way stopcock that enables the application of four different liquids simultaneously to patients. one rotary male cap (1), rotary male inlet (2), four to enable its application. It includes four female luer lock connectors (3), four stoppers (4) and four keys (5).
2. According to claim 1, it is a multi-way stopcock whose feature is that it allows patients to receive four different fluids simultaneously. 95 in the structure of a rotating male cap (1) with a connection that will enable its application. It is the fact that.
3. According to claim 1, it is a multi-way stopcock whose feature is that it allows patients to receive four different fluids simultaneously. It is in the form of a rotary male inlet (2) which will enable its application.
4. According to claim 1, it is a multiway tap and its feature is that it is connected by four female luer lock connectors (3). The flow paths are arranged in a compact structure, converging near the cannula inlet, at 100°. It is the fact that.
5. According to claim 1, it is a multi-way tap whose feature is that the flow is opened at the end of each outlet line. Stopper with stopcock feature that enables closing and flow control (4) It is the presence of.
6. According to claim 1, it is a multi-way tap and its feature is that on each outlet line, the fluid enters the vessel 105 A 360° rotatable, on / off position indicator that allows or prevents transmission. It contains four switches (5) with an on / off function, indicated by signs (arrows).
6. According to claim 1, it is a multi-way tap and its features include reducing the risk of leakage, the risk of infection, and the risk in the flow line. It is designed as a single-piece or integrated structure to reduce the risk of blockage.
7. According to claim 1, it is a multiway stopcock whose feature is to reduce flow delay in intravenous fluid administration by 110 and in a structure where the flow paths are isolated from each other in order to reduce unwanted interactions It is the fact that.
8. According to claim 1, it is a multi-way tap and its characteristic feature is that it can prevent leaks that may occur in the fluid flow paths. Its body is made of transparent material to allow blockages to be observed. that it has been done. 115 9. Multi-way tap according to claim 1, characterized by its high density suitable for medical use. It is made of polyethylene, polycarbonate, or polypropylene materials. SUMMARY 120 MULTI-WAY FAUCET The invention describes a procedure for hospitalized patients who can receive four different fluids simultaneously via intravenous administration. In patients requiring the administration of fluids, the fluids are delivered safely and controllably through a single apparatus. and relates to a multi-way tap that ensures efficient delivery. 125 The subject of the invention is a multi-way tap; one rotary male cover (1), one rotary male inlet (2), four 3 female luer lock connectors and at the end of each liquid line to ensure flow control. For this purpose, four stoppers (4) with stopcock feature are formed and on each flow path, 360° rotatable valve for turning the fluid flow on and off, with visual on / off position indicators (arrows). There are four switches (5) with an on / off function indicated by . This structure is 130 Thanks to this, it is possible to administer four different liquids simultaneously, safely and in a controlled manner. is happening.