An electronic switching conversion kit for mechanically operated cylinder lever locks.
Patent Information
- Application Number
- TR202501609
- Authority / Receiving Office
- TR · TR
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2025-02-12
- Publication Date
- 2026-09-21
- Estimated Expiration
- 2045-02-12
Smart Images

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Abstract
Description
1 TARIFF FOR MECHANICALLY KEYED BARREL-TYPE HANDLE LOCKS. ELECTRONIC SWITCHING CONVERSION KIT Technical Field to Which the Invention Belongs The invention described in the application is a lever-operated 5-cylinder that can be mechanically locked and unlocked via a barrel. can be mounted on locks, electronically switching the cylinder so that the lever lock works. mechanical system that allows it to be locked and unlocked electronically This relates to a suitable electronic switching conversion kit for switched lever locks. Background of the Invention Prior to this technology, lever locks were preferably designed for multi-point locking and external 10 Due to their resistance to environmental conditions, they are particularly suitable for outdoor cabinets and They are frequently preferred for locking cabinets. Lever locks allow the user to... The user pulls the locking lever towards themselves from one of its movable ends. This is achieved through the user's pulling motion. The lock handle is attached to the lock body by a hinge connection at its other rotating end. It rotates perpendicularly to its body. The user engages the lock by rotating the locking lever vertically. He grasps the movable end that extends away from the body with his hand and places it on the plane where the lock body is located. By rotating it in parallel, the lever lock can be opened and closed. Locking and unlocking the lever lock... It can be opened mechanically by means of a cylinder or by a key or an electronic lock. This can be done electronically by switching it via a device. Here, on the barrel lock handle... It is located there. The barrel lock lever engages with the lock body, thus locking it, and the lock lever is thus 20 It prevents the lock handle from being rotated perpendicular to the lock body. If it cannot be rotated, it must be parallel to the plane in which the lock body is located. It cannot be rotated. Therefore, the lever lock cannot be opened; in other words, it is in the locked state. The cylinder is positioned. The lock is opened and closed mechanically with a mechanical key. The lever is locked into the lock body. 25 Locking and unlocking mechanically operated cylinders is done with a mechanical key. Since this is achieved through this method, mechanically operated lever locks are numerous. It cannot provide efficient use for the applications the user is involved in. For these applications... The mechanical key needs to be duplicated for each user. This incurs an additional cost of 30. It requires this. Losing the mechanical key can create a security vulnerability. The aforementioned In situations where the number of users increases due to problems, electronically switched levers are used. 2 Locks are preferred. Locking and unlocking are done with electronically operated lever locks. An electronic key is used for the transactions. The electronic key is, for example, a number. a combination or an identifier such as RFID / NFT is practically distributed to users This is achievable. Prior to this technology, a mechanical, key-operated barrel lever lock was... When it is desired to replace the lock configurations with electronically operated lever locks, 5 lock configurations The entire system will need to be replaced. In this case, the currently used mechanical system will be replaced. The keyed cylinder lever lock will be disassembled and will remain in a discarded state. New The electronically operated lever lock that will be purchased represents a significant additional cost for the user. This will create an assembly job. Due to the problems mentioned above, mechanically operated cylinder lever locks are preferred. mountable, electronically switchable cylinder, thus lever lock mechanical that allows it to be locked and unlocked electronically a suitable electronic switch conversion kit for switched cylinder lever locks It is needed in technology. 15 Purposes of the Invention The main purpose of the present invention is to provide mechanically switched cylinder lever locks. mountable, electronically switchable cylinder, thus lever lock mechanical 20 that allows it to be locked and unlocked electronically A suitable electronic switching conversion kit for switched cylinder lever locks. to accomplish. Another purpose of the invention is to provide a suitable back for mechanically switched barrel lever locks. containing a cover, thus only the rear cover of mechanically operated cylinder lever locks by changing it, the cylinder can be electronically switched, thus making the lever lock 25 an electronic device that allows it to be locked and unlocked electronically The goal is to implement a switching conversion kit. Detailed Description of the Invention To achieve the objectives of this invention, a mechanically switched barrel lever 30 was developed. An electronic key conversion kit for the locks is shown in the attached figures, The details of the invention should be evaluated taking into account the entire description. These shapes; 3 Figure 1. An electronic switching conversion kit in an example application of the invention. It looks like it's been blown up. Figure 2. The first actuator tongue, containing a kit body, in an example application of the invention. The perspective of the electronic switching conversion kit in position 5 It is the appearance. Figure 3. The second actuator tongue, containing a kit body, in an example application of the invention. perspective of the electronic switching conversion kit in position It is the appearance. Figure 4. The first 10 of the actuator tongue, including a kit body, in an example application of the invention. Rear view of the electronic switching conversion kit in its position. It is the appearance. Figure 5. The second actuator tongue, containing a kit body, in an example application of the invention. Rear view of the electronic switching conversion kit in its position. It is the appearance. 15 Figure 6. The first actuator tongue, containing a kit body, in an example application of the invention. Side view of the electronic switching conversion kit in its position. It is the appearance. Figure 7. The second actuator tongue, containing a kit body, in an example application of the invention. Side view of the electronic switching conversion kit in position 20 It is the appearance. Figure 8. A kit body in the form of a back cover in an example application of the invention. electronic switching conversion kit and mechanically switched cylinder Perspective view of the lever lock. Figure 9. A mechanically switched barrel lever lock with 25 in an example application of the invention. assembled electronic switching kit body in the form of a back cover. conversion kit, with the barrel tongue in the locking position and the actuator tongue in the first position in position where the barrel tongue rests against the bearing surface of the lock body And so this is a perspective view with the lever of the lock locked. Figure 10. A mechanically switched barrel lever 30 in an example application of the invention. The electronic kit housing, which is mounted on the lock and shaped like a back cover. the switching conversion kit, the barrel tongue in the unlocked position and the actuator the tongue is in the second position, the barrel tongue is inside the barrel body a perspective where it is positioned and thus the lever lock handle is unlocked It is the appearance. 35 4 Figure 11. A mechanically switched barrel lever in an example application of the invention. The electronic kit housing, which is mounted on the lock and shaped like a back cover. the switching conversion kit, when the actuator tongue moves to the second position and Thus, the barrel tongue is brought to the unlock position, releasing the locking lever. In this case, the lock handle, rotated perpendicularly to the lock body, is a 5 It is a perspective view. Figure 12. A mechanically switched barrel lever in an example application of the invention. The electronic kit housing, which is mounted on the lock and shaped like a back cover. the switching conversion kit, when the actuator tongue moves to the second position and Thus, by bringing the barrel tongue to the unlock position, the locking lever is released. 10 In this case, the lock body is first rotated perpendicularly and then parallel. It is a perspective view of the lock handle, which is turned to unlock the lock. The corresponding reference numbers used in the figures are given below. 100. Electronic switching conversion kit 110. Actuator tongue 111. Key trigger protrusion 120. Actuator 121. Connection circuit board 20 122. Connection circuit board fixing element 130. First key 140. Second key 150. Kit body 151. Front cover 25 152. Front cover fastening element 160. Control circuit board KK. Mechanical key-operated cylinder handle lock. B. Barrel BD. Barrel language 30 BG. Barrel body BK. Barrel cover DY. Bearing Surface KG. Lock body KO. Locking handle 35 HU. Moving tip DU. Rotary tip The invention offers an electronic, or in other words, a variant of mechanically switched cylinder lever locks (CC). an electronic 5 that allows it to be locked and unlocked electromechanically. It relates to the switching conversion kit (100). Electronics in the applications of the invention. Switching conversion kit (100) already in a cupboard, panel or cabinet, for example on an assembled mechanical switched cylinder lever lock (CC) It has a suitable structure for mounting. Thus, a mechanically switched barrel lever lock. (KK) mechanically switched cylinder 10 without modification or complete disassembly. The ability of a lever lock (RC) to be electronically locked and unlocked. This is being achieved. As a result of the invention, mechanical switched cylinder lever locks (CC) It can be converted to electronic switching in a quick, easy, and economical way. The specification describes mechanical switched barrel lever locks (KK) for panels (e.g., electrical 15 or telecommunication panels), enclosures, technical cabinets (e.g. industrial (into their cabinets), transport boxes (for example, boxes for security or transport purposes or Maintenance of structures such as chests, drawers, safes, and heating and cooling systems. a lockable type that can be mounted on their covers, including but not limited to these examples. It is a type. 20 The invention is a lock body (LB); a device capable of performing a rotational movement on the lock body (LB). a hinged rotating end (DU) and which can be removed from the lock body (KG) a locking lever (LO) having a movable end (MU) that can move in a certain way; on the locking lever (LO) a barrel (B) located in a barrel body (BG); a linear 25 located in the barrel (B). the barrel body (BG) inside the barrel can move in a locking position. extending outwards from the body (BG) to a bearing surface (DY) on the lock body (KG) resting on and thus securing the movable end (HU) to the lock body (KG), the lock lever (KO) locking, in a way that it will not rest against the bearing surface (SS) in an unlocked position positioned so that the movable end (HU) moves relative to the locking body (KG) 30 mechanically switched barrel lever containing a barrel tongue (BD) that allows it to operate It relates to a suitable electronic switching conversion kit (100) for locks (KK). Electronic switching conversion kit (100), barrel tongue (BD) to barrel body (BG) an actuator tongue (110) for applying a pushing force in the direction of; barrel tongue (BD) with a first position that allows the barrel tongue (BD) to remain in the locking position barrel 35 6 a second position in which it is brought to the unlock position by being pushed along the body (BG) an actuator (120) to move the actuator tongue (110) linearly between them; When it receives an unlocking command, the actuator tongue (110) moves through the actuator tongue (120) to the barrel tongue. (BD) to move it in the direction of the barrel tongue (BD) and the barrel body (BG) By applying a pushing force in that direction, the actuator tongue (110) is moved to the second position 5 bringing, and when it receives a locking command, the actuator tongue via the actuator (120) (110) By moving the actuator tongue (110) in the opposite direction to the barrel tongue (BD), the first It includes a control unit adapted for bringing it to the correct position. The subject of the invention is an electronic switching conversion kit (100) with mechanically switched barrel 10 It is suitable for use in lever locks (LC). Electronic switching. Conversion kit (100) onto a mechanical switched barrel lever lock (KK) It can be assembled. Assembly of the electronic switching conversion kit (100) subsequently the mechanically switched barrel lever lock (KK) electronically It is switchable, in other words the lock handle (KO) can be locked electronically and 15 The lock can be unlocked. Electronic switching conversion in the applications of the invention. For the assembly of the kit (100), preferably any mechanical switched barrel lever lock (KK) No modification is needed. Thus, the electronic switching conversion kit... (100) mechanically operated cylinder lever lock (KK) even after assembly It can also be switched using a mechanical key, in other words, the lock 20 The handle (KO) can be locked by means of a mechanical key compatible with the barrel (B), and the lock It can be opened. Mechanical compatible with the assembly of the electronic switching conversion kit (100). The keyed cylinder lever lock (CC) has a lock body (KG) and a lock handle (KO). Lock 25 One end of the lever (KO) is hinged to the lock body (KG). Hinged swivel end (DU) can perform rotational movement in two dimensions. The rotating end (DU) locks the locking lever (KO). It allows the body (KG) to be rotated perpendicularly and parallel to it. The locking lever (KO) The other end is the movable end (HU), which can be moved away from the lock body (KG) and the lock Freely rotating via a rotating tip (DU) that can be brought closer to the body (KG) 30 It is able to perform the movement. On the locking lever (KO), preferably near the movable end (HU). Barrel (B) is positioned. Barrel (B) has a barrel body (BG) and the barrel body The barrel tongue (BD) is located inside (BG). Mechanical keyed barrel lever lock (KK) locked. In this case, the barrel tongue (BD) moves from inside the barrel body (BG) to outside the barrel body (BG). It extends in the form of a straight protrusion. The barrel tongue (BD) extending in the form of a protrusion must be at least 35 7 A portion of it rests on a bearing surface (BS) located within the lock body (LB). This situation Defines the locking position of the barrel tongue (BD). The user moves the locking lever (KO) towards themselves. When pulling, rotate the lock body (KG) perpendicularly to the stop. The barrel tongue (BD) resting on the surface (DY) of the movable end (HU) is locked from the body (KG) It does not allow separation and departure. Electronic switching conversion kit (100) 5 Otherwise, the user can only unlock the mechanically switched cylinder lever lock (CC) It can be opened using a mechanical key. The user can open it using the mechanical key. It unlocks the barrel (B) lock and thus the mechanically switched barrel lever lock (KK). When the mechanically operated cylinder lever lock (KK) is unlocked, the cylinder tongue (BD) of the cylinder... The part protruding outwards from the body (BG) is reduced or disappears. Thus, the lock 10 The contact between the body (KG) and the bearing surface (DY) is broken. This situation causes the barrel tongue (BD) to break. It defines the unlock position. This releases the movable end (HU) and engages the lock body. (KG) can be rotated perpendicularly to the lock body (KG) and moved away from it. It can move. By pulling the locking lever (KO) towards himself, the movable end (HU) This allows the lock body (KG) to move away from the movable end (HU). Then the user locks the lock 15 from the movable end (HU). grasping the handle (KO) with his hand, keep the locking handle (KO) parallel to the lock body (KG). It applies a rotational movement in that direction. When the locking lever (LO) is rotated, the mechanical In a keyed cylinder lever lock (CC), at least one cam mechanism is activated and The structure to which the lever lock is installed, such as a cabinet, panel, or cupboard, is opened. Mechanical Keyed cylinder lever lock (KK) also cylinder (B) resistant to external environmental factors such as liquid, dust, and sunlight 20 It may include a barrel cover (BK) located in the lock body (KG) that protects against the conditions. Electronic switching conversion kit (100) compatible with mechanically switched cylinders. It is suitable for mounting on the rear section of a lever lock (RC). Here The aforementioned rear section barrel body (BG) and mechanically operated barrel lever lock 25 (KK) is the section between the back cover of the electronic switching conversion kit. (100) After assembly, the mechanical switched barrel lever lock (KK) is now electronic It is capable of being locked and unlocked. Assembly in the applications of the invention. When completed, the actuator tongue (110) is essentially aligned with the barrel tongue (BD). It will be positioned. After assembly of the electronic switching conversion kit (100) 30 The operation method with a mechanically switched barrel lever lock (KK) is described below. will be explained: Electronic switching conversion kit (100) assembled mechanical switched barrel When the lever lock (RC) is in the locked position, the barrel tongue (LB) is in the locking position and the actuator tongue is 35 8 (110) is in the first position (See figure 9). Referring to figure 9, in the locking position The barrel tongue (BD) is a projection extending from the barrel body (BG) outwards. It extends in the form of a barrel that protrudes outwards from the barrel body (BG). The tongue (BD) rests against the bearing surface (DY) of the lock body (KG). It is aligned with (DY). A mechanical switched barrel lever lock (KK) is attached to a structure, for example, a 5 Since it is mounted on a cupboard, panel or cabinet, the lock body (LB) is mounted. It does not move relative to the surface. Thus, the lock body (KG) rests on the bearing surface (DY). The movement of the barrel (B) relative to the lock body (KG) via the supported barrel tongue (BD). It is blocked. Barrel (B) in the lock handle (KO) of the mechanical keyed barrel lever lock (KK) It is positioned accordingly. As a result, the barrel tongue (BD) is 10 inches from the bearing surface (DY) of the lock body (KG). While it is in place, the locking lever (KO) is prevented from being turned by users. Furthermore... In other words, the mechanically operated cylinder lever lock (MOL) is in the locked position. User electronic switching conversion kit (100) assembled mechanical switching When the user wants to unlock the barrel lever lock (KK), a lock release request is made. It generates the command. When the unlock command reaches the control unit, the control unit activates the actuator. (120) moves the actuator tongue (110) to the second position. The second position of the actuator tongue (110) to bring the actuator (120), actuator tongue (110) barrel tongue (BD) into position It moves in the direction of the actuator tongue (110) into the barrel tongue (BD) and barrel body (BG). It pushes correctly. Thus, the barrel tongue (BD) and no part of the barrel tongue (BD) touches the lock body (KG) 20 inside the barrel body (BG) so as not to rest on the bearing surface (DY). It is positioned. In this case, the barrel tongue (BD) is in the unlocked position and the actuator The tongue (110) is in the second position (See figure 10 and figure 11). Referring to figure 10, unlocking No part of the barrel tongue (BD) in its position rests on the bearing surface (DY). Barrel Since the direct connection between the tongue (BD) and the lock body (KG) is broken, the lock handle (KO) 25 The movable end (HU) is free relative to the lock body (KG). The user locks the lever (KO). By pulling the movable end (HU) towards oneself, the movable end (HU) is relative to the lock body (KG). It rotates vertically in one direction and can be moved away from the lock body (KG) (See figure 11). When the user rotates the movable end (MU) parallel to the lock body (KG) Electronic switching conversion kit (100) assembled mechanical switched barrel 30 The lever lock (LC) is unlocked (see figure 12). Thus, electronic switching is enabled. conversion kit (100) assembled mechanical switched barrel lever lock (KK) assembled The unit in question, for example, the cupboard door, can be opened freely. 9 User electronic switching conversion kit (100) assembled mechanical switching When you want to relock the barrel lever lock (KK), the movable end (HU) is attached to the lock body. (KG) rotates in the opposite direction parallel to the (KG). Then the user locks the lever (KO) Pushes the movable end (HU) towards the lock body (KG) and the movable end (HU) into the lock body (KG) is installed. Then the user creates a locking command. Locking 5 to the control unit. When the command is received, the control unit actsuates the actuator tongue (110) via the actuator (120) first brings it to the position. To bring the actuator tongue (110) to the first position, the actuator (120), It advances the actuator tongue (110) in the opposite direction to the barrel tongue (BD). Thus, the barrel tongue (BD) An area is revealed where it can be aligned with the bearing surface (DY). Located in the barrel (B) a flexible element, preferably a spring, in the direction of the barrel tongue (BD) actuator tongue (110) 10 The barrel tongue (BD) is aligned with the bearing surface (DY) of the barrel body (BG). It protrudes outwards from the barrel body (BG) from inside. In this case, the barrel The actuator tongue (BD) is in the locking position and the actuator tongue (110) is in the first position. Thus Electronic switching conversion kit (100) assembled mechanical switched barrel The lever lock (LC) is then re-locked (See figure 9). 15 In applications of the invention, the position of the barrel tongue (BD) determines the position of the actuator tongue (110). It follows. When the actuator tongue (110) is brought to the first position by means of the actuator (120) The locking operation is performed when the barrel tongue (BD) comes to the locking position. Actuator tongue (110) When the actuator (120) is moved to the second position, the barrel tongue (BD) unlocks. The lock is unlocked when the device reaches that position. Suitable for mechanically switched barrel lever locks (KK) in an application of the invention. an electronic switching conversion kit (100), actuator tongue (110) first position It includes a first key (130) that is triggered when it arrives. In this application of the invention, the first 25 When the key (130) actuator tongue (110) comes to the first position, it is triggered, thus creating a first It is adapted to generate a position signal. When the first position signal is generated, control The unit detects that the actuator tongue (110) has come to the first position and activates the actuator (120) It stops the actuation it applies. Thus, the actuator tongue (110) that holds the locking lever (KO) locked. The first position is maintained and an additional 30 is added to the moving parts, especially the barrel latch (BD). This prevents the application of stress on the actuator tongue (110) and the actuator (120). Service life is extended. Suitable for mechanically switched barrel lever locks (KK) in an application of the invention. an electronic switching conversion kit (100), actuator tongue (110) second position 35 It includes a second switch (140) which is triggered when it arrives. In this application of the invention, the second When the key (140) actuator tongue (110) comes to the second position, it is triggered, thus creating a second It is adapted to generate a position signal. When the second position signal is generated, the control... The unit detects that the actuator tongue (110) has come to the second position and activates the actuator (120) It stops the actuation it applies. This allows the locking lever (KO) to be opened (unlocking it 5). The second position of the actuator tongue (110) (which keeps it open) is maintained. On the moving parts, especially applying extra stress on the actuator tongue (110) and actuator (120) This prevents damage. Thus, the service life of the barrel (B) is extended. In the applications of the invention, the actuator tongue (110) comes to the first position and / or the second 10 coming into position is detected by the torque or force difference applied by the actuator (120). It can also be done with. Actuator tongue (110) from first position to second position When brought into contact, the actuator tongue (110) starts to push the barrel tongue (BD). In this case, the barrel tongue (BD) must provide the counterforce applied by the actuator (120) to the actuator tongue (110). Increases torque or force. Depending on the selected rate of increase in torque or force, the actuator 15 It can be understood that the tongue (110) comes to the first position or the second position. However, the actuator (120) to measure the torque or force value provided by the actuator tongue (110) Since an advanced configuration may be required, the cost of the actuator (120) and / or control unit It may increase. A driver may be required to drive the actuator (120) for measurement. The invention In applications where the first switch (130) and / or the second switch (140) are used, actuator 20 (110) with low cost and where the language comes to the first position and / or the second position It is carried out reliably. Suitable for mechanically switched barrel lever locks (KK) in an application of the invention. an electronic switching conversion kit (100), located in the actuator language (110), actuator 25 When the tongue (110) comes to the first position, it touches the first key (130) and the first key (130) and / or contact the second switch (140) when the actuator tongue (110) comes into the second position. to trigger the second key (140) at least one key trigger protrusion (111) It includes. An example configuration of this application of the invention is shown in Figures 1, 4, and 5. With this application, the first key (130) actuator tongue (110) is in the first position and / or 30 The second key (140) is easily triggered when the actuator tongue (110) is in the second position. This With the application, the surface of the key trigger protrusion (111) is connected to the first key (130) or the second Since the switches can be adjusted according to the switch (140), the switches are triggered with high precision. 11 In Figures 2, 4, 6 and 9, the actuator tongue (110) locking lever (KO) is not allowed to be opened, In other words, it is in the first position where the locking lever (KO) is kept locked. In Figures 3, 5, 7, 10-11, the actuator tongue (110) is allowed to be opened by the locking lever (KO), In other words, it is in the second position where the lock lever (KO) is released. In Figure 4, the actuator tongue (110) is in the first position and the switch trigger protrusion (111) is 5 By touching the first switch (130), he triggered the first switch (130). In Figure 5, The actuator tongue (110) is in the second position and the switch trigger projection (111) is to the second switch. (140) triggered the second switch (140) by making contact. Suitable for mechanical switched barrel lever locks (KK) in an application of the invention. an electronic switching conversion kit (100), mechanical switched barrel lever locks At least the actuator tongue (110), which is in the form of a suitable back cover for (KK), the actuator (120) and a kit housing that protects the control unit from external environmental conditions. (150) is included. The kit body (150) is shown in the applications in Figure 1-11. Here the kit The housing (150) is especially a grip for the actuator tongue (110) and the actuator (120) and 15 It acts as a positioning structure. The kit body (150) is especially important for the actuator tongue (110) and positions of the actuator (120) relative to the mechanically switched barrel lever lock (KK) It determines. Thus, the assembly of the electronic switching conversion kit (100) and It works in conjunction with mechanically switched barrel lever locks (KK). It can be performed without the need for adjustments / calibrations. Users 20 electronic switching conversion kit (100) to mechanical switching barrel lever lock (KK) back cover of mechanically switched barrel lever lock for assembly. After disassembling the kit body (150), replace the rear cover with a mechanical switch. Installation on a barrel lever lock (KK) is sufficient. A variation of this application of the invention is access to a front section of the kit body (150). It includes a front cover (151) which provides the unlock command and / or Adding suitable devices that enable the generation of the locking command. or provides convenience for connecting to the control unit. After the front cover (151) is opened The aforementioned device is assembled and / or connected to the control unit. Thus, 30 The type of apparatus or connection mentioned can be easily changed. This invention... A variation of the application is for fixing the front cover (151) to the kit body (150). It includes at least one front cover fastening element (152), preferably in the form of a screw (See Figure 1). 35 12 Suitable for mechanically switched barrel lever locks (KK) in an application of the invention. an electronic switching conversion kit (100), in the form of a control circuit board (160) It includes a control unit. This application of the invention provides a cost-effective and reliable solution for the control unit. and offers an easily manufactured alternative. The control circuit board (160) unlock command a suitable 5 for adding devices that enable the generation of the locking command. It provides the area / surface / substrate. Alternatively, the control circuit board (160) unlock command. and / or the control unit of the devices that enable the generation of the locking command. It provides a suitable area / surface for connection, preferably an interface such as a socket. The invention a variation of this application is the control circuit board (160) to the kit body (150) At least one connector for securing the circuit board, preferably in the form of a screw. 10 It contains element (122) (See figure 1). A variation of this application of the invention is located on the actuator (120), the actuator (120) a connection circuit board that electrically connects to the control circuit board (160). (121) includes. This application of the invention includes the actuator (120) control circuit board (160) 15 It makes it easier to connect it electrically. Thus, the actuator (120) fails. In this case, the actuator (120) can be easily removed, preferably only by disassembling the front cover (151). It can be replaced with a new one, which will be sufficient. Suitable for mechanical switched barrel lever locks (KK) in an application of the invention. an electronic switching conversion kit (100), a magnetic actuator, a piezoelectric It includes an actuator or a linear motor (120). Mechanically switched barrel. the structure to which the lever lock (LC) is mounted, for example, a cupboard, panel, or cabinet The type of actuator (120) may vary depending on the environmental conditions in which it is located. For example, very Since magnetic actuators will not operate efficiently in hot environments, a different type of actuator is recommended. 25 (120) available. Suitable for mechanically switched barrel lever locks (KK) in an application of the invention. An electronic switching conversion kit (100) includes an actuator (120) which is a rotary motor. In the preferred application of the invention, the actuator is in the form of a rotary motor (120). Rotary 30 It offers a low-cost and reliable alternative to the motor actuator (120). A variation of this application of the invention is an actuator, which is a geared DC rotary motor. (120) includes. With this application of the invention, the actuator (120) speed, torque and / or power 13 by adjusting the actuator tongue (110) to the first position and the second position precisely. Ensuring that it is brought in. Another variation of this application of the invention is the screw shaft at the rotor end of a rotary motor. It should be in the form of and the surface of the actuator tongue (110) facing the rotor end should be on a nut 5 This application of the invention includes having an actuator in the form of a rotary motor (120). A suitable drivetrain for a linear drive application has been described. Suitable for mechanically switched barrel lever locks (KK) in an application of the invention. an electronic switching conversion kit (100), unlock command and / or locking 10 a keypad, an RFID reader, an NFC reader, a biometric to generate the command The ID reader includes a smart card reader or a mobile application docking unit. The structure in which the mechanically switched cylinder lever lock (CC) is installed, for example, a unlocking the cabinet, panel, or cupboard according to the surrounding conditions. 15 suitable for generating the command and / or locking command, enabling its generation. The type of device may vary. For example, fingerprint scanning in very cold environmental conditions. The biometric ID reader will not be useful. Instead, a very cold environment. under these conditions, the unlock command in the form of a keypad, RFID reader, or NFC reader Devices that enable the generation of the locking command and / or locking mechanism may be preferred.
Claims
14 REQUESTS 1. A lock body (KG); a rotational movement on the lock body (KG). a hinged rotating end (DU) and lock body (KG) that can do this a lock with a movable end (HU) that can be moved away The handle (KO) is a cylinder with a barrel body (BG) located in the locking handle (KO). 5 (B); a locking mechanism located in (B) of the barrel that can move linearly. from inside the barrel body (BG) to outside the barrel body (BG) in that position. by reaching out and resting on a bearing surface (RS) in the lock body (LB), and thus a device that locks the locking lever (KO) by securing the movable end (HU) to the lock body (KG). 10 in the unlocked position so that it does not rest against the bearing surface (SS). positioned so that the movable end (HU) moves relative to the locking body (KG). mechanically switched barrel containing a barrel tongue (BD) that allows it to do so It is an electronic key conversion kit (100) for lever locks (KK) and its features applying a thrust force to the barrel tongue (BD) in the direction of the barrel body (BG) an actuator tongue (110); allowing the barrel tongue (BD) to remain in the locking position 15 giving a first position with the barrel tongue (BD) in line with the barrel body (BG). between a second position where it is pushed to the unlock position, the actuator tongue (110) an actuator (120) to move linearly; a lock release When it receives the command, the actuator tongue (110) barrel tongue (BD) is activated by the actuator (120). moving it in that direction and the barrel tongue (BD) to the barrel body (BG) 20 by applying a pushing force in that direction, the actuator tongue (110) is moved to the second position. bringing, and when it receives a locking command, the actuator (120) through the actuator by moving the actuator tongue (110) in the opposite direction to the barrel tongue (BD) It includes a control unit adapted to bring it to the first position.
2. An electronic lock for mechanically switched cylinder lever locks (CC) as in Claim 1. Switching conversion kit (100) and its feature is actuator tongue (110) first It contains a first switch (130) which is triggered when it reaches position.
3. Mechanically switched barrel lever 30 as in any of the previous requests. It is an electronic key conversion kit (100) for locks (KK) and its features A second switch (140) is triggered when the actuator tongue (110) comes to the second position. It includes.
4. For mechanically switched cylinder lever locks (CC) as in Claim 2 or 3. an electronic switching conversion kit (100) and its feature is in actuator language (110) When the actuator tongue (110) comes to the first position, the first switch (130) by contacting the first key (130) and / or the actuator tongue (110) second When it reaches the position, touch the second key (140) and press the second key (140) 5 It must contain at least one key trigger protrusion (111) for its triggering.
5. Mechanically operated barrel lever as in any of the previous requirements. It is an electronic key conversion kit (100) for locks (KK) and its features A suitable back cover for mechanically operated cylinder lever locks (KK) 10 in the form of at least the actuator tongue (110), the actuator (120) and the control a kit housing (150) that protects the unit from external environmental conditions It includes.
6. An electronic 15 for mechanically switched cylinder lever locks (CC) as in Claim 5. The switching conversion kit (100) has the feature of a front of the kit body (150). It includes a front cover (151) which provides access to the section.
7. Mechanically operated barrel lever as in any of the previous requirements. An electronic key conversion kit (100) for locks (KK) and features a 20 It contains a control unit in the form of a control circuit board (160).
8. An electronic lock for mechanically switched cylinder lever locks (CC) as in Claim 7. The switching conversion kit (100) is located on the actuator (120), a 25 that electrically connects the actuator (120) to the control circuit board (160). It contains a connection circuit board (121).
9. Mechanically operated barrel lever as in any of the previous requirements. An electronic key conversion kit (100) for locks (KK) and features a 30 which is a magnetic actuator, a piezoelectric actuator or a linear motor It contains an actuator (120).
10. Mechanical keyed cylinder handle locks as in any of claims 1-8. An electronic switching conversion kit (100) for (KK) and its feature is a rotary It contains a motor actuator (120). 35 16 11. For mechanically switched cylinder lever locks (CC) as in Claim 10. Electronic switching conversion kit (100) and its feature is a geared DC rotary It contains a motor actuator (120).
12. Mechanically switched cylinder as in either claim 10 or 11. It is an electronic key conversion kit (100) for lever locks (KK) and its features the rotor end of the rotary motor should be in the form of a screw shaft and the actuator tongue (110) This involves the surface facing the rotor tip having a nut.
13. Mechanically operated barrel lever as in any of the previous requirements. An electronic key conversion kit (100) for locks (KK) and features a lock a keypad for generating unlock commands and / or lock commands, an RFID reader, an NFC reader, a biometric ID reader, a smart card reader or it includes a mobile application connectivity unit. 15