Portable equipment

By combining the fire control module with multiple universal tactical rails, adapters, and cable management components, the stability of portable equipment cables under impact and vibration is solved, achieving long cable life and stable equipment operation.

CN122486408APending Publication Date: 2026-07-31SHANDONG NORTH OPTICAL & ELECTRONICS
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SHANDONG NORTH OPTICAL & ELECTRONICS
Filing Date
2026-05-21
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

The cables of existing portable equipment are prone to loosening, poor contact, and breakage under impact and vibration, resulting in a shortened service life and making it difficult to meet the requirements of practical reliability and ease of maintenance in complex environments.

Method used

It adopts a combination design of fire control module, execution module, multiple universal tactical rails, adapter, external trigger control module and cable management component. The adapter and cable management component are installed through universal tactical rails to fix and organize the cables in sections, disperse tensile stress and avoid stress concentration at the connector wiring port.

Benefits of technology

It achieves stability of portable equipment cables under impact and vibration conditions, reduces the occurrence of failures, extends the service life of cables and connectors, and ensures stable operation of equipment in complex environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

This disclosure relates to the technical field of tactical equipment, and more particularly to a portable device, including a fire control module and an execution module. The execution module is connected to the fire control module and is used to execute control commands issued by the fire control module. Multiple universal tactical rails are disposed on the outer side of the fire control module's main body. An adapter, mounted on the universal tactical rails, is used to connect the signal cable of the execution module to the first control cable of the fire control module. An external trigger control module, mounted on the universal tactical rails, is connected to the electrical components of the fire control module via a second control cable. A cable management assembly, mounted on the universal tactical rails, is used to securely organize the main control cable. This configuration, through the adapter, external trigger control module, and cable management assembly, segmentally secures and organizes the cable, ensuring that the tensile stress on the cable is distributed to the portable device body, reducing cable failures, extending service life, ensuring stable operation of the portable device in complex environments, and allowing for quick assembly and disassembly of components, thus offering high applicability.
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Description

Technical Field

[0001] This disclosure relates to the technical field of tactical equipment, and more particularly to a portable device. Background Technology

[0002] The fire control module of portable equipment possesses core functions such as compatibility with multiple types of ammunition, target ranging, environmental information acquisition and setting, ballistic calculation, and aiming point display. Due to its high degree of functional integration, numerous cable branches, and long cable distances, the cables are subjected to continuous additional tensile stress due to impacts and vibrations during the mobility and firing of portable equipment. This stress also directly affects the wiring ports of the cable connectors. Long-term use can easily lead to faults such as loose wiring, poor contact, and wire breakage, significantly shortening the service life of cables and connectors, and severely restricting the combat reliability and ease of maintenance of portable equipment.

[0003] Currently, conventional cable fixing solutions are mostly simple bundling and clip fixing, which cannot effectively distribute dynamic tension. They also have problems such as messy wiring, inconvenient disassembly and assembly, and poor protection, making it difficult to meet the stringent requirements of tactical equipment in complex environments.

[0004] Therefore, it is necessary to propose a portable device to at least partially solve the problems existing in the prior art. Summary of the Invention

[0005] This disclosure aims to address at least one of the technical problems existing in the prior art or related technologies.

[0006] Therefore, this disclosure proposes a portable device.

[0007] In view of this, a portable device is provided according to an embodiment of the present disclosure, comprising: The fire control module and the execution module are connected to the fire control module and are used to execute control commands issued by the fire control module. Multiple universal tactical rails are mounted on the outer side of the main body of the aforementioned fire control module; The adapter, installed on the aforementioned general tactical rail, is used to connect the signal cable of the aforementioned execution module to the first control cable of the aforementioned fire control module. An external trigger control module is installed on the aforementioned general-purpose tactical rail and is connected to the electrical components of the aforementioned fire control module via a second control cable. The cable management assembly is installed on the aforementioned general-purpose tactical rail. The aforementioned first control cable and the aforementioned second control cable converge to form the main control cable. The cable management assembly is used to fix and organize the aforementioned main control cable.

[0008] In one feasible implementation, the aforementioned universal tactical rail includes a first universal tactical rail and a second universal tactical rail. The first universal tactical rail is disposed at the bottom of the body of the fire control module facing the execution module. The adapter is mounted on the end of the first universal rail facing the execution module. The external trigger control module is mounted on the end of the first universal rail away from the execution module. The second universal tactical rail is disposed on the side of the middle part of the body of the fire control module. The cable management assembly is mounted on the second universal tactical rail.

[0009] In one feasible implementation, the aforementioned adapter includes: The first housing is connected to the first universal tactical rail via a first connecting structure. The first housing is provided with a first mounting chamber and a second mounting chamber, and a wiring channel is formed between the first mounting chamber and the second mounting chamber. A first interface connector is installed in the first mounting cavity, and the first interface connector is used to connect to the signal cable of the execution module. The second interface connector is installed in the second mounting cavity and is used to connect to the first control cable. The second interface connector is connected to the first interface connector through the wiring channel. The second interface connector is inclined relative to the side wall of the fire control module and fits the outer contour of the side wall of the fire control module.

[0010] In one feasible implementation, the first connection structure includes: The first locking screw, the first housing is provided with a first groove, the inner contour shape of the first groove matches the outer contour shape of the first universal tactical rail, wherein the end of the first groove away from the second interface connector is a first movable end, the end closer to the second interface connector is a second movable end, the first groove is provided with a first through hole along the movable direction of the first movable end, the first locking screw passes through the first through hole, and one end of the first locking screw is connected to the first movable end; The first locking nut, the other end of the first locking screw is provided with an external thread, and the other end of the first locking screw is threadedly connected to the first locking nut; wherein, the second movable end is provided with an extension section, and the first locking nut is used to press against the extension section; When the first locking nut is screwed in the first direction, the first locking nut drives the second movable end to move in the direction of the first movable end through the extension section. After the second movable end moves to the maximum distance, the first locking nut is screwed in the first direction so that the first locking screw drives the first movable end to move in the direction of the second movable end.

[0011] In one feasible implementation, the first movable end is provided with a first limiting groove corresponding to the position of the first through hole, and the end of the first locking screw facing the first movable end is provided with a first limiting structure, the contour of the first limiting structure and the first limiting groove are matched.

[0012] In one feasible implementation, the aforementioned external trigger control module includes: The second housing is connected to the aforementioned first universal tactical rail via a second connecting structure; An external trigger controller is disposed inside the second housing. A control button is disposed on the outside of the second housing and is electrically connected to the external trigger controller. An electrical connector is mounted on the second housing, and the second control cable is connected to the electrical connector.

[0013] In one feasible implementation, the second connection structure includes: The third housing is disposed at the end of the second housing where the electrical connector is installed. The third housing is provided with a second groove. The inner contour shape of the second groove matches the outer contour shape of the first universal tactical rail. The end of the second groove away from the electrical connector is the third movable end, and the end close to the electrical connector is the fixed end. The second groove is provided with a second through hole along the moving direction of the third movable end. The second locking screw passes through the third movable end and is inserted into the second groove through the second through hole; The second locking nut has an external thread at one end of the second locking screw near the third movable end. The second locking screw is threaded to the second locking nut. By turning the second locking nut, the second locking nut pushes the third movable end to move closer to the fixed end.

[0014] In one feasible implementation, the fixed end is provided with a second limiting groove corresponding to the position of the second through hole, and the end of the second locking screw facing the fixed end is provided with a second limiting structure, the contour of the second limiting structure and the contour of the second limiting groove are matched.

[0015] In one feasible implementation, the above-mentioned cable management component includes: The fourth housing has a sliding groove that is slidably connected to the second universal tactical rail. One end of the fourth housing with the sliding groove has a placement slot for placing the main control cable. The locking block has a third groove at one end of the fourth housing facing the second universal tactical rail. The third groove is connected to the slide rail. The locking block moves along the third groove toward or away from the slide rail. The locking block has a snap-fit ​​structure at one end facing the slide rail. The snap-fit ​​structure is used to snap into the groove of the second universal tactical rail. An adjustment structure, located within the fourth housing, is used to adjust the distance between the locking block and the sliding groove.

[0016] In one feasible implementation, the above-mentioned adjustment structure includes: The top rod is provided with a fourth groove in the fourth housing and a third through hole in the middle of the locking block. The top rod is inserted into the fourth groove and the third through hole and is parallel to the second universal tactical rail. The first protrusion is provided on the side of the top rod away from the slide groove, and the top of the first protrusion is provided with a first inclined surface; The second protrusion is located on the side wall of the third through hole facing the slide groove. The bottom of the second protrusion is provided with a second inclined surface. The slopes of the first inclined surface and the second inclined surface are matched, and the first inclined surface is used to slide along the second inclined surface. The first elastic element is disposed between the end of the locking block opposite to the slide groove and the fourth housing. A first slider is disposed at one end of the aforementioned push rod, and a first hole is provided at the end of the aforementioned fourth groove facing the aforementioned first protrusion, and the aforementioned first slider slides along the aforementioned first hole. The second slider is located at the other end of the aforementioned push rod. The fourth groove has a second hole at the end opposite to the first protrusion. The second slider slides along the second hole. A second elastic element is disposed in the second hole, one end of which is connected to the bottom of the first protrusion, and the other end of which is connected to the second slider.

[0017] Compared to existing technologies, this disclosure offers at least the following advantages: The portable equipment provided in this embodiment includes a fire control module, an execution module, multiple universal tactical rails, an adapter, an external trigger control module, and a cable management assembly. The outer wall of the fire control module's main body may be provided with multiple universal tactical rails to mount various accessories. The execution module is connected to the fire control module and is electrically connected to the fire control module via cables, enabling the execution module to execute control commands issued by the fire control module. Specifically, the adapter is detachably mounted on the tactical rail. It can fix and support the signal cable of the execution module and the first control cable of the fire control module, and also transfer the signal cable to the first control cable. The external trigger control module is detachably mounted on the universal tactical rail. The external trigger control module is connected to the electrical appliance of the fire control module through the second control cable, so as to control the operation of the electrical appliance using the external trigger control module. The external trigger control module can also fix and support the second control cable. The cable management assembly is detachably mounted on the universal tactical rail. After the first control cable and the second control cable converge to form the main control cable, the cable management assembly can fix and organize the main control cable. This design allows for quick assembly and disassembly via a universal tactical rail mounting adapter, external trigger control module, and cable management components. It eliminates the need to modify the portable device itself, offering high applicability and ease of maintenance. Furthermore, the segmented cable management through the adapter, external trigger control module, and cable management components ensures that the tensile stress of the portable equipment's cables under impact and vibration conditions is distributed to the equipment itself, preventing stress concentration at the connector ports. This reduces the probability of loose connections, poor contact, and wire breaks, significantly extending the lifespan of cables and connectors and ensuring stable operation of the portable equipment in complex environments. Attached Figure Description

[0018] Various other advantages and benefits will become apparent to those skilled in the art upon reading the following detailed description of exemplary embodiments. The accompanying drawings are for illustrative purposes only and are not intended to limit the scope of this disclosure. Furthermore, the same reference numerals denote the same parts throughout the drawings. In the drawings: Figure 1 This is a partial schematic structural diagram of a portable device according to an embodiment of the present disclosure; Figure 2 This is a schematic assembly diagram of the adapter and fire control module according to one embodiment of the present disclosure; Figure 3 A schematic structural diagram of an external trigger control module in one direction according to an embodiment of this disclosure; Figure 4 A schematic structural diagram of an external trigger control module in another direction according to an embodiment of this disclosure; Figure 5This is a schematic structural diagram of a cable management component in one direction according to an embodiment of the present disclosure. Figure 6 This is a schematic structural diagram of a cable management assembly in another direction according to an embodiment of the present disclosure.

[0019] in, Figures 1 to 6 The correspondence between the reference numerals and component names in the attached drawings is as follows: 100 Portable Equipment, 110 Fire Control Module, 120 Execution Module, 131 First Universal Tactical Rail, 132 Second Universal Tactical Rail, 140 Adapter, 141 First Housing, 1411 First Mounting Chamber, 1412 Second Mounting Chamber, 1413 First Slot, 14131 First Movable End, 14132 Second Movable End, 142 First Interface Connector, 143 Second Interface Connector, 144 First Connection Structure, 1441 First Locking Screw, 1442 First Locking Nut, 150 External Trigger Control Module, 151 Second Housing, 152 Second Connection Structure, 1521 Third Housing, 15211 Third Movable End, 15212 Fixed End, 1522 Second Locking Screw, 1523 Second Locking Nut, 153 Electrical Connector, 160 Cable Management Assembly, 161 Fourth Housing, 1611 Slide, 1612 Placement slot, 1613 Third slot body, 162 Locking block, 1621 Third through hole, 163 Adjustment structure, 1631 Top rod, 1632 First protrusion, 1633 Second protrusion, 1634 First elastic element, 1635 First slider, 1636 Second slider, 1637 Second elastic element, 171 Signal cable, 172 First control cable, 173 Second control cable, 174 Main control cable. Detailed Implementation

[0020] The present invention will be further described below with reference to the accompanying drawings and specific embodiments. It should be noted that the description of these embodiments is intended to aid in understanding the invention, but does not constitute a limitation thereof. The specific structural and functional details disclosed herein are merely for describing exemplary embodiments of the invention. However, the invention can be embodied in many alternative forms and should not be construed as being limited to the embodiments described herein.

[0021] like Figures 1 to 6As shown, a portable device 100 is proposed according to an embodiment of this disclosure, including: a fire control module 110 and an execution module 120, wherein the execution module 120 is connected to the fire control module 110 and is used to execute control commands issued by the fire control module 110; a plurality of universal tactical rails are disposed on the outside of the main body of the fire control module 110; an adapter 140 is installed on the universal tactical rails and is used to connect the signal cable 171 of the execution module 120 to the first control cable 172 of the fire control module 110; an external trigger control module 150 is installed on the universal tactical rails and is connected to the electrical appliance of the fire control module 110 through a second control cable 173; and a cable management assembly 160 is installed on the universal tactical rails, wherein the first control cable 172 and the second control cable 173 converge to form a main control cable 174, and the cable management assembly 160 is used to fix and organize the main control cable 174.

[0022] It is understood that the portable equipment 100 provided in this embodiment includes a fire control module 110, an execution module 120, multiple universal tactical rails, an adapter 140, an external trigger control module 150, and a cable management assembly 160. The outer side wall of the fire control module 110 may be provided with multiple universal tactical rails to mount various accessories. The execution module 120 is connected to the fire control module 110 and is electrically connected to the fire control module 110 via cables, enabling the execution module 120 to execute control commands issued by the fire control module 110. Specifically, the adapter 140 is detachably mounted on the tactical rail. The adapter 140 can fix and support the signal cable 171 of the execution module 120 and the control first cable 172 of the fire control module 110, and also transfer the signal cable 171 to the control first cable 172. The external trigger control module 150 is detachably mounted on the universal tactical rail. The external trigger control module 150 is connected to the electrical appliance of the fire control module 110 through the control second cable 173, so as to control the operation of the electrical appliance using the external trigger control module 150, and fix and support the control second cable 173 through the external trigger control module 150. The cable management assembly 160 is detachably mounted on the universal tactical rail. After the control first cable 172 and the control second cable 173 converge to form the control main cable 174, the cable management assembly 160 can fix and organize the control main cable 174. This configuration allows for quick assembly and disassembly of the adapter 140, external trigger control module 150, and cable management component 160 via a universal tactical rail, without requiring modification to the portable device itself. This design offers high applicability and ease of maintenance. Furthermore, by segmenting and organizing the cables using the adapter 140, external trigger control module 150, and cable management component 160, the tensile stress of the cables under impact and vibration conditions is distributed to the portable device 100 itself. This prevents stress concentration at the cable connector terminals, reducing the probability of loose connections, poor contact, and wire breaks. This significantly extends the service life of the cables and connectors, ensuring stable operation of the portable device 100 in complex environments.

[0023] For example, the electrical appliance can be a sight, and the parameters of the sight can be controlled and adjusted by operating the external trigger control module 150.

[0024] In some examples, such as Figure 1As shown, the aforementioned universal tactical rail includes a first universal tactical rail 131 and a second universal tactical rail 132. The first universal tactical rail 131 is disposed at the bottom of the body of the fire control module 110 facing the execution module 120. The adapter 140 is mounted on the end of the first universal rail facing the execution module 120. The external trigger control module 150 is mounted on the end of the first universal rail away from the execution module 120. The second universal tactical rail 132 is disposed on the side of the middle part of the body of the fire control module 110. The cable management assembly 160 is mounted on the second universal tactical rail 132.

[0025] Understandably, multiple universal tactical rails can be provided on the fire control module 110 to allow the portable equipment 100 to mount various accessories, improving its applicability. Specifically, the universal tactical rails include a first universal tactical rail 131 and a second universal tactical rail 132. The first universal tactical rail 131 is located at the bottom of the end of the fire control module 110 facing the execution module 120, and is situated beside the front handle of the fire control module 110. An adapter 140 can be installed at the bottom of the end of the first universal rail facing the execution module 120 to facilitate a suitable connection with the signal cable 171 of the execution module 120, avoiding twisting. The adapter 140 is located on the front side of the front handle to avoid affecting the grip. An external trigger control module 150 is installed on the end of the first universal rail away from the execution module 120, i.e., on the rear side of the front handle, so that the operator can operate the external trigger control module 150 to control electrical appliances while gripping the handle. The second universal tactical rail 132 can be set on the side of the middle part of the main body of the fire control module 110. The cable management component 160 is installed on the second universal tactical rail 132 to fix and organize the main control cable 174. By coordinating the positions of the universal tactical rail with the adapter 140, the external trigger control module 150 and the cable management component 160, the cable can be fixed and organized in sections, which can ensure that the tensile stress of the cable of the portable equipment 100 under impact and vibration conditions is distributed to the body of the portable equipment 100.

[0026] In some examples, such as Figure 1 and Figure 2As shown, the adapter 140 includes: a first housing 141 connected to the first universal tactical rail 131 via a first connecting structure 144; the first housing 141 having a first mounting chamber 1411 and a second mounting chamber 1412, with a wiring channel formed between the first mounting chamber 1411 and the second mounting chamber 1412; a first interface connector 142 installed in the first mounting chamber 1411 for connecting to the signal cable 171 of the execution module 120; and a second interface connector 143 installed in the second mounting chamber 1412 for connecting to the first control cable 172, with the second interface connector 143 connected to the first interface connector 142 via the wiring channel; wherein the second interface connector 143 is inclined relative to the side wall of the fire control module 110 and conforms to the outer contour of the side wall of the fire control module 110.

[0027] It is understood that the adapter 140 may be provided with a first housing 141, a first interface connector 142 and a second interface connector 143. The first housing 141 can be connected to the first universal tactical rail 131 via the first connecting structure 144. The second mounting chamber 1412 of the first housing 141 is located directly below the fire control module 110. The first mounting chamber 1411 is inclined relative to the second mounting chamber 1412 to fit against the side wall of the main body of the fire control module 110. After the first interface connector 142 is installed in the first mounting chamber 1411 and the second interface connector 143 is installed in the second mounting chamber 1412, it can be ensured that the outgoing direction of the signal cable 171 connected to the interface of the first interface connector 142 and the outgoing direction of the control first branch cable 172 connected to the interface of the second interface connector 143 are both perpendicular to the firing axis of the portable device's execution unit. This reduces the impact force of the execution module 120 on the first interface connector 142, the second interface connector 143, the signal cable 171, and the control first branch cable 172 during firing.

[0028] It is understood that the first housing 141 may be provided with a first cover and a second cover, wherein the first cover can be connected to the first mounting chamber 1411 by screws, and the second cover can be connected to the second mounting chamber 1412 by screws. Furthermore, the mating surfaces of the first cover and the first mounting chamber 1411, as well as the mating surfaces of the second cover and the second mounting chamber 1412, are all provided with labyrinth seal structures, and are sealed with sealant and sealing rings, which can ensure the protection of the signal cable 171 and the control first cable 172, and improve stability.

[0029] In some examples, such as Figure 1 and Figure 2As shown, the first connecting structure 144 includes: a first locking screw 1441; the first housing 141 is provided with a first groove 1413, the inner contour shape of the first groove 1413 matches the outer contour shape of the first universal tactical rail 131; wherein, the end of the first groove 1413 away from the second interface connector 143 is a first movable end 14131, and the end closer to the second interface connector 143 is a second movable end 14132; the first groove 1413 has a first through hole along the movement direction of the first movable end 14131; the first locking screw 1441 passes through the first through hole, and one end of the first locking screw 1441 is connected to the first movable end 14131; and a first locking nut 1442. The other end of the screw 1441 is provided with an external thread, and the other end of the first locking screw 1441 is threadedly connected to the first locking nut 1442; wherein, the second movable end 14132 is provided with an extension section, and the first locking nut 1442 is used to press against the extension section; wherein, when the first locking nut 1442 is screwed in the first direction, the first locking nut 1442 drives the second movable end 14132 to move in the direction of the first movable end 14131 through the extension section, and after the second movable end 14132 has moved to the maximum distance, the first locking nut 1442 continues to be screwed in the first direction, so that the first locking screw 1441 drives the first movable end 14131 to move in the direction of the second movable end 14132.

[0030] It is understood that the shape of the first groove 1413 can match the shape of both sides of the first universal tactical rail 131, and the first movable end 14131 and the second movable end 14132 of the first groove 1413 can move in opposite directions to clamp or loosen the first universal tactical rail 131. One end of the first locking screw 1441 is connected to the first movable end 14131, and the other end of the first locking screw 1441 may be threaded. The first locking nut 1442 is threaded to the other end of the first locking screw 1441. An extension section is provided on the second movable end 14132 in the direction away from the movable end, and there is a gap between the extension section and the first housing 141 so that the extension section can move in a direction close to or away from the first movable end 14131. A washer may be provided between the extension section and the first locking nut 1442. When it is necessary to install the adapter 140 onto the first universal tactical rail 131, the first universal tactical rail 131 can be placed in the first groove 1413, and then the first locking nut 1442 can be screwed in the first direction. During rotation, the first locking nut 1442 moves towards the extension section, thereby pressing against the extension section and pushing the extension section to drive the second movable end 14132 towards the first movable end 14131. After the second movable end 14132 reaches its maximum stroke, continue to screw the first locking nut 1442, which can drive one end of the first locking screw 1441 to move the first movable end 14131 towards the second movable end 14132. Thus, the first movable end 14131 and the second movable end 14132 move towards each other to clamp the first universal tactical rail 131. This design makes operation simple and quick, easy to disassemble and replace, and the size of the first groove 1413 can be adjusted by turning the first locking nut 1442 to adapt to universal tactical rails of different sizes, making it highly adaptable.

[0031] It should be noted that the external thread length of the first locking screw 1441 must meet the requirements for effective engagement and locking of the first locking nut 1442.

[0032] In some examples, such as Figure 2 As shown, the first movable end 14131 is provided with a first limiting groove corresponding to the position of the first through hole, and the first locking screw 1441 is provided with a first limiting structure at the end facing the first movable end 14131. The contours of the first limiting structure and the first limiting groove are matched.

[0033] Understandably, the first limiting structure can engage with the first limiting slot to restrict the rotational freedom of the first locking screw 1441. This ensures that after tightening the first locking nut 1442, the first locking screw 1441 only moves within the first through hole, preventing rotation of the first locking screw 1441 during adjustment of the first groove 1413 and improving reliability. For example, both the first limiting structure and the aforementioned first limiting slot can be hexagonal in shape.

[0034] In some examples, such as Figure 1 , Figure 3 and Figure 4 As shown, the external trigger control module 150 includes: a second housing 151, which is connected to the first universal tactical rail 131 via a second connection structure 152; an external trigger controller, which is disposed inside the second housing 151, and a control button is disposed on the outside of the second housing 151, the control button being electrically connected to the external trigger controller; and an electrical connector 153, which is installed in the second housing 151, and the second control cable 173 is connected to the electrical connector 153.

[0035] Understandably, the second housing 151 may include a housing cover and a housing body. Control buttons may be located on the housing cover. The housing body integrates a second control branch cable to protect it and absorb impacts transmitted to it, extending its service life. The housing cover can be screwed to the housing body, and a sealing ring is provided at the connection point to ensure a tight seal. The top of the second housing 151 has a second connecting structure 152 and an electrical connector 153. The second housing 151 is mounted on the first universal tactical rail 131 via the second connecting structure 152. The second control branch cable can be connected to the electrical connector 153 and extends vertically upwards along it, converging with the first control branch cable 172 connected via the interface of the second interface connector 143 to form the main control cable 174.

[0036] In some examples, such as Figure 1 , Figure 3 and Figure 4As shown, the second connection structure 152 includes: a third housing 1521 disposed at one end of the second housing 151 where the electrical connector 153 is mounted; the third housing 1521 is provided with a second groove; the inner contour shape of the second groove matches the outer contour shape of the first universal tactical rail 131; wherein the end of the second groove away from the electrical connector 153 is a third movable end 15211, and the end closer to the electrical connector 153 is a fixed end 15212; the second groove is formed along the movement direction of the third movable end 15211. It has a second through hole; a second locking screw 1522, which passes through the third movable end 15211 and is inserted into the second groove through the second through hole; a second locking nut 1523, wherein the end of the second locking screw 1522 near the third movable end 15211 is provided with an external thread, and the second locking screw 1522 is threadedly connected to the second locking nut 1523. By turning the second locking nut 1523, the second locking nut 1523 pushes the third movable end 15211 to move closer to the fixed end 15212.

[0037] It is understood that the second connecting structure 152 may be provided with a third housing 1521, and a second groove is provided on the top of the third housing 1521. The shape of the second groove matches the shape of the two sides of the first universal tactical rail 131. The end of the second groove near the electrical connector 153 is a fixed end 15212, and the end away from the electrical connector 153 is a third movable end 15211. One end of the second locking screw 1522 is inserted into the fixed end 15212, and the other end is provided with an external thread. The other end passes through the third movable end 15211 and is threadedly connected to the second locking nut 1523. With this configuration, when it is necessary to install the external trigger control module 150 on the first universal tactical rail 131, the second locking nut 1523 can be screwed on so that the second locking nut 1523 rotates while pressing the movable end towards the fixed end 15212 to tighten the second groove and clamp the first universal tactical rail 131 through the second groove. It is simple and quick to operate, easy to disassemble and replace, and the size of the second groove can be adjusted by turning the second locking nut 1523 to adapt to different sizes of universal tactical rails, making it highly adaptable.

[0038] In some examples, such as Figure 3 As shown, the fixed end 15212 is provided with a second limiting groove corresponding to the position of the second through hole, and the end of the second locking screw 1522 facing the fixed end 15212 is provided with a second limiting structure, and the outline of the second limiting structure matches the outline of the second limiting groove.

[0039] Understandably, the second limiting structure can be engaged with the second limiting slot to restrict the rotational freedom of the second locking screw 1522. This ensures that after tightening the second locking nut 1523, the second locking screw 1522 only moves within the second through hole, preventing rotation of the second locking screw 1522 during adjustment of the second groove and improving reliability. For example, both the second limiting structure and the aforementioned second limiting slot can be hexagonal in shape.

[0040] In some examples, such as Figure 1 , Figure 5 and Figure 6 As shown, the cable management assembly 160 includes: a fourth housing 161, which has a groove 1611 slidably connected to the second universal tactical rail 132; a placement slot 1612 at one end of the fourth housing 161 where the groove 1611 is located, for placing the control main cable 174; and a locking block 162, which has a third groove 16 at the end of the fourth housing 161 facing the second universal tactical rail 132. 13. The third groove 1613 is connected to the slide groove 1611. The locking block 162 moves along the third groove 1613 toward or away from the slide groove 1611. The locking block 162 is provided with a snap-fit ​​structure at one end facing the slide groove 1611. The snap-fit ​​structure is used to snap into the groove of the second universal tactical rail 132. The adjusting structure 163 is provided in the fourth housing 161 and is used to adjust the distance between the locking block 162 and the slide groove 1611.

[0041] Understandably, the size and shape of the slide 1611 match the second universal tactical rail 132 so that the slide 1611 can slide along the second universal tactical rail 132. A third groove 1613 is provided in the middle of the slide 1611, facing the opening direction of the slide 1611. The locking block 162 can slide in the third groove 1613, and the locking block 162 can be adjusted to extend into or retract from the slide 1611 by the adjusting structure 163. With this configuration, during installation, the locking block 162 can be adjusted by adjusting the structure 163 to disengage from the slide groove 1611, allowing the second universal tactical rail 132 to be inserted into the slide groove 1611. A protrusion can be formed on one side of the fourth housing 161 where the slide groove 1611 is located. A placement groove 1612 can be provided at the top of the protrusion, with its length matching the thickness of the second universal tactical rail 132. This allows the main control cable 174 to be placed in the placement groove 1612 while the second universal tactical rail 132 is inserted into the slide groove 1611, securing and supporting the main control cable 174. After determining the optimal cable management position using the sliding cable management assembly 160, the locking block 162 is adjusted by adjusting the structure 163 to extend into the slide groove 1611. The locking block 162's end engages with the groove in the second universal tactical rail 132, thus fixing the cable management assembly 160 to the second universal tactical rail 132. It is simple and quick to operate, has a strong fixing effect on the main control cable 174, and disperses the tensile stress on the main control cable 174 to the main body of the fire control module 110, thereby improving the service life of the main control cable 174.

[0042] In some examples, such as Figure 1 , Figure 5 and Figure 6As shown, the adjustment structure 163 includes: a push rod 1631; the fourth housing 161 has a fourth groove; the locking block 162 has a third through hole 1621 in the middle; the push rod 1631 is inserted into the fourth groove and the third through hole 1621; the push rod 1631 is parallel to the second universal tactical rail 132; a first protrusion 1632 is disposed on the side of the push rod 1631 away from the slide groove 1611; the top of the first protrusion 1632 has a first inclined surface; a second protrusion 1633 is disposed on the side wall of the third through hole 1621 facing the slide groove 1611; the bottom of the second protrusion 1633 has a second inclined surface; the slopes of the first inclined surface and the second inclined surface match; and the first inclined surface is used to slide along the second inclined surface. A first elastic element 1634 is disposed between the end of the locking block 162 facing away from the slide groove 1611 and the fourth housing 161; a first slider 1635 is disposed at one end of the push rod 1631, and the fourth groove has a first hole at the end facing the first protrusion 1632, and the first slider 1635 slides along the first hole; a second slider 1636 is disposed at the other end of the push rod 1631, and the fourth groove has a second hole at the end facing away from the first protrusion 1632, and the second slider 1636 slides along the second hole; a second elastic element 1637 is disposed in the second hole, one end of the second elastic element 1637 is connected to the bottom of the first protrusion 1632, and the other end of the second elastic element 1637 is connected to the second slider 1636.

[0043] Understandably, a third through hole 1621 can be formed in the middle of the locking block 162, parallel to the direction of the slide groove 1611. A fourth groove can be formed in the fourth housing 161, parallel to the direction of the slide groove 1611. The push rod 1631 can be inserted into the fourth groove and pass through the third through hole 1621. A first hole is formed at the end of the fourth groove near the placement groove 1612, and a second hole is formed at the end away from the placement groove 1612. Correspondingly, an external thread can be provided at the end of the push rod 1631 near the placement groove 1612, and a first slider 1635 is threadedly connected to the end of the push rod 1631 near the placement groove 1612. An external thread can be provided at the end of the push rod 1631 away from the placement groove 1612, and a second slider 1636 is threadedly connected to the end of the push rod 1631 away from the placement groove 1612. The first slider 1635 can slide within the first hole, and the second slider 1636 can slide within the second hole. When the cable management assembly 160 is not subjected to external force, the second slider 1636 can partially protrude from the second hole to facilitate pushing the second slider 1636 and lifting the push rod 1631. A first protrusion 1632 can be provided on the side of the push rod 1631 facing away from the slide groove 1611, and the end of the first protrusion 1632 facing the first hole forms a first inclined surface. Correspondingly, a second protrusion 1633 can be provided on the sidewall of the third through hole 1621 of the locking block 162 facing the slide groove 1611, and the end of the second protrusion 1633 facing the second hole forms a second inclined surface. The first inclined surface can fit against the second inclined surface, and the two can slide relative to each other. The distance between the locking block 162 and the push rod 1631 can be changed by the relative sliding of the first protrusion 1632 and the second protrusion 1633. A first elastic element 1634 may be provided between the side of the locking block 162 facing away from the slide groove 1611 and the fourth housing 161. A second elastic element 1637 may be provided in the second hole. Specifically, the second elastic element 1637 is sleeved on the top rod 1631, with one end connected to the first protrusion 1632 and the other end connected to the second slider 1636. When the cable management assembly 160 is in a state free from external force, the first elastic element 1634 applies a preload force to the locking block 162, causing the locking block 162 to extend into the slide groove 1611, and the second slider 1636 to partially extend out of the second hole. During installation, the second slider 1636 can be pushed to move the top rod 1631 upward, while the second elastic element 1637 is compressed. The first protrusion 1632 and the second protrusion 1633 move in opposite directions, increasing the distance between the push rod 1631 and the sidewall of the locking block 162 where the second protrusion 1633 is located. This compresses the first elastic element 1634, causing the locking block 162 to disengage from the slide groove 1611. This allows the second universal tactical guide rail 132 to slide along the slide groove 1611 to adjust the position of the cable management assembly 160. After the position adjustment is completed, the force pushing the second slider 1636 is removed, the second elastic element 1637 rebounds, and the push rod 1631 resets and moves downward.Simultaneously, under the rebound force of the first elastic element 1634, the second protrusion 1633 moves towards the slide groove 1611, causing the first protrusion 1632 and the second protrusion 1633 to move towards each other. The locking block 162 extends out of the slide groove 1611 under the rebound force of the first elastic element 1634 and engages with the groove of the second universal tactical rail 132 via a snap-fit ​​structure at its end, thus fixing the cable management assembly 160 to the second universal tactical rail 132. This configuration allows the cable management assembly 160 to achieve a self-locking state after installation, improving stability and providing a gradual change in operation, significantly shortening disassembly, assembly, debugging, and maintenance time.

[0044] It should be noted that the first elastic element 1634 can be a locking spring. The locking spring can provide preload under normal conditions so that the locking block 162 can be engaged in the groove of the second universal tactical guide rail 132. When the push rod 1631 is pushed to make the locking block 162 exit the slide groove 1611, when the locking spring reaches its maximum compression, there is still a gap between each coil of the locking spring to avoid coil failure and improve stability.

[0045] It should be noted that the second elastic element 1637 can be a return spring, and the end of the second slider 1636 away from the top rod 1631 can be provided with an adjustment groove. A tool can be used to adjust the engagement length of the second slider 1636 and the top rod 1631 through the adjustment groove, thereby adjusting the preload of the return spring.

[0046] It should be understood that the terms "first," "second," etc., are used only for distinguishing descriptions and should not be construed as indicating or implying relative importance. Although the terms "first," "second," etc., may be used herein to describe various units, these units should not be limited by these terms. These terms are only used to distinguish one unit from another. For example, a first unit may be referred to as a second unit, and similarly, a second unit may be referred to as a first unit, without departing from the scope of the exemplary embodiments of the invention.

[0047] It should be understood that the term "and / or" in this article is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can mean: A exists alone, B exists alone, and A and B exist simultaneously. The term " / and" in this article describes another relationship between related objects, indicating that two relationships can exist. For example, A / and B can mean: A exists alone, and A and B exist alone. In addition, the character " / " in this article generally indicates that the related objects before and after it are in an "or" relationship.

[0048] It should be understood that in the description of this invention, the terms "upper," "vertical," "inner," "outer," etc., indicate the orientation or positional relationship as commonly placed when the disclosed product is used, or the orientation or positional relationship commonly understood by those skilled in the art. They are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0049] In the description of this invention, it should also be noted that, unless otherwise explicitly specified and limited, the terms "set," "install," and "connect" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0050] The terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments of the invention. As used herein, the singular forms “a,” “an,” and “the” are intended to include the plural forms unless the context clearly indicates otherwise. It should also be understood that the terms “comprising,” “including,” “containing,” and / or “including” as used herein specify the presence of the stated features, integers, steps, operations, units, and / or components, and do not exclude the presence or addition of one or more other features, quantities, steps, operations, units, components, and / or combinations thereof.

[0051] Specific details are provided in the following description to provide a complete understanding of the exemplary embodiments. However, those skilled in the art will understand that the exemplary embodiments can be implemented without these specific details. In other embodiments, well-known processes, structures, and techniques may be omitted in the depiction of non-essential details to avoid obscuring the exemplary embodiments.

[0052] The above are merely specific embodiments of this application, enabling those skilled in the art to understand or implement this application. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the general principles defined herein may be implemented in other embodiments without departing from the spirit or scope of this application. Therefore, this application is not to be limited to the embodiments shown herein, but is to be accorded the widest scope consistent with the principles and novel features claimed herein.

[0053] It should be noted that the information disclosed in the background section above is only used to enhance the understanding of the background of this disclosure, and therefore may include information that does not constitute prior art known to those skilled in the art.

Claims

1. A portable equipment, characterized in that, include: A fire control module and an execution module, wherein the execution module is connected to the fire control module and is used to execute control commands issued by the fire control module; Multiple universal tactical rails are mounted on the outer side of the fire control module. The adapter, mounted on the universal tactical rail, is used to connect the signal cable of the execution module to the first control cable of the fire control module. An external trigger control module is installed on the universal tactical rail and is connected to the electrical components of the fire control module via a second control cable. A cable management assembly is installed on the universal tactical rail. The first control cable and the second control cable converge to form the main control cable. The cable management assembly is used to fix and organize the main control cable.

2. The portable device according to claim 1, characterized in that, The universal tactical rail includes a first universal tactical rail and a second universal tactical rail. The first universal tactical rail is located at the bottom of the body of the fire control module facing the execution module. The adapter is installed on the end of the first universal rail facing the execution module. The external trigger control module is installed on the end of the first universal rail away from the execution module. The second universal tactical rail is located on the side of the middle part of the body of the fire control module. The cable management assembly is installed on the second universal tactical rail.

3. The portable equipment according to claim 2, characterized in that, The adapter includes: A first housing is connected to the first universal tactical rail via a first connecting structure. The first housing is provided with a first mounting chamber and a second mounting chamber, and a wiring channel is formed between the first mounting chamber and the second mounting chamber. A first interface connector is installed in the first mounting cavity, and the first interface connector is used to connect to the signal cable of the execution module; The second interface connector is installed in the second mounting chamber and is used to connect to the first control cable. The second interface connector is connected to the first interface connector through the wiring channel. The second interface connector is inclined relative to the side wall of the fire control module and fits the outer contour of the side wall of the fire control module.

4. The portable equipment according to claim 3, characterized in that, The first connection structure includes: The first locking screw, the first housing is provided with a first groove, the inner contour shape of the first groove matches the outer contour shape of the first universal tactical rail, wherein the end of the first groove away from the second interface connector is a first movable end, the end closer to the second interface connector is a second movable end, the first groove is provided with a first through hole along the movable direction of the first movable end, the first locking screw passes through the first through hole, and one end of the first locking screw is connected to the first movable end; The first locking nut has an external thread at one end of the first locking screw, which is threaded to the first locking nut. The second movable end has an extension section, and the first locking nut is used to press against the extension section. When the first locking nut is screwed in the first direction, the first locking nut drives the second movable end to move in the direction of the first movable end through the extension section. After the second movable end moves to the maximum distance, the first locking nut is screwed in the first direction so that the first locking screw drives the first movable end to move in the direction of the second movable end.

5. The portable device according to claim 4, characterized in that, The first movable end is provided with a first limiting groove corresponding to the position of the first through hole, and the end of the first locking screw facing the first movable end is provided with a first limiting structure, the contour of the first limiting structure and the first limiting groove are matched.

6. The portable equipment according to claim 2, wherein The external trigger control module includes: The second housing is connected to the first universal tactical rail via a second connecting structure; An external trigger controller is disposed inside the second housing, and a control button is disposed on the outside of the second housing. The control button is electrically connected to the external trigger controller. An electrical connector is mounted on the second housing, and the second control cable is connected to the electrical connector.

7. The portable device according to claim 6, characterized in that, The second connection structure includes: A third housing is disposed at one end of the second housing where the electrical connector is mounted. The third housing is provided with a second groove. The inner contour shape of the second groove matches the outer contour shape of the first universal tactical rail. The end of the second groove away from the electrical connector is a third movable end, and the end closer to the electrical connector is a fixed end. The second groove is provided with a second through hole along the movable direction of the third movable end. The second locking screw passes through the third movable end and is inserted into the second groove through the second through hole; The second locking nut has an external thread at one end of the second locking screw near the third movable end. The second locking screw is threaded to the second locking nut. By turning the second locking nut, the second locking nut pushes the third movable end to move closer to the fixed end.

8. The portable device according to claim 7, characterized in that, The fixed end is provided with a second limiting groove corresponding to the position of the second through hole, and the end of the second locking screw facing the fixed end is provided with a second limiting structure, the contour of the second limiting structure and the second limiting groove are matched.

9. The portable device according to claim 2, characterized in that, The cable management components include: The fourth housing has a sliding groove that is slidably connected to the second universal tactical rail. One end of the fourth housing with the sliding groove has a placement slot for placing the main control cable. The locking block has a third groove at one end of the fourth housing facing the second universal tactical rail. The third groove is connected to the slide rail. The locking block moves along the third groove toward or away from the slide rail. The locking block has a snap-fit ​​structure at one end facing the slide rail. The snap-fit ​​structure is used to snap into the groove of the second universal tactical rail. An adjustment structure, located within the fourth housing, is used to adjust the distance between the locking block and the slide groove.

10. The portable device according to claim 9, characterized in that, The adjustment structure includes: The top rod is provided with a fourth groove in the fourth housing and a third through hole in the middle of the locking block. The top rod is inserted into the fourth groove and the third through hole and is parallel to the second universal tactical rail. The first protrusion is disposed on the side of the top rod away from the slide groove, and the top of the first protrusion is provided with a first inclined surface; The second protrusion is located on the side wall of the third through hole facing the slide groove. The bottom of the second protrusion is provided with a second inclined surface. The slopes of the first inclined surface and the second inclined surface match, and the first inclined surface is used to slide along the second inclined surface. The first elastic element is disposed between the end of the locking block opposite to the slide groove and the fourth housing. A first slider is disposed at one end of the top rod, and a first hole is provided at the end of the fourth groove facing the first protrusion, and the first slider slides along the first hole. The second slider is located at the other end of the top rod. The fourth groove has a second hole at the end opposite to the first protrusion. The second slider slides along the second hole. A second elastic element is disposed in the second hole, one end of the second elastic element is connected to the bottom of the first protrusion, and the other end of the second elastic element is connected to the second slider.