Quick-release pop-up battery and battery compartment structure of handheld electronic equipment

The quick-release battery and battery compartment structure, which uses a purely mechanical linkage, solves the problem of inconvenient battery installation and removal for handheld electronic devices, enabling fast and reliable battery replacement, and is suitable for various environments and devices.

CN223927538UActive Publication Date: 2026-02-17SHENZHEN SKYLAND INNOVATION CO LTD
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Patent Information

Application Number
CN202520417730.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2026-02-17
Estimated Expiration
2035-03-11

AI Technical Summary

Technical Problem

The existing battery compartment structure of handheld electronic devices is cumbersome to operate, making it difficult to quickly disassemble and assemble with one hand. It is also prone to failure, especially in certain scenarios, and traditional designs cannot meet the reliability requirements of high-vibration environments.

Method used

The battery and battery compartment adopt a quick-release battery and battery compartment structure with pure mechanical linkage. Through the optimized reset locking mechanism and ejection mechanism, the battery can be automatically ejected by pressing with one hand. Combined with the guide groove and limit groove design, it ensures that the battery insertion trajectory is accurate and locked securely.

Benefits of technology

It enables quick battery installation and removal, reducing the disassembly time to less than 2 seconds. It is suitable for a wide range of environments, can be operated with one hand, ensures that the battery will not pop out completely and fall out, and has a compact structure suitable for miniaturized devices.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a quick-release pop-up battery and a battery compartment structure of handheld electronic equipment, belongs to the technical field of structural design of handheld electronic equipment, and aims to solve the problem that a battery in the existing handheld electronic equipment is inconvenient to disassemble and assemble. The quick-release pop-up battery comprises a battery main body, a battery pack shell and a battery pack front cover, the battery pack shell wraps the battery main body, the battery pack front cover is arranged at the front end of the battery pack shell and is fixed on the battery pack shell through four countersunk bolts, a groove body structure for limiting and guiding is processed at the top of the battery pack shell, and the battery bin structure is fixedly mounted on the handheld electronic equipment. The quick-release pop-up battery is inserted into the battery bin structure, a locking unit is arranged on the battery bin structure, and the battery bin structure is matched with the limiting and guiding groove body structure through the locking unit to lock and fix the quick-release pop-up battery. The battery mounting device is mainly used as the battery mounting device of the handheld electronic equipment.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of the structure design of handheld electronic equipment, and particularly relates to a quick-release pop-up battery and battery compartment structure of handheld electronic equipment. BACKGROUND

[0002] The existing handheld electronic equipment is more and more advanced with development, and use scenarios are more and more rich, and the design of the battery compartment structure of the handheld electronic equipment directly affects the portability, operation efficiency and user experience of the equipment. The traditional battery fixing mode adopts screw fastening, one-way buckle locking or embedded slide rail structure, and these structures are cumbersome to operate when replacing the battery, need to be accurately aligned with the buckle position, and the battery is pulled out with the help of external force and tools, which is cumbersome and difficult to operate with one hand, so that users cannot easily replace the battery of the handheld electronic equipment, especially for users wearing gloves or having weak hands in specific scenarios. Some buckle structures are prone to deformation or fracture due to long-term mechanical fatigue, resulting in accidental falling of the battery, and the battery is not smoothly pulled out.

[0003] In recent years, although there are some improved battery compartment designs, such as drawer unlocking and magnetic auxiliary fixing, the drawer unlocking relies on linear sliding parts, and long-term use of dust accumulation and mechanical wear will cause jamming, and the magnetic structure is difficult to meet the fixing strength requirement in high vibration scenarios.

[0004] Therefore, a battery compartment structure that takes into account quick disassembly, high reliability and low operation threshold is needed, and is suitable for the use of industrial-grade handheld devices in harsh working conditions. UTILITY MODEL CONTENTS

[0005] The utility model discloses a quick-release pop-up battery and battery compartment structure of handheld electronic equipment to solve the problem that the battery is inconvenient to disassemble in the existing handheld electronic equipment.

[0006] A quick-release pop-up battery of handheld electronic equipment, the quick-release pop-up battery includes a battery main body, a battery pack shell and a battery pack front cover, the battery pack shell is wrapped on the battery main body, the battery pack front cover is arranged at the front end of the battery pack shell and is fixed on the battery pack shell through four countersunk head bolts, and a groove structure for limiting and guiding is processed on the top of the battery pack shell.

[0007] Further, a chamfer is opened at the edge of the battery pack front cover.

[0008] Further, a female plug is arranged on the front side of the battery pack front cover.

[0009] Further, the groove structure on the top of the battery pack shell comprises two guide grooves and a trapezoidal groove, the trapezoidal groove is arranged near the front end of the battery pack shell, the large end of the trapezoidal groove is arranged in communication with the front end of the battery pack shell, the two guide grooves are arranged in parallel along the center line of the width direction of the top of the battery pack shell, and one end of each guide groove is arranged in communication with the tail end of the battery pack shell, the other end of each guide groove is arranged in communication with the small end of the trapezoidal groove, a horizontal limiting groove is machined on the inclined side of the trapezoidal groove, and the horizontal limiting groove is arranged in parallel with the battery pack front cover;

[0010] The battery compartment structure of a handheld electronic device is fixedly installed on the handheld electronic device, the quick-release pop-up battery is inserted into the battery compartment structure, the battery compartment structure is provided with a locking unit, and the battery compartment structure locks and fixes the quick-release pop-up battery through the locking unit.

[0011] Further, the battery compartment structure comprises a framework structure, a battery compartment front plate, a battery compartment upper plate, a battery compartment lower plate, and two battery compartment side plates, the battery compartment front plate is arranged at the front end of the framework structure and detachably connected with the framework structure, the battery compartment upper plate and the battery compartment lower plate are arranged opposite to each other at the top and bottom of the framework structure, and the battery compartment upper plate and the battery compartment lower plate are both detachably connected with the framework structure, the two battery compartment side plates are arranged opposite to each other at the left and right sides of the framework structure, and each battery compartment side plate is detachably connected with the framework structure, and the locking unit is arranged on the framework structure and detachably connected with the framework structure.

[0012] Further, the framework structure comprises two N-shaped side frames and a middle beam, the two N-shaped side frames are arranged in parallel along the center line of the length direction of the battery compartment front plate, the middle beam is arranged in the two N-shaped side frames, and the middle beam is arranged in parallel with the battery compartment front plate, the bottom of each end of the middle beam is provided with a downward extending supporting leg, each supporting leg is detachably connected with a corresponding N-shaped side frame through a bolt, and the locking unit is arranged between the middle beam and the battery compartment front plate, and the locking unit is detachably connected with the middle beam.

[0013] Further, the bottom of the battery compartment upper plate is fixedly connected with two guide protrusions, and each guide protrusion is arranged in corresponding cooperation with a guide groove.

[0014] Further, the center of the rear side of the battery compartment front plate is provided with a plug-in male head matched with a plug-in female head on the battery pack front cover, two tower springs are arranged opposite to each other on the left and right sides of the plug-in male head, and one end of each tower spring is fixedly connected with the inner side of the battery compartment front plate.

[0015] Further, the locking unit comprises a button guide, a pressure spring, a sliding groove limiting piece, a button, a first plug bolt, a first cup head bolt and a second plug bolt. The button guide is in the shape of a T-shaped block. The horizontal part of the button guide is arranged on one end of the middle beam and detachably connected with the middle beam. The vertical part of the button guide is arranged close to the battery compartment front plate. The sliding groove limiting piece is arranged between the middle beam and the battery compartment front plate and is slidably connected with the middle beam through the first plug bolt. A gap is left between the sliding groove limiting piece and the first plug bolt. The second plug bolt is arranged on the side of the button guide away from the sliding groove limiting piece. The button is sleeved on the bolt head of the second plug bolt. The threaded end of the second plug bolt penetrates through the button guide and is inserted into one end of the sliding groove limiting piece. The pressure spring is arranged between the bolt head of the second plug bolt and the button guide. One end of the pressure spring is fixedly connected with the button guide. The other end of the pressure spring is fixedly connected with the bolt head of the second plug bolt. The second plug bolt is reset along the axial extension direction by the pressure spring, thereby driving the sliding groove limiting piece to reciprocatingly slide horizontally on the middle beam. The first cup head bolt is inserted into the bottom of the end of the sliding groove limiting piece away from the button guide. The bolt head of the first cup head bolt is used as a limiting part to lock and cooperate with the adjacent horizontal limiting groove.

[0016] The present application has the following beneficial effects over the prior art:

[0017] The hand-held electronic device quick-release pop-up battery and battery compartment structure provided by the present application only contains six core components, has a compact structure, occupies a small space, adopts a pure mechanical linkage scheme, and is more widely applicable than the existing magnetic attraction scheme. Through the cooperation of the optimized reset locking mechanism and the pop-up mechanism, the structure has high reliability. A user only needs to press once to trigger the automatic pop-up of the battery. The disassembly time is shortened to less than 2 seconds compared with the multi-step operation of the traditional method. Moreover, the pop-up stroke and the pressure of the button are optimized according to ergonomics. A user can hold the electronic device with one hand and complete the pop-up of the battery with a single finger. The battery will pop up a small distance from the electronic device, and the friction force of the battery compartment shell is designed to ensure that the battery will not be completely popped out of the device and fall off. The core pain points of low disassembly efficiency, easy failure and complex operation of the traditional battery compartment are solved. At the same time, the compact structure meets the needs of small-sized devices and is more widely applicable. BRIEF DESCRIPTION OF DRAWINGS

[0018] Figure 1 It is a left front view of the battery compartment structure described in the present application.

[0019] Figure 2 It is a right front view of the battery compartment structure described in the present application.

[0020] Figure 3 It is an exploded view of the locking unit described in the present application.

[0021] Figure 4 Figure 4 is a bottom right view of the battery compartment structure described in the present application;

[0022] Figure 5 Figure 5 is a top view of the battery compartment structure described in the present application;

[0023] Figure 6 Figure 6 is a front left view of the quick-release pop-out battery described in the present application;

[0024] Figure 1-1 is a skeleton structure; 1-2 is a button guide; 1-3 is a first disc head bolt; 1-4 is a pressure spring; 1-5 is a sliding groove limiting piece; 1-6 is a button; 1-7 is a first plug bolt; 1-8 is a first cup head bolt; 1-9 is a second plug bolt; 1-10 is a battery compartment bottom plate; 1-11 is a second disc head bolt; 1-12 is a third disc head bolt; 1-13 is a fourth disc head bolt; 1-14 is a fifth disc head bolt; 1-15 is a battery compartment upper plate; 1-16 is a first countersunk bolt; 1-17 is a battery compartment lower plate; 1-18 is a battery compartment side plate; 1-19 is a tower spring; 2-1 is a battery pack shell; 2-2 is a battery pack front cover; 2-3 is a second countersunk bolt; 2-4 is a guide groove; 2-5 is a trapezoidal groove; and 2-6 is a horizontal limiting groove. DETAILED DESCRIPTION

[0025] Specific implementation one: in combination Figure 6 To illustrate this implementation, the quick-release pop-out battery of the handheld electronic device provided in this implementation includes a battery main body, a battery pack shell 2-1, and a battery pack front cover 2-2. The battery pack shell 2-1 is wrapped around the battery main body, and the battery pack front cover 2-2 is arranged at the front end of the battery pack shell 2-1 and fixed to the battery pack shell 2-1 by four countersunk bolts 2-3. The top of the battery pack shell 2-1 is processed with a groove structure for limiting and guiding.

[0026] Specific implementation two: in combination Figure 6 To illustrate this implementation, the difference between this implementation and specific implementation one is that a chamfer is opened at the edge of the battery pack front cover 2-2. The other components and connection methods are the same as those of specific implementation one.

[0027] Specific implementation three: in combination Figure 6 To illustrate this implementation, the difference between this implementation and specific implementation two is that an insert female head is arranged at the front side of the battery pack front cover 2-2. The other components and connection methods are the same as those of specific implementation two.

[0028] Specific implementation four: in combination Figure 1 to Figure 5The difference between the embodiment and the third embodiment is that the groove structure on the top of the battery pack shell 2-1 includes two guide grooves 2-4 and a trapezoidal groove 2-5. The trapezoidal groove 2-5 is arranged near the front end of the battery pack shell 2-1, and the large end of the trapezoidal groove 2-5 is arranged in communication with the front end of the battery pack shell 2-1. The two guide grooves 2-4 are arranged in parallel along the center line of the width direction of the top of the battery pack shell 2-1, and one end of each guide groove 2-4 is arranged in communication with the tail end of the battery pack shell 2-1. The other end of each guide groove 2-4 is arranged in communication with the small end of the trapezoidal groove 2-5. A horizontal limiting groove 2-6 is arranged on the inclined side of the trapezoidal groove 2-5, and the horizontal limiting groove 2-6 is arranged in parallel with the battery pack front cover 2-2. The other components and connection modes are the same as those of the third embodiment.

[0029] In combination with the first embodiment to the fourth embodiment, the application provides a quick-release pop-up battery for a handheld electronic device, which is provided with a battery shell 2-1 for cooperation with a battery compartment and a battery pack front cover 2-2 for plugging with the battery compartment. A groove structure for limiting and guiding is arranged on the top of the battery shell 2-1. The guide groove 2-4 is used for cooperation with the protruding structure in the battery compartment to ensure the accurate trajectory when the quick-release pop-up battery is inserted. The inclined side in the trapezoidal groove 2-5 is used for guiding the locking part in the locking and limiting structure, guiding the locking part into the horizontal limiting groove 2-6. The horizontal limiting groove 2-6 is used for cooperation with the locking part to realize the locking of the quick-release pop-up battery and the battery compartment.

[0030] The fifth embodiment is in combination with the first embodiment to the fourth embodiment. Figure 1 to Figure 6 The embodiment provides a battery compartment structure of a handheld electronic device. The battery compartment structure is fixedly installed on the handheld electronic device, and the quick-release pop-up battery is inserted into the battery compartment structure. The battery compartment structure is provided with a locking unit, and the quick-release pop-up battery is locked and fixed by the locking unit. The other components and connection modes are the same as those of the fourth embodiment.

[0031] The sixth embodiment is in combination with the first embodiment to the fourth embodiment. Figure 1 to Figure 6This embodiment describes a battery compartment structure for a handheld electronic device. The battery compartment structure includes a frame structure 1-1, a front battery compartment panel 1-10, a top battery compartment panel 1-15, a bottom battery compartment panel 1-17, and two side battery compartment panels 1-18. The front battery compartment panel 1-10 is located at the front end of the frame structure 1-1 and is detachably connected to it. The top and bottom battery compartment panels 1-15 and 1-17 are positioned opposite each other at the top and bottom of the frame structure 1-1, respectively, and are detachably connected to the frame structure 1-1. The two side battery compartment panels 1-18 are positioned opposite each other on the left and right sides of the frame structure 1-1, and each side panel 1-18 is detachably connected to the frame structure 1-1. A locking unit is located on the frame structure 1-1 and is detachably connected to it. Other components and connection methods are the same as in specific embodiment five.

[0032] Specific implementation method seven: Combination Figure 4 This embodiment differs from specific embodiment six in that the frame structure 1-1 includes two U-shaped side frames and a central crossbeam. The two U-shaped side frames are arranged parallel to each other along the centerline of the battery compartment front panel 1-10. The central crossbeam stands upright within the two U-shaped side frames and is parallel to the battery compartment front panel 1-10. Each end of the central crossbeam has a downwardly extending support leg at its bottom. Each support leg is detachably connected to a corresponding U-shaped side frame by bolts. A locking unit is located between the central crossbeam and the battery compartment front panel 1-10, and the locking unit is detachably connected to the central crossbeam. Other components and connection methods are the same as in specific embodiment six.

[0033] As illustrated in combination with Embodiment Six and Embodiment Seven, the rear end of the U-shaped side frame is higher than the front end, the battery compartment front plate 1-10 is arranged at the front end of the two U-shaped side frames and detachably connected to the two U-shaped side frames by four No. 2 disc head bolts 1-11, the middle beam is arranged in the middle of the two U-shaped side frames and close to the battery compartment front plate 1-10, the distance between the middle beam and the battery compartment front plate 1-10 is consistent with the sum of the height of the trapezoidal groove 2-5 and the thickness of the tower spring 1-19 after compression, the battery compartment lower plate 1-17 is arranged at the bottom of the two U-shaped side frames and detachably connected to the two U-shaped side frames by four No. 1 countersunk head bolts 1-16, each battery compartment side plate 1-18 is arranged at the left side of one U-shaped side frame and forms a side limiting assembly with the U-shaped side frame, the battery compartment upper plate 1-15 is arranged between the two side limiting assemblies, the tail end of the battery compartment upper plate 1-15 is detachably connected to the battery compartment side plates 1-18 on both sides and the U-shaped side frame by two No. 3 disc head bolts 1-12, and the head end of the battery compartment upper plate 1-15 is detachably connected to the middle beam by two No. 4 disc head bolts 1-13. Thus, the battery compartment front plate 1-10, the battery compartment upper plate 1-15, the battery compartment lower plate 1-17 and the two battery compartment side plates 1-18 form a complete battery compartment body under the support of the framework structure 1-1. The front end of the quick-release pop-up battery is inserted into the tail end of the battery compartment, and the inner side of each battery compartment side plate 1-18 is a beveled structure. As the quick-release pop-up battery moves into the battery compartment, the width of the battery compartment gradually decreases, thereby achieving good side restraint and positioning.

[0034] Embodiment Eight: in combination with Embodiment Seven Figure 1 to Figure 6 In this embodiment, the difference between this embodiment and Embodiment Seven is that the bottom of the battery compartment upper plate 1-15 is fixedly connected with two guide ribs, and each guide rib is correspondingly arranged with a guide groove 2-4. The other components and connection modes are the same as those of Embodiment Seven.

[0035] In this embodiment, the guide rib is used to cooperate with the guide groove 2-4 to ensure the accurate trajectory of the battery inserted into the battery compartment.

[0036] Embodiment Nine: in combination with Embodiment Eight Figure 1 to Figure 6 In this embodiment, the difference between this embodiment and Embodiment Eight is that the center of the rear side of the battery compartment front plate 1-10 is provided with a plug male head matched with the plug female head on the upper insert of the battery pack front cover 2-2, two tower springs 1-19 are arranged on the left and right sides of the plug male head, and one end of each tower spring 1-19 is fixedly connected to the inner side of the battery compartment front plate 1-10. The other components and connection modes are the same as those of Embodiment Eight.

[0037] The tower spring 1-19 is used as the rebound component in this embodiment, which is very flat after compression, and can make the distance between the battery compartment front plate 1-10 and the battery pack front cover 2-2 very small while ensuring the ejection force. The tower spring 1-19 is mainly used to provide the rebound force for the quick-release ejected battery. When the locking unit fails, the quick-release ejected battery can be ejected from the electronic device by a small distance under the action of the tower spring 1-19, and the friction force of the battery compartment shell is designed to ensure that the battery will not be completely ejected from the device to cause the battery to fall. The power plug is connected to the internal power-consuming elements of the handheld electronic device through a wire. The connection between the power jack and the power plug is only to enable the battery power to be stably input into the handheld electronic device, so that the handheld electronic device can work normally. Therefore, the plug-in force between the two will not be very large, and the connection tightness of the power jack and the power plug can be ensured under the constraint of the locking unit. Therefore, the connection between the power jack and the power plug will not affect the ejection action of the quick-release ejected battery, and the smoothness of the battery ejection and the convenience of the battery replacement can be ensured.

[0038] Specific implementation ten: in combination ​ In this embodiment, the locking unit includes a button guide 1-2, a pressure spring 1-4, a sliding groove limiting piece 1-5, a button 1-6, a first plug bolt 1-7, a first cup head bolt 1-8, and a second plug bolt 1-9. The button guide 1-2 is a T-shaped block structure, the horizontal part of the button guide 1-2 is arranged on one end of the middle beam and detachably connected with the middle beam, the vertical part of the button guide 1-2 is arranged close to the battery compartment front plate 1-10, the sliding groove limiting piece 1-5 is arranged between the middle beam and the battery compartment front plate 1-10, and the sliding groove limiting piece 1-5 is slidably connected with the middle beam through the first plug bolt 1-7. A gap is arranged between the sliding groove limiting piece 1-5 and the first plug bolt 1-7. The second plug bolt 1-9 is arranged on the side of the button guide 1-2 away from the sliding groove limiting piece 1-5. The button 1-6 is sleeved on the bolt head of the second plug bolt 1-9. The threaded end of the second plug bolt 1-9 penetrates through the button guide 1-2 and is inserted into one end of the sliding groove limiting piece 1-5. The pressure spring 1-4 is arranged between the bolt head of the second plug bolt 1-9 and the button guide 1-2. One end of the pressure spring 1-4 is fixedly connected with the button guide 1-2, and the other end of the pressure spring 1-4 is fixedly connected with the bolt head of the second plug bolt 1-9. The second plug bolt 1-9 is reset along the axial extension direction under the action of the pressure spring 1-4, thereby driving the sliding groove limiting piece 1-5 to reciprocatingly slide horizontally on the middle beam. The first cup head bolt 1-8 is inserted into the bottom of the end of the sliding groove limiting piece 1-5 away from the button guide 1-2. The bolt head of the first cup head bolt 1-8 is used as a limiting part to be locked with the adjacent horizontal limiting groove 2-6. The other components and connection modes are the same as those in specific implementation nine.

[0039] In this embodiment, the locking unit is an important component in the battery compartment, which is used to lock the quick-release pop-up battery to ensure the stability of the connection between the quick-release pop-up battery and the battery compartment. The button guide 1-2 is fixed on the middle beam through the disc head bolt 1-3. The button 1-6 is a printed button, which is sleeved on the bolt head of the second plug-in bolt 1-9. At the same time, the second plug-in bolt 1-9 penetrates the button guide 1-2 and is fixed on the thread at the end of the sliding groove limiting piece 1-5. A through slot hole is opened in the sliding groove limiting piece 1-5. The first plug-in bolt 1-7 penetrates the slot hole of the sliding groove limiting piece 1-5 and is fixed on the middle beam. The thickness of the sliding groove limiting piece 1-5 is slightly smaller than the length of the screw rod of the first plug-in bolt 1-7. Therefore, the sliding groove limiting piece 1-5 and the plug-in bolt 1-7 fixed on the middle beam are matched through the slot hole to realize the limiting of the button 1-6. The first cup head bolt 1-8 is fixed on the threaded hole at the bottom of the sliding groove limiting piece 1-5. The bolt head serves as a limiting part matched with the horizontal limiting groove 2-6. The pressure spring 1-4 is sleeved on the second plug-in bolt 1-9 and is installed between the button guide 1-2 and the bolt head of the second plug-in bolt 1-9. The original length of the pressure spring 1-4 is greater than the maximum length between the button guide 1-2 and the button 1-6, so that the button 1-6 has a tendency to pop out in any position.

[0040] The above-mentioned embodiments of the present application have been disclosed, but the present application is not limited to the above-mentioned embodiments. Any person skilled in the art can make some changes or modifications to the above-mentioned embodiments without departing from the scope of the present application. Any simple modification, equivalent change and modification of the above-mentioned embodiments without departing from the scope of the present application are still within the scope of the present application.

[0041] Working principle

[0042] The application is used first to assemble the components according to the connection relationship described in the first embodiment to the tenth embodiment, and the operator can insert the quick-release pop-up battery into the battery compartment structure with one hand. With the insertion of the quick-release pop-up battery, the two guide ribs on the battery compartment upper plate 1-15 first enter from the large end of the trapezoidal groove 2-5, then enter the guide groove 2-4 and cooperate with the guide groove 2-4 to ensure the insertion trajectory of the quick-release pop-up battery. When the inclined side wall of the trapezoidal groove 2-5 contacts the bolt head of the No. 1 cup head bolt 1-8, continue to insert the quick-release pop-up battery, and the inclined side wall of the trapezoidal groove 2-5 plays a guiding role on the No. 1 cup head bolt 1-8. With the continued insertion of the quick-release pop-up battery, the No. 1 cup head bolt 1-8 will move along the inclined side of the trapezoidal groove 2-5 from the large end to the small end. In this process, the slide groove limiting piece 1-5 slides on the middle beam with the movement of the No. 1 cup head bolt 1-8, while pulling the button 1-6 to approach the button guide piece 1-2, and the compression spring 1-4 is in a compressed state. When the No. 1 cup head bolt 1-8 moves to the horizontal limiting groove 2-6, the No. 1 cup head bolt 1-8 does not continue to move along the inclined side of the trapezoidal groove 2-5, but enters the horizontal limiting groove 2-6. At this time, the bolt head of the No. 1 cup head bolt 1-8 contacts the groove bottom of the horizontal limiting groove 2-6 under the rebounding action of the compression spring 1-4, realizing locking and limiting. The power plug on the battery compartment front plate 1-10 cooperates with the power jack on the battery pack front cover 2-2, and the battery compartment front plate 1-10 also tightly contacts the spring 1-19 and makes the spring 1-19 in a compressed state. Thus, the quick-release pop-up battery is stably inserted into the battery compartment structure.

[0043] When the quick-release pop-up battery needs to be removed, the operator only needs to push the button 1-6 with one hand, so that the slide groove limiting piece 1-5 drives the No. 1 cup head bolt 1-8 to move out of the horizontal limiting groove 2-6. At this time, the No. 1 cup head bolt 1-8 will not limit the quick-release pop-up battery, and the quick-release pop-up battery will pop out of the battery compartment structure a small distance under the rebounding force of the spring 1-19, and the friction force design of the battery compartment shell ensures that the battery will not completely pop out of the device and fall off.

Claims

1. A quick release pop-out battery for a handheld electronic device, comprising: The quick-release pop-up battery comprises a battery body, a battery pack shell (2-1) and a battery pack front cover (2-2), the battery pack shell (2-1) is wrapped on the battery body, the battery pack front cover (2-2) is arranged at the front end of the battery pack shell (2-1) and is fixed on the battery pack shell (2-1) through four countersunk head bolts (2-3), and the top of the battery pack shell (2-1) is provided with a groove structure for limiting and guiding.

2. A quick release pop-out battery for a handheld electronic device as defined in claim 1, wherein: The edge of the battery pack front cover (2-2) is provided with a chamfer.

3. A quick release pop-out battery for a handheld electronic device as defined in claim 2, wherein: The front side of the battery pack front cover (2-2) is provided with a plug-in female head.

4. A quick release pop-out battery for a handheld electronic device as defined in claim 3, wherein: The groove structure on the top of the battery pack shell (2-1) comprises two guide grooves (2-4) and a trapezoidal groove (2-5), the trapezoidal groove (2-5) is arranged close to the front end of the battery pack shell (2-1), the large end of the trapezoidal groove (2-5) is arranged in communication with the front end of the battery pack shell (2-1), the two guide grooves (2-4) are arranged in parallel along the center line of the width direction of the top of the battery pack shell (2-1), one end of each guide groove (2-4) is arranged in communication with the tail end of the battery pack shell (2-1), and the other end of each guide groove (2-4) is arranged in communication with the small end of the trapezoidal groove (2-5), a horizontal limiting groove (2-6) is arranged on the inclined side of the trapezoidal groove (2-5), and the horizontal limiting groove (2-6) is arranged in parallel with the battery pack front cover (2-2).

5. A battery compartment structure cooperating with the quick release pop-out battery of the handheld electronic device of any one of claims 1 to 4, characterized in that: The battery compartment structure is fixedly installed on the handheld electronic device, the quick-release pop-up battery is inserted into the battery compartment structure, the battery compartment structure is provided with a locking unit, and the battery compartment structure locks and fixes the quick-release pop-up battery through the locking unit.

6. The battery compartment structure of a handheld electronic device according to claim 5, wherein: The battery compartment structure comprises a framework structure (1-1), a battery compartment front plate (1-10), a battery compartment upper plate (1-15), a battery compartment lower plate (1-17) and two battery compartment side plates (1-18), the battery compartment front plate (1-10) is arranged at the front end of the framework structure (1-1) and is detachably connected with the framework structure (1-1), the battery compartment upper plate (1-15) and the battery compartment lower plate (1-17) are arranged opposite to each other at the top and bottom of the framework structure (1-1), and the battery compartment upper plate (1-15) and the battery compartment lower plate (1-17) are both detachably connected with the framework structure (1-1), the two battery compartment side plates (1-18) are arranged opposite to each other at the left and right sides of the framework structure (1-1), and each battery compartment side plate (1-18) is detachably connected with the framework structure (1-1), and the locking unit is arranged on the framework structure (1-1) and is detachably connected with the framework structure (1-1).

7. The battery compartment structure of a handheld electronic device according to claim 6, wherein: The framework structure (1-1) comprises two N-shaped side frames and a middle beam, the two N-shaped side frames are arranged in parallel along the center line of the length direction of the battery compartment front plate (1-10), the middle beam is arranged in the two N-shaped side frames, and the middle beam is arranged in parallel with the battery compartment front plate (1-10), the bottom of each end of the middle beam is provided with a downward extending supporting leg, each supporting leg is detachably connected with a corresponding N-shaped side frame through a bolt, the locking unit is arranged between the middle beam and the battery compartment front plate (1-10), and the locking unit is detachably connected with the middle beam.

8. The battery compartment structure of a handheld electronic device according to claim 7, wherein: The bottom of the battery compartment upper plate (1-15) is fixedly connected with two guide protrusions, and each guide protrusion is correspondingly arranged with a guide groove (2-4).

9. The battery compartment structure of a handheld electronic device according to claim 8, wherein: The center of the rear side of the battery compartment front plate (1-10) is provided with a plug-in male head matched with a plug-in female head on the battery pack front cover (2-2), and two tower springs (1-19) are arranged on the left and right sides of the plug-in male head, and one end of each tower spring (1-19) is fixedly connected with the rear side of the battery compartment front plate (1-10).

10. The battery compartment structure of a handheld electronic device according to claim 9, wherein: The locking unit comprises a button guide (1-2), a pressure spring (1-4), a sliding groove limiting piece (1-5), a button (1-6), a first plug bolt (1-7), a first cup head bolt (1-8) and a second plug bolt (1-9). The button guide (1-2) is a T-shaped block structure, the horizontal part of the button guide (1-2) is arranged on one end of the middle beam and detachably connected with the middle beam, and the vertical part of the button guide (1-2) is arranged close to the battery compartment front plate (1-10). The sliding groove limiting piece (1-5) is arranged between the middle beam and the battery compartment front plate (1-10), and the sliding groove limiting piece (1-5) is slidably connected with the middle beam through the first plug bolt (1-7). A gap is left between the sliding groove limiting piece (1-5) and the first plug bolt (1-7). The second plug bolt (1-9) is arranged on the side of the button guide (1-2) away from the sliding groove limiting piece (1-5). The button (1-6) is sleeved on the bolt head of the second plug bolt (1-9). The threaded end of the second plug bolt (1-9) penetrates through the button guide (1-2) and is inserted into one end of the sliding groove limiting piece (1-5). The pressure spring (1-4) is arranged between the bolt head of the second plug bolt (1-9) and the button guide (1-2). One end of the pressure spring (1-4) is fixedly connected with the button guide (1-2), and the other end of the pressure spring (1-4) is fixedly connected with the bolt head of the second plug bolt (1-9). The second plug bolt (1-9) is reset along the axial extension direction by the pressure spring (1-4), thereby driving the sliding groove limiting piece (1-5) to reciprocatingly slide horizontally on the middle beam. The first cup head bolt (1-8) is inserted into the bottom of the end of the sliding groove limiting piece (1-5) away from the button guide (1-2). The bolt head of the first cup head bolt (1-8) is used as a limiting part and is locked and matched with the adjacent horizontal limiting groove (2-6).