Suspensible modular wireless charging storage device for office scene
The modularly designed, hangable wireless charging storage device integrates storage, charging, and hanging functions, solving the problems of messy cables and scattered devices on the office desk, and achieving efficient item management and space utilization.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HANGZHOU VOCATIONAL & TECHN COLLEGE
- Filing Date
- 2025-06-13
- Publication Date
- 2026-05-26
AI Technical Summary
Existing office desktops are cluttered with cables and small items scattered around. Traditional storage boxes are limited in function and take up space, while wireless charging devices are set up separately, resulting in devices being scattered.
Design a modular, hangable wireless charging storage device that integrates storage, charging, and hanging functions. Optimize space utilization through a combination of V-shaped, card-shaped, and W-shaped storage slots, flexible storage slots, and wireless charging slots for mobile phones.
It significantly optimizes the management of items and space utilization in office scenarios, improves multi-functional storage integration, wireless charging efficiency and cable management, and supports multi-person office and multi-device management scenarios.
Smart Images

Figure CN224268724U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a hanging modular wireless charging and storage device for office scenarios, and more specifically, to a multi-purpose office desktop device that integrates wireless charging, modular storage and hanging functions, belonging to the field of office equipment technology. Background Technology
[0002] Existing office desks suffer from problems such as messy cables and scattered small items. Traditional storage boxes are single-function and take up a lot of space. Wireless charging devices are usually set up separately, resulting in devices being scattered. This utility model integrates storage, charging and hanging functions through a modular design, optimizing space utilization. Utility Model Content
[0003] To address the aforementioned technical problems, this utility model provides a hanging modular wireless charging and storage device for office environments, featuring modular assembly, integrated storage, charging, and hanging functions, and optimized space utilization.
[0004] To achieve the above objectives, this utility model is implemented through the following technical solution:
[0005] This utility model discloses a hanging modular wireless charging and storage device for office scenarios, comprising at least one product shell. The front surface of the product shell is connected to a V-shaped storage slot, a card storage slot, a W-shaped storage slot, and a flexible storage slot. Different product shells can be joined together side by side. A wireless charging slot for mobile phones can be connected to the left or right side of the product shell.
[0006] The V-shaped storage slot is located at the top of the product shell. The V-shaped storage slot has a groove formed by symmetrically inclined side walls to limit and fix long and narrow items such as pens and scissors. The inclination angle is 30°-60°.
[0007] The card storage slot is located on the left side of the V-shaped storage slot. It consists of multiple vertically arranged parallel partitions forming a narrow gap with a width of 0.5-1mm to accommodate flat items such as cards.
[0008] The W-shaped storage slot is located at the bottom of the product casing. The W-shaped storage slot has a wave groove with a peak spacing of 20-30mm, a thickness of 1.5-2mm, and a trough depth of 10-15mm to accommodate small office supplies of different sizes.
[0009] The flexible storage slot is located at the front end of the W-shaped storage slot. The flexible storage slot is equipped with U-shaped spring clips with an opening spacing of 3-5mm, which are used to hold items such as keys and USB flash drives.
[0010] The wireless charging slot for mobile phones has a mobile phone slot body that is tilted at 5°-10°. A charging coil is installed inside the mobile phone slot body, and the charging coil is connected to an external power source through a wire.
[0011] Preferably, the top of the product casing is provided with a hanging interface for hanging the product casing, and the bottom of the product casing is connected to a base, with the W-shaped storage slot and the elastic storage slot both located on the base.
[0012] Preferably, it also includes a concealed winding compartment, which is located on the back of the product casing and is covered by a sliding cover. The compartment contains a winding post and a magnetic wire clip.
[0013] Preferably, the inclined sidewall surface of the V-shaped storage groove is provided with an anti-slip silicone strip.
[0014] Preferably, the base is provided with an anti-slip rubber pad at the bottom and a rotatable clamping mechanism on the side of the base, with a clamping force of 5-10N.
[0015] Preferably, the V-shaped storage slot and the card storage slot are connected to plug rods, and the product shell has several plug interfaces. The V-shaped storage slot and the card storage slot are connected to different plug interfaces on the product shell 1 through plug rods to achieve position changes.
[0016] Preferably, the U-shaped spring clip of the elastic storage groove is made of 304 stainless steel, and the end of the clip is bent to form an anti-disengagement hook.
[0017] Preferably, the surface of the mobile phone slot of the wireless charging slot is provided with an anti-slip silicone layer, and magnetic positioning pieces are provided on both sides of the mobile phone slot.
[0018] Preferably, the cover of the concealed winding compartment is equipped with a sliding limit buckle with an opening and closing stroke of 50-80mm.
[0019] Preferably, the product casing and the mobile phone wireless charging slot are connected by a mortise and tenon structure.
[0020] Preferably, different product shells are connected by mortise and tenon joints or by multiple strong magnets.
[0021] Beneficial Effects: This utility model significantly optimizes item management and space utilization in office settings through modular combination, wireless charging integration, and a hanging design. Specific effects include: Multifunctional Storage Integration: The 30°-60° inclined sidewalls of the V-shaped storage slot physically restrain long items such as pens and scissors; a single slot can accommodate tools with a diameter of 5-15mm, reducing vertical space occupation by 40%. The 0.5-1mm narrow gap in the card storage slot accommodates flat items with a thickness ≤1mm, such as business cards and bank cards; parallel partitions separate the slots, allowing for a maximum of 20 cards per slot. The wavy groove structure of the W-shaped storage slot (20-30mm crest spacing, 10-15mm trough depth) utilizes the deformation properties of elastic plastic to accommodate items with a height of 5-25mm, such as paperclips and memo boxes, increasing versatility by 60%. The U-shaped spring clips (3-5mm opening) of the flexible storage slots, made of 304 stainless steel, provide continuous clamping force. The anti-dislodgement design at the end of the clips prevents small items such as USB drives and keys from accidentally falling out. Wireless charging and cable management are efficiently combined: the 5°-10° tilt of the wireless charging slot conforms to an ergonomic viewing angle, and the magnetic positioning piece ensures that the alignment error between the phone and the coil is ≤2mm, improving charging efficiency by 30%. The hidden cable winding compartment uses three winding posts (10mm diameter) and magnetic cable clips to store cables 1-2m in length. The sliding limit latch on the cover (50-80mm travel) allows for one-handed opening and closing, reducing exposed cable length by 90%. Modular design allows for flexible adaptation to various scenarios: the plug-in rods and interfaces (20mm spacing) on the product casing allow users to adjust the vertical position of the V-shaped storage slots and card storage slots, supporting staggered layouts to meet the storage needs of items of different heights. The outer shells are connected by mortise and tenon joints or strong magnets (1.5N magnetic force per magnet). After the modules are assembled, the horizontal expansion width can reach more than 300mm, which is suitable for multi-person office or multi-device management scenarios. Attached Figure Description
[0022] Figure 1 This is the usage state of this utility model. Figure 1 .
[0023] Figure 2 This is the usage state of this utility model. Figure 2 .
[0024] Figure 3 This is the usage state of this utility model. Figure 3 .
[0025] Figure 4 This is a side view of the outer casing of the product of this utility model. Detailed Implementation
[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0027] In the description of the utility model, it should be noted that the terms "upper", "lower", "inner", "outer", "left", "right", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the device 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 the utility model.
[0028] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "setting," "connection," etc., should be interpreted broadly. For example, "connection" can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0029] Technical solution and principle:
[0030] 1. The V-shaped groove 2 limits the length of long items by tilting the side wall; the wavy elastic structure of the W-shaped storage groove 4 adapts to items of different sizes; the elastic storage groove 5 fixes small items that are easy to lose by U-shaped spring clips.
[0031] 2. Wireless charging integration: The wireless charging slot 7 for mobile phones adopts an inclined platform and magnetic positioning plates to ensure that the mobile phone is stably attached to the coil.
[0032] 3. Cable Management: The concealed cable winding compartment uses winding posts and magnetic cable clips to neatly store charging cables.
[0033] 4. Suspension and Fixing: The base's clamping mechanism, including ordinary clips, supports various suspension scenarios, while the anti-slip rubber pads enhance placement stability.
[0034] like Figure 1-4The illustration shows a specific embodiment of a hanging modular wireless charging and storage device for office use. This embodiment includes at least one product shell 1. The front surface of the product shell 1 is connected to a V-shaped storage slot 2, a card storage slot 3, a W-shaped storage slot 4, and a flexible storage slot 5. Different product shells 1 can be joined together side-by-side. A wireless charging slot 7 for mobile phones can be connected to the left or right end of the product shell 1. The V-shaped storage slot 2 is located at the upper end of the product shell 1 and has grooves formed by symmetrically inclined sidewalls for securing long, narrow items such as pens and scissors at an angle of 30°-60°. The card storage slot 3 is located to the left of the V-shaped storage slot 2. Multiple vertically arranged parallel partitions form a narrow gap with a width of 0.5-1mm to accommodate flat items such as cards; a W-shaped storage slot 4 is located at the lower end of the product shell 1, and the W-shaped storage slot 4 has a wave groove with a peak spacing of 20-30mm, a thickness of 1.5-2mm, and a trough depth of 10-15mm to accommodate small office supplies of different sizes; an elastic storage slot 5 is located at the front end of the W-shaped storage slot 4, and the elastic storage slot 5 has a U-shaped spring clip with an opening spacing of 3-5mm for holding items such as keys and USB flash drives; a wireless charging slot 7 for mobile phones has a mobile phone slot body with an inclination of 5°-10°, and a charging coil inside the mobile phone slot body, which is connected to an external power source through a wire.
[0035] The product casing 1 can be made of ABS plastic in one piece. Users can install and position the V-shaped storage slot 2 and W-shaped storage slot 4 according to their needs. When the mobile phone is placed in the wireless charging slot 7, the magnetic positioning piece helps to align with the charging area. After the cable winding compartment cover 8a is slid open, the cable can be wound around the winding post and fixed by the cable clip.
[0036] Example 1: Basic Module Configuration and Daily Office Applications
[0037] Component Installation Steps: Select an ABS plastic outer shell. Insert the V-shaped storage slot's connector into the first connector on the top of the shell, adjusting the slot's angle to 45° to secure frequently used pens. On the left side of the shell, assemble the card storage slot using mortise and tenon joints, inserting business cards into the gaps, spacing them 0.8mm apart to prevent them from overlapping and jamming. Secure the W-shaped storage slot to the bottom base, placing the notepad box into the trough of the wave groove (12mm deep), using the elastic plastic's deformation to clamp the items. Wireless Charging Operation: Place the phone into the 8° tilted slot of the wireless charging pad. The magnetic positioning plates on both sides will adhere to the back of the phone, automatically aligning the coil with the charging area. Charging capacity should be ≥25% within 15 minutes. Slide the cable winding cover to its maximum travel (80mm), wind the charging cable around the winding post, and secure the cable end, ensuring the remaining cable length is ≤10cm. Application in hanging scenarios: The rotating base clamping mechanism (clamp with a rotating shaft) can be used to make it horizontal and fix it to the edge of the table (15mm thick). The overall hanging height of the device is 200mm above the table, forming a vertical storage area.
[0038] Example 2: Multi-module expansion and high-density storage scenario
[0039] Multi-shell splicing solution: Two product shells are horizontally connected by strong magnets on the sides (4 sets per side, total magnetic force 6N) to form a combined device with a total width of 600mm, meeting the needs of multiple people sharing an office space. The left shell is equipped with double V-shaped storage slots (tilt angles of 30° and 50° respectively) to store markers and scissors; the right shell adds a flexible storage slot for centralized management of USB flash drives and keys. Optimized details of the flexible storage slot: When a key is inserted into the U-shaped spring clip, the clip expands to 5mm under force and then springs back to its initial state. The 30° bending angle to prevent disengagement limits the horizontal displacement of the key to ≤2mm. The stainless steel clip surface is sandblasted (roughness Ra≤0.8μm) to prevent scratching items. Extended cable management function: Simultaneously stores mobile phone charging cables, headphone cables, and keyboard cables. Cables are layered and wound on the winding post, and magnetic cable clips fix the cable ends, reducing the cable crossing rate to below 5%.
[0040] Example 3: Adaptation of Mobile Office and In-Vehicle Scenarios
[0041] Vehicle Suspension Mode: Adjust the base clamping mechanism (clamp with pivot) to a vertical position, clamp the car seat backrest bracket (10mm thick), and the device's lateral load-bearing capacity is ≥1.5kg, with no displacement under bumpy conditions. The friction coefficient between the anti-slip rubber pad and the leather contact surface is increased to 1.2 to prevent the device from slipping during sudden braking. Quick Module Switching: Press the tenon joint of the wireless charging slot for your phone; within 3 seconds, it can be disassembled and replaced with a second flexible storage slot module to meet the need for temporary storage of car keys.
[0042] In a preferred embodiment, the top of the product casing 1 is provided with a hanging interface for hanging the product casing 1, and the bottom of the product casing 1 is connected to a base 6. The W-shaped storage slot 4 and the elastic storage slot 5 are both located on the base 6.
[0043] In a preferred embodiment, the product housing 1 is further provided with a concealed winding compartment 8, which is located on the back of the product housing 1 and is covered by a sliding cover. The compartment contains three winding posts and magnetic wire clips.
[0044] In a preferred embodiment, the inclined sidewall surface of the V-shaped storage groove 2 is provided with an anti-slip silicone strip.
[0045] In a preferred embodiment, the base 6 is provided with an anti-slip rubber pad at the bottom and a rotatable clamping mechanism on the side of the base, with a clamping force of 5-10N.
[0046] In a preferred embodiment, the V-shaped storage slot 2 and the card storage slot 3 are connected to plug rods, and the product shell 1 has a plurality of plug interfaces. The V-shaped storage slot 2 and the card storage slot 3 are connected to different plug interfaces on the product shell 1 through plug rods to achieve positional changes.
[0047] In a preferred embodiment, the U-shaped spring clip of the elastic storage groove 5 is made of 304 stainless steel, and the end of the clip is bent to form an anti-disengagement hook.
[0048] In a preferred embodiment, the surface of the mobile phone slot 7 is provided with an anti-slip silicone layer, and magnetic positioning pieces are provided on both sides of the mobile phone slot.
[0049] In a preferred embodiment, the cover of the concealed winding compartment 8 is provided with a sliding limit buckle, and the opening and closing stroke is 50-80mm.
[0050] In a preferred embodiment, the product casing 1 and the mobile phone wireless charging slot 7 are connected by a mortise and tenon structure.
[0051] In a preferred embodiment, different product shells 1 are connected by a mortise and tenon structure or by multiple strong magnets.
[0052] The following provides a detailed description of the technical details and implementation methods for each "preferred embodiment" mentioned in the utility model patent:
[0053] 1. The layout of the product casing's hanging interface and base.
[0054] Hanging interface: The top of the product shell has a horizontal strip hanging groove (8mm wide and 5mm deep), with a metal hook buckle (made of zinc alloy, with a load-bearing capacity of ≥5kg) embedded in the groove, which is compatible with standard bracket crossbars or wall hooks.
[0055] Base structure: The base is fixed to the bottom of the outer shell with four sets of screws (M3 specification, 50mm spacing). The base surface is provided with positioning bosses (3mm high). The W-shaped storage slot and the elastic storage slot are embedded into the base with buckles to ensure the stability of the module.
[0056] Application scenarios: The hanging interface supports the device to be vertically suspended on office partitions or walls. The base supports the overall weight, allowing the W-shaped groove and elastic groove to be close to the desktop for easy access to items.
[0057] 2. Concealed winding compartment design
[0058] Cabinet structure: The winding compartment is located in the recessed area on the back of the outer shell (25mm deep). Inside the compartment, three ABS plastic winding posts (10mm in diameter and 15mm in height) are arranged in a triangle with a spacing of 40mm to reduce cross-knotting when winding cables.
[0059] Magnetic cable clip: The clip contains a neodymium iron boron magnet (magnetic force 0.3N) to attract the metal connector of the charging cable and prevent the cable from becoming loose.
[0060] Sliding cover: The cover adopts a sliding rail mechanism (travel limit of 50-80mm), and the damping coefficient during opening and closing is 0.2-0.3, enabling smooth one-handed operation.
[0061] 3. V-shaped storage slot with anti-slip silicone strip
[0062] Silicone strip parameters: A 1.5mm thick silicone strip (Shore hardness 50HA, coefficient of friction ≥0.65) is attached to the side wall surface, and a diamond-shaped anti-slip texture (texture depth 0.5mm) is embossed on the surface.
[0063] Functional effect: Increases the friction between long, narrow tools (such as scissors and pens) and the groove wall, preventing items from slipping and reducing noise during loading and unloading.
[0064] 4. Anti-slip rubber pads on the base and a rotatable clamping mechanism
[0065] Rubber pad: A 3mm thick silicone rubber pad (friction coefficient ≥0.8) is pasted on the bottom of the base, covering 90% of the base area, to ensure that the device does not shift on a smooth tabletop.
[0066] Clamping mechanism: The base is equipped with a rotatable stainless steel clamping arm (6mm shaft diameter, 20mm clamping opening width), which clamps the edge of the tabletop by spring pre-tension (5-10N pressure) and is suitable for fixing surfaces with a thickness of 5-20mm.
[0067] 5. Modular adjustment of the plug rod and the plug interface
[0068] Connector structure: A 3mm diameter stainless steel connector (15mm long) is welded to the back of the V-groove and card slot. Two rows of connectors (20mm spacing, 3.2mm diameter) are set on the surface of the outer shell.
[0069] Adjustment method: Users can press the spring button at the end of the plug rod (2mm travel) to pull it out and reinsert it into other plug interfaces to adjust the height of the storage slot (for example, moving the V-shaped slot down 30mm from the top to accommodate short bottle stationery).
[0070] 6. U-shaped spring clips for the flexible storage slot
[0071] Material and process: The clamping plate is made of 304 stainless steel sheet (thickness 0.8mm, tensile strength ≥520MPa), stamped and bent into a U-shape (opening spacing 3-5mm), and the end is bent outward at 30° to form an anti-disengagement hook.
[0072] Clamping effect: When the key is inserted, the clamping plate deforms under force and rebounds to generate a continuous clamping force (0.5-1N), preventing the hook from coming off and limiting the horizontal displacement of the item to ≤2mm.
[0073] 7. The anti-slip layer and magnetic positioning of the wireless charging slot for mobile phones
[0074] Anti-slip silicone layer: A 1mm thick silicone pad (with micro-particle texture and a coefficient of friction ≥0.7) is attached to the surface of the groove to prevent the phone from sliding.
[0075] Magnetic positioning plate: 6mm diameter circular magnets (0.5N magnetic force) are embedded in both sides of the groove, corresponding to the magnets inside the phone, ensuring that the coil center offset is ≤2mm when the phone is placed, thus improving charging efficiency.
[0076] 8. Sliding limit buckle of winding compartment cover
[0077] Limiting mechanism: The end of the cover slide rail is equipped with an elastic plastic buckle (protrusion height 1mm). When the cover slides to a stroke of 50mm or 80mm, it automatically engages in the groove to prevent the cover from closing accidentally or falling off.
[0078] 9. Mortise and tenon connection between the outer casing and the wireless charging slot for mobile phones
[0079] Mortise and tenon structure: The back of the charging slot is equipped with a dovetail tenon (tenon width 8mm, bevel 10°), and the corresponding position of the outer shell is equipped with a mortise. After insertion, it is fixed by spring lock (pressure 2N). When disassembling, press the lock to separate. The disassembly and assembly time is ≤3 seconds.
[0080] 10. Tenon and mortise joint and magnet connection scheme between the outer shells
[0081] Mortise and tenon connection: The sides of adjacent shells are provided with male and female tenon structures (tolerance ±0.1mm), which form a seamless connection after splicing, with a tensile strength ≥30N.
[0082] Magnet connection: Four sets of 10mm diameter magnets (1.5N magnetic force per set) are embedded in the side of the outer shell, with a spacing of 40mm. When docking, the polarities of the magnets are staggered to ensure stable adsorption. The lateral tensile strength is ≥6N.
[0083] Summary of Implementation Results
[0084] 1. Suspension and Fixing: The suspension interface and clamping mechanism enable installation in multiple scenarios, and the anti-slip design of the base ensures stability.
[0085] 2. Cable Management: The magnetic cable clips and limit covers in the winding compartment ensure concealed cable storage.
[0086] 3. Module flexibility: The plug-in rod and tenon joint connection support quick adjustment of module layout.
[0087] 4. Optimized charging: Magnetic positioning and anti-slip layer improve wireless charging efficiency and safety.
[0088] 5. Enhanced details: Features such as anti-detachment hooks and silicone strips address the pain points of storing easily lost items.
[0089] The above embodiments, through precise mechanical structure and material selection, have achieved a comprehensive improvement in functionality, stability, and user experience.
[0090] Finally, it should be noted that this utility model is not limited to the above embodiments, and many variations are possible. All variations that can be directly derived or conceived by those skilled in the art from the disclosure of this utility model should be considered within the protection scope of this utility model.
Claims
1. A hanging modular wireless charging storage device for office environments, characterized in that, It includes at least one product shell (1), and the front end face of the product shell (1) is connected to a V-shaped storage slot (2), a card storage slot (3), a W-shaped storage slot (4), and an elastic storage slot (5). Different product shells (1) can be joined together from left to right. The left or right end of the product shell (1) can be connected to a mobile phone wireless charging slot (7). The V-shaped storage slot (2) is located at the upper end of the product shell (1). The V-shaped storage slot (2) is provided with a groove formed by symmetrically inclined side walls for limiting and fixing long strip-shaped items such as pens and scissors. The inclination angle is 30°-60°. The card storage slot (3) is located on the left side of the V-shaped storage slot (2). It is formed by multiple vertically arranged parallel partitions to create a narrow gap with a width of 0.5-1mm, which is suitable for storing flat items such as cards. The W-shaped storage slot (4) is located at the lower end of the product shell (1). The W-shaped storage slot (4) has a wave groove with a peak spacing of 20-30mm, a thickness of 1.5-2mm, and a trough depth of 10-15mm to accommodate small office supplies of different sizes. The elastic storage slot (5) is located at the front end of the W-shaped storage slot (4). The elastic storage slot (5) is equipped with a U-shaped spring clip with an opening spacing of 3-5mm, which is used to hold items such as keys and USB flash drives. The wireless charging slot (7) is equipped with a mobile phone slot body, which is inclined at 5°-10°. The mobile phone slot body is equipped with a charging coil inside, and the charging coil is connected to an external power source through a wire.
2. The hanging modular wireless charging storage device for office environments according to claim 1, characterized in that: The top of the product shell (1) is provided with a hanging interface for hanging the product shell (1), and the bottom of the product shell (1) is connected to a base (6). The W-shaped storage slot (4) and the elastic storage slot (5) are both located on the base (6).
3. A hanging modular wireless charging and storage device for office environments according to claim 1 or 2, characterized in that: It also includes a hidden winding compartment (8), which is located on the back of the product casing (1) and is covered by a sliding cover. The compartment has three winding posts and magnetic wire clips.
4. A hanging modular wireless charging and storage device for office environments according to claim 1, characterized in that: The inclined sidewall surface of the V-shaped storage groove (2) is provided with anti-slip silicone strips.
5. A hanging modular wireless charging storage device for office environments according to claim 2, characterized in that: The base (6) has an anti-slip rubber pad at the bottom and a rotatable clamping mechanism on the side of the base, with a clamping force of 5-10N.
6. A hanging modular wireless charging and storage device for office environments according to claim 1, 2, 4, or 5, characterized in that: The V-shaped storage slot (2) and card storage slot (3) are connected to plug rods. The product shell (1) has several plug interfaces. The V-shaped storage slot (2) and card storage slot (3) are connected to different plug interfaces on the product shell (1) through plug rods to achieve position changes.
7. A hanging modular wireless charging storage device for office environments according to claim 1, characterized in that: The U-shaped spring clip of the elastic storage groove (5) is made of 304 stainless steel, and the end of the clip is bent to form an anti-disengagement hook.
8. A hanging modular wireless charging storage device for office environments according to claim 1, characterized in that: The surface of the mobile phone slot (7) is provided with an anti-slip silicone layer, and magnetic positioning pieces are provided on both sides of the mobile phone slot.
9. A hanging modular wireless charging storage device for office environments according to claim 3, characterized in that: The cover of the concealed winding compartment (8) is equipped with a sliding limit buckle, with an opening and closing stroke of 50-80mm.
10. A hanging modular wireless charging storage device for office environments according to claim 1 or 8, characterized in that: The product shell (1) and the mobile phone wireless charging slot (7) are connected by a mortise and tenon structure; different product shells (1) are connected by a mortise and tenon structure or by multiple strong magnets.