A multi-type c interface fast charger and an application method thereof

By designing a multi-Type-C interface fast charger and adopting wireless charging and intelligent control technologies, the problems of poor compatibility and low security of existing chargers have been solved. It realizes wireless compatible charging and automatic call answering functions for different mobile phone models, improving user experience and information security.

CN114726051BActive Publication Date: 2026-04-24ASAP TECH (JIANGXI) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
ASAP TECH (JIANGXI) CO LTD
Filing Date
2022-05-05
Publication Date
2026-04-24

AI Technical Summary

Technical Problem

Existing multi-port chargers cannot achieve wireless charging, have poor compatibility, low safety, and cannot charge different models of mobile phones at the same time, making it easy to miss important communication information.

Method used

A multi-Type-C interface fast charger was designed, comprising a main frame, a transportation section, a charging section, a call assistance section, and an intelligent control section. It adopts wireless charging technology, combined with a vacuum suction cup fixing mechanism, and uses photosensitive sensors and sound sensors for automatic answering and recording, achieving compatible charging for different mobile phone models.

Benefits of technology

It enables wireless charging for different mobile phone models, improving safety and compatibility, reducing the chance of missed communication, enhancing user experience, reducing power consumption, and ensuring information security.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of multi-typec interface fast charger and its application method, including main frame, transport part, charging part, talk auxiliary part and intelligent control part;Main frame includes base and charging seat;Transport part includes power mechanism and fixed mechanism;Charging part includes height control mechanism and charging position calibration mechanism.Improve the adaptability of charging device, can be compatible with different models of device, to realize batch charging;Base is longer than charging seat, vacuum chuck, the combination design of fixed mechanism, significantly improve the safety factor of device and the article to be charged, not easy to tip, not easy to fall;The design of talk auxiliary part realizes incoming call automatic reminder, nobody intelligent answer and automatic recording etc., reduce the probability of missed communication in many ways, enhance the use experience;The design of multiple soundproof board can simultaneously record multiple communication devices, so that the receiving capacity of communication is significantly improved.
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Description

Technical Field

[0001] This invention relates to the field of chargers, and more particularly to a multi-Type-C interface fast charger and its application method. Background Technology

[0002] A mobile phone, also known as a wireless phone, was originally just a communication tool—a portable telephone terminal that could be used over a wide area. With the improvement of people's living standards, mobile phones have become a necessity. Along with the continuous advancement of technology, the types of mobile phones have increased dramatically, leading to the development of various chargers.

[0003] Currently, some jobs require employees to hand in their mobile phones for centralized management upon arrival at work. Due to the wide variety of mobile phone types, it's difficult to monitor their status after centralized management, leading to potential battery depletion and missed important notifications and messages. Furthermore, collecting numerous phones of different models requires bagging and numbering, which takes up a significant amount of space when laid flat. Using storage cabinets is not only bulky but also time-consuming for retrieval.

[0004] Chinese patent CN111127770A discloses a charger, including a housing and a protective cover hinged to the housing. The housing contains a current transformer, an energy meter electrically connected to the current transformer, a control device, and a terminal block. The current transformer is electrically connected to the control device, and the energy meter and the terminal block are both electrically connected to the control device. The side wall of the housing has a charging hole corresponding to the socket of the terminal block.

[0005] Similar to the multi-interface chargers mentioned above, especially Type-C chargers, a wire is still needed to connect the phone for charging. This does not solve the problem of simultaneously charging different Type-C phone models without an external cable. Summary of the Invention

[0006] This invention proposes a multi-Type-C interface fast charger, which solves the problems of low safety, poor compatibility and easy communication misses in traditional multi-interface chargers.

[0007] To achieve the above objectives, the present invention adopts the following technical solution:

[0008] A multi-Type-C interface fast charger includes a main frame, a transportation section, a charging section, a call assistance section, and an intelligent control section.

[0009] The main frame includes a base and a charging dock.

[0010] The base includes a rectangular hollow container and a load-bearing partition.

[0011] A circular through hole is provided on the bottom plate of the rectangular hollow container.

[0012] The rectangular hollow container has equidistant strip-shaped through holes on its upper bottom plate.

[0013] The charging dock includes a rectangular container.

[0014] The rectangular container has one opening facing downwards.

[0015] The rectangular container is placed on the upper bottom plate of the cuboid hollow container.

[0016] The rectangular container has U-shaped opening slots equidistantly arranged on its front side plate; the U-shaped opening slots are located above the strip-shaped through holes.

[0017] Soundproof panels are installed at equal intervals inside the rectangular container.

[0018] The transportation component includes a power mechanism and a stationary mechanism.

[0019] The power mechanism includes a lead screw motor, a slide rail, and a connecting structure.

[0020] The lead screw motor is mounted on the load-bearing partition.

[0021] The slide rails are equidistantly arranged on the upper bottom plate of the rectangular hollow container.

[0022] The connecting structure is mounted on the mover of the lead screw motor, and the connecting mechanism is slidably connected within the strip-shaped through hole.

[0023] The connection structure includes an "I"-shaped connecting frame, a positioning plate, and a roller.

[0024] The lower end of the "I"-shaped connecting frame is mounted on the mover of the lead screw motor.

[0025] The positioning plate is mounted on the I-shaped connecting frame.

[0026] A roller is provided on the bottom surface of the positioning plate.

[0027] The roller is slidably connected to the slide rail.

[0028] The fixing mechanism includes a base, an "L"-shaped fixing plate, a wedge-shaped movable block, and a sliding rod.

[0029] The base is detachably connected to the bottom surface of the positioning plate.

[0030] The base includes a rectangular container.

[0031] The “L”-shaped fixing plate is set on the base; the height of the “L”-shaped fixing plate is between 8-10cm.

[0032] The slide bar is horizontally mounted on an "L"-shaped fixing plate.

[0033] The wedge-shaped movable block is slidably connected to the slide rod; and the wedge-shaped movable block and the "L"-shaped fixed plate are connected by a spring.

[0034] The charging section includes a height control mechanism and a charging position adjustment mechanism.

[0035] The height control mechanism includes a lead screw motor and a pressure plate.

[0036] The two lead screw motors are symmetrically arranged inside the rectangular container.

[0037] The pressure plate is mounted on the mover of the second lead screw motor.

[0038] The pressure plate is provided with two rectangular through holes.

[0039] An "L"-shaped limiting plate is provided on the pressure plate; the "L"-shaped limiting plate is located above the second rectangular through hole.

[0040] The charging position adjustment mechanism includes a lead screw motor, a wedge-shaped limiting block, a wedge-shaped limiting block, and a charging device.

[0041] The lead screw motor is mounted on the bottom surface of the pressure plate.

[0042] The wedge-shaped limiting block is mounted on the mover of the lead screw motor.

[0043] The second wedge-shaped limiting block is connected to the "L"-shaped limiting plate by an "n"-shaped limiting plate spring; and the second wedge-shaped limiting block is slidably connected inside the second rectangular through hole.

[0044] The wedge-shaped limiting block one and the wedge-shaped limiting block two are compatible.

[0045] The charging device is disposed on the lower bottom surface of the wedge-shaped limiting block two.

[0046] The call assistance component includes a detection mechanism and a recording mechanism.

[0047] The detection mechanism includes a photosensitive sensor module and a sound sensor module.

[0048] The photosensitive sensor module and the two sound sensor modules are mounted on the soundproofing panel of the rectangular container.

[0049] The recording mechanism includes an electromagnetic telescopic rod, a touch block, a miniature microphone, and a recording device.

[0050] The electromagnetic telescopic rods are equidistantly arranged on the sound insulation board.

[0051] The touch block is located at the movable end of the electromagnetic telescopic rod.

[0052] The miniature microphone is mounted on the soundproof panel of the rectangular container.

[0053] The recording device is mounted on the upper bottom plate of a rectangular container.

[0054] The intelligent control system includes an auxiliary fixing mechanism, a control mechanism, a feedback mechanism, and a reminder mechanism.

[0055] The fixing mechanism includes a vacuum suction cup and a vacuum generator.

[0056] The vacuum suction cup and vacuum generator are located inside a rectangular hollow container.

[0057] The lower end of the vacuum suction cup is located inside the circular through hole.

[0058] The vacuum suction cup and the vacuum generator are fixedly connected by a conduit and a solenoid valve.

[0059] The control mechanism includes a start button, a lock button, and a mode switch button.

[0060] The start button and lock button are located on the left side panel of the rectangular container.

[0061] The mode switching buttons are equidistantly positioned on the top bottom plate of the rectangular hollow container.

[0062] The feedback mechanism includes a distance sensor module, a pressure sensor module, and a pyroelectric infrared sensor module.

[0063] The distance sensor module is symmetrically arranged on the bottom surface of the second wedge-shaped limiting block, and the distance sensor module is located on the front and rear sides of the charging device.

[0064] The pressure sensor module is mounted on the wedge-shaped movable block.

[0065] The pyroelectric infrared sensor module is mounted on the front side panel of the rectangular container.

[0066] The reminder mechanism includes a voice module, speaker one, speaker two, a color-changing light-emitting diode, and a microprocessor.

[0067] The voice module and microprocessor are housed within a rectangular hollow container.

[0068] The loudspeaker is mounted on the soundproof panel of the rectangular container.

[0069] The second speaker and the color-changing light-emitting diode are mounted on the bottom plate of the rectangular container.

[0070] The components include lead screw motor 1, lead screw motor 2, lead screw motor 3, charging device, photosensitive sensor module, sound sensor module, electromagnetic telescopic rod, miniature microphone, recording device, vacuum generator, solenoid valve, start button, fixed button, mode switching button, distance sensor module, pressure sensor module, pyroelectric infrared sensor module, voice module, speaker 1, speaker 2, color-changing light-emitting diode, and microprocessor, which are electrically connected.

[0071] Advantages compared to existing technologies:

[0072] In this invention, the following effects are achieved through the main frame, transportation section, charging section, call assistance section, and intelligent control section:

[0073] Firstly, it improves the compatibility of the charging device, making it compatible with different models of devices.

[0074] Secondly, it overcomes the power loss of wireless charging, enabling low-loss batch charging of multiple Type-C interface mobile phones without the use of wires.

[0075] Thirdly, the design of the base being longer than the charging base, the design of the vacuum suction cup, and the combined design of the fixing mechanism significantly improve the safety factor of the device, while ensuring the safety factor of the device to be charged, making it less likely to tip over or fall.

[0076] Fourth, the call assistance section features functions such as automatic call reminders, intelligent answering, and automatic recording when no one is around, which reduces the chance of missing calls and improves the user experience.

[0077] Fifth, the design of multiple sound insulation panels significantly improves the communication reception capability, allowing simultaneous recording of multiple communication devices.

[0078] Sixth, during charging, it achieves intelligent answering without using Bluetooth connection, which reduces the phone's power consumption on the one hand, and ensures the phone's information security on the other. Attached Figure Description

[0079] Figure 1 This is a schematic diagram of a partial cross-sectional structure in front view of Embodiment 1 of the present invention;

[0080] Figure 2 This is a top-view partial cross-sectional structural diagram of the present invention;

[0081] Figure 3 This is a schematic diagram of a partial cross-sectional structure in front view of Embodiment 2 of the present invention.

[0082] In the diagram: 101. Rectangular hollow container I; 102. Load-bearing partition I; 103. Circular through hole I; 104. Strip through hole I; 105. Rectangular container I; 106. "U"-shaped opening through groove I; 107. Sound insulation board; 201. Screw motor I; 202. Slide rail I; 203. "I"-shaped connecting frame; 204. Roller I; 301. Rectangular container II; 302. "L"-shaped fixing plate; 303. Wedge-shaped movable block; 401. Screw motor II; 402. Pressure plate; 403. Rectangular through hole II; 404. "L"-shaped limiting plate; 501. Screw motor III; 502. Wedge-shaped limiting block I; 503. Wedge-shaped limiting block II; 504. Charging device, 601. Vacuum suction cup, 602. Vacuum generator, 701. Lead screw motor four, 702. Lead screw motor five, 703. "n" shaped bracket, 704. Slide rail two, 705. Movable plate, 706. Electromagnetic telescopic rod one, 707. Image recognition module. Detailed Implementation

[0083] Example 1, refer to Appendix Figure 1-2 A multi-Type-C interface fast charger includes a main frame, a transportation section, a charging section, a call assistance section, and an intelligent control section.

[0084] The main frame includes a base and a charging dock.

[0085] The base includes a rectangular hollow container 101 and a load-bearing partition 102.

[0086] A circular through hole 103 is provided on the bottom plate of the rectangular hollow container 101.

[0087] The rectangular hollow container 101 has equidistant strip-shaped through holes 104 on its bottom plate.

[0088] The charging dock includes a rectangular container 105.

[0089] The rectangular container 105 has its opening facing downwards.

[0090] The rectangular container 105 is disposed on the bottom plate of the cuboid hollow container 101.

[0091] The rectangular container 105 has U-shaped opening slots 106 evenly spaced on its front side plate; the U-shaped opening slots 106 are located above the strip-shaped through holes 104.

[0092] Soundproof panels 107 are equidistantly arranged inside the rectangular container 105.

[0093] The transportation component includes a power mechanism and a stationary mechanism.

[0094] The power mechanism includes a lead screw motor 201, a slide rail 202, and a connecting structure.

[0095] The lead screw motor 201 is mounted on the load-bearing partition 102.

[0096] The slide rails 202 are equidistantly arranged on the bottom plate of the cuboid hollow container 101.

[0097] The connection structure is mounted on the mover of the lead screw motor 201, and the connection mechanism is slidably connected within the strip-shaped through hole 104.

[0098] The connection structure includes an I-shaped connecting frame 203, a positioning plate, and rollers 204.

[0099] The lower end of the I-shaped connecting frame 203 is mounted on the mover of the lead screw motor 201.

[0100] The positioning plate is mounted on the I-shaped connecting frame 203.

[0101] Roller 204 is provided on the bottom surface of the positioning plate.

[0102] The roller 204 is slidably connected to the slide rail 202.

[0103] The fixing mechanism includes a base, an "L"-shaped fixing plate 302, a wedge-shaped movable block 303, and a slide bar 304.

[0104] The base is detachably connected to the bottom surface of the positioning plate.

[0105] The base includes a rectangular container 2 301.

[0106] The “L”-shaped fixing plate 302 is disposed on the base; the height of the “L”-shaped fixing plate 302 is between 8-10cm.

[0107] The slide bar 304 is horizontally mounted on the "L"-shaped fixing plate 302.

[0108] The wedge-shaped movable block 303 is slidably connected to the slide rod 304; and the wedge-shaped movable block 303 and the "L"-shaped fixed plate 302 are spring-connected.

[0109] The charging section includes a height control mechanism and a charging position adjustment mechanism.

[0110] The height control mechanism includes a lead screw motor 401 and a pressure plate 402.

[0111] The lead screw motor 401 is symmetrically arranged inside the rectangular container 105.

[0112] The pressure plate 402 is mounted on the mover of the lead screw motor 401.

[0113] The pressure plate 402 is provided with a rectangular through hole 403.

[0114] An "L"-shaped limiting plate 404 is provided on the pressure plate 402; the "L"-shaped limiting plate 404 is located above the rectangular through hole 403.

[0115] The charging position adjustment mechanism includes a lead screw motor 501, a wedge-shaped limiting block 502, a wedge-shaped limiting block 503, and a charging device 504.

[0116] The lead screw motor 3501 is mounted on the top surface of the pressure plate 402.

[0117] The wedge-shaped limiting block 502 is mounted on the mover of the lead screw motor 501.

[0118] The wedge-shaped limiting block 503 is connected to the L-shaped limiting plate 404 by an "n"-shaped limiting plate spring; and the wedge-shaped limiting block 503 is slidably connected in the rectangular through hole 403.

[0119] The wedge-shaped limiting block 1 502 and the wedge-shaped limiting block 2 503 are adapted to each other.

[0120] The charging device 504 is disposed on the lower bottom surface of the wedge-shaped limiting block 503.

[0121] The call assistance component includes a detection mechanism and a recording mechanism.

[0122] The detection mechanism includes a photosensitive sensor module and a sound sensor module.

[0123] The photosensitive sensor module and the two sound sensor modules are mounted on the soundproof panel 107 of the rectangular container 105.

[0124] The recording mechanism includes an electromagnetic telescopic rod, a touch block, a miniature microphone, and a recording device.

[0125] The electromagnetic telescopic rods are equidistantly arranged on the sound insulation panel 107.

[0126] The touch block is located at the movable end of the electromagnetic telescopic rod.

[0127] The miniature microphone is mounted on the soundproof panel 107 of the rectangular container 105.

[0128] The recording device is mounted on the bottom plate of the rectangular container 105.

[0129] The intelligent control system includes an auxiliary fixing mechanism, a control mechanism, a feedback mechanism, and a reminder mechanism.

[0130] The fixing mechanism includes a vacuum suction cup 601 and a vacuum generator 602.

[0131] The vacuum suction cup 601 and the vacuum generator 602 are disposed inside the rectangular hollow container 101.

[0132] The lower end of the vacuum suction cup 601 is located inside the circular through hole 103.

[0133] The vacuum suction cup 601 and the vacuum generator 602 are fixedly connected by a conduit and a solenoid valve.

[0134] The control mechanism includes a start button, a lock button, and a mode switch button.

[0135] The start button and the lock button are located on the left side panel of the rectangular container 105.

[0136] The mode switching buttons are equidistantly positioned on the bottom plate of the rectangular hollow container 101.

[0137] The feedback mechanism includes a distance sensor module, a pressure sensor module, and a pyroelectric infrared sensor module.

[0138] The distance sensor module is symmetrically arranged on the bottom surface of the wedge-shaped limiting block 503, and the distance sensor module is located on the front and rear sides of the charging device 504.

[0139] The pressure sensor module is mounted on the wedge-shaped movable block 303.

[0140] The pyroelectric infrared sensor module is mounted on the front panel of the rectangular container 105.

[0141] The reminder mechanism includes a voice module, speaker one, speaker two, a color-changing light-emitting diode, and a microprocessor.

[0142] The voice module and microprocessor are housed within a rectangular hollow container 101.

[0143] The loudspeaker is mounted on the soundproof panel 107 of the rectangular container 105.

[0144] The second speaker and the color-changing light-emitting diode are mounted on the bottom plate of the rectangular container 105.

[0145] The components, including lead screw motor 201, lead screw motor 401, lead screw motor 501, charging device 504, photosensitive sensor module, sound sensor module, electromagnetic telescopic rod, miniature microphone, recording device, vacuum generator 602, solenoid valve, start button, fixed button, mode switching button, distance sensor module, pressure sensor module, pyroelectric infrared sensor module, voice module, speaker 1, speaker 2, color-changing light-emitting diode, and microprocessor, are electrically connected.

[0146] Working principle and usage of this invention:

[0147] Step 1, Pre-setting:

[0148] Power the fast charger of this invention by pressing the start switch, and then perform debugging.

[0149] The second step is charging:

[0150] Place the device, such as the mobile phone to be charged, between the "L"-shaped fixing plate 302 and the wedge-shaped movable block 303, with the charging port of the mobile phone facing upwards.

[0151] The pressure sensor module outputs the collected signals to the microprocessor; the microprocessor controls the lead screw motor 201 to transport the mobile phone to be charged into the rectangular container 105.

[0152] The distance sensor detects the location of the charging port of the phone to be charged and outputs the collected signal to the microprocessor. The microprocessor outputs signals to lead screw motors 501 (3rd motor) and 401 (2nd motor). Lead screw motor 501 drives wedge-shaped limit block 502 to adjust the position of wedge-shaped limit block 503, ultimately adjusting the charging device 504. Then, lead screw motor 401 moves the charging device 504 downwards, aligning it with the charging port of the phone to begin charging.

[0153] By repeating the above steps, multiple mobile phones can be charged simultaneously.

[0154] Step 3, answering the phone:

[0155] Users can switch between human answering and assisted answering modes by clicking the mode switch button.

[0156] When a call comes in, the photosensitive sensor module and the sound sensor module simultaneously output the collected signals to the microprocessor. The microprocessor then outputs signals to lead screw motors 201, 401, and 501. These motors then reset sequentially, ultimately transferring the phone out of the rectangular container 105 for easy answering by the user.

[0157] If the phone is not answered within 20 seconds (the pyroelectric infrared sensor module detects no one or the time limit has been reached), it will automatically switch to the assisted answering mode.

[0158] To assist in answering the call, both the photosensitive sensor module and the sound sensor module simultaneously output signals to the microprocessor. The microprocessor then outputs a signal to the electromagnetic telescopic rod, which answers the call via a touch block. The speaker outputs a preset reminder voice, prompting the caller to leave a message. Simultaneously, the miniature microphone and recording device are activated.

[0159] When the corresponding person retrieves the phone, the microprocessor outputs a signal to the voice module to play the voice message.

[0160] Step 4, Warning:

[0161] The microprocessor controls a color-changing LED to display red and a buzzer to sound continuously, prompting the user to answer the call.

[0162] When a message is left, if the pyroelectric infrared sensor module detects that someone is approaching, the microprocessor controls the color-changing LED to flash and the buzzer to sound briefly, reminding the user to answer the phone message.

[0163] After charging is complete, the device resets, and the microprocessor controls the color-changing LED to display green.

[0164] Example 2, refer to Appendix Figure 2-3 A multi-Type-C interface fast charger includes a main frame, a transportation section, a charging section, a call assistance section, and an intelligent control section.

[0165] The main frame includes a base and a charging dock.

[0166] The base includes a rectangular hollow container 101 and a load-bearing partition 102.

[0167] A circular through hole 103 is provided on the bottom plate of the rectangular hollow container 101.

[0168] The rectangular hollow container 101 has equidistant strip-shaped through holes 104 on its bottom plate.

[0169] The charging dock includes a rectangular container 105.

[0170] The rectangular container 105 has its opening facing downwards.

[0171] The rectangular container 105 is disposed on the bottom plate of the cuboid hollow container 101.

[0172] The rectangular container 105 has U-shaped opening slots 106 evenly spaced on its front side plate; the U-shaped opening slots 106 are located above the strip-shaped through holes 104.

[0173] Soundproof panels 107 are equidistantly arranged inside the rectangular container 105.

[0174] The transportation component includes a power mechanism and a stationary mechanism.

[0175] The power mechanism includes a lead screw motor 201, a slide rail 202, and a connecting structure.

[0176] The lead screw motor 201 is mounted on the load-bearing partition 102.

[0177] The slide rails 202 are equidistantly arranged on the bottom plate of the cuboid hollow container 101.

[0178] The connection structure is mounted on the mover of the lead screw motor 201, and the connection mechanism is slidably connected within the strip-shaped through hole 104.

[0179] The connection structure includes an I-shaped connecting frame 203, a positioning plate, and rollers 204.

[0180] The lower end of the I-shaped connecting frame 203 is mounted on the mover of the lead screw motor 201.

[0181] The positioning plate is mounted on the I-shaped connecting frame 203.

[0182] Roller 204 is provided on the bottom surface of the positioning plate.

[0183] The roller 204 is slidably connected to the slide rail 202.

[0184] The fixing mechanism includes a base, an "L"-shaped fixing plate 302, a wedge-shaped movable block 303, and a slide bar 304.

[0185] The base is detachably connected to the bottom surface of the positioning plate.

[0186] The base includes a rectangular container 2 301.

[0187] The “L”-shaped fixing plate 302 is disposed on the base; the height of the “L”-shaped fixing plate 302 is between 8-10cm.

[0188] The slide bar 304 is horizontally mounted on the "L"-shaped fixing plate 302.

[0189] The wedge-shaped movable block 303 is slidably connected to the slide rod 304; and the wedge-shaped movable block 303 and the "L"-shaped fixed plate 302 are spring-connected.

[0190] The charging section includes a height control mechanism and a charging position adjustment mechanism.

[0191] The height control mechanism includes a lead screw motor 401 and a pressure plate 402.

[0192] The lead screw motor 401 is symmetrically arranged inside the rectangular container 105.

[0193] The pressure plate 402 is mounted on the mover of the lead screw motor 401.

[0194] The pressure plate 402 is provided with a rectangular through hole 403.

[0195] An "L"-shaped limiting plate 404 is provided on the pressure plate 402; the "L"-shaped limiting plate 404 is located above the rectangular through hole 403.

[0196] The charging position adjustment mechanism includes a lead screw motor 501, a wedge-shaped limiting block 502, a wedge-shaped limiting block 503, and a charging device 504.

[0197] The lead screw motor 3501 is mounted on the top surface of the pressure plate 402.

[0198] The wedge-shaped limiting block 502 is mounted on the mover of the lead screw motor 501.

[0199] The wedge-shaped limiting block 503 is connected to the L-shaped limiting plate 404 by an "n"-shaped limiting plate spring; and the wedge-shaped limiting block 503 is slidably connected in the rectangular through hole 403.

[0200] The wedge-shaped limiting block 1 502 and the wedge-shaped limiting block 2 503 are adapted to each other.

[0201] The charging device 504 is disposed on the lower bottom surface of the wedge-shaped limiting block 503.

[0202] The call assistance system includes a receiving mechanism, a detection mechanism, and a recording mechanism.

[0203] The answering mechanism includes a lead screw motor 4 (701), a lead screw motor 5 (702), an auxiliary bracket, an electromagnetic telescopic rod 1 (706), and a touch block.

[0204] The auxiliary support includes an "n"-shaped support 703, a slide rail 704, and a movable plate 705.

[0205] The “n”-shaped bracket 703 is disposed on the upper bottom plate of the rectangular hollow container; and the “n”-shaped bracket 703 is located below the pressure plate 402.

[0206] The slide rail 704 is mounted on the "n"-shaped bracket 703.

[0207] The movable plate 705 is slidably connected to the slide rail 704.

[0208] The lead screw motor 701 is mounted on the upper bottom plate of the rectangular hollow container; and the moving part of the lead screw motor 701 is fixedly connected to the movable plate 705.

[0209] The lead screw motor 702 is mounted on the movable plate 705.

[0210] The electromagnetic telescopic rod 706 is mounted on the mover of the lead screw motor 702; the touch block is mounted on the movable end of the electromagnetic telescopic rod 706.

[0211] The detection mechanism includes an image recognition module 707, a photosensor module, and a sound sensor module.

[0212] The photosensitive sensor module and the image recognition module 707 are mounted on the mover of the lead screw motor 702.

[0213] Two sound sensor modules are provided, located on the soundproof panel 107 of the rectangular container 105.

[0214] The recording mechanism includes a miniature microphone and a recording device.

[0215] The miniature microphone is mounted on the soundproof panel 107 of the rectangular container 105.

[0216] The recording device is mounted on the bottom plate of the rectangular container 105.

[0217] The intelligent control system includes an auxiliary fixing mechanism, a control mechanism, a feedback mechanism, and a reminder mechanism.

[0218] The fixing mechanism includes a vacuum suction cup 601 and a vacuum generator 602.

[0219] The vacuum suction cup 601 and the vacuum generator 602 are disposed inside the rectangular hollow container 101.

[0220] The lower end of the vacuum suction cup 601 is located inside the circular through hole 103.

[0221] The vacuum suction cup 601 and the vacuum generator 602 are fixedly connected by a conduit and a solenoid valve.

[0222] The control mechanism includes a start button, a lock button, and a mode switch button.

[0223] The start button and the lock button are located on the left side panel of the rectangular container 105.

[0224] The mode switching buttons are equidistantly positioned on the bottom plate of the rectangular hollow container 101.

[0225] The feedback mechanism includes a distance sensor module, a pressure sensor module, and a pyroelectric infrared sensor module.

[0226] The distance sensor module is symmetrically arranged on the bottom surface of the wedge-shaped limiting block 503, and the distance sensor module is located on the front and rear sides of the charging device 504.

[0227] The pressure sensor module is mounted on the wedge-shaped movable block 303.

[0228] The pyroelectric infrared sensor module is mounted on the front panel of the rectangular container 105.

[0229] The reminder mechanism includes a voice module, speaker one, speaker two, a color-changing light-emitting diode, and a microprocessor.

[0230] The voice module and microprocessor are housed within a rectangular hollow container 101.

[0231] The loudspeaker is mounted on the soundproof panel 107 of the rectangular container 105.

[0232] The second speaker and the color-changing light-emitting diode are mounted on the bottom plate of the rectangular container 105.

[0233] The components, including lead screw motor 201, lead screw motor 401, lead screw motor 501, charging device 504, photosensitive sensor module, sound sensor module, electromagnetic telescopic rod, miniature microphone, recording device, vacuum generator 602, solenoid valve, start button, fixed button, mode switching button, distance sensor module, pressure sensor module, pyroelectric infrared sensor module, voice module, speaker 1, speaker 2, color-changing light-emitting diode, and microprocessor, are electrically connected.

[0234] Working principle and usage method of Embodiment 2 of the present invention:

[0235] Step 1, Pre-setting:

[0236] Power the fast charger of this invention by pressing the start switch, and then perform debugging.

[0237] The second step is charging:

[0238] Place the device, such as the mobile phone to be charged, between the "L"-shaped fixing plate 302 and the wedge-shaped movable block 303, with the charging port of the mobile phone facing upwards.

[0239] The pressure sensor module outputs the collected signals to the microprocessor; the microprocessor controls the lead screw motor 201 to transport the mobile phone to be charged into the rectangular container 105.

[0240] The distance sensor detects the location of the charging port of the phone to be charged and outputs the collected signal to the microprocessor. The microprocessor outputs signals to lead screw motors 501 (3rd motor) and 401 (2nd motor). Lead screw motor 501 drives wedge-shaped limit block 502 to adjust the position of wedge-shaped limit block 503, ultimately adjusting the charging device 504. Then, lead screw motor 401 moves the charging device 504 downwards, aligning it with the charging port of the phone to begin charging.

[0241] By repeating the above steps, multiple mobile phones can be charged simultaneously.

[0242] Step 3, answering the phone:

[0243] Users can switch between human answering and assisted answering modes by clicking the mode switch button.

[0244] When a call comes in, the photosensitive sensor module and the sound sensor module simultaneously output the collected signals to the microprocessor. The microprocessor then outputs signals to lead screw motors 201, 401, and 501. These motors then reset sequentially, ultimately transferring the phone out of the rectangular container 105 for easy answering by the user.

[0245] If the phone is not answered within 20 seconds (the pyroelectric infrared sensor module detects no one or the time limit has been reached), it will automatically switch to the assisted answering mode.

[0246] In the auxiliary answering function, the photosensitive sensor module and the sound sensor module simultaneously output signals to the microprocessor. The microprocessor outputs signals to lead screw motors 701 and 702. Lead screw motors 701 and 702 drive the touch block to move in an orderly manner until the image recognition module 707 outputs the position of the answer button.

[0247] The microprocessor outputs a delayed signal to the electromagnetic telescopic rod 706, which then answers the phone call via the touch block (in the process, the microprocessor drives the touch block via a lead screw motor to move left, right, up, or down at the identified phone answer button position until the call is connected).

[0248] The speaker outputs a preset reminder voice, prompting the other party to leave a message, and the miniature microphone and recording device are activated simultaneously.

[0249] When the corresponding person retrieves the phone, the microprocessor outputs a signal to the voice module to play the voice message.

[0250] Step 4, Warning:

[0251] The microprocessor controls a color-changing LED to display red and a buzzer to sound continuously, prompting the user to answer the call.

[0252] When a message is left, if the pyroelectric infrared sensor module detects that someone is approaching, the microprocessor controls the color-changing LED to flash and the buzzer to sound briefly, reminding the user to answer the phone message.

[0253] After charging is complete, the device resets, and the microprocessor controls the color-changing LED to display green.

[0254] Finally, it should be noted that the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.

Claims

1. A multi-Type-C interface fast charger, characterized in that: It includes the main frame, transportation section, charging section, communication assistance section, and intelligent control section; The main frame includes a base and a charging dock; The charging base is mounted on the base and has a sound insulation board inside. A "U"-shaped through slot is provided on its front side plate. The transport section includes a power mechanism and a stationary mechanism; The power mechanism includes a lead screw motor, a slide rail mounted on a base, and a connecting structure; The connection structure includes a connecting frame, a positioning plate, and a roller. The positioning plate is mounted on the first mover of the lead screw motor via a connecting frame, and is slidably connected to the first slide rail via a roller; The fixing mechanism is mounted on the positioning plate and includes a base, an "L"-shaped fixing plate, a wedge-shaped movable block, and a slide bar; The charging section includes a height control mechanism and a charging position adjustment mechanism; The height control mechanism includes a lead screw motor II disposed in the charging base and a pressure plate disposed on the mover of the lead screw motor II; The charging position adjustment mechanism includes a lead screw motor three set on the bottom surface of the pressure plate, a wedge-shaped limiting block one set on the mover of the lead screw motor three, a wedge-shaped limiting block two spring-connected to the pressure plate, and a charging device set on the bottom surface of the wedge-shaped limiting block two. The call assistance component includes a detection mechanism and a recording mechanism; The intelligent control system includes an auxiliary fixing mechanism, a control mechanism, a feedback mechanism, and a reminder mechanism.

2. The multi-Type-C interface fast charger according to claim 1, characterized in that: The main frame includes a base and a charging base; the base includes a rectangular hollow container and a load-bearing partition. The rectangular hollow container has a circular through hole on its lower bottom plate and a strip through hole on its upper bottom plate. The charging dock includes a rectangular container, which is disposed on the upper bottom plate of the rectangular hollow container, with its opening facing downwards; The rectangular container is provided with a U-shaped opening through groove on the front side plate; the U-shaped opening through groove is located above the strip-shaped through hole. A soundproof panel is installed inside the rectangular container.

3. The multi-Type-C interface fast charger according to claim 1, characterized in that: The power mechanism includes a lead screw motor, a slide rail, and a connecting structure; The lead screw motor is mounted on the load-bearing partition plate. The slide rail is mounted on the upper bottom plate of the rectangular hollow container. The connecting structure is disposed on the mover of the lead screw motor, and the connecting mechanism is slidably connected to the strip-shaped through hole. The connection structure includes an "I"-shaped connecting frame, a positioning plate, and a roller. The lower end of the "I"-shaped connecting frame is mounted on the mover of the lead screw motor. The positioning plate is mounted on the I-shaped connecting frame; A roller is provided on the bottom surface of the positioning plate.

4. A multi-Type-C interface fast charger according to claim 1, characterized in that: The fixing mechanism includes a base, an "L"-shaped fixing plate, a wedge-shaped movable block, and a sliding rod; The base includes a rectangular container two, which is detachably connected to the bottom surface of the positioning plate; The "L"-shaped fixing plate is mounted on the base; The slide bar is horizontally mounted on the "L"-shaped fixing plate; The wedge-shaped movable block is slidably connected to the slide rod; and the wedge-shaped movable block and the "L"-shaped fixed plate are connected by a spring.

5. A multi-Type-C interface fast charger according to claim 1, characterized in that: The second lead screw motor is installed inside the first rectangular container; The pressure plate is provided with two rectangular through holes; The second wedge-shaped limiting block is connected to the "L"-shaped limiting plate via an "n"-shaped limiting plate spring. The detection mechanism includes a photosensitive sensor module and a sound sensor module; The photosensitive sensor module and the sound sensor module are mounted on the soundproofing panel of the rectangular container.

6. A multi-Type-C interface fast charger according to claim 1, characterized in that: The recording mechanism includes an electromagnetic telescopic rod, a touch block, a miniature microphone, and a recording device; The electromagnetic telescopic rod is mounted on the sound insulation board; The touch block is located at the movable end of the electromagnetic telescopic rod; The miniature microphone is mounted on the soundproof panel of the rectangular container.

7. A multi-Type-C interface fast charger according to claim 1, characterized in that: The auxiliary fixing mechanism is installed inside a rectangular hollow container and includes a vacuum suction cup and a vacuum generator. The lower end of the vacuum suction cup is located inside the circular through hole one; The vacuum suction cup and the vacuum generator are fixedly connected by a conduit and a solenoid valve. The control mechanism includes a start button, a lock button, and a mode switch button; The feedback mechanism includes a distance sensor module, a pressure sensor module, and a pyroelectric infrared sensor module; The distance sensor module is disposed on the bottom surface of the wedge-shaped limiting block two, and the distance sensor module is located on the front and rear sides of the charging device. The pressure sensor module is mounted on the wedge-shaped movable block; The pyroelectric infrared sensor module is mounted on a front panel of a rectangular container. The reminder mechanism includes a voice module, speaker one, speaker two, a color-changing light-emitting diode, and a microprocessor.

8. A multi-Type-C interface fast charger according to claim 1, characterized in that: The call assistance system includes a receiving mechanism, a detection mechanism, and a recording mechanism; The answering mechanism includes lead screw motor four, lead screw motor five, auxiliary support, electromagnetic telescopic rod one, and touch block; The auxiliary support includes an "n"-shaped support, a slide rail II, and a movable plate; The "n"-shaped bracket is disposed on the upper bottom plate of the rectangular hollow container; and the "n"-shaped bracket is located below the pressure plate; The second slide rail is mounted on an "n"-shaped bracket; The movable plate is slidably connected to the slide rail two; The lead screw motor four is mounted on the upper bottom plate of the rectangular hollow container one; and the moving part of the lead screw motor four is fixedly connected to the movable plate; The lead screw motor is mounted on the movable plate; The electromagnetic telescopic rod is mounted on the moving part of the lead screw motor; the touch block is mounted on the movable end of the electromagnetic telescopic rod.

9. A multi-Type-C interface fast charger according to claim 8, characterized in that: The detection mechanism includes an image recognition module, a photosensor module, and a sound sensor module; The photosensitive sensor module and the image recognition module are mounted on the mover of the lead screw motor. The sound sensor module is mounted on the soundproofing panel of the rectangular container. The recording mechanism includes a miniature microphone and a recording device; The miniature microphone is mounted on the soundproof panel of the rectangular container. The recording device is mounted on the upper bottom plate of a rectangular container.

10. The application method of a multi-Type-C interface fast charger according to claim 1, characterized in that, Includes the following steps: Step 1, Pre-setting; Power the fast charger, press the start switch, and then proceed with the setup. The second step is charging; Place the device, such as the mobile phone to be charged, between the "L"-shaped fixed plate and the wedge-shaped movable block, with the charging port of the mobile phone facing upwards. The microprocessor controls the lead screw motor to transport the phone to be charged into the charging dock. The microprocessor outputs signals to lead screw motors three and two; lead screw motor three adjusts the position of wedge-shaped limit block two by driving wedge-shaped limit block one, ultimately adjusting the charging device; then, lead screw motor two drives the charging device downwards. Move; so that the charging device is aligned with the charging port of the phone to be charged; to begin charging; The third step is to answer the phone; When a call comes in, the microprocessor outputs signals to lead screw motors 1, 2, and 3; lead screw motors 1, 2, and 3 reset in an orderly manner, ultimately transferring the phone out of rectangular container 1. If the phone is not answered within 20 seconds, it will automatically switch to assisted answering mode; When assisting with answering a call, the recording mechanism is activated; When the corresponding person retrieves the phone, the microprocessor outputs a signal to the recording mechanism to play the voice message.

Citation Information

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