CN214543757U - Intelligent door lock power supply system - Google Patents

Intelligent door lock power supply system Download PDF

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Publication number
CN214543757U
CN214543757U CN202023351581.3U CN202023351581U CN214543757U CN 214543757 U CN214543757 U CN 214543757U CN 202023351581 U CN202023351581 U CN 202023351581U CN 214543757 U CN214543757 U CN 214543757U
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China
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door
door leaf
door lock
wireless charger
intelligent
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CN202023351581.3U
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Chinese (zh)
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吴义魁
叶炜杰
杨鹏
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Jinmao Smart Technology Guangzhou Co ltd
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Jinmao Smart Technology Guangzhou Co ltd
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Abstract

The utility model provides an intelligent door lock power supply system, which comprises two door leaves and two door side upright posts which are respectively correspondingly connected with the two door leaves; each door side upright post is provided with a commercial power input port, a conductive circuit and a transmitting end of a wireless charger; the transmitting end of the wireless charger is connected to the commercial power input port through the conducting circuit; each door leaf is provided with a receiving end of a wireless charger which is wirelessly connected with a transmitting end of a corresponding wireless charger; one of the door leaves is provided with an intelligent door lock, and the intelligent door lock is connected with the receiving end of the wireless charger of the same door leaf. The utility model provides an intelligence lock power supply system lasts to the power supply of intelligent lock, guarantees that intelligent lock normally works in the environment that the electric quantity is sufficient.

Description

Intelligent door lock power supply system
Technical Field
The utility model belongs to the technical field of door and window technology and electronic information technique and specifically relates to an intelligence lock power supply system is related to.
Background
The existing intelligent home integrates a comprehensive wiring technology, a network communication technology, a safety precaution technology, an automatic control technology and an audio and video technology, and household equipment such as audio and video equipment, lighting system equipment, a curtain controller, an air conditioner controller, security system equipment, digital cinema equipment, an audio and video server, an intelligent video cabinet and network equipment are connected together through the Internet to realize the internet of things. The intelligent door lock belongs to intelligent household equipment, and is compared with a common door lock, and the intelligent door lock not only has a high-tech anti-theft function, but also can interact with people.
Although the intelligent door locks on the market are various at present, most of the intelligent door locks utilize a large lithium battery for power supply, and the intelligent door locks need to continuously work in a mode of replacing batteries or charging after being used for a period of time so as to ensure normal door opening or locking. The power supply mode of the large lithium battery has the defects that: when the battery is not charged in time or a user goes out to enable the intelligent door lock to be idle for a long time, the electric quantity of the battery is too low, and finally the intelligent door lock cannot be used; moreover, the long-term use of the lithium battery can lead to the shortening of the service life, so that the battery needs to be replaced at intervals; in addition, the large lithium battery has potential safety hazards, the electric quantity stored in the battery is small, and the battery can only supply power to low-power-consumption equipment, so that the power of the intelligent door lock and the functions of the intelligent door lock are greatly limited.
SUMMERY OF THE UTILITY MODEL
To the technical problem, the utility model provides an intelligence lock power supply system lasts to the power supply of intelligent lock, guarantees that intelligent lock normally works in the environment that the electric quantity is sufficient. The technical scheme is as follows:
the embodiment of the utility model provides an intelligent door lock power supply system, which comprises two door leaves and two door side columns which are respectively correspondingly connected with the two door leaves;
each door side upright post is provided with a commercial power input port, a conductive circuit and a transmitting end of a wireless charger; the transmitting end of the wireless charger is connected to the commercial power input port through the conducting circuit;
each door leaf is provided with a receiving end of a wireless charger which is wirelessly connected with a transmitting end of a corresponding wireless charger;
one of the door leaves is provided with an intelligent door lock, and the intelligent door lock is connected with the receiving end of the wireless charger of the same door leaf.
Preferably, the door leaf is connected with the door side upright post through a hinge, and a gap is formed between the door leaf and the door side upright post;
the receiving end of the wireless charger and the transmitting end of the wireless charger are both positioned in the gap and are parallel to each other.
As a preferred scheme, an interlayer provided with a power line is arranged in each of the two door leaves; the electrified circuit of the same door leaf is correspondingly connected with the receiving end of the wireless charger of the same door leaf;
when the two door leaves are connected and locked with each other, the intelligent door lock is connected with a power-on circuit of the other door leaf to be connected with a receiving end of the wireless charger.
As a preferred scheme, the two door leaves are respectively a left door leaf and a right door leaf, and the two door side columns are respectively a left door side column and a right door side column which are correspondingly connected with the left door leaf and the right door leaf;
the left door leaf and the right door leaf are both provided with intelligent door locks, the intelligent door lock of the left door leaf is connected with a receiving end of a wireless charger of the left door leaf, and the intelligent door lock of the right door leaf is connected with a receiving end of a wireless charger of the right door leaf.
As a preferred scheme, the bottom of each door leaf close to the ground is provided with an electric wheel and a motor module thereof; and the intelligent door lock of each door leaf is connected with the motor module through a control circuit.
As a preferred scheme, a left locking device is arranged between the left door leaf and the left door side upright post, and a right locking device is arranged between the right door leaf and the right door side upright post; the left locking device and the right locking device are both of a male connector and female connector matched connecting structure;
the intelligent door lock of the left door leaf is connected with the left locking device through a control circuit;
and the intelligent door lock of the right door leaf is connected with the right locking device through a control circuit.
Preferably, a standby battery and a power management module for controlling charging or discharging of the standby battery are arranged in the intelligent door lock;
the power management module is connected with a receiving end of a corresponding wireless charger and is connected with the standby battery.
Preferably, the intelligent door lock further comprises:
the system comprises a main control circuit module, a motor driving module, a fingerprint identification module, a voice identification module, a card swiping identification module and a keyboard input module;
the fingerprint identification module, the voice identification module, the card swiping identification module and the keyboard input module are all connected with the signal input end of the main control circuit module;
the signal output end of the main control circuit module is connected with the motor driving module;
the fingerprint identification module, the voice identification module, the card swiping identification module, the keyboard input module, the main control circuit module and the motor driving module are all connected with the power management module.
Preferably, the conductive circuit comprises a protection circuit and a voltage stabilizing circuit;
the protection circuit comprises a voltage stabilizing diode, a first resistor and a second resistor;
the voltage stabilizing circuit comprises a voltage stabilizing capacitor;
the negative electrode of the voltage stabilizing diode is connected with the commercial power input port and is also connected with one end of the first resistor, and the positive electrode of the voltage stabilizing diode is connected with one end of the second resistor;
the other end of the second resistor is respectively connected with one end of the voltage stabilizing capacitor and the ground wire;
the other end of the voltage stabilizing capacitor is connected with the other end of the first resistor.
As a preferred scheme, the intelligent door lock power supply system further comprises an adapter with an alternating current-direct current conversion function and a voltage reduction function;
one end of the adapter is connected with the commercial power input port, and the other end of the adapter is connected with the commercial power.
Compared with the prior art, the embodiment of the utility model provides a have following beneficial effect:
the scheme provides an intelligent door lock power supply system which comprises two door leaves and two door side stand columns which are respectively and correspondingly connected with the two door leaves; each door side upright post is provided with a commercial power input port, a conductive circuit and a transmitting end of a wireless charger; the transmitting end of the wireless charger is connected to the commercial power input port through the conducting circuit; each door leaf is provided with a receiving end of a wireless charger which is wirelessly connected with a transmitting end of a corresponding wireless charger; one of the door leaves is provided with an intelligent door lock, and the intelligent door lock is connected with the receiving end of the wireless charger of the same door leaf. When the wireless charger is applied specifically, commercial power is input from a commercial power input port arranged on the door side upright post and is transmitted to the transmitting end of the wireless charger through the conductive circuit; after the commercial power is input into the transmitting end of the wireless charger, the wireless charger can transmit the electric energy of the commercial power to the receiving end of the wireless charger installed on the door leaf in a wireless transmission mode by utilizing electromagnetic induction, and the receiving end of the wireless charger is connected with the intelligent door lock on the same door leaf to charge the intelligent door lock, so that a complete charging circuit with the commercial power as an input power supply and the intelligent door lock as a load is formed. Because the door leaf is stably connected with the door side upright post, even if a user opens the door, the connection between the door leaf and the door side upright post cannot be disconnected, and therefore the charging circuit cannot be disconnected, so that the charging circuit can always run, power can be continuously supplied to the intelligent door lock, and the intelligent door lock can be guaranteed to normally work in an environment with sufficient electric quantity.
Drawings
Fig. 1 is a structural diagram of an intelligent door lock power supply system in an embodiment of the present invention;
fig. 2 is a schematic view of a gap between a door leaf and a door side pillar of an intelligent door lock power supply system in an embodiment of the present invention;
wherein, 1, a door leaf; 2. a door side pillar; 3. an intelligent door lock; 4. a hinge;
11. a receiving end of the wireless charger; 21. the transmitting terminal of wireless charger.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
Referring to fig. 1, the present disclosure provides an exemplary embodiment of an intelligent door lock power supply system, which includes two door leaves 1 and two door side columns 2 respectively and correspondingly connected to the two door leaves 1;
each door side upright post 2 is provided with a commercial power input port, a conductive circuit and a transmitting end 21 of a wireless charger; the transmitting end 21 of the wireless charger is connected to the commercial power input port through the conducting circuit;
each door leaf 1 is provided with a receiving end 11 of a wireless charger which is wirelessly connected with a transmitting end 21 of the corresponding wireless charger;
one of the door leaves 1 is provided with an intelligent door lock 3, and the intelligent door lock 3 is connected with a receiving end 11 of a wireless charger of the same door leaf 1.
In the application process of this embodiment, the commercial power is input from the commercial power input port of the door side pillar 2, and is transmitted to the transmitting terminal 21 of the wireless charger through the conductive circuit; after the commercial power is input to the transmitting end 21 of the wireless charger, the wireless charger can transmit the electric energy of the commercial power to the receiving end 11 of the wireless charger installed on the door leaf 1 in a wireless transmission mode by using electromagnetic induction, and the receiving end 11 of the wireless charger is connected with the intelligent door lock 3 on the same door leaf 1 to charge the intelligent door lock 3, so that a complete charging circuit with the commercial power as an input power supply and the intelligent door lock 3 as a load is formed. Because the door leaf 1 is stably connected with the door side upright post 2, even if a user opens the door, the connection between the door leaf 1 and the door side upright post 2 cannot be disconnected, so that the charging circuit cannot be disconnected, the charging circuit is enabled to operate all the time, power is continuously supplied to the intelligent door lock 3, and the intelligent door lock 3 is ensured to normally work in an environment with sufficient electric quantity.
Referring to fig. 2, in the present embodiment, the door leaf 1 is connected to the door-side upright 2 through a hinge 4, and a gap is formed between the door leaf 1 and the door-side upright 2;
the receiving end 11 of the wireless charger and the transmitting end 21 of the wireless charger are both located in the gap and are parallel to each other.
In this embodiment, the receiving end 11 of the wireless charger and the transmitting end 21 of the wireless charger are both located in the gap between the door leaf 1 and the door side column 2 and are parallel to each other, so that the distance between the receiving end 11 of the wireless charger and the transmitting end 21 of the wireless charger is close enough, and the transmission efficiency of electric energy between the receiving end and the transmitting end is ensured.
The scheme also provides a preferred embodiment, wherein an interlayer provided with a power-on circuit is arranged in each of the two door leaves 1; the electrified circuit of the same door leaf 1 is correspondingly connected with the receiving end 11 of the wireless charger of the same door leaf 1;
when the two door leaves 1 are connected and locked with each other, the intelligent door lock 3 is connected with the power-on circuit of the other door leaf 1 to connect with the receiving end 11 of the wireless charger.
Specifically, the intelligent door lock 3 is provided with a telescopic charging connector; the charging connector extends out and is arranged in the interlayer in the other door leaf 1 and is connected with a power line of the interlayer.
The scheme also provides a preferred embodiment, the two door leaves 1 are respectively a left door leaf 1 and a right door leaf 1, and the two door side upright posts 2 are respectively a left door side upright post 2 and a right door side upright post 2 which are correspondingly connected with the left door leaf 1 and the right door leaf 1;
the left door leaf 1 and the right door leaf 1 are both provided with intelligent door locks 3, the intelligent door lock 3 of the left door leaf 1 is connected with a receiving end 11 of a wireless charger of the left door leaf 1, and the intelligent door lock 3 of the right door leaf 1 is connected with the receiving end 11 of the wireless charger of the right door leaf 1.
The scheme also provides a preferred embodiment, and the bottom of each door leaf 1 close to the ground is provided with an electric wheel and a motor module thereof; and the intelligent door lock 3 of each door leaf 1 is connected with the motor module through a control circuit.
The scheme also provides a preferred embodiment, a left locking device is arranged between the left door leaf 1 and the left door side upright post 2, and a right locking device is arranged between the right door leaf 1 and the right door side upright post 2; the left locking device and the right locking device are both of a male connector and female connector matched connecting structure;
the intelligent door lock 3 of the left door leaf 1 is connected with the left locking device through a control circuit;
and the intelligent door lock 3 of the right door leaf 1 is connected with the right locking device through a control circuit.
The utility model provides a preferred embodiment, in the intelligent door lock power supply system, the intelligent door lock 3 is internally provided with a standby battery and a power management module for controlling the charging or discharging of the standby battery;
the power management module is connected with a receiving end 11 of a corresponding wireless charger, and the power management module is connected with the standby battery.
It can be understood that the power management module can be directly connected to the mains supply by connecting the conductive circuit, and can also call a backup battery for power supply. Meanwhile, the charging and discharging switch can be switched to a charging state, so that the standby battery is charged.
In this embodiment, the intelligent door lock 3 further includes:
the system comprises a main control circuit module, a motor driving module, a fingerprint identification module, a voice identification module, a card swiping identification module and a keyboard input module;
the fingerprint identification module, the voice identification module, the card swiping identification module and the keyboard input module are all connected with the signal input end of the main control circuit module;
and the signal output end of the main control circuit module is connected with the motor driving module.
In the implementation of this embodiment, when the door is closed,
when the fingerprint identification module identifies that the fingerprint of the user is correct, an unlocking signal is sent to the main control circuit module, the main control circuit controls the motor driving module to drive unlocking, and otherwise, the intelligent door lock 3 is still in a locking state.
When the voice recognition module recognizes that the voiceprint of the user is correct, an unlocking signal is sent to the main control circuit module, the main control circuit controls the motor driving module to drive unlocking, and otherwise, the intelligent door lock 3 is still in a locking state.
When the card swiping identification module reads correct IC card information, an unlocking signal is sent to the main control circuit module, the main control circuit controls the motor driving module to drive unlocking, and otherwise, the intelligent door lock 3 is still in a locking state.
When the keyboard input module judges that the input password is matched correctly, an unlocking signal is sent to the main control circuit module, the main control circuit controls the motor driving module to drive unlocking, and otherwise, the intelligent door lock 3 is still in a locking state.
In this embodiment, the fingerprint identification module, the voice identification module, the card swiping identification module, the keyboard input module, the main control circuit module and the motor driving module are all connected with the power management module. And the power management module supplies power to the modules.
It can be understood that compared with the existing door lock system, the door lock system has more functional modules and consumes more power. However, the intelligent door lock 3 of the scheme can be directly connected to the mains supply through the connecting conducting circuit, and the intelligent door lock 3 obtains stable power supply, so that compared with the existing intelligent door lock 3, the intelligent door lock 3 of the scheme can meet the power supply requirements of more power-consuming functional modules.
The utility model provides a preferred embodiment, in the intelligent door lock power supply system, the conducting circuit comprises a protection circuit and a voltage stabilizing circuit;
the protection circuit comprises a voltage stabilizing diode, a first resistor and a second resistor;
the voltage stabilizing circuit comprises a voltage stabilizing capacitor;
the cathode of the voltage stabilizing diode is connected with the power supply input port and is also connected with one end of the first resistor, and the anode of the voltage stabilizing diode is connected with one end of the second resistor;
the other end of the second resistor is respectively connected with one end of the voltage stabilizing capacitor and the ground wire;
the other end of the voltage stabilizing capacitor is connected with the other end of the first resistor.
The utility model provides a preferred embodiment, the intelligent door lock power supply system also comprises an adapter with AC/DC conversion function and voltage reduction function;
one end of the adapter is connected with the commercial power input port, and the other end of the adapter is connected with the commercial power.
In the embodiment, the current and the voltage input to the intelligent door lock 3 are adjusted through the adapter, so that the intelligent door lock 3 with more different power consumption specifications is adapted.
The foregoing is a preferred embodiment of the present invention, and it should be noted that, for those skilled in the art, a plurality of improvements and decorations can be made without departing from the principle of the present invention, and these improvements and decorations are also considered as the protection scope of the present invention.

Claims (10)

1. An intelligent door lock power supply system is characterized by comprising two door leaves and two door side upright posts which are respectively and correspondingly connected with the two door leaves;
each door side upright post is provided with a commercial power input port, a conductive circuit and a transmitting end of a wireless charger; the transmitting end of the wireless charger is connected to the commercial power input port through the conducting circuit;
each door leaf is provided with a receiving end of a wireless charger which is wirelessly connected with a transmitting end of a corresponding wireless charger;
one of the door leaves is provided with an intelligent door lock, and the intelligent door lock is connected with the receiving end of the wireless charger of the same door leaf.
2. The intelligent door lock power supply system according to claim 1, wherein the door leaf is connected with the door side upright post through a hinge, and a gap is formed between the door leaf and the door side upright post;
the receiving end of the wireless charger and the transmitting end of the wireless charger are both positioned in the gap and are parallel to each other.
3. The intelligent door lock power supply system according to claim 1, wherein an interlayer provided with a power line is arranged in each of the two door leaves; the electrified circuit of the same door leaf is correspondingly connected with the receiving end of the wireless charger of the same door leaf;
when the two door leaves are connected and locked with each other, the intelligent door lock is connected with a power-on circuit of the other door leaf to be connected with a receiving end of the wireless charger.
4. The intelligent door lock power supply system according to any one of claims 1 to 3, wherein the two door leaves are a left door leaf and a right door leaf respectively, and the two door-side upright posts are a left door-side upright post and a right door-side upright post respectively correspondingly connecting the left door leaf and the right door leaf;
the left door leaf and the right door leaf are both provided with intelligent door locks, the intelligent door lock of the left door leaf is connected with a receiving end of a wireless charger of the left door leaf, and the intelligent door lock of the right door leaf is connected with a receiving end of a wireless charger of the right door leaf.
5. The intelligent door lock power supply system according to claim 4, wherein the bottom of each door leaf close to the ground is provided with a motor wheel and a motor module thereof; and the intelligent door lock of each door leaf is connected with the motor module through a control circuit.
6. The intelligent door lock power supply system according to claim 4, wherein a left locking device is arranged between the left door leaf and the left door side upright post, and a right locking device is arranged between the right door leaf and the right door side upright post; the left locking device and the right locking device are both of a male connector and female connector matched connecting structure;
the intelligent door lock of the left door leaf is connected with the left locking device through a control circuit;
and the intelligent door lock of the right door leaf is connected with the right locking device through a control circuit.
7. The intelligent door lock power supply system according to claim 1, wherein a backup battery and a power management module for controlling charging or discharging of the backup battery are arranged in the intelligent door lock;
the power management module is connected with a receiving end of a corresponding wireless charger and is connected with the standby battery.
8. The intelligent door lock power supply system of claim 7, wherein the intelligent door lock further comprises:
the system comprises a main control circuit module, a motor driving module, a fingerprint identification module, a voice identification module, a card swiping identification module and a keyboard input module;
the fingerprint identification module, the voice identification module, the card swiping identification module and the keyboard input module are all connected with the signal input end of the main control circuit module;
the signal output end of the main control circuit module is connected with the motor driving module;
the fingerprint identification module, the voice identification module, the card swiping identification module, the keyboard input module, the main control circuit module and the motor driving module are all connected with the power management module.
9. The intelligent door lock power supply system according to claim 1, wherein the conductive circuit comprises a protection circuit and a voltage stabilizing circuit;
the protection circuit comprises a voltage stabilizing diode, a first resistor and a second resistor;
the voltage stabilizing circuit comprises a voltage stabilizing capacitor;
the negative electrode of the voltage stabilizing diode is connected with the commercial power input port and is also connected with one end of the first resistor, and the positive electrode of the voltage stabilizing diode is connected with one end of the second resistor;
the other end of the second resistor is respectively connected with one end of the voltage stabilizing capacitor and the ground wire;
the other end of the voltage stabilizing capacitor is connected with the other end of the first resistor.
10. The intelligent door lock power supply system according to claim 1, further comprising an adapter having an ac-dc conversion function and a voltage reduction function;
one end of the adapter is connected with the commercial power input port, and the other end of the adapter is connected with the commercial power.
CN202023351581.3U 2020-12-31 2020-12-31 Intelligent door lock power supply system Active CN214543757U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202023351581.3U CN214543757U (en) 2020-12-31 2020-12-31 Intelligent door lock power supply system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202023351581.3U CN214543757U (en) 2020-12-31 2020-12-31 Intelligent door lock power supply system

Publications (1)

Publication Number Publication Date
CN214543757U true CN214543757U (en) 2021-10-29

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ID=78299983

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023351581.3U Active CN214543757U (en) 2020-12-31 2020-12-31 Intelligent door lock power supply system

Country Status (1)

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CN (1) CN214543757U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117292467A (en) * 2023-11-01 2023-12-26 苏州琨山通用锁具有限公司 High-reliability hidden intelligent door lock control system and control method

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN117292467A (en) * 2023-11-01 2023-12-26 苏州琨山通用锁具有限公司 High-reliability hidden intelligent door lock control system and control method

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