Heavy full-automatic lock body capable of controlling automatic door machine
By combining the 24V power supply and dry node signal control line, a heavy-duty fully automatic lock body is designed, which solves the problems of long operation time and risk of accidental contact of heavy-duty fully automatic door lock machine control and lock body in the prior art, and realizes the rapid door opening of the automatic door machine and the safety and reliability of the system.
Patent Information
- Application Number
- CN202421906559.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-08
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2034-08-08
AI Technical Summary
The existing heavy-duty fully automatic locks take a lot of time when the door machine is controlled and locking (unlocking, unlocking), and there is a risk of accidentally touching the locking body control panel.
A heavy-duty fully automatic lock body is designed, which is combined into a line through a 24V power supply and a dry node signal control line, and is inserted directly into the automatic door machine. When the door is opened, the oblique tongue delays by 0.5 seconds and extends into the lock body. The lock body releases the dry node signal to the automatic door machine. The automatic door machine receives the signal and starts to open the door.
It realizes the quick door opening of the automatic door machine, reduces the risk of accidentally touching, and the overall system is safer and more reliable and easy to install.
Smart Images

Figure CN222879450U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of heavy-duty full-automatic locks, in particular to a heavy-duty full-automatic lock body capable of controlling an automatic door machine. Background Art
[0002] Heavy-duty automatic locks are designed for heavy-duty applications and have automatic locking or unlocking functions. These locks usually have high security performance and durability, and can meet the needs of places or equipment with high security requirements.
[0003] After searching, the patent with application number CN202210209471.8 discloses a fully automatic heavy-duty electronic door lock, including a shell, in which an electric control board, a drive controller, an unlocking fork assembly, an oblique tongue, a main lock tongue assembly and an auxiliary lock tongue assembly are arranged, the drive controller is electrically connected to the electric control board and drives the main lock tongue assembly and the auxiliary lock tongue assembly to move through the unlocking fork assembly, the unlocking fork assembly includes a dial wheel and a prime gear, a linkage gear and a front oblique tongue fork rotatably arranged on the dial wheel, the prime gear is respectively connected to the output end of the drive controller, the linkage gear and the front oblique tongue fork in transmission connection, the front oblique tongue fork is connected to the oblique tongue in transmission connection, the linkage gear is provided with a first tooth surface and a second tooth surface, the first tooth surface and the second tooth surface are respectively connected to the auxiliary lock tongue assembly and the main lock tongue assembly in transmission connection, the structure can realize the driving of the auxiliary lock tongue assembly and the main lock tongue assembly through the first tooth surface and the second tooth surface at different angles, so that the door lock structure is simplified and the operation is simple and convenient.
[0004] The door machine control and lock body action (unlocking, unlocking) of the current heavy-duty fully automatic locks on the market require a lot of time to calculate. During this period, there is a risk of accidentally touching the lock body control panel. Therefore, we need to propose a heavy-duty fully automatic lock body that can control the automatic door machine. Utility Model Content
[0005] The purpose of the utility model is to provide a heavy-duty fully automatic lock body that can control an automatic door machine. The 24V power supply and the dry node signal control line are combined into one line and directly plugged into the automatic door machine. When the door is opened, the inclined tongue is completely inserted into the lock body and delayed for 0.5 seconds. The lock body releases the dry node signal to the automatic door machine. The automatic door machine receives the dry node signal and automatically starts to open the door to complete the automatic door opening action. The heavy-duty fully automatic lock body integrates the power supply and door opening signal control to form a whole, which is easy to install. The heavy-duty fully automatic lock body will not give the automatic door machine signal until it completes its own unlocking action. The entire intelligent door control system is safe and reliable. Only after one action is completed will the next action be implemented to avoid risks, so as to solve the problems raised in the above-mentioned background technology.
[0006] To achieve the above purpose, the utility model provides the following technical solution: a heavy-duty fully automatic lock body capable of controlling an automatic door machine, comprising:
[0007] The door lock body is installed on the inside of the door;
[0008] Indoor rear screen installed on the door lock body;
[0009] The lock's main control panel is mounted on the outside of the door;
[0010] The door machine module is connected to the door lock body through the door machine control line and realizes automatic door opening;
[0011] A power module connected to the door lock body through a main power line and connected to the distribution box;
[0012] The power supply module includes a 12V uninterruptible power supply circuit for powering the door lock body and a 24V power supply circuit for powering the door machine module;
[0013] The indoor rear screen and the lock main control panel are electrically connected via a video signal line and a front and rear panel connecting line.
[0014] Preferably, the door machine module includes a door machine control circuit, which includes an infrared sensor chip IC1, a voice integrated chip IC2, and an infrared sensor PIR. A resistor R6 is connected between pin 2 of the infrared sensor chip IC1 and pin 2 of the infrared sensor PIR, a resistor R3 is connected between pin 4 of the infrared sensor chip IC1 and pin 1 of the infrared sensor PIR, a capacitor C4 is connected between pin 2 and pin 3 of the infrared sensor PIR, and the capacitor C4 is connected to pin 5 of the infrared sensor chip IC1.
[0015] Preferably, a switch S1 and a switch SB are connected between pin 6 and pin 9 of the infrared sensor chip IC1, one end of the switch S1 is connected to a resistor R5 and a capacitor C5 connected to pin 7 of the infrared sensor chip IC1, and a resistor R4 is connected between pin 2 of the infrared sensor PIR and pin 7 of the infrared sensor chip IC1.
[0016] Preferably, pin 13 of the infrared sensor chip IC1 is connected to capacitor C12, capacitor C13, and diode VDW arranged in parallel, one end of the diode VDW is connected to capacitor C14 and resistor R13 arranged in parallel, pin 11 of the infrared sensor chip IC1 is respectively connected to resistor R10 and resistor R11, one end of the resistor R10 is connected to transistor VT1, the emitter of the transistor VT1 is connected to diode VS, and a motor is connected between the connection terminals of the capacitor C14 and resistor R13 and the diode VS.
[0017] Preferably, one end of the resistor R11 is connected to a transistor VT2, the collector of the transistor VT2 is connected to the collector of the transistor VT1, the emitter of the transistor VT2 is connected to pin 1 of the voice integrated chip IC2, and a speaker is connected between pin 2 of the voice integrated chip IC2 and the collector of the transistor VT2, and a capacitor C11 is connected between pin 3 of the voice integrated chip IC2 and pin 10 of the infrared sensor chip IC1.
[0018] Preferably, the 12V uninterruptible power supply circuit includes a chip U2, a connector USB and a wiring terminal P1, an inductor L1 is connected between the wiring terminals of pins 2 and 4 of the chip U2 and the wiring terminals of pins 3 and 6, a diode D1 and a resistor R24 are connected between the wiring terminals of pins 5 and 3 and 6 of the chip U2, a resistor R34 is connected between pins 1 and 5 of the chip U2, and capacitors CE2 and C24 arranged in parallel are connected to the resistors R24 and R34;
[0019] Pin 1 of the connector USB is connected to pin 4 of the chip U2, capacitors CE1 and C54 are connected in parallel between the connection terminals of pins 2 and 4 and pin 1 of the chip U2, a diode D3 is connected between the connection terminals of the diode D1 and the resistor R24 and pin 1 of the connection terminal P1, and a diode D2, capacitor C34 and capacitor C44 are also connected to pin 1 of the connection terminal P1 to form a closed loop.
[0020] Preferably, the 24V power supply circuit includes a chip U3, a MOS tube Q1, a capacitor C35 and a capacitor C45 connected in parallel at the voltage input end, and a capacitor C55 and a capacitor C65 connected in parallel at the voltage output end, the D pole of the MOS tube Q1 is connected to the wiring terminals of the capacitors C35 and C45, a resistor R65 is connected between the G pole of the MOS tube Q1 and pin 1 of the chip U3, the S pole of the MOS tube Q1 is connected to pin 8 of the chip U3, a resistor R75 is connected between the S pole of the MOS tube Q1 and the wiring terminals of pins 6 and 7 of the chip U3, an inductor L15 is connected between the wiring terminals of pins 6 and 7 and pin 2 of the chip U3, the inductor L15 is connected to the capacitor C55, and a resistor R85 is connected between the inductor L15 and the other end of the capacitor C55.
[0021] Compared with the prior art, the beneficial effects of the utility model are:
[0022] The utility model combines the 24V power supply and the dry node signal control line into one line, which is directly plugged into the automatic door machine. When the door is opened, the inclined tongue is completely inserted into the lock body and delayed for 0.5 seconds. The lock body releases the dry node signal to the automatic door machine. The automatic door machine receives the dry node signal and automatically starts to open the door to complete the automatic door opening action. The heavy-duty fully automatic lock body integrates the power supply and door opening signal control to form a whole, which is easy to install. The heavy-duty fully automatic lock body will give the automatic door machine signal only after completing its own unlocking action. The entire intelligent door control system is safe and reliable. Only after completing one action will the next action be implemented to avoid risks. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] Figure 1 It is a schematic diagram of the structure of the utility model;
[0024] Figure 2 This is a connection diagram of the door lock body, door machine module, and power supply module of the utility model;
[0025] Figure 3 This is a circuit diagram of the door machine control circuit of the utility model;
[0026] Figure 4 This is a circuit diagram of a 12V uninterruptible power supply circuit of the utility model;
[0027] Figure 5 The utility model is a circuit diagram of a 24V power supply circuit. DETAILED DESCRIPTION
[0028] The following will be combined with the drawings in the embodiments of the utility model to clearly and completely describe the technical solutions in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all of the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the utility model.
[0029] See also Figure 1-5 The utility model provides a technical solution: a heavy-duty fully automatic lock body capable of controlling an automatic door machine, comprising:
[0030] The door lock body is installed on the inside of the door;
[0031] The indoor rear screen installed on the door lock body, the size of the indoor rear screen is 5 inches;
[0032] The lock's main control panel is mounted on the outside of the door;
[0033] The door machine module is connected to the door lock body through the door machine control line and realizes automatic door opening;
[0034] A power module connected to the door lock body through a main power line and connected to the distribution box;
[0035] The power supply module includes a 12V uninterruptible power supply circuit for powering the door lock body and a 24V power supply circuit for powering the door machine module;
[0036] The indoor rear screen and the lock main control panel are electrically connected via a video signal line and a front and rear panel connecting line.
[0037] Emergency lock head panels are installed on the door lock body and the lock main control panel for fingerprint unlocking.
[0038] The door machine module is the automatic door machine mentioned below.
[0039] Specifically, the door lock body is powered by an external 24V power supply connected to the mains (for automatic door machines) and a 12V UPS power supply (for heavy-duty fully automatic lock bodies and door lock panels, etc., which are normally powered by the mains. After a power outage, the UPS power supply automatically starts and its lithium battery supplies power to the lock and panel).
[0040] like Figure 2 As shown, two power supplies (24V power supply, 12V UPS power supply) are combined into one power line, passed through the door body wire passer, and directly inserted into the wiring hole in the heavy-duty automatic lock body.
[0041] The oblique tongue and square tongue in the heavy-duty fully automatic lock body are equipped with corresponding detection switches. The door opening action is that the square tongue is first retracted into the door lock body, and then the oblique tongue is retracted into the lock body.
[0042] There is an interface in the heavy-duty fully automatic lock body, and the 24V power supply and dry node signal control line are combined into one line, which is directly plugged into the automatic door machine. When the heavy-duty fully automatic lock body completes the door opening action, the inclined tongue is completely inserted into the door lock body and the delay is 0.5 seconds. The door lock body releases the dry node signal to the automatic door machine. The automatic door machine receives the dry node signal and automatically starts to open the door, completing the automatic door opening action.
[0043] The heavy-duty fully automatic lock body integrates the power supply and door opening signal control into a whole. When installing, just plug all kinds of wire harnesses directly into the lock body, which is easy to install.
[0044] The heavy-duty fully automatic lock body will give the automatic door machine a signal only after completing its own unlocking action, and the entire intelligent door control system is safe and reliable; this heavy-duty fully automatic lock body will only perform the next action after completing one action, avoiding risks.
[0045] The door machine module includes a door machine control circuit, which includes an infrared sensor chip IC1, a voice integrated chip IC2, and an infrared sensor PIR. A resistor R6 is connected between pin 2 of the infrared sensor chip IC1 and pin 2 of the infrared sensor PIR, a resistor R3 is connected between pin 4 of the infrared sensor chip IC1 and pin 1 of the infrared sensor PIR, a capacitor C4 is connected between pins 2 and 3 of the infrared sensor PIR, and the capacitor C4 is connected to pin 5 of the infrared sensor chip IC1.
[0046] A switch S1 and a switch SB are connected between pin 6 and pin 9 of the infrared sensor chip IC1, a capacitor C6 is connected in parallel to the switch SB, one end of the switch S1 is connected to a resistor R5 and a capacitor C5 connected to pin 7 of the infrared sensor chip IC1, and a resistor R4 is connected between pin 2 of the infrared sensor PIR and pin 7 of the infrared sensor chip IC1.
[0047] Capacitor C1, capacitor C2 and resistor R1 are connected in series between pin 3 of the infrared sensor chip IC1 and pin 1 of the infrared sensor PIR, and resistor R2 and capacitor C3 arranged in parallel are connected to pin 1 of the infrared sensor chip IC1, resistor R8 and capacitor C8 arranged in parallel are connected to pin 18 of the infrared sensor chip IC1, and resistor R7 and capacitor C7 are connected in series between the wiring terminals of resistor R2 and capacitor C3 and the wiring terminals of resistor R8 and capacitor C8.
[0048] Pin 13 of the infrared sensor chip IC1 is connected to capacitor C12, capacitor C13, and diode VDW arranged in parallel, one end of the diode VDW is connected to capacitor C14 and resistor R13 arranged in parallel, pin 11 of the infrared sensor chip IC1 is respectively connected to resistor R10 and resistor R11, one end of the resistor R10 is connected to transistor VT1, the emitter of the transistor VT1 is connected to diode VS, a motor is connected between the wiring terminals of the capacitor C14 and resistor R13 and the diode VS, and the wiring terminals of the capacitor C14 and resistor R13 are also connected to a fuse FU connected to the voltage input terminal.
[0049] An adjustable resistor RP1 is connected between the 10th and 13th pins of the infrared sensor chip IC1, and the 13th pin of the infrared sensor chip IC1 is connected to the collector of the transistor VT1.
[0050] One end of the resistor R11 is connected to the transistor VT2, the collector of the transistor VT2 is connected to the collector of the transistor VT1, the emitter of the transistor VT2 is connected to pin 1 of the voice integrated chip IC2, and a speaker is connected between pin 2 of the voice integrated chip IC2 and the collector of the transistor VT2, and a capacitor C11 is connected between pin 3 of the voice integrated chip IC2 and pin 10 of the infrared sensor chip IC1.
[0051] The 12V uninterruptible power supply circuit includes a chip U2, a connector USB and a terminal P1. The model of the chip U2 is XL6009. Pin 2 of the terminal P1 is grounded. Pin 1 of the connector USB is connected to a grounded light-emitting diode LED and a resistor R14. An inductor L1 is connected between the wiring terminals of pins 2 and 4 of the chip U2 and the wiring terminals of pins 3 and 6. Pin 5 of the chip U2 is connected to the wiring terminals of pins 3 and 6 with a diode D1 and a resistor R24. A resistor R34 is connected between pins 1 and 5 of the chip U2. The resistor R24 and the resistor R34 are connected to capacitors CE2 and C24 arranged in parallel.
[0052] Pin 1 of the connector USB is connected to pin 4 of the chip U2, capacitors CE1 and C54 are connected in parallel between the connection terminals of pins 2 and 4 and pin 1 of the chip U2, a diode D3 is connected between the connection terminals of the diode D1 and the resistor R24 and pin 1 of the connection terminal P1, and a diode D2, capacitor C34 and capacitor C44 are also connected to pin 1 of the connection terminal P1 to form a closed loop.
[0053] The 24V power supply circuit includes a chip U3, a MOS tube Q1, a capacitor C35 and a capacitor C45 connected in parallel at a voltage input end, and a capacitor C55 and a capacitor C65 connected in parallel at a voltage output end. The D pole of the MOS tube Q1 is connected to the wiring terminals of the capacitors C35 and C45, a resistor R65 is connected between the G pole of the MOS tube Q1 and the pin 1 of the chip U3, the S pole of the MOS tube Q1 is connected to the pin 8 of the chip U3, a resistor R75 is connected between the S pole of the MOS tube Q1 and the wiring terminals of the pins 6 and 7 of the chip U3, an inductor L15 is connected between the wiring terminals of the pins 6 and 7 and the pin 2 of the chip U3, the inductor L15 is connected to the capacitor C55, and a resistor R85 is connected between the inductor L15 and the other end of the capacitor C55.
[0054] A grounded diode D15 is also connected between the S pole of the MOS tube Q1 and the resistor R75, resistors R15 and R35 are connected between pins 3 and 4 of the chip U3, and a grounded resistor R25 is connected to pin 3 of the chip U3, and a grounded resistor R45 is connected to pin 4 of the chip U3. A capacitor C15 is connected between the connection terminals of the resistors R35 and R15 and pin 2 of the chip U3, and a diode D25 is connected in parallel to the capacitor C15 and the inductor L15.
[0055] The 5th pin of the chip U3 is connected to a capacitor C25, and the wiring terminals of the capacitor C25 and the resistor R15 are connected to the wiring terminals of the 6th pin and the 7th pin of the chip U3.
[0056] Although the embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A heavy-duty fully automatic lock body capable of controlling an automatic door machine, characterized in that: include: The door lock body is installed on the inside of the door; Indoor rear screen installed on the door lock body; The lock's main control panel is mounted on the outside of the door; The door machine module is connected to the door lock body through the door machine control line and realizes automatic door opening; A power module connected to the door lock body through a main power line and connected to the distribution box; The power supply module includes a 12V uninterruptible power supply circuit for powering the door lock body and a 24V power supply circuit for powering the door machine module; The indoor rear screen and the lock main control panel are electrically connected via a video signal line and a front and rear panel connecting line.
2. A heavy-duty fully automatic lock body capable of controlling an automatic door machine according to claim 1, characterized in that: The door machine module includes a door machine control circuit, which includes an infrared sensor chip IC1, a voice integrated chip IC2, and an infrared sensor PIR. A resistor R6 is connected between pin 2 of the infrared sensor chip IC1 and pin 2 of the infrared sensor PIR, a resistor R3 is connected between pin 4 of the infrared sensor chip IC1 and pin 1 of the infrared sensor PIR, a capacitor C4 is connected between pins 2 and 3 of the infrared sensor PIR, and the capacitor C4 is connected to pin 5 of the infrared sensor chip IC1.
3. A heavy-duty fully automatic lock body capable of controlling an automatic door machine according to claim 2, characterized in that: A switch S1 and a switch SB are connected between pin 6 and pin 9 of the infrared sensor chip IC1, one end of the switch S1 is connected to a resistor R5 and a capacitor C5 connected to pin 7 of the infrared sensor chip IC1, and a resistor R4 is connected between pin 2 of the infrared sensor PIR and pin 7 of the infrared sensor chip IC1.
4. A heavy-duty fully automatic lock body capable of controlling an automatic door machine according to claim 3, characterized in that: Pin 13 of the infrared sensor chip IC1 is connected to capacitor C12, capacitor C13, and diode VDW arranged in parallel, one end of the diode VDW is connected to capacitor C14 and resistor R13 arranged in parallel, pin 11 of the infrared sensor chip IC1 is respectively connected to resistor R10 and resistor R11, one end of the resistor R10 is connected to transistor VT1, the emitter of the transistor VT1 is connected to diode VS, and a motor is connected between the connection terminals of the capacitor C14 and resistor R13 and the diode VS.
5. A heavy-duty fully automatic lock body capable of controlling an automatic door machine according to claim 4, characterized in that: One end of the resistor R11 is connected to the transistor VT2, the collector of the transistor VT2 is connected to the collector of the transistor VT1, the emitter of the transistor VT2 is connected to pin 1 of the voice integrated chip IC2, and a speaker is connected between pin 2 of the voice integrated chip IC2 and the collector of the transistor VT2, and a capacitor C11 is connected between pin 3 of the voice integrated chip IC2 and pin 10 of the infrared sensor chip IC1.
6. A heavy-duty fully automatic lock body capable of controlling an automatic door machine according to claim 1, characterized in that: The 12V uninterruptible power supply circuit includes a chip U2, a connector USB and a wiring terminal P1, an inductor L1 is connected between the wiring terminals of pins 2 and 4 of the chip U2 and the wiring terminals of pins 3 and 6, a diode D1 and a resistor R24 are connected between the wiring terminals of pins 5 and 3 and 6 of the chip U2, a resistor R34 is connected between pins 1 and 5 of the chip U2, and capacitors CE2 and C24 are connected to the resistors R24 and R34 in parallel; Pin 1 of the connector USB is connected to pin 4 of the chip U2, capacitors CE1 and C54 are connected in parallel between the connection terminals of pins 2 and 4 and pin 1 of the chip U2, a diode D3 is connected between the connection terminals of the diode D1 and the resistor R24 and pin 1 of the connection terminal P1, and a diode D2, capacitor C34 and capacitor C44 are also connected to pin 1 of the connection terminal P1 to form a closed loop.
7. A heavy-duty fully automatic lock body capable of controlling an automatic door machine according to claim 1, characterized in that: The 24V power supply circuit includes a chip U3, a MOS tube Q1, a capacitor C35 and a capacitor C45 connected in parallel at a voltage input end, and a capacitor C55 and a capacitor C65 connected in parallel at a voltage output end. The D pole of the MOS tube Q1 is connected to the wiring terminals of the capacitors C35 and C45, a resistor R65 is connected between the G pole of the MOS tube Q1 and the pin 1 of the chip U3, the S pole of the MOS tube Q1 is connected to the pin 8 of the chip U3, a resistor R75 is connected between the S pole of the MOS tube Q1 and the wiring terminals of the pins 6 and 7 of the chip U3, an inductor L15 is connected between the wiring terminals of the pins 6 and 7 and the pin 2 of the chip U3, the inductor L15 is connected to the capacitor C55, and a resistor R85 is connected between the inductor L15 and the other end of the capacitor C55.
Citation Information
Patent Citations
Fully automatic heavy-duty electronic door lock
CN114427325B