WO2017024743A1 - Appareil et système de test de verrou électronique - Google Patents

Appareil et système de test de verrou électronique Download PDF

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Publication number
WO2017024743A1
WO2017024743A1 PCT/CN2015/099866 CN2015099866W WO2017024743A1 WO 2017024743 A1 WO2017024743 A1 WO 2017024743A1 CN 2015099866 W CN2015099866 W CN 2015099866W WO 2017024743 A1 WO2017024743 A1 WO 2017024743A1
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WIPO (PCT)
Prior art keywords
electronic lock
tested
lock
unlocking
test
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PCT/CN2015/099866
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English (en)
Chinese (zh)
Inventor
张泽
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张泽
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Publication of WO2017024743A1 publication Critical patent/WO2017024743A1/fr

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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01MTESTING STATIC OR DYNAMIC BALANCE OF MACHINES OR STRUCTURES; TESTING OF STRUCTURES OR APPARATUS, NOT OTHERWISE PROVIDED FOR
    • G01M99/00Subject matter not provided for in other groups of this subclass

Definitions

  • the present invention relates to the field of electronic products, and in particular to a test device and system for an electronic lock.
  • the quality of the lock is related to the safety of the room.
  • the performance test of the locks is an indispensable part of the development and production of locks.
  • the lock to be tested needs to be installed on the door, and the test is performed by repeatedly performing the unlocking, opening, closing, and locking operations.
  • a solution for performing testing by manual operation is provided, that is, a sample lock (ie, a lock to be tested) is installed on a door or a lock frame, and the tester manually unlocks, opens, closes, and Locked, while recording the number of operations and problems during the test.
  • a sample lock ie, a lock to be tested
  • a solution for testing with a simple test instrument is provided, and one or more of an action of unlocking, opening, closing, locking, and the like can be automatically performed.
  • smart electronic locks With the development of technology, the penetration rate of intelligent electronic locks (hereinafter referred to as smart locks) continues to grow. At present, smart electronic locks are generally unlocked by one or more of a swipe, a password, and a fingerprint. Household smart locks generally use a combination of swipe, password, and fingerprint. The smart locks used in hotels mostly use the unlocking method of swiping cards. Due to the increasing number of smart locks with PIN pad, some hotels use smart locks. A combination of swipe and password.
  • the embodiment of the invention provides a testing device and system for an electronic lock, which can solve at least the reliability of the lock which cannot be tested due to the complicated testing action of the smart lock of the remote unlocking which is difficult to be automatically measured by the lock testing device in the related art. Sexual technical issues.
  • a test apparatus for an electronic lock including: a communication circuit, configured to receive an unlock command sent by a remote server and/or an unlock call command to receive feedback of the electronic lock to be tested; and a control circuit, And the communication circuit is connected to generate an unlocking control signal after the communication circuit receives the unlocking command sent by the remote server and/or the unlocking receipt command that receives the electronic lock feedback to be tested; the sliding handle; the lock handle action motor And being connected to the control circuit for rotating forward under the control of the unlocking control signal, driving the lock handle mounted on the lock handle action motor to press the lock handle of the electronic lock to be tested, and at the lock handle After being pressed down to the preset position, the reverse is reversed, and the above-mentioned slider reset is performed to complete an unlocking operation; the first counter is used for recording the first actual unlocking times of the electronic lock to be tested.
  • the device further includes: a test circuit, configured to compare the first actual number of unlockings of the electronic lock to be tested with the number of times the remote server actually sends the unlock command to obtain a communication success rate of the electronic lock to be tested .
  • control circuit is further configured to generate a door opening control signal after completing an unlocking operation;
  • the device further includes: a door frame action motor connected to the control circuit for forward rotation under the control of the door opening control signal, The door frame that is mounted opposite to the electronic lock to be tested is driven to move in the direction of opening the door, and an analog door opening operation is completed.
  • control circuit is further configured to generate a door closing control signal after completing an analog door opening operation;
  • door frame action motor is further configured to reverse under the control of the door closing control signal, and drive the door frame to move in a closing direction to complete A simulated door closing operation.
  • the device further includes: a second counter for recording the number of times the lock of the electronic lock to be tested is retracted; a micro switch disposed at the lock tongue and connected to the second counter for When the lock tongue is actuated, the second counter is triggered to record the number of times the lock tongue is retracted.
  • test circuit is further configured to compare the number of retraction times of the lock tongue of the electronic lock to be tested with the number of the first actual unlocking, and test the unlocking success rate of the electronic lock to be tested.
  • the device further includes: a display connected to the first counter and connected to the second counter for displaying a counting result of the first counter and the second counter.
  • control circuit is connected to at least one of the first counter and the second counter And the method is configured to end the testing process when at least one of the first actual unlocking number and the lock tongue retracting number reaches the preset number of times.
  • a test system for an electronic lock comprising: an electronic lock to be tested; any one of the above-mentioned electronic lock test devices, connected to the electronic lock to be tested, for Perform a test on the above-mentioned electronic lock to be tested.
  • test system for the electronic lock further includes: a remote server, configured to send the next unlock command after the electronic lock to be tested returns the lock handle action information generated by the unlocking.
  • the method for remotely testing the reliability of the lock is used to receive an unlock command sent by the remote server and/or an unlock call command for receiving the feedback of the electronic lock to be tested through the communication circuit; the control circuit, and the communication circuit
  • the connection is used to generate an unlocking control signal after the communication circuit receives the unlocking command sent by the remote server and/or receives the unlocking and returning command of the electronic lock feedback to be tested; the sliding handle; the locking handle action motor is connected with the control circuit, It is used for forward rotation under the control of the unlocking control signal, and drives the lock handle of the electronic lock to be tested to be driven by the sliding motion of the motor attached to the lock handle, and is reversed after the lock handle is pressed down to the preset position.
  • the slider resets to complete an unlocking operation; the first counter is used for recording the first actual unlocking times of the electronic lock to be tested, and achieves the purpose of remotely controlling the locking action, thereby realizing the technical effect of remotely testing the reliability of the locking device, thereby solving The complexity of the smart lock that is remotely unlocked due to the difficulty in automatically detecting the lock test device in the related art Technical issues can not test the reliability of the test result of this action lock.
  • FIG. 1 is a schematic diagram of an optional electronic lock test system in accordance with an embodiment of the present invention.
  • FIG. 2 is a schematic diagram of an optional electronic lock testing device in accordance with an embodiment of the present invention.
  • FIG. 3 is a schematic diagram showing the hardware configuration of an optional electronic lock testing device according to an embodiment of the present invention.
  • FIG. 4 is a flow chart of a test flow of an optional electronic lock according to an embodiment of the present invention.
  • FIG. 5 is a flow chart of a test flow of another optional electronic lock in accordance with an embodiment of the present invention.
  • an apparatus embodiment of a test system for an electronic lock is provided.
  • FIG. 1 is a schematic diagram of an optional electronic lock test system according to an embodiment of the present invention.
  • the system includes: an electronic lock test device 10 (hereinafter referred to as a test device) and an electronic lock to be tested 20 .
  • the electronic lock test device 10 is connected to the electronic lock 20 to be tested for attribute testing of the electronic lock 20 to be tested.
  • the electronic lock testing device 10 includes a communication circuit 102, a control circuit 104, a slider 106, a lock handle action motor 108, and a first counter 110.
  • the communication circuit 102 is configured to receive an unlock command sent by the remote server and/or an unlock request command received by the electronic lock 20 to be tested; the control circuit 104 is connected to the communication circuit 102 for receiving the remote server to send the communication circuit 102.
  • the unlocking control signal is generated when the unlocking command is received and/or the unlocking receipt command fed back by the electronic lock 20 to be tested is generated.
  • the communication circuit 102 and the control circuit 104 may be disposed on the main control circuit board.
  • a liquid crystal display for displaying test results and intermediate data, etc., such as for displaying the number of tests recorded by each counter, etc.; a slider 106; a lock handle action motor 108 connected to the control circuit 104 for unlocking control
  • the forward rotation of the signal under the control of the signal, the sliding handle 106 mounted on the lock handle action motor 108 is pressed to press the lock handle of the electronic lock 20 to be tested, and the lock handle is reversed after being pressed down to the preset position to drive the slide.
  • the first actual number of unlockings is the number of times the slider 106 actually presses the lock handle.
  • the unlocking operation of the number of reservations can be automatically completed, for example, automatically performing 100,000 unlocking operations. Further, after the unlocking operation of the number of reservations is completed, the degree of wear of each mechanical component of the electronic lock can also be detected to evaluate the mechanical performance of the electronic lock.
  • the electronic lock to be tested ie, wireless smart lock
  • the electronic lock to be tested can be remotely controlled to be unlocked in three ways:
  • Mode 1 When testing, the remote server sends an unlock command to the test device 10 of the electronic lock 20 and the electronic lock to be tested simultaneously. After the electronic lock 20 to be tested receives the unlock command, the clutch acts, so that the outer handle of the lock is no longer idle, and the unlock receipt command is returned to the remote server; the electronic lock test device 10 receives the remote communication server through its wireless communication communication circuit 102. After the unlock command is received, the control circuit 104 (including the processor and the memory) is used to control the rotation of the lock handle action motor 108 to drive the slide 106 to move downward, and the outer handle of the electronic lock 20 to be tested is pressed down, and then controlled.
  • the control circuit 104 including the processor and the memory
  • the circuit 104 controls the lock handle action motor 108 to reverse, and drives the slider 106 to move upward, so that the outer handle of the electronic lock 20 to be tested is rebounded and resets, and an analog unlock operation is completed.
  • the first counter 110 counts up by 1 and will total The number is displayed on the LCD.
  • the clutch of the electronic lock 20 to be tested is automatically reset, and the electronic lock 20 to be tested is restored to the locked state.
  • the electronic lock 20 to be tested has an external handle motion monitoring function, and the external handle is automatically fed back to the server after detecting the action of the external handle.
  • the external handle action information after receiving the action information of the external handle, the server sends the next unlock command to the wireless electronic lock, so that the repeated test of the remote unlocking of the electronic lock can be automatically completed.
  • the electronic lock 20 to be tested receives an unlock command from the remote server through its own wireless communication function, and after receiving the unlock command, controls the clutch action of the electronic lock 20 to be tested, so that the outer handle is no longer idle, and
  • the unlocking receipt command returns to the remote server; in the process, the electronic lock testing device 10 monitors the wireless communication signal from the remote server and the electronic lock 20 to be tested through the wireless communication communication circuit 102, and listens to the feedback of the electronic lock 20 to be tested. After the lock return signal is unlocked, the control circuit 104 controls the lock handle action motor 108 to rotate, and the slide pedal 106 is moved downward to press down the outer handle of the electronic lock 20 to be tested.
  • the control circuit 104 controls the lock handle action motor 108 to reverse and drive.
  • the slider 106 moves upward, and the external lock of the electronic lock 20 to be tested is rebounded and resets, and an analog unlocking operation is completed.
  • the first counter 110 counts up by 1 and displays the total count on the liquid crystal display.
  • the handle is reset, the test is to be tested.
  • the clutch of the electronic lock 20 is automatically reset, and the reset information is fed back to the remote server. After the remote server receives the reset information, Transmitting the DUT 20 unlock a lock command, repeat the test so that the test can be done automatically unlocking the electronic lock 20 of the remote.
  • Mode 3 When testing, the electronic lock test device 10 receives the unlock command from the remote server and the unlock request command from the electronic lock 20 to be tested through the wireless communication communication circuit 102, and then uses the control circuit 104 (including processing) And the control lock handle action motor 108 rotates to drive the slide 106 to move downward, and presses the outer handle of the electronic lock 20 to be tested. Then, the control circuit 104 controls the lock handle action motor 108 to reverse, and drives the slider 106 to move upward. The outer handle of the electronic lock 20 to be tested is rebounded to complete an analog unlocking operation. At this time, the first counter 110 counts up by 1, and the total count is displayed on the liquid crystal display.
  • the clutch of the electronic lock 20 to be tested is automatically reset, and the electronic lock 20 to be tested is restored to the locked state.
  • the electronic lock 20 to be tested has an external handle motion monitoring function, and the external handle is automatically fed back to the server after detecting the action of the external handle.
  • the external handle action information after receiving the action information of the external handle, the server sends the next unlock command to the wireless electronic lock, so that the repeated test of the remote unlocking of the electronic lock can be automatically completed.
  • the device further includes: a test circuit 112, configured to compare the first actual number of unlocks of the electronic lock 20 to be tested with the number of times the remote server actually sends the unlock command, Obtaining the communication success rate of the electronic lock to be tested, and further, whether the communication success rate of the electronic lock to be tested meets the design requirement.
  • the remote server can record the number of times the unlock command is sent.
  • the first counter 110 records the actual number of unlocks, that is, the number of unlock commands actually received by the electronic lock 20 or the electronic lock test device 10, by comparison. Both can test the loss rate of the unlock command and evaluate the reliability of the wireless communication function of the lock.
  • the test device can be remotely controlled to automatically execute the test task, the remote control unlocking action of the electronic lock can be fully automated, and the automatic counting can be automatically performed, and the tens of thousands of unlocking operations of the electronic lock can be automatically completed, and the electronic lock can be tested. Remote unlocking reliability and communication reliability.
  • test device for the electronic lock in the first embodiment is the same as the test device for the electronic lock in the second embodiment.
  • the test device for the electronic lock will be described in detail in the second embodiment, and details are not described herein.
  • the test system of the electronic lock may further include: a fixing device for fixing the electronic lock to be tested.
  • the fixing device may be a simple fixing device which is a combination of a base and a fixing bracket, or a combination of a door frame and a door panel, and a fixing bracket.
  • the simple fixing device comprises a base, a lock fixing bracket and a motor fixing bracket. wherein the electronic lock to be tested is fixed on the base by the lock fixing bracket, and the motor bracket is fixed on the side of the electronic lock outer panel on the base.
  • the analog door comprises a door panel mounted on the rotating shaft of the door panel. The door panel is mounted on the base through the rotating shaft of the door panel, and can rotate around the rotating shaft of the door panel.
  • the door panel has a locking tongue hole, the side of the door panel has a locking tongue hole, the door panel is aligned with the electronic lock, and the electronic lock is
  • the oblique locking tongue is located in the locking tongue hole; when the sliding handle presses the handle, the oblique locking tongue is folded up, the door frame action motor drives the door panel to rotate, and the analog door opening operation is completed; after the sliding jaw is reset, the door panel driving motor drives the door panel to rotate and reset, colliding with the oblique locking tongue, completing Simulate closing operation. This completes the collision test of the oblique bolt and tests the mechanical strength and collision life of the oblique bolt.
  • the motor of the test device is a stepping motor, which can control the rotation of the motor through the processor, further control the stroke of the slide, and accurately complete the operation of pressing the door handle.
  • test system of the electronic lock may further include: a remote server, configured to send the next unlock command after the electronic lock to be tested returns the lock handle action information generated by the unlocking.
  • the remote wireless unlock command does not arrive at the electronic lock in real time, and this process will have a certain time delay, and each time The delay time for remote wireless unlocking may not be the same, so you cannot simply set a time interval so that the remote server automatically sends the unlock command in a fixed cycle. Therefore, after the electronic lock to be tested returns the lock handle action information generated by the unlocking, the next unlock command is sent, so as to improve the unlocking rate.
  • the remote server may be a cloud server
  • the electronic lock is wirelessly connected to the Internet to communicate with the server, and the electronic lock test device acquires commands from the server or the electronic lock through the same wireless communication method as the electronic lock.
  • the electronic lock is connected to the gateway through a first wireless mode (such as Bluetooth, zigbee, 433mhz, 2.4G, etc.), and the gateway is connected to the Internet through a second wireless mode (such as WI FI, 4G).
  • the electronic lock can be automatically completed for various operations (including unlocking, opening, closing, locking), and corresponding counting processing is performed, so that the testing of the electronic lock can be automated and programmed. Improve test efficiency.
  • an apparatus embodiment of a test apparatus for an electronic lock is provided.
  • FIGS. 1 and 2 are schematic diagram of an optional electronic lock testing device according to an embodiment of the present invention. As shown in FIGS. 1 and 2, the device includes: a communication circuit 102, a control circuit 104, a slider 106, and a lock handle action motor 108. The first counter 110.
  • the communication circuit 102 is configured to receive an unlocking command sent by the remote server and/or an unlocking receipt command for receiving the electronic lock feedback to be tested;
  • the control circuit 104 is connected to the communication circuit 102, and is configured to receive, by the communication circuit 102, the remote server to send When the unlock command and/or the unlock request command for receiving the electronic lock feedback to be tested, an unlocking control signal is generated; the slider 106; the lock handle action motor 108 is connected to the control circuit 104 for being forward under the control of the unlock control signal Rotating, driving the slide 106 mounted on the lock handle action motor 108 to press the lock handle of the electronic lock to be tested, and then reverse the lock after the lock handle is pressed to the preset position, and the slide 106 is reset to complete the unlocking.
  • the first counter 110 is configured to record the first actual number of unlockings of the electronic lock to be tested.
  • the electronic lock to be tested ie, wireless smart lock
  • the electronic lock to be tested can be remotely controlled to be unlocked in three ways:
  • Mode 1 When testing, the remote server sends an unlock command to the test device 10 of the electronic lock 20 and the electronic lock to be tested simultaneously. After the electronic lock 20 to be tested receives the unlock command, the clutch acts, so that the outer handle of the lock is no longer idle, and the unlock receipt command is returned to the remote server; the electronic lock test device 10 receives the remote communication server through its wireless communication communication circuit 102. After the unlock command is received, the control circuit 104 (including the processor and the memory) is used to control the rotation of the lock handle action motor 108 to drive the slide 106 to move downward, and the outer handle of the electronic lock 20 to be tested is pressed down, and then controlled.
  • the control circuit 104 including the processor and the memory
  • the circuit 104 controls the lock handle action motor 108 to reverse, and drives the slider 106 to move upward, so that the outer handle of the electronic lock 20 to be tested is rebounded and resets, and an analog unlock operation is completed.
  • the first counter 110 counts up by 1 and will total The number is displayed on the LCD.
  • the clutch of the electronic lock 20 to be tested is automatically reset, and the electronic lock 20 to be tested is restored to the locked state.
  • the electronic lock 20 to be tested has an external handle motion monitoring function, and the external handle is automatically fed back to the server after detecting the action of the external handle.
  • the external handle action information after the server receives the action information of the external handle, sends the next unlock command to the wireless electronic lock, which can be completed automatically. Repeated testing of remote unlocking of electronic locks.
  • the electronic lock 20 to be tested receives an unlock command from the remote server through its own wireless communication function, and after receiving the unlock command, controls the clutch action of the electronic lock 20 to be tested, so that the outer handle is no longer idle, and
  • the unlocking receipt command returns to the remote server; in the process, the electronic lock testing device 10 monitors the wireless communication signal from the remote server and the electronic lock 20 to be tested through the wireless communication communication circuit 102, and listens to the feedback of the electronic lock 20 to be tested. After the lock return signal is unlocked, the control circuit 104 controls the lock handle action motor 108 to rotate, and the slide pedal 106 is moved downward to press down the outer handle of the electronic lock 20 to be tested.
  • the control circuit 104 controls the lock handle action motor 108 to reverse and drive.
  • the slider 106 moves upward, and the external lock of the electronic lock 20 to be tested is rebounded and resets, and an analog unlocking operation is completed.
  • the first counter 110 counts up by 1 and displays the total count on the liquid crystal display.
  • the handle is reset, the test is to be tested.
  • the clutch of the electronic lock 20 is automatically reset, and the reset information is fed back to the remote server. After the remote server receives the reset information, Transmitting the DUT 20 unlock a lock command, repeat the test so that the test can be done automatically unlocking the electronic lock 20 of the remote.
  • Mode 3 When testing, the electronic lock test device 10 receives the unlock command from the remote server and the unlock request command from the electronic lock 20 to be tested through the wireless communication communication circuit 102, and then uses the control circuit 104 (including processing) And the control lock handle action motor 108 rotates to drive the slide 106 to move downward, and presses the outer handle of the electronic lock 20 to be tested. Then, the control circuit 104 controls the lock handle action motor 108 to reverse, and drives the slider 106 to move upward. The outer handle of the electronic lock 20 to be tested is rebounded to complete an analog unlocking operation. At this time, the first counter 110 counts up by 1, and the total count is displayed on the liquid crystal display.
  • the clutch of the electronic lock 20 to be tested is automatically reset, and the electronic lock 20 to be tested is restored to the locked state.
  • the electronic lock 20 to be tested has an external handle motion monitoring function, and the external handle is automatically fed back to the server after detecting the action of the external handle.
  • the external handle action information after receiving the action information of the external handle, the server sends the next unlock command to the wireless electronic lock, so that the repeated test of the remote unlocking of the electronic lock can be automatically completed.
  • the test device can be remotely controlled to automatically execute the test task, the remote control unlocking action of the electronic lock can be fully automated, and the automatic counting can be automatically performed, and the tens of thousands of unlocking operations of the electronic lock can be automatically completed, and the electronic lock can be tested. Remote unlocking reliability and communication reliability.
  • the device further includes: a test circuit 112, configured to compare the first actual number of unlocks of the electronic lock to be tested with the number of times the remote server actually sends the unlock command.
  • a test circuit 112 configured to compare the first actual number of unlocks of the electronic lock to be tested with the number of times the remote server actually sends the unlock command.
  • the communication success rate of the electronic lock to be tested can be tested to meet the design requirements.
  • the remote server can record the number of times the unlock command is sent.
  • the first counter 110 records the actual number of unlocks, that is, the number of unlock commands actually received by the electronic lock 20 or the electronic lock test device 10, by comparison. Both can test the loss rate of the unlock command and evaluate the reliability of the wireless communication function of the lock.
  • the actual number of unlocks can be completed after the test of the number of reservations is completed. Compare with the number of times the server sends the unlock command to complete the calculation of the communication success rate. Similarly, after the completion of the test of the number of reservations, the calculation of the success rate of the unlocking is performed.
  • control circuit is further configured to generate a door opening control signal after completing an unlocking operation; correspondingly, the device further includes: a door frame action motor connected to the control circuit for opening the door control signal Under the control, the door frame that is opposite to the electronic lock to be tested is driven to move in the direction of opening the door, and an analog door opening operation is completed.
  • control circuit is further configured to generate a door closing control signal after completing an analog door opening operation; the door frame action motor is further configured to reverse under the control of the door closing control signal to drive the door frame to move in the closing direction, Complete a simulated door closing operation.
  • the multiple door opening control signals may be repeatedly generated, so that after one unlocking operation and before one locking, the door opening and closing operations are repeatedly performed multiple times. , complete the collision test of the oblique bolt, test the mechanical strength and collision life of the oblique bolt.
  • only the door opening control signal may be generated, so that after one unlocking operation and before one locking, only one opening and one closing operation are performed, and the oblique locking is completed. Collision test of the tongue, testing the mechanical strength and collision life of the oblique tongue.
  • the foregoing apparatus may further include: a second counter, configured to record the number of times the lock of the electronic lock to be tested is to be retracted by the electronic lock to be tested; the micro switch is disposed at the lock tongue, and The two counters are connected for triggering the second counter to record the number of times the lock tongue is retracted when the lock tongue is actuated. Since the electronic lock is generally unlocked by the clutch mode, if the unlocking is unsuccessful or the clutch does not operate correctly, pressing the outer handle does not drive the oblique locking tongue. By simultaneously recording the number of times of the oblique locking tongue and the number of pressing the handle, the success rate of opening the door can be obtained.
  • the lock tongue needs to be retracted. If the electronic lock has actually executed the unlock command, but the lock tongue has not been retracted, it indicates that the unlocking failed. Therefore, by setting the micro switch and the second counter, the actual number of unlocking of the electronic lock can be recorded according to the action of the lock tongue.
  • the test circuit is further configured to compare the number of times the lock of the electronic lock to be tested is retracted with the number of first actual unlocks, and test the success rate of unlocking the electronic lock to be tested.
  • the actual unlocking times of the electronic lock can be compared with the first actual unlocking times of the electronic lock described above, and the unlocking rate of the electronic lock during the testing process can be determined, thereby evaluating whether the quality of the electronic lock is qualified.
  • the apparatus may further include: a display connected to the first counter and connected to the second counter for displaying the counting results of the first counter and the second counter. This allows testers to more intuitively understand the test results.
  • control circuit is coupled to at least one of the first counter and the second counter for when at least one of the first actual number of unlocks and the number of times the tongue is retracted reaches a preset number of times , end the testing process.
  • the hardware structure of the above test apparatus includes: a wireless communication circuit (such as the aforementioned communication circuit), a processor (such as the aforementioned control circuit), a counter 1 (such as the aforementioned first counter), and a counter 2 (such as the aforementioned second counter) , liquid crystal display (ie display), micro switch and lock handle action motor.
  • a wireless communication circuit such as the aforementioned communication circuit
  • a processor such as the aforementioned control circuit
  • a counter 1 such as the aforementioned first counter
  • a counter 2 such as the aforementioned second counter
  • the server that is, the foregoing remote server
  • the test device receives an unlock command from the server or an unlock request command from the electronic lock.
  • the unlock command of the server can be sent to the electronic lock wirelessly, but since the test device has the communication circuit, the unlock command can also be received. Similarly, the test device can receive the electronic lock and feed back to the server through the wireless mode. Receipt order. When the switch door and the impact lock tongue test are not required, the motor reversal can be performed immediately after the lower lock handle is reached to the reserved position, the lock handle is reset, and the next unlock operation is performed after the lock handle is reset.
  • the server that is, the foregoing remote server
  • the test device receives an unlock command from the server or an unlock request command from the electronic lock.
  • the door frame action motor rotates, and drives the door frame to rotate, leaving the lock tongue
  • the door frame action motor rotates, and drives the door frame to reset, and then returns to the closed state after hitting the oblique lock tongue.
  • the test device slides down and locks the handle when holding the electronic lock body portion
  • the door frame portion is rotated in a state where the lock tongue is retracted, so that the lock tongue hole of the door frame portion and the lock tongue position of the electronic lock are staggered, and the simulated door opening operation is completed.
  • the handle can be reset.
  • the bolt is ejected to complete the next step of simulating the impact lock tongue test when closing the door.
  • the action of the lock tongue is monitored by the micro switch at the lock tongue. Only when the lock handle is pressed and the lock tongue is retracted, the door opening signal is generated, and the door frame action motor rotates to drive the door frame to rotate. If the unlocking is unsuccessful, the locking tongue is not retracted after the lower locking handle, and the locking tongue is still located in the locking tongue hole on the side of the door frame, and the door frame and the locking body are in a relatively fixed state, and the door frame driving motor cannot be rotated to drive the door frame to move. Forced motor action is easy to burn the motor.
  • the door opening control signal should be generated after the micro switch detects that the locking tongue is retracted, because there is a possibility that the pressing of the handle lock tongue does not retract, and the locking tongue is still in the locking tongue hole of the door frame, which cannot be realized. Simulate opening the door.
  • the test device is different from the actual door opening situation in that the electronic lock body is kept stationary, and The electronic lock body cooperates with the rotation of the door frame to simulate the relative movement of the electronic lock and the door frame when the door is actually opened, and the door panel in the test device is actually equivalent to the portion of the door frame.
  • the disclosed technical contents may be implemented in other manners.
  • the device embodiments described above are merely illustrative, such as the division of the units, It can be divided into one logical function, and the actual implementation can have another division manner. For example, multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed.
  • the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, unit or module, and may be electrical or otherwise.
  • the units described as separate components may or may not be physically separated, and the components displayed as units may or may not be physical units, that is, may be located in one place, or may be distributed to multiple units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.

Abstract

L'invention concerne un appareil (10) et un système de test de verrou électronique . L'appareil (10) comprend : un circuit de communication (102) pour recevoir une commande de déverrouillage envoyée par un serveur à distance et/ou recevoir une commande de réception de déverrouillage renvoyée par un verrou électronique (20) à tester ; un circuit de commande (104) pour générer, après que le circuit de communication (102) reçoit la commande de déverrouillage envoyée par le serveur distant et/ou reçoit la commande de réception de déverrouillage renvoyée par le verrou électronique (20) à tester, un signal de commande de déverrouillage ; une tige coulissante (106) ; un moteur électrique d'actionnement de poignée de verrouillage (108) destiné à tourner dans une direction vers l'avant sous la commande du signal de commande de déverrouillage pour entraîner le mouvement de la tige coulissante (106) montée sur le moteur électrique d'actionnement de poignée de verrouillage (108), et tourner dans une direction inverse après qu'une poignée de verrouillage est pressée à une position pré-établie pour entraîner la tige coulissante (106) à revenir à sa position initiale, de manière à réaliser une opération de déverrouillage ; et un premier compteur (110) pour enregistrer le nombre de premières fois de déverrouillage réelles du verrou électronique (20) à tester. L'appareil de test (10) permet de résoudre le problème technique selon lequel il est difficile pour un appareil de test de verrou existant d'effectuer automatiquement un test de façon à réaliser une action de test complexe sur un verrou intelligent soumis à un déverrouillage à distance.
PCT/CN2015/099866 2015-08-10 2015-12-30 Appareil et système de test de verrou électronique WO2017024743A1 (fr)

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Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108535008A (zh) * 2018-06-15 2018-09-14 深圳市创顶峰科技有限公司 一种智能锁寿命测试设备及测试方法
CN110708364A (zh) * 2019-09-19 2020-01-17 RealMe重庆移动通信有限公司 电子设备解锁方法、装置、电子设备及存储介质
CN110763498A (zh) * 2019-10-30 2020-02-07 公安部第三研究所 一种智能门锁寿命耐久性测试系统及方法
CN113567784A (zh) * 2021-07-22 2021-10-29 支红抗 一种电子锁检测装置
CN113984557A (zh) * 2021-09-29 2022-01-28 武汉小安科技有限公司 一种电磁锁耐久检测装置及检测方法
CN114760223A (zh) * 2020-12-25 2022-07-15 深圳旦倍科技有限公司 门锁测试方法、装置、智能终端及计算机可读存储介质

Families Citing this family (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105067362B (zh) * 2015-08-10 2018-03-02 北京果加智能科技有限公司 电子锁的测试装置及系统
CN108844728A (zh) * 2018-06-15 2018-11-20 深圳市创顶峰科技有限公司 一种用于智能锁测试设备的指令输入测试机构
CN109886709B (zh) * 2019-02-22 2022-08-26 福州昌宇五金锁具制品有限公司 一种智能锁管理方法、系统、计算机设备及存储介质
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CN113064012A (zh) * 2021-03-29 2021-07-02 万晖五金(深圳)有限公司 电子锁测试方法、测试系统、测试装置、设备和介质
CN114938343B (zh) * 2022-04-24 2023-10-13 福州昇宇门控智能科技有限公司 一种智能锁集群测试架构及数据传输方法
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Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1052496A1 (fr) * 1999-04-19 2000-11-15 Valeo Electronique Ensemble pour la caracterisation d'au moins un émetteur et/ou récepteur d'un système de commande à distance pour véhicule automobile
CN102589915A (zh) * 2012-02-15 2012-07-18 交通运输部公路科学研究所 电子锁具自动检测器
CN103411768A (zh) * 2013-08-20 2013-11-27 浙江八达五金有限公司 智能锁具综合性能测试仪及其检测方法
KR101457532B1 (ko) * 2013-11-20 2014-11-03 한국산업기술시험원 디지털 도어락의 전면부 내구성 시험장치
CN203947870U (zh) * 2014-07-23 2014-11-19 张泽 一种门锁把手开门监控结构
CN204043908U (zh) * 2014-09-11 2014-12-24 深圳市卡尔玛特科技有限公司 智能锁的模拟老化测试装置
CN105067362A (zh) * 2015-08-10 2015-11-18 张泽 电子锁的测试装置及系统
CN204855174U (zh) * 2015-08-10 2015-12-09 张泽 电子锁的测试装置及系统

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101213089B1 (ko) * 2011-05-30 2013-01-09 유한회사 한림포스텍 무선 전력 수신 장치에서의 전력 수신 제어 방법 및 이를 적용한 무선 전력 수신 장치
CN202939010U (zh) * 2012-11-17 2013-05-15 无锡忻润汽车安全系统有限公司 一种车门锁把手旋转耐久试验装置
CN104088539A (zh) * 2013-10-11 2014-10-08 张泽 一种智能电子锁离合式结构
CN104091219A (zh) * 2013-11-22 2014-10-08 张泽 一种智能门锁酒店统一管理系统及其实现方法

Patent Citations (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1052496A1 (fr) * 1999-04-19 2000-11-15 Valeo Electronique Ensemble pour la caracterisation d'au moins un émetteur et/ou récepteur d'un système de commande à distance pour véhicule automobile
CN102589915A (zh) * 2012-02-15 2012-07-18 交通运输部公路科学研究所 电子锁具自动检测器
CN103411768A (zh) * 2013-08-20 2013-11-27 浙江八达五金有限公司 智能锁具综合性能测试仪及其检测方法
KR101457532B1 (ko) * 2013-11-20 2014-11-03 한국산업기술시험원 디지털 도어락의 전면부 내구성 시험장치
CN203947870U (zh) * 2014-07-23 2014-11-19 张泽 一种门锁把手开门监控结构
CN204043908U (zh) * 2014-09-11 2014-12-24 深圳市卡尔玛特科技有限公司 智能锁的模拟老化测试装置
CN105067362A (zh) * 2015-08-10 2015-11-18 张泽 电子锁的测试装置及系统
CN204855174U (zh) * 2015-08-10 2015-12-09 张泽 电子锁的测试装置及系统

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
ZHONG, ZHAOHUI ET AL.: "ji yú ZigBee w? ngluóde zhìnéngsu? xìt? ng yánjiu", QUÁNGUÓ WE IBO HÁOM? BO HUÌYÌ LÙNWÉNJÍ, 31 May 2013 (2013-05-31), pages 1909 - 1912 *

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108535008A (zh) * 2018-06-15 2018-09-14 深圳市创顶峰科技有限公司 一种智能锁寿命测试设备及测试方法
CN110708364A (zh) * 2019-09-19 2020-01-17 RealMe重庆移动通信有限公司 电子设备解锁方法、装置、电子设备及存储介质
CN110763498A (zh) * 2019-10-30 2020-02-07 公安部第三研究所 一种智能门锁寿命耐久性测试系统及方法
CN114760223A (zh) * 2020-12-25 2022-07-15 深圳旦倍科技有限公司 门锁测试方法、装置、智能终端及计算机可读存储介质
CN114760223B (zh) * 2020-12-25 2024-02-06 深圳旦倍科技有限公司 门锁测试方法、装置、智能终端及计算机可读存储介质
CN113567784A (zh) * 2021-07-22 2021-10-29 支红抗 一种电子锁检测装置
CN113567784B (zh) * 2021-07-22 2024-04-26 支红抗 一种电子锁检测装置
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