(a) Field of the Invention
The present invention relates to a multi-functional burglar-proof lockset assembly structure, and more particularly to a multi-functional burglar-proof lockset assembly structure which is provided with a burglar-proof alarm circuit that can precisely detect bands in large range.
(b) Description of the Prior Art
Many people are now configuring an electronic burglar-proof device or a mechanical burglar-proof lockset for their cars to secure them without being stolen. However, no matter using what kind of mechanical lockset that is precise, hard to unlock, robust, and hard to damage, or what kind of electronic burglar-proof device that senses precisely and is provided with multiple functions, it can only delay a carnapper to successfully steal the car, due to a brilliant stealing technique of the carnapper. Therefore, a complete burglar-proof effect cannot be truly achieved. As a matter of fact, it is not difficult to unlock or damage the lockset, as long as one has sufficient time and well-prepared equipment. Accordingly, an ideal and effective burglar-proof device should be both provided with the features of a mechanical lockset that is robust and hard to damage, and of a burglar-proof alert device that is precise and sensitive. Furthermore, when a thief is stealing the car, many different frequencies will be formed due to many different actions; therefore, when the electronic burglar-proof device is detecting a change of ambient condition, many sensors for detecting different bands should be used to detect different frequencies, and trigger the burglar-proof device. As functions of radio wave transmission used by an ordinary burglar-proof system are restricted by radio-related rules of each country that transmission power which is too large is not permitted and bandwidths are also restricted; therefore, transmission distance and a range of security are substantially limited, which will seriously affect an in-time annunciation efficiency of the burglar-proof system.
The primary object of present invention is to provide a multi-functional burglar-proof lockset assembly structure, especially a structure having a burglar-proof alarm circuit that can precisely detect bands in large range, and an automobile burglar-proof alarm lock which can notify a car owner through a cellular phone communication module in time.
To enable a further understanding of the said objectives and the technological methods of the invention herein, the brief description of the drawings below is followed by the detailed description of the preferred embodiments.
The present invention is to provide a multi-functional burglar-proof lockset assembly structure. Referring to
Referring to
Referring to
The barometric detection unit C8 which operates by a signal of change of atmospheric pressure includes an atmospheric pressure signal amplification and sensitivity adjusting loop C31 and a comparison loop C32, wherein a pressure detection loop of the atmospheric pressure amplification and sensitivity adjusting loop C31 can detect a momentary change of air pressure in the car, and transform a monitored message into an electronic signal which is processed by the comparison loop C32 and is then transmitted to the central processing unit C9 for discrimination, thereby effectively detecting the change of atmospheric pressure in the car.
The ultrasonic detection unit C4 which operates by a signal of object movement includes an ultrasonic emission part C41 that sends out an ultrasonic signal to a space in the car, and an ultrasonic receiving part C42 for receiving the signal which is analyzed and processed and is then transmitted to the central processing unit C9 for discrimination. The ultrasonic emission part C41 is provided with a high-frequency oscillation loop C411, a signal pushing loop C412, and an ultrasonic emitter C413; whereas the ultrasonic receiving part C42 is provided with an amplification loop C421 which can amplify a reflection wave signal, a detection loop C422, a filter loop C423, a sensitivity adjusting loop C424, a low-frequency amplification loop C425, a low-pass amplification loop C426, a high-pass amplification loop C427, and a signal comparison loop C428.
The ultrasonic signal prevention and detection unit C5 which operates when the signal disappears is provided with an amplification loop C51, a detection loop C52, and a comparator loop C53, to output a signal level to the central processing unit C9 for discrimination, such that when the signal disappears, the signal can be outputted to the central processing unit C9 for discrimination.
The glass-fracture detection unit C6 which operates when a glass fractures is provided with a sensitivity adjusting loop C61, an amplification loop C62, a detection loop C63, and a comparator loop C64, such that when a car window fractures, a signal will be immediately outputted to the central processing unit C9 for discrimination; or when a thief uses a strong signal to interrupt, the glass-fracture detection unit C6 will also output the signal to the central processing unit C9 for discrimination.
The radio wave receiving unit C7 which operates to receive a radio wave signal of a key remote F is provided with a receiving antenna loop C71, a high-frequency amplification loop C72, a super-regenerative receiving loop C73, and a low-frequency signal amplification loop C74, to receive the radio wave signal sent out by the key remote F. The radio wave signal is processed, and is then outputted to the central processing unit C9 for program decoding, so as to facilitate that when the car owner enters into the car, he or she can remotely configure a delay to alarm first.
The vibration detection unit C8 which operates when the vibration sensor C2 detects a vibration situation is provided with a low-pass filter loop C81, a sensitivity adjusting loop C82, a low-frequency signal amplification loop C83, a positive and negative signal level discrimination and comparison loop C84, and an output loop C85, such that when the car vibrates abnormally, a signal can be outputted to the central processing unit C9 for discrimination.
By the detection end C1 and the vibration sensor C2, many kinds of possible situation which occur when the car is stolen, can be detected, thereby improving an automobile burglar-proof effect by the burglar-proof lockset A.
When the burglar-proof alarm circuit C starts to operate, it can drive the communication module D to dial a message that the burglar-proof system is started to a cellular phone number G preset by the car owner. Furthermore, when the burglar-proof alert message is created, the burglar-proof alarm circuit C will dial the preset telephone number through the communication module D to notify the car owner the burglar-proof alert signal. The communication module D is provided with a communication unit D1 which is connected to a set of chargeable battery D3 through a power switch D2, and the power switch D2 is controlled by the central processing unit C9 of the burglar-proof alarm circuit C, such that the burglar-proof alert signal of the burglar-proof lockset A can be transmitted to the car owner through the communication module D, which allows communication distance to be completely unlimited and reduces a dead angle of communication, thereby assuring the car owner to be aware of the burglar-proof alert state and to take a burglar-proof action in time.
In order to further manifest the advancement and the practicability of the present invention, the advantages thereof are listed below:
It is of course to be understood that the embodiments described herein is merely illustrative of the principles of the invention and that a wide variety of modifications thereto may be effected by persons skilled in the art without departing from the spirit and scope of the invention as set forth in the following claims.