Pet electronic training system
By introducing real-time two-way data interaction and recording functions into the pet training system, and adopting a safe electric shock unit design, the problems of limited functionality and insufficient safety of existing pet training collars are solved, thereby improving training effectiveness and ease of use.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 张剑华
- Filing Date
- 2025-01-22
- Publication Date
- 2026-05-12
AI Technical Summary
Existing pet training collars have limited functionality, lacking features such as real-time two-way communication and recording, and their electric shock units are not safe enough, resulting in poor training effectiveness and inconvenience in use.
Design a pet electronic training system, including a transmitter and a receiver. The transmitter and receiver achieve real-time two-way data interaction through an radio frequency module. The receiver is equipped with a recording unit to play recorded sounds. The electric shock unit ensures safety through a MOSFET and transformer structure.
It enables real-time two-way communication and recording functions, improves training effectiveness, ensures the safety of the electric shock unit, and has a simple system structure, making it more convenient to use.
Smart Images

Figure CN224219171U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of pet training technology, and in particular to an electronic pet training system. Background Technology
[0002] Currently, pet training collars with remote control training function and pet training collars with automatic anti-barking function are sold as two separate products. That is, the pet training collar with remote control training function is sold as one product, while the pet collar with automatic anti-barking function is sold as another.
[0003] When pet owners want to train their dogs to correct their bad behaviors (such as lunging during walks, scratching the sofa, etc.), they need to buy a pet training collar with remote control training function, put the collar around the dog's neck, and then use the remote control to send some commands such as sound, vibration, and electric shock functions to help train the dog to develop good behavioral habits.
[0004] Sometimes, dogs bark for no reason and disturb the neighbors when their owners are not home. In this case, pet owners need to buy a pet training collar with an automatic anti-barking function to put on their dogs. When the dog barks, the training collar with the automatic anti-barking function will send some commands such as sound, vibration, or electric shock to make the dog realize that its barking will be punished and thus stop barking.
[0005] This means pet owners need to wear two sets of devices around their dog's neck or frequently change the devices, which is very inconvenient.
[0006] Chinese Patent Application No.: 201320256805.3, Application Date: May 13, 2013, Publication Date: December 11, 2013, Patent Title: Pet Trainer. This utility model discloses a pet trainer, including a transmitting unit with a transmitter that generates a transmission signal; a receiving unit with a receiving end that receives the transmission signal; a processing unit disposed within the receiving unit and electrically connected to the receiving end; an alarm unit disposed within the receiving unit and electrically connected to the processing unit; a power-saving sensor disposed within the receiving unit and electrically connected between the processing unit and a power unit; and a collar with the receiving unit disposed at a predetermined position. The power-saving sensor is a vibration sensor that provides discrimination data to the processing unit, enabling the processing unit to turn the power on and off. The transmitting unit has a portable, predetermined shape and an adhesive body, which can be placed anywhere to create a pet restricted area. The receiving unit is located at a predetermined position on the collar and can generate an alarm sound and an electric shock. When the receiving unit enters the pet restricted area and receives the signal from the transmitting unit, it will prevent the pet from entering the restricted area.
[0007] Although the aforementioned patent documents disclose a pet trainer, the pet trainer has a low degree of automation, poor training effect, low reliability, and limited functionality.
[0008] To address the aforementioned issues, existing technology has also disclosed a pet training control system with application number 202011217552.X, entitled "A Pet Training Control System," comprising a data acquisition module, a data preprocessing module, a database, a data information processing module, a pet training control module, a data analysis module, a monitoring and control module, a power supply module, and a mobile terminal. The data acquisition module transmits the acquired information to the data information processing module via the data preprocessing module and the database, and the data information processing module controls the pet training control module. The data information processing module transmits the processed and analyzed information to the data analysis module and the monitoring and control module respectively. The power supply module provides power to the data information processing module. The monitoring and control module includes a wireless transmission module, and the data information processing module transmits pet training information to the mobile terminal via the wireless transmission module. This invention aims to provide a pet training control system with diverse functions, flexible operation, and improved pet training effectiveness through data analysis and processing.
[0009] However, even with its increased complexity and intelligence, the above structure still cannot achieve the following functions:
[0010] 1. It cannot achieve good real-time two-way communication.
[0011] 2. Do not record audio on the receiver worn by your pet, such as recording the owner's praise or scolding, and play it back as appropriate.
[0012] 3. The safety of the electric shock unit cannot be guaranteed, especially when the receiver worn on the pet has insufficient power or the signal connection between the receiver and the transmitter is unstable.
[0013] Based on the above problems, there is an urgent need for a training system with a relatively simple structure that can achieve at least one of the above functions. Utility Model Content
[0014] To address the aforementioned problems, the primary objective of this invention is to provide a pet electronic training system capable of real-time two-way communication and recording functionality.
[0015] The secondary objective of this invention is to provide a pet electronic training system that ensures the safety of the electric shock unit.
[0016] To achieve the above objectives, the technical solution of this utility model is as follows.
[0017] A pet electronic training system, characterized in that it comprises:
[0018] The transmitter includes a first main control module, a first radio frequency module, and a first audio module; the first radio frequency module and the first audio module are both electrically connected to the first main control module.
[0019] The receiver includes a second main control module, a second radio frequency module, a second audio module, and an electric shock unit. The second audio module contains a recording unit. The second radio frequency module, the second audio module, the recording unit, and the electric shock unit are all electrically connected to the second main control module.
[0020] The first radio frequency module and the second radio frequency module are connected in communication.
[0021] In this invention, the receiver and transmitter are connected via a first radio frequency module and a second radio frequency module to enable real-time two-way data interaction; a recording unit is provided in the second audio module to record specific sounds in advance for playback during pet training; the electric shock unit can provide strong stimulation to correct the pet's incorrect behavior, and the overall system structure is simple.
[0022] Furthermore, the electric shock unit includes a first MOSFET, a second MOSFET, a third MOSFET, a transformer, and an electric shock terminal. The source of the first MOSFET is connected to a power interface, and the common terminal of the drains of the first MOSFET and the second MOSFET is connected to the low-voltage side of the transformer. The high-voltage side of the transformer is connected to the electric shock terminal. The gate of the first MOSFET is connected to the drain of the third MOSFET, and the source of the third MOSFET is grounded. The gate of the third MOSFET is connected to a first pulse interface. The gate of the second MOSFET is connected to a second pulse interface, and the source of the second MOSFET is grounded. With the above-mentioned electric shock unit configuration, the first pulse interface is normally set to a low level, and outputs a high level when needed to turn on the third MOSFET, allowing the battery voltage from the first MOSFET, which is connected through the power interface, to be output to the low-voltage side of the transformer. The second pulse interface outputs a PWM wave, with high and low voltages cyclically input to turn the second MOSFET on and off. Specifically, when the second pulse interface outputs a high level, the second MOSFET is turned on, the low-voltage side of the transformer is grounded through the second MOSFET, and the high-voltage side of the transformer outputs high voltage and microcurrent to the electric shock end. When the second pulse interface outputs a low level, the second MOSFET is turned off, and the transformer cannot output voltage.
[0023] Furthermore, the first radio frequency module includes a first radio frequency switch, a first radio frequency PA, and a first radio frequency LNA, wherein the first radio frequency switch is connected to the first main control module through the first radio frequency PA and the first radio frequency LNA.
[0024] Furthermore, the second radio frequency module includes a second radio frequency switch, a second radio frequency power supply (PA), and a second radio frequency low-frequency amplifier (LNA). The second radio frequency switch is connected to the second main control module through the second radio frequency power supply (PA) and the second radio frequency LNA.
[0025] Furthermore, the first audio module includes a first microphone, a first SPK, and a first audio amplifier unit. The first audio amplifier unit is connected to both the first microphone and the first SPK, and is also connected to the first main control module.
[0026] Furthermore, the second audio module also includes a second microphone, a second SPK, and a second audio amplifier unit. The second audio amplifier unit is connected to both the second microphone and the second SPK, and is also connected to the second main control module. The recording unit is connected to both the second microphone and the second SPK, and is also connected to the second main control module.
[0027] Furthermore, the system also includes a power supply, which is electrically connected to both the first main control module and the second main control module.
[0028] Furthermore, the transmitter also includes a driver IC and a digital tube, which is connected to the first main control module through the driver IC.
[0029] Furthermore, the transmitter also includes a button group, which is connected to the first main control module.
[0030] Furthermore, the receiver also includes a vibration module, which is electrically connected to the second main control module.
[0031] Furthermore, the chip signals of both the first and second main control modules are UCM202.
[0032] The beneficial effects of this utility model are that, in this utility model, the receiver and transmitter are connected through the first radio frequency module and the second radio frequency module to perform real-time two-way data interaction; a recording unit is set in the second audio module, which can record specific sounds in advance and play them during pet training; the electric shock unit can provide strong stimulation to correct the wrong behavior when the pet makes a wrong behavior, and the overall structure of the system is simple. Attached Figure Description
[0033] Figure 1 This is a schematic diagram of the transmitter.
[0034] Figure 2 This is a schematic diagram of the receiver's structure.
[0035] Figure 3 This is the circuit schematic diagram of the first main control module and the second main control module.
[0036] Figure 4 This is the circuit diagram of the electric shock unit. Detailed Implementation
[0037] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.
[0038] See Figure 1-4 This embodiment provides a pet electronic training system, characterized in that it includes:
[0039] The transmitter includes a first main control module, a first radio frequency module, and a first audio module; the first radio frequency module and the first audio module are both electrically connected to the first main control module.
[0040] The receiver includes a second main control module, a second radio frequency module, a second audio module, and an electric shock unit. The second audio module contains a recording unit. The second radio frequency module, the second audio module, the recording unit, and the electric shock unit are all electrically connected to the second main control module.
[0041] The first radio frequency module and the second radio frequency module are connected for communication.
[0042] In this invention, the receiver and transmitter are connected via a first radio frequency module and a second radio frequency module to enable real-time two-way data interaction; a recording unit is provided in the second audio module to record specific sounds in advance for playback during pet training; the electric shock unit can provide strong stimulation to correct the pet's incorrect behavior, and the overall system structure is simple.
[0043] In this embodiment, the electric shock unit includes a first MOSFET Q11, a second MOSFET Q13, a third MOSFET Q12, a transformer, and an electric shock terminal. The source of the first MOSFET Q11 is connected to the power interface. The common terminal of the drains of the first MOSFET Q11 and the second MOSFET Q13 is connected to pin 2 of the low-voltage side of the transformer U8. Pins 3 and 4 of the high-voltage side of the transformer U8 are respectively connected to an electric shock terminal. The gate of the first MOSFET Q11 is connected to the drain of the third MOSFET Q12. The source of the third MOSFET Q12 is grounded. The gate of the third MOSFET Q12 is connected to the first pulse interface SHOCK_POWER_ON. The gate of the second MOSFET Q13 is connected to the second pulse interface SHOCK ON. The source of the second MOSFET Q13 is grounded. With the above-mentioned electric shock unit settings, as long as the first pulse interface SHOCK_POWER_ON is normally set to a low level and outputs a high level when needed, the third MOSFET Q12 is turned on, allowing the battery voltage from the first MOSFET Q11, which is connected through the power interface, to be output to the low-voltage end of the transformer U8. The second pulse interface SHOCK ON outputs a PWM wave, with high and low voltages cyclically input, thus turning the second MOSFET Q13 on and off. Specifically, when the second pulse interface SHOCK ON outputs a high level, the second MOSFET Q13 is turned on, the low-voltage end of the transformer U8 is grounded through the second MOSFET Q13, and the high-voltage end of the transformer U8 outputs high voltage and microcurrent to the electric shock end. When the second pulse interface SHOCK ON outputs a low level, the second MOSFET Q13 is turned off, and the transformer cannot output voltage.
[0044] In this embodiment, the first radio frequency module includes a first radio frequency switch, a first radio frequency power supply (PA), and a first radio frequency low-frequency amplifier (LNA). The first radio frequency switch is connected to the first main control module through the first radio frequency power supply (PA) and the first radio frequency LNA.
[0045] In this embodiment, the second radio frequency module includes a second radio frequency switch, a second radio frequency power supply (PA), and a second radio frequency low-frequency amplifier (LNA). The second radio frequency switch is connected to the second main control module through the second radio frequency power supply (PA) and the second radio frequency LNA.
[0046] In this embodiment, the first audio module includes a first microphone, a first SPK, and a first audio amplifier unit. The first audio amplifier unit is connected to both the first microphone and the first SPK, and is also connected to the first main control module.
[0047] In this embodiment, the second audio module further includes a second microphone, a second SPK, and a second audio amplifier unit. The second audio amplifier unit is connected to both the second microphone and the second SPK, and is also connected to the second main control module. The recording unit is connected to both the second microphone and the second SPK, and is also connected to the second main control module.
[0048] In this embodiment, the system also includes a power supply, which is electrically connected to both the first main control module and the second main control module.
[0049] In this embodiment, the transmitter also includes a driver IC and a digital tube, which is connected to the first main control module through the driver IC.
[0050] In this embodiment, the transmitter also includes a button group, which is connected to the first main control module.
[0051] In this embodiment, the receiver also includes a vibration module, which is electrically connected to the second main control module.
[0052] In this embodiment, the chip signals of both the first main control module and the second main control module are UCM202.
[0053] The above are merely preferred embodiments of the present utility model and are not intended to limit the present utility model. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A pet electronic training system, characterized in that, include: The transmitter includes a first main control module, a first radio frequency module, and a first audio module; the first radio frequency module and the first audio module are both electrically connected to the first main control module. The receiver includes a second main control module, a second radio frequency module, a second audio module, and an electric shock unit. The second audio module contains a recording unit. The second radio frequency module, the second audio module, the recording unit, and the electric shock unit are all electrically connected to the second main control module. The first radio frequency module and the second radio frequency module are connected in communication.
2. The pet electronic training system according to claim 1, characterized in that, The electric shock unit includes a first MOSFET, a second MOSFET, a third MOSFET, a transformer, and an electric shock terminal. The source of the first MOSFET is connected to a power interface. The common terminal of the drains of the first MOSFET and the second MOSFET is connected to the low-voltage side of the transformer. The high-voltage side of the transformer is connected to the electric shock terminal. The gate of the first MOSFET is connected to the drain of the third MOSFET. The source of the third MOSFET is grounded. The gate of the third MOSFET is connected to a first pulse interface. The gate of the second MOSFET is connected to a second pulse interface. The source of the second MOSFET is grounded.
3. The pet electronic training system according to claim 1, characterized in that, The first radio frequency module includes a first radio frequency switch, a first radio frequency power supply (PA) and a first radio frequency low-frequency amplifier (LNA). The first radio frequency switch is connected to the first main control module through the first radio frequency power supply (PA) and the first radio frequency LNA.
4. The pet electronic training system according to claim 1, characterized in that, The second radio frequency module includes a second radio frequency switch, a second radio frequency power supply (PA), and a second radio frequency low-frequency amplifier (LNA). The second radio frequency switch is connected to the second main control module through the second radio frequency power supply (PA) and the second radio frequency LNA.
5. The pet electronic training system according to claim 1, characterized in that, The first audio module includes a first microphone, a first SPK, and a first audio amplifier unit. The first audio amplifier unit is connected to both the first microphone and the first SPK, and is also connected to the first main control module.
6. The pet electronic training system according to claim 1, characterized in that, The second audio module further includes a second microphone, a second SPK, and a second audio amplifier unit. The second audio amplifier unit is connected to both the second microphone and the second SPK, and is also connected to the second main control module. The recording unit is connected to both the second microphone and the second SPK, and is also connected to the second main control module.
7. The pet electronic training system according to claim 1, characterized in that, The system also includes a power supply, which is electrically connected to both the first main control module and the second main control module.
8. The pet electronic training system according to claim 1, characterized in that, The transmitter also includes a driver IC and a digital tube, which is connected to the first main control module through the driver IC.
9. A pet electronic training system according to claim 1, characterized in that, The transmitter also includes a button group, which is connected to the first main control module.
10. A pet electronic training system according to claim 1, characterized in that, The receiver also includes a vibration module, which is electrically connected to the second main control module.