Low-Voltage Pulse Pet Training Collar with Vibration
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Solution Overview
Problem
Existing auxiliary pet training apparatuses using high-voltage pulse current pose risks of electric arcs, burns, and physical/mental injuries to pets and users.
Innovation Solution
An auxiliary pet training apparatus utilizing low-voltage pulse current in combination with mechanical vibration to stimulate pets, avoiding electric arcs and ensuring safety.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If high-voltage pulse current is used to stimulate pets, then training effectiveness is improved, but physical harm to pets and users increases
Solution Approach 1:
The patent changes the voltage parameter from high-voltage to low-voltage pulse current, fundamentally altering the electrical stimulation characteristics to eliminate harmful effects while preserving training functionality. This parameter change resolves the contradiction by making the stimulation safe for both pets and users.
Solution Approach 2:
The patent introduces mechanical vibration as an additional stimulation mode alongside electrical pulse current. The vibration module provides tactile feedback to the pet through the conductive sleeve, creating a multi-sensory training approach that maintains effectiveness without the harmful effects of high-voltage current.
2Power
If high-voltage pulse current is used, then pet stimulation is achieved, but electric arcs and burns occur
Solution Approach 1:
By changing the voltage parameter from high to low, the patent eliminates the conditions necessary for electric arc formation while maintaining adequate stimulation intensity through the combination of low-voltage electrical current and mechanical vibration.
Solution Approach 2:
The conductive sleeve acts as an intermediary component that safely transmits both the low-voltage electrical pulse current and mechanical vibration to the pet. This intermediary structure enables dual-mode stimulation without the harmful effects of high-voltage current.
3Adaptability or versatility
If high-voltage pulse current is used, then training function is provided, but user safety is compromised
Solution Approach 1:
The patent changes the electrical parameters to low-voltage pulse current, which maintains the training function through combined electrical and mechanical stimulation while eliminating the safety risks to users from high-voltage current exposure.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
The solution effectively trains pets to stop barking without causing physical harm, using low-frequency pulse current that is safe for both pets and users, and enhances training efficiency with simultaneous vibration stimulation.
Implementation Method 1
a vibration motor in the vibration module is started to transmit vibration to the vibration head sleeve
Implementation Method 2
a pulse module outputs a pulse current to be transmitted to a conductive sleeve via a vibration head sleeve
Data Source
AI summary
The present invention discloses an auxiliary pet training apparatus, where pet bark is received by a microphone, amplified through an amplification circuit, subjected to signal filtering, and transmitted to a micro-processing module; the micro-processing module receives a corresponding electrical signal, and transmits a control signal to a pulse generating device and a vibration module; a pulse module outputs a pulse current to be transmitted to a conductive sleeve via a vibration head sleeve; and a vibration motor in the vibration module is started to transmit vibration to the vibration head sleeve. The present invention provides an auxiliary pet training apparatus providing stimulation for pets using low-voltage pulse current in combination with mechanical vibration, thereby achieving training for the pets, avoiding occurrence of electric arcs to damage fur of the pets, and preventing injury to a user due to touch by mistake.


