High Voltage Generator DC 3V-6V to 400kV 400000V
High Voltage Generator DC 3V-6V to 400kV 400000V
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High Voltage Transformer Generator – DC 3V-6V to 400KV (400,000V) is a powerful step-up module designed to convert a low DC voltage of 3V-6V into an ultra-high voltage output of up to 400,000V (400KV). This high-voltage power module is perfect for science experiments, Tesla coil projects, arc ignition demonstrations, and other high-voltage applications. With its compact size, stable performance, and efficient power conversion, it is an ideal tool for students, researchers, and electronic hobbyists interested in exploring the principles of high-voltage electricity.
Product Overview
This module operates based on the principles of electromagnetic induction and high-frequency oscillation, enabling it to step up a low DC voltage to a significantly high output voltage. The RS1060 module is widely used for various physics and electrical experiments, making it a great choice for educational purposes and DIY electronics projects.
Its lightweight and compact design make it easy to integrate into different applications, while its high efficiency ensures consistent performance. Whether you're working on high-voltage physics demonstrations or need an ignition system for an experimental setup, this module provides a reliable and effective solution.
Key Features
- Ultra-High Voltage Output: Converts 3V-6V DC input into 400KV (400,000V) high-voltage output.
- Compact & Lightweight: Small form factor for easy integration into projects.
- High Efficiency & Stability: Designed for reliable and stable high-voltage generation.
- Easy to Operate: Requires a simple DC power source, making it beginner-friendly.
- Multiple Applications: Ideal for Tesla coils, plasma arc studies, electronic ignition systems, and more.
Technical Specifications
- Input Voltage: 3V-6V DC
- Output Voltage: Up to 400KV (400,000V)
- Power Supply: Can be powered using lithium batteries or an external DC power source.
- Arc Length: Capable of producing strong electric arcs.
- Size: Compact and lightweight, easy to handle and install.
- Circuit Type: High-frequency pulse transformer with oscillation circuit.
Applications
This High Voltage Transformer Generator is widely used in multiple high-voltage applications, including:
- Science Experiments: Ideal for conducting high-voltage physics experiments in labs or educational institutions.
- Tesla Coil Projects: Useful for DIY Tesla coil setups and understanding electromagnetic principles.
- High-Voltage Arc Demonstrations: Demonstrates electric arcs and sparks for educational and experimental purposes.
- Electronic Ignition Systems: Can be used in ignition circuits for gas burners, stoves, and lighters.
- Plasma & Ionization Research: Supports research in plasma arcs, ionization, and electrostatic discharge experiments.
- DIY & Hobby Projects: Perfect for hobbyists, experimenters, and students exploring high-voltage technology.
How It Works
The RS1060 module operates by receiving a low-voltage DC input (3V-6V), which is then converted into high-frequency oscillations using an internal driver circuit. These oscillations induce a strong electromagnetic field in the transformer coil, resulting in a high-voltage output of up to 400KV. This high-voltage output produces visible electrical arcs, making it useful for educational demonstrations and other experiments.
Safety Precautions
Since this module generates an extremely high voltage, it is important to follow safety precautions to avoid hazards:
- Do not touch the output terminals while the module is powered on.
- Keep away from flammable materials, as the high-voltage arcs can ignite certain substances.
- Use in a well-ventilated area and avoid prolonged exposure to high-voltage discharge.
- Keep away from children and unauthorized personnel to prevent accidental injuries.
- Use proper insulation techniques when integrating the module into projects.
Note:
The high-voltage module should avoid the use of electricity in high voltage no-load. (Power must be adjusted to a suitable distance to the high-voltage output line, battery capacity is proportional to the distance and the use of the high-pressure arc (not a voltage as high as possible, you must provide enough current). Experimental tests of the arc distance from short to long, do not exceed the maximum arc distance electricity, energy can not be released due to high pressure, can easily damage the module.)
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