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400KV Step Up Power Module DC 3.6–6V High Voltage Generator
400KV Step Up Power Module DC 3.6–6V High Voltage Generator
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The 400KV Step Up Power Module is a high-voltage DC boost generator developed specifically for experimental, educational, and demonstration-based applications. It converts a low DC input voltage in the range of 3.6V to 6V into an extremely high-voltage output using a Tesla coil based pulse amplification architecture.
This module is not designed for commercial power delivery but rather for controlled demonstrations of high-voltage electrical phenomena such as arc discharge, ionization, and plasma effects.
**Q: Is this module suitable for beginners?**
A: It is suitable for beginners only under supervision, due to the high-voltage output.
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## Technical Architecture
Internally, the module uses a high-frequency oscillator combined with a step-up transformer and pulse-based Tesla coil design. The low-voltage DC input is rapidly switched to create high-frequency pulses, which are then stepped up to very high voltage levels.
The output is a pulse-type high-voltage DC, optimized for arc generation rather than continuous current delivery. This architecture allows the module to remain compact while generating visible discharge arcs.
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## Why Choose This Model?
• Operates from simple low-voltage battery sources
• Tesla coil based pulse output for clear demonstrations
• Compact and self-contained design
• No external control circuitry required
• Widely used in academic and lab environments
**Problem:** Traditional high-voltage systems are bulky and complex.
**Solution:** This compact module provides a simplified approach for demonstrations.
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## Comparison with Related Boards
Unlike DC-DC boost converters or SMPS modules, the 400KV step up power module is specifically designed for very high voltage at low current. It should not be compared with regulated power supplies or inverter modules.
It is fundamentally different from Arduino boards, motor drivers, or programmable controllers, as it operates independently without logic control.
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## Pin & Interface Overview
The module features a simple interface:
• Input: Two low-voltage DC wires (Red = Positive, Black/Green = Negative)
• Output: Two high-voltage insulated wires for arc discharge
No signal pins, communication interfaces, or control pins are present.
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## Power System Explanation
The module requires a DC power source capable of delivering 2A to 5A within the 3.6V–6V range. Typical power sources include single-cell or dual-cell Li-ion batteries.
Continuous operation beyond the specified discharge time can cause internal heating and damage. Pulsed operation is strongly recommended.
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## Common Issues & Troubleshooting
**Issue:** No arc generation
• Check input current capability
• Ensure correct polarity
• Reduce output gap distance
**Issue:** Module overheating
• Reduce operating time
• Increase cooling intervals
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## Who Should Buy This?
• Electronics and physics students
• Engineering colleges and labs
• Science exhibition organizers
• Robotics learners exploring high-voltage systems
• Institutional procurement teams
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## Practical Applications
• High-voltage science demonstrations
• Arc discharge experiments
• Electrostatic behavior studies
• Plasma generation demonstrations
• Educational lab experiments
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## Expansion & Ecosystem Compatibility
The module can be integrated into insulated enclosures, combined with switches, and used alongside battery protection circuits. It does not interface with microcontrollers directly.
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## Institutional & Bulk Suitability
This module is suitable for institutional labs, training centers, and academic bulk procurement where controlled high-voltage experiments are conducted under supervision.
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1️⃣1️⃣ KEY FEATURES (8–12 Points)
• Converts low DC voltage to extremely high voltage output
• Tesla coil based pulse generation architecture
• Operates from 3.6V–6V DC input
• 400KV step up power module for lab experiments
• Compact, self-contained module
• Produces visible high-voltage arc discharge
• No programming or firmware required
• Simple two-wire input interface
• Suitable for educational demonstrations
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1️⃣2️⃣ TECHNICAL SPECIFICATIONS
• Input Voltage: DC 3.6V–6V
• Input Current: 2A–5A
• Maximum Output Voltage: DC 400KV
• Maximum Output Current: 0.5A
• Discharge Time: 10 seconds
• Output Type: Pulse high-voltage DC
• High-voltage discharge distance: 10–20 mm
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1️⃣3️⃣ APPLICATIONS (10–15 Use Cases)
• High-voltage physics experiments
• Electronics lab demonstrations
• Science exhibition projects
• Plasma arc demonstrations
• Electrostatic discharge studies
• Engineering training labs
• Robotics learning experiments
• Academic research prototypes
• Educational workshops
• Controlled spark generation
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1️⃣4️⃣ PACKAGE INCLUDES
• 1 × 400KV Step Up Power Module
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1️⃣5️⃣ TRADE & COMPLIANCE
HSN Code:
8504
RoHS Compliance:
Yes
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