EMP Pulse Blaster: Difference between revisions
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== Equations == | == Equations == | ||
# Energy Density: | # Energy Density: | ||
# Volume of a Sphere: | <math display="block"> E = \frac{{B^2}}{{2 \mu_0}} </math> | ||
# Power Output (General): | # Volume of a Sphere: | ||
<math display="block"> V = \frac{4}{3} \pi r^3 </math> | |||
# Power Output (General): | |||
<math display="block"> \text{Power Output} = \frac{\text{Total Energy Output}}{\text{Pulse Duration}} </math> | |||
== Components == | == Components == |
Revision as of 14:51, 15 May 2024
Electro Magnetic Pulse - Pulse Blaster
Parameters
Parameter | Value/Equation |
---|---|
Range (r) | 13 meters |
Energy Density | \(5 \times 10^5\) to \(10^6\) joules/m\(^3\) |
Total Energy Output | \(4.601 \times 10^9\) joules |
Voltage Output (High-Voltage Generator Modules) | 3000V, 4000V, 400kV, 1MV |
Equations
- Energy Density:
- Volume of a Sphere:
- Power Output (General):
Components
- Coils:
- Number of Turns
- Coil Diameter
- Coil Material
- Magnet Arrays:
- Magnet Strength
- Magnet Configuration
- High-Voltage Generator Modules:
- Voltage Output
- Current Capability
- Efficiency
- Safety Features
- Batteries:
- Capacity
- Voltage
- Energy Storage
Safety and Regulatory
- Safety Features:
- Overcurrent Protection
- Voltage Regulation
- Insulation Monitoring
- Regulatory Compliance:
- Emissions Limits
- Safety Standards
Additional Considerations
- Wire Gauge: Determine based on current and temperature rise.
- Amps and Volts: Dependent on design and requirements.
- Efficiency and Losses: Consider efficiency of components and system.
- Integration and Compatibility: Ensure compatibility and effective integration of components.
- Environmental Factors: Consider atmospheric conditions and electromagnetic interference.