- 50 Ohm termination principles for OP – Amps
- About
- Arduino codes for the battery charger 8 Port
- Capture Vortices Fields in a Capacitor
- Consulting
- Contact Us
- Content Overview
- Copyright
- Dashboard
- Electroculture
- Give Donation
- Half Bridge Driver Board
- Home Backup
- How to build a rig for a solenoid coil
- LED driving performance efficiency Part 6
- Lumbed Circuits
- Membership Approval
- Membership confirmation
- Movies
- Aether
- Antigravity Effects
- Investigating of Antigravity effects. First operation A. Chekurkov’s “Graviflyer”
- Investigating of Antigravity effects. First run of A. Chekurkov’s “Graviflyer”
- Investigating of Antigravity effects. Geometric objects in a microwave field.
- Investigating of Antigravity effects. Introduction of Alexey Chekurkov’s “Graviflyer”
- Investigating of Antigravity effects. Second run of A. Chekurkov’s “Graviflyer”
- Investigating of Antigravity effects. The GMR (Graphite Microwave Resonator)
- Investigating of Antigravity effects. The GMR (Graphite Microwave Resonator), Part 2
- Investigating of Antigravity effects. The OAUGDP (One Atmosphere Uniform Glow Discharge Plasma)
- Application Notes
- Scalar Networks
- Class E amplifier and larger solenoid shaped coils 3
- Class E amplifier and solenoid shaped coils 2
- Cone or pyramid shaped coils 1
- Counter-propagating collisions of electromagnetic waves, part 2. Mono oscillation frequency source
- Counter-propagating collisions of electromagnetic waves, part 3. Pancake coils
- Counter-propagating collisions of electromagnetic waves, part 5. Five solenoid coil system
- Counter-propagating collisions of electromagnetic waves, part 6. Real power measurements with resistive load and Class A amplifier
- Experiment on counter-propagating collisions of solitary waves. Part 1 wave interactions
- Power analysis of partnered coils in a scalar Network
- Solenoid shaped coils 1
- Solenoid shaped coils 4, 6 port isolated signal splitter
- Scalar wave communication
- Scalar wave communication options part 1
- Scalar wave communication options part 10, connecting the earth ground to the water table
- Scalar wave communication options part 11. What Antenna to use for Scalar waves
- Scalar wave communication options part 2. The envelop detector
- Scalar wave communication options part 3. The biased envelop detector
- Scalar wave communication options part 4. The properties of deployment in nature
- Scalar wave communication options part 6, precision operational amplifier with envelope detector
- Scalar wave communication options part 7, Superheterodyne versus TRF receiver, IF Amplifier, active bandpass filter and quartz crystal oscillator test circuit
- Scalar wave communication options part 8, properties of deployment in nature 2
- Scalar wave communication options part 9, Full-scale TRF receiver and long distance transmission in nature 3
- Scalar wave communication part 5, Class A biased and DC biased Full Wave envelope detector
- Scalar wave communication part 6, LM386, Class AB Operational Amplifier, undocumented scalar wave receiver function
- Scalar Networks
- Atmospheric Electricity
- Atmospheric Electricity-2
- Audio Description – Solid State Back EMF charging, Part 5
- Dielectric Field propagation
- Dielectric Field Propagation, adding bifilar pancake coils
- Dielectric Field Propagation, High Voltage propagation in vacuum
- Dielectric Field Propagation, High Voltage propagation in vacuum, part 2
- Dielectric Fields, receiver and transmitter
- Improving power delivery to the LMD network 1
- Improving power delivery to the LMD network 2
- Improving power delivery to the LMD network 3
- Longitudinal magneto-dielectric versus transvers electro-magnetic power propagation
- The Avramenko plug and radiant energy with high sensitivity and efficiency
- Electrolysis
- Electrolysis – 21 plates Dry-Cell versus 47 plates Dry-Cell
- Electrolysis – Calculating and simulating
- Electrolysis – Complex resonance calculation
- Electrolysis – Evaluate resonance setting
- Electrolysis – Impedance change for autotransformer
- Electrolysis – Improving efficient power delivery
- Electrolysis – Increased surface area, Frequency response and Gas production level
- Electrolysis – Multitap Autotransformer and large Graphite Rod and Nickel cage
- Electrolysis – Point charge and cavity propagation via electrodes
- Electrolysis – Pulse-width modulation of the Dry Cell
- Electrolysis – Resonant Electrolysis of Hydrogen and Oxygen
- Electrolysis – Resonant Electrolysis with type 316L steel
- Electrolysis – The Dry Cell Hydrogen production and plate material performance
- Electrolysis – Three modules test
- EMF Battery Charging
- Established electricity production systems
- Established electricity production systems. MPPT charge controller performance @24 Volts for Rotoverter with large battery bank
- Established electricity production systems. MPPT charge controller performance for Rotoverter
- Established electricity production systems. Performance review of the Siemens Sinmatics V 20 Frequency Inverter
- Established electricity production systems. Power distribution in an rotary phase converter motor and power factor
- Established electricity production systems. Sinamics V20 frequency inverter Full load test @ 380 Volts ~
- Established electricity production systems. Smart shunt battery monitor to analyse power distribution in a battery bank.
- Established electricity production systems. The 3 Phase Motor in Rotoverter mode
- Established electricity production systems. The Alternator
- Established electricity production systems. The inverter and Run Capacitor Bank
- Established electricity production systems. Three phase synchronous servo motor for electrical power generation
- Established electricity production systems. Two 1 HP 3 Phase motors in Star and Delta connection mode
- Ferrite core systems performance in Joule thief configuration
- Geometric Objects and the influence of the Aether
- Low-Energy Nuclear Reactions
- Low-Energy Nuclear Reactions – The Tadahiko Mizuno experiment
- Low-Energy Nuclear Reactions, Electrodes and Electrolyte under High Voltage
- Low-Energy Nuclear Reactions, Electrolyte and reference power measurements
- Low-Energy Nuclear Reactions, Materials and Equipment
- Low-Energy Nuclear Reactions, non-thermal fusion ignition of hydrogen-boron
- Low-Energy Nuclear Reactions, The Tadahiko Mizuno enhanced process, first step
- Low-Energy Nuclear Reactions, The Tadahiko Mizuno enhanced process, second step
- Low-Energy Nuclear Reactions, The Tadahiko Mizuno enhanced process, third step
- NG Coil Design
- Space Conditioning
- Construction of a Space Energy Concentrator
- High Voltage Transformer for Space Activation Device
- Space Conditioning , Part 1
- Space Conditioning Part 5
- Space Conditioning, Part 2
- Space Conditioning, Part 3
- Space Conditioning, Part 4
- Space Conditioning, Part 6
- Space Conditioning, Part 7
- Voltage Multiplier for Space Activation Device
- Tesla Coil Functions
- Complex impedance and Class E amplifier in a scalar network
- Driving high power low resistance loads
- Energy distribution in a scalar network
- Enhanced scalar wave technology with passive amplification and reduced power consumption
- First test type A pancake coil from Prof. Dr. Konstantin Meyl
- Impedance anomalies in a scalar network and potential free measurements
- Investigating amplifier options for a prove of concept of a self-sustaining scalar wave energy system
- Investigating scalar wave hypothesis of power gain by larger coils, phase 1
- Load investigation for highest power delivery in a scalar network
- Scalar network the way to alternative energy
- Scalar wave frequency transmission
- Scalar wave frequency, configuration and measurements
- Scalar wave functions, propagation and phenomena
- Scalar wave technology passive amplification, phase 2
- Test of Tesla’s recommended copper weight ratio between transmitter and receiver coil via λ/4 resonation
- Test type C pancake coil from Prof. Dr. Konstantin Meyl
- Transformer and Coils
- Vortices Fields
- YouTube Videos
- Earth Battery
- Earth Magnetic Fields
- Magnetic Shielding
- LED Driver Performance and Systems
- Tesla Wireless Power Part 1
- Power delivery and distribution between resonating air coils
- Products
- Research
- Books
- Akashic Fields
- Alternative Energy
- Ananda Bosman
- Arthur E. Kennelly
- Arthur Mathews – Tesla’s last Assistance
- Charles Proteus Steinmetz
- Eric Dollard
- Gerry Vassilatos
- Gustave Le Bon
- John Worrell Keely
- Nikola Tesla
- Oliver Heaviside
- Rudolf Steiner
- T. Henry Moray and Moray B. King
- Viktor Schauberger
- Walter and Lao Russell
- William Lyne
- Companies, Researches and Inventors
- Courses
- Active Components
- Calculations, Simulations and Experimentations
- Coil Design
- Electricity
- HV Systems
- Ohm’s Law, Kirchhoff’s Voltage Law
- Solar power infrastructure
- Solar power infrastructure installation. Installing battery bank and testing inverter/charger
- Solar power Infrastructure installation. PSoS and SoC (State of Charge) of battery bank
- Solar power Infrastructure installation. Solar panel first test before installing on the roof
- Solar power Infrastructure installation. Solar panel install completion phase one and test
- Solar power Infrastructure installation. Solar panel mounting system for tiled roof
- Solar power Infrastructure installation. VE Transfer Switch installation phase 2 complete and test
- Electromagnetic Waves and Fields
- Electronics Design
- Amplifier Design and Configuration
- Amplifier design and configuration – Class C amplifier circuit board testing
- Amplifier design and configuration – Class C amplifier circuit board testing version 1.1
- Amplifier design and configuration, Half-Bridge versus Full-Bridge with bootstrap technologies
- Amplifier design and configuration, Pull-Pull, Half Bridge configuration with Class C Amplifier
- Dual Class C “Zero Voltage Switching” versus Half-Bridge performance review
- Half-Bridge Design and Configuration, Part1
- SG3525A IC to replace signal generator and Half-Bridge IC
- Snubber designs performance review
- Zero Voltage switching versus deadtime for Half-Bridge Topology
- ZVS and Half-Bridge performance via one printed PCB board
- Class B Amplifier, TC4421A, TC4422A
- DC power sources and the ripple factor
- High Frequency Amplifier for Scalar wave systems
- HF Amplifier design Class C versus conventional Half Bridge and Pull Pull Half Bridge
- High Frequency Amplifier Design LDMOS transistor for radio broadcast into the VHF band
- High Frequency Amplifier Design with power mosfet for delivery over 200 Watt
- High Frequency Amplifier Design with power mosfet for delivery over 400 Watt
- High Frequency Amplifier Design, half bridge driving options for higher frequencies
- High Frequency Amplifier for Scalar wave outside totem pole configuration
- IR 2110
- IR 2183 and IR21834, H – Bridge Driver
- IR 2184 and IR 2103 Half H – Bridge Driver
- IRS 2453D Full H – Bridge Driver with internal Oscillator
- NCP 5181
- Performance Evaluation Electronic Components
- Signal Generator Design
- Slayer Exciter for Tesla coils
- Troubleshooting Amplifier designs
- Amplifier Design and Configuration
- Frequency Filter Design
- One wire Power transfer
- Passive component measurements
- Performance Evaluation
- Component Performance Evaluation Part 1
- Component Performance Evaluation Part 6
- Component Performance Evaluation, Part 2
- Component Performance Evaluation, Part 3
- Component Performance Evaluation, Part 4
- Component Performance Evaluation, Part 5
- GDT controlled Tesla coil
- High Performance GDT for Anti-Parallel Tesla coil
- Metallic Glas C-core performance Evaluation
- Thyristor controlled Tesla coil
- Scientific Laws
- Patents
- Scientific Laws, Functions, Rules and Units
- Admittance
- Admittance
- Beta Decay
- Capacitance
- Cartesian coordinate system
- Casimir Effect
- Coriolis Effect
- Coulomb’s law
- Coulomb’s law
- CP Violation
- Dirac Sea
- Electrical Impedance
- Electrical Reactance
- Electrical Resitance and Conductance
- Electricity
- Euclidean Space
- Euler-Bernoulli Beam Theory
- Farad
- Gauge Fixing
- Gaussian Function
- Henry Unit
- Inductance
- Joule Unit
- Kelvin
- Kirchhoff’s Law
- Lagrangian Mechanics
- Lorentz Force
- Lorentz Transformation
- Magnetic Reluctance
- Maxwell’s Equations
- Minkowski space
- Newton’s Laws of Motions
- Ohm’s Law
- Orgone
- Orgone
- Permeability (electromagnetism)
- Quantum
- Schuhmann Resonance
- Susceptance
- Tesla Unit
- The Coandă effect
- Van der Waals force
- Watt
- X-Ray
- Zero Point Energy (ZPE)
- Scientists
- Tutorials
- “Long” and “Short” Transmission lines
- Ballast Coils
- DC Tesla Coil Design
- Design, Drawings, Circuits and Tutorials
- Diagrams and Datasheets
- Filter Design Guide
- Honeycombe coil Design
- How to build a Pyramid
- How to remove the GFCI protection on a NST
- RF Amplifier Part 1
- RF Amplifier Part 2
- Soldering PL-259 Coax Plugs
- Synchronous Rotary Spark Gap
- Tesla Coil Components
- Tesla Coil Design
- The HF Current Probe
- The Tesla Bifilar Spiral Coil
- Books
- Research Companies and Researchers
- Scientists – Physicists
- Team Management
- Terms & Conditions
- test
- Transformer dot conversion
- Electrolysis
- LENR
- Plasma Power
- Poll for subject selection survey
- Scalar Wave Technolgies
- Sitemap
- Resonance in biological entities part 2
- Resonance in biological entities part 3
- Resonance in biological entities part 4
- Resonance in Biological entities. Imprinting and transmitting biological information with scalar waves
- Seminar from 17.03.2020, Resonance in biological entities
- Training
- Workshop
Pages
- SMPS Power Transmission new video
- Scientific analysis of power distribution of partnered coils in a vector or scalar network.
- New Video: Power analysis of partnered coils in a scalar Network with asymmetrical alignment
- Transformer Design part 1
- Change of business model
- The Liquid Crystal Aether. Argon Plasma capacitive loading. New video
- The Liquid Crystal Aether. Glow discharge Regime. New video
- The Liquid Crystal Aether. Pulsed Plasma Power 1. New video
- Dielectric Field Propagation, High Voltage propagation in vacuum, part 2. New video
- Dielectric Field Propagation, High Voltage propagation in vacuum. New video