Proposal Saudi Arabia

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To reach our mutual interest in clean fuel and clean energy storage as well smart city solution, we hereby attached our proposal for pilot project and main project.

TECHNICAL DETAILS

PREPARED BY:

Technical Information

Project location: Johor, Malaysia Installed capacity: 222kWh ongoing up to 3.3mWh Current operational status: Ongoing

Technical Information

Project location: Semenyih, Selangor Installed capacity: 1mWh Current operational status: Ongoing

Technical Information

Project location: Moosseedorf, Switzerland Installed capacity: 2 x 150kWh Current operational status: Ongoing

Technical Information

Project location: Berjaya, Redang Island, Malaysia

Installed capacity: 1.5mWh Current operational status: Ongoing

Technical Information

Project location: Sabah CM Installed capacity: 500kWh Current operational status: Ongoing

Technical Information

Project location: Orang Asli, Perak Installed capacity: 250kWh Current operational status: Ongoing

Vertical Axis Wind Turbine – TRL 9

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

WIND SPEED VS ENERGY OUTPUT

5kW 10kW 20kW 40kW

4.5

4

100%

79%

Power Curve for

3.5

3

100%

100%

2.5

37% 24%

Vertical Axis Wind Turbine

2

100%

100%

62%

1.5

1

100%

100%

100%

0.5

16% 8% 4.7% 2.9%

0

4m/s

8m/s

12m/s

14m/s

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STATOR SYSTEM

GEAR BOX

Vertical Axis Wind Turbine

PERMANENT MAGNET GENERATOR (PMG) P0WER PRODUCE = 40kW

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

Test (zero angle)

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Vertical Axis Wind Turbine

Test (zero angle)

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Vertical Axis Wind Turbine

Test degree (9 degree)

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Vertical Axis Wind Turbine

Test degree (9 degree)

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Vertical Axis Wind Turbine

New design

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Vertical Axis Wind Turbine

New design

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Vertical Axis Wind Turbine

New design

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Vertical Axis Wind Turbine

New design

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Vertical Axis Wind Turbine

New design

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Vertical Axis Wind Turbine

New design

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Vertical Axis Wind Turbine

New design

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Vertical Axis Wind Turbine

New design

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

Air flow simulation

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Vertical Axis Wind Turbine

Air flow simulation

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Vertical Axis Wind Turbine

Air flow simulation

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Vertical Axis Wind Turbine

Air flow simulation

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Vertical Axis Wind Turbine

Air flow simulation

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Vertical Axis Wind Turbine

Air flow simulation

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Vertical Axis Wind Turbine

Air flow simulation

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Vertical Axis Wind Turbine

Air flow simulation

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Vertical Axis Wind Turbine

Air flow simulation

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Vertical Axis Wind Turbine

Air flow simulation

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Vertical Axis Wind Turbine

Air flow simulation

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Vertical Axis Wind Turbine

Air flow simulation

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Vertical Axis Wind Turbine

Air flow simulation

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Vertical Axis Wind Turbine

Air flow simulation

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

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Vertical Axis Wind Turbine

Compressed Air Energy Storage – TRL 9

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Compressed Air Energy Storage

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Buoyancy System

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Buoyancy System

Vanadium Redox Flow Battery – TRL 7

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Vanadium Redox Flow Battery

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Vanadium Redox Flow Battery

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Vanadium Redox Flow Battery

Hydrogen & Methanol Production System – TRL 9

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Hydrogen Production System

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Hydrogen Production System

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Hydrogen Production System

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Methanol Production System

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Methanol Production System

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Methanol Production System

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Methanol Production System

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Methanol Production System

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Methanol Production System

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Methanol Production System

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Methanol Production System

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Methanol Production System

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Methanol Production System

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Methanol Production System

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Plast to oil apart of Methanol Production System

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Plast to oil apart of Methanol Production System

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Plast to oil apart of Methanol Production System

Water Treatment System – TRL 9

Hydroponic wastewater treatment, often called constructed wetland hydroponics or plant- based wastewater treatment is a sustainable method that uses plants grown to clean wastewater by removing nutrients, organic matter, and some contaminants. How it works Wastewater flows through a system where plant roots are suspended in water. Treatment occurs through three main mechanisms:

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Water Treatment System

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Water Treatment System

Advantages a)

Low energy and operating cost Environmentally friendly Effective nutrient removal Aesthetic and odor-reducing

b) c) d) e)

Can produce biomass (biofuel, compost, animal feed*)

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Water Treatment System

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Water Treatment System

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Water Treatment System

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Water Treatment System

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Water Treatment System

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Water Treatment System

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Water Treatment System

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Water Treatment System

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Water Treatment System

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Water Treatment System

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Water Treatment System

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Water Treatment System

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Water Treatment System

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Water Treatment System

Stand-Alone Hydro System – TRL 9

1

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7

6

5

Stand-Alone Micro Hydro

2

3

1. Water from the top tank is released through the 32-degree angled pipe. 2. The water reaches the Pelton turbine and spins the generator. 3. Water from the Pelton turbine falls downward and passes through four sets of Pryter impellers. 4. The water pump draws in the water and 5. Pushed back to the top tank via the 90-degree pipe. 4

6. The water reaches the top tank. 7. The process restarts from step 1.

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Stand-Alone Micro Hydro

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Stand-Alone Micro Hydro

20kW

5.5kW

5.5kW

5.5kW

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Simulation of Stand- Alone Micro Hydro

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Display of Stand- Alone Micro Hydro

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Scada Display of Stand-Alone Micro Hydro

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Stand-Alone Micro Hydro

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Stand-Alone Micro Hydro

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Stand-Alone Micro Hydro

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Stand-Alone Micro Hydro

Technical Data Sheets

1. MODEL:TGET450-I-3KW-300R

appearance is subject to change without notice

Technical Information

Permanent Magnet Generator – 3kW

2. CHARACTER Our disc coreless PMG have advantage in low Rated speed, Low starting wind speed, Small volume, Energy Small, Light weight, Compact structure,High efficiency etc. 1) Coreless, anhysteresis, slotless, have low starting torque. 2) No iron loss, have high efficiency 3) Adopt unique coreless precision winding technology design precision coil 4) Adopt the rare earth permanent magnet, which is multipole, mean gap, high power density and high output power.

5) Low speed direct driving, no torque fluctuations 6) Compact structure, high ratio of power to volume 7) No iron loss, low calorific value, small temperature rise 8) Simple structure, easy to install 9) The brushless structure, free maintenance

3. RANGE OF APPLICATION 0.1kw-3kw vertical axis wind turbine; gasoline generators; hydroelectric generator

4.SHAPE DRAWING

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Permanent Magnet Generator – 3kW

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Permanent Magnet Generator – 3kW

6. CURVE GRAPH

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Permanent Magnet Generator – 3kW

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Permanent Magnet Generator – 10kW

4. SHAPE DRAWING

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Permanent Magnet Generator – 10kW

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Permanent Magnet Generator – 10kW

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Permanent Magnet Generator – 10kW

Technical Information

1. MODEL:TGET770-I-20KW-300R

appearance is subject to change without notice

Permanent Magnet Generator – 20kW

2. CHARACTER Our disc coreless PMG have advantage in low Rated speed, Low starting wind speed, Small volume, Energy Small, Light weight, Compact structure,High efficiency etc. 1) Coreless, anhysteresis, slotless, have low starting torque. 2) No iron loss, have high efficiency 3) Adopt unique coreless precision winding technology design precision coil 4) Adopt the rare earth permanent magnet, which is multipole, mean gap, high power density and high output power.

5) Low speed direct driving, no torque fluctuations 6) Compact structure, high ratio of power to volume 7) No iron loss, low calorific value, small temperature rise 8) Simple structure, easy to install 9) The brushless structure, free maintenance

3. RANGE OF APPLICATION 0.1-20kw vertical axis wind turbine; gasoline generators; hydroelectric generator

4. SHAPE DRAWING

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Permanent Magnet Generator – 20kW

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Permanent Magnet Generator – 20kW

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Permanent Magnet Generator – 20kW

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Permanent Magnet Generator – 40kW

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Permanent Magnet Generator – 40kW

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Permanent Magnet Generator – 40kW

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Permanent Magnet Generator – 40kW

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Permanent Magnet Generator – 40kW

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Water Pump

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Water Pump

Engineering Drawings and System Schematic

100KW 24/7 with Hydro Set-up

100KWH

100A

100A

100A

Drawings

Inverter 100kW

300A/1500V

Single Line Diagram

LOAD

400v/1000V 40kW3 Phase

250A

250A

250A

40kWPMG

HG

HG

HG

100KW 24/7 with Hydro and Wind Set-up

200KWH

100A

100A

100A

100A

Drawings

Inverter 100kW

300A/1500V

Single Line Diagram

LOAD

400v/1000V 40kW3 Phase

250A

250A

250A

250A

40kWPMG

HG

WG

HG

WG

Legal & Financial Information

Intellectual Property

Intellectual Property

Intellectual Property

Intellectual Property

Intellectual Property

Historical legal disputes

Historical legal disputes

Historical legal disputes

Operational Information

The proposed manufacturing facility will be located in Saudi Arabia, within an established industrial zone that offers reliable utilities, access to skilled labor, and convenient proximity to major transport routes. This location has been selected to ensure full regulatory compliance, support future expansion, and provide efficient access to the project site, aligning with your operational and logistical requirements. The facility will operate as an in-house owned and managed plant, allowing full control over quality assurance, biosecurity, intellectual property, and production scheduling. The initial designed production capacity will support phased scaling, starting with commercial-volume output and allowing expansion through additional processing lines as demand grows. Key areas will include raw material intake, processing and production lines, the powder coating facility, packaging, quality control, and warehousing to maximize efficiency.

Manufacturing Facilities

Proposed

The supply chain strategy is designed to ensure consistency, traceability, and resilience. Raw materials and packaging components will be sourced through a mix of local Jordanian suppliers and approved international partners, reducing dependency risks while maintaining quality standards. Production lead times are expected to range between 2–6 weeks, depending on product type, batch size, and regulatory release requirements. Inventory management will follow a controlled forecasting model to balance working capital efficiency with uninterrupted production.

Manufacturing Facilities

Supply Chain Production Lead Time

The facility will adopt a preventive and predictive maintenance strategy to maximize equipment uptime and operational safety. Maintenance plans will be aligned with manufacturer recommendations and documented within a centralized maintenance management system. Critical spare parts will be: • Stocked on-site for high-risk or high-wear components • Supported by long-term supply agreements with equipment manufacturers and authorized distributors

Manufacturing Facilities

Long-term service support will include: • Scheduled equipment inspections and calibration

Maintenance Spare Parts

• Service-level agreements (SLAs) with machinery suppliers • Continuous training for in-house maintenance technicians • This approach ensures minimal downtime, controlled operating costs, and long-term asset reliability.

CHIEF EXECUTIVE OFFICER (CEO) Henrik Pryter • Corporate strategy & leadership • Business growth & stakeholder engagement ENGINEERING & OPERATIONS Civil Engineering Jason Chung • Civil design, site works & compliance Electrical Engineering Mr. Lee • Electrical systems, testing & commissioning Mechanical Engineering Muhammad Sobri • Mechanical systems & equipment integration Maintenance Muhammad Zuhdi • Preventive & corrective maintenance PRODUCTION & SUPPORT Head of Production Muhammad Zahid • Manufacturing operations & quality control Head of Logistics Nadhir Aqil • Procurement, inventory & logistics coordination

Manufacturing Facilities

Organizational Chart

Manufacturing Facilities

Organization chart

Integrated Operations Management Application.

The company utilizes a customized integrated application designed to streamline and manage warehouse operations, inventory control, invoicing, and logistics within a single digital platform. The application enhances operational efficiency, accuracy, and real-time visibility across all departments.

Key Functionalities

Warehouse & Inventory Management - Real-time tracking of materials, components, and finished goods - Stock level monitoring, batch control, and reorder alerts - Warehouse location and movement tracking Invoicing & Financial Integration - Automated invoice generation linked to sales orders and deliveries - Accurate billing, pricing control, and transaction records - Exportable financial reports for accounting and audit purposes Logistics & Delivery Management - Shipment planning, dispatch scheduling, and delivery tracking - Coordination with internal teams and external logistics partners - Documentation management for outbound and inbound logistics Operations & Reporting - Centralized dashboard for operational status and performance - Data analytics for inventory turnover, delivery lead time, and cost control - Secure access with role-based user permissions Benefits - Improves operational transparency and data accuracy - Reduces manual errors and administrative workload - Enhances coordination between warehouse, finance, and logistics teams - Supports scalability as production volume increases

Manufacturing Facilities

Warehouse

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Warehouse

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Warehouse

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Warehouse

Commercial Information

Commercial Proposal

Pilot Project

Commercial Proposal

Pilot Project

Commercial Proposal

Hybrid Renewable System + Storage

Commercial Proposal

Hybrid Renewable System + Storage

After-Sales Support Policy. We provide operational staff, timely response support, and full technical assistance. On- site operation services are charged at USD 0.01 per kW, inclusive of maintenance, grease, and standard operational requirements.

Commercial Proposal

After-sale Support Policy

Commercial In Malaysia

Company in Dubai UAE will change to company in Saudi (Elquator Saudi)

CREATOR

DESIGNER &

Danish nationality, Henrik Pryter, the CEO of ElQuator Holding Berhad always had his eyes for everything he saw. He is the brainchild of all the systems developed for the company. His vision is to see the world is less polluted and CO2 is reduced by adapting to using Renewable Energy, with or without his system.

He is the creator and the owner of all the systems he believes will change how energy is produced in the future.

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