China Professional 5HP Long/short shaft All-in-One Gear-Less Design EZ Electric Outboard Motor with CE certificate with high quality

Product Description

Elevate Your Boat Experience with Our Groundbreaking Electric Outboards
Ready for Maintenance-Free, Non-Stop Commercial Operation
Powerful . Reliable . Compact . Efficient . Quiet . Affordable …

Product Description

EZ outboards are 48V by default, but 72V systems are also available by request

Imagine a boating experience where power meets simplicity, efficiency blends with innovation, and every journey becomes an eco-friendly adventure. We’re excited to introduce the EZ Outboards – a leap CHINAMFG in electric propulsion technology, meticulously crafted for your small boat. EZ Outboards is more than just an outboard motor; it’s a testament to advanced marine engineering designed to revolutionize your time on the water.
 

Key Features of the EZ outboards:

  • Direct Drive Underwater Motor: For quiet, efficient propulsion.
  • Hermetic Seal: Total protection from water leakage, ensuring long-term durability.
  • Contactless Electro-Magnetic Transmission: High-efficiency power transfer with reduced wear.
  • Modular Design: Simplistic and user-friendly for quick installation and maintenance.
  • Sinewave Control: Smooth acceleration and handling.
  • Lightweight and Portable: Easy to transport, ideal for recreational and professional use.
  • Super Durability: Designed for the rigors of commercial applications.

Product Usage

Product Model EZ-X05 EZ-X10 EZ-X20
Rated Voltage(VDC) 48 48 48
Input Current(A) 65 135 220
Input Power(KW) 3.1 6.5 10.5
Comparable Petro Engine(HP) 5 10 20
Maximum Propeller Speed(rpm) 2000 2600 2400
Static Thrust Force(lb) 130 185 225
Propeller Size(inch) 10*7 10*7 10*10
Net Weight(kg) 20 26 29
Control Tiller/Remote Tiller/Remote Tiller/Remote
Tilting Manual Manual Manual

MOX9 Hermetic Marine Motor
No Brush. No Speed Reduction Gear. No Moving Seal. Less is More.

Our latest X-series EZoutboards are now powered by the all-new patented Goldenmotor MOX9 Gearless & Brushless DC motor. 9 years of research and development spent in the pursuit of a brushless and gearless design has finally paid off. Now you can say goodbye to unwanted friction & weight and say hello to free extra HangZhouage. Rated at IE5 (Ultra-Premium Efficiency), the MOX-9 motors will squeeze more HangZhous out of your battery pack. The controller is placed inside top box and the underwater drive motor is completely hermetic to prevent any possible water leakage, your most valuable components of the outboard are then well protected from damage!!!
 

Contact-less Transmission

No Vertical Drive Shaft. No Bevel Gear. No Water Pump. 20,000 Hours Guaranteed.

We thought you’d love to spend more time boating and less time doing maintenance, so we took water seals out of the equation. The MOX9 Marine Motor is designed to last up to (and probably more than) 20,000 hours maintenance free. BUT HOW? Introducing our revolutionary patented MAGPROP technology, our MAGPROPs are driven via electro-magnetic induction, enabling our motors to become truly seal-less and maintenance-free, good for Non-Stop Commercial Use.
 

Swift & Silent

Hi-Speed. Low Noise.

With up to 30 horsepower and shaft speeds of up to 2600 RPM at your disposal, the X-series will get you where you want, except much faster. Our propellers are designed to be able to handle all that power while also being extremely efficient. Don’t want to scare the fishes away? Our MOX9 motors are manufactured with high precision machinery, remaining ultra-silent even on full throttle SportMode, they’ll never hear you coming.

 

Need More Power

Add more. Link it. Get more.

Got a bigger boat? Need more speed? We’ve got you covered. Achieve up to 120 horsepower (4*30HP) by simply linking up to 4 EZoutboard X-series in parallel drive with our new EZlink scalable interface. To maximize power efficiency, simply switch between single-drive EcoMode or multi-drive SportMode with the push of a button. EZlink gives you the ultimate flexibility by allowing you to selectively power up or down individual outboards, without ever going through the trouble of physically un-linking them.
 

Zero Emissions

Clean Water. Happy fish.

Now that the world is more aware of environmental protection, electric propulsion has undeniably become more relevant than ever. Goldenmotor products are developed with nature’s best interests in mind. We love our planet, and we invite you to join us in the push towards a cleaner and more sustainable environment for ourselves and posterity. Choose electric, make a difference, switch to the EZoutboard X-series today!

(E for Electric Propulsion,Z for Zero Pollution,EZalso for Ease of Use)is our new brand name for our innovative electric outboards (international patented). Our patented Gear-less, Brushless, Shaft-less design makes it very unique, highly efficient, reliable, quiet, light, and cost saving. The BLDC motors and controllers are optimally designed for electric outboards use with motor speeds (2000rpm-2800rpm) matching to common propeller speed, so you can get the same boat speeds as by gasoline outboards with equivalent horse powers. The motor controllers use sinewave technology guaranteed smoothness control, and programmable via PC or smartphones to setup speed limit, maximum current, lower voltage limit as you wish to meet your needs and local authority’s regulations, whether 9.9HP or 10HP, you can program it!

All EZ outboards support both tiller steering control, and remote steering control via teleflex cable same way as used in gasoline outboards. Any single outboard readily caters for both control methods. You can choose either control method at the same price!

 

Learn to Operate It in Minutes! Smooth Control Assured.

Other Features: Pursuit of Speed, Sports Experience

Propeller speeds are comparable to conventional gasoline/diesel outboards.

High-power high-efficiency brushless DC drive motor (3KW-20KW) provides strong continuous thrust

GEAR-LESS design, no speed reduction mechanism, making the design more concise, quiet, durable, and energy-saving

Remote/Tiller control compatible interface, users can freely choose/switch control modes

3-speed selectable modes: Sports / Cruise / Eco power saving, suitable for different use scenarios, to achieve a multi-purpose

FREE smartphone dashboard APPs, available in both Android and iOS versions
Support for any 48VDC battery systems, users can choose local battery suppliers and capacities to meet your needs

Support CAN-BUS, Blue-tooth communication protocols, and open for customer’s own application development

The prices are equivalent to the four-stroke gasoline engine, affordable, and truly create values for users

How do I determine the capacity of the battery pack needed?

Battery is the new form of “fuel” for electric propulsion outboards, you never need to go to gasoline station to refuel your outboard anymore. You only need to recharge your batteries at home or docking place.

Once you’ve chosen an electric outboard that properly fits the weight and efficiency of your loaded boat, the next task is to size the battery bank that will store the energy to drive it. The size of the battery bank will depend on the amp draw you plan to regularly place CHINAMFG it and the range of HangZhous you desire to travel. It is not easy to know the current draw before you try it as each boat is diffrent from others in hull shape, length, load, speed and daily operation hour you want, not like electric cars which is fixed for each car model in factory. Our expandable battery modules will make your life much easier to determine how big the battery bank you need to meet your purpose. You can just buy 1 battery module first to test boat performance with electric propel outboard and find out accurate amp draw for your special boat setup in diffrent speed. After initial boat testing, then you can easily figure out how many such battery modules required to get the boat speed and travel duration you want. You can easily parallel link up to 4 expandable battery modules to form a larger capacity battery bank by using our Scalable Battery Hub (QuadCell, see product photo below). You can use 2 such hubs to link up to 8 battery modules. Each battery module is light weight for 1 person to carry around. Each module has its own battery management system (built-in BMS) and charger. We have developed 2 models of battery module for different electric boats, 48V30AH and 48V50AH. Their features and functions are basically same except they have different capacities. All have its built-in LED meter.

Product Name: QuadCell

We choose the most safe LiFePO4 battery type for our expandable battery modules, the materials used inside battery cell will not
cause any fire or explosion. The quality of cell is very consistent and can last more than 2000 charging cycles. Its C-rating is 3
times, that means a single 48V50AH module can output 150A Continuously. That’s why you can buy just 1 or 2 battery modules
first, to test the outboard motor performance and get amperage to calculate before you know the exact battery capacity you need.

For example, your trial boat testing shows you the motor current drawn from battery module is around 65A, if you need to operate your boat for 3 hours, then you need 65A*3H=195Ah battery capacity to meet your minimum requirements, this tells that you have to buy 4 sets of 48V50AH (4*50Ah=200Ah) battery modules all together.

Why we choose 48V system for outboard motor and battery pack, because it is safe for human and easy to pass local government safety regulations. But we also offer 72V version outboards CHINAMFG request.

Of course, you can always buy other type of batteries from third party suppliers you can find locally, as long as its output voltage is 48V, and capacity is enough to drive the electric outboards.

Buy Accessories for Teleflex/Remote Control:

Teleflex Cabling Set, Stainless Steering Wheel, Remote Control Joystick Set

Customer photos

Company Profile

FAQ

Q: How Far / How Long can I drive with this motor ?
A: It depends on the battery you will use, and the design of your boat. So you must test it by yourself.

Q: What is the speed can it drive ?

A: It depends on the design of your boat. We tested it with 4.5m boat and can reach 15KMH.
 

Q: Can you ship the good to my country ?
A: 
Yes, we can ship the Samples by Express(DHL, FedEx and so on) to your door.
For big orders, we ship by sea to your sea port.
 

Q: What is the delivery time ?

A: For samples orders, it will take 1-2 weeks to ship your order. For bulk order, it will take 3-4 weeks to ship it.
 

Q: What is the shipping time ?
A: 
Delivery by Express will take 3-5 working days to reach your door. Delivery by sea will take 15-35 days to reach your port.
 

Q: What is the payment method ?
A: We accept Paypal, TT(Bank Transfer), Western Union, L/C…
 

Q: How can I make the order ?
A: You can make the order online through alibaba. You can also contact our sales to order it. Our sales will offer you the invoice and after-sale service.
 

Q: How can I distribute your EZ-Outboards ?
A: 
You need to make an initial order of 10000 USD and collect 5 PCS EZ outboards at least to become our official distributor. And we will make a distributor agreement with you.
 

Q: Do you offer warranty ?
A: 
Yes, we will offer 18 months warranty for our EZ-outboards.

Packaging & Shipping

Remote Control Tiller Control

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Cylinders: Electric
Fuel Type: Battery
Engine Capacity: 5HP
Samples:
US$ 2230/Piece
1 Piece(Min.Order)

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Order Sample

Customization:
Available

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Shipping Cost:

Estimated freight per unit.







about shipping cost and estimated delivery time.
Payment Method:







 

Initial Payment



Full Payment
Currency: US$
Return&refunds: You can apply for a refund up to 30 days after receipt of the products.

gear motor

What are the maintenance requirements for gear motors, and how can longevity be maximized?

Gear motors, like any mechanical system, require regular maintenance to ensure optimal performance and longevity. Proper maintenance practices help prevent failures, minimize downtime, and extend the lifespan of gear motors. Here are some maintenance requirements for gear motors and ways to maximize their longevity:

1. Lubrication:

Regular lubrication is essential for gear motors to reduce friction, wear, and heat generation. The gears, bearings, and other moving parts should be properly lubricated according to the manufacturer’s recommendations. Lubricants should be selected based on the motor’s specifications and operating conditions. Regular inspection and replenishment of lubricants, as well as periodic oil or grease changes, should be performed to maintain optimal lubrication levels and ensure long-lasting performance.

2. Inspection and Cleaning:

Regular inspection and cleaning of gear motors are crucial for identifying any signs of wear, damage, or contamination. Inspecting the gears, bearings, shafts, and connections can help detect any abnormalities or misalignments. Cleaning the motor’s exterior and ventilation channels to remove dust, debris, or moisture buildup is also important in preventing malfunctions and maintaining proper cooling. Any loose or damaged components should be repaired or replaced promptly.

3. Temperature and Environmental Considerations:

Monitoring and controlling the temperature and environmental conditions surrounding gear motors can significantly impact their longevity. Excessive heat can degrade lubricants, damage insulation, and lead to premature component failure. Ensuring proper ventilation, heat dissipation, and avoiding overloading the motor can help manage temperature effectively. Similarly, protecting gear motors from moisture, dust, chemicals, and other environmental contaminants is vital to prevent corrosion and damage.

4. Load Monitoring and Optimization:

Monitoring and optimizing the load placed on gear motors can contribute to their longevity. Operating gear motors within their specified load and speed ranges helps prevent excessive stress, overheating, and premature wear. Avoiding sudden and frequent acceleration or deceleration, as well as preventing overloading or continuous operation near the motor’s maximum capacity, can extend its lifespan.

5. Alignment and Vibration Analysis:

Proper alignment of gear motor components, such as gears, couplings, and shafts, is crucial for smooth and efficient operation. Misalignment can lead to increased friction, noise, and premature wear. Regularly checking and adjusting alignment, as well as performing vibration analysis, can help identify any misalignment or excessive vibration that may indicate underlying issues. Addressing alignment and vibration problems promptly can prevent further damage and maximize the motor’s longevity.

6. Preventive Maintenance and Regular Inspections:

Implementing a preventive maintenance program is essential for gear motors. This includes establishing a schedule for routine inspections, lubrication, and cleaning, as well as conducting periodic performance tests and measurements. Following the manufacturer’s guidelines and recommendations for maintenance tasks, such as belt tension checks, bearing replacements, or gear inspections, can help identify and address potential issues before they escalate into major failures.

By adhering to these maintenance requirements and best practices, the longevity of gear motors can be maximized. Regular maintenance, proper lubrication, load optimization, temperature control, and timely repairs or replacements of worn components contribute to the reliable operation and extended lifespan of gear motors.

gear motor

What is the significance of gear reduction in gear motors, and how does it affect efficiency?

Gear reduction plays a significant role in gear motors as it enables the motor to deliver higher torque while reducing the output speed. This feature has several important implications for gear motors, including enhanced power transmission, improved control, and potential trade-offs in terms of efficiency. Here’s a detailed explanation of the significance of gear reduction in gear motors and its effect on efficiency:

Significance of Gear Reduction:

1. Increased Torque: Gear reduction allows gear motors to generate higher torque output compared to a motor without gears. By reducing the rotational speed at the output shaft, gear reduction increases the mechanical advantage of the system. This increased torque is beneficial in applications that require high torque to overcome resistance, such as lifting heavy loads or driving machinery with high inertia.

2. Improved Control: Gear reduction enhances the control and precision of gear motors. By reducing the speed, gear reduction allows for finer control over the motor’s rotational movement. This is particularly important in applications that require precise positioning or accurate speed control. The gear reduction mechanism enables gear motors to achieve smoother and more controlled movements, reducing the risk of overshooting or undershooting the desired position.

3. Load Matching: Gear reduction helps match the motor’s power characteristics to the load requirements. Different applications have varying torque and speed requirements. Gear reduction allows the gear motor to achieve a better match between the motor’s power output and the specific requirements of the load. It enables the motor to operate closer to its peak efficiency by optimizing the torque-speed trade-off.

Effect on Efficiency:

While gear reduction offers several advantages, it can also affect the efficiency of gear motors. Here’s how gear reduction impacts efficiency:

1. Mechanical Efficiency: The gear reduction process introduces mechanical components such as gears, bearings, and lubrication systems. These components introduce additional friction and mechanical losses into the system. As a result, some energy is lost in the form of heat during the gear reduction process. The efficiency of the gear motor is influenced by the quality of the gears, the lubrication used, and the overall design of the gear system. Well-designed and properly maintained gear systems can minimize these losses and optimize mechanical efficiency.

2. System Efficiency: Gear reduction affects the overall system efficiency by impacting the motor’s electrical efficiency. In gear motors, the motor typically operates at higher speeds and lower torques compared to a direct-drive motor. The overall system efficiency takes into account both the electrical efficiency of the motor and the mechanical efficiency of the gear system. While gear reduction can increase the torque output, it also introduces additional losses due to increased mechanical complexity. Therefore, the overall system efficiency may be lower compared to a direct-drive motor for certain applications.

It’s important to note that the efficiency of gear motors is influenced by various factors beyond gear reduction, such as motor design, control systems, and operating conditions. The selection of high-quality gears, proper lubrication, and regular maintenance can help minimize losses and improve efficiency. Additionally, advancements in gear technology, such as the use of precision gears and improved lubricants, can contribute to higher overall efficiency in gear motors.

In summary, gear reduction is significant in gear motors as it provides increased torque, improved control, and better load matching. However, gear reduction can introduce mechanical losses and affect the overall efficiency of the system. Proper design, maintenance, and consideration of application requirements are essential to optimize the balance between torque, speed, and efficiency in gear motors.

gear motor

Can you explain the advantages of using gear motors in various mechanical systems?

Gear motors offer several advantages when utilized in various mechanical systems. Their unique characteristics make them well-suited for applications that require controlled power transmission, precise speed control, and torque amplification. Here’s a detailed explanation of the advantages of using gear motors:

1. Torque Amplification:

One of the key advantages of gear motors is their ability to amplify torque. By using different gear ratios, gear motors can increase or decrease the output torque from the motor. This torque amplification is crucial in applications that require high torque output, such as lifting heavy loads or operating machinery with high resistance. Gear motors allow for efficient power transmission, enabling the system to handle demanding tasks effectively.

2. Speed Control:

Gear motors provide precise speed control, allowing for accurate and controlled movement in mechanical systems. By selecting the appropriate gear ratio, the rotational speed of the output shaft can be adjusted to match the requirements of the application. This speed control capability ensures that the mechanical system operates at the desired speed, whether it needs to be fast or slow. Gear motors are commonly used in applications such as conveyors, robotics, and automated machinery, where precise speed control is essential.

3. Directional Control:

Another advantage of gear motors is their ability to control the rotational direction of the output shaft. By using different types of gears, such as spur gears, bevel gears, or worm gears, the direction of rotation can be easily changed. This directional control is beneficial in applications that require bidirectional movement, such as in actuators, robotic arms, and conveyors. Gear motors offer reliable and efficient directional control, contributing to the versatility and functionality of mechanical systems.

4. Efficiency and Power Transmission:

Gear motors are known for their high efficiency in power transmission. The gear system helps distribute the load across multiple gears, reducing the strain on individual components and minimizing power losses. This efficient power transmission ensures that the mechanical system operates with optimal energy utilization and minimizes wasted power. Gear motors are designed to provide reliable and consistent power transmission, resulting in improved overall system efficiency.

5. Compact and Space-Saving Design:

Gear motors are compact in size and offer a space-saving solution for mechanical systems. By integrating the motor and gear system into a single unit, gear motors eliminate the need for additional components and reduce the overall footprint of the system. This compact design is especially beneficial in applications with limited space constraints, allowing for more efficient use of available space while still delivering the necessary power and functionality.

6. Durability and Reliability:

Gear motors are designed to be robust and durable, capable of withstanding demanding operating conditions. The gear system helps distribute the load, reducing the stress on individual gears and increasing overall durability. Additionally, gear motors are often constructed with high-quality materials and undergo rigorous testing to ensure reliability and longevity. This makes gear motors well-suited for continuous operation in industrial and commercial applications, where reliability is crucial.

By leveraging the advantages of torque amplification, speed control, directional control, efficiency, compact design, durability, and reliability, gear motors provide a reliable and efficient solution for various mechanical systems. They are widely used in industries such as robotics, automation, manufacturing, automotive, and many others, where precise and controlled mechanical power transmission is essential.

China Professional 5HP Long/short shaft All-in-One Gear-Less Design EZ Electric Outboard Motor with CE certificate   with high quality China Professional 5HP Long/short shaft All-in-One Gear-Less Design EZ Electric Outboard Motor with CE certificate   with high quality
editor by CX 2024-04-11

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