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Comparison Ninebot KickScooter P100SE vs Ninebot KickScooter GT1E

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Ninebot KickScooter P100SE
Ninebot KickScooter GT1E
Ninebot KickScooter P100SENinebot KickScooter GT1E
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Main
Self-healing tyres. Built-in USB Type-C charging port. 10W headlight. Daytime Running Lights. Direction indicators. NFC technology to unlock and lock the scooter.
Built-in front and rear turn indicators. Intelligent Battery Management System (BMS). Front, rear and side E-MARK reflectors. Daytime Running Lights.
Max. load120 kg150 kg
Foldable
Performance
Range100 km70 km
Power650 W500 W
Max. power1350 W1500 W
Max. speed25 km/h25 km/h
Speed modes
/5, 18, 20 and 25 km/h/
3
Pedestrian mode
Max. climbing angle13 °13 °
Driverearrear
Wheels
rubber air-filled
10.5 "
rubber air-filled
11 "
Front brakediscdisc
Rear brakedisc and electricdisc
Suspensionfront and rearfront and rear
Regenerative
Battery
Battery capacity23 Ah20 Ah
Voltage47.2 V50.4 V
Full charge time7 h12 h
Features
Display
App control
USB charging outputUSB A
Headlight
Turn signals
Brake lights
Signal / bell
Stand
Dustproof, waterproofIPX5IPX4
General
Frame materialaluminiumaluminium
Size118х63х129 cm149х66х131 cm
Dimensions (folded)118х63х64 cm149х66х86 cm
Weight33 kg47.6 kg
Color
Added to E-Catalogmarch 2023march 2023

Max. load

The maximum weight of the rider that the design of the scooter can withstand without breakdowns and accidents. This moment is partly determined by the age group, and mainly by the materials used in the frame. Note that manufacturers can indicate the maximum load for perfect conditions - when the scooter rides on a perfectly flat surface or even stands still. Therefore, it is worth choosing a model for this parameter with a certain margin. And even more so, you should not exceed the weight indicated in the characteristics - even if the scooter does not break down immediately, this can happen at any time after, which is fraught with accidents and injuries.

Range

The maximum distance that an electric scooter can travel on a single battery charge.

Usually the range is indicated for a flat road and driving only on an electric motor, without the help of a rider. So this indicator is quite conditional, in practice, the distance of the trip may be either less or more, depending on the characteristics of the road and driving style. Nevertheless, according to the claimed range, it is quite possible to estimate the autonomy of different models and compare them with each other.

Note that a large range (more than 50 km) requires capacious batteries, which affects the dimensions and weight of the device. The real need for such autonomy is not required so often, especially since many electric scooters are quite capable of driving in the usual way, without the use of an electric motor.

Power

The power of the motor installed in the electric scooter. In models with two motors (one per wheel), their total power is usually indicated.

A more powerful motor, on the one hand, has a positive effect on the speed and acceleration characteristics; on the other hand, it affects the cost of the device and requires more capacious batteries, which affect both the price and weight. In addition, at acceleration and low speeds, the scooter can be “helped” by pushing off with your foot. Therefore, in most modern models, the motor power is low — most often in range of 250 W, 300 W, 350 W. Power of 500 W is considered quite high, it allows you to reach speeds of 40 km/h and even higher. In the most advanced models, power is already measured in kilowatts, and the maximum speed can exceed 80 km/h; however, such "monsters" cost accordingly.

However, power also affects the ability to drive a vehicle, because depending on the country, various traffic rules are provided for driving a scooter.

Max. power

The power in watts that the electric scooter motor can develop at maximum speed. In general, for scooters with an electric drive, it is customary to indicate the rated engine power (see above), which ensures efficient operation of the motor for a long time. By maximum we mean power in the “gas to the floor” mode, achieved only in the short term. Using this parameter, you can roughly estimate the capabilities of a particular model, for example, in terms of speed dynamics - the more power, the faster the scooter accelerates.

Speed modes

The number of speed modes in the electric scooter. By switching between them, the rider has the right to choose the most comfortable pace of the trip and change the upper speed limit bar.

Pedestrian mode

The slowest speed mode (approximately from 0 to 5 – 6 km/h), ideal for use in crowded places, children and beginners. It controls the e-scooter while it moves at a safe speed for pedestrians to avoid collisions on crowded sidewalks. Pedestrian mode is also suitable for leisurely walks and side-by-side trips with walking friends.

Wheels

The type and size of wheels used in an electric scooter.

The size is selected by the manufacturer depending on the general purpose of the scooter - whether it is an asphalt road or rough terrain. If we compare similar models with different wheel diameters, then it is worth considering that the larger the wheels, the better they work out the bumps in the road, the higher the cross-country ability and softness of the ride. And small wheels, in turn, are great for smooth asphalt and dynamic driving, they easily accelerate and allow you to make sharp turns.

As for the different types of wheels, there are polyurethane, rubber, inflatable. More about each:

- Polyurethane. Wheels with solid polyurethane tyres. This material provides good cushioning, high-quality grip and at the same time good rolling; it is resistant to temperature extremes and damage, durable, while it is inexpensive.

— Rubber. In this case, we mean wheels with a solid rubber tyre (inflatable wheels are moved to a separate pick-up point). According to the main characteristics, rubber is similar to the polyurethane described above, and in some moments even surpasses it. So, such tyres do not make noise, smooth out the roughness of the asphalt well, have excellent grip and provide high braking efficiency. On the other hand, this material is less durable and does not tolerate temperature extremes.

— Inflatable. The most advanced type of wheels found in modern...scooters. Wheels of this type have an inflatable tyre (as in bicycles), which provides excellent shock absorption, tight grip and high flotation. The disadvantages of inflatable tyres, in addition to the price, include sensitivity to punctures and increased maintenance complexity: you need to monitor the pressure and, if necessary, inflate the tyre.

Rear brake

Like a handbrake, the rear brake can be drum, electric, or disc. In addition, there may still be a classic foot brake, as in ordinary scooters, or not at all.

— Disk. The disc brake on the rear wheel ensures a quick stop of the scooter. These brakes have a short-stroke friction clutch. Due to the small distance between the pads and the disc, the friction clutch very quickly comes into contact with the working surface of the brake disc. In this case, the friction clutch is pressed against the disk with a sufficiently large force. The disc brake allows the scooter to stop extremely efficiently. But when using a disc brake on the rear wheel, you should be careful, because when braking hard, especially when cornering, the scooter can skid to the side.

- Drum. The drum type brake has above average efficiency. The drum brake makes the rear wheel massive and heavy. This type of brake has a closed design. The pads are inside the wheel. Friction linings rub against the inner surface of the rim. Access to the drum brake is closed by a protective cover. Thanks to the closed design, neither moisture nor other blockages get inside the brake drum, which makes the brake operation more reliable and trouble-free. Among the shortcomings can be noted: an increase in the dimensions and weight of the wheel, the complexity of maintenanc...e.

- Foot. The simplest kind of clamping type brakes, which involves slowing down and stopping the scooter by pressing your foot on the fender of the rear wheel. Note that this is the least efficient braking system of the existing options.

- Electric - braking with the help of recuperation. The brake system of this type makes the stop extremely soft, slowing down occurs when the speed of the electric motor decreases. The rear location of the electric brake assumes that the electric motor is mounted on the rear wheel. The presence of an electric motor makes the wheel massive. The electric type brake system is highly reliable and durable, it does not require maintenance. But if the battery pack on the scooter runs out, the electric brake will not work. For such cases, an additional mechanical (hand or foot) brake is usually provided.

- Absent. The rear wheel is not equipped with a brake. In this case, the braking system is provided at the front. The advantage of scooters without a rear brake is that the vehicle will not skid to the side when braking actively when cornering.

Regenerative

Possibility of electric scooter operation in recuperation mode. In this mode, the direction of the current starts “in the opposite direction”: the electric motors in the wheels work like generators, generating electricity and recharging the battery. In this case, the speed must be maintained either due to repulsion from the ground, or due to coasting from a hill. Properly using recuperation, you can significantly increase the power reserve: for example, it is good to turn on this mode on long descents or on long, flat sections of the road where it is easy to drive in the usual way, without using electric motors.
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