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Comparison Formula Zephyr 1.0 AM HDD 29 2024 frame 19 vs Leon TN-80 AM 2024 frame 19

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Formula Zephyr 1.0 AM HDD 29 2024 frame 19
Leon TN-80 AM 2024 frame 19
Formula Zephyr 1.0 AM HDD 29 2024 frame 19Leon TN-80 AM 2024 frame 19
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Model year20242024
Type
mountain (MTB)
mountain (MTB)
Max weight100 kg100 kg
Frame and suspension
Frame size19"19"
Recommended height175 – 190 cm175 – 185 cm
Frame materialaluminiumaluminium
Suspensionhardtailhardtail
Suspension type (fork)spring-elastomeroil-spring
Fork travel100 mm100 mm
Fork lockout
SeatpostJiashihe JSH-327Zoom
Wheels and brakes
Wheel size29 "29 "
TyreWanda Compass W3104Kenda K1153
Rim materialaluminiumaluminium
Rimdouble walldouble wall
Front brakehydraulic dischydraulic disc
Front brake modelYinxing M220Shimano MT200
Front rotor160 mm160 mm
Rear brakehydraulic dischydraulic disc
Rear brake modelYinxing M220Shimano MT200
Rear rotor160 mm160 mm
Front hub modelWangzhen 282FBQARC MT-001F
Rear hub modelWangzhen 282RBQARC MT-001R
Handlebar and transmission
Speeds1024
Chainrings13
Freewheel cogs108
Freewheel/cassette modelSunshine HR10Shimano HG200, 12-32T
Crank modelHaoxing HX-A024, 34T
Bottom bracket modelXuHua XH-08AVP-BC73
Front derailleurShimano Altus M310
Rear derailleurL-TWOO V5010Shimano Altus M310
Shifter typetriggertrigger
Shifter modelL-TWOO V5010Shimano Altus M315
Chain modelTESKMC Z8
Handlebar typestraightstraight
StemJiashihe JSH-306Zoom TDS-C302
Handlebar modelLeon YC-B100
HeadsetXinjin D13Feimin FP-H868P
General
Equipment
kickstand
chain guard
Saddle modelCRO 2503-01
Pedal modelTenghui KW-P236
Weight16 kg
Added to E-Catalogfebruary 2025august 2024
Glossary

Recommended height

The user's height recommended by the manufacturer is calculated according to several parameters. One is the wheel diameter, and the second and more important is the frame size. If everything is simple with the wheel size — it is round and always the same, then the frame size complicates the choice. Different types of bicycles have their own frame shape, so even the same size can be suitable for different heights. And this is not to mention the features of the manufacturer, who like to do everything for themselves, and not in a general manner. Therefore, the size of the frame of each bicycle has its own size and it is still better to choose a bicycle by personally “saddling” it. If this is not possible, then our point will tell you what height, according to the manufacturer, this configuration (frame + wheel) of the bike is designed for.

Suspension type (fork)

Front fork suspension type (if available, see "Suspension"). All shock absorption systems in bicycles work in two directions: vibration damping (damping) and impact energy absorption (cushioning). Accordingly, they have two main components: a damper and a shock absorber. Depending on the design features of these elements, the following types of depreciation are distinguished:

Spring-elastomer. In this case, the role of a shock absorber is played by an elastic spring, and the role of a damper is played by a rod made of an elastic, well-compressible material, the so-called elastomer. This type appeared as a development of conventional spring damping systems, it is more durable, but poorly suited for low temperatures — the elasticity of the elastomer in such conditions decreases, which negatively affects the characteristics of the system.

Spring-oil. Systems using a spring as a shock absorber and an oil cartridge as a damper. This design is somewhat more resistant to low temperatures than spring-elastomer, and in general has quite good characteristics, due to which it is quite widely used in various types of bicycles. The main disadvantage is the higher (on average) cost.

Air-oil. Combined systems consisting of an air cylinder that acts as a shock absorber and an oil cartridge that acts as a damper. They appeared as a development of “pur...e” air systems, which had a serious drawback: even with high-quality maintenance, the seals wore out rather quickly, which could disable the shock absorber. Air-oil systems are more durable and easier to maintain, while being quite efficient and weighing little. The latter is especially valuable for cross-country (see "Purpose"), where it is required to combine depreciation with a low weight of the machine.

Seatpost

The model of the seatpost used in the bicycle.

Usually, this information is indicated if a high-quality part is used as a seat post. Knowing the name, you can find its detailed characteristics and descriptions; this is unlikely to be needed for light everyday driving, but may be useful for professional use.

Tyre

Tyre model supplied with the bike as standard. Different tyres have different purposes and characteristics; knowing the tyre model, you can clarify these points and check how they correspond to your wishes. This is especially important when choosing a machine for serious cycling.

Front brake model

Model of the brake used on the front wheel of a bicycle.

Knowing a specific brand of brake system components, you can find technical documentation for it or, for example, study brake reviews on the Internet. For more information about the types of brakes on the front wheel, see "Front brake".

Rear brake model

Model of the brake used on the rear wheel of a bicycle.

Knowing a specific brand of brake system components, you can find technical documentation for it or, for example, study brake reviews on the Internet. For more information about the types of brakes on the rear wheel, see "Rear brake".

Front hub model

The model of the hub used in the front wheel of a bicycle.

The hub is the central part in the wheel through which the axis of rotation passes. Features of the behavior of a bicycle depend on its characteristics, in particular, “rolling” (the ability to move by inertia, without pedaling). Knowing the model of the front hub, you can clarify its characteristics according to the manufacturer's documentation, find reviews from other users, etc., in order to determine how this model suits you.

Rear hub model

Model of the hub used in the rear wheel of a bicycle. See Front Hub Model for details.

Speeds

The number of speeds (gears) provided for in the design of the bicycle. Each transfer has its own so-called gear ratio — in this case it can be described as the number of revolutions that the driven gear (rear, on the wheel) makes in one revolution of the leading gear (associated with the pedals).

Different gear ratios will be optimal for different conditions: for example, high gears provide good speed, but are poorly suited for overcoming obstacles, because. the effort on the pedals increases significantly and the frequency of their rotation decreases. It has been scientifically proven that a cyclist develops maximum power at a cadence of about 80-100 rpm. Thus, the presence in the bike of several speeds allows you to optimally adjust it to different driving modes and features of the tracks in order to provide optimal pedaling force and frequency of their rotation. For example, on smooth asphalt it is best to drive in a high gear, and when overcoming a rise or entering a dirt road, you can lower it in order to effectively overcome resistance.

The number of gears in classic systems is directly related to the number of stars of the system (on the bottom bracket with pedals) and the cassette (on the rear wheel); it can be obtained by multiplying two numbers — for example, 3 stars of the system and 6 on the cassette give 18 gears. However, there is also the so-called planetary hubs — there are stars one at a time, and gear shifting is carried out by a mec...hanism built into the rear hub.

Note that the optimal number of gears depends on the purpose of the bike (see above), and it is not always necessary to have several of them. So, in mountain models, depending on specialization, there can be from 8 to 30 gears, in road ones — within 20-30, and some inexpensive city bikes and most BMXs do not have a gear shift system at all.
Leon TN-80 AM 2024 frame 19 often compared