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Comparison Mystery MJS-10 vs Mystery MJS-10F

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Mystery MJS-10
Mystery MJS-10F
Mystery MJS-10Mystery MJS-10F
from $36.56 up to $43.00
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from $39.81 up to $40.96
Outdated Product
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Application areacarcar
Designwithout bodyFreeAir (without case)
Typepassivepassive
Size10" (25 cm)10" (25 cm)
Tech specs
Rated power200 W200 W
Max. power400 W400 W
Frequency range28 – 2900 Hz31 – 3000 Hz
Sensitivity90 dB90 dB
Impedance4 ohm4 ohm
General
Diffuser materialcomposite
Woofer Diameter250 mm250 mm
Added to E-Catalogjuly 2012july 2012

Design

In the body. Subwoofers consisting of a full-fledged enclosure in which the speaker (speakers) is installed. Usually they are designed to be installed in the boot. Cabinet models are easy to install, but take up a significant amount of space, and in most cases have some phase delay that requires phase adjustment (see below) to synchronize with the front speakers.

Without body. This category includes subwoofers designed to work in their own cabinet, but not equipped with it (not to be confused with Free Air — see below). Thus, having bought such a speaker, you can choose a case for it at your discretion — or even make it yourself. This, of course, is more difficult than immediately acquiring a cabinet “subwoofer”, however, it gives more opportunities for adjusting the acoustics to personal preferences. Other advantages and disadvantages of frameless models are similar to case models.

Without body (Free Air). Car subwoofers of this type are not only not equipped with a case, but they do not imply its use at all: usually Free Air models are designed for installation in the rear shelf or back of the rear seat, and the boot plays the role of the case. The advantages of such an installation are the minimum space occupied (which is important with small boot volumes), as well as the almost complete absence of delay and the ease of “docking” with the main c...hannels of the audio system. On the other hand, installing a Free Air subwoofer in itself is associated with a number of difficulties. For example, for the effective operation of such a speaker, the boot must be hermetically separated from the passenger compartment; it is quite difficult to provide such conditions, and in some body types (for example, station wagons) it is almost impossible. In addition, such a speaker has much less ability to adjust to a specific interior than a cabinet one; and with a tightly loaded boot, the sound characteristics deteriorate noticeably. Therefore, paying attention to such “subs” is primarily for owners of sedans who do not have to carry a lot of luggage.

Frequency range

The range of audio frequencies reproduced by the subwoofer. It is believed that the human ear is capable of perceiving a frequency range of the order of 16 – 20,000 Hz, but in this case note that the subwoofer is designed to reproduce the lower frequency band (up to 200 Hz). Accordingly, in the case of the lower limit of the range, everything is simple: “the lower, the better”; the upper one should not be lower than the lower limit of the main car audio — otherwise there will be "gaps" in the frequencies, which will affect the sound quality.

Diffuser material

The material from which the speaker cone in the subwoofer is made. Determines the sound quality and, to some extent, the cost of the device.

— Pulp/paper. Historically the first diffuser material. Its advantages are lightness (which ensures high speaker sensitivity), as well as a smooth frequency response (amplitude-frequency response), which positively affects the sound quality. Among the shortcomings — low strength, which limits the power of such subwoofers, as well as softness, somewhat "blurring" the sound in difficult moments. In addition, paper diffusers are sensitive to moisture.

— Polypropylene. Synthetic polymer, in some aspects similar to paper, but differing from it in higher strength and resistance to moisture. It also has a smooth frequency response. Somewhat more cruel, but still belongs to the soft.

— Polyurethane. Another polymer material. At a low cost, it is somewhat stiffer than polypropylene, and is also very resistant to mechanical stress, which allows you to create powerful speakers.

— Kevlar. Kevlar fibre is highly durable (higher than steel); it also has good rigidity, which has a positive effect on fidelity in difficult moments. However, such diffusers are not cheap.

— Carbon fibre. It belongs to premium materials: it has high strength at a very low weight, and in the case of subwoofers, it is also worth mentioning the good rigidity that ensures a clear sound. Among the shortcomings — a somew...hat uneven frequency response and an impressive cost.

— Carbon. Another name used for carbon fibre is mainly for promotional purposes, for brevity and “impressiveness” of sound. See above for more details on carbon fibre.

— Fibreglass. Such material consists of ordinary glass stretched into filaments; unlike the classical form of glass, such threads do not break or break. It's lightweight (respectively sensitive), relatively cheap, resistant to moisture and temperature changes, and still provides good (though not outstanding) sound quality.

— Composite materials. Composite is a material that consists of two or more materials with a clear separation between them. In subwoofer cones, carbon fibre composites (based on carbon fibre, see above) are most often used. Such diffusers have all the advantages of carbon fibre and are able to provide good sound quality — however, due to the characteristics of the frequency response of the material, rather complex electronic circuits have to be used to achieve this quality, which affects, in particular, the price of subwoofers.

— Aluminium. Aluminium cones have the highest rigidity of all, which ensures high fidelity of sound transmission even in difficult moments. The "reverse side of the coin" in this case are their own extraneous "ringing" that occurs in the diffuser. To eliminate them, you have to use various tricks that significantly complicate the design and increase the price of the subwoofer.

Note that each material has its own characteristics and shades of sound, which you should pay attention to when choosing — a more expensive and high-quality material will not necessarily give a sound that you personally will like more.
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