JBL Arena Series Component Subwoofer Owner’s Manual
- June 12, 2024
- JBL
Table of Contents
JBL Arena Series Component Subwoofer
Product Information – Arena Subwoofer
Language | Manual |
---|---|
EN | Owner’s Manual |
FR | Mode d’emploi |
ES | Manual del propietario |
RU | |
ZH-CN | |
ID | Manual Pengguna |
TH |
Product Usage Instructions – Arena Subwoofer
WARNING: Playing loud music in a vehicle can hinder your ability to hear traffic and can permanently damage your hearing. The maximum volume levels achievable by JBL speakers when combined with high-power amplification may exceed safe levels for extended listening. Using low-volume levels is recommended when driving. JBL, Inc., accepts no liability for hearing loss, bodily injury, or property damage as a result of use or misuse of this product.
REPRODUCING BASS IN VEHICLES: Depending on the size of your vehicle’s
interior listening space, reproduced bass frequencies below 80Hz will be
boosted by nearly 12dB per octave as frequency decreases. This phenomenon,
known as the vehicle’s transfer function (or cabin gain), plays an important
role in
shaping the subwoofer’s frequency response in your vehicle.
SUBWOOFER ENCLOSURE TYPES:
The subwoofer is designed to perform best in moderately sized sealed
enclosures, vented enclosures, and prefabricated bandpass enclosures. Infinite-
baffle mounting is possible, but the subwoofer’s mechanical power-handling will
be reduced because there will be no volume of air to stiffen the subwoofer’s
suspension and prevent over excursion. If you choose infinity-baffle mounting,
consider the RMS and peak power-handling ratings to be half of what is listed
in the specifications in this manual. You should choose and enclosure type
based on the amount of cargo space you can devote to the enclosure, the amount
of power you will use to drive your subwoofer(s), and your listening habits.
SEALED ENCLOSURES
The air trapped inside a sealed enclosure is compressed when the subwoofer moves rearward and is rarefied when the subwoofer moves forward. In both cases, the air inside and outside the box will seek equilibrium by pushing and pulling on the subwoofer cone. The result is a stiffer suspension when compared to the subwoofer operating in free air. This means that the subwoofer’s cone will be harder to move at low frequencies, a condition which protects the subwoofer from physical overexertion but requires more power than other designs to achieve a given acoustic output.
SEALED ENCLOSURE PERFORMANCE ADVANTAGES:
- Straightforward construction
- Forgiving of errors in volume calculation
- The in-vehicle performance will have the flattest overall frequency response.
- The in-vehicle response will have the widest bandwidth. (Usable low-frequency response inside the vehicle will be below 20Hz.)
- An optimum sealed enclosure will always be smaller than an optimum enclosure of another type.
SEALED ENCLOSURE PERFORMANCE TRADE-OFFS:
- Requires more power to achieve a given acoustic output
- An optimum sealed enclosure will have lower overall efficiency than an optimum enclosure of another type.
- A subwoofer in an optimum sealed enclosure will require more amplifier power to achieve a given acoustic output than in an optimum enclosure of another type.
SEALED ENCLOSURE CONSTRUCTION:
Sealed-enclosure construction is straightforward and forgiving of errors in
volume calculation, but air leaks should be avoided. Use medium-density
fiberboard (MDF), glue, and screws to construct the enclosure, and seal all
joints with silicone caulk.
RECOMMENDATION:
Subwoofers in sealed enclosures are recommended for enthusiasts who prefer
accurate music reproduction and flat frequency response, for those who have a
smaller space to devote to a subwoofer enclosure, and for those who have
plenty of amplifier power devoted to driving the subwoofer. The sealed-
enclosure design indicated in this manual represents the best compromise
between low-frequency extension and flat response.
VENTED ENCLOSURES:
A vented enclosure acts like a sealed enclosure at frequencies above its
tuned (resonance) frequency. At resonance (which is defined by the vent), the
vent produces the majority of sound- the subwoofer cone is nearly stationary
while the air inside the vent vibrates. This provides greater mechanical power
handling at and above resonance, but reduced mechanical power handling below
resonance. Since the subwoofer cone and voice coil do not move much at
resonance, airflow across the voice coil is minimized and thermal power
handling is reduced slightly at resonance. Vented enclosures provide better
efficiency in the 40Hz – 60Hz range, at the expense of sound output in the
lowest octave (below 40Hz). The use of an infrasonic filter is recommended with
vented enclosures. An optimum vented enclosure for a Series subwoofer is
larger than an optimum sealed enclosure.
VENTED ENCLOSURE PERFORMANCE ADVANTAGES:
- Improved low-frequency extension
- Higher efficiency compared to sealed enclosures
- An optimum vented enclosure has greater efficiency and higher output in the 40Hz – 60Hz range than an optimum sealed enclosure.
- An optimum vented enclosure provides a greater sensation of bass than an optimum sealed enclosure.
- A subwoofer in an optimum vented enclosure will require less amplifier power to achieve a given acoustic output (down to the enclosure’s resonance frequency) than in an optimum sealed enclosure.
VENTED ENCLOSURE PERFORMANCE TRADE-OFFS:
- More complex construction
- Reduced output in the lowest octave (below 40Hz).
- Reduced mechanical power handling below the enclosure’s resonance frequency. The use of an electronic infrasonic filter is strongly recommended to reduce the chance of overdriving the subwoofer below the enclosure’s resonance frequency.
- An optimum vented enclosure will always be larger than an optimum sealed enclosure.
VENTED ENCLOSURE CONSTRUCTION:
Vented-enclosure construction is more difficult than the construction of a
sealed enclosure. The enclosure volume and port dimensions have a specific
relationship with the physical and electromechanical characteristics of the
subwoofer, requiring that the recommended enclosure volume and port
characteristics be strictly observed. As with sealed enclosures, use medium-
density fiber board (MDF), glue, and screws to construct the enclosure, and
seal all joints with silicone caulk.
RECOMMENDATION
Subwoofers in vented enclosures are recommended for enthusiasts who prefer
accentuated bass response, for those who have plenty of cargo space to devote
to a subwoofer enclosure and for those who will use a less powerful amplifier
to drive their subwoofer. The volume and port dimensions indicated must be
followed precisely to ensure optimum performance.
THANK YOU FOR CHOOSING A JBL ARENA SUBWOOFER
It has been designed to suit a broad range of car audio applications and can
be used in a wide variety of enclosure types to produce extended, powerful
bass in a limited amount of vehicle space. To get the most performance from
your new subwoofer, it is strongly recommended that you have a qualified
professional install it. Although this manual provides general instructions
about installing the subwoofer, it does not include enclosure construction
details or exact installation methods for any particular vehicle. If you do
not feel that you have the necessary experience, do not attempt the
installation yourself, but instead ask your authorized JBL dealer about
professional installation options.
Remember to keep your sales receipt in a safe place, along with this manual,
so that both are available for future reference.
WHAT’S IN THE BOX
WARNING
Playing loud music in a vehicle can hinder your ability to hear traffic and can
permanently damage your hearing. The maximum volume levels achievable by JBL
speakers when combined with high-power amplification may exceed safe levels for
extended listening. Using low-volume levels is recommended when driving. JBL,
Inc., accepts no liability for hearing loss, bodily injury, or property damage
as a result of use or misuse of this product.
MOUNTING THE SUBWOOFER
The subwoofers should be mounted from the outside of the enclosure. Use the
included foam mounting gasket to ensure a leak-free seal between the subwoofer
frame and the enclosure.
CONNECTING THE AMPLIFIER
The subwoofer connectors are compatible with bare wire ends. The recommended
wire gauge is between 14AWG and 8AWG, depending on the length of the wire run
between the amplifier and woofer. Heavier gauge wire is preferred for runs over
6′ (2m). To connect the speaker wire coming from your amplifier, push down on
the terminal to expose the connection hole. Thread the bare wire end through
the hole, then release the terminal to secure. Be sure to observe proper wire
polarity for maximum performance.
TECHNICAL DATA
THIELE-SMALL PARAMETERS
SKUs | Arena 8 inch | Arena 10 inch | Arena 12 inch | |
---|---|---|---|---|
SSI | ||||
2Ohm | SSI | |||
4Ohm | SSI | |||
2Ohm | SSI | |||
4Ohm | SSI | |||
2Ohm | SSI |
4Ohm
Voice coil DC resistance:| REVC (OHMs)| 1.81| 3.52| 2.15| 4.23| 2.24| 4.4
Voice coil inductance @ 1kHz:| LEVC (mH)| 0.666| 0.213|
1.252| 0.586| 1.291| **** 0.621
Driver radiating area:| SD (IN2)| 32.742| 32.742| 51.159| 51.159| 79.160|
79.160
SD (CM2)| 211.24| 211.24| 330.06| 330.06| 510.71| 510.71
Motor force factor:| BL (TM)| 9.036| 11.467| 10.21| 11.574| 10.231| 13.299
Compliance Volume:| VAS (FT3)| 0.269| 0.287| 0.587| 0.616| 1.287| 1.343
VAS (Liters)| 7.612| 8.123| 16.621| 17.436| 36.438| 38.042
Suspension compliance:| CMS
(mm/N)
| 0.121| 0.129| 0.108| 0.113| 0.099| 0.103
Moving mass, air load:| MMS
(Grams)
| 97.625| 92.094| 199.537| 191.29| 260.86| 251.57
Free-air resonance:| FS (Hz)| 46.4| 46.2| 34.3| 34.2| 31.4| 31.3
Mechanical Q:| QMS| 13.157| 4.019| 9.577| 5.175| 11.919| 5.518
Electrical Q:| QES| 0.635| 0.716| 1.146| 1.3| 1.1| 1.229
Total Q:| QTS| 0.601| 0.608| 1.023| 1.039| 1.007| 1.005
Magnetic- gap height:| HAG (IN)| 0.315| 0.315| 0.315| 0.315| 0.394| 0.394
HAG (mm)| 8| 8| 8| 8| 10| 10
Voice coil height:| HVC (IN)| 1.339| 1.339| 1.181| 1.181| 1.260| 1.260
HVC (mm)| 34| 34| 30| 30| 32| 32
Maximum excursion:| XMAX (IN)| 0.512| 0.512| 0.433| 0.433| 0.433| 0.433
XMAX (mm)| 13| 13| 11| 11| 11| 11
SEALED-BOX VOLUME (INCLUDES DRIVER DISPLACEMENT)
SKUs | Arena 8 inch | Arena 10 inch | Arena 12 inch |
---|---|---|---|
VBOX | 0.58 ft³ (16.4 Liters) | 0.96 ft³ (27.1 Liters) | 1.51 ft³ (42.8 Liters) |
fc | 56.4Hz | 43.6Hz | 42.7Hz |
VENTED-BOX VOLUME (INCLUDES DRIVER DISPLACEMENT)
SKUs | Arena 8 inch | Arena 10 inch | Arena 12 inch |
---|---|---|---|
VBOX | 0.58 ft³ (16.4 Liters) | 0.96 ft³ (27.1 Liters) | 1.51 ft³ (42.8 Liters) |
fB | 47.1Hz | 37.9Hz | 34.3Hz |
Length | 7.87 inch (200 mm) | 8.66 inch (220 mm) | 8.66 inch (220 mm) |
Diameter | 2.56 inch (65 mm) | 2.76 inch (70 mm) | 3.15 inch (80 mm) |
Recommended box inner size
Enc. | W | H | D |
---|---|---|---|
mm | in. | mm | in. |
Arena 8 inch | Sealed Box | 307 | 12.09 |
Ported Box | 307 | 12.09 | 318 |
Arena 10 inch | Sealed Box | 373 | 14.69 |
Ported Box | 373 | 14.69 | 363 |
Arena 12 inch | Sealed Box | 434 | 17.09 |
Ported Box | 434 | 17.09 | 423 |
DIMENSION
SPECIFICATIONS
SKUs | Arena 8 inch | Arena 10 inch | Arena 12 inch |
---|---|---|---|
Sensitivity (2.83V@1M): | 89.3 | 85.4 | 87.6 |
Power handling: | 400 | 700 | 800 |
Frequency response: | 50~1.5K | 36~1.5K | 29~1.5K |
Nominal impedance: | 2Ω or 4Ω | 2Ω or 4Ω | 2Ω or 4Ω |
Voice coil diameter: | 50.8 | 65.5 | 65.5 |
Mounting depth (A): | 131.5mm | 156.5mm | 171.7mm |
Magnet diameter (B): | 153.8mm | 195.8mm | 214.6mm |
Inner diameter (C): | 198mm | 253mm | 305mm |
Cutout diameter (D): | 185mm | 235mm | 287mm |
Outer diameter (E): | 220mm | 276mm | 330.4mm |
Total height (F): | 152mm | 179mm | 192.7mm |
HARMAN International Industries, Incorporated 8500 Balboa Boulevard,
Northridge, CA 91329 USA
www.jbl.com
© 2023 HARMAN International Industries, Incorporated. All rights reserved. JBL
is a trademark of HARMAN International Industries, Incorporated, registered in
the United States and/or other countries. Features, specifications and
appearance are subject to change without notice.
References
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