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This 6" HOQS speaker driver with a carbon fiber cone and neodymium magnet, has great sensitivity with minimal distortion.
Its advanced design offers improved low end response due to its optimized compliance, making it the perfect candidate for horn loaded systems.
The perfect match for the Arrayable HOQS MidWave Module kit, available from and designed by Lewis Cafaro of HOQS USA hoqs.shop/products/hoqs-2x6-midwave-module-kit
2" Copper voice coil
Preinstalled front and rear mounting gasket
200W "Nominal" power handling.
400W "Program" power handling.
50mm (2") diameter Oxygen Free Copper coil on a fiberglass former.
Low inductance neo motor with abundant force for its class.
High compliance suspension combined with light moving mass.
Sturdy cast aluminum frame.
Nominal Diameter
6"
Power Handling
200W "Nominal"
Power Handling
400W "Program"
Voice Coil Diameter
50mm / 2"
Nominal Impedance
8 Ohms
Winding Material
Oxygen Free Copper
Former Material
Fibreglass
Winding Height
15 mm
Magnetic Gap Depth
10 mm
Sensitivity
94.7 dB 1w/1m
Frequency range
70 - 6,000 Hz
Cone Material
Carbon Fibre
Magnetic Material
Neodymium
Ventilation
Pole
Surround & Spider
Polycotton blend
Disclaimer: Thiele/Small
The Thiele/Small parameters of a loudspeaker driver are measured under specific testing conditions, which may not accurately reflect the performance of the driver in all real-world situations. These parameters are typically measured in a laboratory setting, using specialized equipment and carefully controlled test conditions.
As such, the Thiele/Small parameters should be considered as a useful starting point for designing loudspeaker systems, but they may not accurately represent the behavior of the driver in all real-world scenarios. Factors such as enclosure design, room acoustics, and amplifier characteristics can all affect the performance of a loudspeaker driver.
It is important to note that the Thiele/Small parameters are not the only consideration when selecting a driver for a particular application. Other factors, such as power handling, frequency response, and distortion characteristics, should also be taken into account when designing a loudspeaker system.
Ultimately, the best way to evaluate the performance of a loudspeaker driver is to listen to it in a real-world setting, and to compare it with other drivers under similar conditions.
Sd - Area of the driver diaphragm
136.85 cm²
Qts - Elec & Mech damping
0.27
Mms - grams
18.64 g
Fs - Resonance frequency
95.7 Hz
Re - DC Ω
5.5 Ohm
BL^²/Re - Effective Motor Force
41.34
Vas - Free air suspension stiffness
3.95 L
Le @ 1Khz - henries (H)
0.389 mH
EBP - Efficiency Bandwidth Product
353.7
BL - Tesla-metres (T·m)
15 Tm
Xmax Linear one-way
5 mm
Cms - (m/N)
1.48E-04
Qes - Electrical Damping
0.27
Xmech Peak to peak
-
Rms - (N·s/m)
0.75
Qms - Mechanical Damping
15.08
Mmd - grams
16.83 g
~ Measured after preconditioning with voice coil at room temperature.
Overall Diameter
161mm / 6.33"
Bolt Circle Diameter
173mm / 6.811"
Cutout Diameter
147mm / 5.78"
Total Depth
83mm / 3.3"
Bolt Hole Diameter
5.5mm
Number of Bolt Holes
4
Net Weight
1.96 kg
Shipping Weight
2 kg
Shipping Box
177 mm x 177 mm x 116 mm
Carton Shipping Size (8 Drivers)
- mm x - mm x - mm
Carton Shipping Weight (8 Drivers)
- kg