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Audison-Thesis TH 3.0 II voce-3" (8cm) midrange driver-Masori.de
Audison-Thesis TH 3.0 II voce-3" (8cm) midrange driver-Masori.de
Audison-Thesis TH 3.0 II voce-3" (8cm) midrange driver-Masori.de
Audison-Thesis TH 3.0 II voce-3" (8cm) midrange driver-Masori.de

Audison Thesis TH 3.0 II voce

3" (8cm) midrange driver

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Normal price Special price 975,00€

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Description

    The Thesis TH 3.0 II voce from Audison is an outstanding 3" (8 cm) midrange driver that stands out due to its optimal clarity in the midrange. Audison has specifically designed this unit to offer maximum sensitivity and selectivity to the human ear. With a peak power of 110 W, a diameter of 70 mm and an impedance of 4 ohms, this midrange driver also stands out for its extreme linearity, its custom-made N38 H-grade neodymium magnet and its transparent TPX® material. As the human ear is sensitive to mid-range frequencies, the Thesis TH 3.0 II Voce reproduces every sound flawlessly. Choose the Thesis 3.0 II Voce to capture the smallest nuances in your music or speech communication.

     

TECHNICAL DATA

    • Size 70 mm
    • Load capacity - peak 110 W
    • Load capacity - continuous operation 55 W
    • Impedance 4 Ohm
    • Frequency response 110 - 5700 Hz
    • Magnet material SPECIAL NEODYMIUM N38H
    • Voice coil Ø 30.5 mm
    • Material of the voice coil CCAP - COPPER CLAD ALLUMINIUM RIBBON
    • Woofer Qes 0.52
    • Xmax 3.3 mm

ELECTRO-ACOUSTIC PROPERTIES

    • D 66.75 mm
    • Re 3.4 Ohm
    • Fs 100 Hz
    • Vas 1.01 l
    • Mms 4.3 g
    • Cms 0.59 mm/N
    • BL 4.2 T-m
    • Qms 5.5
    • Qts 0.48
    • Le Standard 0.18 mH
    • Spl 85.6 dB

GENERAL

    • Weight 0.25 kg

DIMENSIONS

    • Dimension A 84 mm
    • Dimension B 73.5 mm
    • Dimension C 45 mm
    • Dimension D 37 mm
    • Dimension E 89 mm
    • Dimension F 18

PROPERTIES

    • 30.5 mm mobile voice coil made of CCAR (Copper Clad Aluminum Ribbon)
      wound with flat wire to maximize power factor and heat dissipation. 
    • Aluminium demodulation ring for linearization of the high excursion
      Intermodulation distortion that eliminates sound colouration.
    • Aluminium demodulation ring that linearizes intermodulation distortion at high excursions
      Linearizes intermodulation distortion and eliminates sound coloration.
      Better control of mobile personnel and higher thermal stability. 
    • The motor geometry was designed using finite element simulation software to optimize
      efficiency by concentrating the magnetic field in the gap. 
    • Membrane made of TPX®, a transparent material that reduces the
      irregularities in the frequency response and provides an insight into the inside of the speaker's
    • Membrane geometry designed with simulation software to achieve
      homogeneous directivity.
    • Optimized cone/space resolution with extensive simulations to
      linearize the frequency response at medium frequencies.
    • Basket made from a single piece of die-cast aluminum with four pairs of
      spokes for maximum rigidity without slowing down the airflow. 
    • Suspension and spider with very high excursion, optimized with
      simulations of the multiphysical behaviour of the loudspeaker.
    • eID technology for the traceability of TH 3.0 II articles from production to
      purchase.