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Audison

Thesis TH 1.5 II violin

dome tweeter

Normal price 860,00€
Normal price 860,00€ selling price 860,00€
incl. VAT , possibly plus shipping

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Highlights

  • Dome tweeter, 200W peak, 92.5 dB efficiency, 6 Ohm.
  • Frequency response 800-26000 Hz, N38 neodymium magnet, 34 mm voice coil.
  • Tetolon Fiber Membrane, eID technology, Audison Innovation.
Seen more cheaply Personal Offer
brand: Audison
Delivery time:
Available, in 3-8 days with you
Number:
Couple
Watt RMS:
100
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Normal price 860,00€
Normal price 860,00€ selling price 860,00€

Discover the Thesis TH 1.5 II violino, a state-of-the-art dome tweeter from the company Audison. Combine power and precision with the impressive performance of 200 W. This unparalleled audio innovation utilizes a single-layer 34 mm CCAW voice coil to ensure clean, undistorted sounds. The TH 1.5 II Violino also features Audison's eID technology and an exclusive tuning system. Additionally, it is available in 38 mm and 6 Ohms. Experience the clear difference and maximize your listening experience with the Thesis TH 1.5 II violino.

TECHNICAL DATA

  • Size 38 mm
  • Load capacity - peak 200 W
  • Power consumption with crossover (Hi-Pass filtered @ 1.8kHz - 12 dB Oct.)
  • Impedance 6 Ohm
  • Frequency response 800 - 26k Hz
  • Magnet Material NEODYMIUM
  • Oscillating coil Ø 34 mm
  • Konus Material TETOLON FIBER
  • Membrane material TELOTON FIBRE

ELECTRO-ACOUSTIC PROPERTIES

  • Re 6.1 Ohm
  • Fs 780 Hz
  • Vas 0.019 l
  • Mms 0.43 g
  • Cms 0.09 mm/N
  • BL 3.32 T•m
  • Qms 2.9
  • Qts 0.83
  • Membrane area 38 cm²
  • The Standard 0.025 mH
  • Reference Efficiency 92.5
  • Spl 92.5 dB

GENERAL

  • Weight 0.355 kg

DIMENSIONS

  • Measurement A 71.8 mm
  • Measurement C 37.4 mm
  • Dimension D 22.4 mm

PROPERTIES

  • Single-layer 34 mm CCAW voice coil with low weight and stability at lower frequencies and complete absence of musical settling processes compression.
  • "Extremely powerful custom N38"H-grade" neodymium magnet provides 1.67 T*m in the magnetic gap for excellent dynamics and very low distortions across the entire frequency range."
  • Exclusive air pollution system that resonates at a frequency below 800 Hz, for filter settings from 1.5 kHz 12dB/oct.
  • 38 mm natural silk cap optimized with extensive material characterization, laser vibrometer scanning, and finite element analysis methods for a smooth and enhanced response.
  • Frequency response up to 26 kHz, optimized for off-center placement.
  • TH 1.5 II Violin Tuning System with two types of electroacoustic loading: body housing or body disc depending on the objective of maximum performance and flexibility in integration into the vehicle.
  • Fully solid metal construction with each part exclusively designed and manufactured for the Audison TH 1.5 II.
  • FEM (Finite Element Method) optimized front plate and front spokes for an improved scattering pattern.
  • eID technology that provides TH 1.5 II traceability from the manufacturing phase to the owner.
The Thesis TH 1.5 II tweeter from Audison offers outstanding performance of 200 W at an impedance of 6 Ohms. It features a single-layer 34 mm CCAW voice coil, ensuring lightweight and stability at lower frequencies. This tweeter utilizes a special neodymium magnet material, which allows for dynamic sound reproduction with very low distortion across the entire frequency range. The frequency response ranges from 800 Hz to 26 kHz and is optimized for off-axis placement. Improved dispersion patterns are achieved through a FEM-optimized front plate and front spokes.
The eID technology in the Thesis TH 1.5 II violino ensures continuous traceability of the product from the manufacturing phase to the current owner. This means that during each production stage and even after the purchase of the product, all important information can be traced. This technology not only supports quality control but also the authenticity verification of the tweeter. Especially for technology enthusiasts who value documented manufacturing quality, the eID technology offers a significant advantage in trust in the production and tracking of their acquired audio system.
The special tuning system of the Thesis TH 1.5 II violino allows for optimal adjustment depending on the application goal through two different types of electroacoustic loading, either via the floor housing or the floor disc. This flexibility enables the tuning of the tweeter for maximum performance and ideal integration into vehicles. Thus, the tweeter can unleash its maximum sound performance in different installation situations. The individual tuning according to the requirement profile ensures harmonious integration with other audio systems and optimizes the sound both in the spectral range and in spatial reproduction.
In the Thesis TH 1.5 II violin, high-quality materials are used that contribute to the outstanding audio quality. The diaphragm is made of Tetolon fibers, known for their strength and low resonance, resulting in a clear sound image. This is complemented by the use of neodymium magnetic material, which is known for its strong magnetic performance in compact dimensions. Additionally, the tweeter features a natural silk dome that has been optimized through elaborate material characterizations. Each part of the solid metal construction is exclusively designed and manufactured to guarantee maximum performance and durability.
The FEM (Finite Element Method) optimization in the Thesis TH 1.5 II violino plays a crucial role in fine-tuning the sound behavior. This method is used to design the top plate and the front ribs to provide an improved scattering pattern. The result is precisely controlled sound waves that are evenly distributed, leading to a more homogeneous sound representation, especially in complex sound environments in the car. The FEM optimization helps reduce interference and improves acoustic efficiency, ultimately resulting in enhanced audio quality.
The Audison Thesis TH 1.5 II violino uses a single-layer 34 mm CCAW voice coil (Copper Clad Aluminum Wire), which offers an excellent combination of low weight and high conductivity. These properties are crucial for ensuring stability at lower frequencies and minimizing the additional weight that would occur with a conventional copper wire voice coil. The CCAW voice coil allows the tweeter to reproduce smoother sounds while maintaining excellent dynamic response. This material choice supports the power and distortion-free reproduction across the entire frequency spectrum.
When installing the Audison Thesis TH 1.5 II violino, it is important to consider its dimensions. The tweeter has a diameter of 38 mm, ensuring that it fits into most standard installation solutions. The outer dimensions A measure 71.8 mm, while dimensions C are 37.4 mm. Also note the measurement D of 22.4 mm for the depth. To achieve optimal sound quality, the placement should be within the inclusive tuning zone, where the tweeter is not exposed to direct sunlight or excessive moisture. A stable and low-vibration installation location can significantly enhance the sound.
The Thesis TH 1.5 II violin exhibits impressive electro-acoustic properties that underscore its sound profile. The specific resonance value Fs is 780 Hz, while the mechanical loss factor Qms reaches 2.9 and the total system loss factor Qts reaches 0.83. These parameters, along with a diaphragm area of 38 cm², enable a reference efficiency of 92.5 dB. With a magnetic field BL value of 3.32 T•m, the product also promotes dynamic sound reproduction with its stronger magnetic field. The Vas value of 0.019 l and an electromagnetic inductance Le of 0.025 mH complete the technical specifications.
The Thesis TH 1.5 II violin is optimally tuned for demanding listening environments, which is made possible by the special configuration of the natural silk dome with Tetolon fibers. This ensures even sound distribution even at high frequencies up to 26 kHz. The exclusive air load system enhances the ability to achieve the resonance frequency below 800 Hz, which is ideal for various filter settings. This technical design contributes to creating an impressively realistic sound image that is appreciated by both music enthusiasts and audio professionals. The extensive customization options in the vehicle layout provide versatile application options.
The compatibility of the Thesis TH 1.5 II violino with many vehicle models results from its dimensions and high performance. The measurements allow for flexible integration into the existing vehicle structure, while the 6 Ohm impedance simplifies tuning with most existing audio systems. Instructions for handling the crossover after Hi-Pass filtering sound particularly versatile at 1.8 kHz and 12 dB/Oct. This ensures that no overload occurs and a harmonious coupling to the overall system takes place. Thus, the tweeter can be effectively used in different vehicle environments.

Elettromedia SpA
62018 Potenza Picena (MC)
Strada Regina km 3,500
Italy

Contact person:
Simone Iampieri
Executive Director Assistant
T +39 0733 870 813
Elettromedia SpA
62018 Potenza Picena (MC) Italy
Strada Regina km 3,500
T + 39 0733 870 870

Contact: simone.iampieri@elettromedia.it

Product Specifications


Manufacturer

Product type

Features


  • Highlights

    • Dome tweeter, 200W peak, 92.5 dB efficiency, 6 Ohm.
    • Frequency response 800-26000 Hz, N38 neodymium magnet, 34 mm voice coil.
    • Tetolon Fiber Membrane, eID technology, Audison Innovation.
  • Uvp

    860

weight

0.355 kg

Technical data


Watt RMS Load Capacity

100

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Your advantages with Masori


Buy Audison Thesis TH 1.5 II violino dome tweeter online at a great price and maximize your listening experience

The precise sound reproduction of the Audison Thesis TH 1.5 II violino tweeter is ensured by the single-layer 34 mm CCAW voice coil, which ensures clean and undistorted sounds. With a power handling of 200 W, this tweeter offers powerful performance and remains stable even at high volumes. Thanks to Audison's eID technology, you can count on complete traceability from production to owner. The Thesis TH 1.5 II also offers an extended frequency response of 800 - 26,000 Hz, allowing even the finest sound details to be heard. Thanks to our lowest price guarantee, you'll always find this product at Masori at the lowest price.

Audison 34 mm CCAW voice coil with exceptional lightness and precision

The single-layer 34 mm CCAW voice coil of the Thesis TH 1.5 II violino is characterized by its extremely low weight. This lightness enables stable performance, especially in the low frequency ranges, and high precision in sound reproduction. Compared to conventional voice coils, CCAW technology significantly improves dynamics without causing distortion at high volumes. A higher weight would compromise the subtlety of sound reproduction and reduce the efficiency of frequency transfer.

6-ohm impedance of the Audison Thesis TH 1.5 II violino for optimal signal flow in the audio system

With its 6 ohm impedance, the Audison Thesis TH 1.5 II strikes an ideal balance between power handling and volume. This impedance ensures efficient power transfer with minimal resistance, which is essential for reliable playback, especially in complex audio systems. Compared to other technical devices in the car hi-fi market, which typically have an impedance of 4 ohms, the Thesis TH 1.5 II offers improved sound flow and reduces the risk of distortion under demanding conditions.

Frequency response of 800 - 26,000 Hz for precise reproduction of high frequencies and sound details

The Audison Thesis TH 1.5 II violino boasts an impressive frequency response of 800 to 26,000 Hz. This bandwidth is crucial for the transmission of high-frequency signals and enables the reproduction of fine sound details. Compared to speakers with a more limited frequency response, the musicality of the original is better preserved. A lower maximum value would reduce acoustic clarity, while a wider frequency range would be unnecessary, as the human ear can only perceive up to 20,000 Hz anyway.

Resonance frequency at 780 Hz for precise sound tuning and integration

A resonant frequency of just 780 Hz is achieved through the exclusive air-loading system of the Thesis TH 1.5 II. This low resonant frequency allows for smooth integration starting at filter settings as low as 1.5 kHz at 12 dB/octave. This reduces unwanted vibrations and minimizes frequency distortion, ultimately resulting in clear and clean sound reproduction. A higher resonant frequency would compromise the filter settings and reduce sound precision.

Effective efficiency with 92.5 dB SPL for high volume with low power input

The Thesis TH 1.5 II violino achieves an efficiency of 92.5 dB SPL, which means it achieves high volume with minimal energy consumption. This is particularly important for car stereo systems that rely on efficient power distribution. Compared to the market, this is an outstanding value, achieved by only a few other models, ensuring outstanding performance without significant power losses. A lower SPL would require more energy to be expended to achieve the same volume, which would limit the overall efficiency of the system.

Dynamic and distortion-free thanks to neodymium magnet material and custom design

Equipped with a powerful N38 H-Grade neodymium magnet, the Thesis TH 1.5 II delivers unique dynamics and distortion-free sound across the entire frequency range. The neodymium magnet generates 1.67 T*m in the magnetic gap, ensuring a more stable and stronger magnetic field. This minimizes distortion and ensures undistorted reproduction even at high levels. A weaker magnetic field strength would impair playback quality, especially in complex musical passages.

38 mm Tetolon Fibre membrane for sonic precision and durability

The 38 mm diaphragm of the Audison tweeter is made of Tetolon Fiber, known for its durability and sonic precision. This choice of material enables smooth and extended frequency response, making even subtle musical nuances audible. A comparison with other diaphragm materials shows that Tetolon Fiber remains dimensionally stable even under stress and provides excellent sound fidelity over the product's lifetime. Using a different material could compromise the distortion-free performance and precision, which would negatively impact sound quality.

Unique eID technology for complete traceability and quality assurance

The eID technology of the Thesis TH 1.5 II violino ensures complete product traceability from the manufacturing process to the end user. This not only enables exceptional quality assurance but also maximizes transparency throughout the product chain. This innovation ensures confidence in the product's high quality and facilitates any queries or support requests. This level of traceability is rare in the car hi-fi sector and thus offers significant added value.

Fine-tuning and integration through Audison TH 1.5 II Tuning System

The Audison TH 1.5 II tuning system offers flexible tuning with two different electroacoustic loading options: floor cabinet or floor plate. These specific configurations are adaptable depending on the desired application and vehicle integration, ensuring maximum performance and flexibility. In practice, this means that regardless of the installation or specific requirements, the precise and extended sound of the Thesis TH 1.5 II is reliably reproduced. A lack of adaptability, however, would limit the listening experience through suboptimization.

Custom-made metal construction for optimal stability and sound distribution in the Audison Thesis TH 1.5 II violino

The Audison Thesis TH 1.5 II's all-metal construction ensures tremendous stability and superior sound dispersion. Every tweeter component has been exclusively designed and manufactured to ensure the sound profile is unaffected. The FEM-optimized front panel and front spokes also help create an improved dispersion pattern. A substandard metal construction could be prone to vibrations and resonances that would disrupt the overall soundstage.

For professional support with the installation of the Audison Thesis TH 1.5 II violino, you can take advantage of our on-site installation service in Frankfurt (Oder) . Further information and detailed technical analyses can be found in our audio blog .