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Dexibell Indonesia

 Dexibell di Indonesia:


Dexibell's T2L (True to Life) technology combines sampling and modelling to create its instrument sounds. This technology aims for maximum timbre accuracy and precise sound responsiveness to a musician's articulation.
Key aspects of Dexibell's T2L technology:
Component-based sound: T2L separates different sound components into different audio and software elements, such as the staccato, normal note sounds, string resonance, hammer noise, and key press noises. This allows for individual management of each element.
Sampling and Modelling: The technology uses a combination of "Sampling and Modelling" with unique algorithms.
It uses recorded waveforms, with lengths between 3 and 15 times higher than other products on the market, with some lower notes having waveforms of 15 seconds.
The sounds are recorded using a holophonic method for a 3D listening experience.
The technology also uses modelling to simulate the characteristics of an acoustic instrument.
High-Quality Audio: The instruments use 24-bit linear and 48kHz audio for a high level of definition. This provides a 256 times greater dynamic range compared to products using 16 bit and 44.1kHz. Internal processing and DSP is done at 32 bit floating.
Oscillators and Polyphony: A powerful "Quad Core" processor manages 320 digital oscillators, which simulates all elements, sounds, and noises to model the T2L sound. The instruments have unlimited polyphony, which helps to simulate the realistic responsiveness of acoustic pianos.
Customisation: The T2L engine allows for adjustments of various sound parameters.
For pianos, these parameters include hammer noise, key off noise, damper pedal noise, and string resonance.
For electric pianos, parameters include hammer noise, key off noise, and cabinet resonance.
For organs, parameters such as leakage and hum noise can be adjusted.
Effects: The instruments include various effects such as reverb, tremolo, overdrive, and chorus, that can be adjusted to create a variety of sounds.
User Customisation: The sounds of Dexibell instruments are reconfigurable using a USB memory stick. The Dexibell sound library is free to download and constantly updated. It also allows for the use of Sound Font format libraries.
Specific instrument parameters: T2L focuses on sound parameters specific to the instrument being emulated. For instance, an acoustic piano will have parameters specific to acoustic pianos, whereas an electric piano will have related parameters.
In summary, Dexibell’s T2L technology aims to create a very realistic and expressive sound by focusing on component-based sound creation, combining sampling and modelling, using high-quality audio, and providing tools for sound customisation
Dexibell's T2L (True to Life) technology is built upon several core components that work together to produce realistic and expressive instrument sounds. These components are:
Sound Component Separation: T2L technology breaks down sounds into individual components, which are managed separately using different audio and software elements. For a piano, these components might include the staccato, the sound of a normal note, string resonance, hammer noise, and the noise of keys being pressed. This allows for a detailed and nuanced approach to sound creation.
Sampling and Modelling: T2L combines sampling and modelling techniques.
The instruments use recorded waveforms, with some lower notes having waveforms of 15 seconds, which is much longer than many competing products. The recorded samples are captured using a holophonic method, providing a 3D listening experience.
In addition, modelling is used to simulate the characteristics of acoustic instruments. This includes "staccato resonances", "sympathetic resonances", "hammer noise", and "88 resonances" of the strings when the damper pedal is pressed.
High-Quality Audio Processing: Dexibell instruments utilise 24-bit linear and 48kHz audio processing. This provides a high level of definition and a dynamic range 256 times greater than products working at 16 bits and 44.1 kHz. The internal processing and Digital Signal Processing (DSP) is done at 32-bit floating.
Powerful Processing and Unlimited Polyphony: At the core of Dexibell pianos is a "Quad Core" processor capable of managing 320 digital oscillators. This allows for the simulation of all the elements, sounds, and noises that contribute to the T2L sound. The increased polyphony used in Dexibell pianos allows them to realistically simulate the responsiveness of a real acoustic piano through virtually unlimited polyphony.
Customisation: T2L technology allows for a high degree of sound customisation.
For pianos, parameters such as hammer noise, key off noise, damper pedal noise, and string resonance can be modified.
For electric pianos, parameters such as hammer noise, key off noise, and cabinet resonance are available for adjustment.
For organs, parameters such as leakage and hum noise can be adjusted.
Effects: The instruments include a range of effects, including reverb, tremolo, overdrive and chorus. These effects can be adjusted to create a wide variety of sounds.
User Sound Customisation and Expansion: Dexibell instruments allow for user customisation through a USB memory stick. The Dexibell sound library, which is free to download, is constantly evolving. Users can also load sounds from standard "Sound Font" format libraries.
Instrument-Specific Parameters: The T2L engine focuses on sound parameters that are specific to the instrument being emulated. This means that the parameters available for an acoustic piano will be different from those for an electric piano or an organ.
These components combine to create the realistic and expressive sounds that Dexibell instruments are known for. The goal of T2L is to make digital instruments that are highly responsive to the musician's playing style.


Dexibell's T2L (True to Life) technology enhances realism in its digital instruments through a combination of detailed sound component separation, high-quality audio processing, and sophisticated modelling techniques.
Here are the key ways T2L technology enhances realism:
Component-Based Sound: T2L breaks down the sound into its core components, such as the attack, decay, sustain and release of a note. For example, in a piano sound, T2L separates elements like hammer noise, key-off noise, damper pedal noise, string resonance, and the sound of a normal note. This allows for a more nuanced and detailed recreation of the sound. By managing these components separately, the technology can produce a more realistic and responsive sound that captures the subtleties of an acoustic instrument.
Sampling and Modelling: T2L combines sampling and modelling techniques to produce its instrument sounds.
XXL Sample Length: Dexibell uses long samples of recorded waveforms, with some lower notes having waveforms of 15 seconds, which is significantly longer than the 1 to 5 second average of competitors. This longer sample length allows for a more realistic reproduction of the evolution of the sound of held notes.
Holophonic Recording: The sounds are recorded using a holophonic method, which captures the sound in three dimensions, providing a more immersive listening experience.
Modelling: T2L also uses modelling techniques to simulate the complex characteristics of acoustic instruments, including "staccato resonances", "sympathetic resonances", "hammer noise", and "88 resonances" of the strings when the damper pedal is pressed.
High-Quality Audio: Dexibell instruments use 24-bit linear and 48kHz audio processing, with internal processing and DSP at 32 bit floating. This results in a 256 times greater dynamic range compared to products using 16 bit and 44.1kHz. This higher audio quality ensures a more detailed and accurate reproduction of the instrument's sound.
Unlimited Polyphony and Powerful Processing: A powerful "Quad Core" processor manages 320 digital oscillators, enabling the simulation of all elements, sounds, and noises that contribute to the T2L sound. The instruments also feature virtually unlimited polyphony, which helps in realistically simulating the responsiveness of an acoustic piano. The combination of powerful processing and unlimited polyphony ensures that the instruments can respond accurately to even complex playing styles.
Instrument-Specific T2L Parameters: The T2L engine focuses on parameters specific to the instrument being emulated, ensuring a more accurate sound. For example, acoustic pianos have parameters such as hammer noise, key off noise, damper pedal noise, and string resonance, whereas electric pianos have parameters such as hammer noise, key off noise, and cabinet resonance. For organs, parameters such as leakage and hum noise can be adjusted.
Customisation: The T2L engine allows for a great deal of customisation to the sounds through the modification of various parameters. For example, the user can adjust the level of hammer noise, key off noise, damper pedal noise, and string resonance on piano sounds. This allows musicians to fine-tune the instrument to their personal preferences and playing style.
In summary, Dexibell’s T2L technology enhances realism by focusing on a detailed, component-based approach to sound creation, combining sampling with modelling, utilising high-quality audio processing, and providing tools for customisation. These features work together to create a more authentic and expressive playing experience.



Dexibell's T2L (True to Life) technology is designed to create highly realistic and expressive instrument sounds by combining sampling and modelling techniques.
The key features of Dexibell's T2L technology include:
Component-based sound: T2L technology separates different sound components into distinct audio and software elements. For example, with a piano, this can include the staccato, normal note sounds, string resonance, hammer noise, and key press noises. By managing these components separately, the technology can produce a more nuanced and detailed sound.
Sampling and Modelling: The T2L engine uses a combination of sampling and modelling with unique algorithms.
XXL Sample Length: Dexibell uses extra-long samples of recorded waveforms, with lengths between 3 and 15 times higher than other products on the market. Some lower notes have an original waveform of 15 seconds. This allows for a more realistic reproduction of the evolution of held notes.
Holophonic Recording: The sounds are recorded using a holophonic method to capture sound in three dimensions, which provides an immersive 3D listening experience.
Modelling: The technology uses modelling to simulate the characteristics of an acoustic instrument, such as "staccato resonances", "sympathetic resonances", "hammer noise", and "88 resonances" of the strings when the damper pedal is pressed. This approach also allows for the simulation of the nuances of different instruments, such as the behaviour of a Wurlitzer piano, where all the parts vibrate.
High-Quality Audio: Dexibell instruments use 24-bit linear and 48kHz audio processing, with internal processing and DSP at 32 bit floating. This results in a dynamic range 256 times greater compared to products using 16-bit and 44.1kHz.
Powerful Processing and Unlimited Polyphony: At the heart of Dexibell pianos is a powerful "Quad Core" processor capable of managing 320 digital oscillators. This enables the simulation of all the elements, sounds, and noises that contribute to the T2L sound. The instruments also feature virtually unlimited polyphony, which helps to simulate the realistic responsiveness of acoustic pianos and organs.
Instrument-Specific Parameters: The T2L engine focuses on sound parameters specific to the instrument being emulated. For example, acoustic pianos have parameters such as hammer noise, key off noise, damper pedal noise, and string resonance. Electric pianos have parameters such as hammer noise, key off noise, and cabinet resonance. Organs have parameters such as leakage and hum noise.
Customisation: The T2L engine allows for the customisation of sound parameters via the T2L editor.
For example, the user can adjust the level of hammer noise, key off noise, damper pedal noise, and string resonance on piano sounds.
For electric pianos, the user can adjust the hammer noise, key off noise and cabinet resonance.
Effects: The instruments include a range of effects, such as reverb, tremolo, overdrive, and chorus, that can be adjusted to create a variety of sounds.
User Sound Customisation: The sounds of Dexibell musical instruments are completely reconfigurable and can be loaded by the use of a simple USB memory stick. The Dexibell sound library is free to download and constantly updated. It also allows for the use of standard "Sound Font" format libraries.
Reactive to Player Articulation: The T2L technology is designed to be reactive to a musician's playing style.
In summary, Dexibell's T2L technology enhances realism by focusing on component-based sound creation, combining sampling with modelling, using high-quality audio processing, and providing tools for customisation. These features work together to create a more authentic and expressive playing experience. 


Dexibell differentiates its digital pianos from competitors through a combination of innovative technologies, high-quality components, and a focus on creating a realistic playing experience.
Key differentiators include:
T2L (True to Life) Technology: Dexibell's proprietary T2L technology is a core differentiator. T2L combines sampling and modelling to recreate the sounds of acoustic instruments.
Component-Based Sound: The technology separates the various components of a sound, such as the staccato, normal note sounds, string resonance, hammer noise, and key press noises of a piano. This allows for a more detailed and nuanced approach to sound creation.
XXL Sample Length: Dexibell uses extra-long samples of recorded waveforms. The length of the samples are between 3 and 15 times longer than other products, with some lower piano notes having waveforms of 15 seconds. This results in a more realistic reproduction of the evolution of the sound of held notes.
Holophonic Recording: The sounds are recorded using a holophonic method to capture sound in three dimensions, which provides an immersive 3D listening experience.
Modelling: T2L uses modelling to simulate the characteristics of an acoustic instrument, such as "staccato resonances", "sympathetic resonances", "hammer noise", and "88 resonances" of the strings when the damper pedal is pressed.
High-Quality Audio Processing: Dexibell instruments utilise 24-bit linear and 48kHz audio processing, with internal processing and DSP at 32-bit floating. This results in a 256 times greater dynamic range compared to products using 16-bit and 44.1kHz.
Powerful Processing: At the heart of Dexibell pianos is a powerful "Quad Core" processor capable of managing 320 digital oscillators. This enables the simulation of all the elements, sounds, and noises that contribute to the T2L sound.
Unlimited Polyphony: Dexibell instruments feature unlimited polyphony, which allows them to realistically simulate the responsiveness of a real acoustic piano.
Instrument-Specific Parameters: The T2L engine focuses on sound parameters specific to the instrument being emulated. For example, acoustic pianos have parameters such as hammer noise, key off noise, damper pedal noise, and string resonance, while electric pianos have parameters such as hammer noise, key off noise, and cabinet resonance.
Customisation: T2L technology allows for extensive sound customisation. For example, parameters like hammer noise, key off noise, damper noise, and string resonance can be adjusted.
Sound Library: Dexibell offers a free and constantly evolving sound library that can be loaded into the instruments via a USB memory stick. It also allows for the use of standard "Sound Font" format libraries.
Keyboard Action: Dexibell designs unique keybeds for their digital pianos and organs to best match the feel of acoustic instruments. Some keyboards, such as the VIVO S9, feature a hybrid wood and plastic hammer action keyboard. The VIVO S1 has a lighter-weighted keybed.
Motorized Draw-Faders: Some Dexibell organs, such as the COMBO J7, feature motorized draw-faders, which provide a new way to control sound.
Design and Build Quality: Dexibell instruments are designed and made in Italy with an emphasis on quality. The instruments are built with high quality components and attention to detail.
Continuous Damper Pedal: Dexibell offers a continuous damper pedal that is essential for full control of the damper modelling available on their VIVO digital pianos.
X MURE App: Dexibell offers the X MURE app for iOS devices which allows the user to control audio patterns that follow chord progressions. The VIVO Editor app allows for easy and fast touchscreen interaction of all VIVO parameters.
"Seamless transition": Dexibell instruments are designed for "seamless transition" during patch change or memory recalls avoiding any unwanted interruption of current sound and effect.
In summary, Dexibell differentiates itself through its T2L technology, which uses a combination of sampling and modelling techniques with high-quality audio processing and powerful processing capabilities. The instruments also feature a high degree of customisation and a focus on providing an authentic playing experience.


How could I buy a Dexibell musical instrument in Indonesia?

To purchase a Dexibell musical instrument in Indonesia, you could explore the following options:
Contacting PT Citra Intirama: PT Citra Intirama is the official distributor of Dexibell products in Indonesia. You can reach them via the contact information provided on their website:
Office Address: Moremall / Skynindo, Jl. Dr. Susilo I No. 23 RT 5/RW 3, Grogol, Kec. Grogol Petamburan, Jakarta Barat 11450, Indonesia
Phone: 02129678225
Email: adminservice@citraintirama.com or sales@citraintirama.com
Website: You can also visit their website to see the products they distribute.
Dexibell's "Store Locator": Dexibell has a store locator feature on their website. You may be able to find a local retailer through this resource.
Contacting Dexibell Directly: If you cannot locate a local dealer, you can email Dexibell at info@dexibell.com. They may be able to provide information about authorised retailers in Indonesia.
Dexibell's Email: info@dexibell.com
Online Retailers: Check for online retailers that ship to Indonesia. You might find Dexibell instruments listed on popular e-commerce platforms, although the sources do not specifically mention any specific retailers.
It's worth noting that Dexibell is a brand of Proel S.p.A., and their products are designed and manufactured in Italy. Their website, dexibell.com, can also be a useful resource for information about their product line and technologies.
When purchasing a Dexibell instrument, remember to check the warranty information. Dexibell offers a 3-year extended warranty, but this is subject to terms and conditions.

What is Dexibell's stated mission?

Dexibell's mission is to enhance the creativity of musicians by providing digital pianos that are comparable in quality to acoustic pianos. This is achieved by combining the philosophy of old-world craftsmanship with new-world technology. Dexibell aims to create a "new renaissance of musical instruments" through beauty and innovation.
Specifically, their mission is to:
Create digital instruments that are faithful to the highest expectations of musicians.
Combine tradition, passion, design, technology, and creativity in their products.
Reproduce the best acoustic pianos, including the sounds of a 1850's Grand Piano from the Romantic era, such as the Chopin’s favourite piano.
Develop digital pianos that are truly comparable with acoustic pianos.
Offer a unique playing experience by providing the best sounds possible through their T2L sound generation.
Balance the philosophy of traditional craftsmanship with modern technology.
In summary, Dexibell's core mission is to bridge the gap between digital and acoustic instruments, ensuring musicians have access to high-quality, expressive digital instruments.

What technology distinguishes Dexibell's instruments?

Dexibell's instruments are distinguished by a combination of unique technologies, with a primary focus on their T2L (True to Life) technology. This technology combines sampling and modelling to create realistic and expressive sound.
Key aspects of Dexibell's technology include:
T2L (True to Life) Technology: This is a core component of all Dexibell instruments. It combines sampling and modelling to recreate the sound of acoustic instruments with a high degree of realism.
Component-Based Sound: The T2L engine separates sound into its various components, such as the staccato, normal note sounds, string resonance, hammer noise, and key press noises of a piano. This allows for a more detailed and nuanced approach to sound creation.
XXL Sample Length: Dexibell uses very long samples of recorded waveforms that are between 3 and 15 times longer than those used by other products. Some low notes on a Dexibell piano have an original waveform of 15 seconds. This is designed to provide a realistic reproduction of how the sound of a note evolves when held.
Holophonic Recording: The sounds are recorded using a holophonic method, capturing sound in three dimensions for a more immersive 3D listening experience.
Modelling: The T2L technology uses modelling to simulate the characteristics of acoustic instruments, including "staccato resonances", "sympathetic resonances", "hammer noise", and the "88 resonances" of the strings when the damper pedal is pressed.
High-Quality Audio Processing: Dexibell instruments utilise 24-bit linear and 48kHz audio processing, with internal processing and DSP at 32-bit floating. This provides a 256 times greater dynamic range compared to instruments using 16-bit and 44.1kHz.
Powerful Processing: At the heart of Dexibell instruments is a powerful "Quad Core" processor capable of managing 320 digital oscillators. This enables the simulation of all the elements, sounds and noises that contribute to the T2L sound.
Unlimited Polyphony: Dexibell instruments offer unlimited polyphony, allowing them to realistically simulate the responsiveness of an acoustic piano. This is achieved through the use of 320 oscillators.
Instrument-Specific Parameters: The T2L engine focuses on sound parameters that are specific to the instrument being emulated. For example, acoustic pianos have parameters such as hammer noise, key off noise, damper pedal noise, and string resonance.
Customisation: The T2L engine has parameters that can be adjusted via the VIVO editor app. This allows users to change aspects of the sound, such as hammer noise, key off noise, damper noise, and string resonance.
Motorised Draw-Faders: Certain Dexibell organs, like the COMBO J7, incorporate motorised draw-faders, enabling a different approach to sound control.
Keyboard Design: Dexibell designs unique keybeds for their digital pianos and organs to best match the feel of acoustic instruments. Some models, like the VIVO S9, feature a hybrid wood and plastic hammer action keyboard. The VIVO S1 has a lighter-weighted keybed.
Sound Library: Dexibell offers a free and constantly evolving sound library that can be loaded into the instruments via a USB memory stick. It also allows for the use of standard "Sound Font" format libraries.
X MURE App: Dexibell offers the XMURE app for iOS devices that allows the user to control audio accompaniments that follow chord progressions.
"Seamless Transition": Dexibell instruments are designed for "seamless transition" during patch changes or memory recalls to avoid unwanted interruptions in sound and effect.
These technologies, combined with high-quality components and an emphasis on Italian design, contribute to the overall realism and expressive capabilities of Dexibell's instruments.

Describe Dexibell's approach to sound library creation.

Dexibell's approach to sound library creation is a meticulous process that combines the expertise of talented musicians, sound engineers, and recording studios. The aim is to provide the highest quality sounds, and they achieve this through careful selection of instruments, professional performances, advanced recording equipment and meticulous editing. Dexibell's sound library is designed to be a constantly evolving and free resource for its users.
Here are some key aspects of their approach:
Talented Professionals: Dexibell uses talented musicians, sound engineers, and recording studios to create their sounds.
Careful Instrument Selection: The process begins with the careful selection of instruments.
Professional Performances: Professional musicians perform on the instruments to ensure the best interpretation of the instrument's sound.
Advanced Recording Equipment: Dexibell utilises recording studios equipped with advanced equipment.
Meticulous Editing: The recorded sounds go through a meticulous editing process.
T2L Engine: The sounds are created to work with Dexibell's T2L (True to Life) sound engine. This engine uses a combination of sampling and modelling to reproduce the nuances of acoustic instruments.
Component-Based Sound: The T2L engine separates sound into components such as staccato, normal note sounds, string resonance, hammer noise, and key press noises, allowing for a detailed approach to sound creation.
XXL Sample Length: Dexibell uses very long samples, which are 3 to 15 times longer than those used by competitors. A low note on a Dexibell piano can have an original waveform of 15 seconds, allowing for the realistic reproduction of held notes.
Holophonic Recording: Sounds are recorded using a holophonic method to capture a 3D sound. This gives the sounds depth and provides an immersive listening experience.
Free and Evolving Library: The Dexibell sound library is completely free to download and is constantly updated.
Customisation: Dexibell sounds are completely reconfigurable. Users can modify the sounds to their own tastes and create new sonorities using the T2L modelling parameters.
Sound Library Formats: Dexibell instruments can load sounds from the official Dexibell library (.DXS extension) and from third-party libraries (.SF2 extension).
USB Loading: The sounds can be loaded into Dexibell instruments via a USB memory stick.
Sound Sets: Users can create custom sound sets and save them into the internal memory of the instrument, or download sound sets from the Dexibell website.
In summary, Dexibell's approach to sound library creation is a blend of high-quality recording techniques, advanced technology, and a commitment to providing musicians with a wide range of customisable, expressive sounds. This is achieved through the use of talented professionals, meticulous recording and editing techniques, and a dedication to constantly expanding their free sound library.

What is XMURE and how does it enhance Dexibell instruments?

XMURE is a software application developed by Dexibell for iOS devices (iPhone and iPad) that provides a new approach to automatic accompaniment. It enhances Dexibell instruments by offering real-time audio accompaniment that is controlled by the chords played on the instrument.
Here’s how XMURE works and how it enhances Dexibell instruments:
Real-Time Audio Accompaniment: XMURE does not use sound generators, virtual instruments, or standard MIDI files. Instead, it uses audio tracks recorded by real musical instruments. This means the sounds are based on actual recordings, not simulations.
Harmony Poly-Fragmentor: At the heart of XMURE is the "Harmony Poly Fragmentor," which is a patented algorithm that modifies audio tracks in real-time. This allows the accompaniment to follow the chord progressions played on a connected Dexibell instrument.
Live Chord Control: Users can control XMURE's audio patterns by playing chords on their Dexibell instrument, and the accompaniment will adjust accordingly.
Seamless Integration: XMURE is designed to work seamlessly with Dexibell instruments. Users can connect their iPad or iPhone to their Dexibell instrument via USB.
Versatile Use: XMURE can also be used to play music directly from the screen of an iPad/iPhone, or with any musical instrument connected via USB or audio jack.
Multiple Variations: Each XMURE accompaniment includes four variations. This can be selected by the user during playback.
Studio-Quality Sounds: The accompaniments are meticulously produced in a studio and are designed to be of the highest possible quality.
Expanding Sound Library: Dexibell regularly adds new accompaniments to the XMURE library to cater to different genres and musical tastes.
Pedal Control: Users can control playback, stop, and scene changes within the XMURE app using pedals.
App Integration: The Dexibell "VIVO Editor" app can directly interact with XMURE, giving users even more control over their instrument and accompaniments.
Control: Some Dexibell instruments have dedicated buttons or controls to manage the playback of XMURE patterns including:
Selecting the next or previous drum pattern.
Changing scenes.
Starting and stopping the playback.
Selecting the ending pattern.
In summary, XMURE enhances Dexibell instruments by providing a real-time, interactive, and high-quality audio accompaniment system. This allows musicians to have the experience of playing with a full band or orchestra, all controlled by the chords they play on their Dexibell instrument. This is not a simulation, but real audio tracks played live.


The XMURE app is a software application for iOS devices (iPhones and iPads) designed to provide real-time audio accompaniment for Dexibell instruments. It enhances the playing experience by allowing musicians to control backing tracks with live chord progressions on their Dexibell keyboards. Unlike traditional accompaniment methods, XMURE uses pre-recorded audio tracks of real instruments rather than synthesized sounds, offering a more authentic and dynamic musical experience.
Here’s a breakdown of how XMURE functions with Dexibell instruments:
Connectivity: To use XMURE, an iPad or iPhone is connected to a Dexibell instrument via a USB cable and an Apple Camera Connection Kit. An audio cable is also required to connect the audio output of the mobile device to the instrument. Certain Dexibell instruments also support Bluetooth audio streaming for wireless connection.
Real-time Audio Control: The core functionality of XMURE lies in its ability to modify audio tracks in real-time using the "Harmony Poly Fragmentor" algorithm. This patented technology enables the app to respond to the chords played on the Dexibell instrument, so the accompaniment follows the musician’s playing in real time.
Operation:
Once connected, the user opens the XMURE app and selects the Dexibell VIVO icon.
By playing a note on the keyboard, the app identifies which part of the instrument will control the accompaniment.
The user then selects an audio pattern from the app, and when the play icon is touched, the selected pattern begins playing.
As the musician plays chords on the Dexibell instrument, the accompaniment follows these chord progressions, adapting in real-time.
The user can change scenes or drum patterns within the XMURE app by selecting the "A", "B", "C", "D" buttons and "1", "2", "3", "4" buttons, respectively.
Audio Quality: XMURE uses high-quality audio tracks that have been professionally recorded in a studio. The use of real audio tracks ensures a highly realistic and authentic sound, and the audio tracks are not simulated.
Library: New accompaniments are regularly added to the growing library to accommodate different genres and tastes.
Integrated Control:
Pedal Control: The app can be controlled with pedals to start/stop playback and select different scenes.
VIVO Editor Integration: The "VIVO Editor" app interacts directly with XMURE, providing enhanced control and editing possibilities.
Dedicated Controls: Some Dexibell instruments also have dedicated controls that can be used to manage XMURE playback, including buttons for selecting the next or previous drum pattern, changing scenes, starting and stopping playback, and selecting the ending pattern.
In essence, XMURE allows a musician to perform as both the conductor and the orchestra. It offers a versatile and interactive way to use backing tracks and create complex and dynamic musical arrangements. The system is designed to be seamless and intuitive, enhancing the capabilities of Dexibell instruments by offering a new dimension of real audio accompaniment



Summary:
Dexibell is an Italian brand that creates digital pianos and organs with a focus on combining traditional craftsmanship with cutting-edge technology. Dexibell instruments are designed to provide musicians with an expressive and realistic playing experience that is comparable to playing an acoustic instrument. Here are some key features and qualities of Dexibell instruments that may appeal to Indonesian musicians:
Authentic Sound Quality: Dexibell's "T2L" (True to Life) technology uses a combination of sampling and modeling to reproduce the nuances of acoustic instruments. This means that Dexibell pianos and organs sound incredibly realistic.
XXL Sample Length: Dexibell instruments use very long samples, up to 15 seconds for low notes, which is much longer than the samples used in most other digital pianos. This results in a more realistic and vibrant sound.
Holophonic Recording: Dexibell records its sounds using a holophonic method, capturing a 3D sound that provides an immersive listening experience.
Powerful Processing: Dexibell instruments are equipped with powerful "Quad Core" processors that manage a large number of digital oscillators. This allows the instruments to simulate all of the elements, sounds, and noises that contribute to the creation of the T2L sound. The increased polyphony used in Dexibell pianos allows for a realistic responsiveness that feels like a real acoustic piano.
Extensive Sound Library: Dexibell uses professional musicians, sound engineers and recording studios to create an extensive library of high-quality sounds. This library is constantly evolving and is available for free download. Users can also import new sound sets.
Customisable Sounds: Dexibell's sounds are fully customisable. Musicians can modify sounds to suit their preferences, and can save or export them.
Sound Sets: You can create sound sets and store them in the instrument's internal memory or import them from a USB memory stick.
Variety of Instruments: Dexibell offers a wide range of digital pianos and organs to suit different needs. This includes stage pianos, home pianos, portable pianos, and digital organs.
VIVO Stage Pianos: These are designed for live performances, with models such as the S9, S7 PRO, and S1, offering portability, professional features, and excellent sound quality.
VIVO Home Pianos: These are designed for home use, and models like the H1 and H6 are known for their exceptional sound quality and responsive keyboards.
VIVO Digital Organs: Dexibell's digital organs, such as the COMBO J7 and CLASSICO L3, offer authentic recreations of vintage and pipe organ tones, with innovations such as motorized drawbar faders.
Innovative Features:
XMURE: Dexibell offers a unique accompaniment system called XMURE, which uses real audio played live and controlled by the chords the musician plays. This provides a very realistic and interactive accompaniment experience.
Virtual Damper: The VIVO S1 model includes a "Virtual Damper" function that allows for immediate playing without the need for a physical damper pedal, making it ideal for musicians on the go.
USB Connectivity: Dexibell instruments feature USB ports that support MIDI protocols, which allows musicians to connect and exchange data with other keyboards or devices, without requiring a computer.
Bluetooth: Many Dexibell instruments include Bluetooth connectivity for audio and MIDI data transmission.
Portability: Some Dexibell models, like the VIVO S1, are designed to be compact and lightweight. The S1 can also be powered by batteries, making it perfect for musicians who need a professional keyboard that they can use everywhere.
Craftsmanship: Dexibell instruments are designed in Italy with attention to detail, using high quality materials.
Why should Indonesians buy Dexibell?
High-Quality Sound: Dexibell instruments offer unparalleled sound quality that is as close to the real thing as possible, thanks to their unique T2L technology and long samples. Indonesian musicians will appreciate the authentic and expressive sounds that Dexibell provides.
Versatile Instruments: Whether you are a pianist, an organist, or a keyboard player, Dexibell has a range of instruments to suit your specific needs, including stage pianos, home pianos, portable pianos and organs.
Advanced Features: The innovative features of Dexibell instruments such as XMURE, make playing more interactive, creative and enjoyable. The flexibility and customisation possibilities mean that musicians can tailor their instrument to meet their individual needs.
Professional Performance: Dexibell instruments are designed for professional musicians, whether on stage or in a studio, and offer the tools for musicians to express themselves fully.
Italian Design: The instruments are beautifully designed and crafted in Italy, and are made using the best quality materials.
In conclusion, Dexibell offers a blend of cutting-edge technology, traditional craftsmanship, and a commitment to providing musicians with the highest quality instruments. With realistic sound, versatile features, and beautiful designs, Dexibell instruments are a great choice for Indonesian musicians who want the best in digital pianos and organs.


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