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Dolby

Apps using Dolby

Download a list of all 12 Dolby customers with contacts.

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App Installs Publisher Publisher Email Publisher Social Publisher Website
24M Picslo Corp. *****@gmail.com - https://walkie-talkie.io/
13M ABA English *****@abaenglish.com
linkedin facebook twitter instagram
https://www.abaenglish.com/
9M Infinite Reality *****@tsusocial.com
facebook instagram
https://www.displaysocial.com/
2M EngVarta *****@engvarta.com
facebook instagram
https://engvarta.com/ielts/
2M Physitrack PLC *****@ourgamefootball.com
facebook instagram
https://ourgamefootball.com/
420K CROSSCALL *****@crosscall.com
linkedin facebook twitter instagram
https://www.crosscall.com/
161K Flutter Connect Ltd *****@trueflutter.com - https://trueflutter.com/
6K icliniq *****@icliniq.com
linkedin facebook twitter instagram
https://www.icliniq.com/
5K Harvest Medicine *****@hmed.ca
linkedin facebook twitter instagram
http://hmed.ca/
4K Healthism *****@friendsresearch.org
linkedin facebook twitter instagram
http://coganalytics.com/

Full list contains 12 apps using Dolby in the U.S, of which 11 are currently active and 0 have been updated over the past year, with publisher contacts included.

List updated on 21th August 2024

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Overview: What is Dolby?

Dolby is a cutting-edge audio technology company that has been revolutionizing sound experiences for decades. Their advanced SDK (Software Development Kit) offers developers and content creators powerful tools to integrate high-quality audio processing and enhancement capabilities into various applications and platforms. The Dolby SDK encompasses a wide range of audio technologies, including Dolby Atmos, Dolby Digital Plus, and Dolby Voice, which collectively provide immersive, crystal-clear sound across multiple devices and environments. One of the flagship components of the Dolby SDK is Dolby Atmos, a groundbreaking surround sound technology that creates a three-dimensional audio experience. This innovative system allows sound to be precisely placed and moved anywhere in a 3D space, including overhead, resulting in a more realistic and engaging auditory environment. Developers can leverage the Dolby Atmos SDK to incorporate this technology into games, movies, music, and virtual reality applications, enhancing the overall user experience and immersion. The Dolby Digital Plus codec, another crucial element of the SDK, offers efficient audio compression while maintaining exceptional sound quality. This technology is particularly useful for streaming services, broadcast applications, and mobile devices where bandwidth and storage limitations are concerns. By implementing Dolby Digital Plus, developers can ensure that their audio content is delivered with optimal fidelity across various platforms and playback devices. For communication-focused applications, the Dolby Voice SDK provides advanced audio processing capabilities that significantly improve the clarity and intelligibility of voice calls and conferences. This technology employs sophisticated noise reduction, echo cancellation, and spatial audio techniques to create a more natural and immersive communication experience. Developers can integrate Dolby Voice into their teleconferencing, VoIP, and collaboration applications to enhance the quality of remote interactions and reduce listener fatigue. The Dolby SDK also includes tools for content creation and post-production, enabling audio professionals to produce and master content in Dolby formats. These tools support workflows for music production, film sound design, and broadcast mixing, ensuring that content creators can fully leverage the capabilities of Dolby technologies throughout the production process. Furthermore, the Dolby SDK provides comprehensive documentation, sample code, and APIs (Application Programming Interfaces) that simplify the integration process for developers. This extensive support allows for seamless implementation of Dolby technologies across various platforms, including iOS, Android, Windows, and web-based applications. The SDK's cross-platform compatibility ensures that developers can create consistent audio experiences across different devices and operating systems. In addition to its core audio processing capabilities, the Dolby SDK offers advanced features such as loudness normalization, dynamic range control, and virtualization of surround sound for stereo playback. These features enable developers to optimize audio playback for different listening environments and device capabilities, ensuring that users receive the best possible sound experience regardless of their hardware or listening conditions.

Dolby Key Features

  • Dolby offers a suite of audio processing technologies and tools designed to enhance sound quality across various media platforms.
  • The Dolby SDK provides developers with access to advanced audio codecs, including Dolby Digital, Dolby Digital Plus, and Dolby Atmos, enabling high-quality surround sound experiences.
  • Dolby's technology includes noise reduction algorithms that can significantly improve audio clarity by minimizing background noise and unwanted artifacts.
  • The SDK supports dynamic range control, allowing for automatic adjustment of audio levels to maintain consistency across different content and playback environments.
  • Dolby's virtual surround sound technology enables immersive audio experiences even on devices with limited speaker configurations.
  • The Dolby SDK offers audio upmixing capabilities, which can convert stereo content into multi-channel audio for enhanced spatial presence.
  • Dolby's technology includes dialogue enhancement features that can improve speech intelligibility in complex audio mixes.
  • The SDK provides tools for loudness measurement and normalization, ensuring consistent volume levels across different audio sources and content types.
  • Dolby's audio processing includes psychoacoustic bass management, which can enhance low-frequency perception even on devices with limited bass reproduction capabilities.
  • The Dolby SDK offers support for object-based audio, allowing for more precise placement and movement of sound elements in a three-dimensional space.
  • Dolby's technology includes adaptive audio streaming capabilities, which can adjust audio quality based on available bandwidth and network conditions.
  • The SDK provides tools for audio fingerprinting and content identification, enabling applications to recognize and categorize audio content.
  • Dolby's technology includes support for binaural audio rendering, creating immersive 3D audio experiences for headphone users.
  • The Dolby SDK offers audio visualization tools, allowing developers to create dynamic visual representations of audio content.
  • Dolby's technology includes support for multichannel audio capture and processing, enabling high-quality recording and production of surround sound content.
  • The SDK provides APIs for real-time audio effects processing, allowing developers to apply various audio enhancements and transformations on the fly.
  • Dolby's technology includes support for spatial audio capture and reproduction, enabling the creation of immersive soundscapes for virtual and augmented reality applications.
  • The Dolby SDK offers tools for audio content analysis, including spectral analysis, pitch detection, and tempo estimation.
  • Dolby's technology includes support for audio watermarking, enabling content creators to embed imperceptible identification information within audio streams.
  • The SDK provides capabilities for audio format conversion and transcoding, allowing for seamless integration with various audio ecosystems and platforms.

Dolby Use Cases

  • Dolby technology can be integrated into streaming platforms to enhance the audio quality of movies and TV shows, providing users with a more immersive viewing experience that rivals that of a cinema. This use case is particularly relevant for home theater setups and mobile devices, where high-quality audio can significantly improve entertainment value.
  • In the gaming industry, Dolby SDKs can be utilized to create more realistic and immersive soundscapes, allowing players to pinpoint the direction of in-game sounds with greater accuracy. This enhanced audio experience can give gamers a competitive edge in multiplayer games and increase overall enjoyment in single-player experiences.
  • Dolby technology can be implemented in video conferencing software to improve audio clarity and reduce background noise, making remote meetings and virtual collaborations more effective. This use case has become increasingly important with the rise of remote work and distributed teams.
  • Music streaming services can leverage Dolby SDKs to offer premium audio quality options to their subscribers, providing a more faithful reproduction of the original recordings. This can be particularly appealing to audiophiles and music enthusiasts who value high-fidelity sound.
  • In the automotive industry, Dolby technology can be integrated into car audio systems to deliver a superior in-vehicle entertainment experience. This use case extends to both built-in infotainment systems and aftermarket audio upgrades.
  • Virtual reality and augmented reality applications can benefit from Dolby SDKs to create more convincing and immersive 3D audio environments. This can enhance the overall user experience in VR games, simulations, and educational content.
  • Podcasting platforms can utilize Dolby technology to improve the audio quality of their content, making it easier for listeners to engage with spoken word content for extended periods. This use case can help podcasters stand out in an increasingly crowded market.
  • Smart home devices, such as smart speakers and voice assistants, can incorporate Dolby SDKs to enhance voice recognition accuracy and improve the quality of audio playback. This can lead to a more seamless and enjoyable user experience in the growing smart home ecosystem.
  • In the education sector, Dolby technology can be used to improve the audio quality of online learning platforms and distance education tools. This can help students better understand and engage with course content, particularly in subjects that rely heavily on audio, such as language learning or music education.
  • Dolby SDKs can be integrated into professional audio production software to provide advanced tools for sound engineers and music producers. This use case enables creators to work with high-quality audio throughout the production process, from recording to mixing and mastering.

Alternatives to Dolby

  • OpenAL: An open-source audio API that provides cross-platform support for 3D audio rendering and spatial sound positioning. It offers a comprehensive set of tools for audio processing and playback, making it a viable alternative to Dolby technologies in many applications. OpenAL is widely used in game development and multimedia applications, providing developers with a flexible and powerful audio solution.
  • FMOD: A popular audio middleware solution that offers advanced sound design capabilities and cross-platform support. FMOD provides a robust set of tools for creating immersive audio experiences, including 3D sound positioning, real-time effects processing, and adaptive music systems. It is widely used in the gaming industry and offers features comparable to Dolby technologies.
  • Wwise: A comprehensive audio middleware solution developed by Audiokinetic, offering a wide range of features for sound design and implementation. Wwise provides tools for spatial audio, interactive music, and sound effects management, making it a powerful alternative to Dolby technologies. It is particularly popular in the game development industry and offers extensive integration options with various game engines.
  • Microsoft Spatial Sound: A technology developed by Microsoft that provides immersive 3D audio experiences for Windows and Xbox platforms. It offers support for object-based audio rendering and head-related transfer functions (HRTF) for accurate spatial positioning. Microsoft Spatial Sound can be a suitable alternative to Dolby technologies for applications targeting Windows and Xbox platforms.
  • Google Resonance Audio: An open-source spatial audio SDK developed by Google, designed to create immersive audio experiences for virtual and augmented reality applications. Resonance Audio offers features such as 3D sound spatialization, room acoustics simulation, and ambisonic audio support, making it a viable alternative to Dolby technologies in VR and AR contexts.
  • AMD TrueAudio Next: A hardware-accelerated audio processing technology developed by AMD, designed to offload complex audio calculations to the GPU. TrueAudio Next offers features such as real-time convolution reverb and 3D audio positioning, providing an alternative to Dolby technologies for applications that can leverage AMD hardware.
  • OpenSL ES: An open-source audio API developed by the Khronos Group, specifically designed for embedded systems and mobile devices. OpenSL ES offers a lightweight and efficient audio solution for Android and other mobile platforms, providing an alternative to Dolby technologies in the mobile space.
  • Web Audio API: A high-level JavaScript API for processing and synthesizing audio in web applications. The Web Audio API offers a wide range of audio processing capabilities, including 3D audio spatialization and real-time effects, making it a suitable alternative to Dolby technologies for web-based audio applications.
  • Steam Audio: A spatial audio solution developed by Valve Corporation, designed primarily for game development and virtual reality applications. Steam Audio offers features such as 3D sound spatialization, occlusion modeling, and reverb effects, providing a comprehensive alternative to Dolby technologies in the gaming and VR space.
  • AstoundSound: A 3D audio processing technology developed by GenAudio, offering immersive audio experiences for various applications. AstoundSound provides features such as 3D sound positioning, headphone virtualization, and upmixing capabilities, making it a potential alternative to Dolby technologies in certain audio processing scenarios.

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