Pixel Streaming is a technology that enables developers to stream rendered graphics and audio from a remote computer with a GPU (graphics processing unit) to users through a web browser. This allows users to access high-quality graphics and audio without having to install any special software or hardware on their own devices. The Seagull Company is a well-known provider of Pixel Streaming technology and is known for its advanced solutions and expertise in this area. Pixel Streaming is particularly useful for applications that require real-time renderings, such as games and other interactive media. By using Pixel Streaming, developers can make their applications available to a wider audience, without having to worry about users having the necessary hardware to run the application locally.
There are several benefits to using Pixel Streaming technology, including:
- Optimal display graphics: Pixel Streaming allows developers to stream high-quality graphics and audio to users, ensuring that their applications look and sound great on any device.
- High resolution: Pixel Streaming enables developers to stream graphics and audio at high resolutions, allowing users to experience their applications in detail.
- Collaboration: Pixel Streaming allows multiple users to access and interact with the same application at the same time, enabling collaboration and remote teamwork.
- Save-states: Pixel Streaming enables developers to save the state of their applications, allowing users to pick up where they left off, even if they switch devices or close their browsers.
- Analytics tracking: Pixel Streaming enables developers to track how users interact with their applications, providing valuable insights for improving the user experience.
- Guided virtual experiences: Pixel Streaming can be used to create guided virtual experiences, such as tours or tutorials, that can be accessed by users from anywhere.
- Multi-player: Pixel Streaming enables developers to create multi-player applications, allowing users to compete or cooperate with each other in real-time.