![]() Thin client hardware generally supports common peripherals, such as keyboards, mice, monitors, jacks for sound peripherals, and open ports for USB devices (e.g., printer, flash drive, webcam). Sensitive data is uncompromised in cases of desktop loss or theft. Example of improved security: Software assets are centralized and easily fire-walled, monitored and protected.Example of reduced software maintenance: Software patching and operating system (OS) migrations can be applied, tested and activated for all users in one instance to accelerate roll-out and improve administrative efficiency.Example of hardware resource optimization: Cabling, bussing and I/O can be minimized while idle memory and processing power can be applied to user sessions that most need it.The benefits of centralization are hardware resource optimization, reduced software maintenance, and improved security. This combination forms what is known as a cloud-based system, where desktop resources are centralized at one or more data centers. The server-side infrastructure uses cloud computing software such as application virtualization, hosted shared desktop (HSD) or desktop virtualization (VDI). Thin clients occur as components of a broader computing infrastructure, where many clients share their computations with a server or server farm. This contrasts with a rich client or a conventional personal computer the former is also intended for working in a client–server model but has significant local processing power, while the latter aims to perform its function mostly locally. ![]() ![]() The server does most of the work, which can include launching software programs, performing calculations, and storing data. They are sometimes known as network computers, or in their simplest form as zero clients. In computer networking, a thin client is a simple (low- performance) computer that has been optimized for establishing a remote connection with a server-based computing environment. An Aleutia E3 thin client, with flash memory ![]()
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