Intel AF82US15W-SLGFQ: Technical Overview and Product Specifications

Release date:2025-11-18 Number of clicks:191

Intel AF82US15W-SLGFQ: Technical Overview and Product Specifications

The Intel AF82US15W-SLGFQ is a highly integrated system-on-chip (SoC) component designed for embedded computing and low-power applications. As part of Intel’s embedded technology portfolio, this chip combines key system functions into a single compact package, targeting space-constrained and energy-efficient designs such as industrial automation, digital signage, thin clients, and portable medical devices.

Built on Intel’s mature low-power architecture, the AF82US15W-SLGFQ incorporates a CPU, memory controller, and graphics core in a unified design. This integration helps reduce overall system complexity and power consumption while maintaining reliable performance for entry-level to mid-range embedded applications. The chip supports a range of Intel Atom or Celeron-class processors, providing flexibility for different performance and thermal requirements.

A standout feature of this SoC is its support for dual-display output through integrated graphics, including interfaces such as LVDS and HDMI. This makes it suitable for applications requiring multi-screen setups or high-resolution visual output. Additionally, the integrated memory controller supports DDR3 memory, offering a balance between performance and power efficiency.

The AF82US15W-SLGFQ also includes a variety of I/O interfaces such as PCI Express, SATA, and USB 2.0, enabling connectivity with peripherals and expansion devices. Its low thermal design power (TDP) makes it ideal for fanless designs, enhancing reliability in harsh environments.

With extended lifecycle support, this component ensures long-term availability for industrial and commercial applications, reducing the need for frequent hardware redesigns.

ICGOODFIND: The Intel AF82US15W-SLGFQ is a versatile and power-efficient embedded SoC, offering integrated graphics, multi-display support, and broad connectivity—making it a strong candidate for compact, low-power embedded systems.

Keywords:

Embedded SoC, Low-Power Design, Integrated Graphics, Dual-Display Support, Extended Lifecycle

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