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August 27, 2024

EmNANO-i2408: Intel Apollo Lake SoC Processor Mini COM Express® Type 10 CPU Module

EmNANO-i2408 Features
-Soldered onboard Intel Apollo Lake SoC Processor
-Intel Ethernet controller i21x series
-Support Intel Solid State Drive (SSD) Embedded “E SKU’s”
-Single Channel 24-bit LVDS and 1 x DDI port
-CPU Soldered onboard Intel® Atom™ x7-E3950 1.6GHz/ x5-E3940 1.6GHz/ x5- E3930 1.3GHz processor
-Memory Soldered onboard 4GB DDR3L SDRAM, upgradeable to 8GB
-BIOS AMI UEFI BIOS
-USB Port
10 x USB ports:
8 x USB 2.0 ports(Support USB2.0 only)
2 x USB 3.0 SuperSpeed ports
-Expansion Bus 4 x PCIe x1 lanes up to 3 devices, 3 devices, I2C Interface, SDIO
-Storage 2 x Serial ATA ports
-Soldered onboard eMMC 5.0 up to 32GB (OEM Request)
-Ethernet Chipset 1 x Intel® Ethernet controller i21x series

Intel Atom CPU Apollo Lake-based Type 10 EmNANO-i2408 modules provide compact, power-efficient embedded computing solutions for space-constrained and energy-sensitive applications. These modules feature Intel’s Apollo Lake processors, offering a balance between performance and low power consumption, making them ideal for applications in industrial automation, IoT devices, and portable medical equipment.

In industrial settings, Apollo Lake-based Type 10 EmNANO-i2408 modules efficiently handle control systems and monitoring devices, ensuring reliable performance in environments where space and power are limited. Their compact design makes them suitable for integration into small form factor devices, providing flexible deployment options.

In IoT applications, these modules support edge computing tasks, enabling data processing closer to the source, reducing latency, and enhancing real-time decision-making. Additionally, their energy-efficient design ensures that they can be deployed in remote or battery-powered devices without compromising performance.

With robust connectivity options and long lifecycle support, Apollo Lake-based Type 10 EmNANO-i2408 modules are a reliable choice for embedded systems requiring compact, efficient computing power.

August 27, 2024

EmNANO-i2800: Intel Elkhart Lake Atom® Mini COM Express® Type 10 CPU Module

EmNANO-i2800 Features
-Soldered onboard Intel® Elkhart lake SoC Processor
-Soldered on board LPDDR4 SDRAM
-Intel Gigabit Ethernet controller
-Single Channel 24-bit LVDS and 1 x DDI port
-Support Intel® Time Coordinated Computing
-(Intel® TCC) for Intel® Edge Controls for Industrial
-(only Atom X****RE / X****FE processors)
-Memory Soldered onboard LPDDR4 3200MT/s, 4GB / 8GB SDRAM
-BIOS AMI UEFI BIOS
-TPM TPM2.0
-USB Port
8 x USB 2.0 ports
2 x USB 3.2 ports
-Expansion Bus 4 x PCIex1, LPC, I2C, SMBus, SDIO
-Storage 2 x SATA 3.0 ports
-Soldered onboard eMMC 5.1 (OEM Request)
-Ethernet Chipset 1 x Intel® i210 Series Gigabit Ethernet controller
-Ethernet Chipset 1 x Intel® i218LM PCIe PHY
-OS support
Windows 10 64-bit/Linux: Ubuntu

Intel Atom CPU Elkhart Lake-based Type 10 EmNANO-i2800 modules offer compact, power-efficient solutions for embedded applications requiring modern performance and low power consumption. Built on the Elkhart Lake architecture, these modules deliver enhanced graphics performance, real-time processing, and secure computing, making them ideal for industrial automation, IoT devices, and edge computing.

In industrial automation, Elkhart Lake-based EmNANO-i2800 modules power control systems, sensors, and data acquisition devices, ensuring real-time performance and efficient operation. Their improved graphics and processing capabilities also make them suitable for intelligent displays and human-machine interfaces (HMIs).

In IoT and edge computing, EmNANO-i2800 modules handle localized data processing and security tasks, enabling responsive and reliable operation in distributed systems. Their low power design ensures efficiency in battery-powered or remote devices, making them perfect for applications in transportation and smart infrastructure. With strong connectivity options and a long lifecycle, Elkhart Lake-based Type 10 EmNANO-i2800 modules offer a flexible and reliable solution for modern embedded systems.