Find the emergency power-off (EPO) switch, disconnect switch, or electrical outlet in the room. If an electrical accident occurs, you can quickly turn off the switch or unplug the power cord.

Do not work alone under hazardous conditions, or near equipment that has hazardous voltages.

Disconnect all power before:

Performing a mechanical inspection

Working near power supplies

Removing or installing main units

Before you start to work on the machine, unplug the power cord. If you cannot unplug it, ask the customer to power-off the wall box (that supplies power to the machine) and to lock the wall box in the off position.

If you need to work on a machine that has exposed electrical circuits, observe the following precautions:

Ensure that another person, familiar with the power-off controls, is near you. Remember: another person must be there to switch off the power, if necessary.

Use only one hand when working with powered-on electrical equipment; keep the other hand in your pocket or behind your back.

Remember: There must be a complete circuit to cause electrical shock. By observing the above rule, you may prevent a current from passing through your body.

When using testers, set controls correctly and use the approved probe leads and accessories for that tester.

Stand on suitable rubber mats (obtained locally, if necessary) to insulate you from grounds such as metal floor strips and machine frames.

Observe the special safety precautions when you work with very high voltages; these instructions are in the safety sections of the maintenance information. Use extreme care when measuring high voltages.

Regularly inspect and maintain your electrical hand tools for safe operational condition.

Do not use worn or broken tools and testers.

Never assume that power has been disconnected from a circuit. First, check that it has been powered-off.

Always look carefully for possible hazards in your work area. Examples of these hazards are moist floors, nongrounded power extension cables, power surges, and missing safety grounds.

Do not touch live electrical circuits with the reflective surface of a plastic dental inspection mirror. The surface is conductive; such touching can cause personal injury and machine damage.

When the power is on and power supply units, blowers and fans are removed from their normal operating position in a machine, do not attempt to service the units. This practice ensures correct grounding of the units.

If an electrical accident occurs, use caution:

Switch power off

Send another person to get help/medical aid

vii

Page 7
Image 7
Intel SEBFCM4 manual Vii

SEBFCM4 specifications

The Intel SEBFCM4 is a cutting-edge board-level platform designed for high-performance computing and embedded applications. This versatile module is engineered to cater to the evolving demands of modern data processing, making it suitable for a variety of industries, including telecommunications, industrial automation, and IoT solutions.

One of the standout features of the Intel SEBFCM4 is its robust processing capabilities powered by Intel's state-of-the-art CPUs. It supports a wide range of Intel processors, providing flexibility in performance and energy efficiency. This adaptability allows users to select the right CPU for their specific application, whether they need high processing power for complex calculations or a more energy-efficient solution for extended operational periods.

In terms of connectivity, the SEBFCM4 excels with multiple interfaces including PCIe, SATA, and USB ports, which offer extensive options for peripherals and external devices. This extensive connectivity is crucial for applications requiring rapid data transfer and real-time responsiveness. Furthermore, the board is designed with advanced networking capabilities, ensuring seamless integration into existing systems or networks, which is vital for applications in data centers and edge computing.

The Intel SEBFCM4 also incorporates advanced memory support with options for DDR4 RAM, allowing for greater bandwidth and efficiency in processing tasks. This enhanced memory architecture is especially beneficial for applications that involve large datasets or require substantial multitasking capabilities.

Moreover, the platform is built to support advanced technologies like Intel’s Virtualization Technology, which allows multiple operating systems to run concurrently on a single processor. This feature is particularly advantageous in environments that demand high levels of resource utilization, enabling better overall efficiency and flexibility.

Thermal management is another key characteristic of the SEBFCM4. With its sophisticated design, it effectively dissipates heat, ensuring that performance remains stable even under load. This is critical for applications deployed in demanding environments where reliability is paramount.

In summary, the Intel SEBFCM4 stands out as a powerful, flexible, and reliable platform for today's advanced computing requirements. Its combination of high-performance processing, extensive connectivity, robust memory options, and superior thermal management makes it an ideal choice for a wide array of applications across various industries. As technology continues to evolve, the SEBFCM4 is poised to meet the needs of businesses looking for powerful solutions that deliver both efficiency and reliability.