Intel SEBFCM4 manual Selectable Boot settings, Restore Default settings, Raw Novram data

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There are specific Fibre Channel Expansion Card settings that you cannot modify. Table 5 describes these settings and gives examples.

Note: See the device driver installation instructions for the required operating system specific modifications to the NVRAM.

Table 5. Nonmodifiable Fibre Channel Expansion Card settings and examples

Setting

Example

 

 

BIOS address

CD400

 

 

BIOS revision

1.38

 

 

Adapter serial number

E59719

 

 

Interrupt level

3

 

 

Adapter port name

210000096B07C703

 

 

BIOS address: The BIOS address is the Fibre Channel Expansion Card I/O address where the BIOS code is stored when you press Ctrl+Q. This is the address of the BIOS code in ROM shadow memory.

BIOS revision: The BIOS revision is the revision number of the loaded BIOS code on the Fibre Channel Expansion Card.

Adapter Serial Number: This number is for manufacturing use only. It does not correlate to external labels or to the adapter port name of the Fibre Channel Expansion Card.

Interrupt level: The interrupt level is the interrupt that is used by the Fibre Channel Expansion Card. The interrupt level can change when the operating system is installed.

Adapter port name: This is the worldwide port name of the Fibre Channel Expansion Card.

Selectable Boot settings

To access this option, select Selectable Boot Settings. For more information about boot settings, contact your Intel technical support representative.

Restore Default settings

This option is in the Configuration Settings menu. It restores the Fibre Channel Expansion Card default NVRAM settings.

Raw NOVRAM data

Use this option to display the Fibre Channel Expansion Card NVRAM contents in hexadecimal format. This is a troubleshooting tool; you cannot modify the data.

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Contents Order Number D34987-001 Disclaimer Contents Page Safety information Electrical Safety General SafetyVii Viii Handling electrostatic discharge-sensitive devicesTo Connect To Disconnect Use safe practices when lifting Xx Caution Xii Fibre Channel overview IntroductionRelated documentation Features and specificationsMajor components of the Fibre Channel Expansion Card Inventory checklistPage Handling static-sensitive devices Installing the Fibre Channel I/O Expansion CardInstallation guidelines Configuring a command session Installing the device drivers Page Starting Fast!UTIL Using Fast!UTILConfiguration Settings menu options Host adapter settingsFibre Channel Expansion Card connection options Raw Novram data Selectable Boot settingsRestore Default settings Fibre Channel Expansion Card advanced adapter settings Advanced adapter settingsExitFast!UTIL Scan Fibre Channel devicesFibre Channel disk utility Loopback data testPage Overview of the QLogic* SANsurfer application Using the SANsurfer applicationInstallation and system requirements Features Utilities Update flashTroubleshooting Page A19 Getting help and technical assistanceBefore you call A20 Intended Application Product Safety ComplianceRegulatory and Compliance Information Product Regulatory ComplianceB22 Electromagnetic Compatibility NoticesCertifications / Registrations / Declarations FCC Verification Statement USABsmi Taiwan Industry Canada ICES-003Europe CE Declaration of Conformity Vcci JapanB24 Korean Compliance RRL

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.