Intel Desktop Boards D845EPT2 and D845EBG2 Product Guide

ATAPI CD-ROM Drives

 

Maintenance

Main

Advanced

Security

Power

 

 

 

 

 

 

 

 

Boot

 

Exit

 

 

 

 

 

Boot Device Priority

Hard Disk Drives

Removable Devices

ATAPI CD-ROM Drives

The submenu shown in Table 27 is for setting ATAPI CD-ROM drives.

Table 27. ATAPI CD-ROM Drives Submenu

Feature

1st ATAPI CD-ROM Drive

(Note)

Options

Dependent on installed ATAPI CD-ROM drives

Description

Specifies the boot sequence from the available ATAPI CD-ROM drives. To specify boot sequence:

1.Select the boot device with <> or <>.

2.Press <Enter> to set the selection as the intended boot device.

Note: This boot device submenu appears only if at least one boot device of this type is installed. This list will display up to four ATAPI CD-ROM drives, the maximum number of ATAPI CD-ROM drives supported by the BIOS.

Exit Menu

 

Maintenance

Main

Advanced

Security

Power

Boot

 

 

 

 

 

 

 

 

 

Exit

The menu shown in Table 28 is used to exit the BIOS Setup program, saving changes, and loading and saving defaults.

Table 28. Exit Menu

Feature

Exit Saving Changes

Exit Discarding Changes

Load Setup Defaults

Load Custom Defaults

Save Custom Defaults

Discard Changes

Description

Exits and saves the changes in CMOS SRAM.

Exits without saving any changes made in the BIOS Setup program.

Loads the factory default values for all the Setup options.

Loads the custom defaults for Setup options.

Saves the current values as custom defaults. Normally, the BIOS reads the Setup values from flash memory. If this memory is corrupted, the BIOS reads the custom defaults. If no custom defaults are set, the BIOS reads the factory defaults.

Discards changes without exiting Setup. The option values present when the computer was turned on are used.

60

Page 60
Image 60
Intel D845EPT2, D845EBG2 manual Exit Menu, Atapi CD-ROM Drives, Submenu shown in is for setting Atapi CD-ROM drives

D845EBG2, D845EPT2 specifications

The Intel D845EBG2 and D845EPT2 are part of Intel's 845 chipset family, designed primarily for desktop platforms in the early 2000s. Both motherboards catered to a performance-focused market segment, prominently supporting Intel’s Pentium 4 processors through the Socket 478 interface. The D845EBG2 and D845EPT2 are especially noted for their balance of features, affordability, and reliability, making them appealing options for both gaming enthusiasts and regular desktop users during their time.

The D845EBG2 motherboard is distinguished by its support for Intel’s Quad Data Rate (QDR) memory technology, which enabled faster data throughput by allowing more data to be transferred in a given time frame. This motherboard supported dual-channel DDR SDRAM with a maximum capacity of 2GB, providing users with improved memory performance vital for multitasking and memory-intensive applications.

On the other hand, the D845EPT2 also offered similar capabilities but placed a particular emphasis on integrating additional connectivity options. With AGP 4X support, it allowed users to install high-performance graphics cards, which was essential for gaming and graphics processing tasks. Both boards featured multiple PCI slots, ensuring compatibility with a variety of expansion cards for enhanced functionality.

In terms of storage capabilities, both motherboards supported Ultra ATA/100 hard drives, which improved data transfer speeds compared to previous standards. They also included integrated audio, providing 6-channel sound capabilities, which delivered an immersive multimedia experience without requiring additional sound cards.

The technologies implemented in both motherboards included Intel’s Advanced Digital Media Boost for enhanced processing capabilities in multimedia applications, as well as Enhanced Intel SpeedStep technology, which allowed for dynamic adjustment of the processor’s voltage and frequency, optimizing power consumption and thermal output.

Overall, the Intel D845EBG2 and D845EPT2 motherboards were notable for their robust performance, diverse connectivity options, and support for evolving technologies of the time. They left a significant imprint in the landscape of early 2000s computing, providing essential features that catered to both casual users and more demanding computing environments. With their reliability and solid feature set, these motherboards contributed to a range of applications and use cases that defined desktop computing during that era.