If an FCC declaration of conformity marking is present on the board, the following statement applies:
FCC Declaration of Conformity
This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) this device
may not cause harmful interference, and (2) this device must accept any interference received, including interference that
may cause undesired operation.
For questions related to the EMC performance of this product, contact:
Intel Corporation
5200 N.E. Elam Young Parkway
Hillsboro, OR 97124
1-800-628-8686
This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of the
FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential
installation. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in
accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee
that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or
television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct
the interference by one or more of the following measures:
• Reorient or relocate the receiving antenna.
• Increase the separation between the equipment and the receiver.
• Connect the equipment to an outlet on a circuit other than the one to which the receiver is connected.
• Consult the dealer or an experienced radio/TV technician for help.
Any changes or modifications to the equipment not expressly approved by Intel Corporation could void the user’s authority to
operate the equipment.
Canadian Department of Communications Compliance Statement
This digital apparatus does not exceed the Class B limits for radio noise emissions from digital apparatus set out in the
Radio Interference Regulations of the Canadian Department of Communications.
Le présent appareil numerique német pas de bruits radioélectriques dépassant les limites applicables aux appareils
numériques de la classe B prescrites dans le Réglement sur le broullage radioélectrique édicté par le ministére des
Communications du Canada.
Disclaimer
Information in this document is provided in connection with Intel® products. No license, express or implied, by estoppel or
otherwise, to any intellectual property rights is granted by this document. Except as provided in Intel’s Terms and Conditions
of Sale for such products, Intel assumes no liability whatsoever, and Intel disclaims any express or implied warranty, relating
to sale and/or use of Intel products including liability or warranties relating to fitness for a particular purpose, merchantability,
or infringement of any patent, copyright or other intellectual property right. Intel products are not intended for use in medical,
life saving, or life sustaining applications. Intel may make changes to specifications and product descriptions at any time,
without notice.
Desktop Board D925XCV/D925XBC may contain design defects or errors known as errata which may cause the product to
deviate from published specifications. Current characterized errata are available on request.
Contact your local Intel sales office or your distributor to obtain the latest specifications and before placing your product
order.
Copies of documents which have an ordering number and are referenced in this document, or other Intel literature, may be
obtained from Intel Corporation by going to the World Wide Web site at: http://www.intel.com/ or by calling
1-800-548-4725.
Intel, Pentium, and Celeron are registered trademarks of Intel Corporation or its subsidiaries in the United States and other
countries.
* Other names and brands may be claimed as the property of others.
This chapter briefly describes the main features of Intel® Desktop Board D925XCV/D925XBC.
Table 1 summarizes the major features of the desktop board.
Table 1. Feature Summary
Form Factor
Processor
Main Memory
Chipset
Audio
Expansion
Capabilities
LAN Subsystem
BIOS
RAID
• ATX (12.00” x 9.60”) Intel Desktop Board D925XCV
• MicroATX (9.60” x 9.60”) Intel Desktop Board D925XBC
®
Support for an Intel
533 MHz front side bus
• Four 240-pin, 1.8 V SDRAM Dual Inline Memory Module (DIMM) sockets
• 533/400 MHz single or dual channel DDR2 SDRAM interface
• Designed to support up to 4 GB of system memory
NOTE: System resources (such as PCI and PCI Express*) require physical memory
address locations that reduce available memory addresses above 3 GB. This may
result in less than 4 GB of memory being available to the operating system and
applications. For the latest list of tested memory, refer to the Intel World Wide Web
site at: http://support.intel.com/support/motherboards/desktop/
®
925X Express Chipset consisting of:
Intel
• Intel® 82925X Memory Controller Hub (MCH) with Direct Media Interface
®
• Intel
• Intel 925X Express Chipset
• Intel
• Up to four (Intel Desktop Board D925XCV) or two (Intel Desktop Board D925XBC)
• One PCI Express x16 connector
• Two PCI Express x1 connectors (Intel Desktop Board D925XCV) or one PCI
Pentium® 4 processor in the LGA775 package with 800 MHz or
continued
9
Intel Desktop Board D925XCV/D925XBC Product Guide
Table 1. Feature Summary (continued)
Peripheral Interfaces
Power Management
Hardware Management
• Up to eight USB 2.0 ports
Four ports routed to the back panel
Four ports routed to two USB headers
• Four Serial ATA channels, via the ICH6-R, one device per channel
• Up to three IEEE 1394 ports
One port routed to the back panel
Two ports routed to two IEEE 1394 headers
• One IDE interface with ATA-66/100 support
• One diskette drive interface
• One parallel port
• One serial port
• PS/2* keyboard and mouse ports
• Support for Advanced Configuration and Power Interface (ACPI)
• Suspend to RAM (STR)
• Wake on USB, PCI, PCI Express, PS/2, LAN, and front panel
Hardware monitor with:
• Four fan sensing inputs used to monitor fan activity
• Remote diode temperature sensing
®
• Intel
• Voltage sensing to detect out of range values
Precision Cooling Technology fan speed control that automatically
adjusts processor fan speeds based on processor temperature and chassis
fan speeds based on system temperature
Related Links
For more information about Intel Desktop Board D925XCV/D925XBC, including the Technical
Product Specification (TPS), BIOS updates, and device drivers, go to:
Failure to use an ATX12V power supply or not connecting the 12 V (2x2) power connector to
Desktop Board D925XCV/D925XBC may result in the computer not booting.
Desktop Boards D925XCV and D925XBC support a single Intel Pentium 4 processor in the
LGA775 package. Processors are not included with the desktop board and must be purchased
separately.
The processor connects to the Intel desktop board through the LGA775 socket.
The supported processors list for Desktop Boards D925XCV and D925XBC is located on the
web at:
Go to the following links or pages for more information about:
• Instructions on installing or upgrading the processor, page 30 in Chapter 2
• The location of the two power connectors, page 48 in Chapter 2
15
Intel Desktop Board D925XCV/D925XBC Product Guide
Main Memory
NOTE
To be fully compliant with all applicable Intel® SDRAM memory specifications, the desktop board
should be populated with DIMMs that support the Serial Presence Detect (SPD) data structure. If
your memory modules do not support SPD, you will see a notification to this effect on the screen at
power up. The BIOS will attempt to configure the memory controller for normal operation.
The desktop board supports dual or single channel memory configurations defined in Table 4.
Table 4. Memory Configurations
Memory Speed Processor FSB frequency (MHz) Memory Speed Outcome (MHz)
800 533 DDR2 533 Pentium 4 processor
533 533
800 400 DDR2 400 Pentium 4 processor
533 333
• Four 240-pin Double Data Rate 2 (DDR2) SDRAM Dual Inline Memory Module (DIMMs)
connectors with gold-plated contacts.
• Support for:
Unbuffered, non-registered single or double-sided DIMMs
Serial Presence Detect (SPD) memory only
1.8 V memory
Memory configuration listed below:
• Up to 2.0 GB utilizing 256 Mb technology
• Up to 4.0 GB utilizing 512 Mb or 1 Gb technology
NOTE
System resources (such as PCI and PCI Express) require physical memory address locations that
reduce available memory addresses above 3 GB. This may result in less than 4 GB of memory
being available to the operating system and applications.
Related Links
Go to the following links or pages for more information about:
• The latest list of tested memory, http://support.intel.com/support/motherboards/desktop/
Table 5 describes the LED states when the board is powered up and the 10/100/1000 Gigabit
Ethernet LAN subsystem is operating.
Table 5. RJ-45 10/100/1000 Gigabit Ethernet LAN Connector LEDs
LED Color LED State Indicates
Off 10 Mbit/sec data rate is selected. Bi-color LED
Green 100 Mbit/sec data rate is selected.
Yellow 1 Gbit/sec data rate is selected.
Off LAN link is not established. Green
On (pulsing) The computer is communicating with another computer on the
LAN.
18
Desktop Board Features
Hi-Speed USB 2.0 Support
NOTE
Computer systems that have an unshielded cable attached to a USB port might not meet FCC
Class B requirements, even if no device or a low-speed USB device is attached to the cable.
Use a shielded cable that meets the requirements for a full-speed USB device.
The desktop board supports up to eight USB 2.0 ports via ICH6-R; four ports routed to the back
panel and four routed to two internal USB 2.0 headers. USB 2.0 ports are backward compatible
with USB 1.1 devices. USB 1.1 devices will function normally at USB 1.1 speeds.
USB 2.0 support requires both an operating system and drivers that fully support USB 2.0 transfer
rates. Disabling Hi-Speed USB in BIOS reverts all USB 2.0 ports to USB 1.1 operation. This may
be required to accommodate operating systems that do not support USB 2.0.
Enhanced IDE Interface
The ICH6-R’s IDE interface handles the exchange of information between the processor and
peripheral devices like hard disks, CD-ROM drives, and Iomega Zip* drives inside the computer.
The interface supports:
• Up to two IDE devices (such as hard drives)
• ATAPI-style devices (such as CD-ROM drives)
• Older PIO Mode devices
• Ultra DMA-33 and ATA-66/100 protocols
• Laser Servo (LS-120) drives
Serial ATA
The desktop board supports four Serial ATA channels via the ICH6-R, connecting one device per
channel in either a RAID or non-RAID configuration.
Expandability
The desktop boards support the following:
• Desktop board D925XCV:
One PCI Express x16 add-in card
Two PCI Express x1 add-in cards
Four PCI bus add-in cards
• Desktop board D925XBC:
One PCI Express x16 add-in card
One PCI Express x1 add-in card
Two PCI bus add-in cards
19
Intel Desktop Board D925XCV/D925XBC Product Guide
Related Links
For information about installing the PCI Express x16 card, see page 38 in Chapter 2.
BIOS
The BIOS provides the Power-On Self-Test (POST), the BIOS Setup program, the PCI and IDE
auto-configuration utilities, and the video BIOS.
See Chapter 3 on page 61 for more information about the BIOS.
Serial ATA and IDE Auto Configuration
If you install a Serial ATA or IDE device (such as a hard drive) in your desktop board, the autoconfiguration utility in the BIOS automatically detects and configures the device for your computer.
You do not need to run the BIOS Setup program after installing a Serial ATA or IDE device. You
can override the auto-configuration options by specifying manual configuration in the BIOS Setup
program.
When booting from a Serial ATA device, Serial ATA connector 0 is the first boot device and Serial
ATA connector 3 is the last boot device.
PCI and PCI Express Auto Configuration
If you install a PCI/PCI Express add-in card in your desktop board, the PCI/PCI Express autoconfiguration utility in the BIOS automatically detects and configures the resources (IRQs, DMA
channels, and I/O space) for that add-in card. You do not need to run the BIOS Setup program after
you install a PCI/PCI Express add-in card.
Security Passwords
The BIOS includes security features that restrict whether the BIOS Setup program can be accessed
and who can boot the computer. A supervisor password and a user password can be set for the
BIOS Setup and for booting the computer, with the following restrictions:
• The supervisor password gives unrestricted access to view and change all Setup options. If
only the supervisor password is set, pressing <Enter> at the password prompt of Setup gives
the user restricted access to Setup.
• If both the supervisor and user passwords are set, you must enter either the supervisor
password or the user password to access Setup. Setup options are then available for viewing
and changing depending on whether the supervisor or user password was entered.
• Setting a user password restricts who can boot the computer. The password prompt is
displayed before the computer is booted. If only the supervisor password is set, the computer
boots without asking for a password. If both passwords are set, you can enter either password
to boot the computer.
Chassis Intrusion
The desktop board supports a chassis security feature that detects if the chassis cover has been
removed. The security feature uses a mechanical switch on the chassis that can be connected to the
chassis intrusion header on the desktop board. See Figure 21 on page 43 for the location of the
chassis intrusion header.
20
Desktop Board Features
Power Management Features
Power management is implemented at several levels, including:
• Advanced Configuration and Power Interface (ACPI)
• Hardware support:
Fan connectors
Suspend to RAM (Instantly Available PC technology)
Resume on Ring
Wake from USB
Wake from PS/2 keyboard/mouse
PME# wakeup support
ACPI
ACPI gives the operating system direct control over the power management and Plug and Play
functions of a computer. The use of ACPI with the desktop board requires an operating system that
provides full ACPI support.
Fan Connectors
Desktop Board D925XCV has three chassis fan headers (two 3-pin and one 4-pin) and one
processor fan header (4-pin).
Desktop Board D925XBC has two chassis fan headers (3-pin) and one processor fan header (4-pin).
See Figure 24 on page 48 for the location of the fan headers.
Fan Speed Control (Intel® Precision Cooling Technology)
Intel Precision Cooling Technology automatically adjusts the processor fan speed based on the
processor temperature and adjusts the chassis fan speeds depending on the system temperature.
System fan noise may be reduced by operating controlled chassis and processor fans at the
minimum necessary speeds.
NOTE
Not all chassis fan headers on Desktop Board D925XCVare controlled. Refer to Table 2 on
page 12 to identify controlled chassis fan headers.
The processor and chassis fan speed control features can be disabled independently through the
desktop board BIOS. Disabling the processor fan speed control will result in the fan operating at
full speed if it is not a self controlled fan. It is recommended that processor fan speed control
remain enabled (default BIOS setting) when using the processor fan heat-sink included with Intel
boxed processors. Disabling the chassis fan speed control results in chassis fans always operating
at full speed. The chassis fan speed control feature should be disabled if a self-controlled chassis
fan is attached to any controlled chassis fan header.
The overall system noise reduction will vary based on system configuration and environment.
21
Intel Desktop Board D925XCV/D925XBC Product Guide
Suspend to RAM (Instantly Available PC Technology)
CAUTION
For Instantly Available PC technology, the 5 V standby line for the power supply must be capable
of delivering adequate +5 V standby current. Failure to provide adequate standby current when
using this feature can damage the power supply and/or effect ACPI S3 sleep state functionality.
CAUTION
Power supplies used with this desktop board must be able to provide enough standby current to
support the standard Instantly Available (ACPI S3 sleep state) configuration. If the standby
current necessary to support multiple wake events from the PCI and/or USB buses exceeds power
supply capacity, the desktop board may lose register settings stored in memory.
Instantly Available PC technology enables the board to enter the ACPI S3 (Suspend-to-RAM) sleep
state. While in the S3 sleep state, the computer will appear to be off. When signaled by a wake-up
device or event, the system quickly returns to its last known awake state.
The desktop board’s standby power indicator, shown in Figure 3, is lit when there is standby power
to the system. This includes the memory modules and PCI bus connectors, even when the
computer appears to be off.
If the system has a dual-colored power LED on the front panel, the sleep state is indicated by the
LED turning amber.
Figure 3. Location of Standby Power Indicator
Related Links
OM16923
For more information on standby current requirements for the desktop board, go to the link below,
select the desktop board name, and then select Technical Documentation:
http://developer.intel.com/design/motherbd/
22
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