IB868
Intel Pentium® M PICMG 1.3
SHB Express CPU Card
USER’S MANUAL
Version 1.0
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Table of Contents
Introduction....................................................... 1
Product Description ..........................................................1
Checklist...........................................................................2
Specifications....................................................................3
Board Dimensions.............................................................4
Installations....................................................... 5
Installing the CPU.............................................................6
Installing the Memory .......................................................7
Setting the Jumpers...........................................................8
Connectors on IB868.......................................................11
BIOS Setup....................................................... 21
Drivers Installation ...................................... 43
Intel Chipset Software Installation Utility ........................44
VGA Drivers Installation.................................................46
AC97 Codec Audio Driver Installation............................48
LAN Drivers Installation .................................................49
Appendix........................................................... 51
A. I/O Port Address Map.................................................51
B. Interrupt Request Lines (IRQ) ....................................52
C. Watchdog Timer Configuration ..................................53
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INTRODUCTION
Introduction
Product Description
The IB868 PICMG1.3 SHB board incorporates the Mobile Intel® 915GM
Express Chipset for Embedded Computing, consisting of the Intel® 915GM
Graphic Memory Controller Hub (GMCH) and Intel® I/O Controller Hub 6-M
(ICH6-M), is an optimized integrated graphics solution with a 400 MHz and 533
MHz front-side bus.
The integrated 32-bit 3D graphics engine, based on Intel® Graphics Media
Accelerator 900 (Intel® GMA 900) architecture, operates at core speeds of up to
320 MHz. It features a low-power design, is validated with the Intel® Pentium® M
and Intel® Celeron® M processors on 90nm process. With two DIMM socket on
board, the board supports up to 2GB of DDR2 533 MHz system memory.
Intel® Graphics supports a unique intelligent memory management scheme called
Dynamic Video Memory Technology (DVMT). DVMT handles diverse
applications by providing the maximum availability of system memory for general
computer usage, while supplying additional graphics memory when a 3D-intensive
application requests it. The Intel GMA 900 graphics architecture also takes
advantage of the high-performance Intel processor. Intel GMA 900 graphics
supports Dual Independent Display technology.
The main features of the board are:
§
§
§
§
§
§
§
Supports Pentium® M / Celeron® M processors
Two DDR2 SDRAM DIMM, Max. 2GB
Onboard 10/100 BaseT, optional Gigabit Ethernet
Intel® 915 Express VGA for CRT / LVDS
6x USB 2.0, 2x COM, Watchdog timer, Digital I/O
Optional backplane with 3x PCI-E(x1), 1x PCI-E (x16), 4x PCI slots
Dimensions of the board are 338mm x 126mm.
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INTRODUCTION
Checklist
Your IB868 Pentium M CPU card package should include the items
listed below:
·
·
·
·
·
·
·
The IB868 CPU Card
This User’s Manual
1 IDE Ribbon Cable
1 Floppy Ribbon Connector
SATA Power Cord
SATA Cable
2 Serial Port Ribbon Cable and 1 Parallel Port Attached to a
Mounting Bracket
·
·
1 Y-Cable supporting a PS/2 Keyboard and a PS/2 Mouse
1 CD containing the following:
·
·
Chipset Drivers
Flash Memory Utility
·
·
·
Optional audio cable with bracket (Audio8K)
Optional USB cable with bracket (USB2K-4)
Optional backplane (IP380)
2
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INTRODUCTION
Specifications
Product Name
Form Factor
CPU Type
CPU Voltage
System Speed
CPU FSB
IB868
PICMG 1.3 SHB Express full size CPU card
Intel Pentium M / Celeron M
0.700V ~ 1.708V
Up to 2.26GHz
400/533MHz FSB
Cache
2MB (Pentium M)/ 512KB(Celeron M) Level2 (CPU
integrated)
Green /APM
CPU Socket
Chipset
APM1.2
Socket 479 or micro-FCBGA on board
INTEL 915GM Chipset
GMCH: 915GM 1257-pin FCBGA
ICH6M: 82801FBM 609-pin mBGA
FWH
BIOS
Award BIOS, support ACPI Function
Memory
VGA
DDRII 533/400 DIMM x2 (w/o ECC function), Max. 2GB
915GM built-in, supports CRT
LVDS
915GM built-in, supports 18+18 bits single or dual channel
LVDS
LAN
1. ICH6M built-in 10/100BT MAC + Intel 82562ET PHY
2. Marvell 88E8053 PCI Express Gigabit LAN controller x1
ICH6M built-in USB 2.0 host controller, support 6 ports
USB
Serial ATA
Parallel IDE
Audio
ICH6M built-in SATA controller, supports 2 ports
ICH6M built-in one channel Ultra DMA 33/66/100 for HDDs
ICH6M Built-in Audio controller + AC97 Codec ALC655
(Line-out, Line-in, Mic.)
LPC I/O
W83627EHF: Parallel x1, COM1, COM2 (RS232), FDC
1.44MB, IrDA x1 & Hardware monitor (3 thermal inputs, 4
voltage monitor inputs, VID0-4, 3 Fan Headers)
Supports PS/2 Keyboard/Mouse connector
Keyboard/Mouse
Edge Connector
DB15 x1 for VGA
PS/2 Connector x1 for keyboard/mouse
RJ-45 x2 for 10/100 & Gigabit LAN
40 pins box-header x1 for IDE1
34 pins box-header x1 for Floppy
26 pins box-header x1 for LPT
10 pins box-header x2 for COM1/2
8 (4x2) pins header x 3 for USB1~6
5 pins header x 1 for IrDA(cut pin2)
DF13 connector x2 for LVDS
OnBoard
Header/Connector
12 pins header x1 for audio Line-Out, Line-In
& Microphone
4 pins header x1 for built-in speaker
SATA connector x2 for 2 SATA ports
Yes (256 segments, 0, 1, 2…255 sec/min)
Watchdog Timer
Digital I/O
4 In / 4 Out
System Voltage
Other
Board Size
+5V, +12V, 5VSB (2A)
Modem Wakeup, LAN Wakeup
338mm x 126mm
Golden Finger I/F
(Also Backplane Spec.)
PCI w/ 4x PCI master (Supports 4 PCI Slots)
3x (x1 PCIe slots)
1x (x16 PCIe slot)
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INTRODUCTION
Board Dimensions
4
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INSTALLATIONS
Installations
This section provides information on how to use the jumpers and
connectors on the IB868 in order to set up a workable system. The topics
covered are:
Installing the CPU ............................................................................6
Installing the Memory.......................................................................7
Setting the Jumpers...........................................................................8
Connectors on IB868.....................................................................11
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INSTALLATIONS
Installing the CPU
The IB868 board supports a Socket 479 processor socket for Intel®
Pentium® M or Celeron® M processors.
The processor socket comes with a screw to secure the processor. As
shown in the left picture below, loosen the screw first before inserting the
processor. Place the processor into the socket by making sure the notch
on the corner of the CPU corresponds with the notch on the inside of the
socket. Once the processor has slide into the socket, fasten the screw.
Refer to the figures below.
Ensure that the CPU heat sink and the CPU top surface are in
total contact to avoid CPU overheating problem that would
cause your system to hang or be unstable.
NOTE:
6
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INSTALLATIONS
Installing the Memory
The IB868 board supports two DDR2 memory socket for a maximum
total memory of 2GB in DDR2 memory type.
Installing and Removing Memory Modules
To install the DDR2 modules, locate the memory slot on the board and
perform the following steps:
1. Hold the DDR2 module so that the key of the DDR2 module align with
those on the memory slot.
2. Gently push the DDR2 module in an upright position until the clips of
the slot close to hold the DDR2 module in place when the DDR
module touches the bottom of the slot.
3. To remove the DDR2 module, press the clips with both hands.
DDR2 Module
Lock
Lock
Lock
Lock
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INSTALLATIONS
Setting the Jumpers
Jumpers are used on IB868 to select various settings and features
according to your needs and applications. Contact your supplier if you
have doubts about the best configuration for your needs. The following
lists the connectors on IB868 and their respective functions.
Jumper Locations on IB868...............................................................9
JP2: Panel Voltage Setting...............................................................10
JP3: Clear CMOS Contents..............................................................10
JP5: VGA Signal Select....................................................................10
JP6: CPU Front Side Bus Frequency Setting..................................10
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INSTALLATIONS
Jumper Locations on IB868
Jumpers on IB868......................................................................... Page
JP2: Panel Voltage Setting...............................................................10
JP3: Clear CMOS Contents..............................................................10
JP5: VGA Signal Select....................................................................10
JP6: CPU Front Side Bus Frequency Setting..................................10
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INSTALLATIONS
JP2: Panel Voltage Setting
JP2
Setting
Panel Voltage
Pin 1-2
Short/Closed
3.3V
Pin 2-3
Short/Closed
5V
JP3: Clear CMOS Contents
Note that the ATX-power connector should be disconnected from the
CPU card before clearing CMOS.
JP3
Setting
Function
Pin 1-2
Short/Closed
Normal
Pin 2-3
Short/Closed
Clear CMOS
JP5: VGA Signal Select
Use these 2-pin header to select the on board 915GM integrated VGA or
from the backplane PCI-EXPRESS*16 External Graphics card.
JP5
Setting
Function
Pin 1-2
Short/Closed
Built-in VGA
SHORT
OPEN
Pin 1-2
open
External VGA
JP6: CPU Front Side Bus Frequency Setting
JP6
Setting
Function
Pin 1-2
Short/Closed
533 MHz
Pin 2-3
Short/Closed
400 MHz
10
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INSTALLATIONS
[
Connectors on IB868
The connectors on IB868 allows you to connect external devices such as
keyboard, floppy disk drives, hard disk drives, printers, etc. The following
table lists the connectors on IB868 and their respective functions.
IDE1, IDE2: EIDE Connectors........................................................13
FDD1: Floppy Drive Connector ......................................................13
CN1, CN2: Serial ATA (SATA) Connectors...................................14
FAN1: CPU Fan Power Connector .................................................14
FAN2, FAN3: System Fan Power Connector .................................14
J1: ATX 12V/+12V Power Connector............................................14
J2: System Function Connector .......................................................15
J4, J5: LVDS Connectors (2nd channel, 1st channel).....................16
J6: Panel Inverter Power Connector ................................................17
J7, J8 , J9: USB Connectors.............................................................17
J10, J12: COM1 and COM2 Serial Ports Connector......................17
J11: Parallel Port Connector............................................................18
J13: Digital input / output Connector..............................................18
J14: IrDA Connector.........................................................................18
J15: Wake On LAN Connector ........................................................19
J16, J17: External PS/2 Mouse and Keyboard Connector..............19
J18: CD-In Audio Connector...........................................................19
J19: PS/2 Keyboard and Mouse Connector.....................................19
J20: Primary RJ45 Connector..........................................................20
J21: Gigabit LAN RJ45 Connector..................................................20
J22: External Audio Connector........................................................20
J23: VGA CRT Connector...............................................................20
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INSTALLATIONS
Jumper Locations on IB868
Connectors on IB868.................................................................... Page
IDE1, IDE2: EIDE Connectors........................................................13
FDD1: Floppy Drive Connector ......................................................13
CN1, CN2: Serial ATA (SATA) Connectors...................................14
FAN1: CPU Fan Power Connector .................................................14
FAN2, FAN3: System Fan Power Connector .................................14
J1: ATX 12V/+12V Power Connector............................................14
J2: System Function Connector .......................................................15
J4, J5: LVDS Connectors (2nd channel, 1st channel).....................16
J6: Panel Inverter Power Connector ................................................17
J7, J8 , J9: USB Connectors.............................................................17
J10, J12: COM1 and COM2 Serial Ports Connector......................17
J11: Parallel Port Connector............................................................18
J13: Digital input / output Connector..............................................18
J14: IrDA Connector.........................................................................18
J15: Wake On LAN Connector ........................................................19
J16, J17: External PS/2 Mouse and Keyboard Connector..............19
J18: CD-In Audio Connector...........................................................19
J19: PS/2 Keyboard and Mouse Connector.....................................19
J20: Primary RJ45 Connector..........................................................20
J21: Gigabit LAN RJ45 Connector..................................................20
J22: External Audio Connector........................................................20
J23: VGA CRT Connector...............................................................20
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INSTALLATIONS
IDE1, IDE2: EIDE Connectors
Signal Name
Pin #
Pin #
Signal Name
Reset IDE
Host data 7
Host data 6
Host data 5
Host data 4
Host data 3
Host data 2
Host data 1
Host data 0
Ground
1
2
Ground
Host data 8
Host data 9
Host data 10
Host data 11
Host data 12
Host data 13
Host data 14
Host data 15
Protect pin
Ground
3
4
5
6
8
7
9
10
12
14
16
18
20
22
24
26
28
30
32
34
36
38
40
11
13
15
17
19
21
23
25
27
29
31
33
35
37
39
DRQ0
Host IOW
Host IOR
IOCHRDY
DACK0
Ground
Ground
Host ALE
Ground
No connect
No connect
Address 2
Chip select 1
Ground
IRQ14
Address 1
Address 0
Chip select 0
Activity
FDD1: Floppy Drive Connector
Signal Name Pin # Pin #
Signal Name
Ground
Ground
Ground
Ground
Ground
Ground
Ground
Ground
Ground
Ground
Ground
Ground
Ground
Ground
Ground
Ground
Ground
1
3
5
7
2
4
6
8
RM/LC
No connect
No connect
Index
Motor enable 0
Drive select 1
Drive select 0
Motor enable 1
Direction
9
10
12
14
16
18
20
22
24
26
28
30
32
34
11
13
15
17
19
21
23
25
27
29
31
33
Step
Write data
Write gate
Track 00
Write protect
Read data
FDD1
Side 1 select
Diskette change
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INSTALLATIONS
CN1, CN2: Serial ATA (SATA) Connectors
The SATA connectors support serial ATA 150. Each connector can only
use one serial ATA hard disk. CN2 is port 1 and CN1 is port 2.
FAN1: CPU Fan Power Connector
FAN1 is a 3-pin header for the CPU fan. The fan must be a 12V fan.
Pin #
Signal Name
1
2
3
Ground
+12V
Rotation detection
FAN2, FAN3: System Fan Power Connector
FAN2 and FAN3 are 3-pin headers for system fans. The fan must be a
12V fan.
Pin #
Signal Name
1
2
3
Ground
+12V
Rotation detection
J1: ATX 12V/+12V Power Connector
Pin #
Signal Name
1
2
3
4
Ground
Ground
+12V
+12V
14
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INSTALLATIONS
J2: System Function Connector
J2 provides connectors for system indicators that provide light indication
of the computer activities and switches to change the computer status. J2
is a 20-pin header that provides interfaces for the following functions.
Hard Disk Drive LED
Reset Switch
Not Defined
ATX Power On Switch
Not Defined
Power LED
Speaker
Speaker: Pins 1 - 4
Pin #
Signal Name
Speaker out
No connect
Ground
1
2
3
4
+5V
Power LED: Pins 11 - 15
Pin #
Signal Name
11
12
13
14
15
Power LED
No connect
Ground
No connect
Ground
ATX Power ON Switch: Pins 7 and 17
This 2-pin connector is an “ATX Power Supply On/Off
Switch” on the system that connects to the power switch on
the case. When pressed, the power switch will force the
system to power on. When pressed again, it will force the
system to power off.
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INSTALLATIONS
Reset Switch: Pins 9 and 19
The reset switch allows the user to reset the system without
turning the main power switch off and then on again.
Orientation is not required when making a connection to this
header.
Hard Disk Drive LED Connector: Pins 10 and 20
This connector connects to the hard drive activity LED on
control panel. This LED will flash when the HDD is being
accessed.
Pin #
Signal Name
10
20
HDD Active
5V
J4, J5: LVDS Connectors (2nd channel, 1st channel)
The LVDS connectors, DF13 20-pin mating connectors, are composed of
the first channel (J5) and second channel (J4) to support 18-bit or 36-bit.
Signal Name Pin # Pin #
Signal Name
TX0+
TX0-
Ground
TX1-
2
4
6
1
3
5
Ground
TX1+
5V/3.3V
TX3-
TX2-
Ground
TXC-
5V/3.3V
+12V
8
7
9
Ground
TX3+
TX2+
Ground
TXC+
ENABKL
+12V
10
12
14
16
18
20
11
13
15
17
19
Remarks: Maximum current for +12V is 1A.
16
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INSTALLATIONS
J6: Panel Inverter Power Connector
Pin #
Signal Name
1
2
3
+12V
ENABKL
Ground
Remarks: Maximum current is 1A.
J7, J8 , J9: USB Connectors
The following table shows the pin outs of the USB pin headers
connectors. Overall, the two pin headers support four USB ports.
Signal Name Pin Pin Signal Name
Vcc
1
2
3
4
5
6
7
8
Ground
USB1+
USB1-
Vcc
USB0-
USB0+
Ground
J7
Signal Name Pin Pin Signal Name
Vcc
USB2-
1
2
5
6
Ground
USB3+
USB2+
Ground
3
4
7
8
USB3-
Vcc
J8
Signal Name Pin Pin Signal Name
Vcc
1
2
3
4
5
6
7
8
Ground
USB5+
USB5-
Vcc
USB4-
USB4+
Ground
J9
J10, J12: COM1 and COM2 Serial Ports Connector
J10 and J12 both 10-pin headers supporting RS232 COM ports.
Signal
Name
DCD
RX
Pin
Pin
Signal
Name
DSR
RTS
CTS
RI
1
2
3
4
5
6
7
8
9
10
TX
DTR
GND
NC
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INSTALLATIONS
J11: Parallel Port Connector
Signal Name
Pin # Pin #
Signal Name
Line printer strobe
PD0, parallel data 0
PD1, parallel data 1
PD2, parallel data 2
PD3, parallel data 3
PD4, parallel data 4
PD5, parallel data 5
PD6, parallel data 6
PD7, parallel data 7
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
N/A
AutoFeed
Error
Initialize
Select
Ground
Ground
Ground
Ground
Ground
Ground
Ground
Ground
N/A
ACK, acknowledge
Busy
J11
Paper empty
Select
J13: Digital input / output Connector
The pin assignments of the digital input/output connector are as follows:
Signal Name
Ground
Out-3
Pin Pin Signal Name
1
3
5
7
9
2
4
6
8
10
+5V
Out-1
Out-0
In-1
Out-2
In-3
In-2
In-0
J13
J14: IrDA Connector
J14 is used for an optional IrDA connector for wireless communication.
Pin #
Signal Name
1
2
3
4
5
+5V
No connect
Ir RX
Ground
Ir TX
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INSTALLATIONS
J15: Wake On LAN Connector
J15 is a 3-pin header for the Wake On LAN function on the motherboard.
The following table shows the pin out assignments of this connector.
Wake On LAN will function properly only with an ATX power supply
with 5VSB that has 1A.
Pin #
Signal Name
1
2
3
+5VSB
Ground
LAN Wakeup
J16, J17: External PS/2 Mouse and Keyboard Connector
Pin #
J17
J16
1
2
3
4
5
KB clock
KB data
N.C.
Ground
Vcc
Mouse data
N.C.
Ground
Vcc
Mouse clock
J18: CD-In Audio Connector
Pin # Signal Name
1
2
3
4
CD Audio R
Ground
Ground
CD Audio L
J19: PS/2 Keyboard and Mouse Connector
J19 uses a Y-cable with dual D-connectors for a PS/2 keyboard and a
PS/2 mouse.
Pin #
Signal Name
1
2
3
4
5
6
Mouse data
Keyboard data
Ground
Vcc
Mouse Clock
Keyboard Clock
J19
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INSTALLATIONS
J20: Primary RJ45 Connector
J20 is the primary RJ-45 connector based on the chipset integrated LAN.
The figure below shows the pin out assignments of the connector and its
corresponding input jack.
J21: Gigabit LAN RJ45 Connector
J21 is the Gigabit LAN RJ45 connector.
J22: External Audio Connector
J22 is a 12-pin header that is used to connect to the optional audio cable
that integrates jacks for Line In, Line Out and Mic.
Signal Name
Pin #
Pin #
Signal Name
LINEOUT_R
Ground
1
3
2
4
LINEOUT_L
Ground
LINEIN_R
Ground
5
6
LINEIN L
Ground
7
9
11
8
10
12
Mic-In
Ground
VREF-Mic
Protect pin
J23: VGA CRT Connector
The pin assignments of the J23 VGA CRT connector are as follows:
Signal Name Pin Pin Signal Name
Red
Blue
1
3
2
4
Green
N.C.
GND
GND
N.C.
N.C.
HSYNC
NC
5
7
9
11
13
15
6
8
10
12
14
GND
GND
GND
N.C.
J23
VSYNC
20
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BIOS SETUP
BIOS Setup
This chapter describes the different settings available in the Award BIOS
that comes with the board. The topics covered in this chapter are as
follows:
BIOS Introduction.............................................................................22
BIOS Setup........................................................................................22
Standard CMOS Setup......................................................................24
Advanced BIOS Features..................................................................27
Advanced Chipset Features...............................................................30
Integrated Peripherals........................................................................33
Power Management Setup................................................................36
PNP/PCI Configurations..................................................................39
PC Health Status...............................................................................40
Frequency/Voltage Control..............................................................41
Load Fail-Safe Defaults....................................................................42
Load Optimized Defaults..................................................................42
Set Supervisor/User Password.........................................................42
Save & Exit Setup.............................................................................42
Exit Without Saving..........................................................................42
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BIOS SETUP
BIOS Introduction
The Award BIOS (Basic Input/Output System) installed in your computer
system’ s ROM supports Intel processors. The BIOS provides critical
low-level support for a standard device such as disk drives, serial ports
and parallel ports. It also adds virus and password protection as well as
special support for detailed fine-tuning of the chipset controlling the
entire system.
BIOS Setup
The Award BIOS provides a Setup utility program for specifying the
system configurations and settings. The BIOS ROM of the system stores
the Setup utility. When you turn on the computer, the Award BIOS is
immediately activated. Pressing the <Del> key immediately allows you to
enter the Setup utility. If you are a little bit late pressing the <Del> key,
POST (Power On Self Test) will continue with its test routines, thus
preventing you from invoking the Setup. If you still wish to enter Setup,
restart the system by pressing the ”Reset” button or simultaneously
pressing the <Ctrl>, <Alt> and <Delete> keys. You can also restart by
turning the system Off and back On again. The following message will
appear on the screen:
Press <DEL> to Enter Setup
In general, you press the arrow keys to highlight items, <Enter> to select,
the <PgUp> and <PgDn> keys to change entries, <F1> for help and
<Esc> to quit.
When you enter the Setup utility, the Main Menu screen will appear on the
screen. The Main Menu allows you to select from various setup functions
and exit choices.
22
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BIOS SETUP
Phoenix - AwardBIOS CMOS Setup Utility
Standard CMOS Features
Frequency/Voltage Control
Advanced BIOS Features
Advanced Chipset Features
Integrated Peripherals
Power Management Setup
PnP/PCI Configurations
PC Health Status
Load Fail-Safe Defaults
Load Optimized Defaults
Set Supervisor Password
Set User Password
Save & Exit Setup
Exit Without Saving
ESC : Quit
áâàß: Select Item
F10 : Save & Exit Setup
Time, Date, Hard Disk Type…
The section below the setup items of the Main Menu displays the control
keys for this menu. At the bottom of the Main Menu just below the
control keys section, there is another section, which displays information
on the currently highlighted item in the list.
If the system cannot boot after making and saving system
changes with Setup, the Award BIOS supports an override to
the CMOS settings that resets your system to its default.
Note:
It is strongly recommended that you avoid making any
changes to the chipset defaults. These defaults have been
carefully chosen by both Award and your system
manufacturer to provide the absolute maximum
performance and reliability. Changing the defaults could
cause the system to become unstable and crash in some
cases.
Warning:
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BIOS SETUP
Standard CMOS Setup
“Standard CMOS Setup” choice allows you to record some basic
hardware configurations in your computer system and set the system
clock and error handling. If the motherboard is already installed in a
working system, you will not need to select this option. You will need to
run the Standard CMOS option, however, if you change your system
hardware configurations, the onboard battery fails, or the configuration
stored in the CMOS memory was lost or damaged.
Phoenix - AwardBIOS CMOS Setup Utility
Standard CMOS Features
Date (mm:dd:yy)
Time (hh:mm:ss)
Wed, Apr 28, 2004
00 : 00 : 00
Item Help
Menu Level >
IDE Channel 0 Master
IDE Channel 0 Slave
IDE Channel 1 Master
IDE Channel 1 Slave
None
None
None
None
Change the day, month,
Year and century
Drive A
Drive B
1.44M, 3.5 in.
None
Video
EGA/VGA
All Errors
Halt On
Base Memory
Extended Memory
Total Memory
640K
129024K
130048K
At the bottom of the menu are the control keys for use on this menu. If
you need any help in each item field, you can press the <F1> key. It will
display the relevant information to help you. The memory display at the
lower right-hand side of the menu is read-only. It will adjust
automatically according to the memory changed. The following describes
each item of this menu.
Date
The date format is:
Day :
Sun to Sat
1 to 12
1 to 31
Month :
Date :
Year :
1999 to 2099
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BIOS SETUP
To set the date, highlight the “Date” field and use the PageUp/ PageDown
or +/- keys to set the current time.
Time
The time format is: Hour : 00 to 23
Minute : 00 to 59
Second : 00 to 59
To set the time, highlight the “Time” field and use the <PgUp>/ <PgDn>
or +/- keys to set the current time.
IDE Channel Master/Slave
The onboard PCI IDE connectors provide Primary and Secondary
channels for connecting up to four IDE hard disks or other IDE devices.
Each channel can support up to two hard disks; the first is the “Master”
and the second is the “Slave”.
Press <Enter> to configure the hard disk. The selections include Auto,
Manual, and None. Select ‘ Manual’ to define the drive information
manually. You will be asked to enter the following items.
CYLS :
HEAD :
PRECOMP :
LANDING ZONE :
SECTOR :
Number of cylinders
Number of read/write heads
Write precompensation
Landing zone
Number of sectors
The Access Mode selections are as follows:
CHS (HD < 528MB)
LBA (HD > 528MB and supports
Logical Block Addressing)
Large (for MS-DOS only)
Auto
Remarks: The main board supports two serial ATA ports and are
represented in this setting as IDE Channel 2 or 3.
Drive A / Drive B
These fields identify the types of floppy disk drive A or drive B that has
been installed in the computer. The available specifications are:
360KB 1.2MB 720KB 1.44MB 2.88MB
5.25 in. 5.25 in. 3.5 in.
3.5 in.
3.5 in.
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BIOS SETUP
Video
This field selects the type of video display card installed in your system.
You can choose the following video display cards:
EGA/VGA
For EGA, VGA, SEGA, SVGA
or PGA monitor adapters. (default)
Power up in 40 column mode.
Power up in 80 column mode.
For Hercules or MDA adapters.
CGA 40
CGA 80
MONO
Halt On
This field determines whether or not the system will halt if an error is
detected during power up.
No errors
The system boot will not be halted for any error
that may be detected.
All errors
Whenever the BIOS detects a non-fatal error,
the system will stop and you will be prompted.
The system boot will not be halted for a
keyboard error; it will stop for all other errors
The system boot will not be halted for a disk
error; it will stop for all other errors.
All, But Keyboard
All, But Diskette
All, But Disk/Key
The system boot will not be halted for a key-
board or disk error; it will stop for all others.
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BIOS SETUP
Advanced BIOS Features
This section allows you to configure and improve your system and allows
you to set up some system features according to your preference.
Phoenix - AwardBIOS CMOS Setup Utility
Advanced BIOS Features
CPU Feature
Press Enter
Press Enter
Disabled
Enabled
Enabled
Floppy
Hard Disk
CDROM
Enabled
Disabled
Disabled
On
ITEM HELP
Hard Disk Boot Priority
Virus Warning
Menu Level >
CPU L1 and L2 Cache
Quick Power On Self Test
First Boot Device
Second Boot Device
Third Boot Device
Boot Other Device
Swap Floppy Drive
Boot Up Floppy Seek
Boot Up NumLock Status
Gate A20 Option
Fast
Typematic Rate Setting
Typematic Rate (Chars/Sec)
Typematic Delay (Msec)
Security Option
Disabled
6
250
Setup
APIC Mode
Enabled
1.4
MPS Version Control for OS
OS Select For DRAM>64MB
Report No FDD For WIN 95
Small Logo (EPA) Show
Non-OS2
Yes
Enabled
CPU Feature
Press Enter to configure the settings relevant to CPU Feature.
Hard Disk Boot Priority
With the field, there is the option to choose, aside from the hard disks connected,
“Bootable add-in Cards” which refers to other external devices.
Virus Warning
If this option is enabled, an alarm message will be displayed when trying to write
on the boot sector or on the partition table on the disk, which is typical of the
virus.
CPU L1 and L2 Cache
Cache memory is additional memory that is much faster than conventional DRAM
(system memory). CPUs from 486-type on up contain internal cache memory,
and most, but not all, modern PCs have additional (external) cache memory.
When the CPU requests data, the system transfers the requested data from the
main DRAM into cache memory, for even faster access by the CPU. These items
allow you to enable (speed up memory access) or disable the cache function. By
default, these items are Enabled.
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BIOS SETUP
Quick Power On Self Test
When enabled, this field speeds up the Power On Self Test (POST) after
the system is turned on. If it is set toEnabled, BIOS will skip some items.
First/Second/Third Boot Device
These fields determine the drive that the system searches first for an
operating system. The options available include Floppy, LS120, Hard
Disk, CDROM, ZIP100, USB-Floppy, USB-ZIP, USB-CDROM, LAN
and Disable.
Boot Other Device
These fields allow the system to search for an OS from other devices
other than the ones selected in the First/Second/Third Boot Device.
Swap Floppy Drive
This item allows you to determine whether or not to enable Swap Floppy
Drive. When enabled, the BIOS swaps floppy drive assignments so that
Drive A becomes Drive B, and Drive B becomes Drive A. By default, this
field is set to Disabled.
Boot Up Floppy Seek
This feature controls whether the BIOS checks for a floppy drive while
booting up. If it cannot detect one (either due to improper configuration
or its absence), it will flash an error message.
Boot Up NumLock Status
This allows you to activate the NumLock function after you power up the
system.
Gate A20 Option
This field allows you to select how Gate A20 is worked. Gate A20 is a
device used to address memory above 1 MB.
Typematic Rate Setting
When disabled, continually holding down a key on your keyboard will
generate only one instance. When enabled, you can set the two typematic
controls listed next. By default, this field is set to Disabled.
Typematic Rate (Chars/Sec)
When the typematic rate is enabled, the system registers repeated
keystrokes speeds. Settings are from 6 to 30 characters per second.
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BIOS SETUP
Typematic Delay (Msec)
When the typematic rate is enabled, this item allows you to set the time
interval for displaying the first and second characters. By default, this
item is set to 250msec.
Security Option
This field allows you to limit access to the System and Setup. The default
value is Setup. When you select System, the system prompts for the User
Password every time you boot up. When you select Setup, the system
always boots up and prompts for the Supervisor Password only when the
Setup utility is called up.
APIC Mode
APIC stands for Advanced Programmable Interrupt Controller. The
default setting is Enabled.
MPS Version Control for OS
This option is specifies the MPS (Multiprocessor Specification) version
for your operating system. MPS version 1.4 added extended
configuration tables to improve support for multiple PCI bus
configurations and improve future expandability. The default setting is
1.4.
OS Select for DRAM > 64MB
This option allows the system to access greater than 64MB of DRAM
memory when used with OS/2 that depends on certain BIOS calls to
access memory. The default setting is Non-OS/2.
Report No FDD For WIN 95
If you are using Windows 95/98 without a floppy disk drive, select
Enabled to release IRQ6. This is required to pass Windows 95/98's SCT
test. You should also disable the Onboard FDC Controller in the
Integrated Peripherals screen when there's no floppy drive in the system. If
you set this feature to Disabled, the BIOS will not report the missing
floppy drive to Win95/98.
Small Logo (EPA) Show
The EPA logo appears at the right side of the monitor screen when the
system is boot up. The default setting is Enabled.
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BIOS SETUP
Advanced Chipset Features
This Setup menu controls the configuration of the chipset.
Phoenix - AwardBIOS CMOS Setup Utility
Advanced Chipset Features
DRAM Timing Selectable
CAS Latency Time
By SPD
4
ITEM HELP
Menu Level >
DRAM RAS# to CAS# Delay
DRAM RAS# Precharge
Precharge delay (tRAS)
System Memory Frequency
SLP_S4# Assertion Width
System BIOS Cacheable
Video BIOS Cacheable
Memory Hole at 15M-16M
PCI Express Root Port Func
4
4
12
533MHZ
1 to 2 Sec
Enabled
Disabled
Disabled
Press Enter
** On-Chip VGA Setting **
PEG/On Chip VGA Control
On-Chip Frame Buffer Size
DVMT Mode
Auto
8MB
DVMT
DVMT/FIXED memory Size
Boot Display
128MB
CRT+LVDS
Auto
Panel Scaling
Panel Number
1024x768 18 bit SC
Enable
Onboard PCU-E LAN
DRAM Timing Selectable
This option refers to the method by which the DRAM timing is selected.
The default is By SPD.
CAS Latency Time
You can configure CAS latency time in HCLKs as 2 or 2.5 or 3. The
system board designer should set the values in this field, depending on the
DRAM installed. Do not change the values in this field unless you change
specifications of the installed DRAM or the installed CPU.
DRAM RAS# to CAS# Delay
This option allows you to insert a delay between the RAS (Row Address
Strobe) and CAS (Column Address Strobe) signals. This delay occurs
when the SDRAM is written to, read from or refreshed. Reducing the
delay improves the performance of the SDRAM.
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BIOS SETUP
DRAM RAS# Precharge
This option sets the number of cycles required for the RAS to accumulate
its charge before the SDRAM refreshes. The default setting for the Active
to Precharge Delay is 4.
Precharge Delay (tRAS)
The default setting for the Precharge Delay is 12.
System Memory Frequency
The default setting is 533MHz.
SLP_S4# Assertion Width
The default setting is 1 to 2 Sec.
System BIOS Cacheable
The setting of Enabled allows caching of the system BIOS ROM at
F000h-FFFFFh, resulting in better system performance. However, if any
program writes to this memory area, a system error may result.
Video BIOS Cacheable
The Setting Enabled allows caching of the video BIOS ROM at
C0000h-F7FFFh, resulting in better video performance. However, if any
program writes to this memory area, a system error may result.
Memory Hole At 15M-16M
In order to improve performance, certain space in memory can be reserved
for ISA cards. This memory must be mapped into the memory space
below 16 MB. The choices are Enabled and Disabled.
On-Chip VGA Setting
The fields under the On-Chip VGA Setting and their default settings are:
PEG/On Chip VGA Control: Auto
On-Chip Frame Buffer Size: 8MB
DVMT Mode: DVTM
DVMT/Fixed Memory Size: 128MB
Boot Display: CRT+LVDS
Panel Scaling: Auto
Panel Number: 1024x768 18 bit SC
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BIOS SETUP
Panel Scaling
The default setting is Auto. The options available include On and Off.
Panel Number
These fields allow you to select the LCD Panel type. The default values
for these ports are:
640x480
800x600
18bit SC
18bit SC
18bit SC
18bit DC
18bit SC
18bit DC
18bit DC
1024x768
1280x1024
1280x768
1400x1050
1600x1200
Onboard PCI-E LAN
By default, this setting is enabled.
LAN PXE Option ROM
By default, this setting is disabled. Other selections include ICH6
Integrated LAN and Marvell PCI-E LAN.
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BIOS SETUP
Integrated Peripherals
This section sets configurations for your hard disk and other integrated
peripherals. The first screen shows three main items for user to select.
Once an item selected, a submenu appears. Details follow.
Phoenix - AwardBIOS CMOS Setup Utility
Integrated Peripherals
Press Enter
Press Enter
Press Enter
ITEM HELP
Menu Level >
OnChip IDE Device
Onboard Device
SuperIO Device
Phoenix - AwardBIOS CMOS Setup Utility
OnChip IDE Device
Enabled
Enabled
Enabled
ITEM HELP
IDE HDD Block Mode
IDE DMA transfer access
On-chip Primary PCI IDE
IDE Primary Master PIO
IDE Primary Slave PIO
IDE Primary Master UDMA
IDE Primary Slave UDMA
On-Chip Secondary PCI IDE
IDE Secondary Master PIO
IDE Secondary Slave PIO
IDE Secondary Master UDMA
IDE Secondary Slave UDMA
Auto
Auto
Auto
Auto
Enabled
Auto
Auto
Auto
Auto
Menu Level >
*** On-Chip Serial ATA Setting ***
On-Chip Serial ATA
PATA IDE Mode
Auto
Secondary
P0, P2 is Primary
SATA port
Phoenix - AwardBIOS CMOS Setup Utility
Onboard Device
Enabled
ITEM HELP
USB Controller
Enabled
Disabled
Menu Level >
USB 2.0 Controller
USB Keyboard Support
AC97 Audio Select
Auto
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BIOS SETUP
Phoenix - AwardBIOS CMOS Setup Utility
SuperIO Device
ITEM HELP
POWER ON Function
KB Power ON Password
Hot Key power ON
Onboard FDC Controller
Onboard Serial Port 1
Onboard Serial Port 2
UART Mode Select
RxD , TxD Active
BUTTON ONLY
Enter
Ctrl-F1
Enabled
Menu Level >
3F8/IRQ4
2F8/IRQ3
Normal
Hi, Lo
IR Transmission Delay
UR2 Duplex Mode
Disabled
Half
Use IR Pins
IR-Rx2Tx2
Off
PWRON After PWR-Fail
IDE HDD Block Mode
This field allows your hard disk controller to use the fast block mode to
transfer data to and from your hard disk drive.
IDE DMA Transfer Access
This field, by default, is enabled
On-chip Primary PCI IDE Enabled
This field, by default, is enabled
OnChip Primary/Secondary PCI IDE
The integrated peripheral controller contains an IDE interface with
support for two IDE channels. Select Enabled to activate each channel
separately.
IDE Primary/Secondary Master/Slave PIO
These fields allow your system hard disk controller to work faster. Rather
than have the BIOS issue a series of commands that transfer to or from the
disk drive, PIO (Programmed Input/Output) allows the BIOS to
communicate with the controller and CPU directly.
The system supports five modes, numbered from 0 (default) to 4, which
primarily differ in timing. When Auto is selected, the BIOS will select the
best available mode.
IDE Primary/Secondary Master/Slave UDMA
These fields allow your system to improve disk I/O throughput to
33Mb/sec with the Ultra DMA/33 feature. The options are Auto and
Disabled.
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BIOS SETUP
On-Chip Serial ATA Setting
The fields under the SATA setting includes SATA Mode (IDE), On-Chip
Serial ATA (Auto), PATA IDE Mode (Secondary) and SATA Port (PO,
P2 is Primary).
USB Controller
The options for this field are Enabled and Disabled. By default, this field
is set to Enabled.
USB 2.0 Controller
The options for this field are Enabled and Disabled. By default, this field
is set to Enabled. In order to use USB 2.0, necessary OS drivers must be
installed first. Please update your system to Windows 2000 SP4 or
Windows XP SP2.
USB Keyboard Support
The options for this field are Enabled and Disabled. By default, this field
is set to Disabled.
AC97 Audio Select
This field, by default, is set to Auto.
Power ON Function
This field is related to how the system is powered on – such as with the
use of conventional power button, keyboard or hot keys. The default is
BUTTON ONLY.
KB Power ON Password
This field allows users to set the password when keyboard power on is the
mode of the Power ON function.
Hot Key Power ON
This field sets certain keys, also known as hot keys, on the keyboard that
can be used as a ‘switch’ to power on the system.
Onboard FDC Controller
Select Enabled if your system has a floppy disk controller (FDC)
installed on the motherboard and you wish to use it. If you install an
add-in FDC or the system has no floppy drive, select Disabled in this
field. This option allows you to select the onboard FDD port.
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BIOS SETUP
Onboard Serial Port
These fields allow you to select the onboard serial ports and their
addresses. The default values for these ports are:
Serial Port 1
Serial Port 2
3F8/IRQ4
2F8/IRQ3
UART Mode Select
This field determines the UART 2 mode in your computer. The default
value is Normal. Other options include IrDA and ASKIR.
PWRON After PWR-Fail
This field sets the system power status whether on or off when power
returns to the system from a power failure situation.
Power Management Setup
Phoenix - AwardBIOS CMOS Setup Utility
Power Management Setup
Enabled
S1(POS)
Auto
ITEM HELP
ACPI Function
ACPI Suspend
Menu Level >
RUN VGABIOS if S3 Resume
Power Management
Video Off Method
Video Off In Suspend
Suspend Type
User Define
DPMS
Yes
Stop Grant
3
Modem Use IRQ
Suspend Mode
Disabled
Disabled
Instant-Off
Disabled
Disabled
Disabled
0
HDD Power Down
Soft-Off by PWR-BTTN
Wake-Up by PCI Card
Power On by Ring
Resume by Alarm
Date (of Month) Alarm
Time (hh:mm:ss) Alarm
0 : 0 : 0
** Reload Global Timer Events **
Primary IDE 0
Disabled
Disabled
Disabled
Disabled
Disabled
Disabled
Primary IDE 1
Secondary IDE 0
Secondary IDE 1
FDD, COM, LPT Port
PCI PIRQ[A-D] #
ACPI Function
Enable this function to support ACPI (Advance Configuration and Power
Interface).
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BIOS SETUP
ACPI Suspend
The default setting of the ACPI Suspend mode is S1(POS).
RUN VGABIOS if S3 Resume
The default setting of this field is Auto.
Power Management
This field allows you to select the type of power saving management
modes. There are four selections for Power Management.
Min. Power Saving
Max. Power Saving
User Define
Minimum power management
Maximum power management.
Each of the ranges is from 1 min. to 1hr.
Except for HDD Power Down which
ranges from 1 min. to 15 min.
Video Off Method
This field defines the Video Off features. There are three options.
V/H SYNC + Blank
Default setting, blank the screen and turn off
vertical and horizontal scanning.
DPMS
Blank Screen
Allows BIOS to control the video display.
Writes blanks to the video buffer.
Video Off In Suspend
When enabled, the video is off in suspend mode.
Suspend Type
The default setting for the Suspend Type field is Stop Grant.
Modem Use IRQ
This field sets the IRQ used by the Modem. By default, the setting is 3.
Suspend Mode
When enabled, and after the set time of system inactivity, all devices
except the CPU will be shut off.
HDD Power Down
When enabled, and after the set time of system inactivity, the hard disk
drive will be powered down while all other devices remain active.
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BIOS SETUP
Soft-Off by PWRBTN
This field defines the power-off mode when using an ATX power supply.
The Instant Off mode allows powering off immediately upon pressing the
power button. In the Delay 4 Sec mode, the system powers off when the
power button is pressed for more than four seconds or enters the suspend
mode when pressed for less than 4 seconds.
Wake up by PCI Card
By default, this field is disabled.
Power On by Ring
This field enables or disables the power on of the system through the
modem connected to the serial port or LAN.
Resume by Alarm
This field enables or disables the resumption of the system operation.
When enabled, the user is allowed to set the Date and Time.
Reload Global Timer Events
The HDD, FDD, COM, LPT Ports, and PCI PIRQ are I/O events that can
prevent the system from entering a power saving mode or can awaken the
system from such a mode. When an I/O device wants to gain the attention
of the operating system, it signals this by causing an IRQ to occur. When
the operating system is ready to respond to the request, it interrupts itself
and performs the service.
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BIOS SETUP
PNP/PCI Configurations
This option configures the PCI bus system. All PCI bus systems on the
system use INT#, thus all installed PCI cards must be set to this value.
Phoenix - AwardBIOS CMOS Setup Utility
PnP/PCI Configurations
PCI Slot
Disabled
ITEM HELP
Init Display First
Reset Configuration Data
Menu Level
Auto (ESCD)
Press Enter
Resources Controlled By
IRQ Resources
Select Yes if you are
using a Plug and Play
capable operating
system Select No if
you need the BIOS to
configure non-boot
devices
Disabled
Auto
PCI/VGA Palette Snoop
INT Pin 1 Assignment
INT Pin 2 Assignment
Auto
Auto
Auto
Auto
Auto
Auto
Auto
INT Pin 3 Assignment
INT Pin 4 Assignment
INT Pin 5 Assignment
INT Pin 6 Assignment
INT Pin 7 Assignment
INT Pin 8 Assignment
**PCI Express relative items**
Maximum Payload Size
4096
Init Display First
The default setting is PCI Card.
Reset Configuration Data
This field allows you to determine whether to reset the configuration data
or not. The default value is Disabled.
Resources Controlled by
This PnP BIOS can configure all of the boot and compatible devices with
the use of a PnP operating system such as Windows 95.
PCI/VGA Palette Snoop
Some non-standard VGA display cards may not show colors properly.
This field allows you to set whether or not MPEG ISA/VESA VGA cards
can work with PCI/VGA. When this field is enabled, a PCI/VGA can
work with an MPEG ISA/VESA VGA card. When this field is disabled, a
PCI/VGA cannot work with an MPEG ISA/VESA card.
Maximum Payload Size
The default setting of the PCI Express Maximum Payload Size is 4096.
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BIOS SETUP
PC Health Status
This section shows the parameters in determining the PC Health Status.
These parameters include temperatures, fan speeds and voltages.
Phoenix - AwardBIOS CMOS Setup Utility
PC Health Status
ITEM HELP
Shutdown Temperature
CPU Warning Temperature
Current System Temp
Current CPU TEMP
System FAN Speed
CPU FAN Speed
Disabled
Disabled
Menu Level >
45°C/113°F
45°C/113°F
5400 RPM
5400 RPM
Vcore(V)
12 V
1.02 V
1.32 V
1.8V
1.8V
+5V
5.25 V
3.37V
3.21 V
5.67 V
3.3V
VBAT (V)
5VSB(V)
Smart Fan2 Temperature
Disabled
5
Smart Fan2 Tolerance Value
CPU Warning Temperature
This field allows the user to set the temperature so that when the
temperature is reached, the system sounds a warning. This function can
help prevent damage to the system that is caused by overheating.
Temperatures/Voltages
These fields are the parameters of the hardware monitoring function
feature of the motherboard. The values are read-only values as monitored
by the system and show the PC health status.
Shutdown Temperature
This field allows the user to set the temperature by which the system
automatically shuts down once the threshold temperature is reached. This
function can help prevent damage to the system that is caused by
overheating.
Smart Fan2 Temperature
This field enables or disables the smart fan feature. At a certain
temperature, the fan starts turning. Once the temperature drops to a
certain level, it stops turning again.
Smart Fan Tolerance Value
The default value is 5.
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BIOS SETUP
Frequency/Voltage Control
This section shows the user how to configure the processor frequency.
Phoenix - AwardBIOS CMOS Setup Utility
Frequency/Voltage Control
Disabled
Disabled
ITEM HELP
Menu Level >
Auto Detect PCI Clk
Spread Spectrum Modulated
Auto Detect PCI Clk
This field enables or disables the auto detection of the PCI clock.
Spread Spectrum Modulated
This field sets the value of the spread spectrum. The default setting is
Disabled. This field is for CE testing use only.
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BIOS SETUP
Load Fail-Safe Defaults
This option allows you to load the troubleshooting default values
permanently stored in the BIOS ROM. These default settings are
non-optimal and disable all high-performance features.
Load Optimized Defaults
This option allows you to load the default values to your system
configuration. These default settings are optimal and enable all high
performance features.
Set Supervisor Password
These two options set the system password. Supervisor Password sets a
password that will be used to protect the system and Setup utility. User
Password sets a password that will be used exclusively on the system. To
specify a password, highlight the type you want and press <Enter>. The
Enter Password: message prompts on the screen. Type the password, up
to eight characters in length, and press <Enter>. The system confirms
your password by asking you to type it again. After setting a password, the
screen automatically returns to the main screen.
To disable a password, just press the <Enter> key when you are prompted
to enter the password. A message will confirm the password to be
disabled. Once the password is disabled, the system will boot and you can
enter Setup freely.
Save & Exit Setup
This option allows you to determine whether or not to accept the
modifications. If you type “Y”, you will quit the setup utility and save all
changes into the CMOS memory. If you type “N”, you will return to Setup
utility.
Exit Without Saving
Select this option to exit the Setup utility without saving the changes you
have made in this session. Typing “Y” will quit the Setup utility without
saving the modifications. Typing “N” will return you to Setup utility.
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DRIVERS INSTALLATION
Drivers Installation
This section describes the installation procedures for software and drivers
under the Windows 2000 and Windows XP. The software and drivers are
included with the motherboard. If you find the items missing, please
contact the vendor where you made the purchase. The contents of this
section include the following:
Intel Chipset Software Intallation Utility..........................44
VGA Drivers Installation.................................................46
AC97 Codec Audio Driver Installation............................48
LAN Drivers Installation .................................................49
IMPORTANT NOTE:
After installing your Windows operating system (Windows 2000/ XP),
you must install first the Intel Chipset Software Installation Utility before
proceeding with the drivers installation.
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DRIVERS INSTALLATION
Intel Chipset Software Installation Utility
The Intel Chipset Drivers should be installed first before the software
drivers to enable Plug & Play INF support for Intel chipset components.
Follow the instructions below to complete the installation under
Windows 2000/XP.
1. Insert the CD that comes with the board. Click Intel Chipsets and then
Intel(R) 915GMChipset Drivers.
2. Click Intel(R) Chipset Software Installation Utility.
3. When the Welcome screen appears, click Next to continue.
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DRIVERS INSTALLATION
4. Click Yes to accept the software license agreement and proceed with
the installation process.
5. On Readme Information screen, click Next to continue the installation.
6. The Setup process is now complete. Click Finish to restart the
computer and for changes to take effect. When the computer has restarted,
the system will be able to find some devices. Restart your computer when
prompted.
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DRIVERS INSTALLATION
VGA Drivers Installation
To install the VGA drivers, follow the steps below to proceed with the
installation.
1. Insert the CD that comes with the motherboard. Click Intel Chipsets
and then Intel(R) 915GMChipset Drivers.
2. Click Intel(R) 915GMChipset Family Graphics Driver.
3. When the Welcome screen appears, click Next to continue.
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DRIVERS INSTALLATION
4. Click Yes to to agree with the license agreement and continue the
installation.
5. Restart the computer as promted and for changes to take effect.
IMPORTANT NOTE:
When you have restarted the computer, your computer screen will be
blank. At this point, press CTRL-ALT-F1 simultaneously, if you are
using CRT monitor. If you are using LVDS LCD panel, press
CTRL-ALT-F3. If you are using DVI monitor, press CTRL-ALT-F4.
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DRIVERS INSTALLATION
AC97 Codec Audio Driver Installation
Follow the steps below to install the Realtek AC97Codec Audio Drivers.
1. Insert the CD that comes with the motherboard. Click Intel Chipsets
and then Intel(R) 915GMChipset Drivers.
2. Click Realtek AC'97 Codec Audio Driver.
3. Click Finish to restart the computer and for changes to take effect. .
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DRIVERS INSTALLATION
LAN Drivers Installation
Follow the steps below to complete the installation of the Intel PRO LAN
drivers.
1. Insert the CD that comes with the motherboard. Click LAN Card and
then Intel(R) PRO LAN Drivers.
2. Click Install Base Software to continue.
3. When prompted, please to restart the computer for new settings to take
effect.
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DRIVERS INSTALLATION
Follow the steps below to install the Marvell Gigabit LAN drivers.
1. Insert the CD that comes with the motherboard. Click LAN Card and
then Marvell LAN Controller Driver.
2. Click Next when the InstallShield Wizard welcome screen appears.
3. Click Next to agree with the license agreement.
4. Click Next when the Readme Information screen appears to proceed
with the drives installation process.
5. When the Installation is complete, click Finish for the changes to take
effect.
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APPENDIX
Appendix
A. I/O Port Address Map
Each peripheral device in the system is assigned a set of I/O port addresses
which also becomes the identity of the device. The following table lists
the I/O port addresses used.
Address
Device Description
DMA Controller #1
Interrupt Controller #1
Timer
Keyboard Controller
Real Time Clock, NMI
DMA Page Register
Interrupt Controller #2
DMA Controller #2
Clear Math Coprocessor Busy Signal
Reset Math Coprocessor
IDE Interface
Parallel Port #2(LPT2)
Serial Port #2(COM2)
Graphics adapter Controller
Parallel Port #1(LPT1)
Network Ports
000h - 01Fh
020h - 03Fh
040h - 05Fh
060h - 06Fh
070h - 07Fh
080h - 09Fh
0A0h - 0BFh
0C0h - 0DFh
0F0h
0F1h
1F0h - 1F7h
278 - 27F
2F8h - 2FFh
2B0 - 2DF
378h - 3FFh
360 - 36F
3B0 - 3BF
3C0 - 3CF
3D0 - 3DF
3F0h - 3F7h
3F8h - 3FFh
Monochrome & Printer adapter
EGA adapter
CGA adapter
Floppy Disk Controller
Serial Port #1(COM1)
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APPENDIX
B. Interrupt Request Lines (IRQ)
Peripheral devices use interrupt request lines to notify CPU for the
service required. The following table shows the IRQ used by the devices
on board.
Level
IRQ0
IRQ1
IRQ2
IRQ3
IRQ4
IRQ5
IRQ6
IRQ7
IRQ8
IRQ9
IRQ10
IRQ11
IRQ12
IRQ13
IRQ14
IRQ15
Function
System Timer Output
Keyboard
Interrupt Cascade
Serial Port #2
Serial Port #1
Reserved
Floppy Disk Controller
Parallel Port #1
Real Time Clock
Reserved
Reserved
Reserved
PS/2 Mouse
80287
Primary IDE
Secondary IDE
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APPENDIX
C. Watchdog Timer Configuration
The WDT is used to generate a variety of output signals after a user
programmable count. The WDT is suitable for use in the prevention of
system lock-up, such as when software becomes trapped in a deadlock.
Under these sorts of circumstances, the timer will count to zero and the
selected outputs will be driven. Under normal circumstance, the user will
restart the WDT at regular intervals before the timer counts to zero.
SAMPLE CODE:
//===========================================================================
//
// THIS CODE AND INFORMATION IS PROVIDED "AS IS" WITHOUT WARRANTY OF ANY
// KIND, EITHER EXPRESSED OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE
// IMPLIED WARRANTIES OF MERCHANTABILITY AND/OR FITNESS FOR A PARTICULAR
// PURPOSE.
//
//===========================================================================
#include <stdio.h>
#include <stdlib.h>
#include "W627EHF.H"
//===========================================================================
int main (int argc, char *argv[]);
void copyright(void);
void EnableWDT(int);
void DisableWDT(void);
//===========================================================================
int main (int argc, char *argv[])
{
unsigned char bBuf;
unsigned char bTime;
char **endptr;
copyright();
if (argc != 2)
{
printf(" Parameter incorrect!!\n");
return 1;
}
if (Init_W627EHF() == 0)
{
printf(" Winbond 83627HF is not detected, program abort.\n");
return 1;
}
bTime = strtol (argv[1], endptr, 10);
printf("System will reset after %d seconds\n", bTime);
EnableWDT(bTime);
return 0;
}
//===========================================================================
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APPENDIX
void copyright(void)
{
printf("\n======== Winbond 83627EHF Watch Timer Tester (AUTO DETECT) ========\n"\
"
Usage : W627E_WD reset_time\n"\
"
"
Ex : W627E_WD 3 => reset system after 3 second\n"\
W627E_WD 0 => disable watch dog timer\n");
}
//===========================================================================
void EnableWDT(int interval)
{
unsigned char bBuf;
bBuf = Get_W627EHF_Reg( 0x2D);
bBuf &= (!0x01);
Set_W627EHF_Reg( 0x2D, bBuf);
//Enable WDTO
//switch to logic device 8
Set_W627EHF_LD( 0x08);
Set_W627EHF_Reg( 0x30, 0x01);
//enable timer
bBuf = Get_W627EHF_Reg( 0xF5);
bBuf &= (!0x08);
Set_W627EHF_Reg( 0xF5, bBuf);
//count mode is second
//set timer
Set_W627EHF_Reg( 0xF6, interval);
}
//===========================================================================
void DisableWDT(void)
{
Set_W627EHF_LD(0x08);
Set_W627EHF_Reg(0xF6, 0x00);
Set_W627EHF_Reg(0x30, 0x00);
//switch to logic device 8
//clear watchdog timer
//watchdog disabled
}
//===========================================================================
//===========================================================================
//
// THIS CODE AND INFORMATION IS PROVIDED "AS IS" WITHOUT WARRANTY OF ANY
// KIND, EITHER EXPRESSED OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE
// IMPLIED WARRANTIES OF MERCHANTABILITY AND/OR FITNESS FOR A PARTICULAR
// PURPOSE.
//
//===========================================================================
#include "W627EHF.H"
#include <dos.h>
//===========================================================================
unsigned int W627EHF_BASE;
void Unlock_W627EHF (void);
void Lock_W627EHF (void);
//===========================================================================
unsigned int Init_W627EHF(void)
{
unsigned int result;
unsigned char ucDid;
W627EHF_BASE = 0x2E;
result = W627EHF_BASE;
ucDid = Get_W627EHF_Reg(0x20);
if (ucDid == 0x88)
{
goto Init_Finish;
}
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APPENDIX
W627EHF_BASE = 0x4E;
result = W627EHF_BASE;
ucDid = Get_W627EHF_Reg(0x20);
if (ucDid == 0x88)
{
goto Init_Finish;
}
W627EHF_BASE = 0x00;
result = W627EHF_BASE;
Init_Finish:
return (result);
}
//===========================================================================
void Unlock_W627EHF (void)
{
outportb(W627EHF_INDEX_PORT, W627EHF_UNLOCK);
outportb(W627EHF_INDEX_PORT, W627EHF_UNLOCK);
}
//===========================================================================
void Lock_W627EHF (void)
{
outportb(W627EHF_INDEX_PORT, W627EHF_LOCK);
}
//===========================================================================
void Set_W627EHF_LD( unsigned char LD)
{
Unlock_W627EHF();
outportb(W627EHF_INDEX_PORT, W627EHF_REG_LD);
outportb(W627EHF_DATA_PORT, LD);
Lock_W627EHF();
}
//===========================================================================
void Set_W627EHF_Reg( unsigned char REG, unsigned char DATA)
{
Unlock_W627EHF();
outportb(W627EHF_INDEX_PORT, REG);
outportb(W627EHF_DATA_PORT, DATA);
Lock_W627EHF();
}
//===========================================================================
unsigned char Get_W627EHF_Reg(unsigned char REG)
{
unsigned char Result;
Unlock_W627EHF();
outportb(W627EHF_INDEX_PORT, REG);
Result = inportb(W627EHF_DATA_PORT);
Lock_W627EHF();
return Result;
}
//===========================================================================
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APPENDIX
//===========================================================================
//
// THIS CODE AND INFORMATION IS PROVIDED "AS IS" WITHOUT WARRANTY OF ANY
// KIND, EITHER EXPRESSED OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE
// IMPLIED WARRANTIES OF MERCHANTABILITY AND/OR FITNESS FOR A PARTICULAR
// PURPOSE.
//
//===========================================================================
#ifndef __W627EHF_H
#define __W627EHF_H
1
//===========================================================================
#define
#define
W627EHF_INDEX_PORT
W627EHF_DATA_PORT
(W627EHF_BASE)
(W627EHF_BASE+1)
//===========================================================================
#define W627EHF_REG_LD 0x07
//===========================================================================
#define W627EHF_UNLOCK
#define W627EHF_LOCK
0x87
0xAA
//===========================================================================
unsigned int Init_W627EHF(void);
void Set_W627EHF_LD( unsigned char);
void Set_W627EHF_Reg( unsigned char, unsigned char);
unsigned char Get_W627EHF_Reg( unsigned char);
//===========================================================================
#endif //__W627EHF_H
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