Tiger K8WE
S2877
///
Version 1.00
Copyright
Copyright © TYAN Computer Corporation, 2005-2006. All rights reserved. No
part of this manual may be reproduced or translated without prior written
consent from TYAN Computer Corp.
Trademark
All registered and unregistered trademarks and company names contained in
this manual are property of their respective owners including, but not limited to
the following.
TYAN, Taro and Tiger K8WE are trademarks of TYAN Computer Corporation.
AMD, Opteron, and combinations thereof are trademarks of AMD Corporation.
Nvidia and nForce are trademarks of Nvidia Corporation
Microsoft, Windows are trademarks of Microsoft Corporation.
SuSE,is a trademark of SuSE AG.
Linux is a trademark of Linus Torvalds
IBM, PC, AT, and PS/2 are trademarks of IBM Corporation.
Winbond is a trademark of Winbond Electronics Corporation.
Notice
Information contained in this document is furnished by TYAN Computer
Corporation and has been reviewed for accuracy and reliability prior to printing.
TYAN assumes no liability whatsoever, and disclaims any express or implied
warranty, relating to sale and/or use of TYAN products including liability or
warranties relating to fitness for a particular purpose or merchantability. TYAN
retains the right to make changes to product descriptions and/or specifications
at any time, without notice. In no event will TYAN be held liable for any direct or
indirect, incidental or consequential damage, loss of use, loss of data or other
malady resulting from errors or inaccuracies of information contained in this
document.
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3.4
3.5
3.6
Getting Help
BIOS Main Menu
BIOS Advanced Menu
Page 40
Page 41
Page 42
Page 43
Page 44
Page 46
Page 51
Page 53
Page 54
Page 55
Page 56
Page 57
Page 58
Page 59
Page 60
Page 61
Page 62
Page 64
Page 66
Page 66
Page 66
Page 67
Page 70
Page 76
3.6.1 Hammer Configuration Sub-Menu
3.6.2 Integrated Devices Sub-Menu
3.6.3 PCI Configuration Sub-Menu
3.6.4 IDE Configuration Sub-Menu
3.6.5 Floppy Configuration Sub-Menu
3.6.6 I/O Device Configuration Sub-Menu
3.6.7 Hardware Monitor Sub-Menu
3.6.8 Console Redirection Sub-Menu
3.6.9 Watchdog Timer Option Sub-Menu
3.7
3.8
3.9
BIOS Memory Menu
Security Menu
BIOS Boot Menu
3.9.1 Boot Device Priority
3.10
3.11
Power Menu
BIOS Exit Menu
Chapter 4: Diagnostics
4.1
4.2
4.3
Beep Codes
Flash Utility
BIOS Post Code
Glossary
Technical Support
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Chapter 1: Introduction
1.1 - Congratulations
You have purchased one of the most powerful entry-level workstation solutions
- the Tyan Tiger K8WE (S2877) - based on NVIDIA nForce(tm) Professional
Media and Communications Processor (MCP).
Designed to support up to two AMD Opteron(tm) 200 series processors, and up
to 24GB of Registered DDR400 memory, the S2877 is ideal for video and
graphics development applications that demand the highest level of
performance from the CPU, memory, and video subsystems.
1.2 - Hardware Specifications
Processor
Integrated ATA-133 (from nForce
Professional 2200)
•Two ATA-133 IDE Channel for up
to four devices
•Supports one or two AMD
Opteron™ 2xx processors
•Two onboard 4-phase VRMs
•Dual HyperTransportTM links
between two CPU, support up to
6.4GB/s data transfer rate each
link
Integrated SATAII Generation 1
Controllers (from nForce
Professional 2200)
•Two integrated dual port SATA II
controllers
•144-bit DDR interface (128-bit
data + 16 bit ECC)
•Four SATA connectors support up
to four drives
•Scalable 32bit and 64bit
computing
•3 Gb/s per direction per channel
•NvRAID v2.0 support
•Supports RAID 0, 1, 0+1 and
JBOD
•Secure computing with Nx register
support
Chipset
•Nvidia nForce Professional 2200
(CK8-04)-connected to CPU1
•Winbond W83627HF Super I/O
•One Analog Device
ADT7468 Hardware Monitoring
IC
Integrated LAN Controller
•One Broadcom® BCM5705 GbE
LAN controller (G2NR version
only)
- One RJ-45 LAN connector with
LEDs
- One front panel LED headers
•One Marvell® 88E1111 GbE PHY
- One RJ-45 LAN connectors with
LEDs
- One front panel LED headers
•Supports WOL and PXE
Memory
•128-bit dual channel (interleaved)
memory bus
•Total Six DDR-1 DIMM sockets
(Four for CPU1&Two for CPU2)
•Supports up to 24GB Registered
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DDR
•Full Duplex Gigabit Ethernet
•Supports ECC with CHIPKill
technology
support
Integrated FireWire (IEEE
1394A) Controller
•Supports DDR400, DDR333, or
DDR266
(ANRF version only)
Expansion Slots
•Two x16 PCI Express expansion
slots
•TI® TSB43AB22A IEEE 1394a
PCI controller
•Two FireWire 1394 pin headers
•- Slot 3 PCI-E x16 from nForce
PRO 2200 with x4 signals
•- Slot 5 PCI-E x16 from nForce
PRO 2200 with x16 signals
•Four 32-bit 33Mhz PCI v2.3 (Slot
0, Slot 1, Slot 2 and Slot 4)
•Total of six usable slots
Integrated Audio
(ANRF version only)
•Realtek ALC655 6-channel
CODEC
•2 x 5 pin header for front panel
audio connector
•CD-in connector
Integrated I/O Ports
•Aux-in connector
•One floppy connector supports up
to two drives
•Four USB 2.0 Ports (via cable)
•One COM port (via cable)
•Tyan 2 x 9 front-panel pin header
Integrated 2D/3D Graphics
(G2NR version only)
•ATI® RAGE XLTM PCI controller
w/ 8MB memory
Form Factor
•ATX (12” x 9.75”)
Back Panel I/O Ports
•Stacked PS/2 Mouse &
Keyboard ports
•One 15-pin VGA port
(G2NR version only)
•One 9-pin Serial port
•Two stacked RJ-45 with two
USB2.0 ports
BIOS
•PhoenixBIOS® on 8Mbit LPC
Flash ROM
•ACPI 2.0
•Serial Console Redirect
•USB device boot
•Power management: S0, S1, S4
and S5
(G2NR version only)
•One stacked RJ-45 with two
USB2.0 ports
•48-bit LBA support
•Power Supply
•EPS12V Power Supply
•EPS12V/SSI v3.5 (24 + 8) power
connectors
(ANRF version only)
•Stacked two USB2.0 ports
(ANRF version only)
•Stacked Mic-in/Line-In/Line-Out
audio jacks
System Management
•Five fan headers support
tachometer monitoring, three 4-
pin fan support smart FAN
control (PWM).
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•Watchdog Timer support
•Temperature, voltage and fan
monitoring
1.3 - Software Specifications
OS (Operating System) Support
Windows 2000 Server
Windows 2000 Advanced Server
Windows XP 32bit
Windows XP 64bit+sp1
Windows 2003 Server
Windows 2003 Server 64bit
SuSE Enterprise Server 8.0 AMD64
SuSE 9.2 pro 32bit
SuSE 9.3 pro 32bit
TYAN reserves the right to add support or discontinue support for any OS with
or without notice.
information on all of TYAN’s products with FAQs, manuals, and BIOS updates.
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Chapter 2: Board Installation
Precautions: The Tiger K8WE supports SSI, EPS12V type power supplies
(24pin + 8pin) and will not operate with any other types. For proper power
supply installation procedures see page 36.
DO NOT USE ATX 2.x or ATXGES power supplies as they will damage the
board and void your warranty.
How to install our products right… the first time
The first thing you should do is reading this user’s manual. It contains important
information that will make configuration and setup much easier. Here are some
precautions you should take when installing your motherboard:
(1) Ground yourself properly before removing your motherboard from the
antistatic bag. Unplug the power from your computer power supply and
then touch a safely grounded object to release static charge (i.e. power
supply case). For the safest conditions, TYAN recommends wearing a
static safety wrist strap.
(2) Hold the motherboard by its edges and do not touch the bottom of the
board, or flex the board in any way.
(3) Avoid touching the motherboard components, IC chips, connectors,
memory modules, and leads.
(4) Place the motherboard on a grounded antistatic surface or on the
antistatic bag that the board was shipped in.
(5) Inspect the board for damage.
The following pages include details on how to install your motherboard into your
chassis, as well as installing the processor, memory, disk drives and cables.
DO NOT APPLY POWER TO THE BOARD IF IT HAS BEEN
NOTE
DAMAGED
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2.1- Board Image
This picture is representative of the latest board revision available at
the time of publishing. The board you receive may or may not look
exactly like the above picture.
The following page includes details on the vital components of this
motherboard.
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2.2 - Block Diagram
Tiger K8WE (S2877) Block Diagram
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2.3 - Board Parts, Jumpers and Connectors
This diagram is representative of the latest board revision available at the time of
publishing. The board you receive may not look exactly like the above diagram.
NOTE: * is only available on S2877ANRF version.
** is only available on S2877G2NR version.
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Jumper Legend
‹‹
OPEN - Jumper OFF, without jumper cover
‹‹
CLOSED – Jumper ON, with jumper cover
Jumper/Connector
Function
Settings
J139
J112
J77
Front Panel Header
Clear CMOS Jumper
Chassis Intrusion Header
See Section 2.3.1
See Section 2.3.2
See Section 2.3.3
See Section 2.3.4
See Section 2.3.5
See Section 2.3.6
See Section 2.3.7
See Section 2.3.8
See Section 2.3.9
See Section 2.3.10
See Section 2.3.10
See Section 2.3.11
See Section 2.3.12
FireWire (IEEE1394A) Disable
Jumper
*J147
*J148/*J149
J14
FireWire (IEEE 1394A) Pin
Header
Buzzer/ External Speaker
Header
J42
COM2 Connector
J25/J140
J13
USB2.0 Front Panel Header
Keyboard Lock Connector
Marvell 88E1111 GbE LAN
Front Panel Header
BCM5705 GbE LAN Front
Panel Header
J2
**J3
**J85
**J152
P51
VGA Enable/Disable Jumper
BCM5705 LAN Enable/Disable
Jumper
CD_IN Connector
P52
Audio Aux_IN Connector
Front Audio Header
**P53
J9
See Section 2.3.13
See Section 2.3.14
See Section 2.3.14
See Section 2.3.15
See Section 2.3.16
See Section 2.3.17
CPU1 Fan Connector (4pin)
CPU2 Fan Connector (4pin)
Chassis Fan Connector (4pin)
Chassis Fan Connector (3pin)
J37
J47
J36/J10
J5
3-pin or 4-pin fan support
selection Jumper
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2.3.1 Front Panel Header: J139
PIN
#
PIN
#
Function
Function
HDD LED+
1
2
PWR LED+
HDD LED-
3
4
PWR LED-
Reset
Button -
PWR
Button+
5
6
Reset
Button +
PWR
Button-
7
8
VCC
9
10
12
NC
IRRX
11
VCC
GND
IRTX
NC
13
15
17
14
16
18
KEY
GND
SPKR
2.3.2 Clear CMOS Header: J112
Clear
Pin_3
Pin_3
Pin_1
Default
Pin_1
You can reset the CMOS settings
by using this jumper if you have
forgotten your system/setup
password or need to clear system
BIOS setting.
-
Power off system and
disconnect both power
connectors from the
motherboard
-
-
Use jumper cap to close Pin_1
and Pin_2 for several seconds
to Clear CMOS
Put jumper cap back to Pin_2
and Pin_3 (default setting)
Reconnect power & power on
system
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2.3.3 Chassis Intrusion Header: J77
Pin-2
PIN2
PIN1
GND
Pin-1
INTRUDUER
_L
The Chassis Intrusion Header
provides chassis intrusion-
monitoring function.
Note: For use with chassis that
support this feature
2.3.4 *FireWire (IEEE1394A) Enable/Disable Jumper: *J147
1
Use this jumper to enable/disable
IEEE1394.
Open : Enable (Default)
Closed : Disable
Note: J147 is only available on
S2877ANRF version.
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2.3.5 *FireWire (IEEE1394A) Pin Header: *J148/*J149
Signal
NC1
Pin
1
Pin
2
Signal
Key
TPA +
GND
TPB +
+12V
GND
NC2
3
4
TPA ?
GND
TPB ?
+12V
GND
Key
5
6
7
8
9
10
12
14
11
13
Note: J148 & J149 are only
available on S2877ANRF
version.
2.3.6 Buzzer/External Speaker Header: J14
PIN1
Pin #
Signal Description
1
2
3
4
Speaker+
NC
Buzzer-
Speaker-
Close Pin3 and Pin4 (Default)
Enable onboard buzzer
Open Pin3 and Pin4
Disable onboard buzzer or
connect to chassis speaker
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2.3.7 COM2 Connector: J42
Signal
Description
Pin
#
Pin
#
Signal
Description
Data-Carrier
Detect
Data-Set-
Ready
1
3
5
7
9
2
Request-to-
Send
Receive-Data
Transfer-Data
4
6
Clear-to-Send
Ring-Indicator
Key
Data-
Terminal-
Ready
8
Ground
10
Use these pin definitions to connect
a port to COM2.
2.3.8 USB 2.0 Front Panel Headers: J25/J140
Signal
Description
Pin
#
Pin
#
Signal
Description
VCC
VCC
1
3
5
7
9
2
USB DATA-
USB DATA+
GND
USB DATA-
USB DATA+
GND
4
6
8
KEY
10
NC
Use these headers to connect to
chassis front panel USB connectors.
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2.3.9 Keyboard Lock Connector: J13
Open
Closed
Use this Jumper to enable/disable
PS/2 keyboard.
Open : Enable (Default)
Closed : Disable
2.3.10 Gigabit LAN1/**LAN2 Front Panel Header: J2/ **J3
PIN1
Pin #
Signal Description
1
2
3
4
1000Mb+/100Mb-_Link
1000Mb-/100Mb+_Link
Active-
Active+
Use this 4-Pin Header to connect
LAN LED on Front Panel.
Note: J3 is only available on
S2877G2NR version.
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2.3.11 **VGA (ATI Rage XL) Enable/ Disable Jumper: **J85
Open
Closed
Use this Jumper to enable/disable
onboard ATI Rage XL graphic.
Open : Enable (Default)
Closed : Disable
Note: J85 is only available on
S2877G2NR version.
2.3.12 **BCM5705 Gigabit LAN Enable/ Disable Jumper: **J152
Open
Closed
Use this Jumper to enable/disable
LAN2 (BCM5705 GbE LAN)
Open : Enable (Default)
Closed : Disable
Note: J152 is only available on
S2877G2NR version.
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2.3.13 *Front Panel Audio Header: *P53
Signal
Description
Pin
#
Pin
#
Signal
Description
AUD_MIC_L
AUD_MIC_R
AUD_FP_R
F_AUD_DET
AUD_FP_L
1
3
5
7
9
2
GND
4
AVDD
6
AUD_RET_R
KEY
8
10
AUD_RED_L
Note: a. If you use onboard Audio
port, you must close Pin5-Pin6
and Pin9-Pin10.
b. P53 is only available on
S2877ANRF version.
2.3.14 CPU FAN Connector: J9/J37
PIN1
Use these connectors to connect
processor cooling fans to your
motherboard.
J9 for CPU1 & J37 for CPU2.
This 4-pin fan connector supports a
new standard fan with integrated
fan speed control on the fan itself
for better fan life.
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2.3.15 Chassis 4-pin FAN Connector: J47
PIN1
Use this connector to connect
chassis cooling fan to your
motherboard.
This 4-pin fan connector supports a
new standard fan with integrated
fan speed control on the fan itself
for better fan life.
2.3.16 Chassis 3-pin FAN Connectors: J36/J10
PIN1
Use these connectors to connect
chassis cooling fans to your
motherboard.
The traditional 3-pin fan connector
does not have PWM fan speed
control function.
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2.3.17 3-pin or 4-pin fan support selection jumper: J5
Signal
Description
Signal
Description
Pin
#
Pin
#
GND
GND
GND
6
4
2
5
3
1
SYS_FAN_PWM
CPU2_FAN_PWM
CPU1_FAN_PWM
Corresponding
FAN
FAN
Connector
Pin #
1 & 2
3 & 4
5 & 6
CPU1 FAN
CPU2 FAN
Chassis FAN
J9
J37
J47
Open: To support 3-pin auto fan
Closed (Default): To support 4-pin auto fan
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2.4 - Installing the Processor(s)
Your brand new Tiger K8WE supports the latest 64-bit processor technology
from AMD. Only AMD Opteron™ processor 200 series are certified and
supported with this motherboard.
Check our website for latest processor support. http://www.tyan.com
If using a single processor, it MUST be installed in socket
NOTE
CPU1. When using a single processor only CPU1 memory
banks are addressable.
TYAN is not liable for damage as a result of operating an unsupported
configuration.
The diagram is provided as a visual guide to help you install socket processors
and may not be an exact representation of the processors you have.
Step 1: Lift the lever on the socket until it is approximately 90o or as far back as
possible to the socket.
Step 2: Align the processor with the socket. There are keyed pins underneath
the processor to ensure that the processor’s installed correctly.
Step 3: Seat the processor firmly into the socket by gently pressing down until
the processor sits flush with the socket.
Step 4: Place the socket lever back down until it locks into place. The
installation is finished.
Repeat these steps for the second processor if you are using two processors.
Take care when installing processors as they have very fragile connector pins
below the processor and can bend and break if inserted improperly.
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2.5 - Heatsink Retention Frame Installation
After you are done installing the processor(s), you should proceed to installing
the retention frame and heatsink. The CPU heatsink will ensure that the
processors do not overheat and continue to operate at maximum performance
for as long as you own them. Overheated processors are also dangerous to the
motherboard.
The backplate assembly prevents excessive motherboard flexing in the area
near the processor and provides a base for the installation of the heatsink
retention bracket and heatsink.
Because there are many different types of heatsinks available from many
different manufacturers, a lot of them have their own method of installation. For
the safest method of installation and information on choosing the appropriate
heatsink, use heatsinks validated by AMD. Please refer to AMD’s website at
The following diagram will illustrate how to install the most common CPU back
plates:
1. Mounting screws
2. Heatsink retention frame
3. CPU socket
4. Motherboard PCB
5. Adhesive insulator
material
6. Backplate assembly
NOTE: Please see next
section for specific
instructions on how to install
mounting bracket.
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2.6 - Thermal Interface Material
There are two types of
thermal interface materials
designed for use with the
AMD Opteron processor.
The most common material
comes as a small pad
attached to the heatsink at
the time of purchase. There
should be a protective cover
over the material. Take care
not to touch this material.
Simply remove the protective
cover and place the heatsink
on the processor.
The second type of interface
material is usually packaged
separately. It is commonly
referred to as ‘thermal
compound’. Simply apply a
thin layer on to the CPU lid
(applying too much will
actually reduce the cooling).
Always check with the manufacturer of the heatsink &
processor to ensure the Thermal Interface material is
compatible with the processor & meets the manufacturer’s
warranty requirements
NOTE
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2.7 - Heatsink Installation Procedures
Type A: CAM LEVER (TYPE) INSTALLATION
1. After placing backplate and
interface material under motherboard
place heatsink retention frame on top
of motherboard. Align plastic retention
bracket screw holes with CPU back-
plate standoffs.
Tighten screws to secure plastic
retention bracket. Repeat for the other
side. DO NOT OVER TIGHTEN.
2. After tightening screws secure
metal clip to plastic retention bracket
center tab. Repeat for the other side
of heatsink.
3. After securing metal clip to plastic
retention bracket center tab, push
down on plastic clip to lock plastic clip
to side tab.
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Type B: SCREW RETENTION TYPE HEATSINK
1. After placing CPU back-plate and
adhesive interface material under
motherboard, place heatsink
retention frame on top of
motherboard. Align heatsink retention
frame screw hole with backplate
assembly standoffs. Place heatsink
inside plastic retention bracket. Place
metal clip over retention frame tab.
Repeat for other side.
2. Insert screw through metal clip.
BE SURE METAL CLIP IS LOCKED
ONTO RETENTION FRAME TAB.
3. Tighten screw through metal clip.
Repeat on the other side.
DO NOT OVER TIGHTEN.
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2.8 - Finishing Installing the Heatsink
After you have finished installing the heatsink onto the processor and socket,
attach the end wire of the fan (which should already be attached to the
heatsink) to the motherboard. The following diagram illustrates how to
connect fans onto the motherboard.
Once you have finished installing all the fans you can connect your drives
(hard drives, CD-ROM drives, etc.) to your motherboard.
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2.9 - Tips on Installing Motherboard in Chassis
Before installing your motherboard, make sure your chassis has the
necessary motherboard support studs installed. These studs are usually
metal and are gold in color. Usually, the chassis manufacturer will pre-install
the support studs. If you are unsure of stud placement, simply lay the
motherboard inside the chassis and align the screw holes of the
motherboard to the studs inside the case. If there are any studs missing,
you will know right away since the motherboard will not be able to be
securely installed.
Pay attention when installing board in chassis. Some components are
near the mounting holes and can be damaged.
Some chassis’ include plastic studs instead of metal. Although the plastic
studs are usable, TYAN recommends using metal studs with screws that will
fasten the motherboard more securely in place.
Below is a chart detailing what the most common motherboard studs look
like and how they should be installed.
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2.10 - Installing the Memory
Before attempting to install any memory, make sure that the memory you
have is compatible with the motherboard as well as the processor.
The following diagram shows common types of DDR SDRAM modules:
Here are a few key points to note before installing memory into your Tiger
K8WE:
•Always install memory beginning with CPU1 DIMMA1.
•In order to access memory on CPU2, both processors must be
installed.
•Single, pairs are supported on CPU1, four modules is also
supported on CPU2.
•Configure memory symmetrically on each CPU for best performance.
•AMD OpteronTM processors support 64bit (non-interleaved) or 128bit
(interleaved) memory configurations
•At least ONE Registered DDR SDRAM module must be installed for
the system to turn on and POST (power on self test)
•128MB, 256MB, 512MB, 1GB, 2GB, and 4GB* Registered
DDR400/333/266 DDR memory modules are supported
•All installed memory will be automatically detected
•The Tiger K8WE supports up to 24GB* with two CPU’s installed.
* Not validated at time of print
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This following chart outlines the rules for populating memory
(Note: X indicates a populated DIMM Slot)
Memory Configuration Chart
CPU1
CPU1
CPU1
CPU1
CPU2
CPU2
DIMM-A1 DIMM-A2 DIMM-B1 DIMM-B2
DIMM-A1 DIMM-A2
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
X
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Memory Installation Procedure
When you install the memory modules, make sure the module aligns
properly with the memory slot. The modules are keyed to ensure that it is
inserted only one way. The method of installing memory modules are
detailed by the following diagrams.
Once the memory modules are firmly seated in the slot, two latches on
either side will close and secure the module into the slot. Sometimes you
may need to close the latches yourself.
To remove the memory module, simply push the latches outwards until the
memory module pops up. Then remove the module.
YOU MUST ALWAYS unplug the power connector from the
motherboard before performing system hardware changes.
Otherwise you may damage the board and/or expansion
NOTE
device.
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2.11 - Attaching Drive Cables
Attaching IDE Drive Cable
Attaching the IDE drive cable is simple. The cable is “keyed” to only allow it
to be connected in the correct manner.
Attaching IDE cable to the IDE connector is illustrated below:
Simply plug in the BLUE END of the IDE cable into the motherboard IDE
connector, and the other end into the drive. Each standard IDE cable has
three connectors, two of which are closer together. The BLUE connector
that is furthest away from the other two is the end that connects to the
motherboard. The other two connectors are used to connect to drives.
Note: Always remember to properly set the drive jumpers. If only using one
device on a channel, it must be set as Master for the BIOS to detect it.
TIP: Pin 1 on the IDE cable (usually designated by a colored wire)
faces the drive’s power connector.
Attaching Serial ATA Cables
The Tiger K8WE is also equipped with 4 Serial ATA-II (SATAII) channels.
Connections for these drives are also very simple.
There is no need to set Master/Slave jumpers on SATA drives.
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The following pictures illustrate how to connect an SATA drive
1.SATA drive cable
connection
2. SATA drive power
connection
3. SATA cable motherboard
connector
4. SATA drive power adapter
Attaching Floppy Drive Cables
Attaching floppy diskette drives are done in a similar manner to hard drives.
See the picture below for an example of a floppy cable. Most of the current
floppy drives on the market require that the cable be installed with the
colored stripe positioned next to the power connector. In most cases, there
will be a key pin on the cable which will force a proper connection of the
cable.
Attach first floppy drive
(drive A:) to the end of
the cable with the twist
in it. Drive B: is usually
connected to the next
possible connector on
the cable (the second or
third connector after you
install Drive A:).
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2.12 - Installing Add-In Cards
Before installing add-in cards, it’s helpful to know if they are fully compatible
with your motherboard. For this reason, we’ve provided the diagrams below,
showing the most common slots that may appear on your motherboard. Not
all of the slots shown will necessarily appear on your motherboard.
Simply find the appropriate slot for your add-in card and insert the card
firmly. Do not force any add-in cards into any slots if they do not seat in
place. It is better to try another slot or return the faulty card rather than
damaging both the motherboard and the add-in card.
YOU MUST ALWAYS unplug the power connector from the
motherboard before performing system hardware changes.
Otherwise you may damage the board and/or expansion
NOTE
device.
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2.13 - Connecting External Devices
Your motherboard supports a number of different interfaces for connecting
peripherals. Some I/O ports may not be available with the board due to the
different configurations.
PS/2 Mouse/
Keyboard
Gigabit
Ethernet
**Gigabit
Ethernet
Serial Port
**VGA Port
*Audio
USBx2
This picture is representative of the latest board revision available at the
time of publishing. The board you receive may or may not look exactly like
the above picture.
Peripheral devices can be plugged straight into any of these ports but software
may be required to complete the installation.
Onboard LAN LED Color Definition
The two onboard Ethernet ports have green and yellow LEDs to indicate LAN
status. The chart below illustrates the different LED states.
10/100/1000 Mbps LAN Link/Activity LED Scheme
Left LED
Right LED
Link
Active
Link
Green
Off
Off
10 Mbps
100 Mbps
1000 Mbps
Blinking Green
Green
Green
Green
Active
Blinking Green
Link
Green
Blinking Green
Off
Orange
Orange
Off
Active
No Link
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2.14 - Tips on modifying I/O shielding for ANRF and
G2NR version
We have enclosed below I/O shielding, which is compatible with board of both
S2877ANRF and S2877G2NR version.
The VGA port, GbE LAN2(BCM5705) port and Audio ports are covered with soft
metal which can be disassembled easily by hand.
a. If you choose the board of S2877ANRF version, please disassemble
corresponding soft metal of Audio ports, and keep VGA & LAN2 port shielded.
b. If you choose the board of S2877G2NR version, please disassemble
corresponding soft metal of VGA and LAN2 port, and keep Audio port shielded.
2.15 - Installing the Power Supply
There are two power connectors on your Thunder K8SRE.
The Tiger K8WE requires an EPS12V (24 pin + 8 pin) power supply to boot.
Please be aware that ATX 2.x and ATXGES power supplies are not compatible
with the board and can damage the motherboard and/or CPU(s).
EPS12V Main Power 24-Pin
(Chipsets & Components)
12
24
12
11
10
9
8
7
6
5
4
3
+3.3V
+12V2
+12V2
+5VSB
PWR OK
GND
+5V
GND
+5V
GND
24
23
22
21
20
19
18
17
16
15
14
13
GND
+5V
+5V
+5V
RESVD
GND
GND
GND
PSON#
GND
-12V
2
1
+3.3V
+3.3V
+3.3V
1
13
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EPS 12V 8-pin (CPU Power)
4
1
8
5
4
3
2
1
GND
GND
GND
GND
8
7
6
5
+12V3
+12V3
+12V3
+12V3
Applying power to the board
1. Connect the EPS 12V 8-pin power connector.
2. Connect the EPS 12V 24-pin power connector.
3. Connect power cable to power supply and power outlet
YOU MUST unplug the power supply from the wall outlet before
plugging the power cables to motherboard connectors.
NOTE
2.16 – Finishing Up
Congratulations on making it this far! You’re finished setting up the
hardware aspect of your computer. Before closing up your chassis, make
sure that all cables and wires are connected properly, especially IDE cables
and most importantly, jumpers. You may have difficulty powering on your
system if the motherboard jumpers are not set correctly.
In the rare circumstance that you have experienced difficulty, you can find
help by asking your vendor for assistance. If they are not available for
assistance, please find setup information and documentation online at our
website or by calling your vendor’s support line.
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Chapter 3: BIOS Setup
3.1 - BIOS Setup Utility
With the BIOS setup utility, you can modify BIOS settings and control the
special features of your computer. The setup utility uses a number of
menus for making changes and turning the special features on or off.
All menus are based on a typical system. The actual menus
NOTE
displayed on your screen may be different and depend on the
hardware and features installed in your computer.
To start the BIOS setup utility:
a. Turn on or reboot your system
b. Press <F2> during POST (F4 on remote console) to start BIOS
setup utility
To select an item
Use the left/right (Å Æ) arrow keys to make a selection
To display a sub-menu (A pointer “ꢀ” marks all sub menus)
Use the arrow keys to move the cursor to the sub menu you want. Then press
<Enter>.
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3.2 - BIOS Menu Bar
The menu bar at the top of the windows lists these selections:
Main
Advanced
Memory
Boot
To configure basic system setups
To configure the advanced chipset features
To configure system memory features
To configure system boot order
To exit setup utility
Exit
NOTE
Options written in bold type represent the BIOS setup default
3.3 - BIOS Legend Bar
The chart describes the legend keys and their alternates:
Key
Function
<F1> or <Alt-H>
<ESC>
General help window
Exit current menu
Å Æ arrow keys
↑ or ↓ arrow keys
<+> or <->
Select a different menu
Select different item
Change values
<F9>
Load the Optimal default configuration values of
the menu
<F10>
<Enter>
Select the previous value/setting of the field
Execute command or select submenu
3.4 - Getting Help
Pressing [F1] will display a small help window that describes the appropriate
keys to use and the possible selections for the highlighted item. To exit the Help
window, press [ESC] or [F1] key again.
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3.5 - BIOS Main Menu
The Main BIOS Menu is the first screen that you can navigate. The Main
BIOS setup menu screen has two main frames. The left frame displays all the
options that can be configured. "Grayed-out" options cannot be configured,
options in blue can be changed.
The right frame displays the key legend. Above the key legend is an area
reserved for a text message. When an option is selected in the left frame, it is
highlighted in white. Often, a text message will accompany it.
PhoenixBIOS Setup Utility
Main
BIOS Date
Item Specific Help
BIOS Version:
CPU Type
CPU Speed
[XXXX KB]
[XXXX KB]
System Memory
Extended Memory
[Other]
[11:33:23]
[2004-11-05]
Installed O/S
System Time
System Date
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
Feature
System Time
Option
Description
HH:MM:SS
Set the system time
MM:DD:
YYYY
System Date
Set the system date
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3.6 - BIOS Advanced Menu
You can select any of the items in the left frame of the screen, such as
Hammer Configuration, to go to the sub menu for that item. You can display an
Advanced BIOS Setup option by highlighting it using the <Arrow> keys. All
Advanced BIOS Setup options are described in this section. The Advanced
BIOS Setup screen is shown below. The sub menus are described on the
following pages.
PhoenixBIOS Setup Utility
Advanced
Item Specific Help
Secured Setup Configurations
Reset Configuration Data:
[No]
[No]
ꢀHammer Configuration
ꢀIntegrated Devices
ꢀPCI Configuration
ꢀIDE Configuration
ꢀFloppy Configuration
ꢀI/O Device Configuration
ꢀHardware Monitor
ꢀConsole Redirection
ꢀWatchdog Timer Option
Intruder Support
[Enabled]
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Menu Enter: Select ꢀ Sub-Menu
F10: Previous Values
Feature
Secured Setup
Option
No
Description
Choosing “Yes” will
prevents a Plug and Play
Operation System from
changing system settings.
Select “Yes” if you want to
clear the Extended System
Configuration Data (ESCD)
area.
Configurations
Yes
No
Reset Configuration Data
Hammer Configuration
Yes
Menu Item
Set Hammer Configuration.
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Integrated Devices
PCI Configuration
Menu Item
Menu Item
Set integrated devices.
Configure PCI devices.
IDE Configuration
Menu Item
Menu Item
Menu Item
Menu Item
Menu Item
Menu Item
Configure IDE interface.
Configure floppy interface.
Peripheral configuration
Floppy Configuration
I/O Device Configuration
Hardware Monitor
Enable/disable the onboard
Hardware monitor device
Additional setup menus to
configure console.
Watchdog Timer
configuration
Console Redirection
Watchdog Timer Option
3.6.1 – Hammer Configuration Sub-Menu
You can use this screen to select options for the Hammer Configuration
settings. Use the up and down <Arrow> keys to select an item. Use the <Plus>
and <Minus> keys to change the value of the selected option.
PhoenixBIOS Setup Utility
Advanced
*CPU/Memory Controller WARNING*
Changing options to unsupported values
might hang the system. If this happens clear
CMOS and reboot
Item Specific Help
[Auto]
Mem Clock Mode:
Value:
Mode Memory Interleave:
Dram Bank Interleave
Large Memory Simulation:
HT-LDT Frequency:
[100 MHz]
[Disabled]
[Disabled]
[Disabled]
[200 Mhz]
[Discrete]
[Disabled]
MTRR Mapping
ACPI SRAT Table
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
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Feature
Option
Auto
Description
Select Memory Clock
frequency.
Mem Clock Mode
Limit
Interleave memory blocks
across Processor Nodes.
BIOS will auto detect
capability of memory
Disabled
Node Memory Interleave
Dram Block Interleave
Enabled
system.
Interleave memory blocks
across dram chip selects.
BIOS will auto detect
capability on each node.
Enable LMS mode only
when one CPU is installed
with 64G or more memory.
Disabled
Enabled
Disabled
Enabled
Large Memory Simulation
MTRR Mapping
Discrete
Continuous
Configure MTRR mode.
Enable ACPI2.0 static
resources affinity table for
ccNUMA systems.
Disabled
ACPI SRAT Table
Enabled
3.6.2 - Integrated Devices Sub-Menu
You can use this screen to select options for the Integrated Devices settings.
Use the up and down <Arrow> keys to select an item. Use the <Plus> and
<Minus> keys to change the value of the selected option.
PhoenixBIOS Setup Utility
Advanced
USB Control
[Disabled]
Item Specific Help
USB BIOS Legacy Support:
MAC LAN Bridge:
MAC Address
SATA0 Controller
SATA1 Controller
[Disabled]
[Enabled]
XXXXXXXXXXXXX
[Enabled]
[Enabled]
[PIC]
Interrupt Mode:
ꢀNV RAID Configuration
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F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
Feature
USB Control
Option
Disabled
USBA+USBB
USBA+
Description
Set USB controllers.
USBB+USB2
Disabled
Enabled
Set support for USB
Keyboard/Mouse.
Set First Serial ATA
device.
USB BIOS Legacy Support
SATA0 Controller
Enabled
Disabled
Enabled
Disabled
PIC
Set Second Serial ATA
device.
Select Interrupt Mode
between 8259/PIC mode
and APIC mode.
SATA1 Controller
Interrupt Mode
8529/PIC
NV RAID Configuration
NV Configuration
Menu Item
Set Nvidia RAID control.
You can use this screen to select options for the NV Configuration settings.
Use the up and down <Arrow> keys to select an item. Use the <Plus> and
<Minus> keys to change the value of the selected option.
PhoenixBIOS Setup Utility
Advanced
NV Configuration
[Disabled]
Item Specific Help
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IDE Primary Master
IDE Primary Slave
[Disabled]
[Disabled]
[Disabled]
[Disabled]
[Disabled]
[Disabled]
[Disabled]
[Disabled]
IDE Secondary Master
IDE Secondary Slave
Internal SATA Primary
Internal SATA Secondary
External SATA Primary
External SATA Secondary
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
Feature
Option
Enabled
Disabled
Disabled
Enabled
Disabled
Enabled
Disabled
Description
NV Configuration
Set Nvidia RAID control.
IDE Primary/Secondary
Master/Slave
Internal SATA
Primary/Secondary
External SATA
Enable the drive as RAID.
Enable the drive as RAID.
Enable the drive as RAID.
Primary/Secondary
Enabled
3.6.3 - PCI Configuration Sub-Menu
You can use this screen to select options for the PCI Configuration settings.
Use the up and down <Arrow> keys to select an item. Use the <Plus> and
<Minus> keys to change the value of the selected option.
PhoenixBIOS Setup Utility
Advanced
Note PCI Slot Layout Convention in Help Window
Item Specific Help
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ꢀPCI Device, Slot # 1
ꢀPCI Device, Slot # 2
ꢀPCI Device, Slot # 3
ꢀPCI Device, Slot # 4
ꢀOnboard Device Control
Option ROM Placement
[Disabled]
ꢀPCI/PNP ISA UHB Region Exclusion
ꢀPCI/PNP ISA IRQ Resource Exclusion
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
Feature
PCI Device, Slot #1 ,2,3&
4
Option
Description
Select PCI slot
configuration.
Menu Item
Reserve specific upper
memory blocks for use by
legacy ISA devices.
Reserve the specific IRQs
for use by legacy ISA
devices.
PCI/PNP ISA UHB Region
Exclusion
Menu Item
Menu Item
PCI/PNP ISA IRQ
Resource Exclusion
PCI Device, Slot # 1 ,2,3& 4
You can use this screen to select options for the PCI Device, Slot # 1 & 2
settings. Use the up and down <Arrow> keys to select an item. Use the <Plus>
and <Minus> keys to change the value of the selected option.
PhoenixBIOS Setup Utility
Advanced
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Option ROM Scan:
Enable Master:
Latency Timer
[Enabled]
[Disabled]
[Default]
Item Specific Help
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
Feature
Option
Enabled
Disabled
Description
Initialize device expansion
ROM.
Option ROM Scan
Disabled
Enabled
Default
Enable selected device as
a PCI bus master.
Enable Master
Minimum guaranteed time
slice allotted for bus master
in units of PCI bus clocks.
Latency Timer
0020h
Onboard Device Control
You can use this screen to enable/disable Onboard Device (BroadCom NIC
and IEEE1394 Controller) and their Option ROMs .
PhoenixBIOS Setup Utility
Advanced
BCM5705 LAN
BCM5705 LAN OPROM
IEEE1394 Controller
Onboard VGA
[Enabled]
[Enabled]
[Enabled]
[Enabled]
[Add On]
Item Specific Help
Default Primary Video Adapter
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F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
PCI/PNP ISA UHB Region Exclusion
You can use this screen to select options for the PCI/PNP ISA UHB Region
Exclusion settings. Use the up and down <Arrow> keys to select an item. Use
the <Plus> and <Minus> keys to change the value of the selected option.
PhoenixBIOS Setup Utility
Advanced
C800-CBFF:
CC00-CFFF:
D000-D3FF:
D400-D7FF:
D800-DBFF:
DC00-DFFF:
[Available]
[Available]
[Available]
[Available]
[Available]
[Available]
Item Specific Help
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
Feature
Option
Description
C800-CBFF, CC00-CFFF
D000-D3FF, D400-D7FF
D800-D8FF, DC00-DFFF
Reserves the specified
block of upper memory for
use by legacy ISA devices.
Available
Reserved
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PCI/PNP ISA IRQ Resource Exclusion
You can use this screen to select options for the PCI/PNP IRQ Resource
Exclusion settings. Use the up and down <Arrow> keys to select an item. Use
the <Plus> and <Minus> keys to change the value of the selected option.
PhoenixBIOS Setup Utility
Advanced
IRQ3
IRQ4
IRQ5:
IRQ7
IRQ9
IRQ10
IRQ11
IRQ15
[Available]
[Available]
[Available]
[Available]
[Available]
[Available]
[Available]
Item Specific Help
Indicates a DMA, interrupt, I/O, or
memory resource conflict with
another device.
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
Feature
Option
Description
Reserves the specified IRQ
for use by legacy ISA
devices.
Available
IRQ3/4/5/7/9/10/11/15
Reserved
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3.6.4 - IDE Configuration Sub-Menu
You can use this screen to select options for the IDE Configuration settings.
Use the up and down <Arrow> keys to select an item. Use the <Plus> and
<Minus> keys to change the value of the selected option.
PhoenixBIOS Setup Utility
Advanced
Large Disk Access Mode:
SMART Device Monitoring:
Local Bus IDE adapter:
[Other]
[Disabled]
[Disabled]
Item Specific Help
ꢀPrimary Master
ꢀPrimary Slave
ꢀSecondary Master
ꢀSecondary Slave
Indicates a DMA, interrupt, I/O, or
memory resource conflict with
another device.
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
Feature
Option
Other
DOS
Description
Select the IDE access
mode.
Large Disk Access Mode
Disabled
Enabled
Both
Disabled
Primary
Secondary
SMART Device Monitoring
Local Bus IDE adapter
IDE failure prediction.
Enable the integrated local
bus IDE adapter.
Primary Master/Slave
Menu Item
Configure the IDE channel.
Configure the IDE channel.
Secondary Master/Slave
Menu Item
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Primary Master/Slave, Secondary Master/Slave
The following screen shows the information of IDE device.
PhoenixBIOS Setup Utility
Advanced
Type:
Item Specific Help
CHS Format
Cylinders:
Cylinders:
Heads:
[1]
Heads:
Sectors:
Sectors:
Maximum Capacity:
Maximum Capacity:
LBA Format’
Total Sectors:
Maximum Capacity:
[Disabled]
[Disabled]
[Disabled]
[Standard]
[Disabled]
Multi-Sector Transfers:
LBA Mode Control:
32 Bit I/O:
Transfer Mode:
Ultra DMA Mode:
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
Feature
Option
Description
Specify the number of
sectors per block for
multiple sector transfer.
Enabling LBA causes
Logical Block Addressing
to be used in place of
Cylinders, Heads_Sectors.
This setting enables or
disables 32 bit IDE data
transfers.
Disabled
Multi-Sector Transfers
Enabled
Disabled
LBA Mode Control
Enabled
Disabled
Enabled
32 Bit I/O
Select the method for
moving data to/from the
drive.
Standard
Fast PIO 1
Transfer Mode
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Select the Ultra DMA mode
used for moving data
to/from the drive.
Disabled
Ultra DMA Mode
Enabled
3.6.5 - Floppy Configuration Sub-Menu
You can use this screen to select options for the Floppy Configuration
settings. Use the up and down <Arrow> keys to select an item. Use the <Plus>
and <Minus> keys to change the value of the selected option.
PhoenixBIOS Setup Utility
Advanced
[Disabled]
[Disabled]
Legacy Diskette A:
Legacy Diskette B:
Item Specific Help
Indicates a DMA, interrupt, I/O, or
memory resource conflict with
another device.
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
Feature
Option
Disabled
Enabled
Description
Legacy Diskette A/B
Select floppy type
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3.6.6 - I/O Device Configuration Sub-Menu
You can use this screen to select options for the I/O Device Configuration
settings. Use the up and down <Arrow> keys to select an item. Use the <Plus>
and <Minus> keys to change the value of the selected option.
PhoenixBIOS Setup Utility
Advanced
[Disabled]
[3F8]
[IRQ 3]
Serial port A:
Base I/O address:
Interrupt:
Item Specific Help
[Disabled]
[Normal]
[3F8]
[IRQ3]
[Disabled]
[378]
Serial port B:
Mode:
Base I/O address:
Interrupt
Parallel port:
Base I/O address:
Interrupt:
[IRQ5]
[Output only]
[DMA1]
[Disabled]
[Primary]
Mode:
DMA channel:
Floppy disk controller:
Base I/O address
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
Feature
Serial port A
Option
Disabled
Enabled
3F8
Description
Configure serial port A
using options.
Set the base I/O address
for serial port A.
Base I/O address
Interrupt
2F8
IRQ3
IRQ4
Set the interrupt for serial
port A.
Disabled
Enabled
Normal
IR
Configure serial port B
using options.
Set the mode for Serial
port B using options.
Set the base I/O address
for serial port B.
Serial port B
Mode
3F8
2F8
Base I/O address
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IRQ3
IRQ4
Set the interrupt for serial
port B
Interrupt
Disabled
Enabled
378
Configure parallel port
using options.
Set the base I/O address
for parallel port.
Set the interrupt for parallel
port.
Parallel port
Base I/O Address
Interrupt
278
IRQ5
IRQ7
Output only Set the mode for parallel
Mode
port using options.
Bi-directional
DMA 1
Set the DMA channel for
parallel port.
DMA channel
Floppy disk controller
Base I/O address
DMA 3
Disabled
Enabled
Configure Floppy disk
controller using options.
Primary
Secondary
Set the base I/O address
for parallel port.
3.6.7- Hardware Monitor Sub-Menu
You can use this screen to hardware monitor information. Use the up and
down <Arrow> keys to select an item. Use the <Plus> and <Minus> keys to
change the value of the selected option.
PhoenixBIOS Setup Utility
Advanced
CPUx Temperature
Sysx VRM temperature
CPUx Fan Speed
System Fan Speed
CPUx VDD Voltage
+12V
xxC
xxC
xxxxRPM
xxxxRPM
x.x V
x.xV
Item Specific Help
+5v
x.xV
+3.3V
x.xV
CK804 Vcore
x.xV
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
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3.6.8 – Console Redirection Sub-Menu
You can use this screen to select options for the Console Redirection
settings. Use the up and down <Arrow> keys to select an item. Use the <Plus>
and <Minus> keys to change the value of the selected option.
PhoenixBIOS Setup Utility
Advanced
[Disabled]
Com Port Address
Item Specific Help
[300]
Baud Rate
[VT100]
[None]
[Direct]
[off]
Console Type
Flow Control
Console connection
Continue C.R. after POST
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
Feature
Option
Disabled
On-board
COMA
On-board
COMB
Description
Select the Com Port
address.
Com Port Address
19200
38400
57600
Enable the specified baud
rate.
Baud Rate
115200
VT100
VT100, 8bit
PC-ANSI,7bit Enable the specified
Console Type
Flow Control
console type.
PC ANSI
VT100+
VT-UTF8
None
Enable flow control.
XON/XOFF
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Indicate whether the
console is connected
Direct
Console connection
directly to the system or a
modem is used to connect.
Via modem
Enable Console
Redirection after OS has
loaded.
Off
Continue C.R. after POST
On
3.6.9– Watchdog Timer Option Sub-Menu
You can use this screen to select options for the Watchdog settings. Use the
up and down <Arrow> keys to select an item. Use the <Plus> and <Minus>
keys to change the value of the selected option.
PhoenixBIOS Setup Utility
Advanced
Watchdog Timer
Time_Out Minutes
[Disabled]
[ 1]
Item Specific Help
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
Feature
Option
disabled
enabled
Description
Enable/disable Watchdog
Timer
Watchdog Timer
Watchdog Time_Out
configuration in Minutes(1-
255)
Time_Out Minutes
1~255
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3.7 - BIOS Memory Menu
This menu has options for memory speed & latency. Use the up and down
<Arrow> keys to select an item. Use the <Plus> and <Minus> keys to change
the value of the selected option.
PhoenixBIOS Setup Utility
Memory
[XXXX KB]
[XXXX KB]
Cache Ram
System Memory:
Extended Memory:
Item Specific Help
[Enabled]
[uncached]
[uncached]
[uncached]
[uncached]
[uncached]
[uncached]
Memory Cache:
Cache System BIOS area:
Cache Video BIOS area:
Cache Base 0-512k:
Cache Base 512k-640k:
Cache Extended Memory Area:
[Disabled]
[Disabled]
[Disabled]
[Disabled]
[Disabled]
[Disabled]
[Disabled]
[Disabled]
[Disabled]
[Disabled]
[Disabled]
[Disabled]
Cache A000 – AFFF:
Cache B000 – BFFF
Cache C800 – CBFF:
Cache CC00 – CFFF:
Cache D000 – D3FF:
Cache D400 – D7FF:
Cache D800 – DBFF:
Cache DC00 – DFFF:
Cache E000 – E3FF:
Cache E400 – E7FF:
Cache E800 – E8FF:
Cache EC00 – EFFF:
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
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Feature
Memory Cache
Option
Disabled
Enabled
Disabled
Description
Set the state of memory
cache.
USHC
Write
Through
Cache A000-AFFF
Cache B000-BFFF
Control caching of the
memory blocks.
Write Protect
Write Back
Disabled
Write
Through
Cache C800-CBFF
~
Cache EC00-EFFF
Control caching of the
memory blocks.
Write Protect
Write Back
3.8 - Security Menu
This menu has options for the Security options. Use the up and down
<Arrow> keys to select an item. Use the <Plus> and <Minus> keys to change
the value of the selected option.
PhoenixBIOS Setup Utility
Boot
Supervisor Password Is:
User Password Is:
Item Specific Help
Set Supervisor Password
Set User Password
[Disabled]
[Normal]
[User]
Password on boot:
Fixed disk boot sector:
Diskette access:
[Disabled]
[Disabled]
Virus check reminder:
System backup reminder:
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
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Feature
Option
Disabled
Enabled
Description
Enable password entry on
boot.
Password on boot
Write protects boot sector
on hard disk to protect
against viruses.
Control access to diskette
drives.
Normal
Fixed disk boot sector
Diskette access
Write Protect
User
Supervisor
Display reminder message
at boot (daily, every
Monday or 1st of every
month).
Display reminder message
at boot (daily, every
Monday or 1st of every
month).
Disabled
Daily
Virus check reminder
System back reminder
Disabled
Daily
3.9 - BIOS Boot Menu
This menu has options for the Boot Device Priority. Use the up and down
<Arrow> keys to select an item. Use the <Plus> and <Minus> keys to change
the value of the selected option.
PhoenixBIOS Setup Utility
Boot
[Disabled]
[Disabled]
[Disabled]
QuickBoot Mode:
Boot-time Diagnostic Screen
Summary screen
Item Specific Help
ꢀBoot Device Priority
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
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Feature
Option
Disabled
Enabled
Disabled
Enabled
Disabled
Enabled
Description
Allow the system to skip
certain tests while booting.
Display the diagnostic
screen during boot.
QuickBoot Mode
Boot-time Diagnostic
Screen
Display system
Summary screen
configuration on boot.
Select the search order for
the types of boot devices.
Boot Device Priority
Menu Item
3.9.1 - Boot Device Priority
You can use this screen to select options for the Boot Device Priority
settings. Follow the “Item Specific Help” on the right side to select, move or
enable the item.
PhoenixBIOS Setup Utility
Boot
0: Legacy Floppy Drives
1: IDE0
2: IDE1
3: IDE2
Item Specific Help
Keys used to view or
configure devices:
Up and Down arrows
Select a device
4: IDE3
5: PCI BEV: MBA v7.6.6 Slot 0130
6:
<+> and <-> moves
the device up and down.
<f> and <r> moves
the device fixed or removable.
<x> exclude or include
the device to boot.
<shift+1> enables or
disables a device
7:
: USB FDC
: USB HDD
: ALL PCI SCSI
: 1394 HDD
: 1394 CD
: Legacy Network Card
<1-4> Loads default
boot sequence.
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
The boot menu will list all bootable devices. Use <Enter> to expand or collapses
devices with a ‘+’ or ‘-‘. Use <+> or <-> to arrange the priorities of all bootable
devices.
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3.10 - Power Menu
This menu has options for the Power management. Use the up and down
<Arrow> keys to select an item. Use the <Plus> and <Minus> keys to change
the value of the selected option.
PhoenixBIOS Setup Utility
Boot
[Off]
Resume On Time
Resume Time :
Resume Date :
Resume On Modem Ring
Power Button Off
Spread Spectrum
Power Loss Control
Item Specific Help
[00:00:00]
[00/00/0000]
[Off]
[Enabled]
[Disabled]
[Stay off]
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
Feature
Option
Off
Description
Enable wakes the system
up at a specific time.
Specify the time when the
system is to wake up
Specify the date when the
system is to wake up
Enable wakes the system
up when an incoming call
is detected on your modem
Enable will let power button
possible to shutdown the
system in legacy OS
without holding for 4
Resume On Time
On
Resume Time
Resume Date
00:00:00
00/00/0000
Off
Resume On Modem Ring
On
Enable
Power Button Off
Spread Spectrum
seconds.
Disable
Disable will force 4 second
power button to shutdown
the system.
Disabled
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Enable
Stay Off
Power On
Spectrum.
Power Loss Control
Control power loss.
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3.11 - BIOS Exit Menu
This menu has options for the Exit Priority. Use the up and down <Arrow>
keys to select an item. Use the <Plus> and <Minus> keys to change the value
of the selected option.
PhoenixBIOS Setup Utility
Exit
Exit Saving Charges
Item Specific Help
Exit Discarding Changes
Exit System Setup and
save your changes to
CMOS.
Load Setup Defaults
Discard Changes
Save Changes
F1: Help ↑↓: Select Item -/+: Change Values F9: Setup Defaults
Esc: Exit ← →: Select Screen Enter: Select ꢀ Sub-Menu
F10: Previous Values
Exit Saving Changes
Use this option to exit setup utility and re-boot. All new selections you have
made are stored into CMOS. System will use the new settings to boot up.
Exit Discarding Changes
Use this option to exit setup utility and re-boot. All new selections you have
made are not stored into CMOS. System will use the old settings to boot up.
Load Setup Defaults
Use this option to load default setup values.
Discard Changes
Use this option to restore all new setup values that you have made but not
saved in CMOS.
Save Changes
Use this option to restore all new setup values that you have made and saved in
CMOS.
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Chapter 4: Diagnostics
Note: if you experience problems with setting up your system, always check the
following things in the following order:
Memory, Video, CPU
By checking these items, you will most likely find out what the problem might
have been when setting up your system. For more information on
4.1 Beep Codes
Fatal errors, which halt the boot process, are communicated through a series of
audible beeps. For example, if the BIOS POST can initialize the video but an
error occurs, an error message will be displayed. If it cannot display the
message, it will report the error as a series of beeps.
The most common type of error is a memory error.
Before contacting your vendor or TYAN Technical Support, be sure that you
note as much as you can about the beep code length and order that you
experience. Also, be ready with information regarding add-in cards, drives and
O/S to speed the support process and come to a quicker solution.
4.2 Flash Utility
Every BIOS file is unique for the motherboard it was designed for. For Flash
Utilities, BIOS downloads, and information on how to properly use the Flash
Utility with your motherboard, please check the TYAN web site:
Note: Please be aware that by flashing your BIOS, you agree that in the event
of a BIOS flash failure, you must contact your dealer for a replacement BIOS.
There are no exceptions. TYAN does not have a policy for replacing BIOS chips
directly with end users. In no event will TYAN be held responsible for damages
done by the end user.
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4.3 BIOS Post Code
Code
Beeps / Description
Code
Beeps / Description
02h
Verify Real Mode
32h
Test CPU bus-clock
frequency
03h
Disable Non-Maskable
Interrupt (NMI)
Get CPU type
33h
Initialize Phoenix Dispatch
Manager
04h
06h
08h
36h
38h
3Ah
Warm start shut down
Shadow system BIOS ROM
Autosize cache
Initialize system hardware
Initialize chipset with initial
POST values
09h
0Ah
Set IN POST flag
3Ch
3Dh
Advanced configuration of
chipset registers
Initialize CPU registers
Load alternate registers with
CMOS values
0Bh
0Ch
Enable CPU cache
Initialize caches to initial
POST values
42h
45h
Initialize interrupt vectors
POST device initialization
0Eh
0Fh
10h
11h
12h
13h
14h
16h
17h
Initialize I/O component
46h
48h
49h
2-1-2-3. Check ROM
copyright notice
Initialize the local bus IDE
Check video configuration
against CMOS
Initialize Power
Management
Initialize PCI bus and
devices
Load alternate registers with 4Ah
initial POST values
Initialize all video adapters
in system
Restore CPU control word
during warm boot
4Bh
QuietBoot start (optional)
Initialize PCI Bus Mastering
devices
4Ch
Shadow video BIOS ROM
Initialize keyboard controller 4Eh
Display BIOS copyright
notice
1-2-2-3. BIOS ROM
checksum
Initialize cache before
memory autosize
8254 timer initialization
8237 DMA controller
initialization
Reset Programmable
Interrupt Controller
1-3-1-1. Test DRAM refresh 59h
50h
51h
Display CPU type and
speed
Initialize EISA board
18h
1Ah
52h
54h
Test keyboard
Set key click if enabled
1Ch
20h
22h
24h
26h
58h
2-2-3-1. Test for
unexpected interrupts
Initialize POST display
service
1-3-1-3. Test 8742 KBD
Controller
5Ah
5Bh
5Ch
Display prompt "Press F2 to
enter SETUP"
Set ES segment register to
4 GB
Disable CPU cache
Enable A20 line
Test RAM between 512 and
640 KB
28h
29h
Autosize DRAM
Initialize POST Memory
Manager
Clear 512 KB base RAM
1-3-4-1. RAM failure on
address
60h
62h
Test extended memory
Test extended memory
address lines
2Ah
2Ch
64h
66h
Jump to UserPatch1
Configure advanced cache
registers
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2Eh
1-3-4-3. RAM failure on
data bits of low byte of
memory bus
67h
Initialize Multi Processor
APIC
2Fh
30h
Enable cache before
system BIOS shadow
1-4-1-1. RAM failure on
data bits of high byte of
memory bus
68h
69h
Enable external and CPU
caches
Setup System Management
Mode (SMM) area
Code
6Ah
Beeps / Description
Code
A2h
Beeps / Description
Check key lock
Display external L2 cache
size
6Bh
6Ch
6Eh
Load custom defaults
(optional)
A4h
A8h
AAh
Initialize Typematic rate
Erase F2 prompt
Display shadow-area
message
Display possible high
Scan for F2 key stroke
address for UMB recovery
70h
72h
Display error messages
Check for configuration
errors
ACh
AEh
Enter SETUP
Clear Boot flag
76h
7Ch
Check for keyboard errors
Set up hardware interrupt
vectors
B0h
B2h
Check for errors
POST done - prepare to
boot operating system
One short beep before boot
7Eh
80h
81h
82h
83h
84h
85h
86h.
87h
88h
89h
8Ah
8Bh
8Ch
8Fh
90h
91h
Initialize coprocessor if
present
B4h
B5h
B6h
B9h
BAh
BBh
BCh
BDh
BEh
BFh
C0h
C1h
C2h
C3h
C4h
C5h
C6h
Disable onboard Super I/O
ports and IRQs
Terminate QuietBoot
(optional)
Check password (optional)
Late POST device
initialization
Detect and install external
RS232 ports
Prepare Boot
Configure non-MCD IDE
controllers
Initialize DMI parameters
Initialize PnP Option ROMs
Clear parity checkers
Display MultiBoot menu
Clear screen (optional)
Detect and install external
parallel ports
Initialize PC-compatible
PnP ISA devices
Re-initialize onboard I/O
ports.
Configure Motherboard
Devices
Initialize BIOS Data Area
Check virus and backup
reminders
Try to boot with INT 19
Enable Non-Maskable
Interrupts (NMIs)
Initialize Extended BIOS
Data Area
Test and initialize PS/2
mouse
Initialize floppy controller
Initialize POST Error
Manager (PEM)
Initialize error logging
Initialize error display
function
Determine number of ATA
drives (optional)
Initialize system error
handler
Initialize hard-disk
controllers
PnPnd dual CMOS
(optional)
Initialize local-bus hard-disk
controllers
Initialize notebook docking
(optional)
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92h
93h
95h
96h
Jump to UserPatch2
C7h
C8h
C9h
D2h
Initialize notebook docking
late
Build MPTABLE for multi-
processor boards
Install CD ROM for boot
Force check (optional)
Extended checksum
(optional)
BIOS Boot Block
Clear huge ES segment
register
97h
98h
Fixup Multi Processor table
1-2. Search for option
ROMs.
E0h
E1h
BIOS Boot Block
BIOS Boot Block
99h
Check for SMART Drive
(optional)
E2h
Initialize the CPU
9Ah
9Ch
9Dh
Shadow option ROMs
Set up Power Management
Initialize security engine
(optional)
E3h
E4h
E5h
Initialize system timer
Initialize system I/O
Check force recovery boot
9Eh
9Fh
Enable hardware interrupts
Determine number of ATA
and SCSI drives
E6h
E7h
Checksum BIOS ROM
Go to BIOS
A0h
Set time of day
E8h
Set Huge Segment
Code
E9h
Beeps / Description
Initialize Multi Processor
Initialize OEM special code
Initialize PIC and DMA
Code
F1h
Beeps / Description
Initialize Run Time Clock
EAh
EBh
F2h
Initialize video
F3h
Initialize System
Management Mode
Output one beep before
boot
ECh
Initialize Memory type
F4h
EDh
EEh
EFh
F0h
Initialize Memory size
Shadow Boot Block
System memory test
Initialize interrupt vectors
F5h
F6h
F7h
Boot to Mini DOS
Clear Huge Segment
Boot to Full DOS
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Glossary
ACPI (Advanced Configuration and Power Interface): a power management
specification that allows the operating system to control the amount of power
distributed to the computer’s devices. Devices not in use can be turned off,
reducing unnecessary power expenditure.
AGP (Accelerated Graphics Port): a PCI-based interface which was designed
specifically for demands of 3D graphics applications. The 32-bit AGP channel
directly links the graphics controller to the main memory. While the channel runs
only at 66 MHz, it supports data transmission during both the rising and falling
ends of the clock cycle, yielding an effective speed of 133 MHz.
ATAPI (AT Attachment Packet Interface): also known as IDE or ATA; a drive
implementation that includes the disk controller on the device itself. It allows
CD-ROMs and tape drives to be configured as master or slave devices, just like
HDDs.
ATX: the form factor designed to replace the AT form factor. It improves on the
AT design by rotating the board 90 degrees, so that the IDE connectors are
closer to the drive bays, and the CPU is closer to the power supply and cooling
fan. The keyboard, mouse, USB, serial, and parallel ports are built-in.
Bandwidth: refers to carrying capacity. The greater the bandwidth, the more
data the bus, phone line, or other electrical path can carry. Greater bandwidth
results in greater speed.
BBS (BIOS Boot Specification): a feature within the BIOS that creates,
prioritizes, and maintains a list of all Initial Program Load (IPL) devices, and
then stores that list in NVRAM. IPL devices have the ability to load and execute
an OS, as well as provide the ability to return to the BIOS if the OS load process
fails. At that point, the next IPL device is called upon to attempt loading of the
OS.
BIOS (Basic Input/Output System): the program that resides in the ROM chip,
which provides the basic instructions for controlling your computer’s hardware.
Both the operating system and application software use BIOS routines to
ensure compatibility.
Buffer: a portion of RAM which is used to temporarily store data; usually from
an application though it is also used when printing and in most keyboard drivers.
The CPU can manipulate data in a buffer before copying it to a disk drive. While
this improves system performance (reading to or writing from a disk drive a
single time is much faster than doing so repeatedly) there is the possibility of
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losing your data should the system crash. Information in a buffer is temporarily
stored, not permanently saved.
Bus: a data pathway. The term is used especially to refer to the connection
between the processor and system memory, and between the processor and
PCI or ISA local buses.
Bus mastering: allows peripheral devices and IDEs to access the system
memory without going through the CPU (similar to DMA channels).
Cache: a temporary storage area for data that will be needed often by an
application. Using a cache lowers data access times since the information is
stored in SRAM instead of slower DRAM. Note that the cache is also much
smaller than your regular memory: a typical cache size is 512KB, while you may
have as much as 4GB of regular memory.
Closed and open jumpers: jumpers and jumper pins are active when they are
“on” or “closed”, and inactive when they are “off” or “open”.
CMOS (Complementary Metal-Oxide Semiconductors): chips that hold the
basic startup information for the BIOS.
COM port: another name for the serial port, which is called as such because it
transmits the eight bits of a byte of data along one wire, and receives data on
another single wire (that is, the data is transmitted in serial form, one bit after
another). Parallel ports transmit the bits of a byte on eight different wires at the
same time (that is, in parallel form, eight bits at the same time).
DDR (Double Data Rate): a technology designed to double the clock speed of
the memory. It activates output on both the rising and falling edge of the system
clock rather than on just the rising edge, potentially doubling output.
DIMM (Dual In-line Memory Module): faster and more capacious form of RAM
than SIMMs, and do not need to be installed in pairs.
DIMM bank: sometimes called DIMM socket because the physical slot and the
logical unit are the same. That is, one DIMM module fits into one DIMM socket,
which is capable of acting as a memory bank.
DMA (Direct Memory Access): channels that are similar to IRQs. DMA
channels allow hardware devices (like soundcards or keyboards) to access the
main memory without involving the CPU. This frees up CPU resources for other
tasks. As with IRQs, it is vital that you do not double up devices on a single line.
Plug-n-Play devices will take care of this for you.
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DRAM (Dynamic RAM): widely available, very affordable form of RAM which
looses data if it is not recharged regularly (every few milliseconds). This refresh
requirement makes DRAM three to ten times slower than non-recharged RAM
such as SRAM.
ECC (Error Correction Code or Error Checking and Correcting): allows data
to be checked for errors during run-time. Errors can subsequently be corrected
at the same time that they’re found.
EEPROM (Electrically Erasable Programmable ROM): also called Flash
BIOS, it is a ROM chip which can, unlike normal ROM, be updated. This allows
you to keep up with changes in the BIOS programs without having to buy a new
ESCD (Extended System Configuration Data): a format for storing
information about Plug-n-Play devices in the system BIOS. This information
helps properly configure the system each time it boots.
Firmware: low-level software that controls the system hardware.
Form factor: an industry term for the size, shape, power supply type, and
external connector type of the Personal Computer Board (PCB) or motherboard.
The standard form factors are the AT and ATX.
Global timer: onboard hardware timer, such as the Real-Time Clock (RTC).
HDD: stands for Hard Disk Drive, a type of fixed drive.
H-SYNC: controls the horizontal synchronization/properties of the monitor.
HyperTransportTM: a high speed, low latency, scalable point-to-point link for
interconnecting ICs on boards. It can be significantly faster than a PCI bus for
an equivalent number of pins. It provides the bandwidth and flexibility critical for
today's networking and computing platforms while retaining the fundamental
programming model of PCI.
IC (Integrated Circuit): the formal name for the computer chip.
IDE (Integrated Device/Drive Electronics): a simple, self-contained HDD
interface. It can handle drives up to 8.4 GB in size. Almost all IDEs sold now are
in fact Enhanced IDEs (EIDEs), with maximum capacity determined by the
hardware controller.
IDE INT (IDE Interrupt): a hardware interrupt signal that goes to the IDE.
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I/O (Input/Output): the connection between your computer and another piece
of hardware (mouse, keyboard, etc.)
IRQ (Interrupt Request): an electronic request that runs from a hardware
device to the CPU. The interrupt controller assigns priorities to incoming
requests and delivers them to the CPU. It is important that there is only one
device hooked up to each IRQ line; doubling up devices on IRQ lines can lock
up your system. Plug-n-Play operating systems can take care of these details
for you.
Latency: the amount of time that one part of a system spends waiting for
another part to catch up. This occurs most commonly when the system sends
data out to a peripheral device and has to wait for the peripheral to spread
(peripherals tend to be slower than onboard system components).
NVRAM: ROM and EEPROM are both examples of Non-Volatile RAM, memory
that holds its data without power. DRAM, in contrast, is volatile.
Parallel port: transmits the bits of a byte on eight different wires at the same
time.
PCI (Peripheral Component Interconnect): a 32 or 64-bit local bus (data
pathway) which is faster than the ISA bus. Local buses are those which operate
within a single system (as opposed to a network bus, which connects multiple
systems).
PCI PIO (PCI Programmable Input/Output) modes: the data transfer modes
used by IDE drives. These modes use the CPU for data transfer (in contrast,
DMA channels do not). PCI refers to the type of bus used by these modes to
communicate with the CPU.
PCI-to-PCI bridge: allows you to connect multiple PCI devices onto one PCI
slot.
Pipeline burst SRAM: a fast secondary cache. It is used as a secondary cache
because SRAM is slower than SDRAM, but usually larger. Data is cached first
to the faster primary cache, and then, when the primary cache is full, to the
slower secondary cache.
PnP (Plug-n-Play): a design standard that has become ascendant in the
industry. Plug-n-Play devices require little set-up to use. Devices and operating
systems that are not Plug-n-Play require you to reconfigure your system each
time you add or change any part of your hardware.
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PXE (Preboot Execution Environment): one of four components that together
make up the Wired for Management 2.0 baseline specification. PXE was
designed to define a standard set of preboot protocol services within a client
with the goal of allowing networked-based booting to boot using industry
standard protocols.
RAID (Redundant Array of Independent Disks): a way for the same data to
be stored in different places on many hard drives. By using this method, the
data is stored redundantly and multiple hard drives will appear as a single drive
to the operating system. RAID level 0 is known as striping, where data is striped
(or overlapped) across multiple hard drives, but offers no fault-tolerance. RAID
level 1 is known as mirroring, which stores the data within at least two hard
drives, but does not stripe. RAID level 1 also allows for faster access time and
fault-tolerance, since either hard drive can be read at the same time. RAID level
0+1 is both striping and mirroring, providing fault-tolerance, striping, and faster
access all at the same time.
RAIDIOS: RAID I/O Steering (Intel)
RAM (Random Access Memory): technically refers to a type of memory where
any byte can be accessed without touching the adjacent data and is often
referred to the system’s main memory. This memory is available to any program
running on the computer.
ROM (Read-Only Memory): a storage chip which contains the BIOS; the basic
instructions required to boot the computer and start up the operating system.
SDRAM (Synchronous Dynamic RAM): called as such because it can keep
two sets of memory addresses open simultaneously. By transferring data
alternately from one set of addresses and then the other, SDRAM cuts down on
the delays associated with non-synchronous RAM, which must close one
address bank before opening the next.
Serial port: called as such because it transmits the eight bits of a byte of data
along one wire, and receives data on another single wire (that is, the data is
transmitted in serial form, one bit after another).
SCSI Interrupt Steering Logic (SISL): Architecture that allows a RAID
controller, such as AcceleRAID 150, 200 or 250, to implement RAID on a
system board-embedded SCSI bus or a set of SCSI busses. SISL: SCSI
Interrupt Steering Logic ( LSI ) (only on LSI SCSI boards)
Sleep/Suspend mode: in this mode, all devices except the CPU shut down.
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SDRAM (Static RAM): unlike DRAM, this type of RAM does not need to be
refreshed in order to prevent data loss. Thus, it is faster and more expensive.
Standby mode: in this mode, the video and hard drives shut down; all other
devices continue to operate normally.
UltraDMA-33/66/100: a fast version of the old DMA channel. UltraDMA is also
called UltraATA. Without a proper UltraDMA controller, your system cannot take
advantage of higher data transfer rates of the new UltraDMA/UltraATA hard
drives.
USB (Universal Serial Bus): a versatile port. This one port type can function
as a serial, parallel, mouse, keyboard or joystick port. It is fast enough to
support video transfer, and is capable of supporting up to 127 daisy-chained
peripheral devices.
VGA (Video Graphics Array): the PC video display standard
V-SYNC: controls the vertical scanning properties of the monitor.
ZCR (Zero Channel RAID): PCI card that allows a RAID card to use the
onboard SCSI chip, thus lowering cost of RAID solution
ZIF Socket (Zero Insertion Force socket): these sockets make it possible to
insert CPUs without damaging the sensitive CPU pins. The CPU is lightly
placed in an open ZIF socket, and a lever is pulled down. This shifts the
processor over and down, guiding it into the board and locking it into place.
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Technical Support
If a problem arises with your system, you should turn to your dealer for help first.
Your system has most likely been configured by them, and they should have the
best idea of what hardware and software your system contains. Furthermore, if
you purchased your system from a dealer near you, you can bring your system
to them to have it serviced instead of attempting to do so yourself (which can
have expensive consequences).
Help Resources:
1. See the beep codes section of this manual.
2. See the TYAN website for FAQ’s, bulletins, driver updates,
3. Contact your dealer for help BEFORE calling TYAN.
4. Check the TYAN user group:
alt.comp.periphs.mainboard.TYAN
Returning Merchandise for Service
During the warranty period, contact your distributor or system vendor FIRST for
any product problems. This warranty only covers normal customer use and
does not cover damages incurred during shipping or failure due to the alteration,
misuse, abuse, or improper maintenance of products.
NOTE: A receipt or copy of your invoice marked with the date of purchase
is required before any warranty service can be rendered. You may obtain
service by calling the manufacturer for a Return Merchandise
Authorization (RMA) number. The RMA number should be prominently
displayed on the outside of the shipping carton and the package should
be mailed prepaid. TYAN will pay to have the board shipped back to you.
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Notice for the USA
Compliance Information Statement (Declaration of
Conformity Procedure) DoC
FCC Part 15: This device complies with part 15 of the FCC
Rules
Operation is subject to the following conditions:
This device may not cause harmful interference, and
This device must accept any interference received including interference that
may cause undesired operation. 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 one or more of the
following measures:
Reorient or relocate the receiving antenna.
Increase the separation between the equipment and the receiver.
Plug the equipment into an outlet on a circuit different from that of the receiver.
Consult the dealer on an experienced radio/television technician for help.
Notice for Canada
This apparatus complies with the Class B limits for radio interference as
specified in the Canadian Department of Communications Radio Interference
Regulations. (Cet appareil est conforme aux norms de Classe B d’interference
radio tel que specifie par le Ministere Canadien des Communications dans les
reglements d’ineteference radio.)
Notice for Europe (CE Mark)
This product is in conformity with the Council Directive
89/336/EEC, 92/31/EEC (EMC).
CAUTION: Lithium battery included with this board. Do not puncture, mutilate,
or dispose of battery in fire. Danger of explosion if battery is incorrectly replaced.
Replace only with the same or equivalent type recommended by manufacturer.
Dispose of used battery according to manufacturer instructions and in
accordance with your local regulations.
Document #: D1681-100
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