IBASE Technology MI811F-420, MI811F-420D, MI811F-335, MI811F-335D User Manual

MI811F Series
Intel® Pentium® & Celeron® SoC
Mini-ITX Motherboard
Users Manual
Version 1.1
(Sep. 2017)
ii
MI811F Series User’s Manual
Copyright
© 2017 IBASE Technology, Inc. All rights reserved.
No part of this publication may be reproduced, copied, stored in a retrieval system, translated into any language or transmitted in any form or by any means, electronic, mechanical, photocopying, or otherwise, without the prior written consent of IBASE Technology, Inc. (hereinafter referred to as “IBASE”).
Disclaimer
IBASE reserves the right to make changes and improvements to the products described in this document without prior notice. Every effort has been made to ensure the information in the document is correct; however, IBASE does not guarantee this document is error-free. IBASE assumes no liability for incidental or consequential damages arising from misapplication or inability to use the product or the information contained herein, nor for any infringements of rights of third parties, which may result from its use.
Trademarks
All the trademarks, registrations and brands mentioned herein are used for identification purposes only and may be trademarks and/or registered trademarks of their respective owners.
MI811F Series User’s Manual
iii
Compliance
This product has passed CE tests for environmental specifications and limits. This product is in accordance with the directives of the European Union (EU). In a domestic environment, this product may cause radio interference in which case users may be required to take adequate measures.
This product has been tested and found to comply with the limits for a Class B device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency
energy and, if not installed and used in accordance with manufacturer’s
instructions, may cause harmful interference to radio communications.
WEEE
This product must not be disposed of as normal household waste, in accordance with the EU directive of for waste electrical and electronic equipment (WEEE - 2012/19/EU). Instead, it should be disposed of by returning it to a municipal recycling collection point. Check local regulations for disposal of electronic products.
Green IBASE
This product is compliant with the current RoHS restrictions and prohibits use of the following substances in concentrations exceeding 0.1% by weight (1000 ppm) except for cadmium, limited to 0.01% by weight (100 ppm).
Lead (Pb)
Mercury (Hg)
Cadmium (Cd)
Hexavalent chromium (Cr6+)
Polybrominated biphenyls (PBB)
Polybrominated diphenyl ether (PBDE)
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MI811F Series User’s Manual
Important Safety Information
Carefully read the precautions before using the board.
Environmental conditions:
Use this product in environments with ambient temperatures between
0˚C and 60˚C.
Do not leave this product in an environment where the storage temperature may be below -20° C or above 80° C. To prevent from damages, the product must be used in a controlled environment.
Care for your IBASE products:
Before cleaning the PCB, unplug all cables and remove the battery.
Clean the PCB with a circuit board cleaner or degreaser, or use cotton
swabs and alcohol.
Vacuum the dust with a computer vacuum cleaner to prevent the fan
from being clogged.
WARNING
Attention during use:
Do not use this product near water.
Do not spill water or any other liquids on this product.
Do not place heavy objects on the top of this product.
Anti-static precautions
Wear an anti-static wrist strap to avoid electrostatic discharge.
Place the PCB on an anti-static kit or mat.
Hold the edges of PCB when handling.
Touch the edges of non-metallic components of the product instead of
the surface of the PCB.
Ground yourself by touching a grounded conductor or a grounded bit of metal frequently to discharge any static.
CAUTION
Danger of explosion if the internal lithium-ion battery is replaced by an incorrect type. Replace only with the same or equivalent type recommended by the manufacturer. Dispose of used batteries according to the manufacturer’s instructions or recycle them at a local recycling facility or battery collection point.
MI811F Series User’s Manual
v
Warranty Policy
IBASE standard products:
24-month (2-year) warranty from the date of shipment. If the date of shipment cannot be ascertained, the product serial numbers can be used to determine the approximate shipping date.
3rd-party parts:
12-month (1-year) warranty from delivery for the 3rd-party parts that are not manufactured by IBASE, such as CPU, CPU cooler, memory, storage devices, power adapter, panel and touchscreen.
PRODUCTS, HOWEVER, THAT FAIL DUE TO MISUSE, ACCIDENT,
IMPROPER INSTALLATION OR UNAUTHORIZED REPAIR SHALL BE TREATED AS OUT OF WARRANTY AND CUSTOMERS SHALL BE BILLED FOR REPAIR AND SHIPPING CHARGES.
Technical Support & Services
1. Visit the IBASE website at www.ibase.com.tw to find the latest information about the product.
2. If you need any further assistance from your distributor or sales
representative, prepare the following information of your product and elaborate upon the problem.
Product model name
Product serial number
Detailed description of the problem
The error messages in text or in screenshots if there is any
The arrangement of the peripherals
Software in use (such as OS and application software, including the
version numbers)
3. If repair service is required, you can download the RMA form at
http://www.ibase.com.tw/english/Supports/RMAService/. Fill out the
form and contact your distributor or sales representative.
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MI811F Series User’s Manual
Table of Contents
Compliance ..................................................................................... iii
Important Safety Information ........................................................ iv
Warranty Policy ............................................................................... v
Technical Support & Services ....................................................... v
Chapter 1 General Information ............................................. 1
1.1 Introduction ......................................................................................... 2
1.2 Features .............................................................................................. 2
1.3 Packing List ................................................................ ......................... 3
1.4 Optional Accessories ........................................................................... 3
1.5 Specifications ...................................................................................... 4
1.6 Block Diagram ..................................................................................... 7
1.7 Overview ............................................................................................. 8
1.8 Dimensions ....................................................................................... 10
Chapter 2 Hardware Configuration ........................................ 11
2.1 Essential Installations Before You Begin ........................................... 12
2.1.1 Installing the Memory ........................................................... 12
2.2 Setting the Jumpers .......................................................................... 13
2.2.1 How to Set Jumpers ............................................................. 13
2.3 Jumper & Connector Locations ......................................................... 14
2.4 Jumpers Quick Reference ................................................................. 16
2.4.1 LVDS Panel Power Selection (JP1) ..................................... 16
2.4.2 Panel Output Selection (JP3) .............................................. 17
2.4.3 Panel Backlight Control Selection (JP4) .............................. 18
2.4.4 SRTC Register Clearance (JP6).......................................... 19
2.4.5 CMOS Data Clearance (JP7) .............................................. 20
2.4.6 eDP Backlight Power Selection (JP9) .................................. 21
2.4.7 eDP Panel Power Selection (JP10) ..................................... 22
2.5 Connectors Quick Reference............................................................. 23
2.5.1 eDP Connector (CN1) ......................................................... 24
2.5.2 COM1 RS-232/422/485 Port & COM2 RS-232 Port (CN2) .. 25
2.5.3 Dual USB 2.0 Port (CN3) .................................................... 26
2.5.4 Dual USB 3.0 Port & LAN Port (CN4, CN5) ......................... 26
MI811F Series User’s Manual
vii
2.5.5 HDMI Port (CN6, CN7) ........................................................27
2.5.6 Audio Jack (CN10) ..............................................................27
2.5.7 DVI-D Connector (J11) ........................................................28
2.5.8 SATA III Port (CN8, CN9) ....................................................29
2.5.9 Mini-PCIe Slot for mSATA (J8) ............................................29
2.5.10 Mini-PCIe Slot (J7) ..............................................................30
2.5.11 Panel Inverter Connector (J2) ..............................................30
2.5.12 LVDS Connector (J3, J4) .....................................................31
2.5.13 DC Power Input Connector (J6) ...........................................32
2.5.14 ATX Power Connector (J5) ..................................................33
2.5.15 Dual USB Port (J9, J23) ......................................................34
2.5.16 SATA Power Connector (J14, J15) ......................................34
2.5.17 Front Panel Setting Connector (J12) ....................................35
2.5.18 DDR3L SO-DIMM Slot (J10, J13) ........................................36
2.5.19 Amplifier Connector (J16) ....................................................36
2.5.20 Audio Connector (J17) .........................................................37
2.5.21 COM3 & COM4 RS-232 Port (J18, J19) ..............................38
2.5.22 Fan Connector (CPU_FAN1, SYS_FAN1) ...........................38
2.5.23 Digital I/O Connector (J21) ..................................................39
Chapter 3 Drivers Installation ............................................. 41
3.1 Introduction ................................ ........................................................ 42
3.2 Intel® Chipset Software Installation Utility ..........................................42
3.3 VGA Driver Installation.......................................................................44
3.4 HD Audio Driver Installation ...............................................................46
3.5 Intel® Trusted Execution Engine Drivers Installation ..........................48
3.6 Intel® Serial IO Drivers Installation .....................................................50
3.7 LAN Drivers Installation .....................................................................52
Chapter 4 BIOS Setup .......................................................... 55
4.1 Introduction ................................ ........................................................ 56
4.2 BIOS Setup........................................................................................56
4.3 Main Settings .....................................................................................57
4.4 Advanced Settings .............................................................................58
4.4.1 ACPI Computing ...................................................................59
4.4.2 LVDS (eDP/DP) Configuration ..............................................60
4.4.3 iSmart Controller ...................................................................61
4.4.4 Fintek Super IO Configuration ..............................................62
4.4.5 Fintek Super IO Hardware Monitor........................................64
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MI811F Series User’s Manual
4.4.6 CPU Configuration ............................................................... 65
4.4.7 AMI Graphic Output Protocol Policy ..................................... 66
4.4.8 Network Stack Configuration ................................................ 67
4.4.9 CSM Configuration ............................................................... 68
4.4.10 USB Configuration ............................................................... 69
4.5 Chipset Settings ................................................................................ 70
4.5.1 South Cluster Configuration ................................................. 70
4.6 Security Settings ............................................................................... 75
4.7 Boot Settings ..................................................................................... 76
4.8 Save & Exit Settings .......................................................................... 77
Appendix ........................................................................................ 79
A. I/O Port Address Map ........................................................................ 80
B. Interrupt Request Lines (IRQ) ............................................................ 83
C. Watchdog Timer Configuration .......................................................... 85
1
Chapter 1 General Information
The information provided in this chapter includes:
Features
Packing List
Optional Accessories
Specifications
Block Diagram
Board Overview
Board Dimensions
2
MI811F Series User’s Manual
1.1 Introduction
MI811F is a Mini-ITX motherboard based on the platform of Intel® Pentium® N4200 or Celeron
®
N3350. This board features HDMI at I/O coastline, on-board headers for LVDS, eDP and 24-bit dual channel LVDS interfaces for video display. You can use either eDP or LVDS interface. It is able to be operated at the ambient operating temperature ranging from 0 ~ 60 °C, and even from -20 ~ 80 °C for storage.
Photo of MI811F
1.2 Features
Mini-ITX with Intel® Pentium® QC N4200 / Celeron® DC N3350 SoC
2 x DDR3L-1866 SO-DIMM socket, expandable up to 8GB
1 x HDMI, 1 x DVI-D (or 2nd HDMI), and eDP / 24-bit dual channel LVDS
2 x GbE LAN, 4 x USB 3.0, 6 x USB 2.0, 4 x COM, 2 x SATA III,
1 x PCIe (1x), 2 x Mini-PCIe slot
Configurable watchdog timer and digital I/O
General Information
MI811F Series User’s Manual
3
1
1.3 Packing List
Your MI811F package should include the items listed below. If any of the items below is missing, contact the distributor or dealer from whom you purchased the product.
MI811F x 1
IO Shield x 1
SATA cable x 1
(SATA-5 for ATX power connector; SATA-53 for DC-In power connector)
COM cable (PK3K) x 1
Disk x 1
(including chipset drivers and flash memory utility)
This User’s Manual x 1
1.4 Optional Accessories
IBASE provides optional accessories as follows. Please contact us or your dealer if you need any.
Audio cable (Audio-18)
USB 2.0 cable (USB29)
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MI811F Series User’s Manual
1.5 Specifications
Product Name
MI811F-420
MI811F-420D
MI811F-335
MI811F-335D
Form Factor
Mini-ITX Motherboard
System
Operating System
Windows 10 Enterprise (64-bit)
Windows 10 IoT Core (64-bit)
Linux Ubuntu
CPU Type
Intel® Pentium® QC N4200
Intel® Celeron® DC N3350
CPU Speed
1.1 ~ 2.5 GHz
1.1 ~ 2.4 GHz
Cache
2 MB
Chipset
Integrated
Memory
2 x DDR3L-1866 SO-DIMM, expandable up to 8 GB (Non-ECC)
Storage
mSATA SSD
Graphics
Intel® Pentium® SoC integrated Gen. 9
Network
2 x Intel® I211AT PCIe Gigabit Ethernet
Super I/O
Fintek F81964D-I
Audio Codec & Controller
Intel® SoC built-in HD audio controller Realtek ALC283 codec with 2.1 channels and amplifier
Power Requirement
ATX Power
DC-In 12 ~ 24V
ATX Power
DC-In 12 ~ 24V
Watchdog Timer
Yes (256 segments, 0, 1, 2…255 sec / min)
BIOS
AMI BIOS
iSmart
3.5
H/W Monitor
Yes
Smart Control
EuP/ErP wide temperature
General Information
MI811F Series User’s Manual
5
1
Dimensions
170 x 170 mm (6.7” x 6.7”)
RoHS
Yes
Certification
CE, FCC Class B, LVD
I/O Ports
Display
1 x HDMI (1.4b, CN7 connector), 3840 x 2160 at 30 Hz
1 x HDMI (1.4b, CN6 connector) or DVI-D, 3840 x 2160 at 30 Hz
1 x eDP / 24-bit dual channel LVDS eDP: 4096 x 2160 at 60 Hz
LVDS: 1920 x 1200 at 60 Hz
* If both the HDMI (CN6 connector) and DVI-D (J11 connector)
ports are connected, HDMI will be given the precedence over DVI-D.
* eDP and LVDS do not work at the same time.
LAN
2 x RJ45 GbE LAN
USB
4 x USB 3.0: I/O coastline connectors
6 x USB 2.0:
2 ports at the I/O coastline 4 ports via on-board pin headers
Serial
4 x COM ports:
COM1: RS-232/422/485 (I/O coastline connector,
jumper-less selection)
COM2: RS-232 only (I/O coastline connector)
COM3 & COM4: RS-232 only (via on-board
box-headers)
SATA
2 x SATA III (one is shared with the mini-PCIe slot (full-size) for mSATA)
Audio
Line-In
Line-Out
Microphone-Input
Digital IO
4-In & 4-Out
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MI811F Series User’s Manual
Expansion Slots
1 x Mini PCIe slot (full-size) for mSATA
1 x Mini PCIe slot (half-size) with USB
1 x PCIe (x1) slot
Environment
Temperature
Operation: 0 ~ 60 °C (32 ~ 140 °F)
Storage: -20 ~ 80 °C (-4 ~ 176 °F)
Relative Humidity
0 ~ 90 %, non-condensing at 60 °C
All specifications are subject to change without prior notice.
General Information
MI811F Series User’s Manual
7
1
1.6 Block Diagram
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MI811F Series User’s Manual
1.7 Overview
Top View
Photo of MI811F (ATX power)
The photos above are for reference only. Some minor components may
differ.
General Information
MI811F Series User’s Manual
9
1
I/O View
No.
Name
No.
Name
1
COM1 RS-232/422/485 Port
6
HDMI Port (given the precedence over
the DVI-D connector, J11)
2
COM2 RS-232 Port
7
HDMI Port
3
USB 2.0 Port
8
Line-In
4
LAN Port (GbE)
9
Line-Out
5
USB 3.0 Port
10
Microphone-Input
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MI811F Series User’s Manual
1.8 Dimensions
170
165.1
33.02
35.52
31.05
28.38
10.16 0
0
6.35
17.99
44.65
64.21
86.45
107.98
128.8
170
146.12
163.83
0
11
Chapter 2 Hardware Configuration
This section provides information on jumper settings and connectors on the MI811F in order to set up a workable system. On top of that, you will also need to install crucial pieces such as the CPU and the memory before using the product. The topics covered are:
Essential installations before you begin
Jumper and connector locations
Jumper settings and information of connectors
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MI811F Series User’s Manual
2.1 Essential Installations Before You Begin
Follow the instructions below to install the memory.
2.1.1 Installing the Memory
To install the modules, locate the memory slot on the board and perform the following steps:
.
1. Align the key of the memory module with that on the memory slot and insert the module slantwise.
2. Gently push the module in an upright position until the clips of the slot close to hold the module in place when the module touches the bottom of the slot.
To remove the module, press the clips outwards with both hands, and the module will pop-up.
Hardware Configuration
MI811F Series User’s Manual
13
2
2.2 Setting the Jumpers
Set up and configure your MI811F by using jumpers for various settings and features according to your needs and applications. Contact your supplier if you have doubts about the best configuration for your use.
2.2.1 How to Set Jumpers
Jumpers are short-length conductors consisting of several metal pins with a non-conductive base mounted on the circuit board. Jumper caps are used to have the functions and features enabled or disabled. If a jumper has 3 pins, you can connect either PIN1 to PIN2 or PIN2 to PIN3 by shorting.
Pin# 1
2
3
A 3-pin jumper
A jumper cap
Refer to the illustration below to set jumpers.
Pin closed
Oblique view
Schematic illustration in the manual
Open
1 2 3
1-2
1 2 3
2-3
1 2 3
When two pins of a jumper are encased in a jumper cap, this jumper is closed, i.e. turned On.
When a jumper cap is removed from two jumper pins, this jumper is open, i.e. turned Off.
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MI811F Series User’s Manual
2.3 Jumper & Connector Locations
Board diagram of MI811F
Note:
1. J5 is only available for MI811F-420 & MI811F-335 (ATX power types).
2. J6, J14, J15 is only available for MI811F-420D & MI811F-335D (DC-In
power types).
Hardware Configuration
MI811F Series User’s Manual
15
2
SIO
Board diagram of MI811F
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MI811F Series User’s Manual
2.4 Jumpers Quick Reference
Function
Jumper Name
Page
LVDS Panel Power Selection
JP1
16
Panel Output Selection
JP3
17
Panel Backlight Control Selection
JP4
18
SRTC Register Clearance
JP6
19
CMOS Data Clearance
JP7
20
eDP Backlight Power Selection
JP9
21
eDP Panel Power Selection
JP10
22
Factory Use Only
JP5
- -
2.4.1 LVDS Panel Power Selection (JP1)
1
Function
Pin closed
Illustration
3.3V
(default)
1-2
1
5V
2-3
1
Hardware Configuration
MI811F Series User’s Manual
17
2
2.4.2 Panel Output Selection (JP3)
1
Function
Pin closed
Illustration
eDP Panel
1-2
1
LVDS Panel
(default)
2-3
1
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MI811F Series User’s Manual
2.4.3 Panel Backlight Control Selection (JP4)
1
Function
Pin closed
Illustration
3.3V
(default)
Open
1
5V
Close
1
Hardware Configuration
MI811F Series User’s Manual
19
2
2.4.4 SRTC Register Clearance (JP6)
1
Function
Pin closed
Illustration
Normal
(default)
1-2
1
Clear SRTC
2-3
1
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MI811F Series User’s Manual
2.4.5 CMOS Data Clearance (JP7)
1
Function
Pin closed
Illustration
Normal
(default)
1-2
1
Clear CMOS
2-3
1
Hardware Configuration
MI811F Series User’s Manual
21
2
2.4.6 eDP Backlight Power Selection (JP9)
1
Function
Pin closed
Illustration
5V
(default)
1-2
1
12V
2-3
1
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MI811F Series User’s Manual
2.4.7 eDP Panel Power Selection (JP10)
1
Function
Pin closed
Illustration
3.3V
(default)
1-2
1
5V
2-3
1
Hardware Configuration
MI811F Series User’s Manual
23
2
2.5 Connectors Quick Reference
Function
Connector Name
Page
eDP Connector
CN1
24
COM1 RS-232/422/485 Port & COM2 RS-232 Port
CN2
25
Dual USB 2.0 Port
CN3
26
Dual USB 3.0 Port & LAN Port
CN4, CN5
26
HDMI Port
CN6 (shared with J11), CN7
27
Audio Jack
CN10
27
DVI-D Connector
J11 (chared with CN6)
28
SATA III Port
CN8, CN9
29
Mini-PCIe Slot for mSATA (full-size)
J8 (shared with CN8)
29
Mini-PCIe Slot (half-size)
J7
30
Panel Inverter Connector
J2
30
LVDS Panel Connector
J3 (Ch2), J4 (Ch1)
31
DC Power Input Connecor
J6
32
ATX Power Connector
J5
33
Dual USB Connector
J9, J23
34
SATA Power Connector
J14, J15
34
Front Panel Setting Connector
J12
35
DDR3L SO-DIMM Slot
J10, J13
36
Amplifier Connector
J16
36
Audio Connector
J17
37
COM3 & COM4 RS-232 Port
J18 (COM4), J19 (COM3)
38
FAN Connector
CPU_FAN1, SYS_FAN1
38
Digital I/O Connector
J21
39
Factory Use Only
J1, J20, J22
- -
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MI811F Series User’s Manual
2.5.1 eDP Connector (CN1)
1
30
Pin
Assignment
Pin
Assignment
1
N/A
16
Ground
2
BL_PWR
17
N/A 3 BL_PWR
18
VDD_eDP
4
BL_PWR
19
VDD_eDP
5
BL_PWR
20
Ground
6
N/A
21
AUX_N
7
N/A
22
AUX_P
8
BRIGHTNESS
23
Ground
9
BKLT_EN
24
TX0_P
10
Ground
25
TX0_N
11
Ground
26
Ground
12
Ground
27
TX1_P
13
Ground
28
TX1_N
14
HPD
29
Ground
15
Ground
30
N/A
Hardware Configuration
MI811F Series User’s Manual
25
2
2.5.2 COM1 RS-232/422/485 Port & COM2 RS-232 Port (CN2)
COM1:
COM2:
1
6
5
9
1
6
5
9
COM1 RS-232/422/485 port is jumper-less and configurable in BIOS.
Pin
Assignment
Pin
Assignment
1
DCD, Data carrier detect
6
DSR, Data set ready
2
RXD, Receive data
7
RTS, Request to send
3
TXD, Transmit data
8
CTS, Clear to send
4
DTR, Data terminal ready
9
RI, Ring indicator
5
Ground
Pin
Assignment
RS-232
RS-422
RS-485
1
DCD
TX-
Data-
2
RXD
TX+
Data+
3
TXD
RX+
N/A 4 DTR
N/A
N/A 5 Ground
Ground
Ground
6
DSR
RX-
N/A
7
RTS
N/A
N/A
8
CTS
N/A
N/A 9 RI
N/A
N/A
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MI811F Series User’s Manual
COM2 RS-232 port:
Pin
Assignment
Pin
Assignment
1
DCD, Data carrier detect
6
DSR, Data set ready
2
RX, Receive
7
RTS, Request to send
3
TX, Transmit
8
CTS, Clear to send
4
DTR, Data terminal ready
9
RI, Ring indicator
5
Ground
2.5.3 Dual USB 2.0 Port (CN3)
2.5.4 Dual USB 3.0 Port & LAN Port (CN4, CN5)
Hardware Configuration
MI811F Series User’s Manual
27
2
2.5.5 HDMI Port (CN6, CN7)
CN6: shared with J11
(CN6 is the 1st priority.)
CN7:
2.5.6 Audio Jack (CN10)
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MI811F Series User’s Manual
2.5.7 DVI-D Connector (J11)
J11: shared with CN6
(CN6 HDMI Port is the 1st priority.)
1 2
19 20
Pin
Assignment
Pin
Assignment
1
DATA1_P
2
DATA1_N
3
Ground
4
Ground
5
CLK_P
6
CLK_N
7
Ground
8
Ground
9
HPD
10
N/A
11
DATA2_P
12
DATA2_N
13
Ground
14
Ground
15
DATA0_P
16
DATA0_N
17
N/A
18
N/A
19
SDA
20
SCLK
Hardware Configuration
MI811F Series User’s Manual
29
2
2.5.8 SATA III Port (CN8, CN9)
CN8: shared with J8
(CN8 is the 1st priority)
CN9:
2.5.9 Mini-PCIe Slot for mSATA (J8)
J8 is shared with CN8.
(CN8 SATA III Port is the 1st priority)
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MI811F Series User’s Manual
2.5.10 Mini-PCIe Slot (J7)
2.5.11 Panel Inverter Connector (J2)
1
Pin
Assignment
Pin
Assignment
1
+12V
3
BKLT_CTL
2
LVDS_BLON
4
Ground
Hardware Configuration
MI811F Series User’s Manual
31
2
2.5.12 LVDS Connector (J3, J4)
J3: 2nd channel J4: 1st channel
1 2
19 20
J3:
Pin
Assignment
Pin
Assignment
1
LVSAE_P
2
LVSAE_N
3
Ground
4
Ground
5
LVSBE_P
6
LVSBE_N
7
Ground
8
Ground
9
LVSCE_P
10
LVSCE_N
11
Ground
12
Ground
13
LVSCKE_P
14
LVSCKE_N
15
Ground
16
Ground
17
LVSDE_P
18
LVSDE_N
19
VDD1
20
VDD1
32
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J4:
Pin
Assignment
Pin
Assignment
1
LVSA0_P
2
LVSA0_N
3
Ground
4
Ground
5
LVSB0_P
6
LVSB0_N
7
Ground
8
Ground
9
LVSC0_P
10
LVSC0_N
11
Ground
12
Ground
13
LVSCK0_P
14
LVSCK0_N
15
Ground
16
Ground
17
LVSD0_P
18
LVSD0_N
19
VDD1
20
VDD1
2.5.13 DC Power Input Connector (J6)
2
1
4
3
J6 is only available for MI811F-420D & MI811F-335D (DC-In power types).
Pin
Assignment
Pin
Assignment
1
Ground
3
12 ~ 24V
2
Ground
4
12 ~ 24V
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2
2.5.14 ATX Power Connector (J5)
J5 is only available for MI811F-420 & MI811F-335 (ATX power types).
Pin
Assignment
Pin
Assignment
1
3.3V
11
3.3V
2
3.3V
12
-12V
3
Ground
13
Ground
4
+5V
14
PS-ON
5
Ground
15
Ground
6
+5V
16
Ground
7
Ground
17
Ground
8
Power good
18
-5V 9 5VSB
19
+5V
10
+12V
20
+5V
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2.5.15 Dual USB Port (J9, J23)
7
2
8
1
Pin
Assignment
Pin
Assignment
1
+5V 2 Ground
3
USB0-
4
USB1+
5
USB0+
6
USB1-
7
Ground
8
+5V
2.5.16 SATA Power Connector (J14, J15)
J14 J15
1
Pin
Assignment
Pin
Assignment
1
+5V 3 Ground
2
Ground
4
+12V
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2
2.5.17 Front Panel Setting Connector (J12)
8
7 1
2
Pin
Assignment
Pin
Assignment
1
Ground
2
PWR_BTN
3
+3.3V
4
HDD Active
5
Ground
6
Reset
7
+5V 8 PWR_LED
J12 is utilized for system indicators to provide light indication of the computer activities and switches to change the computer status. It provides interfaces for the following functions.
ATX Power ON Switch (Pins 1 and 2)
The 2 pins make an “ATX Power Supply On/Off Switch” for 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 power off the system.
Hard Disk Drive LED Connector (Pins 3 and 4)
This connector connects to the hard drive activity LED on control panel. This LED will flash when the HDD is being accessed.
Reset Switch (Pins 5 and 6)
The reset switch allows you 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.
Power LED: Pins 7 and 8
This connector connects to the system power LED on control panel. This LED will light when the system turns on.
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2.5.18 DDR3L SO-DIMM Slot (J10, J13)
2.5.19 Amplifier Connector (J16)
1
Pin
Assignment
Pin
Assignment
1
SPK-L+
3
SPK-R-
2
SPK-L-
4
SPK-R+
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2
2.5.20 Audio Connector (J17)
12
2
11
1
Pin
Assignment
Pin
Assignment
1
HPOUT_L
2
HPOUT_R
3
HPOUT-JD
4
Ground
5
LINE2_L
6
LINE2_R
7
LINE1-JD
8
Ground
9
MIC_L
10
MIC_R
11
MIC1-JD
12
Ground
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2.5.21 COM3 & COM4 RS-232 Port (J18, J19)
J18 J19
1
9
2
10
Pin
Assignment
Pin
Assignment
1
DCD, Data carrier detect
2
RXD, Receive data
3
TXD, Transmit data
4
DTR, Data terminal ready
5
Ground
6
DSR, Data set ready
7
RTS, Request to send
8
CTS, Clear to send
9
RI, Ring Indicator
10
Not used
2.5.22 Fan Connector (CPU_FAN1, SYS_FAN1)
CPU_FAN1:
1
Pin
Assignment
Pin
Assignment
1
Ground
3
FAN_IN
2
12V 4 FAN_OUT
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2
SYS_FAN1:
1
Pin
Assignment
Pin
Assignment
1
Ground
3
FAN_IN
2
FAN_OUT
2.5.23 Digital I/O Connector (J21)
2
10
1
9
Pin
Assignment
Pin
Assignment
1
Ground
2
VCC5
3
OUT3
4
OUT1
5
OUT2
6
OUT0
7
IN3 8 IN1 9 IN2
10
IN0
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Chapter 3 Drivers Installation
This chapter introduces installation of the following drivers:
Intel® Chipset Software Installation Utility
VGA Driver
HD Audio Driver
Intel® Trusted Execution Engine Drivers
Intel® Serial I/O Drivers
LAN Drivers
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3.1 Introduction
This section describes the installation procedures for software and drivers. The software and drivers are included with the motherboard. If you find anything missing, please contact the distributor where you made the purchase. The contents of this section include the following:
Note: After installing your Windows operating system, you must install the
Intel® Chipset Software Installation Utility first before proceeding with the drivers installation.
3.2 Intel® Chipset Software Installation Utility
The Intel® Chipset drivers should be installed first before the software drivers to install INF files for Plug & Play function for Intel chipset components. Follow the instructions below to complete the installation.
1. Insert the disk enclosed in the package with the board. Click Intel on the left pane and then Intel(R) Apollolake Chipset Drivers on the right pane.
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3
2. Click Intel(R) Chipset Software Installation Utility.
3. When the Welcome screen to the Intel
®
Chipset Device Software
appears, click Next to continue.
4. Click Yes to accept the software license agreement and proceed with the installation process.
5. On the Readme File Information screen, click Install for installation.
6. The driver has been completely installed. You are suggested to restart the computer for changes to take effect.
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3.3 VGA Driver Installation
1. Click Intel on the left pane and then Intel(R) Apollolake Chipset Drivers on the right pane.
2. Click Intel(R) Apollolake Graphics Driver.
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3
3. When the Welcome screen appears, click Next to continue.
4. Click Yes to accept the license agreement and click Next until the installation starts.
5. The driver has been completely installed. You are suggested to restart the computer for changes to take effect.
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3.4 HD Audio Driver Installation
1. Click Intel on the left pane and then Intel(R) Apollolake Chipset Drivers on the right pane.
2. Click Realtek High Definition Audio Driver.
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3
3. On the Welcome screen of the InstallShield Wizard, click Next for installation.
4. Click Next until the installation starts.
5. The driver has been completely installed. You are suggested to restart the computer for changes to take effect.
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3.5 Intel® Trusted Execution Engine Drivers Installation
1. Click Intel on the left pane and then Intel(R) Apollolake Chipset
Drivers on the right pane.
2. Click Intel(R) TXE Drivers.
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3
3. When the Welcome screen appears, click Next.
4. Accept the license agreement and click Next.
5. Click Next for installation.
6. As the driver has been sccessfully installed, you are suggested to restart the computer for changes to take effect.
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3.6 Intel® Serial IO Drivers Installation
1. Click Intel on the left pane and then Intel(R) Apollolake Chipset Drivers on the right pane.
2. Click Intel(R) Serial IO Drivers.
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3
3. When the Welcome screen to the InstallShield Wizard appears, click Next.
4. Accept the license agreement and click Next.
5. After reading the Readme File Information, click Next for installation.
6. As the driver has been sccessfully installed, you are suggested to restart the computer for changes to take effect.
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3.7 LAN Drivers Installation
1. Click LAN Card on the left pane and then Intel LAN Controller Drivers on the right pane.
2. Click Intel(R) I21x Gigabit Network Drivers..
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3
3. When the Welcome screen appears, click Next.
4. Accept the license agreement and click Next.
5. On the Setup Options screen, click the checkbox to select the desired driver(s) for installation. Then click Next to continue.
6. The wizard is ready for installation. Click Install.
7. As the installation is complete, you are suggested to restart the computer for changes to take effect.
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Chapter 4 BIOS Setup
This chapter describes the different settings available in the AMI BIOS that comes with the board. The topics covered in this chapter are as follows:
Main Settings
Advanced Settings
Chipset Settings
Security Settings
Boot Settings
Save & Exit
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4.1 Introduction
The BIOS (Basic Input/Output System) installed in the ROM of your computer system supports Intel® processors. The BIOS provides critical low-level support for standard devices such as disk drives, serial ports and parallel ports. It also provides password protection as well as special support for detailed fine-tuning of the chipset controlling the entire system.
4.2 BIOS Setup
The 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 BIOS is immediately activated. Press 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 need 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, 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 BIOS 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.
Warning: It is strongly recommended that you avoid making any changes to
the chipset defaults.
These defaults have been carefully chosen by both AMI and your
system manufacturer to provide the absolute maximum performance and reliability. Changing the defaults could make the system unstable and crash in some cases.
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4
4.3 Main Settings
BIOS Setting
Description
System Date
Sets the date. Use the <Tab> key to switch between the data elements.
System Time
Set the time. Use the <Tab> key to switch between the data elements.
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4.4 Advanced Settings
This section allows you to configure, improve your system and allows you to set up some system features according to your preference.
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4.4.1 ACPI Computing
BIOS Setting
Description
Enable Hibernation
Enables / Disables the system ability to hibernate (OS/S4 Sleep State). This option may be not effective with some OS.
ACPI Sleep State
Selects an ACPI sleep state (Suspend Disabled or S3) where the system will enter when the Suspend button is pressed.
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4.4.2 LVDS (eDP/DP) Configuration
BIOS Setting
Description
LVDS (eDP/DP) Support
Enables / Disables LVDS (eDP/DP)
Panel Color Depth
Selects a panel color depth as 18 or 24 (VESA or JEIDA) bit.
LVDS Channel Type
Sets the LVDS channel type as single or dual channel.
Panel Type
Selects a resolution that fits your panel. Options: 800 x 600 / 1024 x 768 / 1366 x 768 /
1440 x 900 / 1600 x 900 / 1280 x 1024 / 1920 x 1080
LVDS Backlight Level Control
Selects from Level 1 to Level 8 for the LVDS backlight.
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4.4.3 iSmart Controller
BIOS Setting
Description
Power-On after Power failure
Enables / Disables the system to be turned on automatically after a power failure.
Schedule Slot 1 / 2
Sets up the hour / minute for system powe-on.
Important: If you would like to set up a schedule between adjacent days, configure two schedule slots.
For example, if setting up a schedule from Wednesday 5 p.m. to Thursday 2 a.m., configure two schedule slots. But if setting up a schedule from 3 p.m to 5 p.m. on Wednesday, configure only a schedule slot.
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4.4.4 Fintek Super IO Configuration
BIOS Setting
Description
Standby Power on S5 (ERP)
Enables / Disables to provide the standby power for devices.
Options: All Enable / Enable Ethernet for WOL / All Disable
Serial Ports Configuration
Sets parameters of serial ports. Enables / Disables the serial port and select an
optimal setting for the Super IO device.
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4.4.4.1. Serial Port 1 Configuration
BIOS Setting
Description
Serial Port
Enables / Disables the serial port.
Change Settings
Selects an optimal settings for Super IO device. Options:
Auto
IO = 3F8h; IRQ = 4
IO = 3F8h; IRQ = 3, 4, 5, 6, 7, 9, 10, 11, 12
IO = 2F8h; IRQ = 3, 4, 5, 6, 7, 9, 10, 11, 12
IO = 3E8h; IRQ = 3, 4, 5, 6, 7, 9, 10, 11, 12
IO = 2E8h; IRQ = 3, 4, 5, 6, 7, 9, 10, 11, 12
Device Mode
Changes the serial port mode to:
RS232
RS485 TX Low Active
RS485 with Termination TX Low Active
RS422
RS422 with Termination
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4.4.5 Fintek Super IO Hardware Monitor
BIOS Setting
Description
CPU / System smart fan control
Enables / Disables the smart fan feature. Options: Disabled / 50 °C / 60 °C / 70 °C / 80 °C
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.
CPU Shutdown Temperature
Sets a threshold of temperature to shut down if CPU goes overheated.
Options: Disabled / 70 °C / 75 °C / 80 °C / 85 °C / 90 °C / 95 °C
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4.4.6 CPU Configuration
BIOS Setting
Description
Socket 0 CPU Information
Displays the socket specific CPU information.
CPU Power Management
Allows you to enable / disable Turbo Mode.
Active Processor Cores
Enables / Disables the cores in the processor package.
Monitor Mwait
Enables / Disables Monitor Mwait.
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4.4.7 AMI Graphic Output Protocol Policy
BIOS Setting
Description
Output Select
Outputs interface
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4.4.8 Network Stack Configuration
BIOS Setting
Description
Network Stack
Enables / Disables UEFI Network Stack.
IPv4 PXE Support
Enables / Disables IPv4 PXE Boot Support. If disabled, Ipv4 PXE boot option will not be
created.
IPv4 HTTP Support
Enables / Disables IPv4 HTTP Boot Support. If disabled, Ipv4 HTTP boot option will not be
created.
IPv6 PXE Support
Enables / Disables IPv6 PXE Boot Support. If disabled, Ipv4 PXE boot option will not be
created.
IPv6 HTTP Support
Enables / Disables IPv6 HTTP Boot Support. If disabled, Ipv4 HTTP boot option will not be
created.
PXE boot wait time
Assigns a period of time to press ESC key to abort the PXE boot.
Media detect count
Assigns a number of times to check the presence of media.
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4.4.9 CSM Configuration
BIOS Setting
Description
CSM Support
Enables / Disables CSM support.
GateA20 Active
Upon Request disables GA20 when using BIOS services.
Always cannot disable GA20, but is useful when any RT code is executed above 1 MB.
INT19 Trap Response
Sets how BIOS reacts on INT19 trap by Option ROM.
Immediate executes the trap right away.
Postponed executes the trap during legacy
boot.
Boot option filter
Controls the priority of Legacy and UEFI ROMs.
Storage
Controls the execution of UEFI and Legacy Storage OpROM.
Video
Controls the execution of UEFI and Legacy Video OpROM.
Other PCI devices
Determines OpROM execution policy for devices other than network, storage or video.
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4.4.10 USB Configuration
BIOS Setting
Description
Legacy USB Support
Enabled enables Legacy USB support.
Auto disables legacy support if there is no
USB device connected.
Disabled keeps USB devices available only for EFI applications.
XHCI Hand-off
This is a workaround for OSes without XHCI hand-off support. The XHCI ownership change should be claimed by XHCI driver.
USB Mass Storage Driver Support
Enables / Disables the support for USB mass storage driver.
USB Transfer time-out
The time-out value (1 / 5 10 / 20 secs) for Control, Bulk, and Interrupt transfers.
Device reset time-out
Gives seconds (10 / 20 / 30 / 40 secs) to delay execution of Start Unit command to USB mass storage device.
Device power-up delay
The maximum time the device will take before it properly reports itself to the Host Controller.
Auto uses default value for a Root port it is 100ms. But for a Hub port, the delay is taken from Hub descriptor.
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4.5 Chipset Settings
4.5.1 South Cluster Configuration
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4.5.1.1. HD Audio Configuration
4.5.1.2. PCI Express Configuration
BIOS Setting
Description
PCI Express Root Port 1 ~ 6
Accesses the control of the PCI Express Root Port.
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BIOS Setting
Description
PCI Express Root Port
Enables/ Disables the PCIe root port. Auto: To disable unused root port automatically
for the most optimum power savings.
ASPM
Sets the PCIe active state power management. Options: Disable, L0s, L1, L0SL1, Auto
L1 Substates
Sets PCIe L1 substates. Options: Disabled, L1.1, L1.2, L1.1 & L1.2
PME SCI
Enables / Disables PME SCI.
PCIe Speed
Configures the PCIe speed. Options: Auto, Gen1, Gen2
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4.5.1.3. SATA Drivers
BIOS Setting
Description
Chipset SATA
Enables / Disables the Chipset SATA Controller. The Chipset SATA Controller supports the 2
black internal SATA ports (up to 3Gb/s supported per port).
SATA Mode Selection
Determines how SATA controller(s) operate.
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4.5.1.4. USB Configuration
BIOS Setting
Description
XHCI Pre-Boot Driver
Enables / Disables the support for XHCI Pre-Boot Driver.
XHCI Mode
Enables / Disables XHCI mode. If disabled, XHCI controller would be disabled, and none of the USB devices are detectable or usable when systen is booted up in OS.
Do NOT disable it unless for debug purpose.
USB VBUS
VBUS should be ON in HOST mode. It should be OFF in OTG device mode.
USB HSIC1 Support
Enables / Disables USB HSIC1.
USB SSIC1 Support
Enables / Disables USB SSIC1.
USB Port Disable Override
Selectively enables / disables the corresponding USB port from reporting a device connection to the controller.
XDCI Support
Enables / Disables XDCI.
XHCI Disable Compliance Mode
FALSE makes the XHCI Link Compliance Mode not disabled.
TRUE disables the XHCI Link Compliance Mode.
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4.6 Security Settings
BIOS Setting
Description
Setup Administrator Password
Sets an administrator password for the setup utility.
User Password
Sets a user password.
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4.7 Boot Settings
BIOS Setting
Description
Setup Prompt Timeout
Number of seconds to wait for setup activation key.
65535 (0xFFFF) means indefinite waiting.
Bootup NumLock State
Selects the keyboard NumLock state.
Quiet Boot
Enables / Disables Quiet Boot option.
New Boot Option Policy
Controls the placement of newly detected UEFI boot options.
Options: Default, Place First, Place Last
Boot mode select
Selects a Boot mode, Legacy / UEFI / Dual.
Boot Option Priorities
Sets the system boot order priorities for hard disk, CD/DVD, USB, Network.
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4.8 Save & Exit Settings
BIOS Setting
Description
Save Changes and Exit
Exits system setup after saving the changes.
Discard Changes and Exit
Exits system setup without saving any changes.
Save Changes and Reset
Resets the system after saving the changes.
Discard Changes and Reset
Resets system setup without saving any changes.
Save Changes
Saves changes done so far to any of the setup options.
Discard Changes
Discards changes done so far to any of the setup options.
Restore Defaults
Restores / Loads defaults values for all the setup options.
Save as User Defaults
Saves the changes done so far as User Defaults.
Restore User Defaults
Restores the user defaults to all the setup options.
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Appendix
This section provides the mapping addresses of peripheral devices and the sample code of watchdog timer configuration.
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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
0x00000A00-0x00000A0F
Motherboard resources
0x00000A10-0x00000A1F
Motherboard resources
0x00000A20-0x00000A2F
Motherboard resources
0x0000002E-0x0000002F
Motherboard resources
0x0000004E-0x0000004F
Motherboard resources
0x00000061-0x00000061
Motherboard resources
0x00000063-0x00000063
Motherboard resources
0x00000065-0x00000065
Motherboard resources
0x00000067-0x00000067
Motherboard resources
0x00000070-0x00000070
Motherboard resources
0x00000070-0x00000070
System CMOS/real time clock
0x00000080-0x0000008F
Motherboard resources
0x00000092-0x00000092
Motherboard resources
0x000000B2-0x000000B3
Motherboard resources
0x00000680-0x0000069F
Motherboard resources
0x00000400-0x0000047F
Motherboard resources
0x00000500-0x000005FE
Motherboard resources
0x00000600-0x0000061F
Motherboard resources
0x0000164E-0x0000164F
Motherboard resources
0x0000F040-0x0000F05F
Intel(R) Celeron(R)/Pentium(R) Processor SMBUS - 5AD4
0x0000D000-0x0000DFFF
Intel(R) Celeron(R)/Pentium(R) Processor PCI Express Root Port ­5AD9
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Address
Device Description
0x000003F8-0x000003FF
Communications Port (COM1)
0x000002F8-0x000002FF
Communications Port (COM2)
0x000003E8-0x000003EF
Communications Port (COM3)
0x000002E8-0x000002EF
Communications Port (COM4)
0x0000E000-0x0000EFFF
Intel(R) Celeron(R)/Pentium(R) Processor PCI Express Root Port ­5AD8
0x00000000-0x0000006F
PCI Express Root Complex
0x00000078-0x00000CF7
PCI Express Root Complex
0x00000D00-0x0000FFFF
PCI Express Root Complex
0x00000020-0x00000021
Programmable interrupt controller
0x00000024-0x00000025
Programmable interrupt controller
0x00000028-0x00000029
Programmable interrupt controller
0x0000002C-0x0000002D
Programmable interrupt controller
0x00000030-0x00000031
Programmable interrupt controller
0x00000034-0x00000035
Programmable interrupt controller
0x00000038-0x00000039
Programmable interrupt controller
0x0000003C-0x0000003D
Programmable interrupt controller
0x000000A0-0x000000A1
Programmable interrupt controller
0x000000A4-0x000000A5
Programmable interrupt controller
0x000000A8-0x000000A9
Programmable interrupt controller
0x000000AC-0x000000AD
Programmable interrupt controller
0x000000B0-0x000000B1
Programmable interrupt controller
0x000000B4-0x000000B5
Programmable interrupt controller
0x000000B8-0x000000B9
Programmable interrupt controller
0x000000BC-0x000000BD
Programmable interrupt controller
0x000004D0-0x000004D1
Programmable interrupt controller
0x0000F000-0x0000F03F
Intel(R) HD Graphics
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Address
Device Description
0x0000F090-0x0000F097
Standard SATA AHCI Controller
0x0000F080-0x0000F083
Standard SATA AHCI Controller
0x0000F060-0x0000F07F
Standard SATA AHCI Controller
0x00000040-0x00000043
System timer
0x00000050-0x00000053
System timer
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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
Function
IRQ 0
System timer
IRQ 3
Communications Port (COM2)
IRQ 4
Communications Port (COM1)
IRQ 4
PCI Data Acquisition and Signal Processing Controller
IRQ 5
Communications Port (COM3)
IRQ 5
PCI Data Acquisition and Signal Processing Controller
IRQ 6
PCI Data Acquisition and Signal Processing Controller
IRQ 7
PCI Data Acquisition and Signal Processing Controller
IRQ 8
High precision event timer
IRQ 10
Communications Port (COM4)
IRQ 14
Intel(R) Serial IO GPIO Host Controller ­INT3452
IRQ 25
High Definition Audio Controller
IRQ 35
PCI Data Acquisition and Signal Processing Controller
IRQ 36
PCI Data Acquisition and Signal Processing Controller
IRQ 37
PCI Data Acquisition and Signal Processing Controller
IRQ 39
SDA Standard Compliant SD Host Controller
IRQ 54 ~ IRQ 204
Microsoft ACPI-Compliant System
IRQ 256 ~ IRQ 511
Microsoft ACPI-Compliant System
IRQ 4294967279
Intel(R) USB 3.0 eXtensible Host Controller -
1.0 (Microsoft)
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Level
Function
IRQ 4294967280 ~ IRQ 4294967285
Intel(R) I211 Gigabit Network Connection #2
IRQ 4294967286 ~ IRQ 4294967291
Intel(R) I211 Gigabit Network Connection
IRQ 4294967292
Intel(R) Trusted Execution Engine Interface
IRQ 4294967293
Intel(R) HD Graphics
IRQ 4294967294
Standard SATA AHCI Controller
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C. Watchdog Timer Configuration
The Watchdog Timer (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, you will need to 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 <dos.h> #include <conio.h> #include <stdio.h> #include <stdlib.h> #include "F81866.H" //--------------------------------------------------------------------------­int main (int argc, char *argv[]); void EnableWDT(int); void DisableWDT(void); //--------------------------------------------------------------------------­int main (int argc, char *argv[]) {
unsigned char bBuf; unsigned char bTime; char **endptr;
char SIO;
printf("Fintek 81866 watch dog program\n"); SIO = Init_F81866(); if (SIO == 0) {
printf("Can not detect Fintek 81866, program abort.\n"); return(1);
}//if (SIO == 0)
if (argc != 2) {
printf(" Parameter incorrect!!\n"); return (1);
}
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bTime = strtol (argv[1], endptr, 10); printf("System will reset after %d seconds\n", bTime);
if (bTime) { EnableWDT(bTime); } else { DisableWDT(); }
return 0; } //--------------------------------------------------------------------------­void EnableWDT(int interval) {
unsigned char bBuf;
bBuf = Get_F81866_Reg(0x2B);
bBuf &= (~0x20);
Set_F81866_Reg(0x2B, bBuf); //Enable WDTO
Set_F81866_LD(0x07); //switch to logic device 7
Set_F81866_Reg(0x30, 0x01); //enable timer
bBuf = Get_F81866_Reg(0xF5);
bBuf &= (~0x0F);
bBuf |= 0x52;
Set_F81866_Reg(0xF5, bBuf); //count mode is second
Set_F81866_Reg(0xF6, interval); //set timer
bBuf = Get_F81866_Reg(0xFA);
bBuf |= 0x01;
Set_F81866_Reg(0xFA, bBuf); //enable WDTO output
bBuf = Get_F81866_Reg(0xF5);
bBuf |= 0x20;
Set_F81866_Reg(0xF5, bBuf); //start counting } //--------------------------------------------------------------------------­void DisableWDT(void) {
unsigned char bBuf;
Set_F81866_LD(0x07); //switch to logic device 7
bBuf = Get_F81866_Reg(0xFA);
bBuf &= ~0x01;
Set_F81866_Reg(0xFA, bBuf); //disable WDTO output
bBuf = Get_F81866_Reg(0xF5);
bBuf &= ~0x20;
bBuf |= 0x40;
Set_F81866_Reg(0xF5, bBuf); //disable WDT } //---------------------------------------------------------------------------
//---------------------------------------------------------------------------
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// // 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 "F81866.H" #include <dos.h> //--------------------------------------------------------------------------­unsigned int F81866_BASE; void Unlock_F81866 (void); void Lock_F81866 (void); //--------------------------------------------------------------------------­unsigned int Init_F81866(void) {
unsigned int result; unsigned char ucDid;
F81866_BASE = 0x4E; result = F81866_BASE;
ucDid = Get_F81866_Reg(0x20); if (ucDid == 0x07) //Fintek 81866 { goto Init_Finish; }
F81866_BASE = 0x2E; result = F81866_BASE;
ucDid = Get_F81866_Reg(0x20); if (ucDid == 0x07) //Fintek 81866 { goto Init_Finish; }
F81866_BASE = 0x00; result = F81866_BASE;
Init_Finish:
return (result); } //--------------------------------------------------------------------------­void Unlock_F81866 (void) {
outportb(F81866_INDEX_PORT, F81866_UNLOCK);
outportb(F81866_INDEX_PORT, F81866_UNLOCK); } //--------------------------------------------------------------------------­void Lock_F81866 (void) {
outportb(F81866_INDEX_PORT, F81866_LOCK); } //--------------------------------------------------------------------------­void Set_F81866_LD( unsigned char LD) {
Unlock_F81866();
outportb(F81866_INDEX_PORT, F81866_REG_LD);
outportb(F81866_DATA_PORT, LD);
Lock_F81866();
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} //--------------------------------------------------------------------------­void Set_F81866_Reg( unsigned char REG, unsigned char DATA) {
Unlock_F81866(); outportb(F81866_INDEX_PORT, REG); outportb(F81866_DATA_PORT, DATA);
Lock_F81866(); } //--------------------------------------------------------------------------­unsigned char Get_F81866_Reg(unsigned char REG) {
unsigned char Result;
Unlock_F81866();
outportb(F81866_INDEX_PORT, REG);
Result = inportb(F81866_DATA_PORT);
Lock_F81866();
return Result; } //---------------------------------------------------------------------------
//--------------------------------------------------------------------------­// // 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 F81866_H #define F81866_H 1 //--------------------------------------------------------------------------­#define F81866_INDEX_PORT (F81866_BASE) #define F81866_DATA_PORT (F81866_BASE+1) //--------------------------------------------------------------------------­#define F81866_REG_LD 0x07 //--------------------------------------------------------------------------­#define F81866_UNLOCK 0x87 #define F81866_LOCK 0xAA //--------------------------------------------------------------------------­unsigned int Init_F81866(void); void Set_F81866_LD( unsigned char); void Set_F81866_Reg( unsigned char, unsigned char); unsigned char Get_F81866_Reg( unsigned char); //--------------------------------------------------------------------------­#endif // F81866_H
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