Gooxi SY103-S06R-G2 Mounting instructions

SY103-S06R-G2
Gooxi Micro Blade Server Barebone
User operation manual
Rev 0.1

Shenzhen Gooxi Technology Co., Ltd.
Foreword
This manual is a micro-server barebones Gooxi SY103-S06R-G2 user's
operation manual. It mainly introduces and describes the characteristic
parameters, system configuration and installation method of this product. This
mini-server of Gooxi supports up to 3 nodes. The system is based on 1U3.
Chassis and G2SCN-4B motherboard integration.
This manual is for reference by professional system integrators and
personal computer technicians. This product should only be installed and
maintained by experienced technicians.
Manual framework
Chapter 1 Product Introduction
This chapter provides the specifications of the main components of the
system and describes the main features of the Gooxi G2SCN-4B motherboard and
the Goixi 1U3 chassis.
Chapter II System Interface Introduction
This chapter provides detailed description of the system interface, including
the main board's IO interface and each connector, terminal and jumper functions
and information.
Chapter 3 Detailed Node Installation
This chapter provides the processor, memory, hard disk installation and
description on the G2SCN-4B motherboard. Refer to this section when installing or

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removing the precautions for the processor, memory, hard disk, and heat sink.
Chapter 4 Server System Installation
This chapter describes the necessary steps and precautions for using the
SY103-S06R-G2 Micro Server barebones system.
Contents
Chapter 1 Product Introduction.......................................................................................................... 5
1.1 System Features ................................................................................................................. 5
1.2 Board Features.................................................................................................................... 7
1.3 server chassis System Features..................................................................................... 8
1.4 System View ........................................................................................................................ 9
Chapter II System Interface Introduction ......................................................................................11
2.1 Overview.............................................................................................................................11
2.2 Motherboard IO Interface ............................................................................................15
2.3 Connection cable.............................................................................................................25
2.4 Jumper settings................................................................................................................26
2.5 Power Module ..................................................................................................................27
2.6 LED DEFINITIONS IN THE MOTHERBOARD ..........................................................................27
Chapter 3 Detailed Node Installation.............................................................................................31

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3.1 CPU installation................................................................................................................ 32
3.2 CPU Heatsink Installation .............................................................................................34
3.3 Memory Installation .......................................................................................................35
3.4 Hard Disk Installation.....................................................................................................37
Chapter 4 Server System Installation..............................................................................................40
4.1 Overview.............................................................................................................................40
4.2 System Steps .....................................................................................................................41

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Chapter 1 Product Introduction
1.1 System Features
1.1.1 System Parameters
Model
SY103-S06R-G2
processor
Intel Xeon processor E3-1200 V5/V6 series
Intel 6th Generation Core i3 series
Pentium series,Celeron series
Socket LGA1151 ,up to 80W CPU
Key
applications
Cloud computing server system
High performance computing server system
Database server system
Internet access server system
CDN acceleration
flow media services
Outstanding
features
Supports up to 3 hot-swappable node servers
The new giant 500W gold high efficiency power supply supports
1+1 redundancy
Each server node supports two 3.5-inch or four 2.5-inch SATA 3.0
6Gb/s hard disks
High-density, enterprise-class high-performance, cost-effective,
space-saving
IPMI 2.0 dedicated Gigabit management LAN per node
Six 4056 temperature-controlled fans make up 3 sets of
hot-swappable fan modules
Motherboard
G2SCN-4B
chipset
Intel PCH Lynxpoint C23X Series
Memory
(system)
The single-node theory supports 64GB ECC DDR4 UDIMMs, and
the system theory supports 192GB
Mezzanine
One Mezzanine 10Gb Connector for PCIE X8
PCIE
expansion
card
One Supports 1 Standard Transverse PCI-EX16 Expansion Card
M.2
Supports one PCIEX2 M.2 SSD and SATA M.2 SSD
SATA
Single-node C232 for 4*SATA3.0, C236 for 6*SATA3.0,
3.5 inch support RAID 0,1; 2.5 inch support RAID 0,1,5,10

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The system supports up to six 3.5-inch or 12 2.5-inch SATA HDDs
LAN
Single-node four Intel I210-AT 1GbE LAN Controller, the system
supports up to 12
HDMI
Aspeed AST2400 Graphics (VGA to HDMI)
Management
interface
IPMI 2.0 + KVM with dedicated LAN, Watch Dog,
power
supply
500W Gold High Efficiency Power Supply, Support 1+1
Redundant and Hot Swap Replacement
fan
Six 4056 fans (12V/Max 1.02A), composed of three
hot-swappable fan modules
Dimensions
1U Rack Mount, 800mm*448mm*43.5mm
1.1.2 System Overview
The Gooxi SY103-S06R-G2 Microblade Server Barebone is a high-density server
product (Micro-Cloud Server). This design supports hot plugging of three server
nodes in a 1U chassis height. Each node system can be used independently. You
can configure the number of server nodes as needed.
The main features of the product are summarized as follows:
Each server node supports two 3.5-inch or four 2.5-inch SATA hard
disks. The entire system supports a maximum of six 3.5-inch or twelve
2.5-inch hard disks.
The server system uses Intel Greenlow platform, with LGA1151 CPU,
supports Intel Xeon Processor E3-1200 V5/V6 series, and supports
80W Skylake series processors.
The system uses a 500W gold high-efficiency power supply that
supports 1+1 redundancy and hot swapping.
The system uses six 4056 fans to form three hot-swappable fan
modules.
Chipset uses the Intel PCH C23X chipset.

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Each node has 4 DIMM Dual Channel memories and supports 64GB
ECC UDIMMs.
Each node has four RJ45 Gigabit Ethernet ports for the Intel I210-AT.
The entire system is fully configured with 12 RJ45 Gigabit Ethernet
ports.
Each node has a multiplexed LAN that can be used as an IPMI
management network port for remote management. The BMC chip
uses the Aspeed AST2400.
Each node has an HDMI interface that is used to transfer the VGA
signal output of the BMC.
Each node has two USB 3.0 interfaces for users to use.
1.2 Board Features
1.2.1 Board Parameters:
The Gooxi SY103-S06R-G2 is fully equipped with a 3*G2SCN-4B
single-processor server board. It is based on the Intel X86 architecture, uses the
Intel Greenlow platform, is based on the Intel PCH C23X chipset, and is paired with
Inte's latest-generation Skylake CPU and supports dual-channel DDR4-.
1600/1866/2133 ECC UDIMM.
The following are the main features of G2SCN-4B:
Motherboard
G2SCN-4B
processor
Intel Xeon processor E3-1200 V5/V6 series
Intel 6th Generation Core i3 series
Pentium series;Celeron series
Socket LGA1151 up to 80W CPU
chipset
Intel PCH Lynxpoint C23X
Memory
Single node supports up to 64GB ECC DDR4-1600/1866/2133

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(system)
UDIMMs
SATA
Single-node C232 for 4*SATA3.0, C236 for 6*SATA3.0
3.5 inch support RAID 0,1; 2.5 inch support RAID 0,1,5,10
LAN
Single-node four Intel I210-AT 1GbE LAN Controller
VGA
Aspeed AST2400 Graphics
Input/output
interface
1*HDMI port, 4* Gigabit Ethernet port, one 1* mixed IPMI
network port, 1* motherboard switch
Management
interface
IPMI 2.0 + KVM with dedicated LAN;Watch Dog
1.2.2 motherboard hardware chip features diagram:
1.3 server chassis System Features
1.3.1 Chassis Parameters
Basic parameters
Chassis style
cabinet type
Chassis structure
1U
Adapt to the
G2SCN-4B

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motherboard
Hot-swappable
fans
stand by
cooling system
6 4056 temperature controlled fans
Supports sliding
rail
Optional
Cabinet fixing
Loose screws
product material
High quality SGCC (galvanized steel sheet)
Chassis size
800mm*448mm*43.5mm (length*width*height)
Package Size
1122*730*213MM (length*width*height)
Safety certification
CE、ROHS
1.3.2 System Power
The chassis is equipped with a 500W gold high-efficiency power supply,
supporting 1+1 redundancy and hot swapping;
Input AC voltage: 100V~245V;
Output DC voltage: +12v, +12v_SB;
Frequency: 47Hz~63Hz.
1.3.3 Heat Dissipation System
Six 4056 fans (12V/Max 1.02A) support hot-swappable replacement.
Fan parameters:
Voltage: 10.8~12.6V, current: 0.85A, maximum 1.02A.
Power: 10.2W, maximum 12.24W.
Maximum speed: 13600RPM front, 12400RPM rear.
Air flow: 0.8 m3/min (28.26 CFM), minimum 0.72 m3/min (25.43 CFM).
Pressure: MIN 340Pa, MAX 420Pa.
1.4 System View
1.4.1 Front View

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1.4.2 Rear view
1.4.3 Side view
/Precautions:
1. The above is a system view with three nodes and three nodes in total.
Users can, of course, choose the number of nodes they need based on actual
needs.

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2. When the system is configured with one or two nodes, the system fan must
have a minimum of two or four 4056 fans. If the number of nodes increases to three,
you need to add six system fans.
Chapter II System Interface
Introduction
2.1 Overview
The main board is the main component of the system. The main interface of the
system is on the main board. First of all, it is necessary to understand the interface
layout of the main board.
2.1.1 G2SCN-4B MOTHERBOARD REAL PICTURE

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2.1.2 G2SCN-4B MOTHERBOARD INTERFACE AND DEFINITION:
1MOTHERBOARD INTERFACE LOCATION DIAGRAM:

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2. Motherboard interface definition:

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Connector
name
(The upper
icon shows)
Connector function description
Board
position
FAN1
In-board fan connector, used only for CPU cooling during
debugging
FAN1
HDD Power
Black 8pin power connector for powering the hard disk
J2
PWR INPUT
White 8pin power connector, used to connect the power supply
from the adapter board to the motherboard
J1
M.2 SSD
75Pin M.2 SSD connector supporting PCIEX2 and SATA
specification M.2 SSD
J16
SATADOM
Power
3Pin External SATADOM Power Connector
J19
SATA1
PCH SATA3.0 Port2 7Pin Connector
SATA1
SATA2
PCH SATA3.0 Port3 7Pin Connector
SATA2
SATA3
PCH SATA3.0 Port4 7Pin Connector
SATA3
SATA4
PCH SATA3.0 Port5 7Pin Connector
SATA4
SATA5
PCH SATA3.0 Port6 7Pin Connector (C236 only)
SATA5
SATA6
PCH SATA3.0 Port7 7Pin Connector (C236 only)
SATA6
TPM/80Port
TPM/80Port pin can be used to connect TPM module or 80port
Debug running code card
J25
BMC UART
BMC debugging serial port
J22
SYS UART
BIOS (system) debugging serial port
J23
LAN1/NCSI
I210 1000M Data LAN port 1
Simultaneously use BCSI IPMI LAN port (100M) through NCSI
J17
LAN2
I210 1000M Data LAN port 2
J17
LAN3
I210 1000M Data LAN port 3 (This port is not available when
G2SCN-2B supports 10G card)
J18

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LAN4
I210 1000M Data LAN port 4 (This port is not available when
G2SCN-2B supports 10G LAN port)
J18
USB3.0
USB3.0 stacked double connector
J24
BATTERY
Lithium battery holder
J12
HDMI(VGA)
HDMI connector, but the actual signal is VGA, need to customize
HDMI to VGA Cable
J21
Mezzanine
Mezzanine connector, pin board connector to PCIEX8 signal, used
to plug 82599 million mega cards
The LAN3 LAN4 cannot be attached when the card is inserted, or
the mechanism interferes
J11
PCIEX16
PCIEX16 connector, actually with PCIEX8 signal, for PCIE riser card
J10
ME Update
For ME upgrade pin, insert jump cap effective
J15
Clear CMOS
Clear the CMOS pin, the default is not to take the jump cap, plug
in the jump cap is valid
J14
ME Recovery
Force the ME to restore to the default state. By default, skip caps
are not enabled.
J13
CPLD JTAG
CPLD JTAG connector for burning CPLD program
J3
DIMM A0
DIMM Channel A DDR4 SLOT0
J6
DIMM A1
DIMM Channel A DDR4 SLOT1
J7
DIMM B0
DIMM Channel B DDR4 SLOT0
J8
DIMM B1
DIMM Channel B DDR4 SLOT1
J9
Signal Pin Pin
2*10 20pin pin pin, used to transmit signal with MIB
J26
2.2 Motherboard IO Interface
2.2.1 NODE BUTTON
Node switch button In the front of the chassis, press the button to start the
node system. The position indicates the blue arrow below

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The node button is the switch button and provides two kinds of system
status indicators to realize the power on and off functions of the node. When the
system is in the power on state, press this button to open the host; if the system is
in the power on state, it is light. Touch this button, you can turn off the NODE
system; if the host is in the boot no system state, long press this button to force
shutdown.
/ Note: After the system is plugged into an AC power source, wait for the
green indicator light to flash, and then press this button to turn on the system.
LED color status
LED
description
Green light
1Hz blinks
Power AC power, the node is not turned on (the system is
plugged into AC power, the green light flashes after 30 seconds)
Green light
The node is operating normally
Orange light
Failure of the system, such as power supply, fan, motherboard,
etc. Details can be viewed on the IPMI management interface.
not bright
System power AC terminal is not connected
2.2.2 NODE ID INDICATOR
The node ID indicator is designed to allow the user to more intuitively identify
which node the current operation is on. The specific location of the board on the
main board is as follows. On the back of the motherboard, the Bottom layer is
marked with the D14 position:

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2.2.3 HDD LED INTRODUCTION
The HDD LED is located next to the switch key on the mainboard. The blue
indicator light is used to reflect the active status of the hard disk. The specific
location is as follows. The D1 position is the HDD LED. When the hard disk has data
read and write, the indicator light is flashing; When no data is being read or written,
this indicator is off.
2.2.4 IPMI LAN PORT
This network port is shared by IPMI and LAN1. Using LAN1's NCSI function,
LAN1 can be used as a 100M BMC IPMI LAN in addition to its own 1000M data
network port. It can be used for IPMI remote management and can be accessed
using CAT5 and above cables. The switch can also be directly connected to the
customer's host, supporting Gigabit, 100M, and adaptive adjustment, but it can not
be used as a service data network port. The LED indicators of the network port are
as follows:

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IPMI LAN Port LED
LED
description
Left LED
Link status indicator:
1. Gigabit Link, green long bright
2 hundred mega Link, orange long bright
3. Ten Mega Link, LED is not bright
Right LED
Yellow light flashes when there is data activity
This indicator is off when there is no data activity
Location map:
2.2.5 LAN PORT
The mainboard provides four Gigabit Ethernet ports (J17/J18 locations). The
main chip adopts the Intel I210-AT, self-adaptive 1000M, 100M, and 10M. The
mainboard has four Gigabit service network ports for receiving/sending service
data. The CAT5 is used. And above the cable access switch, you can also directly
connect to the customer's host. The LED indicators of the network port are as
follows:
Business Data LAN Port Led
LED
description
Left Led
Link status indicator:

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1. Gigabit Link, long green light;
2. One hundred trillion links, orange long
bright;
3. Ten mega Link, LED is off;
Right Led
The yellow light flashes when there is
data activity;
When no data activity, the indicator does
not light;
/ Note: The two network port indicators are the same.
Network port location diagram:
2.2.6 USB INTERFACE
Two external USB 3.0 ports (J24 locations) are used to access USB 3.0 Type A
devices, such as USB keyboards, USB drives, etc. The following is the USB PIN angle
definition:
USB3.0/2.0 Connector
PIN sequence
description
PIN1,5
5V
PIN2,6
D-
PIN3,7
D+
PIN4,8
Ground
Location map:
2.2.7 HDMI DISPLAY INTERFACE
The on-board HDMI connector is actually a VGA signal and requires a
switching cable. In particular, Pin is defined as follows:

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The motherboard graphics chip uses AST2400, AST2400 built-in PCIE VGA
Controller, a 15PIN VGA Connector is used to access the HDMI display, output host
information, the location is as follows:
2.2.8 SATA INTERFACE
The motherboard design 6 SATA Connector, all from the Intel PCH, according to
the different Chipset, there are C232 and C236, if the motherboard with C232
Chipset, only SATA1 ~ SATA4 4 SATA Connector, SATA5 and 6 can not be used; if
with C236 Chipset, There are 6 SATA Connectors for SATA1~SATA6; the location
diagrams are as follows:
SATA Connector Pin Definition
PIN sequence
description
PIN1
Ground
PIN2
SATA HOST TX+
PIN3
SATA HOST TX-
PIN4
Ground
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