User Guide. User Information for barebone actinas BB212-3 used within the storage systems actinas WIN 212 / actinas LX 212 / actinas SV 212

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1 User Guide User Information for barebone actinas BB212-3 used within the storage systems actinas WIN 212 / actinas LX 212 / actinas SV 212 Contact Information Manufacturer: actidata Storage Systems GmbH Wulfshofstr. 16, D Dortmund, Deutschland (Germany) T: +49 (0) 2 31/ (Switch Board) T: +49 (0) 2 31/ (Service Hotline) E: service@actidata.com I: UserG_actiNAS_WIN_LX_SV_Ver_01

2 Introduction This manual is the operation manual for users about the storage server barebone system actinas BB It mainly introduces and describes the characteristic parameters, system configuration and installation mode of this product. This type of storage server of actidata supports one controller module and this system is integrated based on 2U12bay cabinet and G1DCW motherboard. This manual is used for the reference and research for professional system integrators and personal computer technicians. This product shall be installed and serviced only by experienced technicians. Manual Structure: Chapter 1: Product Introduction This section provides the specifications of major components of the system, and describes the main features of G1DCW motherboard and 2U 12 bay chassis. Chapter 2: System Interface Introduction This section describes the details of system interfaces, including the information about I/O interface, various connectors, terminals and jumper functions of motherboard. Chapter 3: Detailed Controller Module Installations This chapter provides the information about the installation and instructions of processor, memory, PIKE card and expansion card of G1DCW motherboard; please refer to this chapter for matters needing attention in installing or removing the accessories. Chapter 4: Chassis Installation This chapter provides the installation and description of the backplane, SPIB board and fan wall on the server; please refer to this chapter for matters needing attention in the installation and removal of backplane, SPIB board and fan wall. Chapter 5: System Installation This chapter describes the necessary steps and matters needing attention for using the actinas BB212-3 server barebone system. Page 2 of 70

3 Content Chapter 1 Product Introduction System features Board features Server chassis system features System view Chapter 2 System Interface Introduction Overview Motherboard IO interface Jumper setting Chapter 3 Detailed Controller Module Installation Front view of module CPU installation CPU heat sink installation Memory installation PIKE card and expansion card installation Fan installation Controller module installation System hard disk installation Chapter 5 System Cabinet Installation Overview System Cabinet Steps Page 3 of 70

4 1.1 System features System parameters Chapter 1 Product Introduction Model Processor Critical applications actinas BB212-3 barebone Motherboard-Features Dual CPU-MB for Intel Broadwell EP E V4 system (Socket R3 LGA 2011) Storage server system Video editing server system Big data analysis server system High performance database system Virtualized Server System Internet application server system Outstanding features 550W 1+1 redundant platinum label efficiency power supply Support 12*3.5 or 2.5 SAS2.0/SATA3.0 6Gb/s HDD Onboard M.2 interface, and support X4 PCI-E 3.0 SSD High performance, low cost, no cable, easy maintenance, low power consumption Use IPMI2.0 dedicated Gigabit management LAN Motherboard Chipset Memory (system) Expansion cards SY201D12REH-BF Intel PCH WellsBurg C612 chipset Memory (system), 4 memory channels per CPU with 2 DDR4RDIMM per channel; Support 1024GBRDIMM, 2048GBLRDIMM, and rate of 2133,1866,1600Mhz, maximum 1DPC rate of Broadwell is up to 2400MHZ. Support up to 4*PCI-e slot x8; Page 4 of 70

5 SATA 12 SATA 3.0 6Gb (all of them connect to SPIB via LSI2008) RAID 0, 1, 5, 10 (MS Windows ) RAID 0, 1, 10 (Linux) M.2 SSD PCI-e Gen3 X4 M.2 SSD (Support M.2 SSD length 42mm,80mm and 110mm) LAN IPMI LAN VGA USB Management interface Power Supply Fans LED indicator Dimensions Intel I350-AM2 two 1GbE network ports and JL82599ES two SFP + optical ports 1Gb IPMI management network port; 15 PIN VGA Connector (From AST2400) Rear USB: 2 USB 3.0 ports and 1 built-in USB3.0 port Front USB: 2 USB 2.0 ports AST2400 BMC Controller for IPMI and Graphic Support 550W 1+1 redundant platinum label efficiency, hot-swappable, 80PLUS Platinum 4 easy-plug 8038 fans (12V/Max3.3A) Rear LED: UID LED, two-color system status indicator; Internal plate: PWROKLED, BMC Heartbeat LED, etc 2U Rack Mount,675mm*448mm*88mm System overview actinas BB212-3 barebone system is a kind of 2U dual server product with high-density, low-power and controller architecture, appropriate for big data analysis, cloud computing, virtualized computing, and Internet applications, etc. System hardware consists of three modules, namely the hard disk module, controller module and power module; these three modules adopt the hot-plug design, greatly reducing the cost of equipment maintenance. The main features of product are summarized as follows:: Page 5 of 70

6 Controller system uses the INTEL Grantley-EP platform with the latest generation of INTEL E V3 HASWELL and E V4BROADWELL CPU, and the maximum capacity of 145W The system memory is 16 slices of DDR4 RDIMM, MAX 2048GB LRDIMM. Chipset adopts Intel PCH C612 chip. Controller module supports one M.2SSD, and supports one half-height and one full-height PCI-E 3.0 expansion card. System uses 550W1+1 redundant platinum label efficiency power supply and supports hot-plug replacement. System uses 3 pluggable 8038 fans. System supports four Intel I350-AM4 RJ45 Gigabit ports and two Intel SFP+ 10 Gigabit optical ports. System has an independent IPMI management network port with remote management, and BMC chip uses Aspeed AST2400. System has a VGA interface from BMC. Controller has two USB3.0 interfaces for users. Page 6 of 70

7 System structure diagram is as follows: Page 7 of 70

8 1.2 Board features Board parameters: actinas BB212-3 with G1DCW dual server motherboard is based on Intel X86 architecture, which uses Intel Grantley-EP platform based on Intel PCH C612 chipset, accompanied with the latest generation of Haswell E5v3 CPU, which is compatible with Broadwell E5v4 CPU, and supports 4-channel DDR4-1600/1866/2133/2400 ECC RDIMM/LRDIMM. The main features of G1DCW are as follows: Motherboard Processor Chipset Memory (system) G1DCW CPU of Intel Haswell E V3 system, compatible with Intel Broadwell EP E V4 system (Socket R3 LGA 2011) Intel PCH Wellsburg: C612 4 memory channels per CPU with 2 DDR4 RDIMM per channel; Support 1024GBRDIMM, 2048GBLRDIMM, and rate of 2133,1866,1600Mhz, maximum 1DPC rate of Broadwell is up to 2400MHZ. B: Intel I350-AM2 two 1GbE network ports; 4B: Intel I350-AM4 four 1GbE network ports; LAN BF: Intel I350-AM2 two 1GbE network ports, and JL82599ES two SFP + optical ports; 4BF: Intel I350-AM4 four 1GbE network ports, and JL82599ES two 10 Gigabit SFP + optical ports. VGA Input/output interface Management interface Aspeed AST2400 Graphics 1*VGA port, 4* Gigabit Ethernet ports, 2*10 gigabit ports, 1* unique IPMI port, 1* main switch, 2*USB3.0 IPMI KVM with dedicated LAN Page 8 of 70

9 Motherboard Processor SY201D12REH-BF CPU of Intel Broadwell EP E V4 system (Socket R3 LGA 2011) Diagram of motherboard hardware chip function: Page 9 of 70

10 1.3 Server chassis system features Chassis parameters Basic parameters Chassis style Chassis structure Adaption motherboard Support hot-plug fans cooling system Slide way Fixed mode of cabinet Product material Cabinet size Package size Safety certification Rack-mounted 2U actidata G1DCW Pluggable Four 8038 temperature control fans Optional Fixed screw High-quality SGCC (galvanized steel sheet) 675mm*448mm*88mm (D*W*H) 902*591*228mm (L*W*H) CCC, CE, FCC and ROHS Page 10 of 70

11 1.3.2 System power supply Chassis: 550W1+1 redundant platinum label efficiency power supply, and support hot-plug replacement; Input AC voltage: v~/ 9.9A; V~/ 4.79A; Output DC voltage:+12v,+12v_sb; Frequency:47Hz~63Hz Cooling system Four 8038 fans (12V /Max 3.3A) Fan parameters: o Voltage: V, current: 2.75A, max. 3.3A. o Power: max. 39.6W. o Maximum speed: /- 10% RPM. o Air flow: m³ / min (132.6 CFM). Page 11 of 70

12 1.4 System view Front view Rear view Page 12 of 70

13 1.4.3 Front panel buttons and indicator lights: The buttons and LED indicators on front panel are as follows, and the functions and status of each button or light are described, as follows:: LED state description No Image LED appearance Description 2 Green light always on Device start-up state 3 Blue light always on System ID indicator 4 Green light flashing Normal system operation Yellow light always on Green light always on Green light always on Green light always on Alarm indication, including system alarms, fan alarms, power alarm, etc., viewed via IPMI management software Network port 1 is connected normally Network port 3 is connected normally Network port 2 is connected normally Page 13 of 70

14 Green light always on Blue light always on Yellow light always on Green light always on Network port 4 is connected normally Hard disk location Hard disk alarm Hard disk in place 12 USB port 2*USB2.0 ports 13 Reset Restart button Hard disk indicators ActLED(green) Fault LED(yellow) Status LED(blue) 1. Active LED(green) 2. Fault LED(yellow) 3. Status LED(blue) 4. LED is described as follows:: Page 14 of 70

15 Hard disk in place Hard disk in place Hard disk activity Always on OFF OFF Always on OFF OFF Flashing 4Hz/sec OFF OFF Hard disk location Always on Flashing 4Hz/sec OFF Hard disk alarm RAID reconstruct ion Always on OFF Always on Always on OFF Flashing 1Hz/sec Hard disk orders The default order of disks on the backplane is as follows: Page 15 of 70

16 2.1 Overview Chapter 2 System Interface Introduction The main interfaces in system are distributed on the motherboard, and the interface layout of motherboard is described as follows: Physical image of G1DCW motherboard Physical image of G1DCW motherboard Page 16 of 70

17 2.1.1 G1DCW motherboard interface and definition: 1. Diagram of motherboard interface location: Page 17 of 70

18 2.Motherboard interface definition: Main Connectors on G1DCW motherboard Connector No Description Comment CN1 SW1 J9 J10 VGA Connector LED-POWER Button (switch button with two-color indicator light) 1GbE Ethernet interface 1 and port 2 1GbE Ethernet interface 3 and port 4 Green, yellow G1DCW-B/BF no port J11 SFP+ 10 gigabit optical port *2 G1DCW-B/4B no port CONN1 D9 SYS_FAN1 SYS_FAN2 SYS_FAN3 SYS_FAN4 SYS_FAN5 J12 JCOM1 USB3.0 Connector *2+IPMI management network port UID LED 4PIN PWM fan connector 4PIN PWM fan connector 4PIN PWM fan connector 4PIN PWM fan connector 4PIN PWM fan connector 3PIN BMC Debug RS232 Connector 9Pin System Debug RS232 Connector Self-adaption 1000/100/10M USB1 Vertical USB3.0 Type A *1 JTPM1 TPM Connector LPC/TPM connector GPU1_POWER1 GPU1 Power Connector1 GPU1 Power connector1 Page 18 of 70

19 GPU1_POWER2 GPU1 Power Connector2 GPU1 Power connector2 GPU2_POWER1 GPU2 Power Connector1 GPU2 Power connector1 GPU2_POWER2 GPU2 Power Connector2 GPU2 Power connector2 CPU_XDP1 XDP connector Used for debug J23 JBAT1 CPU1_SLOT1 CPU2_SLOT1 M.2 SSD connector CR2032 Battery Socket PCI-e 3.0 X16 SLOT PCI-e 3.0 X16 SLOT The following lengths can be supported: M.2 (42mm, 80mm,110mm) 16 LANE PCI-e all signal from CPU1 16 LANE PCI-e all signal from CPU2 CPU2_SLOT2 PCI-e 3.0 X8 SLOT 8LANE PCI-e all signal from CPU2 CPU1_PIKE1 SAS_PIKE1 CPU1-DIMMA1 CPU1-DIMMA2 CPU1-DIMMB1 CPU1-DIMMB2 CPU1-DIMMC1 PCI-e X8 SLOT PCI-e signal transfer PCI-e X4 SLOT SAS signal transfer CPU1 memory channel A, 1 st DIMM CPU1 memory channel A, 2 nd DIMM CPU1 memory channel B, 1 st DIMM CPU1 memory channel B, 2 nd DIMM CPU1 memory channel C, 1 st DIMM Insert self-developed PIKE card of actidata (non-standard card) Page 19 of 70

20 CPU1-DIMMC2 CPU1-DIMMD1 CPU1-DIMMD2 CPU2-DIMME1 CPU2-DIMME2 CPU2-DIMMF1 CPU2-DIMMF2 CPU2-DIMMG1 CPU2-DIMMG2 CPU2-DIMMH1 CPU2-DIMMH2 CPU1 CPU2 J18 J19 J20 CPU1 memory channel C, 2 nd DIMM CPU1 memory channel D, 1 st DIMM CPU1 memory channel D, 2 nd DIMM CPU2 memory channel E, 1 st DIMM CPU2 memory channel E, 2 nd DIMM CPU2 memory channel F, 1 st DIMM CPU2 memory channel F, 2 nd DIMM CPU2 memory channel G, 1 st DIMM CPU2 memory channel G, 2 nd DIMM CPU2 memory channel H, 1 st DIMM CPU2 memory channel H, 2 nd DIMM CPU1 SOCKET CPU2 SOCKET AirMax high-speed signal connector AirMax high-speed signal connector AirMax high-speed signal connector Used to connect SPIB Used to connect SPIB Used to connect SPIB Page 20 of 70

21 J21 AirMax high-speed signal connector Used to connect SPIB J15 Power connector Used to connect SPIB J17 Power connector Used to connect SPIB J16 J22 U62 U70 U66 U63 Guide pin Guide pin PCH C612 BMC AST2400 JL gigabit optical port I350 1GbE network card chip G1DCW-BF uses I350-AM2; G1DCW-4BF uses I350-AM4 Page 21 of 70

22 2.2 Motherboard IO interface Switch button Press the switch button to start the system, and the location is indicated by the arrow below This button is the switch button with two colors of system status indicators to achieve the whole boot and shutdown; when the system is powered, press the button to turn on the system; if the system is turned on, press this button to shut down the system; if the host is on without system status, long press this button to force the shutdown. Note: After the system is plugged into the AC power supply, please wait for the button green light, and then press the button to boot LED color status LED 1Hz green light flashing Green light always on Yellow light always on No light LED 1Hz green light flashing Green light always on Yellow light always on No light Page 22 of 70

23 In the hanger indicator on front panel is a power button, and press the button for boot or shutdown, Page 23 of 70

24 2.2.2 System ID (identity) indicator System ID indicator is designed to allow users to identify the machine with the current operation more intuitively, and its specific location on motherboard is as shown below: on the front motherboard labeled with D9: In the hanger indicator on front panel is a UID button, and press the button or click UID on the IPMI management interface to turn on or off the UID LED. Page 24 of 70

25 2.2.3 IPMI LAN port The network port is special for IPMI (CONN1), used for IPMI remote management, and it is connected into switchboard with CAT5 cable and above, also directly connected to the customer's host; it supports kilomega with self-adaptive adjustment, but cannot be used as a service data network port. The LED on the network port is as follows: IPMI LAN Port LED LED Description Link status light: Left LED Mb Link, green light always on Mb Link, yellow light always on 3. 10Mb Link, no LED Right LED The yellow indicator flashes when data is active This indicator does not light when no data is active Location diagram: Page 25 of 70

26 2.2.3 LAN port Motherboard provides four kilomega Ethernet ports (J9 and J10), the main chip uses Intel I350-AM4, self-adaptive 1000M, 100M and 10M, 4 Gigabit Ethernet business port, used to receive/send business data, and connected into the interchanger via CAT5 cable and above, or directly connected to the customer's host; the LED indicators in network port is as follows: Task data LAN Port Led LED 描述 Link status light: Left Led Right Led Mb Link, green light always on Mb Link, yellow light always on 3. 10Mb Link, no LED The yellow indicator flashes when data is active This indicator does not light when no data is active Note: The four network port indicators are the same. Location diagram: Page 26 of 70

27 2.2.4 SFP+ Ports The motherboard supports two SFP + Port (J11), and the main chip uses Intel JL82599ES chip. The optical connectors use the 2X1 piled connector; SFP+ optical connector is defined as follows: The LED in this port is as follows: Task data LAN Port Led LED 描述 Link status light: gigabit Link, green light always on Mb Link, yellow light always on SFP-1,SFP /10Mb Link, no LED; The green indicator flashes when Link is 10 gigabit and data is active This yellow indicator flashes when Link is 10 gigabit and data is active Note: The two network port indicators are the same. Page 27 of 70

28 Location diagram: * The image is for reference only USB interface Two external USB3.0 ports (CONN1) are used to access each device of USB Type A, such as debugging USB keyboard and USB drive, etc., and USB location is as follows: Page 28 of 70

29 2.2.4 USB3.0 Type A Connector Motherboard has one USB3.0 TYPEA straight connector (USB1), used to access USB devices, and the location is as follows: Page 29 of 70

30 PIN is defined as follows: Definition of USB3.0 Port Pin PIN order Description Comment PIN1 5V PIN2 D- PIN3 D+ PIN4 PIN5 PIN6 PIN7 PIN8 PIN9 MH1 MH2 MH3 MH4 Ground StdA_SSRX- StdA_SSRX+ Ground StdA_SSTX- StdA_SSTX+ Ground Ground Ground Ground VGA display port Display chip of motherboard adopts AST2400, and built-in PCI-e VGA Controller in AST2400, and one 15PIN VGA Connector used to access VGA display to output host information, and the location diagram is as follows: Page 30 of 70

31 2.2.3 PCI-E slot The motherboard has a built-in 3 PCI-E Slot, PCI-eX16 Slot of CPU1_SLOT1 with the rate of PCI-eGen3 8Gb/s; CPU2_SLOT1 is also a X16 Slot, and the other one is CPU2_SLOT2, X8 Slot with the rate of PCI-eGen3 8Gb/s. Page 31 of 70

32 2.2.3 PIKE card slot The SAS Controller card can be inserted into the mainboard, used to support SAS hard disk, and SAS adopts the PIKE card self-developed by actidata (non-standard). The PCI-e X8 signal of CPU1 is connected to the PIKE card via PCI-e X8 Slot. The SAS X8 signal of PIKE card is connected to mainboard via slot of PCI-e X4. And the motherboard connects the 8 pairs of SAS signals to the SPIB for the system backplane Page 32 of 70

33 2.2.3 Introduction of M.2 port The motherboard supports 1*M.2SSD (J23), and this M.2SSD must be PCI-e interface type, and M.2 of SATA interface does not support this, but supports PCI-eGen3 X4 with the backward compatibility with PCI-eGen2 or X2, X1; according to flexible design, M.2 interface can support three kinds of specifications of M.2SSD, 42mm, 80mm and 110mm, respectively; the machine will be equipped with a bolt, and the user can adjust the size of corresponding screws according to the actual size of M.2SSD. Page 33 of 70

34 2.2.3 Introduction of AIRMAX connector The motherboard adopts AirmaxVS2 connector to connect SPIB system, and supports the high-speed 12GSAS signal transmission, as shown in the figure below; J18, J19, J20 and J21 are the signal connector, J15 and J17 are the power connector, and J16 and J22 are the guide pins. Page 34 of 70

35 2.2.3 Introduction of GPU power PORT The motherboard can support two GPU cards, and each GPU card requires two power connectors; GPU1_POWER1 and GPU_POWER2 are used for GPU1, while GPU2_POWER1 and GPU2_POWER2 are used for GPU2; the pin is defined as follows: GPU_POWER1 Pin definition PIN order Description Comment PIN1, 2, 3, 4 PIN5, 6, 7, 8 12V Ground GPU_POWER2 Pin definition PIN order Description Comment PIN1, 2, 3 PIN5, 6, 7 12V Ground Page 35 of 70

36 Location diagram: Page 36 of 70

37 2.2.3 Introduction of DIMM SLOT The motherboard is designed with 16 slices of DDR4 DIMM SLOT, supports DDR4-2133/ 1866/1600 ECC RDIMM or ECC LRDIMM. And the compatible BROADWELL CPU supports the memory bandwidth of DDR at most. Page 37 of 70

38 Memory of RDIMM/LRDIMM ECC is as follows: Speed(MT/S),Voltage(V) TYPE Ranks per DIMM and data DIMM Capacity (GB) DPC=DIMM per Channel 1 Slot Per 2 Slot per Channel Channel Width 1DPC 1DPC 2DPC 4Gb 8Gb 1.2V 1.2V 1.2V RDIMM SR x4 8GB 16GB RDIMM SR x8 4GB 8GB RDIMM DR x8 8GB 16GB RDIMM DR x4 16GB 32GB LRDIMM QR x4 32GB 64GB LRDIMM 3DS+ 8R x4 64GB 128GB Page 38 of 70

39 2.2.4 Introduction of CPU SOCKET CPU1/CPU2 is LGA-2011 R3 SOCKET, supports CPU of INTEL E5-2600V3 series, and is compatible with Broadwell E5 v4 LGA2011 CPU, as shown below: Page 39 of 70

40 2.2.3 Introduction of JTPM1 port JTPM1 connector supports LPC/TPM module, supports TPM2.0 trusted module, and uses 20PIN connector, and the specific location is as follows: Comment: indicates PIN1 of device Page 40 of 70

41 2.3 Jumper setting G1DCW motherboard has 3 2PIN pins, and the following chart shows the differences of these 2PIN pin and their function: The locations of these 3 pins are as follows: Page 41 of 70

42 G1DCW single-plate 2PIN 2PIN order Description Default setting JCMOS1 CMOS Clear No need to insert a jumper cap J7 ManufactureModeSelect No need to insert a jumper cap J8 ME Recovery No need to insert a jumper cap JCMOS1 introduction: use 2PIN jumper cap to insert into JCMOS1, then short circuit of JCMOS1, used to Clear CMOS; J7 Introduction: J7 is inserted with 2PIN jumper cap, then short circuit of J7, and the system is used to upgrade ME. Generally, if the ME needs to be upgraded, short circuit of J7 is needed via jumper cap. J8 introduction: use the 2PIN cable to insert J8, then let ME Firmware be in Recovery mode, and some functions of ME are limited. Page 42 of 70

43 2.4 Power Module The arrow in the figure above is the LED indicators of the power supply module. Each power supply module has its own LED display status. LED state description LED appearanc e Green light always on Green light always on Orange light always on No light or off Description The power supply module operates normally AC is plugged in but the system is not powered on Power supply module alarms may be possibly due to the over temperature, over / under-voltage, over-current or fan failure AC power is not connected to the power supply module Page 43 of 70

44 Chapter 3 Detailed Controller Module Installation This chapter describes the installation procedure for each major component on the system node, including the installation of CPU, heat sink, memory, fan module, backplane, PIKE card, and expansion card. 3.1 Front view of module 3.2 Interior image of module with upper cover opened Page 44 of 70

45 3.3 CPU installation Precautions: 1. Please purchase Intel CPU through formal channels. 2. Make sure that the processor you purchased belongs to the supported type for this system. 3. If you purchase the CPU heatsink separately, make sure you use the actidata-approved heat sink. Detailed installation of LGA2011 processor steps: 1. Press the left-hand fixed wrench (A) and push it slightly to the right (B) until the wrench comes out of the retaining clip; and then gently lift the non-adjustable wrench (C). WARNING: The protective cover on the CPU mounting box is used to protect the pins on the socket, so it can only be removed after the CPU is installed. Page 45 of 70

46 2. Press the right securing wrench (D) and push it slightly to the left (E) until the wrench comes out of the retaining clip; and then gently lift the non-adjustable wrench (F). 3. Push the left non-adjustable wrench in the direction of the arrow and lift up the mounting cover (G). Hold the edge and gently lift up the top cover (H). Page 46 of 70

47 4. Align the CPU with the slot, and make sure that the triangle mark on CPU aligns with the triangle marks on the socket, and carefully insert the CPU in the socket. WARNING: The CPU can only be installed in the motherboard slot correctly in a single direction. Do not force the CPU into the slot in the wrong direction, or it may damage the CPU and socket pins. 5. Gently close the top cover of the mounting box. the CPU. WARNING: Do not force the top cover of mounting box, or it may damage Page 47 of 70

48 6. Push down the right non-adjustable wrench (I) and make sure that the edge of the top cover of the mounting box is fixed by wrench (J), and insert the non-adjustable wrench. WARNING: Keep the protective cap in place, and only the motherboard with the protective cover on the slot meets the requirements of Return Merchandise Authorization (RMA), and so that we can repair and maintain it. 7. Push down the left non-adjustable wrench (L) and insert it (M). Page 48 of 70

49 3.4 CPU heat sink installation 1. Remove the heat sink and apply the appropriate amount of hot silicone paste on the bottom of the heat sink. 2. Place the heat sink on top of CPU, so that the four mounting holes are aligned with the heat sink bracket on the motherboard and below. 3. Screw the two diagonal plane screws until they are in place (do not tighten the screws too much to avoid damage to the CPU and heatsink) 4. Fully tighten the four bolts to install. 5. Reverse the sequence of this procedure to remove the heat sink. Page 49 of 70

50 Page 50 of 70

51 3.5 Memory installation Note: Be careful when installing or removing DIMM modules to prevent any possible damage to the DIMM or slots. How to install memory CPU 1 controls 8 memory slots: DIMMA1, A2, DIMMB1, B2, DIMM C1, C2 and DIMM D1, D2. CPU2 controls 8 memory slots: DIMME1, E2, DIMMF1, F2, DIMMG1, G2, and DIMMH1, H2; the memory slot shall be aligned with that of DIMM slots; insert each DIMM module straight in place to prevent improper installation. Remove: Gently push the release clamp near both ends of the memory module slot with your thumb to remove the memory from the slot. Removal of memory modules: Page 51 of 70

52 Memory support specifications The motherboard supports the DDR4 memory of 4GB / 8GB / 16GB and 32GB R-DIMM or 32GB and 64GB of LR-DIMM and NVDIMM, supports 2400MHz at most (2400MT/s only in BroadwellCPU and each single channel). Always use the same size, type and speed of the memory module. To achieve the best memory performance, install the memory modules in the dual DIMM slots with the same color. Page 52 of 70

53 Memory setting rules Note: Refer to actidata's official website for the memory compatibility list to make your selection. To install a single memory module in a single CPU, install the memory module in the A1 or B1 slot. To achieve the best compatibility, please use the memory bank with the same CAS delay value, and we recommend that you use the same type of memory from the same manufacturer. Use a different number of memory modules according to the following rules for installation. Refer to the following memory settings for dual CPU settings: Page 53 of 70

54 3.6 PIKE card and expansion card installation System controller module uses the standard LSI SAS2008 chipset PIKE card, also supports up to four full-height PCI-e expansion cards or two full-height full-width GPU cards Installation of PIKE card: Note: align the groove, and push down both sides at the same time. Page 54 of 70

55 Note: make sure that the PIKE card is in place Installation of PCI-e Expansion Card: Note: pay attention to the balanced force in the installation to ensure that the expansion card is inserted into the motherboard vertical. Page 55 of 70

56 If you need to install the full width of the GPU card,as picture below) Note: need to change the cooler to 1U height, install the power cable of GPU card If you need to use the standard PCI-E RAID card, you need to replace the SAS PIKE card in original system into RIBCARD, as shown: Note: Do not forget to connect the RAID card with SFF 8087 SAS data cable of RIB Page 56 of 70

57 4.2 Fan installation The system adopts the modular fan wall for heat dissipation. And the wind wall support module has screw-free tools for installation. The installation diagram is as follows:: Note: Align the fan wall hole with the clips on the cabinet, and then connect the power cables for each fan to the backplane. Page 57 of 70

58 Installation completed Page 58 of 70

59 4.3 Controller module installation The system adopts modular installation, which is hot-swappable; it has the simple and convenient installation and maintenance. Installation diagram is as follows: Page 59 of 70

60 Page 60 of 70

61 4.4 Hard disk installation System hard disk installation The system supports or 2.5-inch hard drives, and the installation of each hard disk is the same, as follows: *2.5-inch hard drives installation in the rear System support 2*2.5 inch SATA HDD in the back, please check the installation procedure as below Page 61 of 70

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64 Overview Chapter 5 System Cabinet Installation This chapter describes the procedures for shelf of actinas BB212-3 server barebone system. Select a suitable location on the rack to place the server system, meeting the following conditions: clean, well-ventilated, dust-free or dust-free, avoid high temperature, electrical noise and electromagnetic interference; place a system power socket. System Cabinet Steps actinas BB212-3 server barebone system adopts a full set of non-screw-free tool rails with easy installation. Refer to following procedures to install into the rack. The steps are as follows: Page 64 of 70

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66 WARNING: Do not pull the handles of server system arbitrarily. Otherwise, it will be pulled out the system from the rack, causing system power failure, downtime and other failures. The rack must be secure or the rack will be unstable. Page 66 of 70

67 Overall parameters of system are as follows: System System model System node CPU Hard disk Memory Power System size System weight actinas BB212-3 Support one hot-swappable controller module Support two CPU Support inch or 2.5-inch SATA or SAS hard drives Support 1024GBRDIMM,2048GBLRDIMM, and rate of 2133,1866,1600Mhz, maximum 1DPC rate of Broadwell is up to 2400MHZ. Use 550W1+1 redundant platinum label efficiency power supply 675mm*448mm*88mm (D*W*H) Net weight: 14kg, rough weight: 17kg System board Motherboard model Supportable CPU Motherboard chipset Number of memory slots Supportable memory G1DCW CPU of Intel Haswell E V3 series, compatible with Intel Broadwell EP E V4 system (Socket R3 LGA 2011) Intel PCH Wellsburg C612 Support 16 slices of DDR4ECC DIMM 4 memory channels per CPU with 2 DDR4RDIMM per channel; Support 1024GBRDIMM, 2048GBLRDIMM, and rate of 2133,1866,1600Mhz, maximum 1DPC rate of Broadwell is up to 2400MHZ. Page 67 of 70

68 PCHRAID Graphics card Intel RSTe Support software RAID 0, 1,5&10(for windows only) Aspeed AST2400 Support for Intelligent Platform Management Interface v2.0 IPMI Network card USB M.2 IPMI 2.0 with virtual media over LAN and KVM over LAN support ASPEED AST2400 BMC Intel I350-AM4 for four 1GbE ports, and JL82599ES for two 10 gigabit SFP+ optical ports. Rear USB: two USB 3.0 Ports, one built-in USB3.0 Port Front USB: two USB 2.0 Ports PCI-e Gen3 X4 M.2 SSD(Support M.2 SSD length 42mm, 80mm and 110mm), downward compatibility with PCI-e Gen2 X1/X2 的 M.2 SSD System power supply Number of power supplies Power characteristic s 1+1 Adopt 550W1+1 redundant platinum label efficient power V~/ 9.9A Input voltage V~/ 4.79A 47Hz~63Hz Output voltage +12V_SB, +12V System fan Number of fans 4*8038 PWM fans Page 68 of 70

69 Fan voltage Fan current Fan speed Fan airflow Fan pressure 12(9~13.2)V 1.5A(1.65 Max) Up to 6800+/- 10% RPM 2.709m³/min(95.63CFM) Pa operating system Windows Server 2008 R2(64bit) Windows SBS 2011 (64bit) Server Windows Server 2012 / 2012R2 / 2016 (64bit) Redhat Enterprise Linux Server (32bit/64bit) Suse Enterprise Linux Server (32bit/64bit) Ubuntu Server (32bit/64bit) VMWare ESXi (Target) Virtualization Microsoft Hyper-V (Target) Citrix Xen Server (Target) Linux Kernel Virtual Machine (Target) System ambient temperature System operating temperature System storage temperature humidity Operating temperature: ; non-operating temperature: -40 ~ 70 Operating temperature: 35%~80%; non-operating temperature: 20% ~ 90% Safety Certification Certification CCC CE FCC ROHS Page 69 of 70

70 Notes: Page 70 of 70

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