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Manual abstract: user guide INTEL GIGABIT CT DESKTOP ADAPTER
Detailed instructions for use are in the User's Guide.
[. . . ] Intel may make changes to specifications and product descriptions at any time, without notice. Designers must not rely on the absence or characteristics of any features or instructions marked "reserved" or "undefined. " Intel reserves these for future definition and shall have no responsibility whatsoever for conflicts or incompatibilities arising from future changes to them. The Eagle Lake chipset may contain design defects or errors known as errata which may cause the product to deviate from published specifications. Current characterized errata are available on request. [. . . ] Using tweezers gently remove SPI device from socket. Gently close socket doors if not in use to avoid any damage to socket doors.
Figure 2-20 : Removing SPI device
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3. 0 Setting Up and Configuring the Development Kits
This chapter identifies the evaluation kit basic board’s set up and operation. Please refer to chapter 2 for the board layout, jumper setting location and the component reference designator.
3. 1 Overview
Figure 3-1 Intel® Q45 Development Kits
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3. 2
ATX Heatsink Setup
Depending on the ATX casing that user use, this guide only provides guides for install the ATX heatsink. Refer to Figure 3-2 for the heatsink figure.
Figure 3-2 : Eagle Lake Q45 platform and the ATX heatsink
3. 2. 1 ATX heatsink alignment on the Eagle lake Q45 platform
Attach the ATX Heatsink over the processor to the Eagle Lake Q45 platform by following procedures described below. Step 1: Place the ATX Heatsink on the Eagle Lake Q45 board so that the hole on the board line up with the corresponding ATX Heatsink location. The board and the ATX heatsink should look like figure 3-3.
Figure 3-3 : ATX Heatsink alignment on the Eagle Lake Q45 board
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Step 2: Press the ATX Heatsink pin toward the hole on the board until “tick” sound can be hear. Remember to hold the board while pressing the pin. Refer to figure 3-4
Figure 3-4 Pressing the ATX Heatsink while holding the board
3. 3 Board Setup and Configuration before Boot
Follow the steps below to operate the reference board. Start at step 1 with the power supply not connected to the board. Physically inspect the motherboard for obvious defects. Note that each reference board has been tested prior to distribution; however, a visual check should be performed to ensure no damage has occurred in shipping. Translate logical DIMM number to physical DIMM number. Calculate size variable (contains row, column and bank). Enable cache for data storage to be used with receive enable and DQS calibration. Call receives enable calibration function. Just before call to perform DQS calibration. Performs the DQS calibration variable initialization. Determine which rows are populated according to the DRBs. Step 6 of DQS calibration.
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74h 9Fh B9h BAh B2h AEh BCh B3h BDh AFh D4h D5h
D6h
D7h
D8h D9h
DAh
End of DQS calibration. Set Top Of Memory register Program MCH for particular refresh mode. Initializes other recommended MCH settings. Save S3 data, start the refresh signal, and perform SB early initialization. [. . . ] IGD as the secondary display
Set the IGD as a secondary displays device Note : when enabled, this sets MCH D0. F0. R:52h[1]=1 which changes the internal graphics device classcode to 0380h(non-VGA) Select the amount of system memory used by the internal graphic device Select the amount of system memory used for Graphic Transition Table (GTT). type of device 2, function 1 auto enabled disabled
ii.
Internal Graphic Mode select GTT memory size
iii.
iv.
Device 2, function 1
v. ix.
IGD BAR size IGD displays clock IGD sample clock IGD render clock PAVP
select the IGD BAR size set IGD displays clock speed set IGD sample clock speed set IGD render clock speed protected Audio Video
Initiate Graphic Adapter
Select which graphic controller to be use as the primary boot device
Device 2 (IGD) Enable
Auto : IGD enabled/disable is based on the GFX card detection and primary video device setup option. Disable : IGD is disabled regardless of card detection And the primary video device option
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Memory Remap feature
Enabled : allow remapping of the overlapped PCI memory above the total physical memory Disabled : do not allow remapping of memory
Flex Memory Mode
Enabled : Flex mode channels interleaved when possible Disabled : Non flex mode channels stacked
DRAM frequency
Select the DRAM frequency Note : Setting auto, the DRAM frequency will auto adjusted
Configure DRAM time by SPD
Enable or disable
Dynamic ODT
Power cycling is required after changing this option
Write levelization
Enabled or disabled write levelization ( DDR3 only )
Memory hole
Reserve place in the memory. [. . . ]
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