168
Intel
®
855GME Chipset and Intel
®
6300ESB ICH Embedded Platform Design Guide
Integrated Graphics Display Port
The setup margin and the hold margin for a particular design depends on the values of the data
valid times and the data setup and hold times on both the driver and the receiver sides. However,
available margins are not absolute values. Any skew due to routing and loading differences, any
coupling differences in the parallel traces, and any effects of SSO (ISI, ground bounce, etc.) shall
be accounted for in the timing budget as they reduce the total available margin for the design.
All numbers in this table are from the 82855GME specification documents that are applicable for
this interface. For third party receiver devices, refer to appropriate third party vendor
specifications.
6.4
DVOB and DVOC Port Flexible (Modular) Design
The GMCH supports flexible design interfaces described in this section.
6.4.1
DVOB and DVOC Module Design
The 82855GME supports a DVO module design connected to the GMCH through a generic
connector. Simulation method is the same as in
. Lengths L1 and L2 are determined
by simulation as L1 = 4 inches and L2 = 2 inches. Refer to
for the generic connector
parasitic model.
Figure 79. Driver-Receiver Waveforms Relationship Specification
Data1
Data2
Data3
Data4
tDSu
tDh
Data1
Data2
Data3
Data4
tDVb
tDVa
Driver
Strobe
Driver
Data
Receiver
Strobe
Receiver
Data
Clock Delay
Data Delay
Table 54. Allowable Interconnect Skew Calculation
Component
Skew Element
Symbol
Setup
Hold
Units
Driver
Data Valid before Strobe
tDVb
570
ps
Data Valid after Strobe
tDVa
770
ps
Interconnect
Allowable Skew
Vendor Specific
Vendor Specific
ps
Receiver
Data Setup to Strobe
tDSu
Vendor Specific
ps
Data Hold from Strobe
tDh
Vendor Specific
ps
Содержание 6300ESB ICH
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Страница 152: ...152 Intel 855GME Chipset and Intel 6300ESB ICH Embedded Platform Design Guide System Memory Design Guidelines DDR SDRAM...
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Страница 190: ...190 Intel 855GME Chipset and Intel 6300ESB ICH Embedded Platform Design Guide Hub Interface...
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