NQ5000P S L9TN Intel, NQ5000P S L9TN Datasheet - Page 349
NQ5000P S L9TN
Manufacturer Part Number
NQ5000P S L9TN
Description
Manufacturer
Intel
Datasheet
1.NQ5000P_S_L9TN.pdf
(530 pages)
Specifications of NQ5000P S L9TN
Mounting
Surface Mount
Lead Free Status / RoHS Status
Not Compliant
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Functional Description
5.12.7.2
5.12.7.3
Figure 5-21. PCI Express Elastic Buffer (x4 Example)
5.12.7.4
Intel® 5000P/5000V/5000Z Chipset Memory Controller Hub (MCH) Datasheet
it will allow communication between the two devices. Software will then be able to
interrogate the device at the other end of the link to determine why it failed to train at
a higher width.
8b/10b Encoder/Decoder and Framing
As a transmitter, the physical layer is responsible for encoding each byte into a 10 bit
data symbol before transmission across the link. Packet framing is accomplished by the
physical layer by adding special framing symbols (STP, SDP, END). PCI Express
implements the standard Ethernet and InfiniBand* 8b/10b encoding mechanism.
Elastic Buffers
Every PCI Express port implements an independent elastic buffer for each PCI Express
lane. The elastic buffers are required since the Intel 5000P Chipset MCH and PCI
Express endpoints could be clocked from different sources. Clocks from different
sources will never be exactly the same. The outputs of the elastic buffers feed into the
deskew buffer.
The elastic buffer is eight symbols deep. This accounts for three clocks of
synchronization delay, the longest possible TLP allowed by the Intel 5000P Chipset MCH
(256 B), a 600ppm difference between transmitter and receiver clocks, and worst case
skip ordered sequence interval of 1538, framing overheads, and a few symbols of
margin.
Deskew Buffer
Every PCI Express port implements a deskew buffer. The deskew buffer compensates
for the different arrival times for each of the symbols that make up a character. The
outputs of the deskew buffer is the data path fed into the Link layer.
Remote Clock = 2.499 GHz
Local Clock = 2.501 GHz
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