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SLK2501IPZP bảng dữ liệu(PDF) 8 Page - Texas Instruments

tên linh kiện SLK2501IPZP
Giải thích chi tiết về linh kiện  OC-48/24/12/3 SONET/SDH MULTIRATE TRANSCEIVER
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SLK2501IPZP bảng dữ liệu(HTML) 8 Page - Texas Instruments

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Clock and Data Recovery
Minimum Transition Density
Jitter Transfer
Jitter Tolerance
SLK2501
SLLS502C – OCTOBER 2001 – REVISED MARCH 2007
The CDR unit of the SLK2501 device recovers the clock and data from the incoming data streams.
In the event of receive data loss, the PLL automatically locks to the local REFCLK to maintain frequency
stability. If the frequency of the data differs by more that 100 ppm with respect to the REFCLK frequency, the
LOL pin is asserted as a warning. Actual loss of lock occurs if the data frequency differs by more than 170 ppm.
The loop filter transfer function is optimized to enable the CDR to track ppm difference in the clocking and
tolerate the minimum transition density that can be received in a SONET data signal (
±20 ppm). The transfer
function yields a typical capture time of 3500-bit times for random incoming NRZ data after the device is
powered up and achieves frequency locking.
The device tolerates up to 72 consecutive digits (CID) without sustaining an error.
The jitter transfer is less than the mask shown in Figure 2 (GR-253 Figure 5-27). Jitter transfer function is
defined as the ratio of jitter on the output signal to the jitter applied on the input signal versus frequency. The
input sinusoidal jitter amplitude is applied up to the mask level in the jitter tolerance requirement (see Figure 3).
Figure 2. Jitter Transfer
Input jitter tolerance is defined as the peak-to-peak amplitude of sinusoidal jitter applied on the input signal that
causes the equivalent 1-dB optical/electrical power penalty. This refers to the ability of the device to withstand
input jitter without causing a recovered data error. The device has a jitter tolerance that exceeds the mask
shown in Figure 3 (GR-253 Figure 5-28). This jitter tolerance is specified using a pseudorandom data pattern of
231–1.
8
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