MT9040AN Zarlink Semiconductor, MT9040AN Datasheet - Page 8

no-image

MT9040AN

Manufacturer Part Number
MT9040AN
Description
Description = Single Reference Frequency Selectable, 3.3V Digital PLL With Multiple Clock Outputs For Stratum 4 Applications ;; Package Type = Ssop ;; No. Of Pins = 48
Manufacturer
Zarlink Semiconductor
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MT9040AN
Manufacturer:
MURATA
Quantity:
50 000
Part Number:
MT9040AN
Manufacturer:
ZARLINK
Quantity:
20 000
Part Number:
MT9040AN1
Manufacturer:
ZARLINK
Quantity:
3 000
Part Number:
MT9040ANR1
Manufacturer:
ZARLINK
Quantity:
3 000
Jitter Tolerance
Jitter tolerance is a measure of the ability of a PLL to operate properly (i.e., remain in lock and or regain lock in the
presence of large jitter magnitudes at various jitter frequencies) when jitter is applied to its reference. The applied
jitter magnitude and jitter frequency depends on the applicable standards.
Jitter Transfer
Jitter transfer or jitter attenuation refers to the magnitude of jitter at the output of a device for a given amount of jitter
at the input of the device. Input jitter is applied at various amplitudes and frequencies, and output jitter is measured
with various filters depending on the applicable standards.
For the MT9040, the jitter attenuation is determined by the 1.9Hz low pass loop filter.
The MT9040 has twelve outputs with three possible input frequencies (except for 19.44MHz, which is internally
divided to 8KHz) for a total of 36 possible jitter transfer functions. Since all outputs are derived from the same
signal, the jitter transfer values for the four cases, 8kHz to 8kHz, 1.544MHz to 1.544MHz and 2.048MHz to
2.048MHz can be applied to all outputs.
It should be noted that 1UI at 1.544MHz is 644ns, which is not equal to 1UI at 2.048MHz, which is 488ns.
Consequently, a transfer value using different input and output frequencies must be calculated in common units
(e.g., seconds) as shown in the following example.
What is the T1 and E1 output jitter when the T1 input jitter is 20UI (T1 UI Units) and the T1 to T1 jitter attenuation is
18dB?
Using the above method, the jitter attenuation can be calculated for all combinations of inputs and outputs based on
the three jitter transfer functions provided.
Note that the resulting jitter transfer functions for all combinations of inputs (8kHz, 1.544MHz, 2.048MHz) and
outputs (8kHz, 1.544MHz, 2.048MHz, 4.096MHz, 8.192MHz, 16.384MHz, 19.44MHz) for a given input signal (jitter
frequency and jitter amplitude) are the same.
Since intrinsic jitter is always present, jitter attenuation will appear to be lower for small input jitter signals than for
large ones. Consequently, accurate jitter transfer function measurements are usually made with large input jitter
signals (e.g., 75% of the specified maximum jitter tolerance).
Frequency Accuracy
Frequency accuracy is defined as the absolute tolerance of an output clock signal when it is not locked to an
external reference, but is operating in a free running mode. For the MT9040, the Freerun accuracy is equal to the
Master Clock (OSCi) accuracy.
OutputT1
OutputT1
OutputE1
OutputE1
=
=
=
=
Zarlink Semiconductor Inc.
InputT1
20
OutputT1
OutputT1
×10
MT9040
-------- -
20
×10
18
8
×
×
(
--------------------- -
(
=
------ -
1UIT1
1UIE1
(
-------------------
(
20
644ns
488ns
A
2.5UI T1
)
)
)
)
=
(
3.3UI T1
)
(
)
Data Sheet

Related parts for MT9040AN