ICS8531AY-01LFT IDT, Integrated Device Technology Inc, ICS8531AY-01LFT Datasheet - Page 6

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ICS8531AY-01LFT

Manufacturer Part Number
ICS8531AY-01LFT
Description
IC FANOUT BUFFER 1-9 32-LQFP
Manufacturer
IDT, Integrated Device Technology Inc
Series
HiPerClockS™r
Type
Fanout Buffer (Distribution), Multiplexerr
Datasheet

Specifications of ICS8531AY-01LFT

Number Of Circuits
1
Ratio - Input:output
2:9
Differential - Input:output
Yes/Yes
Input
CML, HCSL, LVDS, LVHSTL, LVPECL, SSTL
Output
LVPECL
Frequency - Max
500MHz
Voltage - Supply
3.135 V ~ 3.465 V
Operating Temperature
0°C ~ 70°C
Mounting Type
Surface Mount
Package / Case
32-LQFP
Frequency-max
500MHz
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
8531AY-01LFT

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
ICS8531AY-01LFT
Manufacturer:
IDT, Integrated Device Technology Inc
Quantity:
10 000
IDT
The spectral purity in a band at a specific offset from the
fundamental compared to the power of the fundamental is called
the dBc Phase Noise. This value is normally expressed using a
Phase noise plot and is most often the specified plot in many
applications. Phase noise is defined as the ratio of the noise power
present in a 1Hz band at a specified offset from the fundamental
frequency to the power value of the fundamental. This ratio is
expressed in decibels (dBm) or a ratio of the power in the 1Hz
As with most timing specifications, phase noise measurements
have issues. The primary issue relates to the limitations of the
equipment. Often the noise floor of the equipment is higher than
the noise floor of the device. This is illustrated above. The device
ICS8531-01
LOW SKEW, 1-TO-9, DIFFERENTIAL-TO-3.3V LVPECL FANOUT BUFFER
/ ICS
1-TO-9, 3.3V LVPECL FANOUT BUFFER
A
O
DDITIVE
FFSET
F
ROM
P
HASE
6
C
ARRIER
band to the power in the fundamental. When the required offset
is specified, the phase noise is called a dBc value, which simply
means dBm at a specified offset from the fundamental. By
investigating jitter in the frequency domain, we get a better
understanding of its effects on the desired application over the
entire time record of the signal. It is mathematically possible to
calculate an expected bit error rate given a phase noise plot.
meets the noise floor of what is shown, but can actually be lower.
The phase noise is dependant on the input source and
measurement equipment.
J
F
ITTER
REQUENCY
(H
Z
)
155.52MHz (12kHz to 20MHz)
Additive Phase Jitter
ICS8531AY-01 REV. F APRIL 11, 2007
= 0.17ps typical
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