ICS601M-02IT IDT, Integrated Device Technology Inc, ICS601M-02IT Datasheet - Page 3

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ICS601M-02IT

Manufacturer Part Number
ICS601M-02IT
Description
IC CLOCK MULTIPLIER 16-SOIC
Manufacturer
IDT, Integrated Device Technology Inc
Type
Clock/Frequency Synthesizer, Clock Generatorr
Datasheet

Specifications of ICS601M-02IT

Pll
Yes
Input
Clock, Crystal
Output
CMOS
Number Of Circuits
1
Ratio - Input:output
2:1
Differential - Input:output
No/No
Frequency - Max
170MHz
Divider/multiplier
Yes/Yes
Voltage - Supply
3 V ~ 5.5 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
16-SOIC
Frequency-max
170MHz
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
601M-02IT
Achieving Low Phase Noise
External Components
IDT™ LOW PHASE NOISE CLOCK MULTIPLIER
ICS601-02
LOW PHASE NOISE CLOCK MULTIPLIER
Figure 1 shows a typical phase noise measurement in a 125 MHz system. There are a few simple steps that can be
taken to achieve these levels of phase noise from the ICS601-02. Variations in VDD will increase the phase noise,
so it is important to have a stable, low noise supply voltage at the device. Use decoupling capacitors of 0.1 µF in
parallel with 0.01 µF. It is important to have these capacitors as close as possible to the ICS601-02 supply pins.
Disabling the REFOUT clock is also important for achieving low phase noise; lab tests have shown that this can
reduce the phase noise by as much as 10 dBc/Hz.
Figure 1: Phase Noise of ICS601-02 at 125 MHz out, 25 MHz crystal input, VDD=3.3 V.
The ICS601-02 requires a minimum number of external components for proper operation. Decoupling capacitors of
0.01 µF and 0.1 µF should be connected between VDD and GND, as close to the part as possible. A series
termination resistor of 33
possible. The crystal should be fundamental mode, parallel resonant. Do not use third overtone. For exact tuning
when using a crystal, capacitors should be connected from pins X1 to ground and X2 to ground. In general, the
value of these capacitors is given by the following equation, where CL is the crystal load capacitance: Crystal caps
(pF) = (CL-5) x 2. So for a crystal with 16 pF load capacitance, two 22 pF caps can be used.
may be used for the clock output. The crystal must be connected as close to the chip as
3
ICS601-02
SYNTHESIZERS
REV G 051310

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