ICS511MI IDT, Integrated Device Technology Inc, ICS511MI Datasheet - Page 3

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ICS511MI

Manufacturer Part Number
ICS511MI
Description
IC PLL CLOCK MULTIPLIER 8-SOIC
Manufacturer
IDT, Integrated Device Technology Inc
Series
LOCO™r
Type
Clock Generatorr
Datasheet

Specifications of ICS511MI

Pll
Yes
Input
Clock, Crystal
Output
CMOS
Number Of Circuits
1
Ratio - Input:output
1:1
Differential - Input:output
No/No
Frequency - Max
160MHz
Divider/multiplier
No/Yes
Voltage - Supply
3.135 V ~ 5.25 V
Operating Temperature
-40°C ~ 85°C
Mounting Type
Surface Mount
Package / Case
8-SOIC
Frequency-max
160MHz
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Other names
511MI
800-1938-5
ICS511MI

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IDT™ / ICS™ LOCO™ PLL CLOCK MULTIPLIER
ICS511
LOCO™ PLL CLOCK MULTIPLIER
External Components
Decoupling Capacitor
As with any high-performance mixed-signal IC, the
ICS511 must be isolated from system power supply
noise to perform optimally.
A decoupling capacitor of 0.01µF must be connected
between VDD and the GND. It must be connected close
to the ICS511 to minimize lead inductance. No external
power supply filtering is required for the ICS511.
Series Termination Resistor
A 33 terminating resistor can be used next to the CLK
pin for trace lengths over one inch.
Crystal Load Capacitors
The total on-chip capacitance is approximately 12 pF. A
parallel resonant, fundamental mode crystal should be
used. The device crystal connections should include
pads for small capacitors from X1 to ground and from
X2 to ground. These capacitors are used to adjust the
Number
Pin
6
7
8
Name
Pin
OE
S0
X2
Tri-level Input
Output
Type
Input
Pin
Select 0 for output clock. Connect to GND or VDD or float.
Output enable. Tri-states CLK output when low. Internal pull-up
resistor.
Crystal connection. Leave unconnected for clock input.
3
stray capacitance of the board to match the nominally
required crystal load capacitance. Because load
capacitance can only be increased in this trimming
process, it is important to keep stray capacitance to a
minimum by using very short PCB traces (and no vias)
between the crystal and device. Crystal capacitors, if
needed, must be connected from each of the pins X1
and X2 to ground.
The value (in pF) of these crystal caps should equal (C
-12 pF)*2. In this equation, C
in pF. Example: For a crystal with a 16 pF load
capacitance, each crystal capacitor would be 8 pF
[(16-12) x 2] = 8.
Pin Description
L
= crystal load capacitance
ICS511
CLOCK MULTIPLIER
REV K 051310
L

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