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SI5338K-B06098-GMR

Description
Clock Generators & Support Products I2C Control, 4-Output, Any Frequency(<710MHz), Any Output, Clock Generator (OEB Pin Ctrl)
Categorysemiconductor    Analog mixed-signal IC   
File Size2MB,46 Pages
ManufacturerSilicon Laboratories
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SI5338K-B06098-GMR Overview

Clock Generators & Support Products I2C Control, 4-Output, Any Frequency(<710MHz), Any Output, Clock Generator (OEB Pin Ctrl)

SI5338K-B06098-GMR Parametric

Parameter NameAttribute value
Product AttributeAttribute Value
ManufacturerSilicon Laboratories
Product CategoryClock Generators & Support Products
TypeProgrammable Clock Generators
Maximum Input Frequency710 MHz
Max Output Freq710 MHz
Number of Outputs4 Output
Duty Cycle - Max60 %
Operating Supply Voltage1.8 V, 2.5 V, 3.3 V
Operating Supply Current45 mA
Minimum Operating Temperature- 40 C
Maximum Operating Temperature+ 85 C
Mounting StyleSMD/SMT
Package / CaseQFN-24
PackagingBox
Output TypeLVDS, LVPECL
ProductClock Generators
Jitter9 ps
Supply Voltage - Max3.63 V
Supply Voltage - Min1.71 V
Si5338
I
2
C - P
R O GRA MM A B LE
A
NY
- F
R E Q U E N C Y
, A
NY
- O
UTPUT
Q
UAD
C
LOCK
G
ENERATOR
Features
Low power MultiSynth™ technology
enables independent, any-frequency
synthesis on four differential output
drivers
PCIe Gen 1/2/3/4 Common Clock and
Gen 3 SRNS compliant
Highly-configurable output drivers with
up to four differential outputs, eight
single-ended clock outputs, or a
combination of both
Low phase jitter of 0.7 ps RMS typ
High precision synthesis allows true
zero ppm frequency accuracy on all
outputs
Flexible input reference:

External
Single supply core with excellent
PSRR: 1.8, 2.5, 3.3 V
Independent frequency increment/
decrement feature enables
glitchless frequency adjustments in
1 ppm steps
Independent phase adjustment on
each of the output drivers with an
accuracy of <20 ps steps
Highly configurable spread
spectrum (SSC) on any output:
frequency from 5 to 350 MHz

Any spread from 0.5 to 5.0%

Any modulation rate from 33 to
63 kHz

Any
Ordering Information:
See page 42.
Pin Assignments
RSVD_GND
CLK0A
CLK0B
VDD
VDDO0
20
Independently configurable outputs
support any frequency or format:

LVPECL/LVDS:

HCSL:
0.16 to 710 MHz
0.16 to 250 MHz

CMOS: 0.16 to 200 MHz

SSTL/HSTL: 0.16 to 350 MHz
Independent output voltage per driver:
1.5, 1.8, 2.5, or 3.3 V
I
2
C/SMBus compatible interface
Easy to use programming software
Small size: 4 x 4 mm, 24-QFN
Low power: 45 mA core supply typ
Wide temperature range: –40 to
+85 °C
24
23
22
21
19
18
CLK1A
17
CLK1B
16
VDDO1
15
VDDO2
14
CLK2A
13
CLK2B
IN1
1
IN2
2
IN3
3
IN4
4
IN5
5
GND
GND
Pad
Applications
IN6
6
Ethernet switch/router
PCIe Gen1/2/3/4
Broadcast video/audio timing
Processor and FPGA clocking
Any-frequency clock conversion
MSAN/DSLAM/PON
Fibre Channel, SAN
Telecom line cards
1 GbE and 10 GbE
7
8
9
10
11
12
INTR
Description
The Si5338 is a high-performance, low-jitter clock generator capable of
synthesizing any frequency on each of the device's four output drivers. This timing
IC is capable of replacing up to four different frequency crystal oscillators or
operating as a frequency translator. Using its patented MultiSynth™ technology,
the Si5338 allows generation of four independent clocks with 0 ppm precision.
Each output clock is independently configurable to support various signal formats
and supply voltages. The Si5338 provides low-jitter frequency synthesis in a
space-saving 4 x 4 mm QFN package. The device is programmable via an I
2
C/
SMBus-compatible serial interface and supports operation from a 1.8, 2.5, or
3.3 V core supply. I
2
C device programming is made easy with the ClockBuilder™
Desktop software available at
www.silabs.com/ClockBuilder.
Measuring PCIe
clock jitter is quick and easy with the Silicon Labs PCIe Clock Jitter Tool.
Download it for free at
www.silabs.com/pcie-learningcenter.
Rev. 1.6 12/15
Copyright © 2015 by Silicon Laboratories
VDDO3
VDD
CLK3B
CLK3A
SCL
SDA
crystal: 8 to 30 MHz

CMOS input: 5 to 200 MHz

SSTL/HSTL input: 5 to 350 MHz

Differential input: 5 to 710 MHz
External feedback mode allows
zero-delay mode
Loss of lock and loss of signal
alarms
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