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SI5334C-B00155-GMR

Description
Processor Specific Clock Generator,
CategoryThe embedded processor and controller    Microcontrollers and processors   
File Size759KB,37 Pages
ManufacturerSilicon Laboratories Inc
Environmental Compliance
Download Datasheet Parametric View All

SI5334C-B00155-GMR Overview

Processor Specific Clock Generator,

SI5334C-B00155-GMR Parametric

Parameter NameAttribute value
Is it Rohs certified?conform to
Objectid145001424341
package instructionQFN-24
Reach Compliance Codeunknown
ECCN codeEAR99
Date Of Intro2017-12-14
YTEOL7.83
Other featuresIT ALSO OPERATES AT 2.5V AND 3.3V NOMINAL
JESD-30 codeS-XQCC-N24
length4 mm
Number of terminals24
Maximum operating temperature85 °C
Minimum operating temperature-40 °C
Maximum output clock frequency200 MHz
Package body materialUNSPECIFIED
encapsulated codeHVQCCN
Package shapeSQUARE
Package formCHIP CARRIER, HEAT SINK/SLUG, VERY THIN PROFILE
Peak Reflow Temperature (Celsius)NOT SPECIFIED
Master clock/crystal nominal frequency30 MHz
Maximum seat height0.9 mm
Maximum supply voltage1.98 V
Minimum supply voltage1.71 V
Nominal supply voltage1.8 V
surface mountYES
technologyCMOS
Temperature levelINDUSTRIAL
Terminal formNO LEAD
Terminal pitch0.5 mm
Terminal locationQUAD
Maximum time at peak reflow temperatureNOT SPECIFIED
width4 mm
uPs/uCs/peripheral integrated circuit typeCLOCK GENERATOR, PROCESSOR SPECIFIC
S i533 4
P
I N
-C
O N T R O L L E D
A
N Y
- F
R E Q U E N C Y
, A
N Y
-O
U T P U T
Q
U A D
C
LOCK
G
ENERATOR
Features
Low-power MultiSynth technology
enables independent, any-frequency
synthesis on four differential output
drivers
Highly-configurable output drivers
support up to four differential outputs
or eight single-ended clock outputs or
a combination of both
Low phase jitter: 0.7 ps RMS typ
High-precision synthesis allows true
0 ppm frequency accuracy on all
outputs
Flexible input reference
crystal: 8 to 30 MHz
input: 5 to 200 MHz

SSTL/HSTL input: 5 to 350 MHz

Differential input: 5 to 710 MHz

CMOS

External
Independent output voltage per driver

1.5,

1.8,
1.8, 2.5, or 3.3 V
2.5, or 3.3 V
Independent core supply voltage
Frequency increment/decrement
feature enables glitchless frequency
adjustments in 1 ppm steps
Phase adjustment on each of the
output drivers with <20 ps steps
SSC on any or all outputs that is
compliant to PCI Express
Optional external feedback mode
allows zero-delay implementation
Loss-of-lock and loss-of-signal alarm
Simple pin control
Small size: 4x4 mm, 24-QFN
Low power: 45 mA core supply typ
Wide temperature range:
–40 to +85 °C
Contact Silicon Labs for custom
versions
Ordering Information:
See page 32.
Pin Assignments
Independently-configurable outputs
support any frequency or format
0.16 to 710 MHz

HCSL: 0.16 to 250 MHz

CMOS: 0.16 to 200 MHz

SSTL/HSTL: 0.16 to 350 MHz

LVPECL/LVDS:
Applications
Ethernet switch/router
PCI Express 2.0/3.0
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
Description
The Si5334 is a high performance, low jitter clock generator capable of
synthesizing any frequency on each of the device's four differential output
clocks. The device accepts an external reference clock or crystal and generates
four differential clock outputs, each of which is independently configurable to
any frequency up to 350 MHz and select frequencies to 710 MHz. Using Silicon
Labs' patented MultiSynth technology, each output clock is generated with very
low jitter and zero ppm frequency error. To provide additional design flexibility,
each output clock is independently configurable to support any signal format and
reference voltage. The Si5334 provides low jitter frequency synthesis with
outstanding frequency flexibility in a space-saving 4 x 4 mm QFN package. The
device configuration is factory or field programmed and, upon power up, the
device will begin operation in the predefined configuration without user
intervention. The device supports operation from a 1.8, 2.5, or 3.3 V core supply.
Rev. 1.3
Copyright © 2017 by Silicon Laboratories
Si5334

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