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8T49N283C-DDDNLGI8

Description
Clock Generator
CategoryThe embedded processor and controller    Microcontrollers and processors   
File Size1MB,77 Pages
ManufacturerIDT (Integrated Device Technology)
Environmental Compliance
Download Datasheet Parametric View All

8T49N283C-DDDNLGI8 Overview

Clock Generator

8T49N283C-DDDNLGI8 Parametric

Parameter NameAttribute value
Is it Rohs certified?conform to
MakerIDT (Integrated Device Technology)
package instructionHVQCCN,
Reach Compliance Codecompliant
Other featuresIT ALSO OPERATES AT 3.3V NOMINAL SUPPLY
JESD-30 codeS-XQCC-N56
length8 mm
Number of terminals56
Maximum operating temperature85 °C
Minimum operating temperature-40 °C
Maximum output clock frequency1000 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 frequency40 MHz
Maximum seat height1 mm
Maximum supply voltage2.625 V
Minimum supply voltage2.375 V
Nominal supply voltage2.5 V
surface mountYES
technologyCMOS
Temperature levelINDUSTRIAL
Terminal formNO LEAD
Terminal pitch0.5 mm
Terminal locationQUAD
Maximum time at peak reflow temperatureNOT SPECIFIED
width8 mm
uPs/uCs/peripheral integrated circuit typeCLOCK GENERATOR, OTHER
FemtoClock
®
NG Octal Universal
Frequency Translator
8T49N283
Datasheet
General Description
The 8T49N283 has two independent, fractional-feedback PLLs that
can be used as jitter attenuators and frequency translators. It is
equipped with six integer and two fractional output dividers, allowing
the generation of up to 8 different output frequencies, ranging from
8kHz to 1GHz. Four of these frequencies are completely
independent of each other and the inputs. The other four are related
frequencies. The eight outputs may select among LVPECL, LVDS or
LVCMOS output levels.
This makes it ideal to be used in any frequency translation
application, including 1G, 10G, 40G and 100G Synchronous
Ethernet, OTN, and SONET/SDH, including ITU-T G.709 (2009) FEC
rates. The device may also behave as a frequency synthesizer.
The 8T49N283 accepts up to two differential or single-ended input
clocks and a crystal input. Each of the two internal PLLs can lock to
different input clocks which may be of independent frequencies. Each
PLL can use the other input for redundant backup of the primary
clock, but in this case, both input clocks must be related in frequency.
The device supports hitless reference switching between input
clocks. The device monitors all input clocks for Loss of Signal (LOS),
and generates an alarm when an input clock failure is detected.
Automatic and manual hitless reference switching options are
supported. LOS behavior can be set to support gapped or un-gapped
clocks.
The 8T49N283 supports holdover for each PLL. The holdover has an
initial accuracy of ±50ppB from the point where the loss of all
applicable input reference(s) has been detected. It maintains a
historical average operating point for each PLL that may be returned
to in holdover at a limited phase slope.
The device places no constraints on input to output frequency
conversion, supporting all FEC rates, including the new revision of
ITU-T Recommendation G.709 (2009), most with 0ppm conversion
error.
Each PLL has a register-selectable loop bandwidth from 0.5Hz to
512Hz.
Each output supports individual phase delay settings to allow
output-output alignment.
The device supports Output Enable inputs and Lock, Holdover and
LOS status outputs.
The device is programmable through an I
2
C interface. It also
supports I
2
C master capability to allow the register configuration to
be read from an external EEPROM.
Features
Supports SDH/SONET and Synchronous Ethernet clocks
including all FEC rate conversions
Two differential outputs meet jitter limits for 100G Ethernet and
STM-256/OC-768
<0.3ps RMS (including spurs): 12kHz to 20MHz
All outputs <0.5ps RMS (including spurs) 12kHz to 20MHz
Operating modes: locked to input signal, holdover and free-run
Initial holdover accuracy of ±50ppb
Accepts up to two LVPECL, LVDS, LVHSTL or LVCMOS input
clocks
Accepts frequencies ranging from 8kHz up to 875MHz
Auto and manual input clock selection with hitless switching
Clock input monitoring, including support for gapped clocks
Phase-Slope Limiting and Fully Hitless Switching options to
control output phase transients
Operates from a 10MHz to 40MHz fundamental-mode crystal
Generates eight LVPECL / LVDS or sixteen LVCMOS output
clocks
Output frequencies ranging from 8kHz up to 1.0GHz (diff)
Output frequencies ranging from 8kHz to 250MHz (LVCMOS)
Four General Purpose I/O pins with optional support for status &
control:
eight outputs
Lock, Holdover & Loss-of-Signal status outputs
Open-drain Interrupt pin
Four Output Enable control inputs may be mapped to any of the
Programmable PLL bandwidth settings for each PLL:
or 512Hz
Optional Fast Lock function
Programmable output phase delays in steps as small as 16ps
Bypass clock paths for system tests
Power supply modes
V
CC
/ V
CCA
/ V
CCO
3.3V / 3.3V / 3.3V
3.3V / 3.3V / 2.5V
3.3V / 3.3V / 1.8V (LVCMOS)
2.5V / 2.5V / 3.3V
2.5V / 2.5V / 2.5V
2.5V / 2.5V / 1.8V (LVCMOS)
Power down modes support consumption as low as 1.7W (see
Section, “Power Dissipation and Thermal Considerations”
for
details)
-40°C to 85°C ambient operating temperature
Package: 56QFN, lead-free (RoHS 6)
0.5Hz, 1Hz, 2Hz, 4Hz, 8Hz, 16Hz, 32Hz, 64Hz, 128Hz, 256Hz
Register programmable through I
2
C or via external I
2
C EEPROM
Applications
OTN or SONET / SDH equipment Line cards (up to OC-192, and
supporting FEC ratios)
OTN de-mapping (Gapped Clock and DCO mode)
Gigabit and Terabit IP switches / routers including support of
Synchronous Ethernet
Wireless base station baseband
Data communications
©2016 Integrated Device Technology, Inc.
1
Revision H, October 26, 2016

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