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Clock Recovery
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Optical/Electrical Clock Recovery
N1077B
N1077B Optical/Electrical Clock Recovery provides standards-compliant clock recovery capabilities for multimode and single-mode optical as well as electrical signals from 125 MBd up to 64 GBd PAM4 and NRZ
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Electrical And Optical Clock Recovery
Series Oscilloscopes
Provide clock recovery capabilities for optical and electrical NRZ and PAM-4 signals up to 64 GBaud with jitter spectrum analysis (JSA) and integrated variable equalizers advanced features
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8 Series Optical Clock Recovery
The 8 Series Optical Clock Recovery is a fast, flexible and reliable instrument for assisting in the validation of current and future optical designs. With all the applicable standard rates in the 26 and 53 GBd data rate ranges – no options required – the TCR801 Optical Clock Recovery is a crucial component for any bench or rack aimed at verifying the latest high-speed optical standards. Featuring quick lock capabilities and a sensitive front end for low power signals, this instrument simplifies the challenges associated with today’s optical testing.
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Optical Clock-Recovery Modules / O-CR
Optical clock-recovery modules are required when a clock signal is not present to trigger the oscilloscope or when it is better to use the embedded clock present in the data stream, such as for 100G Lambda optical signals.Clock-recovery modules are essential for transmitter signal characterization.
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Clock and Data Recovery/Retiming
Analog Devices provides single rate, multiple rate, and continuous tuning clock and data recovery (CDR) ICs for metro, long haul, DWDM, FSO, instrumentation, and other applications. Our any rate CDR ICs allow easy integration into protocol agnostic applications, automatically locking onto incoming data streams at any rate, from 10 Mbps to 2.7 Gbps or from 6.5 Mbps to 11.3 Gbps, without the aid of a reference clock while reporting the acquired data rate over the I2C interface. With a proprietary dual loop design, our any rate CDR ICs feature fast locking with superior jitter performance.
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Clock & Data Recovery
Macom Technology Solutions Holdings Inc.
Macom offers a series of high-performance, flexible, clock-and-data recovery (CDR) devices to remove the jitter from signals in high data rate systems. Our family of CDRs spans from 10Gbps to 100Gbps per lane in multitude of configurations including single lane and multi-lane devices, standalone CDRs and integrated combo devices with TIA and laser drivers. This wide portfolio of configurations offers customers design flexibility and cost-optimization in systems for Ethernet and OTN based network infrastructure markets and extending to high performance computing, storage-area-networking (SAN), industrial and aerospace applications.
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28/45 GHz Dual Optical Channel DCA-M with Option CDR
N1092B
High accuracy, low cost solution for optical waveform analysis including solutions for 8.4 through 64 GBaud, very low noise and jitter, fast sampling rates for high throughput, and integrated clock recovery available.
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Electrical Clock Recovery
N1076B
The N1076B Electrical Clock Recovery provides standards-compliant clock recovery capability on electrical NRZ and PAM4 signals from 125 MBd up to 64 GBd
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28/45 GHz Single Optical Channel DCA-M with Option CDR
N1092A
High accuracy, low cost solution for optical waveform analysis including solutions for 8.4 through 64 GBaud, very low noise and jitter, fast sampling rates for high throughput, and integrated clock recovery available.
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50/85 GHz Precision Waveform Analyzer
N1060A
Gain margin with high instrument performance: high BW (50 GHz or 35 GHz) receivers, ultra-low residual jitter (< 50 fs typical); adjustable clock recovery peaking & loop BW Reduce development time through instrument flexibility with integrated clock recovery (data rates 50 Mb/s to 32 Gb/s) & integrated pickoffs & phase matched cables for simple one connection "triggerless" operation Reduce validation time with analysis tools like Jitter Spectrum Analysis & SW Clock Recovery Emulation
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Optical/Electrical Clock Recovery
N1077A
50 MBaud to 32 GBaud data rate range (continuous) on optical and electrical designs Provides standards-compliant clock recovery (CR) for NRZ and PAM-4 data signals Yields flexible, compact, high-sensitivity CR design with an integrated amplified optical-to-electrical (O/E) converter Gain optimal ease-of-use with integrated splitter and bulk optics coupler (Option SMS)
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Advanced Measurement Package For M8000 Series Of BERT Test Solutions
M8070ADVB
The M8070B system software for the M8000 Series of BER Test Solutions can be enhanced by additional software packages, such as M8070ADVB or M8070EDAB to get the best out of the M8040A, M8020A and M8030A J-BERT platforms.The M8070ADVB Advanced Measurement package offers advanced features like automated jitter tolerance test and parameter sweeps, eye diagram measurement or the integration of external equipment such as electrical and optical clock recovery or error analysis using a real-time scope.
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Optical / Electrical Clock Recovery
N1078A
N1078A Optical/Electrical Clock Recovery provides standards-compliant clock recovery capabilities for single-mode optical as well as electrical signals from 125 MBd up to 64 GBd PAM4 and NRZ
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Continuous Time Interval Analyzer - PXI
GT668PXI-40
A true breakthrough in high-speed Time Measurement and test technology, GuideTech’s GT668PXI-40 leverages the power of its CTIA continuous time-stamping technology, eliminating the need for supplemental triggers, pattern markers or clock recovery circuits.GuideTech’s CTIAs enables serial interfaces pattern verification and full jitter analysis in milliseconds for fast, automated characterization and high-throughput production test on all ATE platforms, including low-cost and in-house testers.GT668PXI-40 cards can be expanded up to 36 Channels Single Ended Input in a single 3U PXI chassis.
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mAEStro Digital Audio Re-Clocking Distribution Amplifier
The mAEStro ADA-100 receives AES/EBU (AES3) or S/PDIF digital audio and provides four re-clocked digital audio outputs. It automatically detects sample rates from 32kHz to 96kHz with low-jitter clock recovery. The outputs are completely regenerated using a jitter-free clock that is locked to the source input. The rugged self-contained metal enclosure has a number of mounting options from desktop, to rear side-rail rack mounting, to ganged front-side or rear-side rack mounting.
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mAEStro Audio Digital to Analog Converter
The mAEStro ADAC-100 receives AES/EBU (AES3) or S/PDIF digital audio and converts it to two channels of analog audio. It automatically detects sample rates up to 96kHz with low-jitter clock recovery. Two balanced line-level audio outputs are provided on XLR connectors on the rear panel. For convenient monitoring, a stereo headphone mini-jack and volume control are provided on the front panel.
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Clocks
Spaceborn applications demand increased bandwidth and performance in their electronic subsystems.
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Recovery Tools
PCAID III
Write protection function to protect important data is installed. Data can be protected from erroneous writing.High speed transfer thanks to USB 3.0 connection.Easy HDD attaching and removal thanks to one-touch docking.Data can be backed up and restored from HDD connected to a PC by using software sold separately (Disklosure).Backup data of multiple computers can be stored in one PCAID III by using software sold separately (Disklosure).
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Universal Clock
DXD-8
The DXD-8 Universal Clock, a precision multiformat reference generator generates up to 4 independent video syncs and audio clocks simultaneously. With the PTP option, it acts as a bridge between an IP infrastructure and legacy A/V equipment.
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Clock Oscillators
A crystal clock oscillator (sometimes referred to as a 'Standard Packaged Crystal Oscillator' or SPXO) is a 'plug and play' quartz crystal. It combines a quartz crystal resonator with an oscillator circuit in a single package to provide a fully functioning stand-alone oscillator circuit.
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Atomic Clocks
Society has become dependent on atomic time. Atomic clocks underpin our financial transactions, communications services and broadcast services, but they are expensive to produce and maintain.Quantum technology brings a new generation of clocks which are smaller, more accurate and cost effective, and as a result this is driving an evolution of new time-critical products and services.
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Clock Generator
CG-2000
Supports power supply and video / audio clock redundancy. The top model in the CG series equipped with various functions required for broadcasting stations and post-professional sites.
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AATCC Wrinkle Recovery Tester
M272
To determine a fabric's ability to recover after wrinkling under a predetermined load for a set period of time. Set of 3-D plastic replicas are available to grade fabrics.
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Clock Generator
CG-1800
A video sync / master clock generator that can build a flexible high-quality sound synchronization system.
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GPS Wireless Clock
Signals & Systems India Private Limited
GPS Clock offers an easy, cost-effective solution for accurate, synchronized time displays without expensive, disruptive installation procedures. Because there are no wiring requirements, installation times are drastically reduced. It is ideal for renovation projects, as there is no need to worry about installation work, as well as new construction. The GPS clock can be synchronized through GPS Antenna or Wireless Antenna. The display can be wall/panel / tabletop mountable. It can be used as a wireless clock to synchronize many wireless slave clocks in and around the buildings.
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Clock Signal Generators
Optellent offers a range of clock signal generators providing clean reference clock signals up to 32 GHz.
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Clock Synchronization
Analog Devices Clock synchronizers are designed for wired networking applications, providing the clock redundancy functionality needed to maximize system uptime. Our technology supports clock synchronization with common standards, including 1 pulse per second (PPS) output signal from a GPS receiver. GPS signals are broadly available and utilize an extremely stable atomic clock as its time base, but they are often noisy. Systems rely on the IEEE1588 timing protocol to establish synchronous communications across the wired network, including synchronous Ethernet and synchronous digital hierarchy (SDH) to optical transport network (OTN) mapping/demapping. The IEEE1588 protocol has emerged as the preferred method for Clock synchronizing systems throughout both computer networks and local area networks (LAN).
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Clock Drivers
Multiple timing signals ("clocks") are required by CCDs, IR FPAs, and some CMOS image sensors to transport electrical charge across the array to a sense amplifier for conversion into image data. Pulse Instruments offers a line of "clock drivers" for generating these timing signals. The parameters of these clocks (clock rate, pulse width, pulse amplitude, rise- and fall-times, etc.) greatly influence the behavior and performance of the imaging device. Our products take logic-level inputs from a pattern generator and allow the user to adjust the output parameters to suit their device and testing requirements. Clocks can be "tweaked" in real-time to determine optimal operating parameters for a particular device, or else programmed in accordance with a test plan for automated production test.
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Atomic Clocks And Oscillators
Safran is a world leader in rubidium atomic clocks and oscillators, quartz crystal (OCXO), maser, integrated GPSGlobal Positioning System is a navigation satellite system. See also/GNSS, and related testing instrument technologies that rely on accurate atomic time and the rubidium standard. Whether you need short or long term stability, our decades of experience designing and manufacturing products is trusted by companies ranging from global enterprises to space initiatives.