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Jitter Analysis
Measure timing changes in a circuit.
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Circuit Simulation, Power Analysis and Jitter Analysis Design Tools
GreenPoint®
The GreenPoint Design Simulation Tool is an interactive online design and verification tool to help you generate and validate an electronic design. The simulation module provides an interactive design and verification environment. The power analysis module provides an interactive environment to analyze the performance of intelligent power modules (IPMs). The Phase Noise Explorer module enables an interactive environment for advanced phase noise/jitter analysis of clock tree designs.
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Jitter And Eye Diagram Analysis Tools
DPOJET
DPOJET is the premiere eye diagram, jitter and timing analysis package available for real-time oscilloscopes.Operating in the Tektronix DPO7000, DPO70000 and DSA70000 Series oscilloscopes. Jitter and Timing Analysis for Clocks and Data Signals. Real-Time Eye Diagram (RT-Eye™) Analysis*1. TekWizard™ Interface for One-Button and Guided Jitter Summaries.
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GL Products Online & Interactive Demos
*NetSurveyorWeb™ is a centralized VoIP network monitoring system. A number of GL's PacketScan™ probes and/or,PacketProbes™ are deployed in remote locations across the network to passively monitor VoIP traffic. Whenever a monitored call completes, the scan/probe calculates a variety of quality metrics (MOS, loss, delay, jitter, etc) and sends the metrics to the central Oracle database for storage.**The PacketScan™ is a feature-robust Windows® based software tool that captures and monitors live IP traffic. In the VoIP world, it can monitor and measure SIP, H323, Megaco, MGCP, T.38 and video calls. In addition to quality metricsPacketScan™ also captures signaling information and sends that to the NetSurveyorWeb™ database as well.**GL's PacketProbe™ is an advanced CPE(Customer Premises Equipment) based VoIP monitoring reporting and diagnostic appliance, stemming from GL's suite of market leading voice analysis tools.
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xDSL PDH Analyzers
Wuhan Sunma Technology Co., Ltd.
xDSL / PDH Analyzer mainly used for comprehensive transmission test of SDH/PDH network and equipment and widely applied in the R&D, manufacture, acceptance inspection, performance monitoring, maintenance and measuring of networks and equipment. The instrument SunmaFiber provided can insert and measure varieties of errors and alarms in PDH and SDH systems (including on-line and off-line test), perform performance analysis on various errors as well as modulate and test jitter signals at a max. test rate of 2488MHz (STM16).
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E1/Datacom Transmission Analyzer
DTA-BERT
DTA-BERT E1/Datacom Transmission Analyzer can perform E1 transmission performance test (BERT) and status monitoring on data link (V.35, V.24/RS232, RS449, RS530, X.21). Model T can also perform G.703-64K bit error test, PCM31/30 test and Jitter test. Featuring comprehensive functions, easy operation and compact design, DTA-BERT provides total solutions for E1 line analysis and maintenance.
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Digital Storage Oscilloscope
SDS6000A
The SDS6000A series employs Siglent’s SPO technology with a maximum waveform capture rate of up to 170,000 wfm/ s (normal mode, up to 750,000 wfm/s in Sequence mode), 256-level intensity grading display function plus a color temperature display mode. It also employs an innovative digital trigger system with high sensitivity and low jitter. The trigger system supports multiple powerful triggering modes including serial bus triggering. Tools such as History waveform recording, Search and Navigate functions, Mask Test, Bode Plot, Power Analysis, and Eye/Jitter Analysis allow for extended waveform records to be captured, stored, and analyzed. An impressive array of measurement and math capabilities, options for a 25 MHz arbitrary waveform generator, as well as serial decoding are also features of the SDS6000A Digital Oscilloscope.
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Plus Super Phosphor Oscilloscopes
SDS2000X
The SDS2000X Plus series employs SIGLENT’s SPO technology with a maximum waveform capture rate of up to 120,000 wfm/s (normal mode, up to 500,000 wfm/s in Sequence mode), 256-level intensity grading display function plus a color temperature display mode. It also employs an innovative digital trigger system with high sensitivity and low jitter. The trigger system supports multiple powerful triggering modes including serial bus triggering. History waveform recording, Sequence acquisition, Search and Navigate functions allow for extended waveform records to be captured, stored, and analyzed. An impressive array of measurement and math capabilities, options for a 50 MHz waveform generator, as well as serial decoding, mask test, bode plot, and power analysis are also features of the SDS2000X Plus. A 10-bit acquisition mode helps to satisfy applications which require more than 8-bit resolution.
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Super Phosphor Oscilloscopes
SDS2000X-E Series
The SDS2000X-E series employs a new generation of SPO technology. With its excellent signal fidelity, background noise is lower than similar products in the industry. It has a minimum vertical input range of 500 uV/div, an innovative digital trigger system with high sensitivity and low jitter, and a waveform capture rate of 400,000 frames/sec (sequence mode). It also employs a 256-level intensity grading display function and a color temperature display mode not found in other models in this class. Siglent’s newest oscilloscope offering supports multiple powerful triggering modes including serial bus triggering and decoding. History waveform recording and sequential triggering allow for extended waveform records to be captured, stored, and analyzed. Also included is the deep memory FFT. This math function uses upto 1 M samples for the FFT calculation, providing the SDS2000X-E with very high frequency resolution. The hardware co-processor executes true fast measurement and math to all of 28M sample points so that there is minimal distortion on analysis. It also supports searching and navigating, on-screen Bode plot, 16 channel digital /MSO (optional), an external USB powered 25 MHz AWG function generator module (option), a USB WIFI adapter for wireless control and monitoring (option), and an embedded application that allows remote control via web browser. The features and high-performance of the SDS2000X-E oscilloscopes cannot be matched else anywhere at this price.
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PC Analysis Software
TekScope
Get the analysis capability of an award-winning oscilloscope on your PC. Analyze waveforms anywhere, anytime. The basic license lets you view and analyze waveforms, perform many types of measurements and decode the most common serial buses - all while remotely accessing your oscilloscope. Advanced license options add capabilities such as multi-scope analysis, more serial bus decoding options, jitter analysis and power measurements.
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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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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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Computer-Based Instruments
GT210PXIe
With the GT210PXIe you can determine any frequency to 0.01 part per million (eight digits) in just 1 mS, and resolve each time measurement to 8pS. Couple that with 2300 measurements per second, one of the fastest rates available and you can acquire more data in a single second than a typical GPIB counter can in one minute! Faster measurements and higher resolution, along with built-in statistics functions give you a more thorough analysis of your signal. Standard deviation, peak to peak jitter, or a graph of the measurements are available at the push of a button.
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Computer-Based Instruments
GT210PXI
GuideTech’s GT210PXI 3U form factor, meets industrial standard chassis with an expandable platform, achieving optimal test system with optimal cost. The ability to precisely resolve frequency and time yields both increased accuracy as well as reduced measurement time. For example, with the GT210PXI-1 you can determine any frequency to 0.01 part per million (eight digits) in just 1 mS, and resolve each time measurement to 8pS. Couple that with 2300 measurements per second, one of the fastest rates available and you can acquire more data in a single second than a typical GPIB counter can in one minute! Faster measurements and higher resolution, along with built-in statistics functions give you a more thorough analysis of your signal. Standard deviation, peak to peak jitter, or a graph of the measurements are available at the push of a button.
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Computer-Based Instruments
GT210PCIe
with the GT210PCIe you can determine any frequency to 0.01 part per million (eight digits) in just 1 mS, and resolve each time measurement to 8pS. Couple that with 2300 measurements per second, one of the fastest rates available and you can acquire more data in a single second than a typical GPIB counter can in one minute! Faster measurements and higher resolution, along with built-in statistics functions give you a more thorough analysis of your signal. Standard deviation, peak to peak jitter, or a graph of the measurements are available at the push of a button.
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Computer-Based Instruments
GT210PCI
with the GT210PCI you can determine any frequency to 0.01 part per million (eight digits) in just 1 mS, and resolve each time measurement to 8pS. Couple that with 2300 measurements per second, one of the fastest rates available and you can acquire more data in a single second than a typical GPIB counter can in one minute! Faster measurements and higher resolution, along with built-in statistics functions give you a more thorough analysis of your signal. Standard deviation, peak to peak jitter, or a graph of the measurements are available at the push of a button.
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Enhanced Time-Domain Analysis With TDR
S95011B
This application enables the analyzer to perform enhanced time domain analysis for high-speed data applications. All functionality of the S95010B are included (TDR/TDT mode). In addition, the S95011B enables more detailed measurements and evaluations, such as eye-diagram / mask modes, without adding PLTS software. Jitter and emphasis / equalization capabilities enable simulation of real-world signals and environment. The S95011B covers up to 53 GHz bandwidth. Full calibration is available and the automatic deskew ensures easy removal of fixture and probe effects. To get the best accuracy, mechanical calibration kits or ECal with DC option (i.e., N469xD or N4433D with Option 0DC) are recommended.
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SSA-J Precision Clock Jitter Analysis Software
E5001A
To meet the demanding needs of today's advanced digital communication systems, Keysight offers Precision Clock Jitter Analysis software (E5001A SSA-J) for more precise and accurate characterization and evaluation of clock-signal jitter.
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Infiniium V-Series Oscilloscope: 13 GHz, 4 Analog Channels
DSAV134A
13 GHz analog bandwidth (upgradable)4 analog channels Capture a longer signal trace with up to 80 GSa/s sample rate and 2 Gpts of acquisition memory Get the best signal integrity with the low noise floor (1.09 mVrms at 50 mV/div) and lowest jitter measurement floor (100 fs)See better measurement accuracy with ENOB values in excess of 5.5 and a SFDR exceeding 50 dBC Improve your testing with the broadest range of jitter, trigger, analysis and protocol tools (featuring Precision Probe)
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Infiniium V-Series Oscilloscope: 16 GHz, 4 Analog Channels
DSAV164A
16 GHz analog bandwidth (upgradable)4 analog channels Capture a longer signal trace with up to 80 GSa/s sample rate and 2 Gpts of acquisition memory Get the best signal integrity with the low noise floor (1.32 mVrms at 50 mV/div) and lowest jitter measurement floor (100 fs)See better measurement accuracy with ENOB values in excess of 5.5 and a SFDR exceeding 50 dBC Improve your testing with the broadest range of jitter, trigger, analysis and protocol tools (featuring Precision Probe)
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Infiniium V-Series Oscilloscope: 25 GHz, 4 Analog Channels
DSOV254A
25 GHz analog bandwidth (upgradable)4 analog channels Capture a longer signal trace with up to 80 GSa/s sample rate and 2 Gpts of acquisition memory Get the best signal integrity with the low noise floor (1.73 mVrms at 50 mV/div) and lowest jitter measurement floor (100 fs)See better measurement accuracy with ENOB values in excess of 5.5 and a SFDR exceeding 50 dBC Improve your testing with the broadest range of jitter, trigger, analysis and protocol tools (featuring Precision Probe)
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Infiniium V-Series Oscilloscope: 16 GHz, 4 Analog Channels
DSOV164A
16 GHz analog bandwidth (upgradable)4 analog channels Capture a longer signal trace with up to 80 GSa/s sample rate and 2 Gpts of acquisition memory Get the best signal integrity with low noise floor (1.32 mVrms at 50 mV/div) and lowest jitter measurement floor (100 fs)See better measurement accuracy with ENOB values in excess of 5.5 and a SFDR exceeding 50 dBC Improve your testing with the broadest range of jitter, trigger, analysis and protocol tools (featuring Precision Probe)
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Infiniium V-Series Oscilloscope: 13 GHz, 4 Analog Channels
DSOV134A
13 GHz analog bandwidth (upgradable)4 analog channels Capture a longer signal trace with up to 80 GSa/s sample rate and 2 Gpts of acquisition memory Get the best signal integrity with low noise floor (1.09 mVrms at 50 mV/div) and lowest jitter measurement floor (100 fs)See better measurement accuracy with ENOB values in excess of 5.5 and a SFDR exceeding 50 dBC Improve your testing with the broadest range of jitter, trigger, analysis and protocol tools (featuring Precision Probe)
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Infiniium V-Series Oscilloscope: 25 GHz, 4 Analog Channels
DSAV254A
25 GHz analog bandwidth (upgradable)4 analog channels Capture a longer signal trace with up to 80 GSa/s sample rate and 2 Gpts of acquisition memory Get the best signal integrity with the low noise floor (1.73 mVrms at 50 mV/div) and lowest jitter measurement floor (100 fs)See better measurement accuracy with ENOB values in excess of 5.5 and a SFDR exceeding 50 dBC Improve your testing with the broadest range of jitter, trigger, analysis and protocol tools (featuring Precision Probe)
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Infiniium V-Series Oscilloscope: 20 GHz, 4 Analog Channels
DSOV204A
20 GHz analog bandwidth (upgradable)4 analog channels Capture a longer signal trace with up to 80 GSa/s sample rate and 2 Gpts of acquisition memory Get the best signal integrity with the low noise floor (1.54 mVrms at 50 mV/div) and lowest jitter measurement floor (100 fs)See better measurement accuracy with ENOB values in excess of 5.5 and a SFDR exceeding 50 dBC Improve your testing with the broadest range of jitter, trigger, analysis and protocol tools (featuring Precision Probe)
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Infiniium V-Series Oscilloscope: 20 GHz, 4 Analog Channels
DSAV204A
20 GHz analog bandwidth (upgradable)4 analog channels Capture a longer signal trace with up to 80 GSa/s sample rate and 2 Gpts of acquisition memory Get the best signal integrity with the low noise floor (1.54 mVrms at 50 mV/div) and lowest jitter measurement floor (100 fs)See better measurement accuracy with ENOB values in excess of 5.5 and a SFDR exceeding 50 dBC Improve your testing with the broadest range of jitter, trigger, analysis and protocol tools (featuring Precision Probe)
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Infiniium V-Series Oscilloscope: 8 GHz, 4 Analog Channels
DSAV084A
8 GHz analog bandwidth (upgradable)4 analog channels Capture a longer signal trace with up to 80 GSa/s sample rate and 2 Gpts of acquisition memory Get the best signal integrity with the low noise floor (1.04 mVrms at 50 mV/div) and lowest jitter measurement floor (100 fs)See better measurement accuracy with ENOB values in excess of 5.5 and a SFDR exceeding 50 dBC Improve your testing with the broadest range of jitter, trigger, analysis and protocol tools (featuring Precision Probe)
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Infiniium V-Series Oscilloscope: 33 GHz, 4 Analog Channels
DSAV334A
33 GHz analog bandwidth4 analog channels Capture a longer signal trace with up to 80 GSa/s sample rate and 2 Gpts of acquisition memory Get the best signal integrity with the low noise floor (2.09 mVrms at 50 mV/div) and lowest jitter measurement floor (100 fs)See better measurement accuracy with ENOB values in excess of 5.5 and a SFDR exceeding 50 dBC Improve your testing with the broadest range of jitter, trigger, analysis and protocol tools (featuring Precision Probe)
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Infiniium V-Series Oscilloscope: 33 GHz, 4 Analog Channels
DSOV334A
33 GHz analog bandwidth4 analog channels Capture a longer signal trace with up to 80 GSa/s sample rate and 2 Gpts of acquisition memory Get the best signal integrity with low noise floor (2.09 mVrms at 50 mV/div) and lowest jitter measurement floor (100 fs)See better measurement accuracy with ENOB values in excess of 5.5 and a SFDR exceeding 50 dBC Improve your testing with the broadest range of jitter, trigger, analysis and protocol tools (featuring Precision Probe)
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Infiniium V-Series Oscilloscope: 8 GHz, 4 Analog Channels
DSOV084A
8 GHz analog bandwidth (upgradable)4 analog channels Capture a longer signal trace with up to 80 GSa/s sample rate and 2 Gpts of acquisition memory Get the best signal integrity with low noise floor (1.04 mVrms at 50 mV/div) and lowest jitter measurement floor (100 fs)See better measurement accuracy with ENOB values in excess of 5.5 and a SFDR exceeding 50 dBC Improve your testing with the broadest range of jitter, trigger, analysis and protocol tools (featuring Precision Probe)
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Digital Oscilloscopes
SIGLENT digital oscilloscopes provide the perfect balance between features and price. With bandwidths from 50 MHz to 2 GHz, low noise vertical scales down to 500 uV/div, and features like Eye diagram / Jitter analysis, serial decoding and MSO capabilities, SIGLENT will quickly become your scope of choice.