Keysight (Agilent) MSOX91304A CALIBRATION and Keysight (Agilent) MSOX91304A REPAIR

 
A calibration by Custom-Cal is performed by engineers with extensive OEM experience. We have the expertise and the necessary standards to perform the Keysight (Agilent) MSOX91304A Calibration, onsite calibration may be available. We specialize in quick turnaround times and we can handle expedited deliveries upon request.

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   Keysight (Agilent) MSOX91304A   Description / Specification:   Spec Sheet 
Keysight (Agilent) MSOX91304A 4+16 Ch 13 GHz Infiniium Mixed Signal Oscilloscope

The Agilent MSOX91304A 4+16 Ch 13 GHz Infiniium Mixed Signal Oscilloscope is engineered for 33 GHz true analog bandwidth that delivers. It comes with more than 15 protocol decoders, including the industry's only 64/66b decoder. The 90000 X-Series protocol tools feature time-correlated markers that let you easily move between the listing window and the waveform. Protocol tools can be used on up to four lanes simultaneously. A 10 MHz reference clock can be input to or output from the scope to allow precise timebase synchronization with more than one oscilloscope, RF instruments or logic analyzers. Serial data equalization for the 90000 X-Series provides fast and accurate equalization using decision feedback equalization (DFE), feed-forward equalization (FFE), and continuous time linear equalization (CTLE) modeling in real time. Serial data equalization software allows you to input your own self-designated tap values to verify your design. Performance characteristics. Analog bandwidth (-3 dB): 13 GHz (2 channel), 13 GHz (4 channel). Rise time/fall time: 32 ps (10 - 90%), 23 ps (20 - 80%). Input impedance: 50 ohm, ± 3%. Sensitivity: 1 mV/div to 1 V/div. Input coupling: DC. Vertical resolution: 8 bits, >= 12 bits with averaging. DC gain accuracy: ± 2% of full scale at full resolution channel scale (± 2.5% for 5mV/div). Maximum input voltage: ± 5 V. Dynamic range: ± 4 div from center screen. RMS noise floor (scope only): 0.28 V (Volts/div, 10 mV), 21.2 V (Volts/div, 1 V). Main timebase range: 2 ps/div to 20 s/div real-time. Main timebase delay range: -200 s to 200 s real-time. Zoom timebase range: 1 ps/div to current main time scale setting. Channel deskew: ±1 ms range, 10 fs resolution. Time scale accuracy: ± [0.1 ppm (immediately after calibration) ±0.1 ppm/year (aging)]. Maximum real-time sample rate: 40 GSa/s (4 channels simultaneously), 80 GSa/s (2 channels simultaneously). Memory depth per channel Standard: 50 Mpts on 4 channels, 100 Mpts on 2 channels. Digital Input Channels: 16. Threshold groupings: 2 individual threshold settings (1 for channels 0-7 and 1 for channels 8-15). Threshold selections TTL (1.4V), CMOS, (2.5V), ECL (-1.3V), PECL (3.7V), user defined (±3.00 V in 100 mV increments). Analog bandwidth: 3 GHz (depends on probing). Digital Channels Maximum real time sample rate: 10 GSa/s at 16 channels, 20 GSa/s at 8 channels. Digital Channels Maximum memory depth per channel: Up to 1 Gpt. Digital Channels Minimum width glitch detection: 50 pS. Display: 12.1-inch color XGA TFT-LCD with touch screen.



 

Standard Calibration $1,000.00 *
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*This is a Web introductory price for one calibration of the Keysight (Agilent) MSOX91304A. Price does not in most cases include measurement performance data. Pricing does include NIST traceable calibration and issue of a calibration certificate and calibration label. Pricing may vary slightly due to volume and location of laboratory supporting calibration. Volume pricing may apply. On-site fees may apply depending on logistics, location and volume of work to be completed during the visit.


Related Bench Equipment Terms and Definitions. For a complete list go to our  Terms and Definitions Page.

Available Gain
Available Gain is the ratio, at a specific frequency, of power available from the output to the power in from the source.

Decibel (dB)
A unit of measurement of power which indicates relative power. A -10 dB means a reduction in power by 10 times, -20 dB means another 10 times or 100 times overall, -30 means another 10 times or 1000 times overall and so on.

Mismatch Uncertainty
Mismatch Uncertainty is caused by re-reflections between one device (the source) and the device that follows it (the load).

Pulse Power
Pulse Power, the energy transfer rate is averaged over the pulse width. Pulse width is considered to be the time between the 50 percent risetime/falltime amplitude points. Pulse power averages out any aberrations in the pulse envelope such as overshoot or ringing.


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