E5061B KEYSIGHT | Alldatasheet

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Technical content

100 kHz to 1.5/3 GHz 5 Hz to 500 M/1.5 G/3 GHz Data Sheet

All specifications apply over a 23 °C ± 5 °C range (unless otherwise stated) and 90 minutes after the instrument has been turned on. Specification (spec.) Warranted performance. Specifications include guardbands to account for the expected statistical performance distribution, measurement uncertainties, and changes in performance due to environmental conditions. Supplemental information is intended to provide information that is helpful for using the instrument but that is not guaranteed by the product warranty. Typical (typ.) Describes performance that will be met by a minimum of 80% of all products. It is not guaranteed by the product warranty. Supplemental performance data (SPD) Represents the value of a parameter that is most likely to occur; the expected mean or average. It is not guaranteed by the product warranty. General characteristics A general, descriptive term that does not imply a level of performance. Boundary Conditions If the same boundary conditions fall under more than one category in the table, apply the best value. E5061B Test Set Options 50 Ω RF NA options E5061B-115 Transmission/Reflection test set, 100 kHz to 1.5 GHz, 50 Ω system impedance E5061B-215 S-parameter test set, 100 kHz to 1.5 GHz, 50 Ω system impedance E5061B-135 Transmission/Reflection test set, 100 kHz to 3 GHz, 50 Ω system impedance E5061B-235 S-parameter test set, 100 kHz to 3 GHz, 50 Ω system impedance 75 Ω RF NA options E5061B-117 Transmission/Reflection test set, 100 kHz to 1.5 GHz, 75 Ω system impedance E5061B-217 S-parameter test set, 100 kHz to 1.5 GHz, 75 Ω system impedance E5061B-137 Transmission/Reflection test set, 100 kHz to 3 GHz, 75 Ω system impedance E5061B-237 S-parameter test set, 100 kHz to 3 GHz, 75 Ω system impedance LF-RF NA option E5061B-3L3 LF-RF network analyzer with DC bias source, 5 Hz to 500 MHz E5061B-3L4 LF-RF network analyzer with DC bias source, 5 Hz to 1.5 GHz E5061B-3L5 LF-RF network analyzer with DC bias source, 5 Hz to 3 GHz 02 | Keysight | E5061B Network Analyzer, 100 kHz to 1.5/3 GHz, 5 Hz to 500 M/1.5 G/3 GHz - Data Sheet

Table 1. System dynamic range 1,2

1 MHz to 3 GHz, 3 kHz IF bandwidth 95 dB

100 Hz to 9 kHz,10 Hz IF bandwidth 100 dB

1 MHz to 3 GHz, 10 Hz IF bandwidth 120 dB 130 dB

  1. The test port dynamic range is calculated as the difference between the test port rms noise floor and

and interfering signals into account.

Table 2. Corrected system performance with Type-N 50 Ω connectors, 85032F calibration kit,

100 Hz to 100 kHz 100 kHz to 1 GHz 1 GHz to 3 GHz

Figure 1. Transmission uncertainty (specification) Figure 2. Reflection uncertainty (specification)

Table 3. Corrected system performance with Type-N 50 Ω connectors, 85032F calibration kit, Figure 3. Transmission uncertainty (specification) Figure 4. Reflection uncertainty (specification)

Table 10. Uncorrected system performance (correction: off)

Table 11. Test port output frequency

5 Hz to 500 MHz

5 Hz to 3 GHz

Table 12. Test port output power

3 GHz, 0 dBm, relative

Table 13. Test port output signal purity

Table 14. Test port input levels Table 15. Test port input (noise floor)

10 Hz bandwidth –80 dBm (5 to 100 Hz)

10 Hz bandwidth –95 dBm (100 to 300 kHz)

  1. The specification might not be met at the frequencies 25 MHz and 90 MHz Line and Fan related
  2. Maximum test port input level: +10 dBm

Table 16. Test port input (trace noise) Table 17. Test port input (stability)

3 MHz to 3 GHz

Table 18. Test port input (dynamic accuracy) Accuracy of the test port input power reading is relative to –10 dBm reference input power level.

Table 19. Test port input (group delay) 1 phase change within the minimum aperture. and a 10 Hz IF bandwidth. Insertion loss is assumed to be < 2 dB. Figure 19. Group delay (typical)

  1. Group delay is computed by measuring the phase change within a specified step

(determined by the frequency span and the number of points per sweep).

Table 20. Source characteristics output frequency Table 21. Source characteristics output power Table 22. Source characteristics output signal purity Table 23. Source characteristics output impedance

Table 24. Test port input attenuator Table 25. Test port input levels

1.78 Vpeak (at 20 dB attenuation, 1 MΩ)

0.18 Vpeak (at 0 dB attenuation, 1 MΩ)

  1. The specification might not be met at the frequencies 25 MHz, line and fan related frequency.

Table 26. Test port input (trace noise)

30 MHz at –5 dBm, 0 dB attenuation, 50 Ω)

30 MHz at –5 dBm,

Table 27. Test port input (stability) Table 28. Test port input (Dynamic accuracy) 1

  1. Accuracy of the test port input power reading is relative to –25 dBm reference input power level.

Table 29. Test port input impedance

1 MΩ / 30 pF

Table 30. DC bias

  1. DC Switching Transient Noise: ± 30 mV (SPD) when port or power switching occur.

Figure 20. Dynamic accuracy

Table 31. System bandwidths Table 32. Front panel information

15 V ± 5% (400 mA)

  1. Valid pixels are 99.99% and more. Below 0.01% of fixed points of black, blue, green or red are not

Table 33. Rear panel information PC; compatible with USBTMC-USB 488 and USB 2.0.

  1. A third-wire ground is required.

EMC, safety, environment and compliance Description General characteristics EMC European Council Directive 2004/108/EC IEC 61326-1:2012 EN 61326-1:2013 CISPR 11:2009 +A1:2010 EN 55011: 2009 +A1:2010 Group 1, Class A IEC 61000-4-2:2008 EN 61000-4-2:2009 4 kV CD / 8 kV AD IEC 61000-4-3:2006 +A1:2007 +A2:2010 EN 61000-4-3:2006 +A1:2008 +A2:2010 3 V/m, 80-1000 MHz, 1.4 - 2.0 GHz /1V/m, 2.0 - 2.7 GHz, 80% AM IEC 61000-4-4:2004 +A1:2010 EN 61000-4-4:2004 +A1:2010 1 kV power lines / 0.5 kV signal lines IEC 61000-4-5:2005 EN 61000-4-5:2006 0.5 kV line-line / 1 kV line-ground IEC 61000-4-6:2008 EN 61000-4-6:2009 3 V, 0.15-80 MHz, 80% AM IEC 61000-4-8:2009 EN 61000-4-8:2010 30A/m, 50/60Hz IEC 61000-4-11:2004 EN 61000-4-11:2004 ICES/NMB-001 ICES-001:2006 Group 1, Class A AS/NZS CISPR11:2004 Group 1, Class A KN11, KN61000-6-1 and KN61000-6-2 Group 1, Class A Safety European Council Directive 2006/95/EC IEC 61010-1:2001/EN 61010-1:2001 Measurement Category I Pollution Degree 2 Indoor Use LR95111C CAN/CSA C22.2 No. 61010-1-04 Measurement Category I Pollution Degree 2 Indoor Use Environment This product complies with the WEEE Directive (2002/96/EC) marking requirements. The affixed label indicates that you must not discard this electrical/electronic product in domestic household waste. Product Category: With reference to the equipment types in the WEEE Directive Annex I, this product is classed as a “Monitoring and Control instrumentation” product. Do not dispose in domestic household waste. To return unwanted products, contact your local Keysight office, or see www.keysight.com/environment/product/ for more information. 25 | Keysight | E5061B Network Analyzer, 100 kHz to 1.5/3 GHz, 5 Hz to 500 M/1.5 G/3 GHz - Data Sheet

Table 35. Analyzer environment and dimensions Dimensions Height = 235 mm, Width = 432 mm, Depth = 296 mm. removed or shielded from the ambient magnetic field. −80 dB of full-scale response displayed on the screen. magnetically sensitive device or instruments.

Figure 23. Dimensions (side view, in millimeters)

Table 36. Typical cycle time for measurement completion 1, 2 (ms) (Display update: off) Table 37. Typical cycle time for measurement completion 1 (ms) (Display update: on)

  1. Measured with the firmware revision A.02.00.
  1. Measured using a VEE Pro 9.0 program running on a 2.4 GHz Pentium 4. Transferred complex S11 data,
  2. Measured using E5061B VBA macro running inside the analyzer. Transferred complex S11 data.

Table 38. Data transfer time 1 (ms)

Up to 4 independent measurement channels. A measurement channel is coupled to stimulus response settings including frequency, IF bandwidth, power level, and number of points. Number of display windows Each measurement channel has a display window. Up to 4 display windows (channels) can be displayed. Number of traces 4 data traces and 4 memory traces per channel Measurement choices Option 115,135,117 and 137 - S11, S21, Absolute Option 215, 235 and 237 - S11, S21, S12, S22, Absolute Option 3L5 - S11, S21, S12, S22, T/R, T, R, Absolute Measurement parameter conversion Available to convert S-parameters into reflection impedance, transmission impedance, reflection admittance, transmission admittance, and 1/S. Data formats Log magnitude, linear magnitude, phase, expanded phase, positive phase, group delay, SWR, real, imaginary, Smith chart, polar. Data markers 10 independent markers per trace. Reference marker available for delta marker operation. Smith chart format includes 5 marker formats: linear magnitude/phase, log magnitude/ phase, real/imaginary, R + jX, and G + jB. Polar chart format includes 3 marker formats: linear magnitude/phase, log magnitude/phase, and real/imaginary. Marker functions Marker search Max value, min value, multi-peak, multi-target, peak, peak left, peak right, target, target left, target right, and width parameters with user-defined bandwidth values. Marker-to functions Set start, stop, center to active marker stimulus value; set reference to active marker response value; set electrical delay to group delay at active marker. Search range User definable. Tracking Performs marker search continuously or on demand. Fault location functions (Option 010) Transformation to distance and time domain Selectable transformation type from bandpass, lowpass impulse, lowpass step. Selectable window from maximum, normal and minimum. Impedance measurement analysis (Option 005) Impedance Measurement Selectable Impedance Parameter and Equivalent Circuit analysis Capability Wireless power transfer analysis (Option 006) Wireless power transfer circuit evaluation Selectable parameters related to wireless power transfer analysis. 2D/3D simulation capability. 1. Option 006 can be installed with option 215/235/3L5 only 31 | Keysight | E5061B Network Analyzer, 100 kHz to 1.5/3 GHz, 5 Hz to 500 M/1.5 G/3 GHz - Data Sheet

User definable from 2 to 1601 Sweep type Linear sweep, segment sweep, log sweep, power sweep and DC bias sweep Segment sweep Define independent sweep segments. Set number of points, test port power levels, IF bandwidth, delay time, sweep time independently for each segment. Sweep trigger Set to continuous, hold, or single, sweep with internal, external, manual, or bus trigger. Power Set source power from –45 dBm to 10 dBm. The power slope function compensates source power error. Display data Display current measurement data, memory data, or current measurement and memory data simultaneously Trace math Vector addition, subtraction, multiplication or division of measured complex values and memory data Title Add custom title to each channel window. Titles are printed on hardcopies of displayed measurements Autoscale Automatically selects scale resolution and reference value to vertically center the trace Electrical delay Offset measured phase or group delay by a defined amount of electrical delay, in seconds Phase offset Offset measured phase or group delay by a defined amount in degrees Statistics Calculates and displays mean, standard deviation and peak-to-peak deviation of the data trace 32 | Keysight | E5061B Network Analyzer, 100 kHz to 1.5/3 GHz, 5 Hz to 500 M/1.5 G/3 GHz - Data Sheet

Measurement calibration Measurement calibration significantly reduces measurement uncertainty due to errors caused by system directivity, source and load match, tracking and crosstalk. Full 2-port calibration removes all the systematic errors for the related test ports to obtain the most accurate measurements. Calibration types available Response Simultaneous magnitude and phase correction of frequency response errors for either reflection or transmission measurements. Response and isolation Compensates for frequency response and crosstalk errors of transmission measurements. Enhanced response Compensates for frequency response and source match errors. One-port calibration Compensates for directivity, frequency response and source match errors. Full 2-port calibration (option 215, 235, 217, 237, 3L5) Compensates for directivity, source match, reflection tracking, load match, transmission tracking and crosstalk. Crosstalk calibration can be omitted. Interpolated error correction With any type of accuracy enhancement applied, interpolated mode recalculates the error coefficients when the test frequencies are changed. The number of points can be increased or decreased and the start/stop frequencies can be changed. Velocity factor Enter the velocity factor to calculate the equivalent physical length. Reference port extension Redefine the measurement plane from the plane where the calibration was done. 33 | Keysight | E5061B Network Analyzer, 100 kHz to 1.5/3 GHz, 5 Hz to 500 M/1.5 G/3 GHz - Data Sheet

Internal hard disk drive Store and recall instrument states, calibration data, and trace data into internal hard drive. Trace data can be saved in CSV (comma separated value) format. All files are MS-DOS- compatible. Instrument states include all control settings, limit lines, segment sweep tables, and memory trace data. File sharing Internal hard disk drive (D:) can be accessed from an external Windows PC through LAN. Screen hardcopy Printouts of instrument data are directly produced on a printer through USB interfaces. System capabilities Familiar graphical user interface The analyzer employs a graphical user interface based on Windows operating system. There are three ways to operate the instrument manually: you can use a hardkey interface, touch screen interface or a mouse interface. Limit lines Define the test limit lines that appear on the display for pass/ fail testing. Defined limits may be any combination of horizontal/ sloping lines and discrete data points. GPIB/LAN/USB Internal SCPI × × COM × Methods Internal analyzer execution Applications can be developed in a built-in VBA (Visual Basic for Applications) language. Applications can be executed from within the analyzer via COM (component object model) or using SCPI. Controlling via GPIB The GPIB interface operates to IEEE 488.2 and SCPI protocols. The analyzer can be controlled by a GPIB external controller. The analyzer can control external devices using a USB/GPIB interface. LAN Protocol TCP/IP Function Telnet, SICL-LAN USB Protocol USB Test and Measurement Class (TMC) interface that communicates over USB, complying with the IEEE 488.1 and IEEE 488.2 standards. 34 | Keysight | E5061B Network Analyzer, 100 kHz to 1.5/3 GHz, 5 Hz to 500 M/1.5 G/3 GHz - Data Sheet

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