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Keysight 2-Port and 4-Port PNA-L Network Analyzer N5239A 300 kHz to 8.5 GHz N5231A 300 kHz to 13.5 GHz N5232A 300 kHz to 20 GHz
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This is a complete list of the technical specifications for the N5239A, N5231A and N5232A PNA-L Series network analyzers with the following options: 2-Port, All Models Option 200 - 2-port base model with standard test set. Option 216 - To base model, adds front-panel jumpers, and source attenuators (extended power range). 4-Port N5231A or N5232A Option 400 - 4-port base model with standard test set. Option 416 - To base model, adds front-panel jumpers, and source attenuators (extended power range). See block diagrams for all models and options beginning on page 37. Definitions All specifications and characteristics apply over a 25 °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. Characteristic (char.): A performance parameter that the product is expected to meet before it leaves the factory, but that is not verified in the field and is not covered by the product warranty. A characteristic includes the same guardbands as a specification. Typical (typ.): Expected performance of an average unit which does not include guardbands. It is not covered by the product warranty. Typical values are produced by averaging the measured data across each frequency band. Nominal (nom.): A general, descriptive term that does not imply a level of performance. It is not covered by the product warranty. Calibration: The process of measuring known standards to characterize a network analyzer's systematic (repeatable) errors. Corrected (residual): Indicates performance after error correction (calibration). It is determined by the quality of calibration standards and how well "known" they are, plus system repeatability, stability, and noise. Uncorrected (raw): Indicates instrument performance without error correction. The uncorrected performance affects the stability of a calibration. Standard: When referring to the analyzer, this includes no options unless noted otherwise. Notes: This document provides technical specifications for the 85052B, N4691B and N4433A calibration kits. Please download our free Uncertainty Calculator from http://www.keysight.com/find/na_calculator to generate the curves for your calibration kit and PNA setup.
Corrected System Performance The specifications in this section apply for measurements made with the N5231A and N5232A PNA network analyzers with the following conditions: 10 Hz IF bandwidth No averaging applied to data Isolation calibration with an averaging factor of 8 System Dynamic Range and Receiver Dynamic Range System Dynamic Range is defined as the specified source maximum output power (spec) minus the noise floor (spec). Extended Dynamic Range at Direct Access Input is defined as the specified source maximum output power (spec) minus the direct receiver access input noise floor (spec). Receiver Dynamic Range is defined as the test port compression at 0.1 dB (typical) minus the noise floor (typical). The effective dynamic range must take measurement uncertainties and interfering signals into account. The direct receiver access input extended dynamic range is calculated as the difference between the direct receiver access input noise floor and the source maximum output power. This s et-up should only be used when the receiver input will never exceed its maximum receiver input. When the analyzer is in segment sweep mode, it can have predefined frequency segments which will output a higher power level when the extended dynamic range is required (i.e. devices with high insertion loss), and reduced power when the maximum receiver input level will occur (i.e. devices with low insertion loss). The extended range is only available in one-path transmission measurements. It may typically be degraded at particular frequencies below 500 MHz due to spurious receiver residuals.
Table 1a. System Dynamic Range (dB), All Models Description Specification Typical Option
200 Option 216 Option 200 Option 216
300 kHz to 3 MHz 105 104 117 136 137 153
3 MHz to 10 MHz 115 114 127 138 139 155
10 MHz to 500 MHz 131 129 142 139 140 156
500 MHz to 2 GHz 133 131 144 141 140 156
2 GHz to 6 GHz 133 131 144 141 141 157
6 GHz to 8.5 GHz 133 131 144 140 139 155 8.5 GHz to 10.5 GHz 128 126 139 139 137 153 10.5 GHz to 12.5 GHz 127 125 138 139 137 153 12.5 GHz to 13.51 GHz 125 122 135 138 136 152
13.51 GHz to 15 GHz 115 112 125 129 127 143
15 GHz to 20 GHz 114 111 124 129 127 143
Table 1b. System Dynamic Range (dB), N5231A or N5232A Description Specification Typical Option
400 Option 416 Option 400 Option 416
300 kHz to 3 MHz 102 101 114 135 134 150
3 MHz to 10 MHz 112 111 124 138 137 153
10 MHz to 500 MHz 128 128 141 138 137 153
500 MHz to 4 GHz 128 128 141 139 138 154
4 GHz to 6 GHz 127 126 139 138 137 153
6 GHz to 8.5 GHz 124 122 135 137 135 151 8.5 GHz to 10.5 GHz 122 120 133 136 134 150 10.5 GHz to 12.5 GHz 118 116 129 133 130 146 12.5 GHz to 13.51 GHz 118 106 119 133 121 137
13.51 GHz to 15 GHz 108 101 114 124 118 134
15 GHz to 20 GHz 105 101 114 121 134 150
Table 2. Receiver Dynamic Range (dB), N5239A, N5231A or N5232A - Typical
3 MHz to 10 MHz 127 128
10 MHz to 500 MHz 132 133
500 MHz to 2 GHz 133 135
2 GHz to 4 GHz 134 135
13.51 GHz to 15 GHz 125 125
15 GHz to 20 GHz 124 124
Table 3. 85052B Calibration Kit
50 MHz
50 MHz to
500 MHz
2 GHz to
8.5 GHz
8.5 GHz to
13.5 GHz
13.5 GHz to
20 GHz
1 Temperature deviation is a characteristic value.
Table 4. N4691B 2-Port Electronic Calibration Module 1 Temperature deviation is a characteristic value.
Table 5. N4433A 4-Port Electronic Calibration Module uncertainties are not supported at this time. 1 Temperature deviation is a characteristic value.
Uncorrected System Performance Specifications apply to following conditions: Over environmental temperature of 25 °C ±5 °C, Cable loss not included in Transmission Tracking. Crosstalk measurement conditions: normalized to a thru, measured with shorts on all ports, 10 Hz IF bandwidth, averaging factor of 8, alternate mode, source power set to the specified maximum power. Table 6a. Error Terms (dB), N5239A/31A/32A , All Ports, Option 200, 216 - Specifications Description Directivity Source Match Load Match Transmission Tracking Reflection Tracking Crosstalk 300 kHz to 1 MHz 12 6 6 -- -- --
1 MHz to 45 MHz 12 9 9 -- -- --
45 MHz to 500 MHz 24 17 22 -- -- --
500 MHz to 2 GHz 27 15 16 -- -- --
2 GHz to 8.5 GHz 19 10 10 -- -- -- 8.5 GHz to 12.5 GHz 15 8 8 -- -- --
12.5 GHz to 20 GHz 15 8 9 -- -- --
Table 6b. Error Terms (dB), N5239A/31A/32A, All Ports, Option 200, 216 - Typical Description Directivity Source Match Load Match Transmission Tracking Reflection Tracking Crosstalk 300 kHz to 1 MHz 16 8 8 +/-2.0 +/-1.5 -80 1 MHz to 5 MHz 16 17 17 +/-2.0 +/-1.5 -85 5 MHz to 45 MHz 16 17 17 +/-2.0 +/-1.5 -95 45 MHz to 500 MHz 35 21 28 +/-2.0 +/-1.5 -110 500 MHz to 2 GHz 35 19 22 +/-2.0 +/-1.5 -122 2 GHz to 8.5 GHz 23 17 17 +/-2.0 +/-1.5 -122 8.5 GHz to 10.5 GHz 20 12 12 +/-2.0 +/-1.5 -122 10.5 GHz to 12.5 GHz 20 12 12 +/-2.0 +/-1.5 -115 12.5 GHz to 13.5GHz 20 12 14 +/-2.5 +/-2.0 -115 13.5 GHz to 20 GHz 20 12 14 +/-2.5 +/-2.0 -108
Table 6c. Error Terms (dB), N5231A, N5232A, All Ports, Option 400, 416 - Specifications Description Directivity Source Match Load Match Transmission Tracking Reflection Tracking Crosstalk 300 kHz to 1 MHz 10 6 5 -- -- --
1 MHz to 10 MHz 10 9 14 -- -- --
10 MHz to 1 GHz 28 12 20 -- -- --
1 GHz to 3 GHz 25 10 18 -- -- --
3 GHz to 5 GHz 20 10 14 -- -- --
5 GHz to 8.5 GHz 17 10 12 -- -- -- 8.5 GHz to 11.5 GHz 15 10 12 -- -- --
11.5 GHz to 16 GHz 15 7 7 -- -- --
16 GHz to 20 GHz 15 8 7 -- -- --
Table 6d. Error Terms (dB), N5231A, N5232A, All Ports, Option 400, 416 - Typical Description Directivity Source Match Load Match Transmission Tracking Reflection Tracking Crosstalk 300 kHz to 1 MHz 16 8 8 +/-2.0 +/-1.5 -80 1 MHz to 5 MHz 16 17 17 +/-2.0 +/-1.5 -85 5 MHz to 10 MHz 16 17 17 +/-2.0 +/-1.5 -95 10 MHz to 45 MHz 35 24 30 +/-2.0 +/-1.5 -95 45 MHz to 500 MHz 35 24 30 +/-2.0 +/-1.5 -110 500 MHz to 1 GHz 35 24 30 +/-2.0 +/-1.5 -122 1 GHz to 3 GHz 31 24 25 +/-2.0 +/-1.5 -122 3 GHz to 5 GHz 25 19 21 +/-2.0 +/-1.5 -122 5 GHz to 8.5 GHz 19 16 16 +/-2.0 +/-1.5 -122 8.5 GHz to 10.5 GHz 18 16 16 +/-2.0 +/-1.5 -122 10.5 GHz to 11.5 GHz 18 16 19 +/-2.0 +/-1.5 -115 11.5 GHz to 12.5 GHz 18 13 13 +/-2.0 +/-1.5 -115 12.5 GHz to 13.5 GHz 18 13 13 +/-2.5 +/-2.0 -115 13.5 GHz to 16 GHz 18 13 13 +/-2.5 +/-2.0 -108 16 GHz to 20 GHz 18 13 15 +/-2.5 +/-2.0 -108
Table 7. Frequency Information, All Options 1 Assumes no variation in time. 2 Assumes no variation in temperature.
10 MHz to 500 MHz 13 11 16 16
500 MHz to 6 GHz 13 11 17 17
12.5 GHz to 20 GHz 8 5 14 12
1 Any port can be used as the source port.
10 MHz to 4 GHz 8 8 14 13
4 GHz to 6 GHz 7 6 12 11
10.5 GHz to 15 GHz 1 -1 9 6
15 GHz to 20 GHz -2 -6 6 3
1 Any port can be used as the source port.
Table 9a. Power Level Accuracy (dB) at Nominal Power1, All Models, Options 200 or 216, All Ports2 Description Specification Typical 300 kHz to 10 MHz +/- 1.8 +/- 0.09 10 MHz to 45 MHz +/- 1.5 +/- 0.06 45 MHz to 500 MHz +/- 1.0 +/- 0.07 500 MHz to 2 GHz +/- 1.0 +/- 0.08 16 GHz to 20 GHz +/- 1.5 +/- 0.14 1 Level accuracy at power other than nominal power, Power Level Accuracy (dB) at Nominal Power + Power Level Linearity (dB) 2 Any port can be used as the source port. Table 9b. Power Level Accuracy (dB) at Nominal Power1, N5231A or N5232A, Options 400 or 416, All Ports2 Description Specification Typical 300 kHz to 10 MHz +/- 1.5 +/- 0.07 10 MHz to 45 MHz +/- 1.0 +/- 0.12 45 MHz to 500 MHz +/- 1.0 +/- 0.18 500 MHz to 2 GHz +/- 1.0 +/- 0.10 16 GHz to 20 GHz +/- 2.8 +/- 0.72 1 Level accuracy at power other than nominal power, Power Level Accuracy (dB) at Nominal Power + Power Level Linearity (dB) 2 Any port can be used as the source port.
Table 10a. Power Level Linearity1 (dB), All Models, Options 200 or 216, All Ports2 - Specification Description -25 dBm ≤ P < -20 dBm -20 dBm ≤ P < -15 dBm P ≥ -15 dBm 1 Referenced to nominal power. 2 Any port can be used as the source port. Table 10b. Power Level Linearity1 (dB), N5231A, N5232A Option 400, 416, All Ports2 - Specification Description -25 dBm ≤ P < -20 dBm -20 dBm ≤ P < -15 dBm P ≥ -15 dBm 1 Referenced to nominal power. 2 Any port can be used as the source port. Table 11a. Power Sweep Range (dB), All Models, Option 200 or 216, All Ports1 Description Specification Typical Option 200 Option 216 Option 200 Option 216 300 kHz to 10 MHz 35 34 43 43
10 MHz to 50 MHz 38 36 43 43
50 MHz to 6 GHz 38 36 44 44
6 GHz to 8.5 GHz 38 36 43 42 8.5 GHz to 12.5 GHz 35 33 42 40
12.5 GHz to 20 GHz 33 30 41 39
1 Any port can be used as the source port.
10 MHz to 4 GHz 33 33 41 40
4 GHz to 6 GHz 32 31 39 38
10.5 GHz to 15 GHz 26 24 36 33
15 GHz to 20 GHz 23 19 33 30
1 Any port can be used as the source port. Table 12. Nominal Power (Preset, dBm), All Models, All Ports1 1 Any port can be used as the source port. Table 13. Power Resolution and Maximum/Minimum Settable Power, All Models, All Ports1 1 Any port can be used as the source port.
Table 14. 2nd and 3rd Harmonics at Max Specified Power (dBc), All Ports1 - Typical
500 MHz to 1 GHz -17 -17 -18 -17 -18
1 GHz to 3 GHz -17 -17 -17 -17 -17
3 GHz to 4 GHz -17 -17 -25 -17 -25
1 Any port can be used as the source port.
2 Listed frequency is harmonic frequency; test at max specified power
500 MHz to 2 GHz -60 -42
2 GHz to 4 GHz -57 -45
4 GHz to 8 GHz -51 -39
8 GHz to 16 GHz -45 -33
16 GHz to 20 GHz -39 -27
Table 16. Phase Noise (dBc/Hz), All Models, All Options - Typical
50 MHz to 1 GHz -96 -101 -101 -119
1 GHz to 2 GHz -91 -105 -102 -121
2 GHz to 4 GHz -85 -99 -96 -115
4 GHz to 8 GHz -79 -93 -90 -109
8 GHz to 16 GHz -73 -87 -84 -103
16 GHz to 20 GHz -67 -81 -78 -97
Table 17. Test Port Noise Floor1 (dBm) @ 10 Hz IFBW, All Models, All Ports
216 Options 400, 416 Options 200, 216 Options 400, 416
3 MHz to 10 MHz2 -105 -105 -122 -123
10 MHz to 500 MHz2 -118 -120 -123 -124
500 MHz to 2 GHz -120 -120 -123 -125
2 GHz to 4 GHz -120 -120 -124 -125
13.51 GHz to 15 GHz -107 -107 -115 -115
15 GHz to 20 GHz -106 -107 -115 -115
1 Total average (rms) noise power calculated as the mean value of a linear magnitude trace expressed in dBm. 2 May typically be degraded at particular frequencies below 500 MHz due to spurious receiver residuals. Table 18. Direct Receiver Access Input Noise Floor1 (dBm), All Models, All Ports
3 MHz to 10 MHz2 -118 -118 -138 -139
10 MHz to 500 MHz2 -131 -133 -139 -140
500 MHz to 2 GHz -133 -133 -139 -141
2 GHz to 4 GHz -132 -132 -140 -141
13.51 GHz to 15 GHz -120 -120 -131 -131
15 GHz to 20 GHz -119 -120 -131 -131
1 Total average (rms) noise power calculated as the mean value of a linear magnitude trace expressed in dBm. 2 May typically be degraded at particular frequencies below 500 MHz due to spurious receiver residuals.
Table 19. 0.1 dB Receiver Compression at Test Port (dBm), All Models, All Options, All Ports - Typical
10 MHz to 500MHz 9
500 MHz to 15GHz 10
15 GHz to 20 GHz 9
Table 20. Receiver Compression at Test Port Power, All Models, All Ports - Specification 1 6 dBm with Option 400 or 416. 1 Ratioed measurement, nominal power at test port.
1 Ratioed measurement, nominal power at test port. 1 Ratioed measurement, nominal power at test port. Table 22. Reference Level Magnitude, All Models, All Options - Specification 1 Stability is defined as a ratio measurement made at the test port.
10 MHz to 2 GHz 0.01 0.07 2 GHz to 4 GHz 0.01 0.10 4 GHz to 13.5 GHz 0.03 0.50 13.5 GHz to 16 GHz 0.02 0.50 16 GHz to 19 GHz 0.02 0.60 19 GHz to 20 GHz 0.03 0.70 1 Stability is defined as a ratio measurement made at the test port. Table 24a. Damage Level, All Models - Specification Description Option 200 Option 400 RF (dBm) DC (VDC) RF (dBm) DC (VDC) Ports 1, 2 30 40 27 16 Ports 3, 4 -- -- 27 16 Table 24b. Damage Level, All Models - Specification Description Option 216 Option 416 RF (dBm) DC (VDC) RF (dBm) DC (VDC) Ports 1, 2, 3, 4 27 7 27 16 RCVR A, B, C, D IN 15 16 15 16 REF RCVR R1 IN 15 16 15 16 REF SOURCE OUT 20 16 20 16 PORT 1, 2, 3, 4 SOURCE OUT 27 7 27 16 PORT 1, 2, 3, 4 CPLR THRU 27 7 27 16 PORT 1, 2, 3, 4 CPLR ARM 15 5 15 5
Table 25. Dynamic Accuracy - Specification
Dynamic Accuracy, 1 GHz Dynamic Accuracy, 2 GHz Dynamic Accuracy, 20 GHz
Table 26. Group Delay1 The following graphs show characteristic group delay accuracy with full 2-port calibration and a 10 Hz IF bandwidth. Insertion loss is assumed to be < 2 dB and electrical length to be ten meters.
1 Group delay is computed by measuring the phase change within a specified frequency step
(determined by the frequency span and the number of points per sweep).
Table 27. Miscellaneous Information Table 28. Front Panel Information, All Options
- A complete row or column consists of “stuck” or “dark” pixels.
- More than six “stuck on” pixels (but not more than three green) or more than 0.002% of the total pixels are within the LCD specifications.
- More than twelve “dark” pixels (but no more than seven of the same color) or more than 0.004% of the total pixels are within the LCD specifications.
- Two or more consecutive "stuck on" pixels or three or more consecutive "dark" pixel (but no more than one set of two consecutive dark pixels)
- “Stuck on” “dark” pixels are less than 6.5 mm apart (excluding consecutive pixels)
Table 28. (Continued) Front Panel Information, All Options Table 29. Rear Panel Information, All Options
10 MHz Reference In
10 MHz Reference Out
Table 29. (Continued) Rear Panel Information, All Options change resolution, you can only view the external display (internal display will "white out"). Test Set IO 25-pin D-Sub connector, available for external test set control. be reset to positive logic via GPIB command. D-24), female; compatible with IEEE-488. total current limit for all front panel USB is 0.9 amps.
Table 30. Analyzer Dimensions and Weight All models are shipped with bottom feet, handles and front and rear hardware. 1Electronics Industry Association rack units. 1 RU = 1.75 in.
Measurement Throughput Summary Typical Cycle Time for Measurement Completion Cycle Time vs. IF Bandwidth Cycle Time vs. Number of Points Data Transfer Time Cycle time Includes sweep time, retrace time and band-crossing time. Analyzer display turned off with DISPLAY:ENABLE OFF. Add 21 ms for display on. Data for one trace (S11) measurement. Table 31a. Cycle Time (ms) for Measurement Completion, All Models, All Options - Typical Sweep Range IF Bandwidth Number of Points 201 401 1601 16001 32001
9 GHz to
10 GHz
Uncorrected 29.1 54 204 1990 3980 2-Port cal 56 106 404 3600 6390 1 kHz Uncorrected 227 445 1742 17010 33780 2-Port cal 451 888 3482 27231 54100 Table 31b. N5239A Cycle Time (ms) for Full-Span Measurement Completion - Typical 300 kHz to 8.5 GHz Number of Points IF Bandwidth 201 401 1601 16001 32001 600 kHz Uncorrected 24.22 27.5 46 113 257 2-Port cal 46 53 89 226 515 10 kHz Uncorrected 70 126 228 2120 4088 2-Port cal 137 249 453 4120 8020 1 kHz Uncorrected 235 456 1768 17170 34098 2-Port cal 468 910 3417 32057 54584
Table 31c. N5231A Cycle Time (ms) for Full-Span Measurement Completion- Typical 300 kHz to 13.5 GHz Number of Points IF Bandwidth 201 401 1601 16001 32001 600 kHz Uncorrected 27 29 44 108 258 2-Port cal 52 56 85 219 518 10 kHz Uncorrected 72 130 236 2073 4103 2-Port cal 141 257 470 4146 7397 1 kHz Uncorrected 237 460 1781 17312 34381 2-Port cal 472 917 3559 34626 45875 Table 31d. N5232A Cycle Time (ms) for Full-Span Measurement Completion- Typical 300 kHz to 20 GHz Number of Points IF Bandwidth 201 401 1601 16001 32001 600 kHz Uncorrected 34 37 49 115 170 2-Port cal 67 72 95 228 346 10 kHz Uncorrected 75 134 337 2152 4079 2-Port cal 147 266 672 3971 7621 1 kHz Uncorrected 240 464 1790 17405 34568 2-Port cal 478 926 3510 33651 55331
Table 32. Cycle Time vs. IF Bandwidth - Typical Cycle time includes sweep and retrace time.
Table 33. Cycle Time vs. Number of Points - Typical Cycle time includes sweep and retrace time.
Table 34. Data Transfer Times - Typical
1601 Points
32001 Points
1 Values obtained using USB-to-GPIB adapter (82357B)
Hz accuracy. If this type of accuracy is needed for frequencies, then you should use 64 -bit transfers. Specifications for Recall & Sweep Speed are not provided for the N523xA analyzers.
Table 35. Measurement Receiver Inputs (dBm) - Typical
10 MHz to 500 MHz -9 -7
13.5 GHz to 20 GHz -5 -7
Table 36. Reference Receiver Inputs and Reference Source Outputs (dBm) - Typical
10 MHz to 2 GHz -9 -15
13.5 GHz to 15 GHz -15 -21
15 GHz to 20 GHz -15 -26
1 Not available with Option 416.
Table 37. Source Outputs (dBm) - Typical
10 MHz to 2 GHz 13 10
13.5 GHz to 15 GHz 8 1
15 GHz to 20 GHz 8 -3
Table 38. Coupler Inputs (dB), All Options - Typical
NOTE: For best readability, use a color printer for printing the following graphics. N5239A, N5231A and N5232A Option 200 (2-port base model) N5239A, N5231A and N5232A Option 216 To base model, adds front-panel jumpers and source attenuators (extended power range).
N5231A and N5232A Option 400 (4-port base model) N5231A and N5232A Option 416 To base model, adds front-panel jumpers and source attenuators (extended power range).
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This information is subject to change without notice. © Keysight Technologies 2014-2016 Print Date: September 13, 2016 www.keysight.com