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Keysight 2-Port and 4-Port PNA Network Analyzer N5221A 10 MHz to 13.5 GHz N5222A 10 MHz to 26.5 GHz

THE MATERIAL CONTAINED IN THIS DOCUMENT IS PROVIDED "AS IS," AND IS SUBJECT TO BEING CHANGED, WITHOUT NOTICE, IN FUTURE EDITIONS. FURTHER, TO THE MAXIMUM EXTENT PERMITTED BY APPLICABLE LAW, KEYSIGHT DISCLAIMS ALL WARRANTIES, EITHER EXPRESS OR IMPLIED WITH REGARD TO THIS MANUAL AND ANY INFORMATION CONTAINED HEREIN, INCLUDING BUT NOT LIMITED TO THE IMPLIED WAR RANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE. KEYSIGHT SHALL NOT BE LIABLE FOR ERRORS OR FOR INCIDENTAL OR CONSEQUENTIAL DAMAGES IN CONNECTION WITH THE FURNISHING, USE, OR PERFORMANCE OF THIS DOCUMENT OR ANY INFORMATION CONTAINED HEREIN. SHOULD KEYSIGHT AND THE USER HAVE A SEPARATE WRITTEN AGREEMENT WITH WARRANTY TERMS COVERING THE MATERIAL IN THIS DOCUMENT THAT CONFLICT WITH THESE TERMS, THE WARRANTY TERMS IN THE SEPARATE AGREEMENT WILL CONTROL. U.S. Government Rights U.S. Government Rights. The Software is “commercial computer software,” as defined by Federal Acquisition Regulation U.S. government acquires commercial computer software under the same terms by which the software is customarily provided to the public. Accordingly, Keysight provides the Software to U.S. government customers under its standard commercial license, which is embodied in its End User License Agreement (EULA), a copy of which can be found at government may use, modify, distribute, or disclose the Software. The EULA and the license set forth therein, does not requir e or permit, among other things, that Keysight: (1) Furnish technical information related to commercial computer software or commercial computer software documentation that is not customarily provided to the public; or (2) Relinquish to, or otherwise provide, the government rights in excess of these rights customarily provided to the public to use, modify, reproduce, release, perform, display, or disclose commercial computer software or commercial computer software documentation. No additional government requirements beyond those set forth in the EULA shall apply, except to the extent that those terms, rights, or licenses are explicitly required from all providers of commercial computer software pursuant to the FAR and the DFARS and are set forth specifically in writing elsewhere in the EULA. Keysight shall be under no obligation to update, revise or otherwise 5 (c), as applicable in any technical data.

This is a complete list of the technical specifications for the N5221A and N5222A PNA Series network analyzers with the following options. See block diagrams for all models and options beginning on page 41. 2-Port Models Option 200 - 2-port base model with standard test set. Option 201 - To base model, adds front-panel jumpers and R1 receiver switch. Option 217 - To base model, adds front-panel jumpers, R1 receiver switch, and source and receiver attenuators (extended power range). Option 219 - To base model, adds front-panel jumpers, R1 receiver switch, source and receiver attenuators (extended power range), and bias-tees. 4-Port Models Option 400 - 4-port base model with standard test set. Option 401 - To base model, adds front-panel jumpers and R1 receiver switch. Option 417 - To base model, adds front-panel jumpers, R1 receiver switch, and source and receiver attenuators (extended power range). Option 419 - To base model, adds front-panel jumpers, R1 receiver switch, source and receiver attenuators (extended power range), and bias-tees. 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. For all tables in this data sheet, the specified performance at the exact frequency of a break is the degraded value of the two specifications at that frequency. Definitions All specifications and characteristics apply over a 25 °C ±5 °C range (unless otherwise stated) and 90 minute s 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 enviro nmental 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 guar dbands as a specification. Typical (typ.): Expected performance of an average unit which does not include guardbands. It is not covered by the product warranty. 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.

Corrected System Performance The specifications in this section apply for measurements made with the N5221A and N5222A 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. This set-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 and Receiver Dynamic Range, N5221A, Option 200 or 400 Description Specification Typical System Dynamic Range (dB) (A)-(B) Max Leveled Output Power (dBm) (A) Test Port Noise Floor (dBm) (B) Receiver Dynamic Range (dB) (C)-(D) 0.1 dB Compressio n at Test Port (dBm) (C) Test Port Noise Floor (dBm) (D)

10 MHz to 50 MHz 94 12 -82 103 15 -88

50 MHz to 100 MHz 108 13 -95 118 15 -103

100 MHz to 500 MHz 118 13 -105 122 12 -110

500 MHz to 2 GHz 127 13 -114 130 12 -118

2 GHz to 13.5 GHz 127 13 -114 131 12 -119 Table 1b. System Dynamic Range and Receiver Dynamic Range, N5222A, Option 200 or 400 Description Specification Typical System Dynamic Range (dB) (A)-(B) Max Leveled Output Power (dBm) (A) Test Port Noise Floor (dBm) (B) Receiver Dynamic Range (dB) (C)-(D) 0.1 dB Compression at Test Port (dBm) (C) Test Port Noise Floor (dBm) (D) 2 GHz to 13.5 GHz 127 13 -114 131 12 -119

13.5 GHz to 20 GHz 127 13 -114 132 12 -120

20 GHz to 24 GHz 124 13 -111 128 10 -118

24 GHz to 26.5 GHz 114 7 -107 126 10 -116

Table 2. System Dynamic Range at Test Port (dB)

10 MHz to 50 MHz 94 94 94 108 108 108

50 MHz to 100 MHz 108 108 108 123 123 123

100 MHz to 500 MHz 118 118 118 130 130 130

500 MHz to 2 GHz 127 127 127 138 138 138

3.2 GHz to 10 GHz 127 127 127 141 141 141

13.5 GHz to 16 GHz 127 127 127 140 140 139

16 GHz to 20 GHz 127 127 124 140 140 138

20 GHz to 24 GHz 124 124 121 136 136 134

Table 3. Extended Dynamic Range at Direct Receiver Access Input (dB) - Specification

10 MHz to 50 MHz 130 130

50 MHz to 100 MHz 120 120

100 MHz to 500 MHz 130 130

500 MHz to 19 GHz 139 139

19 GHz to 20 GHz 139 136

20 GHz to 24 GHz 136 133

Corrected System Performance, All Options For any Sii reflection measurement:

  • Sjj = 0. For any Sij transmission measurement:
  • Sji = Sij when Sij ≤ 1
  • Sji = 1/Sij when Sij >1
  • Skk = 0 for all k Applies to the N5221A/2A Option 200, 201, 217, 219, 400, 401, 417 or 419 analyzers, 85131F flexible test port cable set, and a full 2-port calibration. Also applies to the following condition: Environmental temperature 23° ±3 °C, with < 1 °C deviation from calibration temperature

Table 4a. N5221A and N5222A with 85052B Calibration Kit - Specification Description Specification (dB)

10 MHz to

50 MHz

50 MHz to

500 MHz

2 GHz to

13.5 GHz

13.5 GHz to

20 GHz

20 GHz to

26.5 GHz

Directivity 48 48 48 44 44 44 Source Match 40 40 40 31 31 31 Load Match 48 48 48 44 44 44 Reflection Tracking Transmission Tracking Transmission Uncertainty, All Options Reflection Uncertainty, All Options

Table 4b. N5221A and N5222A with N4691B 2-Port Electronic Calibration Module Description Specification (dB) Directivity 46 46 52 46 46 44 Source Match 41 41 47 42 42 40 Load Match 40 40 46 41 40 38 Reflection Tracking Transmission Tracking Transmission Uncertainty, All Options Reflection Uncertainty, All Options

Table 4c. N5221A and N5222A with N4433A 4-Port Electronic Calibration Module Uncertainty curves for the N4433A are created using a 2-port calibration. Multiport uncertainties are not supported at this time. Description Specification (dB) Directivity 50 50 50 45 40 Source Match 42 42 42 37 31 Load Match 40 41 41 35 29 Reflection Tracking Transmission Tracking Transmission Uncertainty, All Options Reflection Uncertainty, All Options

Uncorrected System Performance Specifications apply to following conditions:

  • Over environmental temperature of 25 °C ±5 °C, with less than 1°C variation from the calibration temperature.
  • 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 5a. Error Terms (dB), All Ports, All Options - Specifications Description Directivity Source Match Load Match Transmission Tracking Reflection Tracking Crosstalk

10 MHz to 50 MHz 16 11 11 -- -- --

50 MHz to 3.2 GHz 24 18 17 -- -- --

3.2 GHz to 10 GHz 23 14 13 -- -- --

10 GHz to 16 GHz 16 12 10 -- -- --

16 GHz to 24 GHz 16 10 9 -- -- --

24 GHz to 26.5 GHz 16 8 8 -- -- -- Table 5b. Error Terms (dB), All Ports, All Options - Typical Description Directivity Source Match Load Match Transmission Tracking Reflection Tracking Crosstalk 10 MHz to 50 MHz 23 17 16 +/- 1.5 +/- 1.5 -84 50 MHz to 100 MHz 29 29 28 +/- 1.5 +/- 1.5 -90 100 MHz to 500 MHz 29 29 28 +/- 1.5 +/- 1.5 -110 500 MHz to 3.2 GHz 31 24 22 +/- 1.5 +/- 1.5 -120 3.2 GHz to 10 GHz 25 19 17 +/- 1.5 +/- 1.5 -122 10 GHz to 13.5 GHz 21 17 15 +/- 1.5 +/- 1.5 -122 13.5 GHz to 16 GHz 20 16 15 +/- 1.5 +/- 1.5 -122 16 GHz to 20 GHz 20 15 15 +/- 1.5 +/- 1.5 -122 20 GHz to 24 GHz 19 13 13 +/- 1.5 +/- 1.5 -117 24 GHz to 26.5 GHz 20 13 13 +/- 1.5 +/- 1.5 -114

See Block diagrams for all models and option beginning on page 41. Table 6. Frequency Information, All Options 1 Assumes no variation in time. 2 Assumes no variation in temperature.

10 MHz to 50 MHz 12 12 12 12

50 MHz to 16 GHz 13 13 13 13

16 GHz to 20 GHz 13 12 10 10

20 GHz to 24 GHz 13 10 10 7

10 MHz to 50 MHz 20 17 20 17

50 MHz to 500 MHz 20 18 20 18

500 MHz to 1 GHz 20 20 19 20

3.2 GHz to 10 GHz 22 21 22 21

13.5 GHz to 16 GHz 20 18 19 17

16 GHz to 20 GHz 20 16 18 14

20 GHz to 24 GHz 18 14 16 12

Table 8. Power Level Accuracy (dB) at Nominal Power1, All Options 1 Level accuracy at power other than nominal power, Power Level Accuracy (dB) at Nominal Power + Power Level Linearity (dB ). 1 Referenced to nominal power. 2 Either port can be used as the source port.

Table 9b. Power Level Linearity1 (dB), All Options - Specification Description Port 2 or 42 -25dBm ≤ P<-20dBm Port 2 or 42 -20dBm ≤ P<-15dBm Port 2 or 42 P ≥-15dBm 1 Referenced to nominal power. 2 Either port can be used as the source port. Table 10a. Power Sweep Range (dB), All Options - Specification Description Option 200, 400, 201, 401 Option 217, 417, 219, 419 Port 1, Port 3 Port 2, Port 4 Port 1, Port 3 Port 2, Port 4

10 MHz to 50 MHz 37 37 37 37

50 MHz to 16 GHz 38 38 38 38

16 GHz to 20 GHz 38 37 35 35

20 GHz to 24 GHz 38 35 35 32

24 GHz to 26.5 GHz 32 30 29 27 Table 10b. Power Sweep Range (dB), All Options - Typical Description Option 200, 400, 201, 401 Option 217, 417, 219, 419 Port 1, Port 3 Port 2, Port 4 Port 1, Port 3 Port 2, Port 4

10 MHz to 50 MHz 47 44 47 44

50 MHz to 500 MHz 47 45 47 45

500 MHz to 1 GHz 47 47 46 47

1 GHz to 3.2 GHz 46 47 46 47

3.2 GHz to 10 GHz 49 48 49 48

10 GHz to 13.5 GHz 49 46 48 45

13.5 GHz to 16 GHz 47 45 46 44

16 GHz to 20 GHz 47 43 45 41

20 GHz to 24 GHz 45 41 43 39

24 GHz to 26.5 GHz 41 38 39 36

Table 11. Nominal (Preset) Power (dBm) Table 12. Power Resolution and Maximum/Minimum Settable Power, All Options Table 13. 2nd and 3rd Harmonics at Max Specified Power (dBc) All Options - Typical

20 MHz to 4 GHz -15 -15

13.5 GHz to 24 GHz -- -19

Table 14. Non-Harmonic Spurs at Nominal Power (dBc), All Options - Typical

10 MHz to 500 MHz -50 -50

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

Table 15. Phase Noise (dBc/Hz), All Options - Typical

10 MHz to 50 MHz -100 -95 -95 -120

50 MHz to 1 GHz -107 -117 -112 -127

1 GHz to 2 GHz -101 -111 -106 -121

2 GHz to 4 GHz -95 -105 -100 -115

4 GHz to 8 GHz -89 -99 -94 -109

8 GHz to 16 GHz -83 -93 -88 -103

Table 16. Test Port Noise Floor (dBm) @ 10 Hz IFBW, All Options Total average (rms) noise power calculated as the mean value of a linear magnitude trace expressed in dBm. May typically be degraded at particular frequencies below 500 MHz due to spurious receiver residuals.

10 MHz to 50 MHz -82 -82 -88 -88

50 MHz to 100 MHz -95 -95 -103 -103

100 MHz to 500 MHz -105 -105 -110 -110

500 MHz to 2 GHz -114 -114 -118 -118

13.5 GHz to 20 GHz -- -114 -- -120

20 GHz to 24 GHz -- -111 -- -118

Table 17. Direct Receiver Access Input Noise Floor (dBm), Options 201, 217, 219, 401, 417, 419 Total average (rms) noise power calculated as the mean value of a linear magnitude trace expressed in dBm. May typically be degraded at particular frequencies below 500 MHz due to spurious receiver residuals.

10 MHz to 50 MHz -118 -118 -133 -133

50 MHz to 100 MHz -107 -107 -129 -129

100 MHz to 250 MHz -117 -117 -136 -136

250 MHz to 500 MHz -117 -117 -130 -130

500 MHz to 2 GHz -126 -126 -133 -133

13.5 GHz to 20 GHz -- -126 -- -135

20 GHz to 24 GHz -- -123 -- -133

Table 18a. 0.1 dB Receiver Compression at Test Port (dBm), Option 201, 217, 219, 401, 417, 419 - Typical Description N5221A N5222A

10 MHz to 100 MHz 15 15

100 MHz to 13.5 GHz 12 12

13.5 GHz to 20 GHz -- 12

20 GHz to 26.5 GHz -- 10 Table 18b. Receiver Compression at Test Port Power - Specification Description Test Port Power (dBm) Receiver Compression Option 200, 400 Magnitude (dB) Phase (degrees)

10 MHz to 500 MHz1 -- -- --

500 MHz to 16 GHz 8 0.21 1.60 16 GHz to 24 GHz 8 0.24 1.73 24 GHz to 26.5 GHz 8 0.42 2.51 1Test port receiver compression at specified input levels below 500 MHz due to coupler roll off in this frequency range. Table 18c. Receiver Compression at Test Port Power - Specification Description Test Port Power (dBm) Receiver Compression Option 201, 401 Option 217, 417 Option 219, 419 Magnitude (dB) Phase (degrees) 500 MHz to 16 GHz 8 8 8 0.17 0.97 16 GHz to 24 GHz 8 8 8 0.23 1.20 24 GHz to 26.5 GHz 8 8 8 0.29 1.74 1Test port receiver compression at specified input levels below 500 MHz due to coupler roll off in this frequency range.

Table 19. Trace Noise Magnitude (dB rms) Ratioed measurement, nominal power at test port. Table 20. Trace Noise Phase (deg rms) Ratioed measurement, nominal power at test port. Table 21. Reference Level Magnitude, All Options - Specification

Table 22. Stability, All Options - Typical Table 23. Damage Input Level

IF linearity at a single frequency of 1.998765GHz using a reference level of -20 dBm for an input power range of 0 to -60 dBm. Table 24. N5221A and N5222A Dynamic Accuracy

N5221A/22A Dynamic Accuracy, 1 GHz to 2 GHz - Specification N5221A/22A Dynamic Accuracy, 2 GHz to 20 GHz - Specification N5221A/22A Dynamic Accuracy, 20 GHz to 26.5 GHz - Specification

Table 25. Group Delay - Typical loss is assumed to be < 2 dB and electrical length to be ten meters.

  • Miscellaneous Information
  • Front Panel
  • Rear Panel
  • Environment and Dimensions

Table 26. Miscellaneous Information

1 Hz to 15 MHz, nominal

CPU Intel ® 2.0 GHz Core ® i7. Some instruments may have a different CPU. Table 27. 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 27. (Continued) Front Panel Information, All Options Table 28. Rear Panel Information, All Options

10 MHz Reference In

10 MHz Reference Out

Table 28. (Continued) Rear Panel Information, All Options

3.2 GHz to 19 GHz

1.7 GHz to 16 GHz 0 -10

16 GHz to 21 GHz 4 -6

3.2 GHz to 19 GHz -3 -8

resolution, you can only view the external display (internal display will "white out"). 1 LO output available in full analyzer’s frequency range. The power is tested only from 3.2 GHz to 26.5 GHz.

Test Set IO 25-pin D-Sub connector, available for external test set control. reset to positive logic via GPIB command. 24), female; compatible with IEEE-488. current limit for all front panel USB is 0.9 amps.

Table 29. Analyzer Dimensions and Weight All models are shipped with handles.

1 EIA RU = 6

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 30a. Typical Cycle Time (ms) for Measurement Completion, All Models / Options Sweep Range IF Bandwidth Number of Points 201 401 1601 16001 32001

9 GHz to

10 GHz

Uncorrected 6.3 6.3 10.9 68 132 2-Port cal 18.8 20.3 30 145 275 10 kHz Uncorrected 29.7 54.7 205 2000 4000 2-Port cal 67 117 417 4031 8047 1 kHz Uncorrected 227 445 1742 17031 33844 2-Port cal 462 900 3500 34102 67734

10 GHz to

Uncorrected 18.8 18.8 23 70 133 2-Port cal 45.3 46.9 55 180 313 10 kHz Uncorrected 69 127 270 2009 4009 2-Port cal 145 263 548 4030 8055 1 kHz Uncorrected 234 458 1781 17383 34531 2-Port cal 477 922 3578 34789 69109 Table 30b. N5221A Typical Cycle Time (ms) for Full-Span Measurement Completion 10 MHz to 13.5 GHz Number of Points IF Bandwidth 201 401 1601 16001 32001 600 kHz Uncorrected 6.9 7.2 11.9 69 132 2-Port cal 22.2 23.1 32.2 148 275 10 kHz Uncorrected 59 61 205 2004 4003 2-Port cal 126 130 418 4019 8020 1 kHz Uncorrected 204 402 1593 15877 31751 2-Port cal 416 813 3194 31766 63539

Table 31. Cycle Time vs. IF Bandwidth - Typical

  • CF = 10 GHz
  • Span = 100 MHz
  • Display off (add 21 ms for display on) Cycle time includes sweep and retrace time. Description N5221A/22A IF Bandwidth (Hz) Cycle Time (ms) Trace Noise Magnitude (dB rms) 600,000 5.6 0.0045 100,000 6.9 0.0018 30,000 10 0.0011 10,000 26.7 0.0006 3,000 72 0.0004 1,000 223 0.0003 300 641 0.0002 100 1825 0.0002 30 5984 0.0002 10 17836 0.0002 3 59281 0.0002

Table 32. Cycle Time vs. Number of Points - Typical

  • CF = 10 GHz
  • Span = 100 MHz
  • Display off (add 21 ms for display on)

Cycle time includes sweep and retrace time. Description IF Bandwidth (Hz) Number of Points 1,000 10,000 30,000 600,000 3 7.5 5.9 5.9 5.9 11 15.6 6.6 5.9 5.9 51 60 10.6 5.9 5.9 101 114 16.9 7.2 6.3 201 223 29.4 9.7 6.3 401 437 54.7 15 6.9 801 862 105 25.3 7.8 1,601 1706 203 45.9 11 6,401 6728 803 169 30 16,001 16669 2003 416 68 32,001 33106 4003 828 130 Table 33. Data Transfer Time (ms) - Typical Measured with the analyzer display off. Values will increase slightly if the analyzer display is on.

Description

201 401 1601 16,001 32,001 SCPI over GPIB (Program executed on external PC2) 32-bit floating point 4.6 9.3 38 352 720 64-bit floating point 9.4 18.8 73.4 730 1455 ASCII 36.7 72.5 288 2882 5762 SCPI over SICL/LAN or TCP/IP Socket1 (Program executed in the analyzer) 32-bit floating point <1 <1 <1 1.2 2.4 64-bit floating point <1 <1 <1 2.3 4.6 ASCII 2.1 4 15 148 295 COM1 (Program executed in the analyzer) 32-bit floating point <1 <1 <1 <1 <1 Variant type <1 <1 1.4 12.4 25.5

DCOM over LAN1 (Program executed on external PC) 32-bit floating point <1 <1 <1 2.3 4.4 Variant type <1 1.6 5.3 52 105.5 1 Values are for real and imaginary pairs, with the analyzer display off, using Gigabit Ethernet. Specifications for Recall & Sweep Speed are not provided for the N522xA analyzers.

  • Measurement Receiver Inputs
  • Reference Receiver Inputs and Reference Source Outputs
  • Source Outputs
  • Coupler Inputs
  • Damage Level

Table 34. Measurement Receiver Inputs (dBm) – Typical

10 MHz to 500 MHz -4

3.2 GHz to 10 GHz -3

Table 35. Reference Receiver Inputs and Reference Source Outputs (dBm) - Typical

10 MHz to 50 MHz -4 -4

50 MHz to 10 GHz -3 -2

10 GHz to 16 GHz -4 -2

16 GHz to 20 GHz -5 -6

20 GHz to 24 GHz -6 -7

Table 36. Reference Receiver Inputs and Reference Source Outputs (dBm) - Typical

10 MHz to 50 MHz -2 -2 -2 -2

50 MHz to 500 MHz -1 -1 -1 -1

3.2 GHz to 10 GHz 0 0 +1 +1

10 GHz to 16 GHz 0 0 +2 +2

16 GHz to 20 GHz 0 +1 -1 -1

20 GHz to 24 GHz -2 +1 -3 0

Table 37. Source Outputs (dBm) - Typical

10 MHz to 50 MHz +12 +12 +12 +12

50 MHz to 500 MHz +13 +13 +13 +13

3.2 GHz to 10 GHz +14 +14 +14 +14

10 GHz to 16 GHz +14 +14 +15 +15

16 GHz to 20 GHz +14 +13 +12 +12

20 GHz to 24 GHz +14 +11 +12 +9

Table 38. Coupler Inputs (dB) - Typical

Table 39. Damage Level - Typical the source attenuator on the connected port.

For best readability, use a color printer for printing the following graphics. Legend N5221A and N5222A Option 200 (2-port base model)

N5221A and N5222A Option 201 To base model, adds front-panel jumpers and R1 receiver switch N5221A and N5222A Option 217 To base model, adds front-panel jumpers, R1 receiver switch, and source and receiver attenuators (extended power range).

N5221A and N5222A Option 219 To base model, adds front-panel jumpers, R1 receiver switch, source and receiver attenuators (extended power range) , and bias-tees.

N5221A and N5222A Option 400 (4-port base model) N5221A and N5222A Option 401 To base model, adds front-panel jumpers and R1 receiver switch

N5221A and N5222A Option 417 To base model, adds front-panel jumpers, R1 receiver switch, and source and receiver attenuators (extended power range). N5221A and N5222A Option 419 To base model, adds front-panel jumpers, R1 receiver switch, source and receiver attenuators (extended power range) , and bias-tees.

A IF gate Anti-alias filter ADC Digital FIR IF filter Narrowband filter External IF input AA

This information is subject to change without notice. © Keysight Technologies 2014-2015 Print Date: October 12, 2015 www.keysight.com