Keysight Technologies E5072A ENA Series Network Analyzer 30 khz to 4.5 /8.5 GHz. Data Sheet

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Transcription:

Keysight Technologies E572A ENA Series Network Analyzer 3 khz to 4.5 /8.5 GHz Data Sheet

Options This document provides technical speciications for the E572A ENA network analyzer. E572A-245 E572A-285 2-port with conigurable test set, 3 khz to 4.5 GHz 2-port with conigurable test set, 3 khz to 8.5 GHz Calibration kits and ECal modules This E572A data sheet provides technical specifications for the following calibration kits and ECal modules. For models not listed in this data sheet, please download the free Uncertainty Calculator from www.keysight.com/find/na_calculator to generate the curves for your calibration kit. 8532F 8533E 8592C 8593C Calibration kit Calibration kit Electronic calibration (ECal) module Electronic calibration (ECal) module Deinitions Speciication (spec.): Warranted performance. All specifications apply at 23 ºC (± 5 ºC), unless otherwise stated, and 9 minutes after the instrument has been turned on. Specifications include guard bands to account for the expected statistical performance distribution, measurement uncertainties, and changes in performance due to environmental conditions. Typical (typ.): Describes performance that will be met by a minimum of 8% of all products. It is not guaranteed by the product warranty. Supplemental performance data (SPD): Supplemental performance data 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 In this data sheet, boundary conditions are given for the specifications. For example, system dynamic range is 98 db with the following boundary conditions. Frequency: MHz, IF bandwidth: 3 khz If the same boundary conditions fall under more than one category in a table, apply the best value. 2

Corrected System Performance The specifications in this section apply to measurements made with the Keysight Technologies, Inc. E572A network analyzer under the following conditions: No averaging applied to data Environmental temperature of 23 C (± 5 C) with less than 1 C deviation from the calibration temperature Response and isolation calibration performed Description Speciication SPD System dynamic range at test port 1, 2 (IF Bandwidth = 3 khz) 65 db (Typ.) 3 khz to MHz 82 db MHz to 6 GHz 98 db 6 to 8.5 GHz 92 db (IF Bandwidth = Hz) 9 db (Typ.) db 3 khz to MHz 7 db 115 db MHz to 6 GHz 123 db 13 db 6 to 8.5 GHz 117 db 128 db Extended dynamic range at direct receiver access input 3 (IF Bandwidth = Hz) 128 db 3 khz to MHz 134 db MHz to 3 GHz 151 db 147 db 6 to 8.5 GHz 145 db 1. The test port dynamic range is calculated as the difference between the test port rms noise floor and the source maximum output power. The effective dynamic range must take measurement uncertainty and interfering signals into account. 2. Typical performance might not be met from 6 to 7 khz. 3. The direct receiver access input system dynamic range is calculated as the difference between the direct receiver access input noise floor and the source maximum output power. The effective dynamic range must take measurement uncertainties and interfering signals into account. 3

15 14 13 12 1 9 8 3.E+4 1.E+9 2.E+9 3.E+9 4.E+9 8.E+9 System Dynamic Range (db) 5.E+9 6.E+9 7.E+9 Test Frequency (Hz) Actual Measurement Example (Smothing ON) Spec Figure 1. System dynamic range (specification and actual measurement data example, IF bandwidth Hz) 4

Corrected system performance with calibration kit Corrected system performance with type-n device connectors, 8532F calibration kit Network analyzer : E572A Calibration kit : 8532F (Type-N, 5 Ω) Calibration : full 2-port IF bandwidth = Hz, no averaging applied to data, environmental temperature = 23 C (± 5 C ) with < 1 C deviation from calibration temperature, isolation calibration performed. Speciication (db) Description (Typ.) 3 khz to MHz MHz to 3 GHz 3 to 6 GHz 6 to 8.5 GHz Directivity 49 49 46 4 38 Source match 41 41 4 36 35 Load match 49 49 46 39 37 Relection tracking ±.11 ±.11 ±.21 ±.32 ±.54 Transmission tracking ±.11 ±.7 ±.29 ±.74 ±.88 Magnitude 3 KHz to 3 khz Phase 3 KHz to 3 khz Uncertainty (db) 1.1 3 KHz to MHz MHz to 3 GHz Uncertainty (degrees) 1 3 KHz to MHz MHz to 3 GHz.1 - -2-3 -4-5 -6 Transmission coefficient (db) -7-8 -9.1 - -2-3 -4-5 -6 Transmission coefficient (db) -7-8 -9 Figure 2. Transmission uncertainty (Specification).5 Magnitude 3 KHz to 3 khz Phase 3 KHz to 3 khz Uncertainty (linear).4.3.2.1 3 KHz to MHz MHz to 3 GHz Uncertainty (degrees) 8 6 4 2 3 KHz to MHz MHz to 3 GHz.2.4.6.8 1 Reflection coefficient (linear).2.4.6.8 1 Reflection coefficient (linear) Figure 3. Reflection uncertainty (Specification) 5

Corrected system performance with type-n device connectors, 8592C electronic calibration (ECal) module Network analyzer : E572A Calibration kit : 8592C (Type-N, 5 Ω) Electronic calibration (ECal) module Calibration : full 2-port IF bandwidth = Hz, no averaging applied to data, environmental temperature = 23 C (± 5 C ) with < 1 C deviation from calibration temperature, isolation calibration is not performed. Speciication (db) Description 3 khz to MHz MHz to 3 GHz 3 to 6 GHz 6 to 8.5 GHz Directivity 45 54 52 47 Source match 36 44 41 36 Load match 41 47 44 39 Relection tracking ±. ±.4 ±.6 ±.7 Transmission tracking ±.53 ±.4 ±.69 ±.136 Magnitude Phase 3 KHz to MHz 3 KHz to MHz Uncertainty (db) 1.1 MHz to 3 GHz Uncertainty (degrees) 1 MHz to 3 GHz.1 - -2-3 -4-5 -6 Transmission coefficient (db) -7-8 -9.1 - -2-3 -4-5 -6 Transmission coefficient (db) -7-8 -9 Figure 4. Transmission uncertainty (Specification).5 Magnitude Phase Uncertainty (linear).4.3.2.1 3 KHz to MHz MHz to 3 GHz Uncertainty (degrees) 8 6 4 2 3 KHz to MHz MHz to 3 GHz.2.4.6.8 1 Reflection coefficient (linear).2.4.6.8 1 Reflection coefficient (linear) Figure 5. Reflection uncertainty (Specification) 6

Corrected system performance with 3.5 mm device connector type, 8533E calibration kit Network analyzer : E572A Calibration kit : 8533E (3.5 mm, 5 Ω) Calibration : full 2-port IF bandwidth = Hz, no averaging applied to data, environmental temperature = 23 C (± 5 C ) with < 1 C deviation from calibration temperature, isolation calibration performed. Speciication (db) Description (Typ.) 3 khz to MHz MHz to 3 GHz 3 to 6 GHz 6 to 8.5 GHz Directivity 46 46 44 38 38 Source match 43 43 4 37 36 Load match 46 46 44 38 38 Relection tracking ±.6 ±.6 ±.7 ±.9 ±. Transmission tracking ±. ±.7 ±.32 ±.74 ±.79 Magnitude 3 KHz to 3 khz Phase 3 KHz to 3 khz Uncertainty (db) 1.1 3 KHz to MHz MHz to 3 GHz Uncertainty (degrees) 1 3 KHz to MHz MHz to 3 GHz.1 - -2-3 -4-5 -6 Transmission coefficient (db) -7-8 -9.1 - -2-3 -4-5 -6 Transmission coefficient (db) -7-8 -9 Figure 6. Transmission uncertainty (Specification).5 Magnitude Phase Uncertainty (linear).4.3.2.1 3 KHz to 3 khz 3 KHz to MHz MHz to 3 GHz Uncertainty (degrees) 8 6 4 2 3 KHz to 3 khz 3 KHz to MHz MHz to 3 GHz.2.4.6.8 1 Reflection coefficient (linear).2.4.6.8 1 Reflection coefficient (linear) Figure 7. Reflection uncertainty (Specification) 7

Corrected system performance with 3.5 mm device connector type, 8593C electronic calibration (ECal) module Network analyzer : E572A Calibration kit : 8593C (3.5 mm, 5 Ω) Electronic calibration (ECal) module Calibration : full 2-port IF bandwidth = Hz, no averaging applied to data, environmental temperature = 23 C (± 5 C ) with < 1 C deviation from calibration temperature, isolation calibration is not performed. Speciication (db) Description 3 khz to MHz MHz to 3 GHz 3 to 6 GHz 6 to 8.5 GHz Directivity 45 52 5 47 Source match 36 44 39 34 Load match 37 45 42 39 Relection tracking ±. ±.4 ±.5 ±.7 Transmission tracking ±.84 ±.47 ±.97 ±.145 Figure 8. Transmission uncertainty (Specification) Figure 9. Reflection uncertainty (Specification) 8

Uncorrected System Performance User correction: OFF, System error correction: ON Speciication (db) Description 3 khz to 3 GHz 3 to 6 GHz 6 to 8.5 GHz Directivity 15 (Typ.) 25 2 15 Source match 15 (Typ.) 25 2 15 Relection tracking ± 1.5 (Typ.) ± 1. ± 1.5 ± 1.5 Transmission tracking ± 1.5 (Typ.) ± 1. ± 1.5 ± 1.5 Speciication (db) Description 3 khz to MHz MHz to 2 GHz 2 to 4.5 GHz 4.5 to 8.5 GHz Load match 14 (Typ.) 22 15 11 8 Test Port Output (Source) Test port output frequency Description Speciication Typical Frequency range 1 Option 245 Option 285 Resolution Source Stability Standard Option 1E5 CW accuracy Standard Option 1E5 3 khz to 4.5 GHz 3 khz to 8.5 GHz 1 Hz ± 7 ppm ± 1 ppm ± 7 ppm (5 to 4 ºC) ± 1 ppm (5 to 4 ºC) ±.5 ppm/year Test port output power 2 Description Speciication SPD Nominal Power (Preset Power) Range 3 3 khz to 3 GHz 3 to 6 GHz 6 to 8.5 GHz Max Leveled Power 3 khz to 1 GHz 1 to 3 GHz 3 to 8.5 GHz dbm 85 to dbm 85 to 16 dbm 85 to 12 dbm 85 to dbm 1. Frequency can be set down to 9 khz 2. Source output performance on port 1 only. Port 2 output performance is typical. 3. Power can be set from 9 to 2 dbm 16 dbm 2 dbm 18 dbm Slope from 18 dbm (3 GHz) to 12 dbm (8.5 GHz) 9

Description Speciication Typical Resolution Level Accuracy 1 At 5 MHz, dbm, Absolute (Level Flatness) 2 Stepped Sweep Mode 3 khz to 8.5 GHz Swept Sweep Mode 3 khz to 7 GHz 7 to 8.5 GHz Level Linearity 3 ( 15 dbm to Maximum Power) Stepped Sweep Mode 3 khz to 8.5 GHz Swept Sweep Mode All frequency Power Sweep Range 4 Test port output signal purity.5 db ±.65 db ± 1. db ±.75 db 65 db ± 1. db ± 2.5 db ± 3. db ±.75 db ± 1.5 db Description Speciication Typical Harmonics (2nd or 3rd) (at 5 dbm) 3 khz to 2 GHz 2 to 8.5 GHz Non-harmonic spurious (at 5 dbm) 1. Power calibration using an external power meter improves level accuracy of the test port output power. 2. Level accuracy of other frequency is taken at dbm, relative to 5 MHz reference unless otherwise stated. 3. Level linearity given is relative to dbm. 4. Stop power may be limited by maximum power. < 25 dbc < 2 dbc < 3 dbc

Test Port Input Description Speciication SPD Crosstalk 1 3 khz to MHz MHz to 3 GHz 3 to 6 GHz 6 to 8.5 GHz Test Port Noise Floor 1 3 khz to MHz MHz to 3 GHz 3 to 6 GHz 6 to 8.5 GHz (at Hz IFBW) 3 khz to MHz MHz to 3 GHz 3 to 6 GHz 6 to 8.5 GHz Compression level (at +dbm input) Magnitude 3 khz to 3 GHz 3 to 8.5 GHz Phase 3 khz to 3 GHz 3 to 6 GHz 6 to 8.5 GHz.1 db Compression Input Level 3 khz to 2 GHz 2 to 6 GHz 6 to 8.5 GHz Damage Level Trace Noise 2 9 db (Typ.) 1 db 12 db 1 db db 9 dbm/hz (Typ.) 1 dbm/hz 117 dbm/hz 121 dbm/hz 117 dbm/hz 8 dbm (Typ.) 91 dbm 7 dbm 111 dbm 7 dbm.3 db (Typ.).2 db.2 db 7 deg (Typ.) 5 deg 5 deg 5 deg Description Speciication SPD (test port input level = maximum power in Speciication) Magnitude, 3 khz IFBW 3 khz to MHz, 3 khz IFBW MHz to 4.38 GHz, 7 khz IFBW 4.38 to 8.5 GHz, 7 khz IFBW Phase, 3 khz IFBW 3 khz to MHz, 3 khz IFBW MHz to 4.38 GHz, 7 khz IFBW 4.38 to 8.5 GHz, 7 khz IFBW.15 db rms (Typ.).3 db rms.4 db rms.6 db rms.1 deg rms (Typ.).2 deg rms.35 deg rms.5 deg rms 95 db 12 db 14 db 13 db 12 db dbm/hz 9 dbm/hz 124 dbm/hz 128 dbm/hz 128 dbm/hz 9 dbm 99 dbm 114 dbm 118 dbm 118 dbm.15 db.8 db.1 db.7 deg.3 deg.6 deg 1. deg 6 dbm 16 dbm 14 dbm dbm +26 dbm or ± 35 VDC.7 db rms.5 db rms.1 db rms.12 db rms.5 deg rms.25 deg rms.75 deg rms.15 deg rms 1. Typical performance might not be met from 6 to 7 khz. 2. The specification might not be met at the following frequencies: 333.333 khz, 46.25 khz, 857.143 khz, and 928.571 khz. 11

Stability Description Speciication SPD Magnitude 3 khz to 3 GHz 3 to 6 GHz 6 to 8.5 GHz Phase 3 khz to 3 GHz 3 to 6 GHz 6 to 8.5 GHz ±.4 db/ C ±.5 db/ C ±.3 db/ C ±.4 db/ C ±.8 deg/ C ±.1 deg/ C ±.4 deg/ C ±.8 deg/ C Dynamic Accuracy 1 Description Speciication (db) Typical Magnitude dbm 3 dbm dbm 1 dbm Phase dbm 3 dbm dbm ±.21 db ±.45 db ± 2 db ± 5 deg ±.3 deg ± 15 deg ± 3. db 1. Accuracy of the test port input power reading is relative to dbm reference input power level. Magnitude Phase Accuracy (db) 1.1 Accuracy (degrees) 1.1 - -2-3 -4-5 -6-7 Testport Power (dbm) -8-9 -.1 - -2-3 -4-5 -6 Testport Power (dbm) -7-8 -9 - Figure. Dynamic Accuracy 12

Group Delay 1 Description Speciication (db) Supplemental information Aperture (selectable) (frequency span)/(number of points - 1) Maximum aperture Minimum delay Accuracy 25% of frequency span Limited to measuring no more than 18 of phase change within the minimum aperture. See graph below (Typical) The following graph shows group delay accuracy with type-n connectors, full 2-port calibration and a Hz IF bandwidth. Calibration kit (8532F). Insertion loss is assumed to be < 2 db. In general, the following formula can be used to determine the accuracy (in seconds) of a specific group delay measurement: ± phase accuracy (degrees)/[36 x aperture (Hz)] Group Delay Accuracy (nsec) 1.1.1.1.1.1 1 Figure 11. Group delay Aperture (MHz) 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). 13

Front-Panel Jumpers Measurement Receiver Input (R1, R2, A, B) Description SPD Typical Noise Floor 3 khz to MHz MHz to 8.5 GHz (Hz IFBW ) 3 khz to MHz MHz to 8.5 GHz Maximum Input Level (Rcvr R1/R2/A or B IN at.1db typical compression) 3 khz to 8.5 GHz Damage Level Coupler arm output 128 dbm/hz 145 dbm/hz 118 dbm 135 dbm 15 dbm dbm Description SPD Typical Damage Level Coupler through input Description SPD Typical Insertion Loss from Coupler Thru to Test Port Damage Level Source output Slope from.8 db at 3 khz to 3.5 db at 8.5 GHz (.32 x f [GHz] +.8) db Description SPD Typical Maximum Leveled Power 3 khz to 1 GHz 1 to 3 GHz 3 to 8.5 GHz Maximum Input Level (at Max Speciied Output Power) 3 khz to 8.5 GHz +2 dbm Damage Level Reference source output +18 dbm +2.5 dbm +19 dbm Slope from +19dBm at 3 GHz to +16 dbm at 8.5 GHz Description SPD Typical Damage Level +15 dbm or ± 16 VDC +15 dbm or VDC +26 dbm or ± 35VDC +26 dbm or VDC +15 dbm or VDC 14

General Information Measurement Receiver Input (R1, R2, A, B) Description System band width Range General characteristic Hz to 5 khz Nominal settings are:, 15, 2, 3, 4, 5, 7,, 15, 2, 3, 4, 5, 7, 1 k, 1.5 k, 2 k, 3 k, 4 k, 5 k, 7 k, k, 15 k, 2 k, 3 k, 4 k, 5 k, 7 k, k, 15 k, 2 k, 3 k, 4 k, 5 khz Front Panel Description Typical General characteristic Test Ports Front Panel Jumpers Probe Power Connector Voltage & Maximum current 1 Display Type Resolution USB host port +15 V ± 5% (4 ma) 12.6 V ± 5% (3 ma) Type N, female, 5 Ω (nominal) SMA, female, 5 Ω (nominal) 3 terminal connector x 2.4 inch TFT color LCD with touch screen XGA (24 x 768) 2 Universal serial bus jack, Type A coniguration; female; provides connection to mouse, keyboard, printer, ECal module, USB power sensor, or USB/ GPIB interface Rear Panel Description Typical General characteristic External trigger input connector Type Input level Pulse width Polarity External trigger output connector Type Maximum output current Output level Pulse width Polarity External reference signal input connector Type Input frequency Input level MHz ± ppm 3 to + dbm BNC, female Low threshold voltage:.5 V High threshold voltage: 2.1 V Input level range: to +5 V 2 μsec Positive or negative BNC, female 5 ma Low level voltage: V High level voltage: 5 V 1 μsec Positive or negative BNC, female 1. Combined load for both probe connections 2. Valid pixels are 99.99% and more. Below.1% (approx. 3 points) of fixed points of black, blue, green or red are not regarded as failure. 15

Rear Panel Description Typical General characteristic Internal reference signal output connector Type Output frequency Signal Type Output level Output Impedance Internal reference signal oven connector (Option 1E5) Type Output frequency Output level Bias tee input connector Type Damage level No RF spec degradation level Over current protection Video output GPIB USB host port USB (USBTMC 1 ) interface port LAN Handler I/O port Line Power 2 Frequency Voltage VA max Power consumption MHz ± 7 ppm Sinewave dbm ± 3 db into 5 Ω MHz ± 1 ppm dbm minimum ± 35 V, 1A DC 3 ma 1A (Circuit Breaker) BNC, female 5 Ω BNC, female BNC, female 15-pin mini D-Sub; female; drives XGA compatible monitors 24-pin D-Sub (Type D-24), female; compatible with IEEE-488 Universal serial bus jack, Type A coniguration; female; provides connection to mouse, key board, printer, ECal module, USB power sensor, or USB/GPIB interface Universal serial bus jack, Type B coniguration (4 contacts inline); female; provides connection to an external PC; compatible with USBTMC-USB488 and USB 2..LA /BaseT Ethernet, 8-pin coniguration; auto selects between the two data rates 36-pin centronics, female; provides connection to handler system 47 Hz to 63 Hz 9-264 VAC (Vpeak 12V) 35 VA max. 135 W (SPD) Rear panel Description Speciication General characteristic AUX input connector Type Input Range Accuracy 1% + 1 mv for ± 1 V input 1% + mv for ± V input BNC, female ± 1 V or ± V selectable 1. USB Test and Measurement Class (TMC) interface that communicates over USB, complying with the IEEE 488.1 and IEEE 488.2 standards. 2. A third-wire ground is required. 16

Block Diagram Source Solid-state Attenuator (65 db) SPDT Switch R1 R2 Mechanical Step Attenuator (6 db, db step) A B Mechanical Step Attenuator (6 db, db step) Bias-Tee Bias-Tee RCVR R1 IN SOURCE OUT SOURCE OUT CPLR THRU Port 1 Port 2 CPLR ARM RCVR A IN RCVR B IN CPLR ARM CPLR THRU SOURCE OUT SOURCE OUT RCVR R2 IN REF 1 REF 2 EMC, safety, environment and compliance Description EMC Speciication European Council Directive 24/8/EC IEC 61326-1:25 EN 61326-1:26 CISPR 11:23+A1:24 EN 5511:27 Group 1, Class A IEC 6-4-2:1995 +A2:2 EN 6-4-2:1995 +A2:21 4 kv CD/8 kv AD IEC 6-4-3:26 EN 6-4-3:26 1-3 V/m, 8- MHz/1.4 GHz - 2.7 GHz, 8% AM IEC 6-4-4:24 EN 6-4-4:24 1 kv power lines/.5 kv signal lines IEC 6-4-5:25 EN 6-4-5:26.5 kv line-line/1 kv line-ground IEC 6-4-6:23 + A1:24+ A2:26 EN 6-4-6:27 3 V,.15-8 MHz, 8% AM IEC 6-4-11:24 EN 6-4-11:24.5-3 cycle, %/7% ICES-1:26 Group 1, Class A AS/NZS CISPR11:24 Group 1, Class A 17

EMC, safety, environment and compliance Description Safety Environment Compliance Speciication European Council Directive 26/95/EC IEC 6-1:21/EN 6-1:21 Measurement Category I Pollution Degree 2 Indoor Use CAN/CSA C22.2 No. 6-1-4 Measurement Category I Pollution Degree 2 Indoor Use This product complies with the WEEE Directive (22/96/EC) marking requirements. The afixed 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 ofice, or for more information see http://www.keysight.com/environment/product/. Class C 18

Analyzer environmental speciications and dimensions Description Operating environment Temperature Error-corrected temperature range Humidity Altitude Vibration Non-operating environment Temperature Humidity Altitude Vibration Dimensions Weight (net) General characteristics +5 C to +4 C 23 C (± 5 C) with < 1 C deviation from calibration temperature 2% to 8% at wet bulb temperature < +29 C (non-condensation) to 2, m ( to 6561 feet).21 G maximum, 5 Hz to 5 Hz C to +6 C 2% to 9% at wet bulb temperature < +4 C (non-condensation) to 4,572 m ( to 15, feet).5 G maximum, 5 Hz to 5 Hz See next page Option 17: 19.8 kg Option 19: 19. kg Dimensions (front view) 19

Dimensions (rear view) Dimensions (side view) 2

Measurement Throughput Summary Measurement throughput data is supplemental performance data. Common condition for the measurement throughput data: Analyzer display turned off with: DISP : ENAB OFF Number of traces = 1 Firmware version: A.1. Cycle time for measurement completion Sweep mode: Swept System error correction: OFF Sweep mode: Step System error correction: ON Number of Points 51 21 41 161 51 21 41 161 Start 1 GHz, stop 1.2 GHz, 5 khz IF bandwidth Uncorrected 2 ms 3 ms 4 ms 12 ms 3 ms 6 ms ms 26 ms 2-port cal 2 ms 4 ms 7 ms 23 ms 4 ms 11 ms 18 ms 51 ms Start 1 GHz, stop 1.2 GHz, 1 khz IF bandwidth Uncorrected 52 ms 199 ms 394 ms 156 ms 52 ms 199 ms 394 ms 16 ms 2-port cal 2 ms 396 ms 786 ms 3119 ms 2 ms 396 ms 786 ms 3119 ms Start 3 khz, stop 4.5 GHz, 5 khz IF bandwidth Uncorrected 9 ms 11 ms 12 ms 18 ms 5 ms 11 ms 16 ms 45 ms 2-port cal 16 ms 21 ms 23 ms 35 ms ms 2 ms 32 ms 9 ms Start 3 khz, stop 4.5 GHz, 1 khz IF bandwidth Uncorrected 54 ms 23 ms 41 ms 1579 ms 54 ms 23 ms 41 ms 1579 ms 2-port cal 7 ms 45 ms 8 ms 3158 ms 7 ms 45 ms 8 ms 3157 ms Start 3 khz, stop 8.5 GHz, 5 khz IF bandwidth Uncorrected 12 ms 16 ms 17 ms 2 ms 6 ms 11 ms 17 ms 45 ms 2-port cal 24 ms 31 ms 33 ms 38 ms ms 21 ms 32 ms 9 ms Start 3 khz, stop 8.5 GHz, 1 khz IF bandwidth Uncorrected 55 ms 24 ms 41 ms 1579 ms 55 ms 24 ms 41 ms 1579 ms 2-port cal 8 ms 46 ms 81 ms 3157 ms 8 ms 46 ms 81 ms 3157 ms Cycle time vs. number of points Condition: Start 1 GHz, stop 1.2 GHz, 5 khz IF bandwidth Number of Points Sweep mode: Swept System error correction: OFF 3 1 ms 1 ms 11 2 ms 2 ms 51 2 ms 3 ms 1 2 ms 4 ms 21 3 ms 6 ms 81 7 ms 16 ms 161 12 ms 27 ms Sweep mode: Step System error correction: ON 21

Cycle time vs. IF bandwidth Condition: NOP=21, system error correction: OFF, Sweep mode: swep IF BW (Hz) Cycle Time (ms) IF BW (Hz) Cycle Time (ms) IF BW (Hz) Cycle Time (ms) IF BW (Hz) Cycle Time (ms) IF BW (Hz) 19297 1931 195 2 3 15 12865 15 1288 15 13 15 14 15 3 2 9649 2 91 2 98 2 11 2 3 3 6433 3 645 3 66 3 8 3 3 4 4825 4 484 4 5 4 6 4 2 5 3861 5 388 5 4 5 5 5 2 7 2735 7 276 7 29 7 4 Cycle Time (ms) Data transfer time 1 Number of Points 51 21 41 161 SCPI over GPIB 64-bit loating point 5 ms 15 ms 28 ms 1 ms 32-bit loating point 3 ms 8 ms 15 ms 56 ms ASCII 21 ms 78 ms 156 ms 618 ms SCPI over Mbps LAN (Socket) 2 REAL 64 1 ms 1 ms 2 ms 3 ms REAL 32 1 ms 1 ms 1 ms 2 ms ASCII 13 ms 47 ms 93 ms 363 ms SCPI over Mbps LAN (SICL-LAN) REAL 64 3 ms 3 ms 4 ms 6 ms REAL 32 3 ms 3 ms 4 ms 4 ms ASCII 3 ms 7 ms 11 ms 37 ms SCPI over USB 2 REAL 64 2 ms 2 ms 2 ms 3 ms REAL 32 2 ms 2 ms 2 ms 3 ms ASCII 3 ms 9 ms 17 ms 66 ms SCPI over GPIB/USB (82357B) REAL 64 8 ms 14 ms 23 ms 77 ms REAL 32 7 ms ms 14 ms 41 ms ASCII 74 ms 285 ms 568 ms 2268 ms COM 3 Variant Type 1 ms 1 ms 1 ms 1 ms 1. Measured using a VEE Pro 7. program running on a 3.2 GHz Pentium 4 DELL Precision 37, Transferred complex S11 data, using : CALC{1-36} : DATA : FDAT?. 2. USB Test and Measurement Class (TMC) interface that communicates over USB, complying with the IEEE 488.1 and IEEE 488.2 standards. 3. Measured using an E572A VBA macro running inside the analyzer. Transferred complex S11 data 22

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