E5071C KEYSIGHT | Alldatasheet
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E5071C ENA Network Analyzer – 9 kHz to 4.5/6.5/8.5 GHz – 100 kHz to 4.5/6.5/8.5 GHz (with bias tees) – 300 kHz to 14/20 GHz (with bias tees) E5092A Conigurable Multiport Test Set Data Sheet
Corrected System Performance for 75 Ω Measurements with
This document provides technical specifications for the E5071C ENA network analyzer and the E5092A multiport test set. E5071C-230 2-port test set, 9 kHz to 3 GHz without bias tees (Discontinued) E5071C-235 2-port test set, 100 kHz to 3 GHz with bias tees (Discontinued) E5071C-240 2-port test set, 9 kHz to 4.5 GHz without bias tees E5071C-245 2-port test set, 100 kHz to 4.5 GHz with bias tees E5071C-260 2-port test set, 9 kHz to 6.5 GHz without bias tees E5071C-265 2-port test set, 100 kHz to 6.5 GHz with bias tees E5071C-280 2-port test set, 9 kHz to 8.5 GHz without bias tees E5071C-285 2-port test set, 100 kHz to 8.5 GHz with bias tees E5071C-430 4-port test set, 9 kHz to 3 GHz without bias tees (Discontinued) E5071C-435 4-port test set, 100 kHz to 3 GHz with bias tees (Discontinued) E5071C-440 4-port test set, 9 kHz to 4.5 GHz without bias tees E5071C-445 4-port test set, 100 kHz to 4.5 GHz with bias tees E5071C-460 4-port test set, 9 kHz to 6.5 GHz without bias tees E5071C-465 4-port test set, 100 kHz to 6.5 GHz with bias tees E5071C-480 4-port test set, 9 kHz to 8.5 GHz without bias tees E5071C-485 4-port test set, 100 kHz to 8.5 GHz with bias tees E5071C-2D5 2-port test set, 300 kHz to 14 GHz with bias tees E5071C-4D5 4-port test set, 300 kHz to 14 GHz with bias tees E5071C-2K5 2-port test set, 300 kHz to 20 GHz with bias tees E5071C-4K5 4-port test set, 300 kHz to 20 GHz with bias tees E5092A Configurable multiport test set Calibration kits and ECal modules This E5071C data sheet also 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. 85032F Calibration kit 85033E Calibration kit 85052D Calibration kit 85092C Electronic calibration (ECal) module 85093C Electronic calibration (ECal) module N4691B Electronic calibration (ECal) module
Speciication (spec.): Warranted performance. All specifications apply at 23 ºC (±5 ºC), unless otherwise stated, and 90 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. 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): 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. Note: The specifications in this data sheet also apply to the E5071CEP ENA network analyzer express configuration. For more information about the Express ENA, visit www.keysight.com/find/express-e5071c 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. Option: 485 Frequency: 10 MHz IF bandwidth: 3 kHz If the same boundary conditions fall under more than one category in a table, apply the best value.
Table 1. Option 230/235/240/245/260/265/280/285/430/435/440/445/
10 MHz to 6 GHz 98 dB
10 MHz to 6 GHz IF bandwidth = 10 Hz 123 dB 130 dB
6 GHz to 7 GHz 117 dB 128 dB
7 GHz to 8 GHz 117 dB 126 dB
Figure 1. System dynamic range (specification and actual measurement data example,
- The test port dynamic range is calculated as the difference between the test port rms noise loor
uncertainty and interfering signals into account.
- The speciication might not be met at 5 MHz or 50 MHz.
- System Dynamic Range may be degraded by 10 dB when RF Range Fixed Mode is ON.
Table 2. Option 2D5/2K5/4D5/4K5
1 MHz to 10 MHz 82 dB
10 MHz to 100 MHz 95 dB
100 MHz to 6 GHz 98 dB
10.5 GHz to 15 GHz 75 dB
15 GHz to 20 GHz 71 dB
1 MHz to 10 MHz 107 dB 115 dB
10 MHz to 100 MHz 120 dB 129 dB
100 MHz to 6 GHz 123 dB 130 dB
6 GHz to 8 GHz 117 dB 129 dB
10.5 GHz to 15 GHz 100 dB 111 dB
15 GHz to 20 GHz 96 dB 105 dB
Figure 2. System dynamic range (specification and actual measurement data example,
- The test port dynamic range is calculated as the difference between the test port’s rms noise
uncertainty and interfering signals into account.
- The speciication might not be met at 5 MHz or 50 MHz.
Corrected system performance with calibration kit Option 230/235/240/245/260/265/280/285/430/435/440/445/460/465/480/485 Table 3. Corrected system performance with type-N device connectors,
Description
Speciication (dB) 9 kHz to 300 kHz 300 kHz to
10 MHz
10 MHz to
3 GHz
3 GHz to
6 GHz
6 GHz to
8.5 GHz
Directivity 49 49 46 40 38 Source match 41 41 40 36 35 Load match 49 49 46 40 37 Transmission uncertainty (specification) Reflection uncertainty (specification) Magnitude Transmission coeficient (dB) 0.1 0.01 Uncertainty (dB) 9 kHz to 300kHz 300 kHz to 10 MHz
10 MHz to 3 GHz
3 GHz to 6 GHz
6 GHz to 8.5 GHz S11 = S22 = 0; Source power = –10 dBm Phase Transmission coeficient (dB) 100 0.1 Uncertainty (degrees) S11 = S22 = 0; Source power = –10 dBm 9 kHz to 300kHz 300 kHz to 10 MHz 6 GHz to 8.5 GHz Magnitude Relection coeficient (linear) 0.05 0.04 0.03 0.02 0.01 Uncertainty (linear) 0 0.2 0.4 0.6 0.8 1 9 kHz to 300kHz, 300 kHz to 10 MHz 6 GHz to 8.5 GHz S21 = S12 = 0; Source power = –10 dBm Relection coeficient (linear) Uncertainty (degrees) 0 0.2 0.4 0.6 0.8 1 9 kHz to 300kHz, 300 kHz to 10 MHz 6 GHz to 8.5 GHz S21 = S12 = 0; Source power = –10 dBm Phase
Table 4. Corrected system performance with type-N device connectors, Speciication (dB) 300 kHz to Relection tracking ±0.100 ±0.040 ±0.060 ±0.070 Transmission tracking ±0.055 ±0.039 ±0.068 ±0.136 Transmission uncertainty (specification) Reflection uncertainty (specification) Phase Transmission coeficient (dB) 100
0.1 Uncertainty (degrees)
S11 = S22 = 0; Source power = –10 dBm 9 kHz to 300kHz 300 kHz to 10 MHz 6 GHz to 8.5 GHz
Table 5. Corrected system performance with 3.5 mm device connector type, Speciication (dB) 9 kHz to 300 kHz 300 kHz to Directivity 46 46 44 38 38 Source match 43 43 40 37 36 Load match 46 46 44 38 38 Transmission uncertainty (specification) Reflection uncertainty (specification)
Table 6. Corrected system performance with 3.5 mm device connector type, Speciication (dB) 300 kHz to Relection tracking ±0.100 ±0.040 ±0.050 ±0.070 Transmission tracking ±0.086 ±0.045 ±0.094 ±0.143 Transmission uncertainty (specification) Reflection uncertainty (specification)
Table 7. Corrected system performance with 3.5 mm device connectors, Speciication (dB) 300 kHz to
500 MHz
500 MHz to
2 GHz
2 GHz to
20 GHz
Relection tracking ±0.003 ±0.003 ±0.004 ±0.008 Transmission tracking ±0.068 ±0.034 ±0.100 ±0.208 Transmission uncertainty (specification) Reflection uncertainty (specification) 0.01 0.1 3 0 0 K Hz to 5 0 0 M Hz 5 0 0 M Hz to 2 G Hz
2 G Hz to 6 G Hz
6 G Hz to 2 0 G Hz
S11 = S22 = 0; Cal power = -10 dBm; Meas power = -10 dBm Uncertainty (dB) Transmission Coefficient (dB) Magnitude 0.1 100 3 0 0 K H z to 5 0 0 M Hz 5 0 0 M Hz to 2 G Hz S11 = S22 = 0; Cal power = -10 dBm; Meas power = -10 dBm Phase Uncertainty (Degrees) Trans mis s ion C oefficient (dB ) 0.01 0.02 0.03 0.04 0.05 0 0.2 0.4 0.6 0.8 1 Uncertainty (linear) Reflection coefficient (linear) Magnitude
300 KHz to 500 MHz, 500 MHz to 2 GHz
2 GHz to 6 GHz
6 GHz to 20 GHz
S21 = S12 = 0; Cal power = -10 dBm; Meas power = -10 dBm 0 0.2 0.4 0.6 0.8 1 Uncertainty (degrees) Reflection coefficient (linear) Phase S21 = S12 = 0; Cal power = -10 dBm; Meas power = -10 dBm
Table 8. Corrected system performance with 3.5 mm device connectors, Speciication (dB) 300 kHz to Relection tracking ±0.110 ±0.020 ±0.030 ±0.040 Transmission tracking ±0.355 ±0.026 ±0.043 ±0.130 Transmission uncertainty (specification) Reflection uncertainty (specification)
Uncorrected System Performance1 Table 9. Option 230/235/240/245/260/265/280/285/430/435/440/445/ Speciication (dB) 9 kHz to 300 kHz 300 kHz to to 8.5 GHz Directivity 20 dB 25 dB 20 dB 15 dB Source match 20 dB 25 dB 20 dB 15 dB Load match2 12 dB 17 dB 12 dB 10 dB Transmission tracking3 ±1.5 dB ±1.0 dB ±1.0 dB ±1.0 dB Relection tracking ±1.5 dB ±1.0 dB ±1.0 dB ±1.0 dB Table 10. Option 2D5/2K5/4D5/4K5 Speciication (dB) 300 kHz to 1 MHz
1 MHz
1 GHz
11 GHz to
Directivity 20 dB 25 dB 25 dB 20 dB 15 dB 15 dB 15 dB Source match 20 dB 25 dB 25 dB 20 dB 15 dB 15 dB 15 dB Load match 9 dB 17 dB 15 dB 11 dB 9 dB 8 dB 7 dB Transmission tracking Relection tracking 1. The speciication might not be met when Shift LO Mode is ON. 2. Load match may be degraded by 3 dB when RF Range Fixed Mode is ON. 3. Transmission tracking may be degraded by ± 4 dB when RF Range Fixed Mode is ON.
Table 11. Option 230/235/240/245/260/265/280/285/430/435/440/
Table 12. Option 230/235/240/245/260/265/280/285/430/435/440/
50 MHz absolute)
5 GHz to 6 GHz
6 GHz to 7 GHz
- Source output performance on port 1 only. Other port output performance is typical.
- Level accuracy is taken at 0 dBm, relative to 50 MHz reference unless otherwise stated.
- Level linearity given is relative to 0 dBm.
- The speciication might not be met at 5 MHz or 50 MHz.
- The level accuracy speciication needs to be taken into account for test port output power level.
- Power calibration using an external power meter improves level accuracy of the test port output power.
Proper power meters/sensors, and the 82357B USB-GPIB interface are required to conduct power calibration.
Table 13. Option 2D5/2K5/4D5/4K5
1 MHz to 5 MHz
8.5 GHz to 20 GHz
1 MHz to 6 GHz
6 GHz to 8 GHz
10.5 GHz to 15 GHz
15 GHz to 20 GHz
- Level accuracy is taken at –5 dBm, relative to 50 MHz reference unless otherwise stated.
- Level accuracy is taken at –5 dBm, relative to 50 MHz reference.
- Level linearity given is relative to –5 dBm.
- The sweep range shifts based on the selected source attenuator value (0 dB to 60 dB, 10 dB step).
- The level accuracy speciication needs to be taken into account for test port output power level.
- Power calibration using an external power meter improves level accuracy of the test port output power.
Proper power meters/sensors, and the 82357B USB-GPIB interface are required to conduct power calibration.
- Source output performance on port 1 only. Other port output performance is typical.
1 MHz to 10 GHz
10 GHz to 13 GHz
13 GHz to 15 GHz
15 GHz to 18 GHz
18 GHz to 20 GHz
Table 14. Option 230/235/240/245/260/265/280/285/430/435/440/ Table 15. Option 2D5/2K5/4D5/4K5
1 GHz to 20 GHz
- This includes 6th and 7th harmonics when the test frequency is from 1 MHz to 1 GHz.
1/8th spurious is excluded from 8.76 GHz to 17.52 GHz.
- The level accuracy speciication needs to be taken into account for test port output power level.
- Power calibration using an external power meter improves level accuracy of the test port output power.
Proper power meters/sensors, and the 82357B USB-GPIB interface are required to conduct power calibration.
- Maximum output power is the maximum power of "Range" in Table 13 Test port output power.
- Source output performance on port 1 only. Other port output performance is typical.
Table 16. Option 230/235/240/245/260/265/280/285/430/435/440/
10 MHz to 5 GHz
7 GHz to 8 GHz
- The speciication might not be met at 5 MHz or 50 MHz.
- Cross talk may be degraded by 10 dB when RF Range Fixed Mode is ON .
- Test port noise loor may be degraded by 10 dB when RF Range Fixed Mode is ON.
Table 17. Option 2D5/2K5/4D5/4K5
5 MHz to 10 MHz
10 MHz to 45 MHz
45 MHz to 4 GHz
4 GHz to 6 GHz
8.5 GHz to 15 GHz
1 MHz to 10 MHz
10 MHz to 100 MHz
100 MHz to 6 GHz
- The speciication might not be met at 5 MHz or 50 MHz.
Table 18. Option 230/235/240/245/260/265/280/285/430/435/440/
3 GHz to 5 GHz
Table 19. Option 2D5/2K5/4D5/4K5
10 MHz to 10 GHz
10 GHz to 15 GHz
5 GHz to 10 GHz
Table 20. Option 230/235/240/245/260/265/280/285/430/435/440/
- The speciication might not be met at the following frequencies: 333.333 kHz, 406.25 kHz,
- The speciication might not be met at 5 MHz or 50 MHz.
- When RF Range Fixed Mode is ON, multiply by 2.3.
Table 21. Option 2D5/2K5/4D5/4K5
1 MHz to 10 MHz (IFBW = 3 kHz)
13.137 GHz to 17 GHz (IFBW = 70 kHz)
17 GHz to 20 GHz (IFBW = 70 kHz)
- The speciication might not be met at the following frequencies: 406.25 kHz, 666.667 kHz,
- The speciication might not be met at 5 MHz or 50 MHz.
- Trace noise SPD is deined with transmission measurements only.
Table 22. Option 230/235/240/245/260/265/280/285/430/435/440/ Table 23. Option 2D5/2K5/4D5/4K5
- Stability is deined as a ratio measurement at the test port.
Table 24. Option 230/235/240/245/260/265/280/285/430/435/440/
- Dynamic accuracy is verified with the following measurements:
- compression over frequency
- IF linearity at two frequencies (1 MHz and 1.195 GHz) using a reference level of –10 dBm for an input power range of 0 to –100 dBm. For value below –60 dBm, refer to "VNA Receiver Dynamic Accuracy Specifications and Uncertainties N5247-90003" http://cp.literature.keysight.com/litweb/pdf/N5247-90003.pdf 2. RF Range Fixed Mode is OFF
Table 25. Option 2D5/2K5/4D5/4K5
- Dynamic accuracy is verified with the following measurements:
- compression over frequency
- IF linearity at two frequencies (1 MHz and 1.195 GHz) using a reference level of -10 dBm for an input power range of 0 to -60 dBm. For value below -60 dBm, refer to "VNA Receiver Dynamic Accuracy Specifications and Uncertainties N5247-90003"
Test port input (group delay)1 T able 26. Option 230/235/240/245/260/265/280/285/430/435/440/ 445/460/465/480/485 Description Speciication Supplemental information Aperture (selectable) (frequency span)/(number of points - 1) Maximum aperture 25% of frequency span Minimum delay Limited to measuring no more than 180° of phase change within the minimum aperture. Accuracy See graph below, typical The following graph shows group delay accuracy with type-N connectors, full 2-port calibration and a 10 Hz IF bandwidth, RF Range Fixed Mode: OFF Calibration kit (85032F). Insertion loss is assumed to be < 2 dB. In general, the following formula can be used to determine the accuracy, in seconds, of a speciic group delay measurement: ±phase accuracy (degrees) / [360 x aperture (Hz)] Accuracy (nSec) Aperture (MHz) 0.01 0.1 1 10 100 100 0.1 0.01 0.001 Ca l power = - 10 d Bm ; M eas po we r = -1 0 dB m ; E le ct rica l Length = 10 m Fr equency = 1 G Hz 1. Group delay is computed by measuring the phase change within a speciied step (determined by the frequency span and the number of points per sweep).
Test port input (group delay)1 (continued) T able 27. Option 2D5/2K5/4D5/4K5 Description Speciication Supplemental information Aperture (selectable) (frequency span)/(number of points - 1) Maximum aperture 25% of frequency span Minimum delay Limited to measuring no more than 180° of phase change within the minimum aperture. Accuracy See graph below, typical The following graph shows group delay accuracy with 3.5 mm (male) connectors, full 2-port calibration and a 10 Hz IF bandwidth. Calibration kit (85052D). Insertion loss is assumed to be < 2 dB. In general, the following formula can be used to determine the accuracy, in seconds, of a speciic group delay measurement: ±phase accuracy (degrees) / [360 x aperture (Hz)] Ca l power = -1 0 dB m; Me as po we r = -1 0 dB m; El ec tric al Leng th = 10 m Fr equency = 1 GH z Accuracy (nSec) Aperture (MHz) 0.001 0.01 0. 1 100 0.01 0. 11 10 100 1. Group delay is computed by measuring the phase change within a speciied step (determined by the frequency span and the number of points per sweep).
T able 28. System bandwidth Description General characteristics IF bandwidth settings Range 10 Hz to 1.5 MHz Nominal settings are: 10, 15, 20, 30, 40, 50, 70, 100, 150, 200, 300, 400, 500, 700, 1 k, 1.5 k, 2 k, 3 k, 4 k, 5 k, 7 k, 10 k, 15 k, 20 k, 30 k, 40 k, 50 k, 70 k, 100 k, 150 k, 200 k, 300 k, 400 k, 500 kHz, 700 kHz, 1 MHz,
1.5 MHz
T able 29. Front panel information Description Typical General characteristics RF connectors Option 230/235/240/ 245/260/265/280/285/ 430/435/440/445/460/ 465/480/485 Option 2D5/2K5/4D5/4K5 Type-N, female, 50 Ω 3.5 mm (male), 50 Ω nominal Probe power Connector 3 terminal connector x 2 Voltage & maximum current +15 V ±2% (400 mA) (Combined load for both probe connections) Display Type 10.4 in TFT color LCD with touch screen Resolution XGA (1024 x 768)1 blue, green or red are not regarded as failure.
T able 30. Rear panel information Description Typical General characteristics External trigger input connector Type BNC, female Input level Low threshold voltage: 0.5 V High threshold voltage: 2.1 V Input level range: 0 to + 5 V Pulse width ≥ 2 μsec Polarity Positive or negative External trigger output connector Type BNC, female Maximum output current 50 mA Output level Low level voltage: 0 V High level voltage: 5 V Pulse width 1 μsec Polarity Positive or negative External reference signal input connector Type BNC, female Input frequency 10 MHz ±10 ppm Input level –3 to + 10 dBm Internal reference signal output connector Type BNC, female Output frequency 10 MHz ±7 ppm Signal type Sinewave Output level 0 dBm ±3 dB into 50 Ω Output impedance 50 Ω Internal reference signal oven connector Type BNC, female Output frequency 10 MHz ±1 ppm Output level 0 dBm minimum
T able 31. Rear panel information (continued) Description Typical General characteristics Bias tee input connector Type BNC, female (for each port) Maximum voltage ±35 VDC Maximum current (no degradation in RF speciications) ±200 mA Maximum current (damage level) ±500 mA Fuse 500 mA, bi-pin style Video output 15-pin mini D-Sub; female; drives XGA compatible monitors GPIB 24-pin D-Sub (Type D-24), female; compatible with IEEE-488 interface speci- ication is designed to be used in environment where electrical noise is relatively low. LAN or USBTMC inter- face is recommended to use at the higher electrical noise environment. USB-host port Universal serial bus jack, Type A coniguration (4 contacts inline, contact 1 on left); female; provides connection to printer, ECal module, USB/GPIB interface or multiport test set Contact 1 Vcc: 4.75 to 5.25 VDC, 500 mA, maximum Contact 2 – Data Contact 3 + Data Contact 4 Ground USB (USBTMC1) interface port Universal serial bus jack, Type B coniguration (4 contacts inline); female; provides connection to an external PC; compatible with USBTMC-USB488 and USB 2.0. LAN 10/100/1000 BaseT Ether- net, 8-pin coniguration; auto selects between the two data rates Handler I/O port 36-pin centronics, female; provides connection to handler system
Description Typical General characteristics Line power 2 Frequency 47 Hz to 63 Hz Voltage 90-264 VAC (Vpeak > 120 V) VA max 350 VA max. Power Consumption Option 230/235/240/245/260/265/280/285 Option 430/435/440/445/460/465/480/485 Option 2D5/2K5 Option 4D5/4K5
130 W (SPD)
155 W (SPD)
160 W (SPD)
185 W (SPD)
Description Speciication General characteristics AUX input connector Type BNC, female x 2 Input range ±1 V or ±10 V selectable Accuracy 1 % + 1 mV for ±1 V input 1 % + 10 mV for ±10 V input T able 33. LXI compliance Description General characteristics Class C (only applies to units that are shipped with irmware revision A.08.00 or later) T able 32. Rear panel information (continued) 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.
T able 34. EMC, safety and environment Description General characteristics EMC European Council Directive 2004/108/EC IEC 61326-1:2005 EN 61326-1:2006 CISPR 11:2003+A1:2004 EN 55011:2007 Group 1, Class A IEC 61000-4-2:1995 +A2:2000 EN 61000-4-2:1995 +A2:2001 4 kV CD / 8 kV AD IEC 61000-4-3:2006 EN 61000-4-3:2006 1-3 V/m, 80-1000 MHz / 1.4 GHz - 2.7 GHz, 80% AM IEC 61000-4-4:2004 EN 61000-4-4:2004 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 61000-4-6:2003 + A1:2004+ A2:2006 EN 61000-4-6:2007 3 V, 0.15-80 MHz, 80% AM IEC 61000-4-11:2004 EN 61000-4-11:2004 ICES-001:2006 Group 1, Class A AS/NZS CISPR11:2004 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 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 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 see www.keysight.com/environment/product/ for more information.
T able 35. Analyzer environmental specifications and dimensions Description General characteristics Operating environment Temperature +5 °C to +40 °C Error-corrected temperature range 23 °C (±5 °C) with < 1 °C deviation from calibration temperature Humidity 20% to 80% at wet bulb temperature < +29 °C (non-condensation) Altitude 0 to 2,000 m (0 to 6561 feet) Vibration 0.21 G maximum, 5 Hz to 500 Hz Non-Operating storage environment Temperature –10 °C to +60 °C Humidity 20% to 90% at wet bulb temperature < +40 °C (non-condensation) Altitude 0 to 4572 m (0 to 15,000 feet) Vibration 0.5 G maximum, 5 Hz to 500 Hz Dimensions See next page. Weight (net) Option 230/240/260/280 (2-port) Option 235/245/265/285 (2-port) Option 430/480/440/460 (4-port) Option 435/445/465/485 (4-port) Option 2D5/2K5 (2-port) Option 4D5/4K5 (4-port) 18.2 kg 18.3 kg 19.9 kg 20.0 kg 19.8 kg 21.8 kg
Table 36. Option 240/245/260/265/280/285/440/445/460/465/480/485
- Supplemental performance data.
- Measured with firmware version B.12.03 with serial number prefix MY465.
Start 100 kHz, stop 8.5 GHz, 500 kHz IF bandwidth Uncorrected 14 18 19 23 2-port cal 28 35 37 45 4-port cal 55 69 74 90 Start 100 kHz, stop 8.5 GHz, 100 kHz IF bandwidth Uncorrected 14 18 19 25 2-port cal 28 35 37 49 4-port cal 55 69 74 98 Start 100 kHz, stop 8.5 GHz, 1 kHz IF bandwidth Uncorrected 56 205 403 1581 2-port cal 112 410 805 3162 4-port cal 224 820 1609 6322
Table 37. Option 240/245/260/265/280/285/440/445/460/465/480/485
Table 38. Option 2D5/2K5/4D5/4K5
Table 39. Option 2D5/2K5/4D5/4K5
Table 40. Option 240/245/260/265/280/285/440/445/460/465/480/485 Table 41. Option 2D5/2K5/4D5/4K5
Table 42. 240/245/260/265/280/285/440/445/460/465/480/485 Table 43. Option 2D5/2K5/4D5/4K5
Table 44. Option 230/235/240/245/260/265/280/285/430/435/440/445/46
Table 45. All options
- Supplemental performance data. Data transfer time varies depending on the type of PC and control software.
- Measured with irmware version B.12.03 with serial number preix MY465.
- Transferred complex S 11 data, using :CALC{1-36}:DATA:FDAT?.
- Measured using an E5071C VBA macro running inside the analyzer. Transferred complex S 11 data.
The section provides test input/output performance without calibration by the E5071C. Table 46. Test set input/output performance Table 47. Option E5092A-020 port performance
50 MHz to 2 GHz
2 GHz to 4 GHz
4 GHz to 8 GHz
8 GHz to 10 GHz
10 GHz to 18 GHz
2 GHz to 3 GHz
3 GHz to 8 GHz
50 MHz to 3 GHz
3 GHz to 10 GHz
10 GHz to 16 GHz
16 GHz to 18 GHz
- SPDT: Single-pole-double-throw switches. Applies to SW5, SW6, SW7, SW8, SW9 and SW10 in the E5092A. (See Figure 20.)
- SP4T: Single-pole-four-throw switches. Applies to SW1, SW2, SW3 and SW4 in the E5092A. (See Figure 20.)
10 GHz to 20 GHz
1.3 GHz to 4 GHz
50 MHz to 100 MHz
100 MHz to 2 GHz
3 GHz to 4 GHz
10 GHz to 14 GHz
14 GHz to 18 GHz
(Sum of 4 channels), no heat source and no wall close to the unit.
50 M to 4 GHz
4 G to 12 GHz
12 G to 20 GHz
50 MHz to 500 MHz
500 MHz to 1 GHz
1 GHz to 2 GHz
6 GHz to 10 GHz
Table 48. Option E5092A-020 port performance (continued)
- SPDT: Single-pole-double-throw switches. Applies to SW5, SW6, SW7, SW8, SW9 and SW10 in the E5092A. (See Figure 20.)
- SP4T: Single-pole-four-throw switches. Applies to SW1, SW2, SW3 and SW4 in the E5092A. (See Figure 20.)
- This speciication is deined when all ports are terminated with a 50 ohm load.
Table 49. Control line Table 50. DC source
1 M ohm load impedance
Table 51. Operating storage environment Table 52. Non-operating storage environment
- Input voltage will be clipped at about ±5.2 V when over this range.
- The output voltage can be set in this range.
- The output voltage resolution becomes effective between 0 V to 5.2 V.
Table 53. Front panel information Table 54. Rear panel information Table 55. Test set dimensions and block diagram Figure 10. Dimensions (front view, with Option E5092A-020, in millimeters, nominal)
- 1A third-wire ground is required.
Figure 16. Control line pin assignment (E5092A-020)
Table 56. Corrected system performance with type-N 75 Ω device connectors,
0.01 Mag (dB)
0.1 Phase (deg)
54 | Keysight | E5071C ENA Network Analyzer / E5092A Conigurable Multiport Test Set - Data Sheet myKeysight www.keysight.com/find/mykeysight A personalized view into the information most relevant to you. www.axiestandard.org AdvancedTCA® Extensions for Instrumentation and Test (AXIe) is an open standard that extends the AdvancedTCA for general purpose and semiconductor test. Keysight is a founding member of the AXIe consortium. ATCA®, AdvancedTCA®, and the ATCA logo are registered US trademarks of the PCI Industrial Computer Manufacturers Group. www.lxistandard.org LAN eXtensions for Instruments puts the power of Ethernet and the Web inside your test systems. Keysight is a founding member of the LXI consortium. www.pxisa.org PCI eXtensions for Instrumentation (PXI) modular instrumentation delivers a rugged, PC-based high-performance measurement and automation system. Three-Year Warranty www.keysight.com/find/ThreeYearWarranty Keysight’s commitment to superior product quality and lower total cost of ownership. The only test and measurement company with three-year warranty standard on all instruments, worldwide. Keysight Assurance Plans www.keysight.com/find/AssurancePlans Up to five years of protection and no budgetary surprises to ensure your instruments are operating to specification so you can rely on accurate measurements. www.keysight.com/go/quality Keysight Technologies, Inc. DEKRA Certified ISO 9001:2008 Quality Management System Keysight Channel Partners www.keysight.com/find/channelpartners Get the best of both worlds: Keysight’s measurement expertise and product breadth, combined with channel partner convenience. www.keysight.com/find/ena This information is subject to change without notice. © Keysight Technologies, 2013 - 2014 Published in USA, December 2, 2014 5989-5479EN www.keysight.com For more information on Keysight Technologies’ products, applications or services, please contact your local Keysight office. The complete list is available at: www.keysight.com/find/contactus Americas Canada (877) 894 4414 Brazil 55 11 3351 7010 Mexico 001 800 254 2440 United States (800) 829 4444 Asia Paciic Australia 1 800 629 485 China 800 810 0189 Hong Kong 800 938 693 India 1 800 112 929 Japan 0120 (421) 345 Korea 080 769 0800 Malaysia 1 800 888 848 Singapore 1 800 375 8100 Taiwan 0800 047 866 Other AP Countries (65) 6375 8100 Europe & Middle East Austria 0800 001122 Belgium 0800 58580 Finland 0800 523252 France 0805 980333 Germany 0800 6270999 Ireland 1800 832700 Israel 1 809 343051 Italy 800 599100 Luxembourg +32 800 58580 Netherlands 0800 0233200 Russia 8800 5009286 Spain 800 000154 Sweden 0200 882255 Switzerland 0800 805353 Opt. 1 (DE) Opt. 2 (FR) Opt. 3 (IT) United Kingdom 0800 0260637 For other unlisted countries: www.keysight.com/find/contactus (BP-09-23-14)