N1090A KEYSIGHT | Alldatasheet

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N1090A, N1092A/B/C/D/E and N1094A/B DCA-M Optical and Electrical Sampling Oscilloscopes Data Sheet High accuracy, low cost solutions for optical and electrical waveform analysis – Solutions for 1 through 28 Gb/s – Very low noise and jitter – Fast sampling rates for high throughput

02 | Keysight | N1090A, N1092A/B/C/D/E and N1094A/B DCA-M Optical and Electrical Sampling Oscilloscopes - Data Sheet The Keysight Technologies, Inc. 86100 digital communication analyzer (DCA) family is recognized as the industry standard for verifying optical transmitter compliance to communications standards. For years engineers have trusted the DCA to provide accurate and easy measurement of digital communication waveforms. The Keysight N109X DCA-M family has built on that legacy by using the high-performance elements of both the 86100 oscilloscope mainframe acquisition system and the optical and electrical channel hardware of the 861XX plug-in modules. The N1090A supports 1 to 10 Gb/s measurements, while the N1092 and N1094 are for use from 20 to 28 Gb/s. (Data rate ranges of the N1092 can be extended using Options PLK and IRC.) Designed specifically for high-volume manufacturing test applications, the DCA-M provides the measurement accuracy of the 86100, without the extra cost associated with an R&D test solution. Be confident that your test results will never be questioned when performed with an N109X because end users of your transceivers and components are likely to use similar accurate, high-quality test systems to verify component performance. Unlike the 86100, which uses modules to create a waveform analysis system, the N109X are completely integrated instruments built in a small form factor. Low-noise, high-sensitivity calibrated reference receivers — compliant to industry standard tolerances — are available for both multimode and single-mode signals at wavelengths from 750 to 1630 nm. N1090A noise is as low as 1 µW, while N1092 noise is as low as 4 µW, creating a measurement system with very high dynamic range. The sensitivity of the N1092 is significantly better than the comparable 86100 system making it an excellent solution for PAM-4 waveform analysis. Electrical channels are available with 20 GHz (N1090A), 30 GHz, and 50 GHz bandwidths (N1092/4). The N109X user interface and operating system is identical to the modern FlexDCA interface of the 86100D. A user-provided PC running N1010A FlexDCA software controls the N109X over a simple USB 2.0 or 3.0 connection. Get 86100 DCA Accuracy with a Test Solution Designed for Manufacturing

03 | Keysight | N1090A, N1092A/B/C/D/E and N1094A/B DCA-M Optical and Electrical Sampling Oscilloscopes - Data Sheet There are three ways to control the N109X system – A PC directly connected to the N109X with a USB cable – An 86100D mainframe connected to the N109X with a USB cable. (The 86100D can then be controlled via GPIB or LAN) – For an automated test system environment, the simplest and preferred method to control the N109X is to connect the primary test system PC to a low-cost modern PC via LAN. The FlexDCA interface resides on the second PC. The second PC is then connected to the N109X via USB. This eliminates most issues of compatibility between an existing test system PC and the N109X hardware and can greatly simplify converting an 86100D system to an N109X system Controlling the N109X Connection schemes N1090/2 External PC FlexDCA Automation programUSB Optical channel Acquisition board N1090/2 86100 mainframe External PC FlexDCA Automation program USB LAN/GPIB Optical channel Acquisition board N1090/2 External PC External PC FlexDCA Automation program USB LAN (SCPI) Optical channel Acquisition board

04 | Keysight | N1090A, N1092A/B/C/D/E and N1094A/B DCA-M Optical and Electrical Sampling Oscilloscopes - Data Sheet Controlling the N109X (Continued) System setup The following guidelines indicate the fundamental requirements for PC’s connected to the N109X and running the FlexDCA interface: For a single channel setup (N1090A or N1092A) – Intel I3 processor or better – 4 GB memory – Windows 7 (32 or 64 bit) For a parallel test setup (multiple instruments or multiple channels) – Intel I5 or better – 8 GB memory – Windows 7 (64 bit) The communication API between your system controller and the PC is SCPI over LAN, either VXI-11 or HiSlip. If NI-VISA or IO Libraries are used to communicate with GPIB instruments, the switch to SCPI/LAN is very simple. It is important to note that there is no need to do any USB programming. This is all handled by the FlexDCA interface. The FlexDCA interface is free and can be downloaded at www.keysight.com/find/flexdca_ download. Remote programs previously developed using the 86100 FlexDCA interface can be leveraged directly to control an automated N109X system. Use FlexDCA SCPI programming tools to simplify conversion of legacy 86100-based automation to FlexDCA compatible code. Measurement results are generally 50 percent faster with the new N1090A, and up to 300 percent faster with the N1092/4 due to significantly faster sampling rates. Similar to the 86100, a reference clock, synchronous with the signal being measured, is required to trigger the N109X. The clock input range for the N1090A is 500 MHz to 12 GHz, and the N1092 and N1094 are 500 MHz to 28.5 GHz. Timebase calibration, previously performed at service centers, can now be performed by users, reducing cost of ownership and instrument down time.

05 | Keysight | N1090A, N1092A/B/C/D/E and N1094A/B DCA-M Optical and Electrical Sampling Oscilloscopes - Data Sheet Fundamental measurements required to perform transmitter compliance tests such as eye- masks, extinction ratio, and other eye diagram parameters, are standard features of the N109X with N1010A system. To reduce cost, the pattern lock feature of the 86100 is not available in the N1090A, but is optionally available with the N1092/4 Option PLK. Features that require pattern lock include Options 200 (advanced jitter analysis), 201 (advanced waveform analysis), 300 (advanced amplitude analysis/RIN), Option IRC (extends the operating range of the optical channels ± 50% and creates reference receivers at arbitrary data rates between 10 and 42 Gb/s), and SIM (Infinisim waveform transformation software). Measurement features that require pattern lock will not operate when used with the N1090A system. Basic oscilloscope mode measurements of pulses rather than eye diagrams are limited to patterns less than 2 ns in duration with the N1090A. Controlling the N109X (Continued) System setup (Continued) USB (private) Pattern generator/Clock source Device under test PC with FlexDCA software Trigger in Optical/Electrical in N109X

06 | Keysight | N1090A, N1092A/B/C/D/E and N1094A/B DCA-M Optical and Electrical Sampling Oscilloscopes - Data Sheet N1090A Configurations Choose from the following reference receiver options to best meet your measurement needs. Select one option. Options cannot be combined. However if test needs change, the N1090A can be returned to a Keysight service center to convert from any of the five reference receiver options to one of the other four options listed. Unfiltered mode is not available in any option. Option Description Option 140 1.244/1.25/1.229 Gb/s Option 160 2.458/2.488/2.5 Gb/s Option 180 3.072/3.125 Gb/s Option 204 8.5/9.95/10.3/10.5 Gb/s A 20 GHz electrical channel is also available: Option Description Option EEC Add 20 GHz electrical channel

07 | Keysight | N1090A, N1092A/B/C/D/E and N1094A/B DCA-M Optical and Electrical Sampling Oscilloscopes - Data Sheet N1092/4 Configurations Using the FlexDCA user interface, simultaneous measurements of multiple channels can be performed in parallel without any degradation in speed or accuracy. Model number Description N1092A One optical channel N1092B Two optical channels N1092C One optical, two electrical channels N1092D Four optical channels N1092E Two optical, two electrical channels N1094A Two electrical channels N1094B Four electrical channels

08 | Keysight | N1090A, N1092A/B/C/D/E and N1094A/B DCA-M Optical and Electrical Sampling Oscilloscopes - Data Sheet The N1092/4 models have the following options available. Option Description Option 168 25.78 Gb/s TDEC filter (100GBASE-SR4) (not available with the N1094) Option 206 20.6 Gb/s reference receiver (not available with the N1094) Option FS1 Increase sampling rate from 100 to 250 kSa/s Option LOJ Reduce residual jitter from 400 to < 200 fs Option PLK Add pattern lock capability Option IRC Extend optical channel bandwidth to 45 GHz and allow creation of reference receiver filters at any data rate from 8 to 42 Gb/s (not available with the N1094) Option 200 Advanced jitter analysis. Provides extensive and accurate jitter decomposition, which is increasingly important as data rates increase and margins reduce. Quickly customize your view of many parameters and take advantage of advanced features such as jitter spectrum analysis Option 201 Advanced waveform analysis. Its powerful features allow you to generate much deeper waveform files, integrate MATLAB analysis, and use the built-in linear feed-forward equalizer Option 300 Advanced amplitude/noise analysis. Extends jitter mode capabilities into the amplitude domain and allows you to see the decomposition of the amplitude into several factors. Option 300 also reports relative intensity noise (RIN) and Q-factor Option 401 Advanced eye analysis. For device testing with long patterns and obtaining BER- contour mask testing, Option 401 integrates with the classic or FlexDCA interfaces to decompose the jitter and amplitude interference measurements into the key parameters. When using the embedded capability within FlexDCA or the included automation application, you may characterize jitter on simultaneous multiple lanes and obtain concise and visual results Option 500 Productivity package (Rapid eye, TDEC). Enables rapid eye acquisition, providing two significant benefits. First, unlike conventional sampling and data display, when an eye mask test is performed, every acquired sample will be compared to the mask, as the central eye is composed of all acquired samples. Effective throughput is improved at least 60 percent. Second, incomplete eye diagram displays that can occur when triggering at sub-rates are eliminated. Option 500 also includes the TDEC analysis required for 100GBASE-SR4 test Option 9FP PAM-N analysis. Eye width, eye height, eye skew, level amplitude, level noise, level skew, and linearity measurements Option SIM Infinisim Waveform Transformation software Option 030 Configure electrical channels with a 30 GHz bandwidth (not available with the N1092) Option 050 Configure electrical channels with a 50 GHz bandwidth (N1092C/E have standard

50 GHz bandwidths for the electrical channels)

The N1092C and N1092E electrical channels have 50 GHz bandwidths that can be reduced by the user to 20, 33 and 40 GHz. Note that operation of Options 200, 201, 300, 401, 500, 9FP, and SIM can be achieved by having the appropriate licenses installed on the N1092, the computer controlling the N1092, or an 86100 mainframe used to control the N1092. N1092/4 Configurations

09 | Keysight | N1090A, N1092A/B/C/D/E and N1094A/B DCA-M Optical and Electrical Sampling Oscilloscopes - Data Sheet N1090A Optical Channel Specifications Item Description Nominal wavelength range 750 to 1650 nm Factory-calibrated wavelengths (OE conversion gains) 850/1310/1550 nm (± 20 nm) Reference receiver filter options (select one) N1090A-140 GPON, 1.244 Gb/s and Gb Ethernet, 1.250 Gb/s, CPRI 1.229 Gb/s N1090A-160 OC-48/STM-16, 2.488 Gb/s, 2 Gb Ethernet, 2.500 Gb/s, CPRI 2.458 Gb/s N1090A-180 10 Gb Ethernet LX-4, 3.125 Gb/s, CPRI 3.072 Gb/s N1090A-200 8x fibre channel, 8.500 Gb/s OC-192/STM-64, 9.953 Gb/s 10 Gb Ethernet, 10.3125 Gb/s 10x fibre channel, 10.51875 Gb/s OC-192/STM-64 FEC, 10.664 Gb/s OC-192/STM-64 FEC, 10.709 Gb/s 10 Gb Ethernet FEC, 11.0957 Gb/s 10x fibre channel FEC, 11.317 Gb/s N1090A-204 8x fibre channel, 8.500 Gb/s OC-192/STM-64, 9.953 Gb/s 10 Gb Ethernet, 10.3125 Gb/s, CPRI 9.830 Gb/s 10x fibre channel, 10.51875 Gb/s, CPRI 10.138 Gb/s Measured frequency response data during recertification falls within performance test line limits with allowance for system-to-system measurement uncertainty. Option 140 Option 160 Option 180 Options 200 and 204 RMS noise at 850 nm Characteristic 1.3 µW 1.5 µW 2.5 µW 2.5 µW Maximum 2.0 µW 2.5 µW 4.0 µW 4.0 µW RMS noise at 1310/1550 nm Characteristic 0.8 µW 1.0 µW 1.4 µW 1.4 µW Maximum 1.3 µW 1.5 µW 2.5 µW 2.5 µW Sensitivity 1 at 850 nm (Characteristic — smallest average power for mask test) –20 dBm –20 dBm –19 dBm –16 dBm Sensitivity 1 at 1310/1550 nm (Characteristic — smallest average power for mask test) –21 dBm –21 dBm –20 dBm –17 dBm 1. Generally represents the power level where an ideal eye diagram will approach 0% mask margin due to noise of the oscilloscope. Provides a non-specified figure of merit to compare sensitivities of various optical channels.

10 | Keysight | N1090A, N1092A/B/C/D/E and N1094A/B DCA-M Optical and Electrical Sampling Oscilloscopes - Data Sheet Scale factor (per division) Minimum 2 µW Maximum 100 µW CW accuracy (single marker, referenced to average power monitor) Single-mode ± 25 µW ± 3% Multimode ± 25 µW ± 10% CW offset range (referenced two divisions from screen bottom) +0.2 to –0.6 mW Average power monitor –30 to 0 dBm Average power monitor accuracy Single-mode ± 5% ± 200 nW ± connector uncertainty Multimode (characteristic) ± 10% ± 200 nW ± connector uncertainty Due to variations in mode-filling conditions, the measured power in multimode fiber will vary more than the measured power in single-mode fiber. For users needing the most accurate power measurements, use an optical power meter for multimode power measurements User-calibrated accuracy (assumes connector is continually attached) Single-mode ± 3% ± 200 nW ± power meter uncertainty, < 5 °C change Multimode (characteristic) ± 10% ± 200 nW ± power meter uncertainty, < 5 °C change Maximum input power Maximum non-destruct average 0.5 mW (–3 dBm) Maximum non-destruct peak 5 mW (+7 dBm) Input return loss (FC/PC connector fully filled fiber) Fiber input 62.5/125 µm 1310/1550 nm > 24 dB N1090A Optical Channel Specifications (Continued)

11 | Keysight | N1090A, N1092A/B/C/D/E and N1094A/B DCA-M Optical and Electrical Sampling Oscilloscopes - Data Sheet Electrical channel specifications Electrical channel bandwidth 12.4 and 20 GHz Transition time (10 to 90% calculated from TR = 0.35/BW) 28.2 ps (12.4 GHz) 17.5 ps (20 GHz) RMS noise Characteristic 0.25 mV (12.4 GHz) 0.5 mV (20 GHz) Maximum 0.5 mv (12.4 GHz) 1 mV (20 GHz) Scale factor (per division) Minimum 1 mV/division Maximum 100 mV/division DC accuracy (single marker) ± 0.4% of full scale ± 2 mV ± 1.5% of (reading-channel offset), 12.4 GHz ± 0.4% of full scale ± 2 mV ± 3% of (reading-channel offset), 20 GHz DC offset range (referenced to center of screen) ± 500 mV Input dynamic range (relative to channel offset) ± 400 mV Maximum input signal ± 2 V (+16 dBm) Nominal impedance 50 Ω Reflections (for 30 ps rise time) 5% Electrical input 3.5 mm (male) N1090A Clock Trigger Input Specifications Item Description Clock input bandwidth 0.5 to 12 GHz Clock input sensitivity 200 mVpp Maximal input signal ± 2 V Nominal impedance 50 Ω Clock input connector SMA (female)

12 | Keysight | N1090A, N1092A/B/C/D/E and N1094A/B DCA-M Optical and Electrical Sampling Oscilloscopes - Data Sheet N1090A Horizontal Timebase Specifications Item Description Scale factor Full scale is ten divisions Minimum 100 fs/div Maximum 100 us/div Sample delay Less than 10 ns. Time offset between the front panel clock input and the front panel channel input Time interval accuracy (Dual marker measurement performed at a temperature within ± 5 °C of horizontal calibration temperature) 1 ps + 0.2% of the measured time interval while the delay settings is less that the absolute minimum delay plus 1 ns If the delay setting is greater than the absolute minimum delay plus 1 ns then the accuracy is 5 ps + 0.1% of the measured time interval Jitter (slew rate ≥ 2 V/ns) 500 fs rms Time interval resolution (The time interval resolution is the smallest time you can characterize between two points) (Screen diameter)/(Record length) or 40 fs, whichever is larger Display units Bits or time Record length 16 to 65,536 samples. Increments of 1 Sample rate 60 kHz N1090A Environmental Specifications Item Description Use Indoor Temperature Operating 10 to +40 °C (50 to +104 °F) Non-operating –40 to +70 °C (–40 to +158 °F) Altitude (operating) Up to 4,600 meters (15,000 ft) Maximum relative humidity 80% for temperatures up to 31 °C (87.8 °F) decreasing linearly to 50% relative humidity at 40 °C (104 °F) Line power 100/120 Vac 50/60/400 Hz 220/240 Vac 50/60 Hz

50 W maximum

The products can operate with mains supply voltage fluctuations up to ± 10% of the nominal voltage Weight Mainframe (characteristic) 6.20 kg (13.68 lb) Without front connectors and rear feet 88.26 mm H x 207.40 mm W x 485 mm D (3.48 in x 8.17 in x 19.01 in) With front connectors and rear feet 103.31 mm H x 219.56 mm W x 517.80 mm D (4.07 in x 8.64 in x 20.39 in) With front cover and rear feet 110.18 mm H x 219.56 mm W x 550.71 mm D (4.34 in x 8.64 in x 21.68 in)

13 | Keysight | N1090A, N1092A/B/C/D/E and N1094A/B DCA-M Optical and Electrical Sampling Oscilloscopes - Data Sheet N1092 Optical Channel Specifications Item Description Nominal wavelength range 830 to 1600 nm Factory-calibrated wavelengths (OE conversion gains) 850/1310/1550 nm (± 20 nm) Reference receiver filter options: The standard N1092 includes filters to test the following data rates

25.78 Gb/s (25/50/100 Gb Ethernet)

26.56 Gb/s (400 Gb Ethernet)

27.95 Gb/s (OTU4)

28.05 Gb/s (32x fibre channel)

N1092-168 100GBASE-SR4 TDEC (12.4 GHz) N1092-206 20.6 Gb/s Maximum optical channel –3 dBo bandwidth is 28 GHz, achieved using the 32xFC filter setting. Measured frequency response data during recertification falls within performance test line limits with allowance for system-to-system measurement uncertainty. Sensitivity 1 at 850 nm (Characteristic — smallest average power for mask test) –11.5 dBm –11 dBm –10 dBm Sensitivity 1 at 1310/1550 nm (Characteristic — smallest average power for mask test) –13 dBm –12.5 dBm –12 dBm 1. Generally represents the power level where an ideal eye diagram will approach 0% mask margin due to noise of the oscilloscope. Provides a non-specified figure of merit to compare sensitivities of various optical channels. These values are calculated from the characteristic noise values. RMS noise at 850 nm Characteristic 5 µW 7 µW 8 µW 9.5 µW Maximum 7 µW 9 µW 10 µW 11 µW RMS noise at 1310 nm Characteristic 3 µW 5 µW 5.5 µW 6 µW Maximum 5 µW 7 µW 7 µW 8 µW RMS noise at 1550 nm Characteristic 3.5 µW 5 µW 5.5 µW 6 µW Maximum 5.5 µW 7.5 µW 7.5 µW 8.5 µW

14 | Keysight | N1090A, N1092A/B/C/D/E and N1094A/B DCA-M Optical and Electrical Sampling Oscilloscopes - Data Sheet Scale factor (per division) Minimum 5 µW Maximum 500 µW CW accuracy (single marker, referenced to average power monitor) Single-mode ± 30 µW ± 3% ± connector uncertainty CW offset range (referenced two divisions from screen bottom) 0 mW to 3 mW ADC resolution 16 bits Average power monitor –30 to 0 dBm Average power monitor accuracy Single-mode ± 5% ± 200 nW ± connector uncertainty Multimode (characteristic) ± 10% ± 200 nW ± connector uncertainty Due to variations in mode-filling conditions, the measured power in multimode fiber will vary more than the measured power in single-mode fiber. For users needing the most accurate power measurements, use an optical power meter for multimode power measurements User-calibrated accuracy (assumes connector is continually attached) Single-mode ± 3% ± 200 nW ± power meter uncertainty, < 5 °C change Multimode (characteristic) ± 10% ± 200 nW ± power meter uncertainty, < 5 °C change Maximum input power Maximum displayed input 4 mW (6 dBm) Maximum non-destruct peak 5 mW (+7 dBm) Input return loss (FC/PC connector fully filled fiber) Fiber input 50/125 µm 1310/1550 nm > 24 dB N1092A/B/D Optical Channel Specifications

15 | Keysight | N1090A, N1092A/B/C/D/E and N1094A/B DCA-M Optical and Electrical Sampling Oscilloscopes - Data Sheet Electrical input channels Input connectors 2.4 mm (m) bulkhead Bandwidth, 3 dB (user selectable) 20, 33, 40, and 50 1 GHz (characteristic) Transition time (10 to 90% calculated from TR = 0.35/BW) 20 GHz bandwidth 17.5 ps (calculated) 33 GHz bandwidth 10.6 ps (calculated) 40 GHz bandwidth 1 8.8 ps (calculated) 50 GHz bandwidth 1 7.0 ps (calculated) Channel-to-channel skew range ± 100 ps RMS noise

20 GHz bandwidth 310 μV (characteristic)

33 GHz bandwidth 450 μV (characteristic)

40 GHz bandwidth 1 500 μV (characteristic)

50 GHz bandwidth 1 600 μV (characteristic)

RMS noise (Maximum) 700 μV (50 GHz bandwidth setting) Scale factor (per division) Minimum 1 mV/division Maximum 100 mV/division DC accuracy (VAVG measurement) 20, 33, 40, 50 GHz ± 1.15 mV (characteristic) 20, 33, 40, 50 GHz ± 2 mV ± 4% of (reading – channel offset) ADC resolution 16 bits DC offset range Referenced to center of screen ± 500 mV Input dynamic range Relative to channel offset ± 400 mV Maximum input signal ± 2V (+16 dBm) Nominal input impedance 50 Ω (characteristic) Reflections (for 30 ps rise time) 20% (characteristic) 1. 40 and 50 GHz performance is only available with N1094 Option 050 and N1092C/E. N1092/4 Electrical Channel Specifications N1092/4 Clock Trigger Input Specifications Item Description Clock input bandwidth 1 0.5 to 28.5 GHz Clock input sensitivity 200 mVpp Maximal input signal 2.6 Vp-p Nominal impedance (AC coupled) 50 Ω Clock input connector 2.92 mm (female) 1. Minimum clock input frequency can be reduced to 100 MHz when it is a sub-rate clock of a channel input

16 | Keysight | N1090A, N1092A/B/C/D/E and N1094A/B DCA-M Optical and Electrical Sampling Oscilloscopes - Data Sheet N1092/4 Horizontal Timebase Specifications Item Description Scale factor Full scale is ten divisions Minimum 100 fs/div Maximum 100 us/div Sample delay Less than 10 ns. Time offset between the front panel clock input and the front panel channel input Time interval accuracy (Dual marker measurement performed at a temperature within ± 5 °C (± 41 °F)of horizontal calibration temperature) 1 ps + 0.2% of the measured time interval while the delay settings is less that the absolute minimum delay plus 1 ns If the delay setting is greater than the absolute minimum delay plus 1 ns then the accuracy is 5 ps + 0.1% of the measured time interval Jitter (Slew rate ≥ 2 V/ns) < 450 fs rms Option LOJ < 160 fs rms Time interval resolution (The time interval resolution is the smallest time you can characterize between two points) (Screen diameter)/(Record length) or 40 fs, whichever is larger Display units Bits or time Record length 16 to 131,072 samples. Increments of 1 Sample rate Sample rate does not change for multiple channel configurations 100 kHz Option FS1 250 kHz N1092/4 Environmental Specifications Item Description Use Indoor Temperature Operating 10 to +40 °C (50 to +104 °F) Non-operating –40 to +70 °C (–40 to +158 °F) Altitude (operating) Up to 4,600 meters (15,000 ft) Maximum relative humidity 80% for temperatures up to 31 °C (87.8 °F) decreasing linearly to 50% relative humidity at 40 °C (104 °F) Line power 100/120 Vac 50/60/400 Hz 220/240 Vac 50/60 Hz

290 W maximum

The products can operate with mains supply voltage fluctuations up to ± 10% of the nominal voltage Weight Mainframe (characteristic) 6.20 kg (13.68 lb) Without front connectors and rear feet (H x W x D) 88.26 mm x 207.40 mm x 485 mm (3.48 in x 8.17 in x 19.01 in) With front connectors and rear feet (H x W x D) 103.31 mm x 219.56 mm x 517.80 mm (4.07 in x 8.64 in x 20.39 in) With front cover and rear feet (H x W x D) 110.18 mm x 219.56 mm x 550.71 mm (4.34 in x 8.64 in x 21.68 in)

17 | Keysight | N1090A, N1092A/B/C/D/E and N1094A/B DCA-M Optical and Electrical Sampling Oscilloscopes - Data Sheet Ordering Information — N1090A The N1090A, when controlled by a PC through a USB connection, is a complete measurement system. No oscilloscope mainframe is required. Choose one reference receiver option (140, 160, 180, 200 or 204) to complete the configuration. Reference Description N1090A Optical sampling oscilloscope N1090A-140 1.244/1.25 Gb/s reference receiver N1090A-160 2.488/2.5 Gb/s reference receiver N1090A-180 3.125 Gb/s reference receiver N1090A-200 8.5 to 11.3 Gb/s reference receivers N1090A-204 8.5 to 10.5 Gb/s reference receivers 1090A-EEC 20 GHz electrical channel N1090A-1CM Single instrument rackmount kit N1090A-1CN Dual instrument (side-by-side) rackmount kit The N1090A can also be converted from one reference receiver option to a different option through a return to factory upgrade: N1090AU-140 N1090AU-160 N1090AU-180 N1090AU-200 N1090AU-204 Note: The N1090A cannot be upgraded to an N1092. N1010A FlexDCA software is required on the PC controlling the N101A DCA. It is available as a free download at www.keysight.com/find/flexdca_download

18 | Keysight | N1090A, N1092A/B/C/D/E and N1094A/B DCA-M Optical and Electrical Sampling Oscilloscopes - Data Sheet The following options 1 are available on all N1092 and N1094 models. The price is the same, independent of a one, two, or four channel model number: Option Description Option FS1 Increase sampling rate from 100 to 250 kSa/s Option LOJ Reduce residual jitter from 400 fs to < 200 fs Option PLK Add pattern lock capability Option 200 Advanced jitter analysis Option 201 Advanced waveform analysis Option 300 Advanced amplitude/noise analysis Option 401 Advanced eye analysis Option 500 Productivity package (Rapid eye, TDEC) Option 9FP PAM-N analysis Option SIM Infinisim waveform transformation software Option COC Certificate of calibration Option UK6 Commercial calibration certificate with test data Option 1CM Single instrument rackmount kit Option 1CN Dual instrument side-by-side rackmount kit Option EFP Flex eye independent channel acquisition Option TFP IEEE 802.3 TDECQ analysis option 1. Note that operation of Options 200, 201, 300, 401, 500, 9FP, EFP, TFP, and SIM can be achieved by having the appropriate licenses installed on the N1092, the computer controlling the N1092, or an 86100 mainframe used to control the N1092. Ordering Information — N1092A/B/C/D/E and N1094A/B The N1092/4, when controlled by a PC through a USB connection, is a complete measurement system. No oscilloscope mainframe is required. The N1092 comes standard with optical N1092E include 50 GHz electrical channels. The N1094 electrical channels can be configured with 33 or 50 GHz electrical bandwidths. Model number Description N1092A One optical channel N1092B Two optical channels N1092C One optical, two electrical channels N1092D Four optical channels N1092E Two optical, two electrical channels N1094A Two electrical channels N1094B Four electrical channels The following options are available for the N1092 models. Option prices depend on the model number and its number of optical channels (one, two or four for the N1092A/C, N1092B/E and N1092D respectively). Option Description Option 168 25.78 Gb/s TDEC filter (100GBASE-SR4) Option 206 20.6 Gb/s reference receiver Option IRC Extend optical channel bandwidth to 45 GHz (–3 dBo) and allow creation of reference receiver filters at any data rate from 8 to 42 Gb/s The following options are available with the N1094A/B. Option Description Option 030 33 GHz electrical channel bandwidth Option 050 50 GHz electrical channel bandwidth N1010A FlexDCA software is required on the PC controlling the N101A DCA. It is available as a free download at www.keysight.com/find/flexdca_download .

19 | Keysight | N1090A, N1092A/B/C/D/E and N1094A/B DCA-M Optical and Electrical Sampling Oscilloscopes - Data Sheet www.axiestandard.org AdvancedTCA® Extensions for Instrumentation and Test (AXIe) is an open standard that extends the AdvancedTCA for general purpose and semiconductor test. The business that became Keysight was 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. The business that became Keysight was 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.

20 | Keysight | N1090A, N1092A/B/C/D/E and N1094A/B DCA-M Optical and Electrical Sampling Oscilloscopes - Data Sheet This information is subject to change without notice. © Keysight Technologies, 2016 Published in USA, September 28, 2016 5992-1454EN 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 Pacific Australia 1 800 629 485 China 800 810 0189 Hong Kong 800 938 693 India 1 800 11 2626 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-06-08-16) DEKRA Certified ISO9001 Quality Management System www.keysight.com/go/quality Keysight Technologies, Inc. DEKRA Certified ISO 9001:2015 Quality Management System Evolving Our unique combination of hardware, software, support, and people can help you reach your next breakthrough. We are unlocking the future of technology. From Hewlett-Packard to Agilent to Keysight myKeysight www.keysight.com/find/mykeysight A personalized view into the information most relevant to you. Keysight Infoline www.keysight.com/find/Infoline Keysight’s insight to best in class information management. Free access to your Keysight equipment company reports and e-library. KEYSIGHT SERVICES Keysight Services www.keysight.com/find/service Our deep offering in design, test, and measurement services deploys an industry-leading array of people, processes, and tools. The result? We help you implement new technologies and engineer improved processes that lower costs. Three-Year Warranty www.keysight.com/find/ThreeYearWarranty Keysight’s committed to superior product quality and lower total cost of ownership. Keysight is the only test and measurement company with three-year warranty standard on all instruments, worldwide. And, we provide a one-year warranty on many accessories, calibration devices, systems and custom products. Keysight Assurance Plans www.keysight.com/find/AssurancePlans Up to ten years of protection and no budgetary surprises to ensure your instruments are operating to specification, so you can rely on accurate measurements. 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/n1090a