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5 Series MSO
Mixed Signal Oscilloscope Datasheet www.tektronix.com/5SeriesMSO 1
4, 6, or 8 FlexChannel™ inputs Each FlexChannel provides one analog signal input or eight digital logic inputs with TLP058 logic probe Bandwidth 1
350 MHz, 500 MHz, 1 GHz, 2 GHz
Sample rate (all analog / digital channels) Real-time: 6.25 GS/s Interpolated: 500 GS/s Record length (all analog / digital channels)
62.5 Mpoints standard
125 Mpoints optional 1
500,000 waveforms/s Vertical resolution 12-bit ADC Up to 16-bits in High Res mode Standard trigger types Edge, Pulse Width, Runt, Timeout, Window, Logic, Setup & Hold, Rise/ Fall Time, Parallel Bus, Sequence Standard analysis Cursors: Waveform, V Bars, H Bars, V&H Bars Measurements: 36 Plots: Time Trend, Histogram and Spectrum Math: basic waveform arithmetic, FFT, and advanced equation editor Search: search on any trigger criteria Jitter: TIE and Phase Noise Optional analysis 1 Advanced Jitter and Eye Diagram Analysis Optional serial bus trigger, decode and analysis 1 I2C, SPI, RS-232/422/485/UART, CAN, LIN, FlexRay, USB 2.0, Ethernet, I2S, LJ, RJ, TDM Arbitrary/Function Generator 1
50 MHz waveform generation
Waveform Types: Arbitrary, Sine, Square, Pulse, Ramp, Triangle, DC Level, Gaussian, Lorentz, Exponential Rise/Fall, Sin(x)/x, Random Noise, Haversine, Cardiac Digital voltmeter 2 4-digit AC RMS, DC, and DC+AC RMS voltage measurements Trigger frequency counter 2 8-digit Display 15.6-inch (396 mm) TFT color High Definition (1,920 x 1,080) resolution Capacitive (multi-touch) touchscreen Connectivity USB Host (x7), USB Device, LAN (10/100/1000 Base-T Ethernet; LXI Compliant), Display Port, DVI-D, Video Out e*Scope Remotely view and control the oscilloscope over a network connection through a standard web browser Standard probes One 10 MΩ passive voltage probe with less than 4 pF capacitive loading per channel Warranty 3 years standard with optional Total Protection Plans Dimensions 12.2 in (309 mm) H x 17.9 in (454 mm) W x 8.0 in (204 mm) Weight: <25 lbs. (11.4 kg) 1 Optional and upgradeable. 2 Free with product registration. Datasheet 2 www.tektronix.com/5SeriesMSO
With a remarkably innovative pinch-swipe-zoom touchscreen user interface, the industry's largest high-definition display, and 4, 6, or
8 FlexChannel™ inputs that let you measure one analog or eight digital
signals, the 5 Series MSO is ready for today’s toughest challenges, and tomorrow’s too. It sets a new standard for performance, analysis, and overall user experience. Never let a lack of channels slow down your verification and debug process again! The 5 Series MSO offers better visibility into complex systems by offering four, six and eight channel models with a large 15.6" high definition (1,920 x 1,080) display. Many applications, such as embedded systems, three- phase power electronics, automotive electronics, power supply design, and DC-to-DC power converters, require the observation of more than four analog signals to verify and characterize device performance, and to debug challenging system issues. Most engineers can recall situations in which they were debugging a particularly difficult problem and wanted greater system visibility and context, but the scope they were using was limited to two or four analog channels. Using a second scope involves significant effort to align trigger points, difficulty in determining timing relationships across the two displays, and documentation challenges. And while you might assume that a six and eight channel scope would cost 50% or 100% more than a four channel scope, you'll be pleasantly surprised to find that six channel models are only ~25% more than four channel models and eight channel models are only ~67% more than four channel models. The additional analog channels can pay for themselves quickly by enabling you to keep current and future projects on schedule. Voltage measurements on a three-phase motor showing the three-phase input voltages after start-up. FlexChannel™ technology enables maximum flexibility and broader system visibility The 5 Series MSO redefines what a Mixed Signal Oscilloscope (MSO) should be. FlexChannel technology enables each of the inputs on the instrument to be used as a single analog channel or eight digital channels. The conversion is done by simply attaching a TLP058 logic probe to any input. Imagine the flexibility and configurability this provides. With an eight FlexChannel model, you can configure it to look at eight analog and zero digital signals. Or seven analog and eight digital. Or six analog and 16 digital, five analog and 24 digital and so on. You can change the configuration at any time by simply adding or removing TLP058 logic probes, so you always have the right number of digital channels. FlexChannel technology enables the ultimate in flexibility. Each input can be configured as a single analog or eight digital channels based on the type of probe you attach. The 5 Series MSO offers a new level of integration of digital channels. Digital channels share the same high sample rate (up to 6.25 GS/s) for fine timing resolution, and long record length (up to 125 Mpoints) for long time captures as analog channels. Previous-generation MSOs required tradeoffs, with digital channels having lower sample rates or shorter record lengths than analog channels. The TLP058 provides eight high performance digital inputs. Connect as many TLP058 probes as you like, enabling up to a maximum of 64 digital channels. www.tektronix.com/5SeriesMSO 3
FlexChannel 2 has a TLP058 Logic Probe connected to the eight inputs of a DAC. Notice the green and blue color coding, where ones are green and zeros are blue. Another TLP058 Logic Probe on FlexChannel 3 is probing the SPI bus driving the DAC. The white edges indicate higher frequency information is available by either zooming in or moving to a faster sweep speed on the next acquisition. Color-coded digital traces make it easy to determine if a logic signal is a one or a zero, even when the trace is flat across the display. Ones are displayed in green and zeros in blue. Unique multiple-transition detection hardware indicates when more than one transition occurs within a sample interval. A white bar on the trace indicates that more information is available by zooming in or acquiring at faster sampling rates. Often, zooming in will reveal a glitch that was previously hidden. Distinct thresholds can be defined for each digital channel, enabling you to easily observe different logic families, unlike other MSOs that have one or two shared thresholds across all digital channels. Datasheet 4 www.tektronix.com/5SeriesMSO
Unprecedented signal viewing capability The stunning 15.6" (396 mm) display in the 5 Series MSO is the largest display in the industry, providing 100% more display area than a scope with a 10.4" (264 mm) display. It is also the highest resolution display, with full HD resolution (1,920 x 1,080), enabling you to see many signals at once with ample room for critical readouts and analysis. The viewing area is optimized to ensure that the maximum vertical space is available for waveforms. The Results Bar on the right can be hidden, enabling the waveform view to use the full width of the display. Stacked display mode enables easy visibility of all waveforms while maintaining maximum ADC resolution on each input for the most accurate measurements. The 5 Series MSO offers a revolutionary new Stacked display mode. Historically, scopes have overlaid all waveforms in the same graticule, forcing difficult tradeoffs: To make each waveform visible, you vertically scale and position each waveform so that they don't overlap. Each waveform uses a small percentage of the available ADC range, leading to less accurate measurements. For measurement accuracy, you vertically scale and position each waveform to cover the entire display. The waveforms overlap each other, making it hard to distinguish signal details on individual waveforms The new Stacked display eliminates this tradeoff. It automatically adds and removes additional horizontal waveform 'slices' (additional graticules) as waveforms are created and removed. Each slice represents the full ADC range for the waveform. All waveforms are visually separated from each other while still using the full ADC range, enabling maximum visibility and accuracy. And it's all done automatically as waveforms are added or removed! The massive display in the 5 Series MSO also provides plenty of viewing area not only for signals, but also for plots, measurement results tables, bus decode tables and more. You can easily resize and relocate the various views to suit your application. www.tektronix.com/5SeriesMSO 5
Viewing three analog channels, eight digital channels, a decoded serial bus waveform, decoded serial packet results table, four measurements, a measurement histogram, measurements results table with statistics and a search on serial bus events - simultaneously! Exceptionally easy-to-use user interface lets you focus on the task at hand The Settings Bar -- key parameters and waveform management Waveform and scope operating parameters are displayed in a series of “badges” in the Settings Bar that runs along the bottom of the display. The Settings Bar provides Immediate access for the most common waveform management tasks. With a single tap, you can: Turn on channels Add math waveforms Add reference waveforms Add bus waveforms Enable the integrated Arbitrary/Function generator (AFG) Enable the integrated digital voltmeter (DVM) The Results Bar – analysis and measurements The Results Bar on the right side of the display includes immediate, one- tap access to the most common analytical tools such as cursors, measurements, searches, measurement and bus decode results tables, plots, and notes. DVM, measurement and search results badges are displayed in the Results Bar without sacrificing any waveform viewing area. For additional waveform viewing area, the Results Bar can be dismissed and brought back at any time. Configuration menus are accessed by simply double-tapping on the item of interest on the display. In this case, the Trigger badge was double-tapped to open the Trigger configuration menu. Datasheet 6 www.tektronix.com/5SeriesMSO
Touch interaction finally done right Scopes have included touch screens for years, but the touch screen has been an afterthought. The 5 Series MSO's 15.6" display includes a capacitive touchscreen and provides the industry's first oscilloscope user interface truly designed for touch. The touch interactions that you use with phones and tablets, and expect in a touch enabled device, are supported in the 5 Series MSO. Drag waveforms left/right or up/down to adjust horizontal and vertical position or to pan a zoomed view Pinch and expand to change scale or zoom in/out in either horizontal or vertical directions Drag items to the trash can to delete them Swipe in from the right to reveal the Results Bar or down from the top to access the menus in the upper left corner of the display Smooth, responsive front panel controls allow you to make adjustments with familiar knobs and buttons, and you can add a mouse or keyboard as a third interaction method. Interact with the capacitive touch display in the same way you do on your phones and tablets. Attention to detail in the front-panel controls Traditionally, the front face of a scope has been roughly 50% display and 50% front panel. The 5 Series MSO display fills about 85% of the face of the instrument. To achieve this, it has a streamlined front panel that retains critical controls for simple intuitive operation, but with a reduced number of menu buttons for functions directly accessed via objects on the display. Color-coded LED light rings indicate trigger source and vertical scale/ position knob assignments. Large, dedicated Run/ Stop and Single Sequence buttons are placed prominently in the upper right, and other functions like Force Trigger, Trigger Slope, Trigger Mode, Default Setup, Autoset and Quick-save functions are all available using dedicated front panel buttons. Efficient and intuitive front panel provides critical controls while still leaving room for the massive 15.6" high definition display. www.tektronix.com/5SeriesMSO 7
Windows or not - you choose The 5 Series MSO is the first oscilloscope to offer you the choice of whether to include a Microsoft Windows™ operating system. Opening an access panel on the bottom of the instrument reveals a connection for a solid state drive (SSD). When the SSD is not present, the instrument boots as a dedicated scope with no ability to run or install other programs. When the SSD is present, the instrument boots in an open Windows 10 configuration, so you can minimize the oscilloscope application and access a Windows desktop where you can install and run additional applications on the oscilloscope. Or you can connect additional monitors and extend your desktop. Whether you run Windows or not, the oscilloscope operates in exactly the same way with the same look and feel and UI interaction. Experience the performance difference With up to 2 GHz analog bandwidth, 6.25 GS/s sample rates, standard
62.5 M record length and a 12-bit analog to digital converter (ADC), the
5 Series MSO has the performance you need to capture waveforms with
the best possible signal fidelity and resolution for seeing small waveform details. Digital Phosphor technology with FastAcq™ high- speed waveform capture To debug a design problem, first you must know it exists. Digital phosphor technology with FastAcq provides you with fast insight into the real operation of your device. Its fast waveform capture rate - greater than 500,000 waveforms per second - gives you a high probability of seeing the infrequent problems common in digital systems: runt pulses, glitches, timing issues, and more. To further enhance the visibility of rarely occurring events, intensity grading indicates how often rare transients are occurring relative to normal signal characteristics. FastAcq's high waveform capture rate enables you to discover infrequent problems common in digital design. Industry leading vertical resolution The 5 Series MSO provides the performance to capture the signals of interest while minimizing the effects of unwanted noise when you need to capture high-amplitude signals while seeing smaller signal details. At the heart of the 5 Series MSO are 12-bit analog-to-digital converters (ADCs) that provide 16 times the vertical resolution of traditional 8-bit ADCs. A new High Res mode applies a unique Finite Impulse Response (FIR) filter based on the selected sample rate. The FIR filter maintains the maximum bandwidth possible for that sample rate while preventing aliasing and removing noise from the oscilloscope amplifiers and ADC above the usable bandwidth for the selected sample rate. High Res mode always provides at least 12 bits of vertical resolution and extends all the way to 16 bits of vertical resolution at ≤125 MS/s sample rates. New lower-noise front end amplifiers further improve the 5 Series MSO's ability to resolve fine signal detail. The 5 Series MSO's 12-bit ADC along with the new High Res mode enable industry leading vertical resolution. Triggering Discovering a device fault is only the first step. Next, you must capture the event of interest to identify root cause. The 5 Series MSO provides a complete set of advanced triggers, including: Runt Logic Pulse width Window Timeout Rise/fall time Setup and hold violation Serial packet Parallel data Sequence Datasheet 8 www.tektronix.com/5SeriesMSO
With up to a 125 Mpoint record length, you can capture many events of interest, even thousands of serial packets in a single acquisition, providing high-resolution to zoom in on fine signal details and record reliable measurements. The wide variety of trigger types and context-sensitive help in the trigger menu make it easier than ever to isolate the event of interest. Accurate high-speed probing The TPP Series passive voltage probes included with every 5 Series MSO offer all the benefits of general-purpose probes -- high dynamic range, flexible connection options, and robust mechanical design, while providing the performance of active probes. Up to 1 GHz analog bandwidth enables you to see high frequency components in your signals, and extremely low 3.9 pF capacitive loading minimizes adverse effects on your circuits and is more forgiving of longer ground leads. An optional, low-attenuation (2X) version of the TPP probe is available for measuring low voltages. Unlike other low-attenuation passive probes, the TPP0502 has high bandwidth (500 MHz) as well as low capacitive loading (12.7 pF).
5 Series MSOs come standard with one TPP0500B (350 MHz, 500 MHz models) or
TPP1000 (1 GHz, 2 GHz models) probe per channel. TekVPI Probe Interface The TekVPI probe interface sets the standard for ease of use in probing. In addition to the secure, reliable connection that the interface provides, many TekVPI probes feature status indicators and controls, as well as a probe menu button right on the comp box itself. This button brings up a probe menu on the oscilloscope display with all relevant settings and controls for the probe. The TekVPI interface enables direct attachment of current probes without requiring a separate power supply. TekVPI probes can be controlled remotely through USB or LAN, enabling more versatile solutions in ATE environments. The 5 Series MSO provides up to 80 W of power to the front panel connectors, sufficient to power all connected TekVPI probes without the need for an additional probe power supply. IsoVu™ Isolated Measurement System Whether designing an inverter, optimizing a power supply, testing communication links, measuring across a current shunt resistor, debugging EMI or ESD issues, or trying to eliminate ground loops in your test setup, common mode interference has caused engineers to design, debug, evaluate, and optimize "blind" until now. Tektronix' revolutionary IsoVu technology uses optical communications and power-over-fiber for complete galvanic isolation. When combined with the
5 Series MSO equipped with the TekVPI interface, it is the first, and only,
measurement system capable of accurately resolving high bandwidth, differential signals, in the presence of large common mode voltage with: Complete galvanic isolation Up to 1 GHz bandwidth
1 Million to 1 (120 dB) common mode rejection at 100 MHz
10,000 to 1 (80 dB) of common mode rejection at full bandwidth > 1,000 V differential dynamic range 60 kV common mode voltage range The Tektronix TIVM Series IsoVu™ Measurement System offers a galvanically isolated measurement solution to accurately resolve high bandwidth, differential signals greater than 1,000 Vpk in the presence of large common mode voltages, with the best in class common mode rejection performance across its bandwidth. www.tektronix.com/5SeriesMSO 9
Comprehensive analysis for fast insight Basic waveform analysis Verifying that your prototype's performance matches simulations and meets the project's design goals requires careful analysis, ranging from simple checks of rise times and pulse widths to sophisticated power loss analysis, characterization of system clocks, and investigation of noise sources. The 5 Series MSO offers a comprehensive set of standard analysis tools including: Waveform- and screen-based cursors 36 automated measurements. Measurement results include all instances in the record, the ability to navigate from one occurrence to the next, and immediate viewing of the minimum or maximum result found in the record Basic waveform math FFT analysis Advanced waveform math including arbitrary equation editing with filters and variables Measurement results tables provide comprehensive statistical views of measurement results with statistics across both the current acquisition and all acquisitions. Using automated measurements to characterize power supply bring up. Datasheet 10 www.tektronix.com/5SeriesMSO
Finding your event of interest in a long waveform record can be time consuming without the right search tools. With today's record lengths of many millions of data points, locating your event can mean scrolling through literally thousands of screens of signal activity. The 5 Series MSO offers the industry's most comprehensive search and waveform navigation with its innovative Wave Inspector controls. These controls speed panning and zooming through your record. With a unique force-feedback system, you can move from one end of your record to the other in just seconds. Or, use intuitive drag and pinch/expand gestures on the display itself to investigate areas of interest in a long record. The Search feature allows you to automatically search through your long acquisition looking for user-defined events. All occurrences of the event are highlighted with search marks and are easily navigated to, using the Previous ( ← ) and Next ( → ) buttons found on the front panel or on the Search badge on the display. Search types include edge, pulse width, timeout, runt, window, logic, setup and hold, rise/fall time and parallel/serial bus packet content. You can define as many unique searches as you like. You can also quickly jump to the minimum and maximum value of search results by using the Min and Max buttons on the Search badge. Earlier, FastAcq revealed the presence of a runt pulse in a digital data stream prompting further investigation. In this long 20 ms acquisition, Search 1 reveals that there are approximately 37,500 rising edges in the acquisition. Search 2 (run simultaneously) reveals that there are six runt pulses in the acquisition. www.tektronix.com/5SeriesMSO 11
Serial protocol triggering and analysis (optional) During debugging, it can be invaluable to trace the flow of activity through a system by observing the traffic on one or more serial buses. It could take many minutes to manually decode a single serial packet, much less the thousands of packets that may be present in a long acquisition. And if you know the event of interest that you're attempting to capture occurs when a particular command is sent across a serial bus, wouldn't it be nice if you could trigger on that event? Unfortunately, it's not as easy as simply specifying an edge or a pulse width trigger. Triggering on a USB full-speed serial bus. A bus waveform provides time-correlated decoded packet content including Start, Sync, PID, Address, End Point, CRC, Data values, and Stop, while the bus decode table presents all packet content from the entire acquisition. The 5 Series MSO offers a robust set of tools for working with the most common serial buses found in embedded design including I2C, SPI, RS-232/422/485/UART, CAN, LIN, FlexRay, USB LS/FS/HS, Ethernet 10/100, and Audio (I2S/LJ/RJ/TDM): Serial protocol triggering lets you trigger on specific packet content including start of packet, specific addresses, specific data content, unique identifiers, and errors. Bus waveforms provide a higher-level, combined view of the individual signals (clock, data, chip enable, and so on) that make up your bus, making it easy to identify where packets begin and end, and identifying sub-packet components such as address, data, identifier, CRC, and so on. The bus waveform is time aligned with all other displayed signals, making it easy to measure timing relationships across various parts of the system under test. Bus decode tables provide a tabular view of all decoded packets in an acquisition much like you would see in a software listing. Packets are time stamped and listed consecutively with columns for each component (Address, Data, and so on). Serial protocol search enables you to search through a long acquisition of serial packets and find the ones that contain the specific packet content you specify. Each occurrence is highlighted by a search mark. Rapid navigation between marks is as simple as pressing the Previous ( ← ) and Next ( → ) buttons on the front panel or in the Search badge that appears in the Results Bar. Parallel buses are still found in many designs. The tools described above for serial buses also work on parallel buses. Support for parallel buses is standard in the 5 Series MSO. Parallel buses can be up to 64 bits wide and can include a combination of analog and digital channels. Datasheet 12 www.tektronix.com/5SeriesMSO
The 5 Series MSO has seamlessly integrated the DPOJET Essentials jitter and eye pattern analysis software package, extending the oscilloscope's capabilities to take measurements over contiguous clock and data cycles in a single-shot real-time acquisition. This enables measurement of key jitter and timing analysis parameters such as Time Interval Error and Phase Noise to help characterize possible system timing issues. Analysis tools, such as plots for time trends and histograms, quickly show how timing parameters change over time, and spectrum analysis quickly shows the precise frequency and amplitude of jitter and modulation sources. Option 5-DJA adds additional jitter analysis capability to better characterize your device's performance. The 31 additional measurements provide comprehensive jitter and eye-diagram analysis and jitter decomposition algorithms, enabling the discovery of signal integrity issues and their related sources in today's high-speed serial, digital, and communication system designs. The unique Jitter Summary provides a comprehensive view of your device's performance in a matter of seconds. www.tektronix.com/5SeriesMSO 13
Designed with your needs in mind Connectivity The 5 Series MSO contains a number of ports which you can use to connect the instrument to a network, directly to a PC, or to other test equipment. Two USB 2.0 and one USB 3.0 host ports on the front and four more USB host ports (two 2.0, two 3.0) on the rear enable easy transfer of screen shots, instrument settings, and waveform data to a USB mass storage device. A USB mouse and keyboard can also be attached to USB host ports for instrument control and data entry. The rear panel USB device port is useful for controlling the oscilloscope remotely from a PC. The standard 10/100/1000BASE-T Ethernet port on the rear of the instrument enables easy connection to networks and provides LXI Core 2011 compatibility. DVI-D, Display Port and VGA ports on the rear of the instrument lets you export the display to an external monitor or projector. The I/O you need to connect the 5 Series MSO to the rest of your design environment. Remote operation Want to collaborate with a design team on the other side of the world? The embedded e*Scope capability enables fast control of the oscilloscope over a network connection through a standard web browser. Simply enter the IP address or network name of the oscilloscope and a web page will be served to the browser. Control the oscilloscope remotely in the exact same ways you do in-person. Alternatively, you can use Microsoft Windows Remote Desktop™ capability to connect directly to your oscilloscope and control it remotely. The industry-standard TekVISA™ protocol interface is included for using and enhancing Windows applications for data analysis and documentation. IVI-COM instrument drivers are included to enable easy communication with the oscilloscope using LAN or USBTMC connections from an external PC. e*Scope provides simple remote viewing and control using common web browsers. Arbitrary/Function Generator (AFG) The 5 Series MSO contains an optional integrated arbitrary/function generator, perfect for simulating sensor signals within a design or adding noise to signals to perform margin testing. The integrated function generator provides output of predefined waveforms up to 50 MHz for sine, square, pulse, ramp/triangle, DC, noise, sin(x)/x (Sinc), Gaussian, Lorentz, exponential rise/fall, Haversine and cardiac. The arbitrary waveform generator provides 128 k points of record for loading saved waveforms from an internal file location or a USB mass storage device. The 5 Series MSO is compatible with Tektronix' ArbExpress PC-based waveform creation and editing software, making creation of complex waveforms fast and easy. Datasheet 14 www.tektronix.com/5SeriesMSO
Digital Voltmeter (DVM) and Trigger Frequency Counter The 5 Series MSO contains an integrated 4-digit digital voltmeter (DVM) and 8-digit trigger frequency counter. Any of the analog inputs can be a source for the voltmeter, using the same probes that are already attached for general oscilloscope usage. The counter provides a very precise readout of the frequency of the trigger event on which you’re triggering. Both the DVM and trigger frequency counter are available for free and are activated when you register your product. Help when you need it The 5 Series MSO includes several helpful resources so you can get your questions answered rapidly without having to find a manual or go to a website: Graphical images and explanatory text are used in numerous menus to provide quick feature overviews. All menus include a question mark icon in the upper right that takes you directly to the portion of the integrated help system that applies to that menu. A short user interface tutorial is included in the Help menu for new users to come up to speed on the instrument in a matter of a few minutes. Integrated help answers your questions rapidly without having to find a manual or go to the internet. www.tektronix.com/5SeriesMSO 15
All specifications are guaranteed unless noted otherwise. All specifications apply to all models unless noted otherwise. Model overview Oscilloscope MSO54 MSO56 MSO58 FlexChannels 4 6 8 Maximum analog channels 4 6 8 Maximum digital channels (opt.) 32 48 64 Bandwidth (calculated rise time) 350 MHz (1.15 ns), 500 MHz (800 ps), 1 GHz (400 ps), 2 GHz (225 ps) DC Gain Accuracy 2 GHz models, 50 Ω: ±1.2%, (±2.0% at ≤ 1 mV/div), derated at 0.1 %/°C above 30°C 2 GHz models, 1 MΩ: ±1.0%, (±2.0% at ≤ 1 mV/div), derated at 0.1 %/°C above 30°C < 2 GHz models, 50 Ω, 1 MΩ: ±1.0%, (±2.0% at ≤ 1 mV/div), derated at 0.1 %/°C above 30°C ADC Resolution 12 bits Vertical Resolution 8 bits @ 6.25 GS/s 12 bits @ 3.125 GS/s 13 bits @ 1.25 GS/s (High Res) 14 bits @ 625 MS/s (High Res) 15 bits @ 312.5 MS/s (High Res) 16 bits @ ≤125 MS/s (High Res) Sample Rate 6.25 GS/s on all analog / digital channels Record Length (std.) 62.5 Mpoints on all analog / digital channels Record Length (opt.) 125 Mpoints on all analog / digital channels Waveform Capture Rate >500,000 wfms/s Arbitrary/Function Generator (opt.) 13 predefined waveform types with up to 50 MHz output DVM 4-digit DVM (free with product registration) Trigger Frequency Counter 8-digit frequency counter (free with product registration) Vertical system - analog channels Bandwidth selections 20 MHz, 250 MHz, and FULL Input coupling DC, AC Input impedance 50 Ω ± 1% 1 MΩ ± 1% with 14.5 pF ± 1.5 pF (2 GHz models) 1 MΩ ± 1% with 13.0 pF ± 1.5 pF (< 2 GHz models) Input sensitivity range
1 MΩ 500 µV/div to 10 V/div in a 1-2-5 sequence
50 Ω 500 µV/div to 1 V/div in a 1-2-5 sequence Maximum input voltage 50 Ω: 5 VRMS, with peaks ≤ ±20 V (DF ≤ 6.25%) 1 MΩ: 300 VRMS, CAT II derate at 20 dB/decade from 4.5 MHz to 45 MHz and 14 dB/decade from 45 MHz to 450 MHz. > 450 MHz,
5 VRMS
16 www.tektronix.com/5SeriesMSO
Effective bits (ENOB), typical MSO5X 2 GHz models, High Res mode, 50 Ω, 10 MHz input with 90% full screen Bandwidth ENOB 1 GHz 7.0 250 MHz 7.8 20 MHz 8.7 MSO5X <2 GHz models, High Res mode, 50 Ω, 10 MHz input with 90% full screen Bandwidth ENOB 1 GHz 7.6 500 MHz 7.9 350 MHz 8.2 250 MHz 8.1 20 MHz 9.0 Random noise, typical MSO5X 2 GHz models, High Res mode
2 GHz models 50 Ω 1 MΩ
V/div 1 GHz 250 MHz 20 MHz 500 MHz 250 MHz 20 MHz 1 mV/div 3 66.8 μV 66.8 μV 27.2 μV 208 μV 117 μV 64.6 μV 2 mV/div 4 96.9 μV 77.5 μV 28.5 μV 224 μV 117 μV 66.7 μV 5 mV/div 202 μV 108 μV 37.4 μV 238 μV 133 μV 68.7 μV 10 mV/div 275 μV 147 μV 56.1 μV 277 μV 173 μV 83.6 μV 20 mV/div 469 μV 251 μV 106 μV 416 μV 278 μV 125 μV 50 mV/div 1.10 mV 589 μV 253 μV 916 μV 620 μV 271 μV 100 mV/div 2.75 mV 1.47 mV 602 μV 1.90 mV 1.36 mV 603 μV MSO5X < 2 GHz models, High Res mode < 2 GHz models 50 Ω 1 MΩ V/div 1 GHz 500 MHz 350 MHz 250 MHz 20 MHz 500 MHz 350 MHz 250 MHz 200 MHz 1 mV/div 254 μV 198 μV 141 μV 118 μV 70.0 μV 189 μV 143 μV 118 μV 64.8 μV 2 mV/div 255 μV 198 μV 143 μV 121 μV 70.4 μV 194 μV 145 μV 121 μV 66.0 μV 5 mV/div 262 μV 202 μV 150 μV 133 μV 72.8 μV 196 μV 152 μV 130 μV 69.6 μV 10 mV/div 283 μV 218 μV 169 μV 158 μV 79.8 μV 212 μV 167 μV 154 μV 78.2 μV 20 mV/div 357 μV 273 μV 222 μV 223 μV 102 μV 269 μV 214 μV 223 μV 104 μV 50 mV/div 677 μV 516 μV 436 μV 460 μV 196 μV 490 μV 410 μV 480 μV 207 μV Position range ±5 divisions 3 Bandwidth at 1 mV/div is limited to 175 MHz in 50 Ω. 4 Bandwidth at 2 mV/div is limited to 350 MHz in 50 Ω. Vertical system - analog channels www.tektronix.com/5SeriesMSO 17
2 GHz models Volts/div Setting Offset Range
50 Ω Input 500 µV/div - 50 mV/div ±1 V 51 mV/div - 99 mV/div ± (-10 X (Volts/div Setting) + 1.5 V) 100 mV/div - 500 mV/div ±10 V 501 mV/div - 1 V/div ± (-10 X (Volts/div Setting) + 15 V) Volts/div Setting Offset Range
1 MΩ Input
500 µV/div - 63 mV/div ±1 V 64 mV/div - 999 mV/div ±10 V
1 V/div - 10 V/div ±100 V
< 2 GHz models Volts/div Setting Offset Range 50 Ω Input 1 MΩ Input 500 µV/div - 63 mV/div ±1 V ±1 V 64 mV/div - 999 mV/div ±10 V ±10 V
1 V/div - 10 V/div ±10 V ±100 V
Offset accuracy ±(0.005 X |offset - position | + DC balance) Crosstalk (channel isolation), typical ≥ 100:1 at ≤ 100 MHz and ≥ 30:1 at > 100 MHz, up to the rated bandwidth for any two channels having equal Volts/div settings DC balance 0.1 div with DC-50 Ω oscilloscope input impedance (50 Ω BNC terminated) 0.2 div at 1 mV/div and 500 μV/div with DC-50 Ω oscilloscope input impedance (50 Ω BNC terminated) 0.2 div with DC-1 MΩ oscilloscope input impedance (50 Ω BNC terminated) Vertical system - digital channels Number of channels 8 digital inputs (D7-D0) per installed TLP058 (traded off for one analog channel) Vertical resolution 1 bit Maximum input toggle rate 500 MHz Minimum detectable pulse width, typical 1 ns Thresholds One threshold per digital channel Threshold range ±40 V Threshold resolution 10 mV Threshold accuracy ± [100 mV + 3% of threshold setting after calibration] Input hysteresis, typical 130 mV at the probe tip Datasheet Vertical system - analog channels 18 www.tektronix.com/5SeriesMSO
Input dynamic range, typical 30 Vpp for Fin ≤ 200 MHz, 10 Vpp for Fin > 200 MHz Absolute maximum input voltage, typical ±42 V peak. Minimum voltage swing, typical 400 mV peak-to-peak Input impedance, typical 100 kΩ Probe loading, typical 3 pF Horizontal system Time base range 200 ps/div to 1,000 s/div Sample rate range 1.5625 S/s to 6.25 GS/s (real time)
12.5 GS/s to 500 GS/s (interpolated)
Standard 1 kpoints to 62.5 Mpoints in single sample increments Option 5-RL-125M 125 Mpoints Maximum duration at highest sample rate 10 ms (std.) or 20 ms (opt.) Time base delay time range -10 divisions to 5,000 s Deskew range -125 ns to +125 ns with a resolution of 40 ps Long-term sample rate and delay time accuracy ±2.5 ppm over any ≥1 ms time interval Description Specification Factory Tolerance ±0.5 ppm. At calibration, 25 °C ambient, over any ≥1 ms interval Temperature stability ±0.5 ppm. Tested at operating temperatures Crystal aging, typical ±1.5 ppm/year. Frequency tolerance change at 25 °C over a period of 1 year Aperture uncertainty ≤ 0.450 ps + (10e-12 X Measurement Duration)RMS, for measurements having duration ≤ 100 ms Delay between analog channels, full bandwidth, typical ≤ 100 ps for any two channels with input impedance set to 50 Ω, DC coupling with equal Volts/div or above 10 mV/div Delay between analog and digital FlexChannels, typical < 1 ns when using a TLP058 and a TPP1000/TPP0500B with no bandwidth limits applied. Delay between any two digital FlexChannels, typical 320 ps Delay between any two bits of a digital FlexChannel, typical 160 ps Vertical system - digital channels www.tektronix.com/5SeriesMSO 19
Trigger modes Auto, Normal, and Single Trigger coupling DC, AC, HF reject (attenuates > 50 kHz), LF reject (attenuates < 50 kHz), noise reject (reduces sensitivity) Trigger holdoff range 0 ns to 20 seconds Trigger jitter, typical ≤ 5 psRMS for sample mode and edge-type trigger ≤ 7 psRMS for edge-type trigger and FastAcq mode ≤ 40 psRMS for non edge-type trigger modes Edge-type trigger sensitivity, DC coupled, typical 1 MΩ path (all models) 0.5 mV/div to 0.99 mV/div 4.5 div from DC to instrument bandwidth ≥ 1 mV/div The greater of 5 mV or 0.7 div from DC to lesser of 500 MHz or instrument BW, & 6 mV or 0.8 div from > 500 MHz to instrument bandwidth 50 Ω path < 2 GHz models The greater of 5.6 mV or 0.7 div from DC to the lesser of 500 MHz or instrument BW, & 7 mV or 0.8 div from > 500 MHz to instrument bandwidth 50 Ω path 2 GHz model 0.5 mV/div to 0.99 mV/div 3.0 div from DC to instrument bandwidth 1 mV/div to 9.98 mV/div 1.5 divisions from DC to instrument bandwidth ≥ 10 mV/div < 1.0 division from DC to instrument bandwidth Trigger level ranges ±5 divs from center of screen Trigger frequency counter 8-digits (free with product registration) Trigger types Edge: Positive, negative, or either slope on any channel. Coupling includes DC, AC, noise reject, HF reject, and LF reject Pulse Width: Trigger on width of positive or negative pulses. Event can be time- or logic-qualified Timeout: Trigger on an event which remains high, low, or either, for a specified time period. Event can be logic-qualified Runt: Trigger on a pulse that crosses one threshold but fails to cross a second threshold before crossing the first again. Event can be time- or logic-qualified Window: Trigger on an event that enters, exits, stays inside or stays outside of a window defined by two user-adjustable thresholds. Event can be time- or logic-qualified Logic: Trigger when logic pattern goes true, goes false, or occurs coincident with a clock edge. Pattern (AND, OR, NAND, NOR) specified for all input channels defined as high, low, or don't care. Logic pattern going true can be time-qualified Setup & Hold: Trigger on violations of both setup time and hold time between clock and data present on any input channels Rise / Fall Time: Trigger on pulse edge rates that are faster or slower than specified. Slope may be positive, negative, or either. Event can be logic- qualified Sequence: Trigger on B event X time or N events after A trigger with a reset on C event. In general, A and B trigger events can be set to any trigger type with a few exceptions: logic qualification is not supported, if A event or B event is set to Setup & Hold, then the other must be set to Edge, and Ethernet and High Speed USB (480 Mbps) are not supported Parallel Bus: Trigger on a parallel bus data value. Parallel bus can be from 1 to 64 bits (from the digital and analog channels) in size. Binary and Hex radices are supported I2C Bus (option 5-SREMBD): Trigger on Start, Repeated Start, Stop, Missing ACK, Address (7 or 10 bit), Data, or Address and Data on I2C buses up to 10 Mb/s SPI Bus (option 5-SREMBD): Trigger on Slave Select, Idle Time, or Data (1-16 words) on SPI buses up to 10 Mb/s RS-232/422/485/UART Bus (option 5-SRCOMP): Trigger on Start Bit, End of Packet, Data, and Parity Error up to 10 Mb/s Datasheet 20 www.tektronix.com/5SeriesMSO
CAN Bus (option 5-SRAUTO): Trigger on Start of Frame, Type of Frame (Data, Remote, Error, or Overload), Identifier, Data, Identifier and Data, End Of Frame, Missing Ack, and Bit Stuff Error on CAN buses up to 1 Mb/s LIN Bus (option 5-SRAUTO): Trigger on Sync, Identifier, Data, Identifier and Data, Wakeup Frame, Sleep Frame, and Error on LIN buses up to 1 Mb/s FlexRay Bus (Option 5- SRAUTO): Trigger on Start of Frame, Indicator Bits (Normal, Payload, Null, Sync, Startup), Frame ID, Cycle Count, Header Fields (Indicator Bits, Identifier, Payload Length, Header CRC, and Cycle Count), Identifier, Data, Identifier and Data, End Of Frame, and Errors on FlexRay buses up to 10 Mb/s USB 2.0 LS/FS/HS Bus (option 5-SRUSB2): Trigger on Sync, Reset, Suspend, Resume, End of Packet, Token (Address) Packet, Data Packet, Handshake Packet, Special Packet, Error on USB buses up to 480 Mb/s Ethernet Bus (option 5- SRENET): Trigger on Start of Frame, MAC Addresses, MAC Q-tag, MAC Length/Type, MAC Data, IP Header, TCP Header, TCP/IPV4 Data, End of Packet, and FCS (CRC) Error on 10BASE-T and 100BASE-TX buses Audio (I2S, LJ, RJ, TDM) Bus (option 5-SRAUDIO): Trigger on Word Select, Frame Sync, or Data. Maximum data rate for I2S/LJ/RJ is 12.5 Mb/s. Maximum data rate for TDM is
25 Mb/s
Sample Acquires sampled values Peak Detect Captures glitches as narrow as 640 ps at all sweep speeds Averaging From 2 to 10,240 waveforms Envelope Min-max envelope reflecting Peak Detect data over multiple acquisitions High Res Applies a unique Finite Impulse Response (FIR) filter for each sample rate that maintains the maximum bandwidth possible for that sample rate while preventing aliasing and removing noise from the oscilloscope amplifiers and ADC above the usable bandwidth for the selected sample rate. High Res mode always provides at least 12 bits of vertical resolution and extends all the way to 16 bits of vertical resolution at ≤ 125 MS/s sample rates. FastAcq® FastAcq optimizes the instrument for analysis of dynamic signals and capture of infrequent events by capturing >500,000 wfms/s. Waveform measurements Cursor types Waveform, V Bars, H Bars, and V&H Bars DC voltage measurement accuracy, Average acquisition mode Measurement Type DC Accuracy (In Volts) Average of ≥ 16 waveforms ±((DC Gain Accuracy) X |reading - (offset - position)| + Offset Accuracy + 0.1 X V/div setting) Delta volts between any two averages of ≥ 16 waveforms acquired with the same oscilloscope setup and ambient conditions ±(DC Gain Accuracy X |reading| + 0.05 div) Automatic measurements 36 of which an unlimited number can be displayed at once as either individual measurement badges or collectively in a measurement results table Amplitude measurements Amplitude, Maximum, Minimum, Peak-to-Peak, Positive Overshoot, Negative Overshoot, Mean, RMS, AC RMS, Top, Base, and Area Timing measurements Period, Frequency, Unit Interval, Data Rate, Positive Pulse Width, Negative Pulse Width, Skew, Delay, Rise Time, Fall Time, Phase, Rising Slew Rate, Falling Slew Rate, Burst Width, Positive Duty Cycle, Negative Duty Cycle, Time Outside Level, Setup Time, Hold Time, Duration N-Periods, High Time, and Low Time Jitter measurements (standard) TIE and Phase Noise www.tektronix.com/5SeriesMSO 21
Measurement statistics Mean, Standard Deviation, Maximum, Minimum, and Population. Statistics are available on both the current acquisition and all acquisitions Reference levels User-definable reference levels for automatic measurements can be specified in either percent or units. Reference levels can be set to global for all measurements, per source or unique for each measurement Gating Isolate the specific occurrence within an acquisition to take measurements on, using either the screen or waveform cursors. Gating can be set to global for all measurements or unique for each measurement Measurement plots Time Trend, Histogram, and Spectrum plots are available for all standard measurements Jitter analysis (option 5-DJA) adds the following: Measurements Jitter Summary, TJ@BER, RJ- δδ, DJ- δδ, PJ, RJ, DJ, DDJ, DCD, SRJ, J2, J9, NPJ, F/2, F/4, F/8, Eye Height, Eye Height@BER, Eye Width, Eye Width@BER, Eye High, Eye Low, Q-Factor, Bit High, Bit Low, Bit Amplitude, DC Common Mode, AC Common Mode (Pk-Pk), Differential Crossover, T/nT Ratio, SSC Freq Dev, SSC Modulation Rate Measurement Plots Eye Diagram and Jitter Bathtub Waveform math Number of math waveforms Unlimited Arithmetic Add, subtract, multiply, and divide waveforms and scalars Algebraic expressions Define extensive algebraic expressions including waveforms, scalars, user-adjustable variables, and results of parametric measurements. Perform math on math using complex equations. For example (Integral (CH1 - Mean(CH1)) X 1.414 X VAR1) Math functions Invert, Integrate, Differentiate, Square Root, Exponential, Log 10, Log e, Abs, Ceiling, Floor, Min, Max, Degrees, Radians, Sin, Cos, Tan, ASin, ACos, and ATan Relational Boolean result of comparison >, <, ≥, ≤, =, and ≠ Logic AND, OR, NAND, NOR, XOR, and EQV Filtering function User-definable filters. Users specify a file containing the coefficients of the filter. FFT functions Spectral Magnitude and Phase, and Real and Imaginary Spectra FFT vertical units Magnitude: Linear and Log (dBm) Phase: Degrees, Radians, and Group Delay FFT window functions Hanning, Rectangular, Hamming, and Blackman-Harris Datasheet Waveform measurements 22 www.tektronix.com/5SeriesMSO
Number of searches Unlimited Search types Search through long records to find all occurrences of user specified criteria including edges, pulse widths, timeouts, runt pulses, window violations, logic patterns, setup & hold violations, rise/fall times, and bus protocol events. Display Display type 15.6 in. (396 mm) liquid-crystal TFT color display Display resolution 1,920 horizontal × 1,080 vertical pixels (High Definition) Display modes Overlay: traditional oscilloscope display where traces overlay each other Stacked: display mode where each waveform is placed in its own slice and can take advantage of the full ADC range while still being visually separated from other waveforms. Zoom Horizontal and vertical zooming is supported in all waveform and plot views. Interpolation Sin(x)/x and Linear Waveform styles Vectors, dots, variable persistence, and infinite persistence Graticules Grid, Time, Full, and None Color palettes Normal and inverted Format YT, XY, and XYZ Arbitrary/Function Generator (optional) Function types Arbitrary, sine, square, pulse, ramp, triangle, DC level, Gaussian, Lorentz, exponential rise/fall, sin(x)/x, random noise, Haversine, Cardiac Sine waveform Frequency range 0.1 Hz to 50 MHz Frequency accuracy 130 ppm (frequency ≤ 10 kHz), 50 ppm (frequency > 10 kHz) Amplitude range 20 mVpp to 5 Vpp into Hi-Z; 10 mVpp to 2.5 Vpp into 50 Ω Amplitude flatness, typical ±0.5 dB at 1 kHz ±1.5 dB at 1 kHz for < 20 mVpp amplitudes Total harmonic distortion, typical 1% for amplitude ≥ 200 mVpp into 50 Ω load 2.5% for amplitude > 50 mV AND < 200 mVpp into 50 Ω load Spurious free dynamic range, typical 40 dB (Vpp ≥ 0.1 V); 30 dB (Vpp ≥ 0.02 V), 50 Ω load Square and pulse waveform Frequency range 0.1 Hz to 25 MHz Frequency setting resolution 0.1 Hz Frequency accuracy 130 ppm (frequency ≤ 10 kHz), 50 ppm (frequency > 10 kHz) Amplitude range 20 mVpp to 5 Vpp into Hi-Z; 10 mVpp to 2.5 Vpp into 50 Ω Duty cycle range 10% - 90% or 10 ns minimum pulse, whichever is larger Minimum pulse time applies to both on and off time, so maximum duty cycle will reduce at higher frequencies to maintain 10 ns off time www.tektronix.com/5SeriesMSO 23
Duty cycle resolution 0.1% Minimum pulse width, typical 10 ns Rise/Fall time, typical 5 ns, 10% - 90% Pulse width resolution 100 ps Overshoot, typical < 6% for signal steps greater than 100 mVpp This applies to overshoot of the positive-going transition (+overshoot) and of the negative-going (-overshoot) transition Asymmetry, typical ±1% ±5 ns, at 50% duty cycle Jitter, typical < 60 ps TIERMS, ≥ 100 mVpp amplitude, 40%-60% duty cycle Ramp and triangle waveform Frequency range 0.1 Hz to 500 kHz Frequency setting resolution 0.1 Hz Frequency accuracy 130 ppm (frequency ≤ 10 kHz), 50 ppm (frequency > 10 kHz) Amplitude range 20 mVpp to 5 Vpp into Hi-Z; 10 mVpp to 2.5 Vpp into 50 Ω Variable symmetry 0% - 100% Symmetry resolution 0.1% DC level range ±2.5 V into Hi-Z ±1.25 V into 50 Ω Random noise amplitude range 20 mVpp to 5 Vpp into Hi-Z 10 mVpp to 2.5 Vpp into 50 Ω Sin(x)/x (Sinc) Frequency range 0.1 Hz to 2 MHz Amplitude range 20 mVpp to 3.0 Vpp into Hi-Z 10 mVpp to 1.5 Vpp into 50 Ω Gaussian pulse, Haversine, and Exponential rise/fall Frequency range 0.1 Hz to 5 MHz Amplitude range 20 mVpp to 2.5 Vpp into Hi-Z 10 mVpp to 1.25 Vpp into 50 Ω Lorentz pulse Frequency range 0.1 Hz to 5 MHz Amplitude range 20 mVpp to 2.4 Vpp into Hi-Z 10 mVpp to 1.2 Vpp into 50 Ω Cardiac Frequency range 0.1 Hz to 500 kHz Amplitude range 20 mVpp to 5 Vpp into Hi-Z 10 mVpp to 2.5 Vpp into 50 Ω Arbitrary Memory depth 1 to 128 k Amplitude range 20 mVpp to 5 Vpp into Hi-Z 10 mVpp to 2.5 Vpp into 50 Ω Datasheet Arbitrary/Function Generator (optional) 24 www.tektronix.com/5SeriesMSO
Repetition rate 0.1 Hz to 25 MHz Sample rate 250 MS/s Signal amplitude accuracy ±[ (1.5% of peak-to-peak amplitude setting) + (1.5% of absolute DC offset setting) + 1 mV ] (frequency = 1 kHz) Signal amplitude resolution 1 mV (Hi-Z) 500 μV (50 Ω) Sine and ramp frequency accuracy 130 ppm (frequency ≤10 kHz) 50 ppm (frequency >10 kHz) DC offset range ±2.5 V into Hi-Z ±1.25 V into 50 Ω DC offset resolution 1 mV (Hi-Z) 500 μV (50 Ω) DC offset accuracy ±[ (1.5% of absolute offset voltage setting) + 1 mV ] Add 3 mV of uncertainty per 10 °C change from 25 °C ambient DVM (free with product registration) Measurement types DC, AC RMS, and DC+AC RMS Voltage resolution 4 digits Voltage accuracy DC: ±(1.5% |reading - offset - position|) + (0.5% |(offset - position)|) + (0.1 X Volts/div)) de-rated at 0.100%/°C of |reading - offset - position| above 30 °C Signal ± 5 divisions from screen center AC: AC, typical: ± 2% (20 Hz to 10 kHz) For AC measurements, the input channel vertical settings must allow the Vpp input signal to cover between 4 and 10 divisions and must be fully visible on the screen Trigger frequency counter (free with product registration) Accuracy ±(1 count + time base error X input frequency) The signal must be at least 8 mVpp or 2 div, whichever is greater. Maximum input frequency Maximum bandwidth of the analog channel The signal must be at least 8 mVpp or 2 div, whichever is greater. Resolution 8-digits Arbitrary/Function Generator (optional) www.tektronix.com/5SeriesMSO 25
Host processor Intel i5-4400E, 2.7 GHz, 64-bit, dual core processor RAM 16 GB of DDR3-1866 DRAM Internal storage ≥ 80 GB. Form factor is an 80 mm m.2 card with a SATA-3 interface Solid State Drive (SSD) with Windows 10 (optional) ≥ 480 GB SSD. Form factor is a 2.5-inch SSD with a SATA-3 interface. This drive is customer installable and includes the Microsoft Windows 10 Enterprise IoT 2016 LTSB (64-bit) operating system Input-Output ports DisplayPort connector A 20-pin DisplayPort connector; connect to show the oscilloscope display on an external monitor or projector. DVI connector A 29-pin DVI-D connector; connect to show the oscilloscope display on an external monitor or projector. VGA DB-15 female connector; connect to show the oscilloscope display on an external monitor or projector Probe compensator Connection: Connectors located on the lower right-hand side of the instrument Amplitude: 0 to 2.5 V Frequency: 1 kHz Source impedance: 1 kΩ External reference input Time-base system can phase lock to an external 10 MHz reference (±4 ppm) USB interface Three USB Host ports on the front of the instrument: two USB 2.0 High Speed ports and one USB 3.0 Super Speed port Four USB Host ports on the rear of the instruments: two USB 2.0 High Speed ports and two USB 3.0 Super Speed ports One USB 3.0 Super Speed Device port on the rear of the instrument providing USBTMC support Ethernet interface 10/100/1000 Mb/s Auxiliary output Rear-panel BNC connector. Output can be configured to provide a positive or negative pulse out when the oscilloscope triggers, the internal oscilloscope reference clock out, or an AFG sync pulse Characteristic Limits Vout (HI) ≥ 2.5 V open circuit; ≥ 1.0 V into a 50 Ω load to ground Vout (LO) ≤ 0.7 V into a load of ≤ 4 mA; ≤0.25 V into a 50 Ω load to ground Kensington-style lock Rear-panel security slot connects to standard Kensington-style lock LXI Class: LXI Core 2011 Version: 1.4 Datasheet 26 www.tektronix.com/5SeriesMSO
Power consumption, typical 400 Watts maximum Source voltage 100 - 240 V ±10% Source frequency 50 to 60 Hz ±10% at 100 - 240 V ±10%
400 Hz ±10% at 115 V ±10%
Dimensions Height: 12.2 in (309 mm) Width: 17.9 in (454 mm) Depth: 8.0 in (204 mm) Weight < 25 lbs (11.4 kg) Cooling The clearance requirement for adequate cooling is 2.0 in (50.8 mm) on the right side (when looking at the front of the instrument) and on the rear of the instrument Rackmount configuration 7U EMC, Environmental, and Safety Regulatory CE marked for the European Union and UL approved for the USA and Canada Software Software IVI driver Provides a standard instrument programming interface for common applications such as LabVIEW, LabWindows/CVI, MicrosoftNET, and MATLAB. e*Scope® Enables control of the oscilloscope over a network connection through a standard web browser. Simply enter the IP address or network name of the oscilloscope and a web page will be served to the browser. Transfer and save settings, waveforms, measurements, and screen images or make live control changes to settings on the oscilloscope directly from the web browser. LXI Web interface Connect to the oscilloscope through a standard Web browser by simply entering the oscilloscope's IP address or network name in the address bar of the browser. The Web interface enables viewing of instrument status and configuration, status and modification of network settings, and instrument control through the e*Scope web-based remote control. All web interaction conforms to LXI Core specification, version 1.4. www.tektronix.com/5SeriesMSO 27
Ordering information
Use the following steps to select the appropriate instrument and options for your measurement needs. Step 1 Start by selecting a 5 Series MSO model based on the number of FlexChannels you need Model Number of FlexChannels MSO54 4 MSO56 6 MSO58 8 Every 5 Series MSO includes One passive probe per FlexChannel: TPP0500B (for models with 350 MHz or 500 MHz bandwidth) or TPP1000 (for models with 1 GHz or 2 GHz bandwidth) Installation and safety manual (translated in English, Japanese, Simplified Chinese) Integrated online help Front cover with integrated accessory pouch Mouse Power cord Calibration certificate documenting traceability to National Metrology Institute(s) and ISO9001 quality system registration Three-year warranty covering all parts and labor on the 5 Series MSO instrument. One-year warranty covering all parts and labor on included probes Step 2 Configure your oscilloscope by selecting the analog channel bandwidth you need Choose the bandwidth you need today by choosing one of these bandwidth options. You can upgrade it later by purchasing an upgrade kit. Bandwidth Option Bandwidth 5-BW-350 350 MHz 5-BW-500 500 MHz 5-BW-1000 1 GHz 5-BW-2000 2 GHz Step 3 Add instrument functionality Instrument functionality can be ordered with the instrument or later as an upgrade kit. Instrument Option Built-in Functionality 5-RL-125 Extend record length to 125 Mpoints/channel 5-WIN Add removable SSD with Windows 10 license 5-AFG Add Arbitrary / Function Generator Datasheet 28 www.tektronix.com/5SeriesMSO
Add optional serial bus triggering, decode, and search capabilities Choose the serial support you need today by choosing from these serial analysis options. You can upgrade later by purchasing an upgrade kit. Instrument Option Serial Buses Supported 5-SRAUDIO Audio (I2S, LJ, RJ, TDM) 5-SRAUTO Automotive (CAN, LIN, FlexRay) 5-SRCOMP Computer (RS-232/422/485/UART) 5-SREMBD Embedded (I2C, SPI) 5-SRENET Ethernet (10BASE-T, 100BASE-TX) 5-SRUSB2 USB (USB2.0 LS, FS, HS 5) Differential serial bus? Be sure to check Step 7 for differential probes. Step 5 Add optional analysis capabilities Instrument Option Advanced Analysis 5-DJA Advanced Jitter and Eye Analysis Step 6 Add digital probes Eight digital channels can be accessed on any FlexChannel simply by ordering a TLP058 logic probe, either with the instrument or separately. For this instrument Order To access MSO54 1 to 4 TLP058 Probes 8 to 32 digital channels MSO56 1 to 6 TLP058 Probes 8 to 48 digital channels MSO58 1 to 8 TLP058 Probes 8 to 64 digital channels
5 USB high-speed supported only on models with ≥1 GHz bandwidth
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Add additional recommended probes and adapters Recommended Probe / Adapter
Description
TLP058 8-channel general purpose logic probe. Includes accessory kit. TAP1500 1.5 GHz TekVPI® active single-ended voltage probe, ±8 V differential input voltage TAP2500 2.5 GHz TekVPI® active single-ended voltage probe, ±4 V differential input voltage TCP0030A 30 A AC/DC TekVPI® current probe, 120 MHz BW TCP0020 20 A AC/DC TekVPI® current probe, 50 MHz BW TCP0150 150 A AC/DC TekVPI® current probe, 20 MHz BW TRCP0300 30 MHz AC current probe, 250 mA to 300 A TRCP0600 30 MHz AC current probe, 500 mA to 600 A TRCP3000 16 MHz AC current probe, 500 mA to 3000 A TDP0500 500 MHz TekVPI® differential voltage probe, ±42 V differential input voltage TDP1000 1 GHz TekVPI® differential voltage probe, ±42 V differential input voltage TDP1500 1.5 GHz TekVPI® differential voltage probe, ±8.5 V differential input voltage TDP3500 3.5 GHz TekVPI® differential voltage probe, ±2 V differential input voltage THDP0100 ±6 kV, 100 MHz TekVPI® high-voltage differential probe THDP0200 ±1.5 kV, 200 MHz TekVPI® high-voltage differential probe TMDP0200 ±750 V, 200 MHz TekVPI® high-voltage differential probe TIVH02 Isolated Probe; 200 MHz, ±1000 V, TekVPI, 3 Meter Cable TIVH02L Isolated Probe; 200 MHz, ±1000 V, TekVPI, 10 Meter Cable TIVH05 Isolated Probe; 500 MHz, ±1000 V, TekVPI, 3 Meter Cable TIVH05L Isolated Probe; 500 MHz, ±1000 V, TekVPI, 10 Meter Cable TIVH08 Isolated Probe; 500 MHz, ±1000 V, TekVPI, 3 Meter Cable TIVH08L Isolated Probe; 500 MHz, ±1000 V, TekVPI, 10 Meter Cable TIVM1 Isolated Probe; 1 GHz, ±50 V, TekVPI, 3 Meter Cable TIVM1L Isolated Probe; 1 GHz, ±50 V, TekVPI, 10 Meter Cable TPP0502 500 MHz, 2X TekVPI® passive voltage probe, 12.7 pF input capacitance TPP0850 2.5 kV, 800 MHz, 50X TekVPI® passive high-voltage probe TPA-N-BNC 6 TekVPI® to TekProbe™ BNC adapter TEK-DPG TekVPI deskew pulse generator signal source 067-1686-xx Power measurement deskew and calibration fixture Looking for other probes? Check out the probe selector tool at www.tek.com/probes. Step 8 Add traveling or mounting accessories Optional Accessory Description HC5 Hard carrying case RM5 Rackmount kit 6 Recommended for connecting your existing TekProbe probes to the 5 Series MSO. Datasheet 30 www.tektronix.com/5SeriesMSO
Select power cord option Power Cord Option Description A0 North America power plug (115 V, 60 Hz) A1 Universal Euro power plug (220 V, 50 Hz) A2 United Kingdom power plug (240 V, 50 Hz) A3 Australia power plug (240 V, 50 Hz) A5 Switzerland power plug (220 V, 50 Hz) A6 Japan power plug (100 V, 50/60 Hz) A10 China power plug (50 Hz) A11 India power plug (50 Hz) A12 Brazil power plug (60 Hz) A99 No power cord Step 10 Add extended service and calibration Service Option Description T3 Three Year Total Protection Plan, includes repair or replacement coverage from wear and tear, accidental damage, ESD or EOS plus preventative maintenance. Includes 5-day turnaround time and priority access to customer support. T5 Five Year Total Protection Plan, includes repair or replacement coverage from wear and tear, accidental damage, ESD or EOS plus preventative maintenance. Includes 5-day turnaround time and priority access to customer support. R5 Standard Warranty Extended to 5 Years. Covers parts, labor and 2-day shipping within country. Guarantees faster repair time than without coverage. All repairs include calibration and updates. Hassle free - a single call starts the process. C3 Calibration service 3 Years. Includes traceable calibration or functional verification where applicable, for recommended calibrations. Coverage includes the initial calibration plus 2 years calibration coverage. C5 Calibration service 5 Years. Includes traceable calibration or functional verification where applicable, for recommended calibrations. Coverage includes the initial calibration plus 4 years calibration coverage. D1 Calibration Data Report D3 Calibration Data Report 3 Years (with Option C3) D5 Calibration Data Report 5 Years (with Option C5) Certifications Tektronix is registered to ISO 9001 and ISO 14001 by SRI Quality System Registrar. Product(s) complies with IEEE Standard 488.1-1987, RS-232-C, and with Tektronix Standard Codes and Formats. Product Area Assessed: The planning, design/development and manufacture of electronic Test and Measurement instruments. www.tektronix.com/5SeriesMSO 31
ASEAN / Australasia (65) 6356 3900 Austria 00800 2255 4835* Balkans, Israel, South Africa and other ISE Countries +41 52 675 3777 Belgium 00800 2255 4835* Brazil +55 (11) 3759 7627 Canada 1 800 833 9200 Central East Europe and the Baltics +41 52 675 3777 Central Europe & Greece +41 52 675 3777 Denmark +45 80 88 1401 Finland +41 52 675 3777 France 00800 2255 4835* Germany 00800 2255 4835* Hong Kong 400 820 5835 India 000 800 650 1835 Italy 00800 2255 4835* Japan 81 (3) 6714 3086 Luxembourg +41 52 675 3777 Mexico, Central/South America & Caribbean 52 (55) 56 04 50 90 Middle East, Asia, and North Africa +41 52 675 3777 The Netherlands 00800 2255 4835* Norway 800 16098 People's Republic of China 400 820 5835 Poland +41 52 675 3777 Portugal 80 08 12370 Republic of Korea +822 6917 5084, 822 6917 5080 Russia & CIS +7 (495) 6647564 South Africa +41 52 675 3777 Spain 00800 2255 4835* Sweden 00800 2255 4835* Switzerland 00800 2255 4835* Taiwan 886 (2) 2656 6688 United Kingdom & Ireland 00800 2255 4835* USA 1 800 833 9200 * European toll-free number. If not accessible, call: +41 52 675 3777 price change privileges reserved. TEKTRONIX and TEK are registered trademarks of Tektronix, Inc. All other trade names referenced are the service marks, trademarks, or registered trademarks of their respective companies.
25 May 2017 48W-60850-0
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