company logo Tektronix DPO2024
Digital Phosphor Oscilloscope,
200 MHz 4 Channels
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Tektronix DPO2024
Digital Phosphor Oscilloscope,
200 MHz 4 Channels



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Serial Bus Trigger and Decode:

I2C, SPI, CAN, LIN, RS232/422/485/UART Serial Triggering, Decode, and Analysis Options

Features:

  • 100 MHz and 200 MHz bandwidth models
  • 2 or 4 analog channels
  • 16 digital channels (MSO2000 Series)
  • Up to 1 GS/s on all channels
  • 1 Meg record length on all channels
  • Wave Inspector® Controls for fast pan, zoom and search
  • FilterVu™ variable low-pass filter
  • Serial triggering and analysis - I2C, SPI, CAN, LIN and RS-232/422/485/UART
  • TekVPI™ Probe Interface
  • 7" Wide TFT-LCD color display
  • USB for quick and easy storage
  • Optional Ethernet and video output port
  • USB 2.0 device port for direct PC control using USBTMC or direct printing

Applications:

  • Embedded Design and Debug
  • Investigation of Transient Phenomena
  • Power Measurements
  • Video Design and Debug
  • Spectral Analysis
  • Automotive Electronics Design and Debug
  • Manufacturing Test and Quality Control
  • Electro-mechanical Design and Analysis
  • Bio-medical Product Development
  • Industrial Control



  Description:

Feature-Rich Tools for Debugging Mixed Signal Designs

The Power to Solve Problems Quickly

The DPO2000 and MSO2000 Series digital phosphor oscilloscopes (DPO) deliver the performance you need to visualize even your most demanding signals. Bandwidths range from 100 MHz to 500 MHz, and with all models offering a minimum of 5x over-sampling on all channels and sin(x)/x interpolation standard, you can be confident that even the fastest transient events will be captured and displayed accurately. The standard 5M record length on all channels enables you to capture long windows of signal activity while maintaining fine timing resolution. The 50,000 wfm/s waveform capture rate maximizes the probability of capturing elusive glitches and other infrequent events.

The DPO2000 and MSO2000 Series offers a variety of analytical solutions including cursors, 29 automatic measurements, statistics and waveform math. Despite a tiny footprint (only 5.4 in. deep) and light weight (9 lbs.), the DPO2000 and MSO2000 Series offers exceptional performance, a large 9 in. WVGA widescreen display and knob-per-channel vertical controls.




Perform Serial Debug for Common Standards

Serial Triggering and Analysis

One of the most common applications requiring long record length is serial data analysis in embedded system design. Embedded systems are literally everywhere. They can contain many different types of devices including microprocessors, microcontrollers, DSPs, RAM, EPROMs, FPGAs, A/Ds, D/As and I/O. These various devices have traditionally communicated with each other and the outside world using wide parallel buses. Today, however, more and more embedded systems are replacing these wide parallel buses with serial buses due to less board space required, fewer pins, lower power, embedded clocks, differential signaling for better noise immunity, and most importantly, lower cost. While serial buses have a large number of benefits, they also present significant challenges that their predecessors (parallel buses) did not. Debugging bus and system problems can be more difficult, because it is harder to isolate events of interest, and it is more difficult to interpret what is displayed on the oscilloscope screen. The DPO2000 and MSO2000 Series addresses these problems.

Bus Display - Provides a higher level, combined view of the individual signals (clock, data, chip enable etc.) 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, etc.

Serial Triggering - Trigger on packet content such as start of packet, specific addresses, specific data content, unique identifiers, etc., on the popular serial interfaces I2C, SPI, CAN, LIN, and RS232/422/485/UART.

Bus Decoding - Tired of having to visually inspect the waveform to count clocks, determine if each bit is a 1 or a 0, combine bits into bytes and determine the hex value? Let the oscilloscope do it for you! The oscilloscope can decode each packet on the bus and display the value in hex, binary, decimal, or ASCII (depending on the standard) in the bus waveform.

Packet Decode Table - In addition to seeing decoded packet data on the bus waveform itself, you can view all captured packets in a tabular view much like you would see on a logic analyzer. Packets are time-stamped and listed consecutively with columns for each component (Address, Data, etc.).

Search - Serial triggering is very useful for isolating the event of interest, but once you’ve captured it and need to analyze the surrounding data, what do you do? In the past, users had to manually scroll through the waveform counting and converting bits and looking for what caused the event. With the DPO2000 and MSO2000 Series, you can have the oscilloscope search through the acquired data for user-defined criteria including serial packet content. Each occurrence is high-lighted by a search mark. Rapid navigation between marks is as simple as pressing the Previous (?) and Next (?) buttons on the front panel.




Designed to Make Your Work Easier

Wave Inspector® Navigation

Imagine trying to efficiently use the Internet if search engines such as Google and Yahoo didn’t exist, web browser features such as Favorites and Links didn’t exist, or Internet Service Providers like AOL or MSN weren’t around. Now you know how most modern oscilloscope users feel when trying to actually use the long record length in their digital oscilloscope. Record length, one of the key specifications of an oscilloscope, is the number of samples it can digitize and store in a single acquisition. The longer the record length, the longer the time window you can capture with high resolution (high sample rate). The first digital oscilloscopes could capture and store only 500 points which made it very difficult to acquire all relevant information around the event being investigated. Over the years, oscilloscope vendors have provided longer and longer record lengths to meet market demands for long capture windows with high resolution to the point that most mid-range oscilloscopes either come standard with, or can be optionally upgraded to, multi-million-point record lengths. These million-point record lengths often represent thousands of screens worth of signal activity. While standard record lengths have increased greatly over the years and can now satisfy the vast majority of applications in the market-place, tools for effectively and efficiently viewing, navigating and analyzing long record length acquisitions have been sorely neglected until now. The DPO2000 and MSO2000 Series addresses the need for working with long record lengths with the following innovative Wave Inspector controls:

Zoom/Pan - A dedicated, two-tier front-panel knob set provides intuitive control of both zooming and panning through acquired records. The inner knob adjusts the zoom factor (or zoom scale); turning it clockwise activates zoom and goes to progressively higher zoom factors, while turning it counter-clockwise results in lower zoom factors and eventually turning zoom off. The outer knob pans the zoom box across the waveform to quickly get to the portion of the waveform you are interested in. The outer knob also utilizes force-feedback to determine how fast to pan on the waveform. The farther you turn the outer knob, the faster the zoom box moves. Pan direction is changed by simply turning the knob the other way. No longer do you need to navigate through multiple menus to adjust your zoom view.

Play/Pause - A dedicated play/pause button on the front panel scrolls the waveform across the display automatically while you look for anomalies or an event of interest. Playback speed and direction are controlled using the intuitive pan knob. Once again, turning the knob further makes the waveform scroll faster and changing direction is as simple as turning the knob the other way.

User Marks - See something interesting on your waveform? Press the Set Mark button on the front panel to leave one or more “bookmarks” on the waveform. Navigating between marks is as simple as pressing the Previous (?) and Next (?) buttons on the front panel.

Search Marks - Don’t want to take the time to inspect the entire acquisition to find the event you’re looking for? The DPO2000 and MSO2000 Series features robust waveform search that allows you to search through your long acquisition based on user-defined criteria. All occurrences of the event are highlighted with search marks and are easily navigated to, using the front panel's Previous (?) and Next (?) buttons. Search types include edge, pulse width, runt, logic, setup and hold, rise/fall time and I2C, SPI, CAN, LIN, RS232/422/485/UART packet content.

PC Connectivity and USB Mass Storage

The DPO2000 and MSO2000 Series delivers an unprecedented new level of USB plug ‘n’ play operation and PC connectivity. A USB port on the front panel enables easy transfer of screenshots, instrument settings, and waveform data in the palm of your hand. Also, a second USB host port is on the rear of the instrument along with a USB device port which can operate as a USBTMC device port for controlling the oscilloscope remotely from a PC. An integrated 10/100 Ethernet port enables easy connection to networks. Acquiring data and measurements from the instrument is as simple as connecting a USB cable from the oscilloscope to the PC. Provided applications include NI LabVIEW SignalExpress™ Tektronix Edition, OpenChoice® Desktop and Microsoft Excel and Word toolbars enabling fast and easy direct communication with your Windows PC.

TekVPI® Probing

The TekVPI probe interface sets the standard for ease of use in probing. 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 utilizes a new probe power management architecture enabling direct attachment of current probes. Finally, TekVPI probes can be controlled remotely via USB, GPIB or Ethernet, enabling more versatile solutions in ATE environments.




Additonal Application Support

Video Design and Development

Many video engineers have remained loyal to analog oscilloscopes, believing the intensity gradations on an analog display are the only way to see certain video waveform details. The DPO2000 and MSO2000 Series fast waveform capture rate, coupled with its intensity-graded view of the signal, provides the same information-rich display as an analog oscilloscope, but with much more detail and all the benefits of digital scopes. With up to 500 MHz band-width, four inputs, and a built-in 75O input termination, the DPO2000 and MSO2000 Series provides ample performance for analog and digital video use.

Finally, the DPO2000 and MSO2000 Series video functionality is further extended with the optional DPO3VID video application module. DPO3VID provides the industry’s most complete suite of HDTV and custom (non-standard) video triggers.

Digital Design and Debug

Today’s digital designs often require careful layout of circuitry to guarantee consistent time alignment between clocks on circuit boards. Small differences in delays caused by routing issues or inconsistent propagation time across a circuit board can cause numerous issues with the operation of digital functional blocks. The DPO2000 and MSO2000 Series can assist in finding those small phase shifts that occur between clocks as they migrate across a design. XY display of two clocks can give a quick visual indication of a phase difference between them. Frequency differences can also quickly be seen. This can be very helpful when determining how effective clock multiplier or divider networks are working.

The interoperability of the DPO2000 and MSO2000 Series oscilloscope with the Tektronix TLA5000 Series logic analyzer made possible by Tektronix’ Integrated View (iView™) feature enables digital designers to solve signal integrity challenges and effectively debug and verify their systems more quickly and easily. The iView feature fully integrates the industry-leading performance and measurement accuracy of a Tektronix oscilloscope with the multi-channel and powerful triggering capabilities of a Tektronix logic analyzer. This integration allows designers to view time-correlated digital and analog data in the same display window, and isolate analog characteristics of digital signals that are causing failures in their systems. No user calibration is required. And, once set up, the iView feature is completely automated. The result – an integrated tool set for digital design and troubleshooting.




  Models, Options, & Accessories


Model Description List Price Sale Price
DPO2024 Oscilloscope; Digital Phosphor, 200 MHz, 1 GS/s, 1M record length, 4-ch, Color Display, Certificate of Traceable Calibration Standard $3900.00
$3861.00 
DPO2014 Oscilloscope; Digital Phosphor, 100 MHz, 1 GS/s, 1M record length, 4-ch, Color Display, Certificate of Traceable Calibration Standard $3250.00
$3217.50 
DPO2012 Oscilloscope; Digital Phosphor, 100 MHz, 1 GS/s, 1M record length, 2-ch, Color Display, Certificate of Traceable Calibration Standard $2700.00
$2673.00 
MSO2012 Mixed Signal Oscilloscope; Digital Phosphor, 100 MHz, 1 GS/s, 1M record length, 2+16-ch, Color Display, Certificate of Traceable Calibration Standard $3750.00
$3712.50 
MSO2014 Mixed Signal Oscilloscope; Digital Phosphor, 100 MHz, 1 GS/s, 1M record length, 4+16-ch, Color Display, Certificate of Traceable Calibration Standard $4500.00
$4455.00 
MSO2024 Mixed Signal Oscilloscope; Digital Phosphor, 200 MHz, 1 GS/s, 1M record length, 4+16-ch, Color Display, Certificate of Traceable Calibration Standard $5400.00
$5346.00 
Model Options List Price Sale Price
DPO2EMBD EMBEDDED SERIAL TRIGGERING AND ANALYSIS MODULE FOR DPO/MSO2000 SERIES $695.00
$688.05 
DPO2COMP COMPUTER SERIAL TRIGGERING AND ANALYSIS MODULE FOR DPO/MSO2000 SERIES $695.00
$688.05 
DPO2AUTO AUTOMOTIVE SERIAL TRIGGERING AND ANALYSIS MODULE FOR DPO/MSO2000 SERIES $695.00
$688.05 
TAP1500 1500 MHZ ACTIVE PROBE, SINGLE-ENDED; WITH TekVPI INTERFACE- CERTIFICATE OF TRACEABLE CALIBRATION STANDARD $2050.00
$2029.50 
TDP0500 PROBE, DIFF HV, WITH TEKVPI INTERFACE, 42V, 500MHZ - CERTIFICATE OF TRACEABLE CALIBRATION STANDARD $3000.00
$2970.00 
TCP0030 30 AMP CURRENT PROBE, DC TO 120 MHZ; WITH TekVPI INTEFACE-CERTIFICATE OF TRACEABLE CLAIBRATION STANDARD $2960.00
$2930.40 
TCP0150 PROBE, 150A AC/DC CURRENT, WITH TEKVPI INTERFACE, DC TO 20 MHZ BANDWIDTH - CERTIFICATE OF TRACEABLE CALIBRATION STANDARD $3450.00
$3415.50 
TCPA300 AMPLIFIER; AC/DC CURRENT PROBE; DC-100MHZ; CERTIFICATE OF TRACEABLE CALIBRATION STANDARD $1990.00
$1970.10 
TCPA400 AMPLIFIER; AC/DC CURRENT PROBE; DC-50MHZ; CERTIFICATE OF TRACEABLE CALIBRATION STANDARD $1990.00
$1970.10 
TCP305 PROBE, AC/DC CURRENT; DC-50MHZ, 50A DC, CERTIFICATE OF TRACEABLE CALIBRATION STANDARD $1240.00
$1227.60 
TCP404XL PROBE; AC/DC CURRENT, DC-2MHZ, 500A DC, 750A DC DERATED WITH DUTY CYCLE,CERTIFICATE OF TRACEABLE CALIBRATION STANDARD $3220.00
$3187.80 
P5100 Probe, High Voltage; 250 MHz, 100X, 2.5 kV $402.00
$397.98 
P5200 PROBE,DIF ACT; POWER,1KV,25 MHZ - CERTIFICATE OF TRACEABLE CALIBRATION STANDARD $803.00
$794.97 
P5205 PROBE,DIF ACT; TEK PROBE PWR, 1KV, 100 MHZ - CERTIFICATE OF TRACEABLE CALIBRATION STANDARD $1180.00
$1168.20 
P5210 PROBE,DIF ACT; TEK PROBE PWR, 2KV COMMON, 5.6 KV DIFFERENTIAL, 50 MHZ - CERTIFICATE OF TRACEABLE CALIBRATION STANDARD $2370.00
$2346.30 
ADA400A AMPLIFIER, DIFF; MICROVOLT, DIFFERENTIAL, - CERTIFICATE OF TRACEABLE CALIBRATION STANDARD $1560.00
$1544.40 
DPO2CONN ETHERNET AND EXTERNAL MONITOR OUT CONNECTIVITY MODULE FOR DPO/MSO2000 SERIES $395.00
$391.05 
TPA-BNC PROBE ADAPTER FROM TEKPROBE-BNC PROBE TO TekVPI SCOPE INTERFACE $424.00
$419.76 
TEK-USB-488 USB TO IEEE488 (GPIB) COMMUNICATIONS ADAPTOR FOR USBTMC-USB488 COMPLIANT TEKTRONIX INSTRUMENTS $651.00
$644.49 
TEK-DPG Accessory, Deskew Pulse Generator Signal Source with TekVPI Scope Interface $742.00
$734.58 
RMD2000 RACKMOUNT KIT; DPO/MSO2000 SERIES $427.00
$422.73 
ACD2000 Case; Soft Case; Large nylon soft case for Series Oscilloscopes $196.00
$194.04 
HCTEK4321 HARD CASE FOR DPO4000, TDS3000, TDS2000, TDS1000, TPS2000, AND TDS200 SERIES. $675.00
$668.25 
SIGEXPTE NI LabVIEW SignalExpress Tektronix Edition; ADVANCED ANALYSIS SOFTWARE FOR TEKTRONIX INSTRUMENTATION $699.00
$692.01 


Specifications

Trigger System
Main Trigger Modes Auto, Normal and Single.
Trigger Coupling DC, HF reject (attenuates >50 kHz), LF reject (attenuates <50 kHz), noise reject (reduces sensitivity).
Trigger Holdoff Range 20 ns to 8 s.
Sensitivity
Internal DC Coupled 0.4 div DC to 50 MHz, increasing to 1 div at rated bandwidth.
External (Auxiliary Input) 200 mV from DC to 50 MHz increasing to 500 mV at 250 MHz.
Trigger Level Range
Any Channel ±8 divisions from center of screen.
External (auxiliary input) ±8V.
Trigger Modes
Edge Positive or negative slope on any channel or front panel auxiliary input. Coupling includes DC, HF reject, LF reject and noise reject.
Sequence (B-trigger) Trigger Delay by Time – 4 ns to 8 s. Or Trigger Delay by Events – 1 to 9,999,999 events.
Pulse Width Trigger on width of positive or negative pulses that are >, <, = or ≠ a specified period of time.
Runt Trigger on a pulse that crosses one threshold but fails to cross a second threshold before crossing the first again.
Logic Trigger when any logical pattern of channels goes false or stays true for specified period of time. Any input can be used as a clock to look for the pattern on a clock edge. Pattern (AND, OR, NAND, NOR) specified for all analog and digital input channels defined as High, Low or Don’t Care.
Setup and Hold Trigger on violations of both setup time and hold time between clock and data present on any of the input channels. Rise/Fall Time Trigger on pulse edge rates that are faster or slower than specified. Slope may be positive, negative or either.
Video Trigger on line number, all lines, odd, even or all fields on NTSC, PAL and SECAM video signals.
Extended Video (optional) Trigger on 480p/60, 576p/50, 720p/30, 720p/50, 720p/60, 875i/60, 1080i/50, 1080i/60, 1080p/24, 1080p/24sF, 1080p/25, 1080p/30, 1080p/50, 1080p/60 and custom bi-level and tri-level sync video standards.
I 2C (optional) Trigger on Start, Repeated Start, Stop, Missing ACK, Address (7 or 10 bit), Data or Address and Data on I 2C buses up to 3.4 Mb/s.
SPI (optional) Trigger on SS, MOSI, MISO or MOSI and MISO on SPI buses up to 50.0 Mb/s (not available on DPO4032).
CAN (optional) Trigger on Start of Frame, Frame Type (data, remote, error, overload), Identifier (standard or extended), Data, Identifier and Data, End of Frame or Missing ACK on CAN signals up to 1 Mb/s. Data can be further specified to trigger on ≤, <, =, >, ≥ or ≠ a specific data value. User-adjustable sample point is set to 50% by default.
RS-232/422/485/UART (optional) Trigger on Tx start bit, Rx start bit, Tx end of packet, Rx end of packet, Tx data, Rx data.
Parallel (available on MSO models only) Trigger on a parallel bus data value.
Acquisition Modes
Sample Acquires sampled values.
Peak Detect Captures glitches as narrow as 200 ps at all sweep speeds.
Averaging From 2 to 512 waveforms included in average.
Envelope Min-max envelope reflecting Peak Detect data over multiple acquisitions.
Hi Res Real-time boxcar averaging reduces random noise and increases vertical resolution. Roll Scrolls waveforms right to left across screen at sweep speeds slower than or equal to 40ms/div.
Waveform Measurements
Cursors Waveform and Screen.
Automatic Measurements 25, of which up to four can be displayed on screen at any one time. Measurements include Period, Frequency, Delay, Rise Time, Fall Time, Positive Duty Cycle, Negative Duty Cycle, Positive Pulse Width, Negative Pulse Width, Burst Width, Phase, Positive Overshoot, Negative Overshoot, Peak to Peak, Amplitude, High, Low, Max, Min, Mean, Cycle Mean, RMS, Cycle RMS, Area and Cycle Area.
Measurement Statistics Mean, Min, Max, Standard Deviation.
Reference Levels User-definable reference levels for automatic measurements can be specified in either percent or units.
Gating Isolate the specific occurrence within an acquisition to take measurements, using either the screen or waveform cursors.
Waveform Math
Arithmetic Add, subtract, multiply and divide waveforms.
Math Functions Integrate, Differentiate, FFT.
FFT Spectral magnitude. Set FFT Vertical Scale to Linear RMS or dBV RMS, and FFT Window to Rectangular, Hamming, Hanning or Blackman-Harris.
Advanced Math Define extensive algebraic expressions including analog waveforms, math functions, scalars, up to two user-adjustable variables and results of parametric measurements e.g., (Intg (Ch1-Mean(Ch1)) x 1.414 x VAR1).
Software
National Instruments SignalExpress Tektronix Edition A fully interactive measurement software environment optimized for the 4000 Series, enables you to instantly acquire, generate, analyze, compare, import and save measurement data and signals using an intuitive drag-and-drop user interface that does not require any programming. Standard 4000 Series support for acquiring, controlling, viewing and exporting your live signal data is permanently available through the software. The Professional version adds additional signal processing, advanced analysis, mixed signal, sweeping, limit testing and user-defined step capabilities and is available for a 30-day trial period standard with each instrument.
OpenChoice® Desktop Enables fast and easy communication between a Windows PC and the 4000 Series via USB or LAN. Transfer and save settings, waveforms, measurements and screen images.
IVI Driver Provides a standard instrument programming interface for common applications such as LabVIEW, LabWindows/CVI, Microsoft .NET and MATLAB.
Display Characteristics
Display Type 10.4 in. (264mm) liquid crystal TFT color display.
Display Resolution 1024 horizontal x 768 vertical pixels (XGA).
Waveform Styles Vectors, Dots, Variable Persistence, Infinite Persistence.
Graticules Full, Brid, Cross Hair, Frame, IRE and mV.
Format YT and simultaneous XY/YT.
Waveform Capture Rate Up to 35,000 wfms/sec.
Input/Output Ports
CompactFlash Drive Front panel access (Type 1) USB2.0 Full Speed Host Port – Supports USB mass storage devices, printers and keyboard. Two ports available on rear-panel and one on front-panel.
USB 2.0 High Speed Device Port Rear panel connector allows for control of oscilloscope via USBTMC or GPIB with a TEK-USB-488.
LAN Port RJ-45 connector, supports 10/100Base-T.
XGA Video Port DB-15 female connector, connect to show the oscilloscope display on an external monitor or projector.
Auxiliary Input Front panel BNC connector. Input Impedance 1 MΩ. Max input 250 VRMS with peaks ±400 V.
Probe Compensator Output Front panel pins.
Amplitude 2.5 V Frequency 1 kHz.
Trigger Out Rear-panel BNC connector, provides a positive polarity pulse when the oscilloscope triggers.
Kensington Lock Rear-panel security slot connects to standard Kensington lock.
Power Source
Power Source Voltage 100 to 240 V ±10%
Power Source Frequency 47 to 66 Hz (90 to 264 V), 360 to 440 Hz (100 to 132 V).
Power Consumption 250 W maximum.
Physical Characteristics
Height 229mm / 9in
Width 439mm / 17.3in
Depth 137mm / 5.4in
Net Weight 5kg / 11lbs
Shipping Weight 9.5kg / 22lbs
Rackmount Configuration 5U
Cooling Clearance 2 in. (51mm) required on left side and rear of instrument
General Characteristics
Operating Temperature 0 ºC to +50 ºC.
Non-operating Temperature –20 ºC to +60 ºC.
Operating Humidity High: 40 ºC to 50 ºC, 10% to 60% relative humidity.
Low: 0 ºC to 40 ºC, 10% to 90% relative humidity.
Non-operating Humidity High: 40 ºC to 60 ºC, 5% to 60% relative humidity.
Low: 0 ºC to 40 ºC, 5% to 90% relative humidity.
Operating Altitude 3,000 meters (9,843 feet).
Non-operating Altitude 12,000 meters (39,370 feet).
Operating Random Vibration 0.31 GRMS from 5 to 500 Hz, 10 minutes each axis, 3 axes, 30 minutes total.
Non-operating Random Vibration 2.46 GRMS from 5 to 500 Hz, 10 minutes each axis, 3 axes, 30 minutes total.
Electromagnetic Compatibility 89/336/EEC
Safety UL61010-1, Second Edition; CSA61010-1 Second Edition, EN61010-1:2001; IEC 61010-1:2001.


Comparison Charts

Vertical System
Analog Channels
DPO2012
MSO2012
DPO2014
MSO2014
DPO2024
MSO2024
Input Channels 2 4 4
Analog Bandwidth (–3 dB)
5 mV/div to 1 V/div
100 MHz 100 MHz 200 MHz
Calculated Rise Time
5 mV/div (typical)
3.5 ns 3.5 ns 2.1 ps
Hardware Bandwidth Limits 20 MHz
Input Coupling AC, DC, GND
Input Impedance 1 MΩ 11.5 pF ±2 pF
Input Sensitivity 2 mV/div to 5 V/div
Vertical Resolution 8 bits
Max Input Voltage 300 VRMS with peaks <±450 V
DC Gain Accuracy ±3% for 10 mV/div to 5 V/div, ±4% for 2 mV/div to 5 mV/div
Offset Range
2 mV/div to 200 mV/div ±1 V
>200 mV/div to 5 V/div ±25 V
Channel-to-Channel Isolation ≥100:1 at ≤200 MHz Bandwidth is 20 MHz at 2 mV/div, all models

Vertical System
Digital Channels
MSO2012 MSO2014 MSO2024
Input channels 16 Digital (D15 to D0)
Thresholds Threshold per set of 8 channels
Threshold Selections TTL, CMOS, ECL, PECL, User Defined
User-defined Threshold Range ±20 V
Maximum Input Voltage ±40 V
Threshold Accuracy ±(100 mV + 3% of threshold setting)
Input Dynamic Range 80 Vpk-pk (threshold setting dependent)
Minimum Voltage Swing 500 mV
Input Impedance 101 kΩ
Probe Loading 3 pF
Vertical Resolution 1 bit

Horizontal System
Analog Channels
DPO2012
MSO2012
DPO2014
MSO2014
DPO2024
MSO2024
Maximum Sample Rate
(all channels)
1 GS/s
Minimum Peak Detect
Pulse Width
7.0 ns N/A 3.5 ns
Maximum Record Length
(all channels)
1 M points
Maximum Duration at Highest Sample Rate (all channels) 1 ms
Timebase Range 4 ns to 100 s N/A 2 ns to 100 s
Timebase Delay Time Range -10 div to 5000 s
Channel-to-Channel
Deskew Range
±100ns
Timebase Accuracy ±25 ppm

Horizontal System
Digital Channels
MSO2012 MSO2014 MSO2024
Maximum Sample Rate (when using any of channels D7-D0) 1 GS/s (1 ns resolution)
Maximum Sample Rate (when using any of channels D15-D8) 500 MS/s (2 ns resolution)
Maximum Record Length 1 M points
Minimum Detectable Pulse Width 5 ns
Channel-to-Channel Skew 2 ns typical





 

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