
| Brand | TEKTRONIX |
|---|---|
| Manufacturer Part Number | MSO2014 |
| Part Type | SIGNAL OSCILLOSCOPE |
The Tektronix MSO2014 is a versatile and powerful signal oscilloscope designed to meet the needs of engineers and technicians in various fields. This 200 MHz real-time, 1 GSa/s digital oscilloscope offers a high degree of flexibility and precision, making it an excellent tool for debugging, troubleshooting, and analyzing signals in a wide range of applications.
The MSO2014 features four analog input channels and two digital input channels, allowing you to capture and analyze a diverse range of signals. Each analog channel supports a bandwidth of up to 200 MHz, providing high-fidelity signal measurement and analysis. The digital input channels support a wide range of protocols, including USB, I2C, LIN, and CAN, enabling you to inspect digital data streams in real time.
One of the standout features of the MSO2014 is its built-in 16-bit, 1 GSa/s digital sampling oscilloscope, which allows for exceptional signal resolution and accuracy. This feature enables you to capture and analyze high-speed signals with minimal distortion, making it an ideal tool for applications such as serial data analysis, high-speed digital design, and power electronics.
The MSO2014 also features a large, high-resolution color display with a user-friendly interface, making it easy to navigate and analyze complex signals. The display supports multiple views and waveform overlays, allowing you to compare and contrast different signals in real time. The oscilloscope also includes advanced analysis tools such as jitter analysis, eye diagrams, and FFT analysis, enabling you to gain a deeper understanding of your signals.
In addition to its powerful analysis capabilities, the MSO2014 is also highly portable and robust, with a ruggedized design and a lightweight, ergonomic form factor. It includes a variety of connectivity options, including USB, GPIB, and Ethernet, making it easy to integrate with other test and measurement equipment.
In conclusion, the Tektronix MSO2014 is a powerful and versatile signal oscilloscope that offers a high degree of flexibility and precision. Its advanced analysis capabilities, high bandwidth, and digital sampling technology make it an ideal tool for a wide range of applications, from debugging and troubleshooting to high-speed digital design and power electronics. With its ruggedized design, user-friendly interface, and extensive connectivity options, the MSO2014 is a must-have tool for any engineer or technician looking to gain a deeper understanding of their signals.
The Tektronix MSO2014 is a high-performance signal oscilloscope with a wide range of features. Here are some pros and cons to consider: Pros:1. High resolution: The MSO2014 offers a high resolution of 12 bits, which allows for precise measurements and analysis of signals.
2. Mixed signal analysis: The oscilloscope supports mixed signal analysis, allowing you to measure and analyze both digital and analog signals on the same screen.
3. Wide bandwidth: With a bandwidth of 1 GHz, the MSO2014 can handle high-speed signals and is suitable for a wide range of applications.
4. Deep memory: The oscilloscope has a deep memory of up to 2 Mpts, which allows you to capture and analyze long signals without losing any data.
5. Built-in protocol decoders: The MSO2014 comes with built-in protocol decoders for popular bus standards such as I2C, SPI, and USB, making it easy to analyze communication signals.
6. User-friendly interface: The oscilloscope has a user-friendly interface, which makes it easy to navigate and use, even for beginners.
Cons:1. Price: The Tektronix MSO2014 is a high-end oscilloscope, and its price reflects its advanced features and performance. It may be too expensive for some users.
2. Size and weight: The oscilloscope is quite large and heavy, which may make it difficult to carry around for field applications.
3. Complex setup: Setting up the oscilloscope for specific applications can be complex and may require some technical knowledge.
Conclusion:The Tektronix MSO2014 is a high-performance oscilloscope with advanced features that make it suitable for a wide range of applications. Its high resolution, mixed signal analysis, wide bandwidth, deep memory, and built-in protocol decoders make it a powerful tool for signal analysis. However, its price and size may be a disadvantage for some users. Overall, if you have the budget and require a high-end oscilloscope for your applications, the Tektronix MSO2014 is a great choice.
Recommendation:If the price and size are not a concern, I would highly recommend the Tektronix MSO2014 for its advanced features and high performance. However, if you are looking for a more affordable or portable option, there are other oscilloscopes available that may be more suitable for your needs. It is important to consider your specific requirements and budget before making a decision.
This button brings up a probe menu on the oscilloscope display with all relevant settings and controls for. A typical embedded design may incorporate various analog signals, high and low-speed serial digital communication microprocessor buses, just to name a few. Record length : 1 mots. The teacup interface utilizes a new probe power management architecture enabling direct attachment of current probes.
To complement open choice, national instruments lab view Tektronix edition software provides you with extended capabilities, including advanced analysis, remote oscilloscope control and live waveform analysis. Teacup probe interface supports active, differential, and current probes for automatic scaling units. Shipping handling. Mixed signal design and analysis.
The inner control adjusts the zoom factor or scale ; turning it clockwise activates and goes to progressively higher factors, while counterclockwise results in lower factors eventually off. Finally, teacup probes can be controlled remotely by using USB, glib, or Ethernet, enabling more versatile solutions in ate environments. Playback speed and direction are controlled using the intuitive pan control. Easily capture, save and analyze measurement results with open choice desktop PC communications software.
One common problem shared by both logic analyzers and mixed signal oscilloscopes is determining if data a one or zero when zoomed in far enough that the digital trace stays flat all way across display. Once again, turning the control further makes waveform scroll faster and changing direction is as simple other way. Pan direction is changed by simply turning the control other way. Features: band width : 100 MHz.
Serial triggering, trigger on packet content such as start of packet, specific addresses, data content, unique identifiers, etc. Ease of use features wave inspector controls provide easy navigation and automated. Sample rate: 1 gs/s. Suite of advanced triggers.
Search of waveform data. By simply placing digital waveform next to each other, they form a group. Teacup probes feature status indicators and controls, as well a probe menu button right on the input compensation box itself. They make debugging bus and system problems more difficult, its harder to isolate events of interest difficult interpret what is displayed on the oscilloscope screen.
All packaging materials must be saved for inspection by the carrier representatives. Teacup probing, the probe interface sets the standard for ease of use in probing. This greatly reduces the normal setup time associated with positioning channels individually. Embedded design and debug.
Navigating between marks is as simple pressing the previous and next buttons on front panel. Channel setup on an mso can often be time consuming as compared to the traditional oscilloscope. Education and training. Parallel bus trigger and analysis.
Mixed signal design and debug. Simply pull screen images and waveform data into the stand-alone desktop application or directly in Microsoft word excel. All occurrences of the event are highlighted with search marks and easily navigated to, using front-panel previous next buttons. Let the oscilloscope do it for you.
The event table can also be exported for use offline. Channels: 4 analog and 16 digital. They can contain many different types of devices including microprocessors, micro controllers, DPs, ram, proms, fags, ADC, daces, and i/o.
Serial triggering and analysis, one of the most common applications requiring long record length is serial data analysis in embedded system design. All buyers in the continental USA pay a flat rate or determined for larger items. The outer control pans the zoom box across waveform to quickly get portion of you are interested in. Video design and debug.
Automotive electronics. The farther you turn the outer control, faster zoom box moves. Press the set mark button on front panel to leave one or more bookmarks waveform.
Packets are time-stamped and listed consecutively with columns for each component address, data, etc. Search marks, don't want to take the time inspect entire acquisition manually find event you re looking for. User marks, see something interesting on your waveform. Today, however, more and embedded systems are replacing these wide parallel buses with serial due to lower board space requirements, fewer pins, power, clocks, differential signaling for better noise immunity most importantly, cost.
While serial buses have a large number of benefits, they also present significant challenges that their predecessors parallel buses did not face. Each occurrence is marked for easy reference. 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 identifying sub-packet components such as address, identifier, CRX, etc. Alternatively, if you prefer not to use the PC, can simply print your image directly any pocketbook compatible printer using USB device port.
Embedded systems are virtually everywhere. Serial bus trigger and decode. These channels are tightly integrated into the oscilloscopes user interface, simplifying operation and making it possible to solve mixed signal issues easily. Also available are optional glib, LAN, and video-out adapters.
Rapid navigation between marks is as simple pressing the previous and next buttons on front panel. This acts as a visual reminder that increasing the sample rate on next acquisition will reveal higher frequency information than your previous settings could acquire. These various devices have traditionally communicated with each other and the outside world using wide parallel buses. Multichannel setup and hold triggering.
Filter variable low-pass filter allows for removal of unwanted signal noise while still capturing high-frequency events. Once a group is formed, you can position all the channels contained in that together. Plug n play PC connectivity and analysis software solutions. Event table, in addition to seeing decoded packet data on the bus waveform itself, you can view all captured packets in a tabular much like would see logic analyzer.
In addition, theres a large supply of off-the-shelf building block components from reputable manufacturers, enabling rapid design development. Power measurements. In the past, you had to manually scroll through waveform, counting and converting bits looking for what caused event.
