Welcome Customer !

Membership

Help

Changsha Aikesipu Instrument Equipment Co., Ltd
Custom manufacturer

Main Products:

instrumentb2b>Products
Product Categories

Changsha Aikesipu Instrument Equipment Co., Ltd

  • E-mail

  • Phone

  • Address

    611 Xiangyu Smart South Building, Kaifu District, Changsha City, Hunan Province

Contact Now

Tektronix MSO4104 Mixed Signal Oscilloscope

NegotiableUpdate on 01/18
Model
Nature of the Manufacturer
Producers
Product Category
Place of Origin

Overview

Introduction: The mixed signal oscilloscope has 4 analog channels and 16 digital channels. It can analyze both analog and digital signals simultaneously through a single instrument, solving complex design problems at the system level. The digital fluorescent display screen has a waveform capture rate of 50000 wfm/s and intensity graded display

Product Details

Functions of mixed signal oscilloscope Advantages of mixed signal oscilloscope



4 analog channels and 16 digital channels simultaneously analyze analog and digital signals through a single instrument, solving complex design problems at the system level.
The digital fluorescent display screen quickly captures and displays burrs and rare events with a waveform capture rate of 50000 wfm/s and intensity graded display screen.
The complete trigger technology utilizes over 125 trigger combinations to quickly capture signal anomalies, including establishing/maintaining, serial packet content, and parallel data.
Wave Inspector ® The control device allows for easy viewing, searching, and browsing of long records, enabling efficient analysis of waveform data.
Automatic measurement utilizes 29 types of automatic measurement and Fast Fourier Transform (FFT) analysis to simplify the analysis of devices.
Parallel Bus Triggering and Analysis (MSO series) utilizes automatic triggering, decoding, and search functions to quickly debug parallel buses. Capture fast transitions with a time resolution of up to 60.6 ps
Quick debugging of Universal Serial Bus (I2C) with serial trigger, decoding, and search options, SPI, CAN, LIN, FlexRay, RS-232/422/485/UART and I2S/LJ/RJ/TDM.
The power analysis option enables fast and accurate results for comprehensive automated power measurement



capture
Discovering device issues is just the first step, then you must capture the events of interest to determine the root cause.

The MSO4104 mixed signal oscilloscope provides a complete set of triggering functions, including short pulse triggering, logic triggering, pulse width/glitch triggering, establishment time/hold time violation triggering, serial data packet triggering, and parallel data triggering, to help you quickly locate events. Due to its recording length of up to 10 M points, the MSO4104 mixed signal oscilloscope can capture many events of interest in one acquisition, including thousands of serial data packets, for further analysis while maintaining high resolution and amplifying fine signal details.


From triggering specific packet contents to automatically decoding in multiple data formats, the MSO4104 mixed signal oscilloscope provides integrated support for the industry's widest range of serial buses, including I2C, SPI, CAN, LIN, FlexRay, RS-232/422/485/UART, and I2S/LJ/RJ/TDM. The MSO4104 mixed signal oscilloscope can decode up to two serial and/or parallel buses simultaneously, which means you can quickly understand system level issues.


To further assist you in debugging system level interactions in complex embedded systems, The MSO4104 mixed signal oscilloscope provides 16 digital channels in addition to analog channels. Due to the comprehensive integration of digital channels into the oscilloscope, you can trigger all input channels to automatically achieve time correlation of all analog signals, digital signals, and serial signals. MagniVuTM high-speed acquisition technology can capture fine signal details (up to 60.6 ps resolution) around the trigger point, achieving precise measurement. MagniVu is crucial for accurate timing measurements, including establishing and maintaining time measurements, clock delay, signal offset, and glitch detection.