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Rigol MSO2202A

Now includes NABL Calibration Certificate.

Rs. 120714.00

The RIGOL MSO2202A is a 200 MHz mixed-signal oscilloscope designed for embedded-system debugging, digital circuit analysis, electronics development and production testing. It combines two analogue channels, 16 digital channels, up to 2 GSa/s analogue sampling, 14 Mpts standard analogue memory, waveform capture up to 52,000 wfms/s and hardware recording of up to 65,000 frames on an 8-inch colour display..

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The RIGOL MSO2202A Mixed-Signal Oscilloscope is designed for engineers, technicians, research laboratories, educational institutions and production teams that need to observe analogue and digital signals within the same time-correlated acquisition.

It provides two analogue channels with 200 MHz bandwidth and 16 digital logic channels, allowing users to analyse signal amplitude, timing, logic states and communication activity on one instrument. This makes the MSO2202A suitable for debugging microcontrollers, FPGAs, embedded controllers, digital buses, power electronics and mixed-signal circuits.

The oscilloscope uses RIGOL UltraVision technology to combine deep acquisition memory, high waveform capture rates, intensity-graded display and hardware waveform recording. These functions help engineers detect both repetitive signal behaviour and intermittent abnormalities such as glitches, runt pulses, unstable edges and communication errors.

 

200 MHz Analogue Bandwidth

The MSO2202A provides 200 MHz analogue bandwidth across two input channels.

It is suitable for analysing:

  • Embedded controller clock signals
  • FPGA and microcontroller outputs
  • PWM and control waveforms
  • Sensor and actuator signals
  • Switching power-supply control signals
  • Analogue amplifier outputs
  • Communication interfaces
  • Input and output signal relationships
  • Pulse and timing behaviour
  • General signal-integrity problems

The calculated rise time is approximately 1.8 ns, making the MSO2202A suitable for faster signal transitions than the 100 MHz MSO2102A.

 

Two Analogue and 16 Digital Channels

The mixed-signal architecture combines:

  • Two analogue oscilloscope channels
  • Sixteen digital logic channels
  • One external trigger input
  • Time-correlated analogue and digital display
  • Analogue and digital triggering
  • Parallel bus analysis
  • Digital channel grouping
  • User-defined digital channel labels

The digital channels are divided into two eight-channel groups. Each group can use a separate logic threshold.

This configuration allows engineers to examine:

  • Analogue sensor signals alongside digital control outputs
  • Clock, data and enable lines
  • FPGA or CPLD timing
  • Microcontroller GPIO activity
  • Parallel data buses
  • Power-supply behaviour during digital switching
  • Communication signals and physical-layer waveform quality
  • Timing relationships between analogue and digital sections

A compatible RIGOL logic probe is required to connect the digital channels.

 

Analogue Sampling Performance

The analogue channels provide:

  • 2 GSa/s with one analogue channel active
  • 1 GSa/s per channel with both analogue channels active

The real-time sampling architecture provides sufficient acquisition points for observing waveform shape, timing, overshoot, ringing, noise and pulse behaviour.

Analogue peak detection can capture pulses as narrow as approximately:

  • 500 ps in single-channel operation
  • 1 ns in dual-channel operation

Sampling performance should be considered together with signal bandwidth, rise time, probe bandwidth and connection quality.

 

Digital Sampling Performance

Digital sampling depends on the number of active digital channels:

  • 1 GSa/s with up to eight digital channels active
  • 500 MSa/s with all 16 digital channels active

Digital peak-detect performance is approximately:

  • 1 ns with eight digital channels active
  • 2 ns with all 16 digital channels active

The minimum detectable digital pulse width is approximately 5 ns.

The digital channels should not be described as providing 2 GSa/s sampling. The 2 GSa/s specification applies only to the analogue acquisition system.

 

Deep Analogue Acquisition Memory

The MSO2202A provides 14 Mpts standard analogue memory in single-channel operation.

Standard analogue memory allocation:

  • 14 Mpts with one analogue channel active
  • 7 Mpts per channel with both analogue channels active

An optional memory licence expands analogue memory to:

  • 56 Mpts with one analogue channel active
  • 28 Mpts per channel with both analogue channels active

Deep memory allows engineers to capture longer signal sequences while retaining a useful sample rate.

Typical applications include:

  • Long serial communication packets
  • Power-supply start-up analysis
  • Embedded-system timing sequences
  • PWM waveform analysis
  • Intermittent fault investigation
  • Communication packet testing
  • Long pulse-train observation
  • Production monitoring

The 56 Mpts memory depth should be described as optional unless the licence is installed.

 

Digital Memory Depth

Digital acquisition memory is allocated according to the number of enabled digital channels.

Standard digital memory:

  • 14 Mpts with up to eight digital channels
  • 7 Mpts with all 16 digital channels

Optional digital memory:

  • 28 Mpts with up to eight digital channels
  • 14 Mpts with all 16 digital channels

This memory supports longer digital captures for logic analysis, parallel bus debugging and embedded-system timing investigation.

 

Fast Waveform Capture

The MSO2202A provides a maximum waveform capture rate of up to 52,000 waveforms per second in the specified dots-display configuration.

Fast acquisition improves the probability of detecting:

  • Short glitches
  • Runt pulses
  • Timing violations
  • Intermittent noise
  • Signal dropouts
  • Unstable clock edges
  • Abnormal pulse widths
  • Occasional communication errors

The intensity-graded display uses up to 256 levels to distinguish frequently occurring waveform activity from rare events.

 

Hardware Waveform Recording

The oscilloscope supports hardware waveform recording, playback and analysis.

Maximum recording capacity includes:

  • Up to 65,000 frames with digital channels disabled
  • Up to 32,000 frames with digital channels enabled

Waveform recording allows users to:

  • Capture successive signal events
  • Replay waveforms frame by frame
  • Compare normal and abnormal events
  • Review the sequence preceding a fault
  • Perform post-acquisition measurements
  • Analyse intermittent problems
  • Monitor signal behaviour over time

The lower recording-frame count with digital channels enabled should be considered when planning extended mixed-signal tests.

 

Low-Level Analogue Measurements

The MSO2202A provides vertical sensitivity from:

  • 500 µV/div to 10 V/div at 1 MΩ
  • 500 µV/div to 1 V/div at 50 Ω

This range supports measurement of:

  • Sensor outputs
  • Power-supply ripple
  • Amplifier signals
  • Reference voltages
  • Small analogue waveforms
  • General electronic circuits

The 500 µV/div setting uses digital amplification based on the 1 mV/div range and should be considered accordingly during precision measurements.

 

Selectable Input Impedance

The analogue inputs support:

  • 1 MΩ input impedance for general-purpose measurements
  • 50 Ω termination for correctly matched higher-frequency signals

The maximum permitted input voltage differs between the two impedance settings. Suitable probes, termination and voltage limits must be observed.

 

Selectable Bandwidth Limits

The MSO2202A provides selectable bandwidth limits of:

  • 20 MHz
  • 100 MHz
  • Full 200 MHz bandwidth

Bandwidth limiting helps reduce unwanted high-frequency noise when full bandwidth is not required.

Typical applications include:

  • Power-supply ripple measurement
  • Sensor signal analysis
  • Low-frequency analogue testing
  • Noise reduction
  • Cleaner waveform observation
  •  

Digital Logic Thresholds

The digital channels support predefined and user-defined logic thresholds.

Supported logic families include:

  • TTL
  • 5 V CMOS
  • 3.3 V CMOS
  • 2.5 V CMOS
  • 1.8 V CMOS
  • ECL
  • PECL
  • LVDS
  • 0 V reference
  • User-defined threshold

The user-defined threshold range is approximately ±20 V with 10 mV adjustment steps.

This allows the logic analyser to work with several digital voltage standards used in embedded, industrial and automotive electronics.

 

Trigger Functions

The MSO2202A provides multiple trigger modes for isolating specific analogue and digital conditions.

Standard trigger functions include:

  • Edge
  • Pulse width
  • Slope
  • Pattern
  • Runt
  • Setup and hold
  • Standard video
  • RS232/UART
  • I2C
  • SPI

Additional trigger functions are available through optional software licences:

  • Window
  • Nth edge
  • HDTV
  • Delay
  • Timeout
  • Duration
  • USB
  • CAN

Trigger options help engineers isolate short pulses, timing violations, communication events and intermittent waveform problems.

 

Serial and Parallel Bus Analysis

The MSO2202A supports protocol triggering and decoding across analogue and digital channels.

Available bus analysis includes:

  • Parallel bus
  • RS232/UART
  • I2C
  • SPI
  • CAN

Parallel bus decoding is a standard mixed-signal function. RS232/UART, I2C, SPI and CAN analysis may require applicable software licences, depending on the supplied instrument configuration.

Protocol analysis allows users to:

  • Display decoded data values
  • Trigger on specific bus conditions
  • Correlate data with electrical waveforms
  • Identify timing problems
  • Locate missing acknowledgements
  • Analyse corrupted packets
  • Investigate physical-layer faults

Up to two decoded buses can be displayed.

 

Automatic Measurements

The MSO2202A provides automatic measurements for analogue and digital signals.

Analogue measurement categories include:

  • Maximum and minimum voltage
  • Peak-to-peak voltage
  • Top and base voltage
  • Amplitude
  • Average voltage
  • RMS voltage
  • Frequency
  • Period
  • Rise and fall time
  • Positive and negative pulse width
  • Positive and negative duty cycle
  • Overshoot and preshoot
  • Area and period area
  • Phase
  • Delay

Digital measurements include:

  • Frequency
  • Period
  • Positive pulse width
  • Negative pulse width
  • Duty cycle
  • Phase
  • Delay

Up to five measurements can be displayed simultaneously. Statistical results include current, average, maximum, minimum, standard deviation and measurement count.

 

Waveform Mathematics and FFT

The oscilloscope includes waveform-processing and frequency-domain analysis functions.

Available mathematical functions include:

  • Addition
  • Subtraction
  • Multiplication
  • Division
  • FFT
  • Digital filtering
  • Logic operations
  • Integration
  • Differentiation
  • Logarithmic functions
  • Exponential functions
  • Square root
  • Trigonometric functions

FFT analysis is useful for:

  • Harmonic analysis
  • Switching-frequency measurement
  • Clock-spectrum observation
  • Noise-source identification
  • EMI troubleshooting
  • Detection of unwanted oscillations

The built-in FFT function is suitable for general engineering analysis but does not replace a dedicated spectrum analyser for demanding RF measurements.

 

Pass/Fail Testing

Mask-based pass/fail testing compares acquired waveforms with defined tolerance limits.

It can support:

  • Production testing
  • Quality-control checks
  • Signal-stability monitoring
  • Component comparison
  • Detection of waveform deviations
  • Repetitive validation

The AUX output can provide a trigger or pass/fail signal for external equipment or automated test systems.

 

Display and User Interface

The MSO2202A uses an 8-inch TFT colour display with 800 × 480 resolution.

Display features include:

  • 160,000 colours
  • Up to 256 intensity levels
  • Dots and vector display modes
  • Adjustable persistence
  • Y-T, X-Y and Roll modes
  • Digital channel grouping
  • User-defined digital labels
  • Search and navigation
  • Real-time clock

Analogue waveforms, digital channels, measurements and decoded bus information can be viewed together.

 

Connectivity and Automated Testing

The oscilloscope supports computer communication, network control and automated validation.

Available connectivity includes:

  • USB Host
  • USB Device
  • LAN
  • LXI support
  • AUX output
  • Trigger or pass/fail output
  • Optional USB-to-GPIB adapter

Remote programming and waveform transfer support production testing, laboratory automation and repetitive validation.

 

No Built-In Waveform Generator

The standard MSO2202A does not include an integrated waveform generator.

A dual-channel 25 MHz arbitrary waveform generator is available only in the MSO2202A-S model.

Users who require built-in signal generation should select the “-S” version rather than the standard MSO2202A.

 

Applications

The RIGOL MSO2202A is suitable for:

  • Embedded-system development
  • Microcontroller debugging
  • FPGA and CPLD testing
  • Mixed-signal circuit analysis
  • Digital logic debugging
  • Parallel bus analysis
  • Serial protocol testing
  • Power-supply analysis
  • PWM measurements
  • Sensor and controller testing
  • Industrial electronics maintenance
  • Production-line inspection
  • Quality validation
  • Research and development
  • Engineering education
  • Service and repair applications
  •  

Why Buy from RevineTech?

RevineTech supplies professional test and measurement instruments for electronics development, research, education, industrial testing and production environments.

Technical selection assistance can cover:

  • MSO2202A configuration
  • Analogue and digital memory upgrades
  • Advanced trigger licence
  • Serial protocol options
  • CAN analysis software
  • Logic-probe selection
  • Passive and differential probes
  • Current probes
  • Calibration requirements
  • Rack-mount accessories
  • Automated test integration

 

200 MHz Analogue Bandwidth

The MSO2202A provides 200 MHz bandwidth across two analogue channels.

It supports:

  • Embedded-system debugging
  • Fast clock and pulse analysis
  • PWM measurements
  • Communication interface testing
  • Switching waveform analysis
  • General signal-integrity troubleshooting
  •  

2+16-Channel Mixed-Signal Architecture

The oscilloscope combines:

  • Two analogue channels
  • Sixteen digital channels
  • Time-correlated signal display
  • Analogue and digital triggering
  • Parallel bus analysis
  • Digital channel grouping and labelling
  •  

Up to 2 GSa/s Analogue Sampling

Analogue sampling includes:

  • 2 GSa/s with one active channel
  • 1 GSa/s per channel with two active channels
  •  

Up to 1 GSa/s Digital Sampling

Digital sampling includes:

  • 1 GSa/s with up to eight digital channels
  • 500 MSa/s with all 16 digital channels
  •  

Analogue Memory up to 56 Mpts

Analogue memory includes:

  • 14 Mpts standard with one channel
  • 7 Mpts per channel standard with two channels
  • 56 Mpts optional with one channel
  • 28 Mpts per channel optional with two channels
  •  

Digital Memory up to 28 Mpts

Digital memory includes:

  • 14 Mpts standard with up to eight channels
  • 7 Mpts standard with 16 channels
  • 28 Mpts optional with up to eight channels
  • 14 Mpts optional with 16 channels
  •  

Up to 52,000 wfms/s Capture

Fast waveform capture helps locate:

  • Rare glitches
  • Timing errors
  • Runt pulses
  • Signal instability
  • Intermittent noise
  • Communication faults
  •  

Hardware Waveform Recording

Recording capability includes:

  • Up to 65,000 frames with digital channels disabled
  • Up to 32,000 frames with digital channels enabled
  • Frame-by-frame playback
  • Post-acquisition analysis
  • Fault-sequence investigation
  •  

Logic Threshold Selection

Supported threshold options include:

  • TTL
  • CMOS
  • ECL
  • PECL
  • LVDS
  • User-defined thresholds
  •  

Serial Bus Analysis

Available protocol functions include:

  • Parallel bus
  • RS232/UART
  • I2C
  • SPI
  • CAN

Applicable licences should be confirmed before ordering.

 

500 µV/div Minimum Analogue Scale

The low vertical scale supports:

  • Sensor outputs
  • Power-supply ripple
  • Amplifier signals
  • Reference voltages
  • Low-amplitude analogue waveforms
  •  

Selectable Bandwidth Limits

Users can select:

  • 20 MHz
  • 100 MHz
  • Full 200 MHz bandwidth
  •  

High-Resolution Acquisition

The oscilloscope supports up to 12-bit high-resolution processing under specified acquisition conditions.

 

FFT and Waveform Mathematics

Built-in analysis includes:

  • FFT
  • Digital filtering
  • Arithmetic waveform operations
  • Logic operations
  • Integration and differentiation
  • Measurement statistics
  •  

8-Inch Colour Display

Display features include:

  • 800 × 480 resolution
  • 160,000 colours
  • 256 intensity levels
  • Dots and vector modes
  • Adjustable persistence
  • Mixed analogue and digital display
  •  

Complete Connectivity

Interfaces include:

  • USB Host
  • USB Device
  • LAN
  • LXI
  • AUX output
  • Optional USB-GPIB

Core Technical Specifications

Specification RIGOL MSO2202A
Product series RIGOL MSO2000A Series
Product type Mixed-signal oscilloscope
Analogue bandwidth 200 MHz
Analogue channels 2
Digital channels 16
Built-in waveform generator No
Maximum analogue sample rate 2 GSa/s
Maximum digital sample rate 1 GSa/s with eight channels
Standard analogue memory 14 Mpts with one analogue channel
Optional analogue memory 56 Mpts with one analogue channel
Standard digital memory 14 Mpts with up to eight digital channels
Optional digital memory 28 Mpts with up to eight digital channels
Maximum waveform capture Up to 52,000 wfms/s
Maximum waveform recording Up to 65,000 frames with digital channels disabled
Analogue vertical resolution 8 bits
High-resolution processing Up to 12 bits under specified conditions
Digital vertical resolution 1 bit
Minimum analogue scale 500 µV/div
Calculated rise time Approximately 1.8 ns
Display 8-inch TFT colour display
Display resolution 800 × 480 pixels

 

Analogue Sampling and Memory

Active Analogue Channels Maximum Sample Rate Standard Memory Optional Memory
One channel 2 GSa/s 14 Mpts 56 Mpts
Two channels 1 GSa/s per channel 7 Mpts per channel 28 Mpts per channel

 

Digital Sampling and Memory

Active Digital Channels Maximum Sample Rate Standard Memory Optional Memory
Up to eight channels 1 GSa/s 14 Mpts 28 Mpts
Sixteen channels 500 MSa/s 7 Mpts 14 Mpts

 

Analogue Vertical System

Specification Details
Input coupling AC, DC or GND
Input impedance 1 MΩ ±1% with 19 pF ±3 pF, or 50 Ω ±1.5%
Vertical resolution 8 bits
High-resolution mode Up to 12 bits under specified conditions
Vertical scale at 1 MΩ 500 µV/div to 10 V/div
Vertical scale at 50 Ω 500 µV/div to 1 V/div
Bandwidth limits 20 MHz, 100 MHz or full bandwidth
DC gain accuracy ±2% full scale
Channel isolation Greater than 40 dB
Probe attenuation 0.01X to 1000X
Maximum input at 1 MΩ CAT I 300 Vrms or CAT II 100 Vrms, subject to stated limits

 

Digital Channel System

Specification Details
Number of digital channels 16
Compatible logic probe RPL2316
Sample rate with eight channels 1 GSa/s
Sample rate with 16 channels 500 MSa/s
Digital peak detection Approximately 1 ns with eight channels and 2 ns with 16 channels
Minimum detectable pulse width Approximately 5 ns
Input impedance Approximately 101 kΩ
Probe loading Approximately 8 pF
User-defined threshold range Approximately ±20 V
Threshold resolution 10 mV
Minimum voltage swing Approximately 500 mVpp
Threshold groups Two groups of eight channels

 

Horizontal and Acquisition System

Specification Details
Sampling mode Real-time
Time-base range 2 ns/div to 1 ks/div
Time-base accuracy ≤±15 ppm
Time-base drift ≤±5 ppm per year
Acquisition modes Normal, Average, Peak Detect and High Resolution
Average settings 2 to 8192 acquisitions
Analogue peak detection Approximately 500 ps single-channel and 1 ns dual-channel
Digital peak detection Approximately 1 ns with eight channels and 2 ns with 16 channels
Maximum waveform capture 52,000 wfms/s
Display modes Y-T, X-Y and Roll

 

Waveform Recording

Configuration Maximum Recorded Frames
Digital channels disabled Up to 65,000
Digital channels enabled Up to 32,000

 

Trigger Functions

Availability Trigger Modes
Standard analogue triggers Edge, Pulse, Slope, Pattern, Runt, Setup/Hold and standard video
Standard serial triggers RS232/UART, I2C and SPI
Optional advanced triggers Window, Nth Edge, HDTV, Delay, Timeout, Duration and USB
Optional automotive trigger CAN
Trigger modes Auto, Normal and Single
Trigger holdoff 100 ns to 10 s
Trigger sources Analogue channels, digital channels, EXT and AC Line, depending on trigger type

 

Serial and Parallel Bus Analysis

Availability Supported Functions
Standard mixed-signal function Parallel bus decoding
Optional serial decoding RS232/UART, I2C and SPI
Optional automotive analysis CAN
Maximum displayed decoded buses Two
Analogue and digital correlation Supported

 

Measurement and Analysis Functions

Function Capability
Analogue automatic measurements Voltage, timing, frequency, pulse, phase and delay
Digital automatic measurements Frequency, period, pulse width, duty cycle, phase and delay
Simultaneous measurements Up to five
Measurement statistics Current, average, maximum, minimum, standard deviation and count
Frequency counter Six-digit hardware counter
Cursor measurements Manual, tracking and automatic
FFT Frequency-domain analysis
Waveform mathematics Arithmetic, logic and advanced functions
Digital filtering Supported
Mask testing Pass/fail testing
Reference waveforms Supported
Waveform recording Up to 65,000 frames

 

Display Specifications

Specification Details
Display size 8 inches
Display type TFT LCD
Display resolution 800 × 480 pixels
Display colours 160,000
Intensity grading Up to 256 levels
Display modes Dots and vectors
Persistence 50 ms to infinite
Real-time clock Supported

 

Connectivity

Interface Function
USB Host External storage and supported peripherals
USB Device Computer communication
LAN Network communication
LXI Automated test integration
AUX OUT Trigger or pass/fail output
USB-GPIB Optional legacy test-system connection
Remote programming Supported through compatible software and commands

 

Physical Specifications

Specification Details
Dimensions 361.6 × 179.6 × 130.8 mm
Weight Approximately 3.9 kg without packaging
Maximum power consumption 50 W
Input power 100 V to 240 V, 45 Hz to 440 Hz
Operating temperature 0°C to 50°C
Maximum operating altitude 3,000 metres
Recommended calibration interval 18 months