Home All Rigol Oscilloscopes Rigol DHO802 12bit DSO 70MHz, 2ch.
All Rigol Oscilloscopes

Rigol DHO802 12bit DSO 70MHz, 2ch.

Now includes NABL Calibration Certificate.

Rs. 49737.00

The RIGOL DHO802 is a 70 MHz, two-channel high-resolution digital oscilloscope designed for embedded-system debugging, electronics development, power-supply testing, maintenance and education. It combines native 12-bit vertical resolution, up to 1.25 GSa/s real-time sampling, 25 Mpts maximum memory, UltraAcquire capture up to 1,000,000 wfms/s and a 7-inch capacitive touchscreen in a compact, portable platform.

Quantity:
- +
Product added to cart successfully
  • Detail
  • Special Features
  • Specification

The RIGOL DHO802 Digital Oscilloscope is the two-channel, 70 MHz model in the DHO800 Series. It is developed for engineers, technicians, research laboratories, educational institutions and electronics service teams that require high vertical resolution, compact dimensions and modern waveform-analysis functions.

The DHO802 uses RIGOL’s Centaurus technology platform and a native 12-bit analogue-to-digital converter. A 12-bit acquisition system provides 4,096 vertical quantisation levels, compared with 256 levels from a conventional 8-bit oscilloscope. This improves the visibility of low-amplitude waveform changes, ripple, noise, overshoot and distortion.

 

70 MHz Analogue Bandwidth

The DHO802 provides:

  • 70 MHz analogue bandwidth
  • Two analogue input channels
  • One external trigger input
  • Typical rise time of 5 ns or less
  • 1 MΩ input impedance
  • Selectable 20 MHz bandwidth limit
  • 12-bit native vertical resolution

The two-channel configuration is suitable for comparing:

  • Input and output waveforms
  • Clock and data signals
  • Voltage and current
  • Sensor output and controller response
  • Reference and measured signals
  • Power-supply input and output
  • Phase and timing relationships

The external trigger input is available specifically on the two-channel DHO800 models.

 

Native 12-Bit Vertical Resolution

The DHO802 provides 4,096 vertical quantisation levels.

This supports more detailed analysis of:

  • Power-supply ripple
  • Low-amplitude sensor outputs
  • Amplifier noise
  • Reference-voltage variation
  • Audio signals
  • Small AC signals on DC rails
  • Overshoot and ringing
  • Analogue waveform distortion

The higher vertical resolution is especially useful for precision analogue measurements, power integrity testing, sensor electronics and low-noise circuit development.

 

Real-Time Sampling Performance

The DHO802 provides channel-dependent sampling:

  • 1.25 GSa/s with one analogue channel active
  • 625 MSa/s per channel with both analogue channels active

The high real-time sample rate helps users observe waveform shape, pulse behaviour, ringing, overshoot and transient events.

The oscilloscope can capture glitches as narrow as approximately 1.6 ns using Peak Detect acquisition.

 

Deep Acquisition Memory

The DHO802 provides maximum memory depth of:

  • 25 Mpts with one analogue channel active
  • 10 Mpts per channel with both analogue channels active

Deep acquisition memory allows users to capture longer signal intervals while retaining useful waveform detail.

It is beneficial for:

  • Long serial communication packets
  • Power-supply start-up testing
  • PWM and pulse-train analysis
  • Embedded-system timing measurements
  • Intermittent fault investigation
  • Long control sequences
  • Production monitoring
  • Extended waveform capture

Search and navigation functions help users locate selected edges, pulses and events within long acquisitions.

 

UltraAcquire Waveform Capture

The DHO802 supports two waveform-acquisition performance levels:

  • Up to 30,000 wfms/s in Vector mode
  • Up to 1,000,000 wfms/s in UltraAcquire mode

Fast waveform capture improves the probability of finding:

  • Rare glitches
  • Runt pulses
  • Timing violations
  • Signal dropouts
  • Unstable waveform edges
  • Intermittent noise
  • Communication errors
  • Abnormal pulse widths

The digital phosphor display uses 256-level intensity grading to distinguish frequently occurring waveform activity from rare events.

 

Hardware Waveform Recording and Playback

The DHO802 supports hardware waveform recording and playback for up to 500,000 frames.

Users can:

  • Record successive waveform events
  • Replay captures continuously
  • Review frames individually
  • Perform measurements during playback
  • Apply waveform calculations
  • Decode recorded bus activity
  • Compare normal and abnormal events
  • Investigate intermittent faults

This function is useful when problems occur only after extended operation or under specific loading conditions.

 

Low-Level Signal Measurement

The DHO802 provides vertical sensitivity from:

  • 500 µV/div to 10 V/div

The 500 µV/div range is digitally magnified from the 1 mV/div setting and should be considered accordingly during precision accuracy calculations.

The low vertical range supports:

  • Power-rail ripple measurement
  • Sensor output testing
  • Low-noise amplifier analysis
  • Reference-voltage testing
  • Small analogue waveforms
  • Audio and instrumentation signals

DC gain accuracy reaches ±1% full scale above the applicable vertical settings.

 

Advanced Trigger Functions

The DHO802 provides a broad selection of trigger modes:

  • Edge
  • Pulse width
  • Slope
  • Video
  • Pattern
  • Duration
  • Timeout
  • Runt
  • Window
  • Delay
  • Setup and hold
  • Nth edge
  • RS232/UART
  • I2C
  • SPI
  • CAN

These functions help users isolate short pulses, timing errors, missing transitions, abnormal voltage conditions and selected serial communication events.

 

Serial Bus Triggering and Decoding

Serial bus triggering and decoding are standard DHO800 capabilities.

Supported protocols include:

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

The DHO802 can decode up to four protocol types at the same time. Protocol information may be displayed on the waveform or in an event table.

Serial analysis helps identify:

  • Missing acknowledgements
  • Invalid data
  • Timing errors
  • Communication interruptions
  • Incorrect voltage levels
  • Noise-related errors
  • Physical-layer faults

CAN decoding supports speeds up to 5 Mb/s and signal types including CAN_H, CAN_L, TX/RX and differential input.

 

Automatic Measurements and Statistics

The DHO802 supports 41 automatic waveform measurements, with up to ten measurements displayed simultaneously.

Measurement categories include:

  • Maximum and minimum voltage
  • Peak-to-peak voltage
  • Average voltage
  • RMS voltage
  • Frequency
  • Period
  • Rise and fall time
  • Positive and negative pulse width
  • Duty cycle
  • Overshoot and preshoot
  • Slew rate
  • Phase
  • Delay

Measurement statistics help users evaluate signal stability and variation over repeated acquisitions.

 

FFT and Waveform Mathematics

The oscilloscope supports four simultaneously displayed mathematical waveforms.

Available functions include:

  • Addition
  • Subtraction
  • Multiplication
  • Division
  • FFT
  • Integration
  • Differentiation
  • Square root
  • Logarithmic functions
  • Logical operations
  • Low-pass filtering
  • High-pass filtering
  • Band-pass filtering
  • Band-stop filtering

FFT analysis supports up to 1 Mpts and can identify up to 15 frequency peaks.

Typical FFT applications include:

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

 

Mask Testing and Histogram Analysis

The DHO802 includes pass/fail mask testing for repetitive waveform validation.

A pass/fail event can:

  • Stop acquisition
  • Activate the beeper
  • Save a screenshot
  • Provide test-count results

Histogram analysis supports horizontal, vertical and measurement histograms for evaluating waveform distribution and statistical behaviour.

 

Digital Voltmeter and Frequency Counter

The oscilloscope includes a digital voltmeter supporting:

  • DC voltage
  • AC RMS voltage
  • AC+DC RMS voltage

It also includes a high-precision frequency counter with:

  • Frequency measurement
  • Period measurement
  • 3 to 6 selectable digits
  • 48-bit totaliser

The external trigger input can also be used as a counter source on the DHO802.

 

Compact and Portable Design

The DHO802 uses a compact enclosure measuring approximately:

  • 265.35 mm wide
  • 161.75 mm high
  • 77.38 mm deep

Its weight is approximately 1.78 kg without packaging.

The instrument also supports standard monitor-arm mounting, helping reduce bench-space requirements.

 

USB Type-C Power

The DHO802 uses a USB Type-C power input rated at:

  • 15 V DC
  • 3 A
  • Maximum power consumption of 45 W

This supports portable operation using a compatible power source, making the oscilloscope suitable for:

  • Field maintenance
  • Automotive troubleshooting
  • Mobile laboratory testing
  • Industrial servicing
  • Remote equipment inspection

 

7-Inch Capacitive Touchscreen

The DHO802 includes:

  • 7-inch capacitive multi-touch display
  • 1024 × 600 resolution
  • Gesture-based operation
  • 256 intensity levels
  • Adjustable persistence
  • Flex Knob control
  • HDMI external display output

The touchscreen provides clear access to waveforms, measurements, decoded buses and analysis functions.

 

Connectivity and Remote Operation

Standard connectivity includes:

  • USB 2.0 Host
  • USB 2.0 Device
  • 10/100 LAN
  • LXI-C
  • HDMI 1.4 output
  • AUX output
  • Web Control
  • External trigger input
  • Probe compensation output

Web Control allows the oscilloscope interface to be accessed through a compatible browser. SCPI and IEEE 488.2 command support allow integration into automated test systems.

 

No Digital Logic Channels or Built-In AFG

The DHO802 is a two-channel analogue digital oscilloscope.

It does not include:

  • 16 digital logic channels
  • A built-in function or arbitrary waveform generator
  • Bode plot analysis

Users requiring four analogue channels should consider the DHO804, while users requiring mixed-signal capability or an integrated signal source should evaluate a suitable DHO900-series model.

 

Applications

The RIGOL DHO802 is suitable for:

  • Embedded-system development
  • Microcontroller debugging
  • Analogue circuit analysis
  • Power-supply testing
  • PWM waveform measurement
  • Sensor and actuator testing
  • RS232, I2C, SPI and CAN debugging
  • Audio electronics
  • Power-rail ripple measurement
  • Electronic equipment maintenance
  • Production-line validation
  • Research and development
  • Engineering education
  • Field troubleshooting
  •  

Why Buy from RevineTech?

RevineTech supplies test and measurement instruments for electronics development, research, education, industrial testing and maintenance.

Technical selection assistance can include:

  • DHO802 model selection
  • Passive probe requirements
  • High-voltage differential probes
  • Current probes
  • Serial bus testing
  • USB Type-C power requirements
  • Calibration documentation
  • VESA mounting accessories
  • Automated test integration

Native 12-Bit Resolution

  • 4,096 vertical quantisation levels
  • Sixteen times more levels than 8-bit acquisition
  • Better low-amplitude signal visibility
  • Improved ripple and noise analysis
  • More detailed waveform representation
  •  

70 MHz Analogue Bandwidth

  • Two analogue input channels
  • One external trigger input
  • Typical rise time of 5 ns or less
  • Suitable for embedded, analogue and power testing
  •  

Up to 1.25 GSa/s Sampling

  • 1.25 GSa/s with one channel
  • 625 MSa/s per channel with two channels
  •  

Up to 25 Mpts Memory

  • 25 Mpts with one active channel
  • 10 Mpts per channel with both channels active
  •  

UltraAcquire Mode

  • Up to 1,000,000 wfms/s
  • 30,000 wfms/s in Vector mode
  • Better detection of rare glitches and timing errors
  • 256-level intensity grading
  •  

Up to 500,000 Recorded Frames

  • Frame-by-frame playback
  • Continuous playback
  • Post-acquisition measurements
  • Waveform calculations
  • Serial decoding during playback
  •  

500 µV/div Minimum Vertical Scale

  • Suitable for sensor outputs
  • Power-supply ripple testing
  • Amplifier noise analysis
  • Low-level analogue measurements
  •  

Standard Protocol Analysis

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

41 Automatic Measurements

  • Up to ten simultaneous measurements
  • Voltage, timing, frequency, pulse and phase parameters
  • Measurement statistics
  •  

Portable Touchscreen Design

  • 7-inch capacitive touchscreen
  • 1024 × 600 resolution
  • USB Type-C power
  • HDMI external display
  • Web-based remote control
  • Approximately 1.78 kg

Core Technical Specifications

Specification RIGOL DHO802
Product series RIGOL DHO800 Series
Product type High-resolution digital oscilloscope
Analogue bandwidth 70 MHz
Analogue channels 2
External trigger input 1
Digital channels None
Built-in waveform generator No
Maximum real-time sample rate 1.25 GSa/s
Maximum memory depth 25 Mpts
Vector-mode capture rate Up to 30,000 wfms/s
UltraAcquire capture rate Up to 1,000,000 wfms/s
Maximum waveform recording Up to 500,000 frames
Native vertical resolution 12 bits
Minimum vertical sensitivity 500 µV/div
Typical rise time ≤5 ns
Peak detection Captures glitches down to 1.6 ns
Display 7-inch capacitive multi-touch
Display resolution 1024 × 600
Internal storage 8 GB

Sampling and Memory Allocation

Active Analogue Channels Maximum Sample Rate Maximum Memory
One channel 1.25 GSa/s 25 Mpts
Two channels 625 MSa/s per channel 10 Mpts per channel

 

Analogue Vertical System

Specification Details
Input coupling AC, DC or GND
Input impedance 1 MΩ ±1%
Input capacitance 15 pF ±3 pF
Vertical resolution 12 bits
Vertical sensitivity 500 µV/div to 10 V/div
Bandwidth limit 20 MHz or full bandwidth
DC gain accuracy ±1% above applicable vertical settings
Maximum input CAT I 300 Vrms, 400 Vpk
Channel isolation ≥100:1
Probe attenuation 0.001X to 50000X

 

Horizontal and Acquisition System

Specification Details
Sampling type Real-time
Time-base range 5 ns/div to 500 s/div
Time-base resolution 100 ps
Time-base accuracy ±25 ppm, ±5 ppm/year
Acquisition modes Normal, Peak Detect, Average and UltraAcquire
Average settings 2 to 65,536
Peak detection 1.6 ns
Vector capture rate 30,000 wfms/s
UltraAcquire capture rate 1,000,000 wfms/s
Waveform recording Up to 500,000 frames

 

Trigger Functions

Category Supported Functions
Basic triggers Edge, Pulse, Slope and Video
Advanced triggers Pattern, Duration, Timeout, Runt, Window, Delay, Setup/Hold and Nth Edge
Serial triggers RS232/UART, I2C, SPI and CAN
Trigger sources CH1, CH2 and EXT
Trigger modes Auto, Normal and Single
Trigger holdoff 8 ns to 10 s

 

Serial and Parallel Bus Analysis

Protocol Capability
RS232/UART Up to 20 Mb/s
I2C Address, data and ACK decoding
SPI MISO and MOSI decoding from 4 to 32 bits
CAN Up to 5 Mb/s
Parallel bus Up to four-bit decoding
Simultaneous decoding Up to four protocol types

 

Measurement and Analysis Functions

Function Capability
Automatic measurements 41 parameters
Simultaneous displayed measurements Up to 10
Cursor measurements Manual, tracking and automatic
Waveform mathematics Up to four maths functions
FFT record length Up to 1 Mpts
FFT peak search Up to 15 peaks
Histogram Horizontal, vertical and measurement
Mask testing Pass/fail waveform comparison
Digital voltmeter DC, AC RMS and AC+DC RMS
Frequency counter 3 to 6 digits
Totaliser 48-bit
Search and navigation Edge and pulse search

 

Display and Connectivity

Specification Details
Display size 7 inches
Display resolution 1024 × 600
Touch operation Capacitive multi-touch
Intensity grading 256 levels
USB Host USB 2.0
USB Device USB 2.0
LAN 10/100 Base-T
LXI LXI-C
HDMI HDMI 1.4 output
AUX output Trigger or pass/fail output
Web Control Supported
External trigger Front-panel BNC
Power input USB Type-C, 15 V DC, 3 A

 

Physical and Environmental Specifications

Specification Details
Dimensions 265.35 × 161.75 × 77.38 mm
Weight Approximately 1.78 kg without packaging
Maximum power consumption 45 W
Operating temperature 0°C to 50°C
Maximum operating altitude 3,000 m
Recommended calibration interval 18 months
Mainframe warranty Three years, excluding probes and accessories