The RIGOL DS1074Z-S Plus Digital Oscilloscope combines oscilloscope, signal-generation and mixed-signal analysis capabilities in one compact benchtop platform.
It provides:
- Four analogue oscilloscope channels
- 70 MHz analogue bandwidth
- Two built-in waveform-generator channels
- Up to 16 optional digital channels
- Up to 1 GSa/s real-time analogue sampling
- Up to 24 Mpts acquisition memory
- Up to 30,000 waveforms per second
- Up to 60,000 recorded waveform frames
- Serial protocol triggering and decoding
- FFT, waveform mathematics and mask testing
- A 7-inch WVGA colour display
The built-in signal source distinguishes the DS1074Z-S Plus from the standard DS1074Z Plus. Engineers can generate a test waveform, apply it to a circuit and observe the resulting analogue or digital response without connecting a separate function generator.
70 MHz Analogue Bandwidth
The DS1074Z-S Plus provides 70 MHz bandwidth across four analogue input channels. Its calculated rise time is approximately 5 ns.
It is suitable for analysing:
- Microcontroller clock and control signals
- PWM waveforms
- Sensor and actuator outputs
- Analogue amplifier signals
- Power-supply ripple
- Switching regulator control signals
- Audio and control circuits
- Embedded communication interfaces
- Timing and phase relationships
- Input and output waveform behaviour
The complete measurement bandwidth depends on the oscilloscope, probe bandwidth, grounding method, signal connection and source impedance.
Four Analogue Input Channels
The four-channel architecture allows engineers to monitor several related signals at the same time.
Typical four-channel measurements include:
- Clock, data and enable signals
- Input and output waveforms
- Voltage and current relationships
- Multiple power rails
- Sensor output and controller response
- High-side and low-side control signals
- Multi-stage power-up sequences
- Phase and timing comparison
This configuration is useful when a fault involves several circuit sections or when signal relationships must be observed simultaneously.
Optional 16-Channel Logic Analysis
The Plus-series digital interface supports up to 16 digital input channels when the optional RIGOL RPL1116 logic probe is connected.
The mixed-signal configuration supports:
- Microcontroller GPIO debugging
- FPGA and CPLD testing
- Parallel bus analysis
- Clock and data timing measurements
- Digital control-system troubleshooting
- Time-correlated analogue and digital display
- Triggering across analogue and digital channels
- Configurable logic thresholds
Digital sampling performance is:
- Up to 1 GSa/s with eight digital channels
- Up to 500 MSa/s with all 16 digital channels
Digital memory depth is:
- Up to 24 Mpts with eight digital channels
- Up to 12 Mpts with all 16 digital channels
The RPL1116 probe should be listed separately unless its inclusion is confirmed in the RevineTech quotation.
Channel-Dependent Analogue Sampling
The DS1074Z-S Plus provides a maximum real-time analogue sample rate of 1 GSa/s.
Sampling allocation is:
- 1 GSa/s with one active analogue channel
- 500 MSa/s per channel with two active analogue channels
- 250 MSa/s per channel with three or four active analogue channels
Engineers should consider this allocation when measuring faster signals across several channels simultaneously.
Deep Acquisition Memory
The oscilloscope provides up to 24 Mpts analogue memory depth.
Memory allocation is:
- 24 Mpts with one active analogue channel
- 12 Mpts per channel with two active analogue channels
- 6 Mpts per channel with three or four active analogue channels
Deep memory allows longer signal captures while retaining useful sample resolution.
It is beneficial for:
- Long serial communication packets
- Power-supply start-up sequences
- PWM and pulse-train analysis
- Embedded-system timing measurements
- Intermittent fault investigation
- Extended waveform monitoring
- Production validation
- Long control sequences
Search and navigation functions help users locate specific events within long acquisitions.
Built-In Dual-Channel 25 MHz Waveform Generator
The DS1074Z-S Plus includes two function and arbitrary waveform-generator channels.
Generator performance includes:
- Two independent output channels
- 200 MSa/s generator sample rate
- 14-bit vertical resolution
- Maximum sine-wave frequency of 25 MHz
- Standard and arbitrary waveform generation
- Independent amplitude and offset settings
- AM and FM modulation
- High-impedance and 50 Ω load settings
The integrated source can be used for:
- Amplifier testing
- Filter evaluation
- Sensor simulation
- Clock generation
- Pulse generation
- Circuit-response analysis
- Component testing
- Educational experiments
- Embedded-system development
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Standard and Arbitrary Waveforms
The built-in source supports:
- Sine
- Square
- Pulse
- Ramp
- Noise
- DC
Available built-in arbitrary waveforms include:
- Sinc
- Exponential rise
- Exponential fall
- ECG
- Gaussian
- Haversine
Arbitrary waveform length ranges from 2 to 16k points.
Maximum waveform frequencies include:
- Sine: 25 MHz
- Square: 15 MHz
- Pulse: 1 MHz
- Ramp: 100 kHz
- Built-in waveforms: 1 MHz
- Arbitrary waveforms: 10 MHz
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Generator Output Range
The signal source provides:
- 20 mVpp to 5 Vpp into a high-impedance load
- 10 mVpp to 2.5 Vpp into a 50 Ω load
- DC offset up to ±2.5 V into High-Z
- DC offset up to ±1.25 V into 50 Ω
Output amplitude, offset and load settings must be configured correctly to avoid signal-level errors.
Fast Waveform Capture
The DS1074Z-S Plus provides a maximum waveform capture rate of up to 30,000 waveforms per second in dots-display mode.
Fast acquisition improves the probability of detecting:
- Short glitches
- Runt pulses
- Timing violations
- Signal dropouts
- Unstable waveform edges
- Abnormal pulse widths
- Intermittent noise
- Communication faults
The intensity-graded display uses up to 256 levels to distinguish frequent waveform activity from rare events.
Hardware Waveform Recording
The oscilloscope supports hardware waveform recording and playback for up to 60,000 frames.
This function allows users to:
- Record successive signal events
- Replay captured waveforms
- Review frames individually
- Compare normal and abnormal events
- Investigate intermittent faults
- Examine events preceding a failure
- Perform post-acquisition measurements
Waveform recording is useful when a problem occurs only occasionally or after an extended operating period.
Trigger Functions
The DS1074Z-S Plus provides multiple trigger modes for isolating specific waveform conditions.
Trigger functions include:
- Edge
- Pulse width
- Slope
- Video
- Pattern
- Duration
- Timeout
- Runt
- Window
- Delay
- Setup and hold
- Nth edge
These triggers help engineers locate narrow pulses, missing transitions, timing errors, abnormal voltage levels and unstable waveform behaviour.
Serial Bus Triggering and Decoding
The oscilloscope supports serial protocol analysis for common embedded communication interfaces.
Supported protocols include:
Protocol decoding displays communication data together with the physical waveform.
This helps identify:
- Missing acknowledgements
- Incorrect data
- Timing errors
- Communication interruptions
- Voltage-level problems
- Electrical noise
- Physical-layer faults
Installed protocol functions and licence status should be confirmed on the supplied instrument before publication.
Automatic Measurements
The oscilloscope supports automatic measurement of common voltage, timing and frequency parameters.
Measurements 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
- Phase
- Delay
Measurement statistics help users monitor minimum, maximum, average and standard deviation values over repeated acquisitions.
FFT and Waveform Mathematics
Available waveform-analysis functions include:
- Addition
- Subtraction
- Multiplication
- Division
- FFT
- Digital filtering
- Integration
- Differentiation
- Logical waveform operations
FFT analysis can be used for:
- Harmonic measurement
- Switching-frequency analysis
- Noise investigation
- Clock-spectrum observation
- EMI troubleshooting
- Detection of unwanted oscillations
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Mask and Pass/Fail Testing
Mask testing compares acquired waveforms with user-defined tolerance limits.
It supports:
- Production-line validation
- Repetitive quality checks
- Signal-stability monitoring
- Component comparison
- Detection of waveform deviations
- Basic automated testing
The AUX output can provide trigger or pass/fail signalling to external equipment.
Display and Connectivity
The DS1074Z-S Plus uses a 7-inch WVGA TFT colour display with 800 × 480 resolution.
Display and interface features include:
- Up to 256 waveform intensity levels
- Dots and vector display modes
- Adjustable persistence
- Y-T, X-Y and Roll modes
- Multi-channel waveform display
- Dedicated front-panel controls
- USB Host
- USB Device
- LAN
- LXI
- AUX output
- Optional USB-to-GPIB connectivity
HDMI output is not listed for this model.
Applications
The RIGOL DS1074Z-S Plus is suitable for:
- Embedded-system development
- Microcontroller debugging
- FPGA and CPLD testing
- Mixed-signal circuit analysis
- Function-generator applications
- Amplifier and filter testing
- Sensor simulation
- Analogue circuit testing
- Digital logic analysis
- Parallel bus debugging
- Serial protocol testing
- Power-supply analysis
- PWM signal testing
- Production-line inspection
- Research and development
- Engineering education
- Electronic service and repair
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Why Buy from RevineTech?
RevineTech supplies test and measurement instruments for electronics development, research, production, education and industrial testing.
Technical product-selection support can include:
- DS1074Z-S Plus configuration
- RPL1116 logic-probe selection
- Protocol-function verification
- Passive and differential probes
- High-voltage probes
- Current probes
- Calibration requirements
- USB-to-GPIB connectivity
- Automated test integration