MSO5000 Series Digital Oscilloscope Analog bandwidth: 350 MHz, 200 MHz, 100 MHz, and 70 MHz; bandwidth upgrade option supported 2 or 4 analog channels (upgradable), standard 16 digital channels(LA probe required) Up to 8 GSa/s real-time sample rate Up to 200 Mpts memory depth (option) High waveform capture rate (over 500,000 wfm/s) Auto measurement of 41 waveform parameters; full-memory hardware measurement function A variety of serial protocol triggers and decodes Up to 450,000 frames of hardware real-tim
MSO5000Series Digital Oscilloscope 2 RIGOL
RIGOL
Small Body, Big Use The innovative physical appearance of the instrument and the thin design in both sides of the instrument not only make its LCD display prominent but also keeps its shape delicate, making it portable and easy to operate.
Overview of RIGOL's Medium-end Series Products MSO/DS2000A MSO/DS4000 MSO5000 DS6000 MSO/DS7000 2+16 4+16 2/4+16 4 4+16 70 MHz to 300 MHz 2 GSa/s 100 MHz to 500 MHz 4 GSa/s 600 MHz to 1 GHz 5 GSa/s 56 Mpts (optional) 140 Mpts 70 MHz to 350 MHz 8 GSa/s 200 Mpts (optional) 100 MHz to 500 MHz 10 GSa/s 500 Mpts (optional) > 52,000 wfms/s > 110,000 wfms/s >500,000 wfms/s > 180,000 wfms/s > 600,000 wfms/s 65,000 200,000 450,000 200,000 450,000 8'' 9'' 9'' capacitive multi-touch scree
Design Features 7-into-1 Integrated Digital Oscilloscope In today's integrated design field, a highly integrated comprehensive digital oscilloscope has become a useful tool for design engineers.
4.Arbitrary Waveform Generator (Option) ·Standard configuration of 2 waveforms output channels for the hardware, and only AWG option is required to be ordered ·13 pre-defined waveforms ·Up to 25 MHz frequency ·Up to 200 MSa/s sample rate ·Advanced modulation, sweep, and burst signal output supported 5.
Super High Sample Bandwidth Ratio Bandwidth and the sample rate are two key technical specifications that engineers take priority in choosing the digital oscilloscope. Bandwidth determines the maximum frequency that the oscilloscope can acquire. The higher the bandwidth of the oscilloscope, the better the oscilloscope can keep the steep, fast, abundant harmonics components and energies of the signal under test.
Hardware Full Memory Auto Measurement The auto measurement is the basic tool for engineers to make a rapid analysis of the signals, and it requires more efficient measurement process and accurate measurement results. MSO5000 supports hardware full memory auto measurement, provides measurements of 41 waveform parameters, supports displaying the statistics and analysis of the measurement results for 10 items.
Hardware Waveform Recording and Playback The memory depth is one of the key specifications of the The MSO5000 series provides ceaseless recording and oscilloscope. However, whatever high the memory depth, playback for a maximum of 450,000 frames of hardware it cannot be guaranteed that all the signals that users are real-time waveforms. This specification is second to concerned about can be captured in one time. This is none in the industry.
Hardware Pass/Fail Test The MSO5000 series is equipped with hardware pass/fail test function as the standard configuration, which can be used in signal monitoring for a long time, signal monitoring during design, and signal test in the production line. You can set the test mask based on the known "standard" waveform, and then compare the signal under test with the "standard" waveform to display the statistics on the test results.
A Variety of Triggers and Protocol Decodings MSO5000 series digital oscilloscope provides powerful trigger functions, including Edge trigger, Pulse trigger, Slope trigger, Video trigger, Pattern trigger, Duration trigger, Timeout trigger, Runt trigger, Window trigger, Delay trigger, Setup/Hold trigger, Nth Edge trigger, and serial protocol trigger. These triggers can help engineers accurately and quickly capture and identify the signals of great interest.
Power Analysis (Option) To cater to the increasing test demand for the switch power supply and the power component, we configure the MSO5000 series with the optional built-in power analysis software. The current power analysis software can complete the power quality analysis and ripple analysis. The power analysis software can help engineers analyze the commonly used power parameters rapidly and accurately, without needing to make tedious configurations manually or do complicated formula calculation.
Remote Wireless Control Software The Web Control software is a standard configuration for the control in the software are consistent with that in the MSO5000 series. You can use the software to migrate the MSO5000 series. You can use the mouse to tap the keys instrument control and waveform analysis to the PC, and then or knobs in the Web Control interface to complete the click the mouse to operate easily. waveform control, measurement, and analysis.
User-defined One-key Quick Operation There is a dedicated Quick key on the front panel of the MSO5000 series, enabling you to customize the function of the key and complete the commonly used operation quickly. With the customized setting of the Quick key, you can quickly capture the screen image, realize waveform saving, setup saving, all measurement, reset measurement statistics, reset pass/fail test statistics, printing, email sending, waveform recording, group saving, and etc.
RIGOL Probes and Accessories Supported by the MSO5000 Series ·RIGOL Passive Probes Model Type Highimpedance Probe Description Model Highvoltage Probe 1X: DC ~ 35 MHz 10X: DC ~ 150 MHz Compatibility: All models of RIGOL's digital oscilloscopes RP1010H PVP2150 1X: DC ~ 35 MHz 10X: DC ~ 350 MHz Highimpedance Compatibility: All models of RIGOL's digital Probe oscilloscopes Highimpedance Probe DC ~ 500 MHz Compatibility: All models of RIGOL's digital oscilloscopes RP3500A Highvoltage Probe 16 RIGOL
·RIGOL Active and Current Probes Model Type Current Probe RP1001C Description BW: DC ~ 300 kHz Maximum Input DC: ±100 A AC P-P: 200 A AC RMS: 70 A Compatibility: All models of RIGOL's digital oscilloscopes Type Description Power Supply Power supply for RP1003C, RP1004C, and RP1005C; supporting 4 channels. Highvoltage Differential Probe BW: 25 MHz Max. voltage ≤ 1400 Vpp Compatibility: All models of RIGOL's digital oscilloscopes Highvoltage Differential Probe BW: 50 MHz Max.
Specifications All the specifications are guaranteed except the parameters marked with "Typical" and the oscilloscope needs to operate for more than 30 minutes under the specified operation temperature. Overview of the MSO5000 Series Technical Specifications Model Analog Bandwidth Rising Time (typical) No. of Input/Output Channels Sampling Mode Max. Sample Rate of Analog Channel Max. Memory Depth Max.
Input Impedance Probe Load Vertical Resolution About 101 kΩ ≈8 pF 1 bits Horizontal System--Analog Channel Horizontal System--Analog Channel 70 MHz 100 MHz 200 MHz 350 MHz Range of Time Base 5 ns/div~1 ks/div 5 ns/div~1 ks/div 2 ns/div~1 ks/div 1 ns/div~1 ks/div Support fine adjustment Time Base Resolution 10 ps Time Base Accuracy ±10 ppm ± 10 ppm/year before ≥1/2 screen width triggering Time Base Delay Range after 1 s to 100 div triggering Time Interval (△T) ±(1 sample interval) ± (2 ppm×readout)±50 ps
Trigger Type Trigger Type Zone Trigger Trigger Type Edge Pulse Slope Video Pattern Duration Timeout Runt Window Delay Setup/Hold Nth Edge RS232/UART (Option) I2C (Option) SPI (Option) CAN (Option) FlexRay (Option) LIN (Option) I2S (Option) 20 RIGOL Trigger in the rectangle area drawn manually, supporting trigger zone A and trigger zone B.
MIL-STD-1553 (Option) MSO5000-AERO option Trigger on the sync (Data Sync, Cmd Sync, and All Sync) field, Data word, command word, status word, and Error (Sync Error and Check Error) of the MIL-STD-1553 bus. Source channel: CH1~CH4 Search&Navigation Search, Navigation, and Table Type Edge, Pulse, Runt, Slope, RS232, I2C, and SPI Source Any analog channel Copy Copy the search settings to the trigger settings, and copy from the trigger settings Result Display Event table or navigation.
Waveform Analysis Waveform Analysis Waveform Recording Store the signal under test in segments according to the trigger events, i.g. save all the sampled waveform data as a segment to the RAM for each trigger event. The maximum number of the sampled segments reaches 450,000.
Auto Auto AutoScale Min voltage greater than 5 mVpp, duty cycle 1%, frequency over 35 Hz Arbitrary Waveform Generator Arbitrary Waveform Generator (technical specifications are typical values) (option) Number of 2 Channels Output Mode Normal (2-channel output) Sample Rate Vertical Resolution Max. Frequency Standard Waveform Built-in Waveform Sine 200 MSa/s 14 bits 25 MHz Sine, Square, Ramp, Pulse, DC, Noise Sinc, Exp.Rise, Exp.
AM, FM, FSK Modulating Waveforms: Sine, Square, Triangle, and Noise. AM Modulation Frequency: 1 Hz to 50 kHz Modulation Depth: 0% to 120% Modulating Waveforms: Sine, Square, Triangle, and Noise. Modulation FM Modulation Frequency: 1 Hz to 50 kHz Modulation Offset: 1 Hz to carrier frequency Modulating Waveforms: 50% duty cycle square FSK Modulation Frequency: 1 Hz to 50 kHz Hopping Frequency: 100 mHz to max.
Command Set Command Set Common Commands Support IEEE488.
Regulations Regulations Electromagnetic Compatibility Safety Vibration Shock Compliant with EMC DIRECTIVE 2014/30/EU, compliant with or higher than the standards specified in IEC 613261:2013/EN 61326-1:2013 Group 1 Class A CISPR 11/EN 55011 IEC 61000-4-2:2008/EN 61000-4-2 ±4.0 kV (contact discharge), ±8.0 kV (air discharge) 3 V/m (80 MHz to 1 GHz); 3 V/m (1.4 GHz to 2 GHz); 1 V/m (2.0 GHz to 2.7 IEC 61000-4-3:2002/EN 61000-4-3 GHz) IEC 61000-4-4:2004/EN 61000-4-4 1 kV power line 0.
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