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PicoScope 5000 Series FlexRes USB oscilloscope front view
PicoScope 5000 Series oscilloscope connection and measurement setup
PicoScope 5000 Series mixed-signal debugging workflow
PicoScope 5000 Series high-resolution waveform analysis view
PicoScope 5000 Series compact USB oscilloscope lab setup
PicoScope 5000 Series PicoScope 7 analysis and waveform display
Pico Technology PicoScope 5000 Series

PicoScope 5000 Series — FlexRes USB Oscilloscopes

Flexible-resolution USB oscilloscope family for mixed analog, digital and serial-bus debugging. The 5000 Series can operate as a fast 8-bit oscilloscope up to 1 GS/s or as a high-resolution 16-bit oscilloscope at lower sample rate, with up to 512 MS capture memory and optional MSO models.

Bandwidth
60 / 100 / 200 MHz
Resolution
8 to 16-bit FlexRes
Sample Rate
1 GS/s @ 8-bit
Memory
128–512 MS
FlexResUSB 3.02 or 4 analog channels+16 digital on MSO14-bit AWG
Model GroupBandwidthAnalog ChannelsDigital ChannelsMemory
5242D / 5442D60 MHz2 or 4128 MS
5243D / 5443D100 MHz2 or 4256 MS
5244D / 5444D200 MHz2 or 4512 MS
5242D MSO / 5442D MSO60 MHz2 or 416128 MS
5243D MSO / 5443D MSO100 MHz2 or 416256 MS
5244D MSO / 5444D MSO200 MHz2 or 416512 MS

Key Features

FlexRes Hardware Resolution

Switch between high-speed 8-bit acquisition and higher-resolution modes up to 16-bit hardware resolution, so the same instrument can handle both digital debug and low-level analog measurements.

Up to 200 MHz and 1 GS/s

The family covers 60, 100 and 200 MHz bandwidth classes, with 1 GS/s sampling at 8-bit resolution and 62.5 MS/s sampling at 16-bit resolution.

Deep 128–512 MS Capture Memory

Deep memory allows long captures at high timing resolution, segmented memory up to 10,000 segments and efficient analysis of rare events or protocol bursts.

MSO Models with 16 Digital Channels

Mixed-signal variants add 16 digital inputs, bus-style display, independent threshold control and digital triggering for analog-plus-logic debug.

Built-in 14-bit 200 MS/s AWG

All 5000D units include a 14-bit, 200 MS/s arbitrary waveform generator that can generate standard functions, imported waveforms and triggered waveform output.

USB 3.0 and Automation-ready SDK

SuperSpeed USB 3.0, compatibility with older USB standards and PicoSDK support make the series practical for portable benches, validation racks and custom measurement systems.

Specifications

ParameterUnitValue / Description
OSCILLOSCOPE
Bandwidth classesMHz60 / 100 / 200
Analog channels2 or 4, model-dependent
Digital channels16 on MSO models
Hardware resolutionbit8 to 16 FlexRes
Sampling at 8-bit resolutionGS/s1 max.
Sampling at 16-bit resolutionMS/s62.5 max.
Capture memoryMS128 / 256 / 512, model-dependent
Waveform update ratewfms/sUp to 130,000
Spectrum analyzer rangeMHzUp to 200
MIXED SIGNAL / SERIAL DEBUG
Digital threshold rangeV−5 to +5 per 8-bit input port
Serial decoding40 protocols as standard
Segmented memorysegmentsUp to 10,000
GENERATION / INTERFACE
Arbitrary waveform generatorBuilt-in, 14-bit, 200 MS/s
Function outputSine, square, triangle, DC level, white noise and PRBS
Host interfaceSuperSpeed USB 3.0; compatible with older USB standards
Streaming to hostMS/sUp to 125 using PicoSDK
Form factorCompact, fanless, portable USB oscilloscope

Applications

Analog + Digital Debug

Use analog channels, optional 16-channel logic capture and protocol decoding for MCU, FPGA, power-management and serial-interface troubleshooting.

Ripple and Control-loop Measurement

Use higher-resolution FlexRes modes and math functions to examine ripple, noise and energy-related waveforms more clearly than with basic 8-bit scopes.

Advanced Teaching Oscilloscope

One platform can demonstrate sampling rate, ADC resolution, spectrum analysis, serial decoding, AWG stimulus and mixed-signal measurement concepts.

Long Capture and Rare Event Debug

Deep memory and segmented capture help engineering teams find intermittent glitches, startup issues and sporadic communication failures.

Automated Test Systems

Use PicoSDK, USB 3.0 and compact fanless hardware to integrate repeatable measurement into validation rigs and production benches.

Low-level Signal Analysis

High-resolution acquisition modes support sensor, audio, biomedical and other low-level analog measurements where extra vertical resolution is useful.

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