Equipment - Oscilloscopes

Image Part Number Description / PDF Quantity Rfq
XDS3064EMW

XDS3064EMW

OWON Technology Lilliput Electronics

O-SCOPE 60MHZ 4 CH 1GS/S

50

XDS3104AE

XDS3104AE

OWON Technology Lilliput Electronics

O-SCOPE 100MHZ 4 CH 1GS/S

49

SDS1102

SDS1102

OWON Technology Lilliput Electronics

O-SCOPE 100MHZ 2 CH 1GS/S

21

AS101

AS101

OWON Technology Lilliput Electronics

O-SCOPE 10MHZ 1 CH 100MS/S

48

SDS5052E-V

SDS5052E-V

OWON Technology Lilliput Electronics

O-SCOPE 50MHZ 2 CH 500MS/S

49

HDS3102M-N

HDS3102M-N

OWON Technology Lilliput Electronics

O-SCOPE 100MHZ 2 CH 1GS/S

50

AS201

AS201

OWON Technology Lilliput Electronics

O-SCOPE 20MHZ 1 CH 100MS/S

50

MSO8102T

MSO8102T

OWON Technology Lilliput Electronics

O-SCOPE 100MHZ 2 CH 2GS/S

50

XDS3202AMAG21

XDS3202AMAG21

OWON Technology Lilliput Electronics

O-SCOPE 200MHZ 2 CH 1GS/S

50

XDS3202A

XDS3202A

OWON Technology Lilliput Electronics

O-SCOPE 200MHZ 2 CH 1GS/S

50

XDS3064E

XDS3064E

OWON Technology Lilliput Electronics

O-SCOPE 60MHZ 4 CH 1GS/S

49

HDS2061M-N

HDS2061M-N

OWON Technology Lilliput Electronics

O-SCOPE 60MHZ 1 CH 500MS/S

49

XDS3062A

XDS3062A

OWON Technology Lilliput Electronics

O-SCOPE 60MHZ 2 CH 1GS/S

50

HDS1022M-I

HDS1022M-I

OWON Technology Lilliput Electronics

O-SCOPE 20MHZ 2 CH 100MS/S

50

XDS3102

XDS3102

OWON Technology Lilliput Electronics

O-SCOPE 100MHZ 2 CH 1GS/S

50

SDS7072V

SDS7072V

OWON Technology Lilliput Electronics

O-SCOPE 70MHZ 2 CH 1GS/S

50

XDS3204EVMWAG21

XDS3204EVMWAG21

OWON Technology Lilliput Electronics

O-SCOPE 200MHZ 4 CH 1GS/S

50

SDS5032E-V

SDS5032E-V

OWON Technology Lilliput Electronics

O-SCOPE 30MHZ 2 CH 500MS/S

49

VDS2064L

VDS2064L

OWON Technology Lilliput Electronics

O-SCOPE 60MHZ 4 CH 1GS/S

50

XDS3102TVMW

XDS3102TVMW

OWON Technology Lilliput Electronics

O-SCOPE 100MHZ 2 CH 1GS/S

50

Equipment - Oscilloscopes

1. Overview

Oscilloscopes are electronic test instruments that graphically display varying signal voltages over time. As fundamental tools in electrical engineering, they enable visualization of waveform shapes, signal integrity analysis, and transient event detection. Modern oscilloscopes combine analog signal acquisition with digital processing to support complex measurements in R&D, manufacturing, and field service applications.

2. Main Types and Functional Classification

TypeKey FeaturesApplications
Analog OscilloscopesContinuous signal display using CRT technology, real-time waveform representationBasic signal observation in education and legacy systems
Digital Storage Oscilloscopes (DSO)Digitized waveform storage, advanced triggering, FFT analysisPCB debugging, power electronics analysis
Mixed Signal Oscilloscopes (MSO)Combines analog/digital channels, protocol decoding (I2C, SPI)Embedded system development, FPGA testing
Portable OscilloscopesBattery-powered, rugged design, USB/LAN connectivityField maintenance, industrial troubleshooting
High-Performance OscilloscopesMulti-GHz bandwidth, deep memory, differential probing5G communication testing, high-speed serial buses

3. Structure and Components

Typical oscilloscope architecture includes: - Display Unit: LCD/TFT screen with measurement annotations - Vertical System: Attenuators and amplifiers for signal scaling - Trigger System: Synchronization circuitry for waveform stability - Data Acquisition: ADC converters (8-16 bit resolution) - Processing Unit: FPGA/DSP for waveform analysis - Connectivity Ports: USB, Ethernet, GPIB for data transfer

4. Key Technical Specifications

ParameterDescriptionImportance
BandwidthFrequency range (-3dB point)Determines maximum measurable signal frequency
Sample RateSamples per second (MS/s, GS/s)Affects timing resolution and aliasing prevention
Vertical ResolutionADC bit depthInfluences amplitude measurement accuracy
Memory DepthWaveform storage capacityEnables long-duration signal capture at high sampling rates
Rise TimeFastest detectable transition speedCritical for digital signal edge analysis

5. Application Fields

  • Electronics Manufacturing: PCB fault diagnosis using signal integrity analysis
  • Telecommunications: 5G NR signal measurement with 800MHz+ bandwidth scopes
  • Automotive: CAN bus protocol decoding in ECU development
  • Academia: Student laboratory signal characterization
  • Aerospace: Avionics signal verification under MIL-STD standards

6. Leading Manufacturers and Products

ManufacturerKey Product SeriesSpecifications
Keysight TechnologiesInfiniium MXR-Series500MHz-8GHz bandwidth, 10-bit resolution
Teledyne LeCroyWaveMaster 8Zi-B4GHz bandwidth, 20GS/s sampling rate
Rohde & SchwarzRTO66GHz bandwidth, 15-bit vertical resolution
FlukeScopeMeter 190-502500MHz, CAT IV 600V safety rating
NI (National Instruments)SCOPE PXIe-51861GHz bandwidth, 15GS/s with FPGA processing

7. Selection Guidelines

Key considerations include: - Bandwidth requirement (5 target signal frequency) - Channel count (4 analog + 16 digital for MSO applications) - Sampling rate ( 2 bandwidth for accurate reconstruction) - Probing compatibility (differential/single-ended, voltage range) - Software features (mask testing, compliance automation) - Budget constraints (entry-level: $1k-$5k, high-end: $50k+)

8. Industry Trends

Emerging developments include: - Integration of AI/ML for anomaly detection in signal patterns - Modular oscilloscopes with customizable FPGA processing - Real-time spectrum analysis combining time/frequency domains - USB-powered pocket scopes with smartphone integration - Enhanced protocol decoding support for emerging standards (PCIe 6.0, USB4)

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