Test Leads - Oscilloscope Probes

Image Part Number Description / PDF Quantity Rfq
GE3121

GE3121

Cal Test Electronics

OSCOPE PROBE X100 150MHZ 100M

6

CT4121

CT4121

Cal Test Electronics

OSCOPE PROBE X10 1.2GHZ 1M

3

CT4207

CT4207

Cal Test Electronics

OPROBE 700MHZ 10X 1MO 1.3M 2.5MM

12

CT2676A

CT2676A

Cal Test Electronics

OSCOPE PROBE X10 100MHZ 10M

8

CT2703

CT2703

Cal Test Electronics

OSCOPE PROBE X1/X10 60MHZ 1M/10M

28

CT4202

CT4202

Cal Test Electronics

OPROBE 350MHZ 10X 1MO 1.3M 2.5MM

10

CT4205

CT4205

Cal Test Electronics

OPROBE 500MHZ 20X 1MO 1.3M 2.5MM

7

CT2593-1

CT2593-1

Cal Test Electronics

OSCOPE PROBE X20/X200 25MHZ 4M

0

GE3125

GE3125

Cal Test Electronics

OSCOPE PROBE X100 150MHZ 100M

1

GE3422

GE3422

Cal Test Electronics

OSCOPE PROBE X100 100MHZ 100M

0

CT2982B

CT2982B

Cal Test Electronics

OSCOPE PROBE X1K 40MHZ 100M

17

GE3225

GE3225

Cal Test Electronics

OSCOPE PROBE X100 200MHZ 100M

21

GE3231

GE3231

Cal Test Electronics

OSCOPE PROBE X100 200MHZ 100M

1

CT2593-2

CT2593-2

Cal Test Electronics

OSCOPE PROBE X10/X100 25MHZ 4M

0

CT2841A

CT2841A

Cal Test Electronics

OSCOPE PRB X1/X10 350MHZ 1M/10M

8

CT2677ARA

CT2677ARA

Cal Test Electronics

OSCOPE PROBE X10 200MHZ 10M

0

CT2677A

CT2677A

Cal Test Electronics

OSCOPE PROBE X10 200MHZ 10M

0

GE4521

GE4521

Cal Test Electronics

OSCOPE PROBE X10 480MHZ 10M

0

CT3681

CT3681

Cal Test Electronics

OSCOPE PROBE X100/X1K 70MHZ 10M

1

GE1512RA

GE1512RA

Cal Test Electronics

OSCOPE PROBE X10 135MHZ 10M

0

Test Leads - Oscilloscope Probes

1. Overview

Oscilloscope probes and test leads are critical interface components between electronic circuits under test and measurement instruments. They ensure accurate signal transmission while minimizing circuit loading effects. These probes convert physical electrical signals into measurable waveforms, enabling engineers to analyze voltage, current, timing, and signal integrity in real time. Their importance in modern electronics spans from R&D validation to field service diagnostics.

2. Main Types and Functional Classification

TypeFunctional CharacteristicsApplication Examples
Passive Voltage ProbesHigh impedance (10M ), 1:1 or 10:1 attenuation, no power requiredBasic circuit troubleshooting, education labs
Active Voltage ProbesPowered design, 50k impedance, 1:1 attenuation, high bandwidth (>1GHz)High-speed digital circuits, RF testing
Current ProbesNon-invasive measurement via Hall effect or current transformerSwitching power supplies, motor drives
Differential ProbesMeasure voltage between two points, reject common-mode noiseHigh-voltage floating measurements, balanced circuits
Logic ProbesDigital signal detection with threshold indicatorsDigital circuit debugging, embedded systems

3. Structure and Components

Typical probe construction includes: - Probe tip (spring-loaded or solderable contact) - Ground lead (short/adjustable length) - Coaxial cable (50 or 75 shielded) - Compensation network (variable capacitor for frequency response adjustment) - BNC/SMA interface (50 matched connector) - Attenuation switch (for 1x/10x selection) - Probe head (ergonomic design with overvoltage protection)

4. Key Technical Specifications

ParameterDescriptionImportance
BandwidthFrequency range (-3dB point)Determines signal fidelity for high-speed transitions
Input ImpedanceResistance and capacitance presented to DUTAffects circuit loading (typically 10M //15pF)
Attenuation RatioSignal scaling factor (e.g., 10:1)Extends measurement range while maintaining impedance
Rise TimeFastest measurable edge (10-90%)Essential for digital signal analysis
Parasitic CapacitanceTip capacitance (<1pF for active probes)Impacts high-frequency measurement accuracy
CMRRCommon-mode rejection ratioCritical for differential signal integrity

5. Application Areas

  • Electronics Manufacturing (PCB testing, component validation)
  • Automotive Electronics (ECU analysis, CAN bus troubleshooting)
  • Telecommunications (5G signal analysis, fiber optic transceivers)
  • Medical Equipment (ECG machine diagnostics, imaging system validation)
  • Education & Research (University labs, prototype development)

6. Leading Manufacturers & Products

ManufacturerRepresentative ProductKey Specifications
TektronixP6139B500MHz, 10:1 passive probe, 10M impedance
KeysightN2790A2GHz active differential probe, 50k input
Flukei410scAC/DC current probe, 1500A range, 100kHz bandwidth
Rohde & SchwarzRTH-HDO441GHz bandwidth, 4-channel logic probe
SiglentSP2020200MHz passive probe, 10M , 10:1 attenuation

7. Selection Guidelines

Key considerations include: - Bandwidth matching (3-5 signal frequency) - Impedance compatibility (10M for general use, 50 for high-speed) - Signal type (voltage/current/differential) - Environmental factors (temperature, vibration) - Safety ratings (CAT II/III for industrial environments) - Cost vs. performance trade-offs

8. Industry Trends

Current trends include: - Development of 10GHz+ bandwidth active probes - Integration with AI-based signal integrity analysis - Wireless probe systems for hazardous environments - Enhanced EMI shielding for 5G/mmWave testing - Standardization of probe calibration procedures (ISO/IEC 17025) - Miniaturization for high-density PCB measurements

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