The Teledyne LeCroy HVD3106A-6M Active Probes & Differential Probe is part of the Teledyne range of test and measurement applications instruments, built for test and measurement applications in the field or laboratory. Highlights: leCroy HVD3106A-6M Differential Probe.
- Features and Specifications:
- Teledyne LeCroy HVD3106A-6M Differential Probe Product Overview:
- The Teledyne
- LeCroy HVD3106A-6M is a high-voltage differential probe designed for precise measurements in high-power electronics applications
- With its wide bandwidth and high input voltage range, it enables accurate analysis of fast-changing signals in power converters, motor drives, and other industrial systems
- High Input Voltage Range:
- 1 kV differential, ±2 kV common mode Wide Bandwidth:
- 80 MHz Auto Zero:
- Automatic offset correction for enhanced accuracy 6m Cable:
- Long cable length for convenient measurements in large systems HVD3000A Series Compatibility:
- Compatible with all HVD3000A series probes for versatile use Specifications:
- Input Impedance:
- 10 MΩ || 10 pF CMRR:
- 100 dB at 50 Hz Input Offset Voltage:
- 10 mV Rise Time:
- 5 ns Maximum Input Current:
- 10 mA Operating Temperature:
- 0°C to 50°C What’s in the Box:
- HVD3106A-6M Differential Probe Ground Lead Probe Tip User Manual Benefits:
- Accurate Measurements:
- High input voltage range and wide bandwidth ensure precise signal capture in high-power environments
- Convenient Operation:
- Auto zero feature simplifies setup and eliminates offset errors
- Versatile Use:
- Compatibility with HVD3000A series probes allows for easy integration into existing measurement systems
- Enhanced Safety:
- High input voltage range and long cable length provide safe and convenient measurements in hazardous environments
- Value to the Customer:
- The Teledyne LeCroy HVD3106A-6M Differential
- Probe empowers engineers with the ability to perform accurate and reliable measurements in high-voltage applications
- Its advanced features and ease of use make it an indispensable tool for troubleshooting, design verification, and performance analysis in power electronics systems





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