Putting Innovation to the Test

Test Chambers built by engineers, for engineers

Putting Innovation to the Test

Test Chambers built by engineers, for engineers

Putting Innovation to the Test

Test Chambers built by engineers, for engineers

Products

SAVE 56%
MXO 3 Oscilloscope Bundle

MXO 3 Oscilloscope Bundle

► Rohde & Schwarz MXO34-BNDL ► Oscilloscope Bundle, 4 Analog Channels, 1 GHz bandwidth

£15,026.44 (Excl. VAT)
SAVE 46%
MXO 3 Oscilloscope Bundle

MXO 3 Oscilloscope Bundle

► Rohde & Schwarz MXO38-BNDL ► Oscilloscope Bundle, 8 Analog Channels, 1 GHz bandwidth

£26,696.52 (Excl. VAT)
SAVE 51%
MXO 4 Oscilloscope Bundle

MXO 4 Oscilloscope Bundle

► Rohde & Schwarz MXO44-BNDL ► Oscilloscope Bundle, 4 Analog Channels, 1.5 GHz bandwidth, 800 Mpoints memory

£24,141.32 (Excl. VAT)

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Easy to Use Interface

Discover the intuitive design and user-friendly features of our high-precision power supplies. This video highlights the transformation of intricate operations into simple, streamlined tasks, enhancing the overall user experience.

High Speed Logging

Explore the realm of rapid and efficient data logging. This video showcases the remarkable speed and precision of our logging features, guaranteeing that you stay on top of your measurements and monitoring tasks without missing a single detail.

Fast Load Recovery

Gain insight into the importance of rapid load recovery with R&S high-precision power supplies. Watch as they stand ready to swiftly bounce back from disruptions, ensuring minimal downtime and seamless workflow continuity for your operations.

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What makes a Rohde & Schwarz oscilloscope a favourite among engineers?

  • Versatile Oscilloscope Portfolio: Ranging from 60 MHz to 16 GHz, our latest oscilloscope portfolio provides engineers with the flexibility needed to address a diverse range of applications.

  • In-house Developed ASICs: Our in-house Application-Specific Integrated Circuits (ASICs) ensure the creation of the world’s most responsive oscilloscopes, offering engineers unparalleled speed and efficiency in signal analysis.

  • Frontend Technology for Signal Integrity: The forefront of technology development in our oscilloscopes guarantees pristine signal integrity. Engineers can trust that the captured signals accurately represent the original waveform.

  • High-Resolution 18-bit Architecture with HD Mode: Boasting an 18-bit architecture with HD mode, our oscilloscopes deliver the highest resolution, enabling engineers to capture and analyse intricate details crucial for precise measurements.

  • Digital Triggers for Sensitive Event Isolation: Our oscilloscopes feature digital triggers, ensuring the most sensitive event isolation in the world. Engineers can capture and analyse even the most elusive events with confidence.

  • Superior User Interface and Workflow Streamlining: The superior user interface and front panel design streamline workflows for engineers, enhancing overall usability and productivity during testing and analysis.

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  • 01

    Evolution in Speed

    Engineers can gather data faster and make quicker, more informed decisions with the swift 21 ns rearm and seamless measurements offered by multiple channels and math functions.

  • 02

    Comprehensive Spectrum Analysis

    Engineers can conduct rapid and precise spectrum analysis, running up to four analyses simultaneously for enhanced efficiency.

  • 03

    Extensive Memory Capacity

    Gain from extensive data storage with the deepest standard memory and up to 1 million waveform segments for comprehensive analysis.

  • 04

    Precise in-event Detection

    Achieve flawless digital triggering with 18-bit HD resolution and adjustable sensitivity, ensuring accurate triggering in your applications.

  • 05

    Performance

    Experience exceptional signal fidelity with a low noise floor and the industry's highest vertical offset range of ±5 V at 0.5 mV/div.

  • 06

    Setting New Sensitivity Standards

    Achieve the industry's most sensitive trigger, reaching down to 0.0001 div.

FAQ

Frequently Asked Questions

Measurement instruments are usually calibrated annually, people/companies do this because it is easy to schedule. This may not necessarily be the best approach to take, most test instruments will drift over time, the newer the instrument the more frequently it needs to be calibrated, until its ability to reproduce measurements over a period of time has been established and is well understood. A user might estimate a suitable recalibration frequency, based on previous experience of similar instruments used in similar environments, but it is only when the actual data from a series of successive calibrations of a particular instrument has been properly analysed that a meaningful recalibration frequency can be determined for that particular instrument.

To provide confidence in the validity of the test equipment calibration results they must be traceable. This means the results on the instrument(s) calibration certificate need to be traceable to the standard used, and the results on the certificate for the standard are in turn traceable to the standard used for its calibration.

Not necessarily, but if your test equipment isn’t measuring accurately then you won’t receive correct measurement readings. Calibrations can be costly and that is one of the main factors when it comes to deciding not to calibrate your instrument(s). However, there can be even bigger costs when it comes to using an un-calibrated instrument such as product re-calls, how does the cost of a product recall stack up against the cost of calibrating an instrument(s). 

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