The R&S® RTC1000 digital oscilloscopes from the Rohde & Schwarz test and measurement product range feature a high waveform update rate, high vertical sensitivity and are available with bandwidths from 50MHz to 300MHz. Depending on the specific model, the oscilloscope offers a maximum memory depth of 2 Msa and a sampling rate of 2 GSa/s.
All R&S® RTC1000 oscilloscopes include mixed-signal functionality as standard, and the R&S® RTC-B1 logic probe is available separately for use with all models.
The analysis of communications between embedded systems is supported by hardware-based signal triggering and decoding for all common protocols (I2C, SPI, UART, CAN and LIN). This option can be activated with an upgrade voucher at any time, even after the sale has been completed.
The integrated pattern generator is capable of generating protocol messages at speeds of up to 50 Mbit/s, making it an ideal solution for embedded users. In addition to utilising predefined messages for supported serial protocols, developers have the capability to program their own signal patterns. The integrated, three-digit digital voltmeter is a particularly useful tool for service technicians. The R&S® RTC-BNDL is able to perform voltage measurements on both analogue channels simultaneously, with two values on each channel. A function generator for different types of signals with frequencies up to 50 kHz is an invaluable tool in educational settings. These fundamental principles can be utilised by trainees and students to acquire a comprehensive understanding of a wide variety of measurements. Convenience functions can be disabled in education mode.
The R&S® RTC-BNDL is equipped with a powerful FFT over 128,000 test points and analysis functions in the frequency domain, enabling it to compete with significantly larger oscilloscopes. The time domain signal, measurement window, FFT analysis range and measurement result are displayed on a single screen, facilitating the measurement of spectra.
The R&S® RTC-BNDL is a cutting-edge oscilloscope from Rohde & Schwarz that offers time domain, logic, protocol and frequency analysis in a single instrument.
Model | RTC1000 |
---|---|
Channels | 2 |
Bandwidth | 50 MHz - 300 MHz |
Sample Rate | 2 GSa/s |
Memory | 2 Mpts |
Waveform / Pattern Generator Option | |
Logic Analyzer Option |
You will find the specifications of the RTC1000 series here.
RTC1000 Bandwidth + MSO Sets | Bandwidth | Logic Analyzer |
---|---|---|
RTC1K-52 | 50 MHz (upgradable) | Option |
RTC1K-52M | 50 MHz (upgradable) | |
RTC1K-72 | 70 MHz (upgradable) | Option |
RTC1K-72M | 70 MHz (upgradable) | |
RTC1K-102 | 100 MHz (upgradable) | Option |
RTC1K-102M | 100 MHz (upgradable) | |
RTC1K-202 | 200 MHz (upgradable) | Option |
RTC1K-202M | 200 MHz (upgradable) | |
RTC1K-302 | 300 MHz | Option |
RTC1K-302M | 300 MHz |
Are you working in a distributed project, and the interface definition has been completed but the prototype hardware has yet to be implemented? The pattern generator includes a tool for user programmable 4-bit bus signals that allows you, for example, to emulate a sensor signal in order to continue your work.
The three-digit digital voltmeter is another standard feature that is particularly useful for service technicians. Voltage measurements can be performed simultaneously for both analog channels. Integrated into a single compact device, it helps you keep your workplace tidy.
R&S® RTC1000 Series oscilloscopes provides high sensitivity and multifunctionality to a great price. Multi functionality offers time domain, logic analyzer, protocol analyzer, frequency analysis, pattern generator, waveform generator and digital voltmeter.
Protocols such as I²C, SPI and CAN/LIN frequently transfer control messages between integrated circuits. The R&S®RTC1000 has versatile options for protocol-specific triggering and decoding of serial interfaces. Selective acquisition and analysis of relevant events and data is possible. With the hardware-based implementation, smooth operation and a high update rate is ensured even for long acquisitions. This is advantageous, for example, to capture multiple packetized serial bus signals.
Difficult-to-find faults often result from the interaction between time and frequency signals. The FFT function of the R&S®RTC1000 is activated with the push on a button and by just entering center frequency and span. Due to the high-performance FFT dunctionality of the R&S®RTC1000 series oscilloscopes, signals can be analyzed with up to 128 kpoints. Other practical tools include cursor measurements and autoset in frequency domain.
The R&S® RTC1000 boots in just 7 seconds and is ready to measure.
A component tester and an oscilloscope can be used to examine whether components are defective or functional. By using a component tester capacitors, resistors, transistors, thyristors, coils, zener diodes, diodes and resulting circuits such as rectifiers are tested. The component tester is a valuable tool for troubleshooting, especially if there is no explicit wiring diagram. This is especially true in the hobby field and basic electronic education. To meet these needs and requirements, the new R&S®RTC1000 series oscilloscopes come standard with a component tester, reducing the number of devices required.
The R&S®RTC1000 option turns every R&S®RTC1000 into an intuitive-to-use MSO with 8 additional digital channels. The oscilloscope captures and analyzes signals from analog and digital components of an embedded design - synchronously and time-correlated to each other. For example, the delay between input and output of an A/D converter can conveniently be determined using the cursor measurements.
R&S® RTC1000 series oscilloscopes feature a standard XY mode. The ability to plot signals against each other allows you to view the relationship betwwen them.
The integrated R&S®RTB-B6 waveform and pattern generator up to 50 Mbit/s is useful for educational purposes and for implementing prototype hardware. Apart from the common sine, square/pulse, ramp and noise waveforms, it outputs arbitrary waveforms and 4-bit signal patterns. Waveforms and patterns can be imported as CSV files or copied from oscilloscope waveforms. Before playing signals back, the user can preview them to quickly check signal correctness. Predefined patterns for e.g. I²C, SPI, UART and CAN/LIN can be used.
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