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Search Rohde-Schwarz.com
Find the information you need from Rohde & Schwarz. Search for products, technologies, applications, manuals, datasheets, tutorials, FAQs, and more.
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Designed as an everyday problem solving tool, the R&S®RTM3000 combines the power of ten (10-bit ADC, 10 times the memory and 10.1" touchscreen) with a Rohde & Schwarz probe interface for use with all Rohde & Schwarz probes.
Разработанный как средство решения повседневных задач, осциллограф R&S®RTM3000 сочетает десятикратную эффективность (10-разрядный АЦП, 10-кратный объем памяти и сенсорный экран с диагональю 10,1") с интерфейсом пробников Rohde & Schwarz для всех пробников Rohde & Schwarz.
Entwickelt als Problemlösungswerkzeug für den täglichen Einsatz kombiniert das R&S®RTM3000 die „Power of Ten“ (10-bit-A/D-Wandler, 10-facher Speicher und 10,1" Touchscreen) mit einer Tastkopfschnittstelle von Rohde & Schwarz. Diese ist mit allen Tastköpfen von Rohde & Schwarz kompatibel.
R&S®RTM3000 整合 10 位元 ADC,10 倍的儲存深度和 10.1 吋觸控螢幕以及適用於所有羅德史瓦茲探棒的探棒介面,完美呈現「power of ten」的設計概念,幫助您輕鬆克服各種量測挑戰。
El R&S®RTM3000 es una herramienta desarrollada para resolver problemas cotidianos. Ofrece un convertidor A/D de 10 bits, 10 veces más memoria que otros osciloscopios, una pantalla táctil de 10,1" así como la interfaz de sonda de Rohde & Schwarz para su uso con todas las sondas de Rohde & Schwarz.
Conçus avec l'objectif d'être des outils permettant de résoudre les problèmes du quotidien, les R&S®RTM3000 associent l'évolution Power of ten (CAN sur 10 bits, mémoire multipliée par 10 et un écran tactile 10,1") avec l'interface de sonde Rohde & Schwarz qui est compatible avec l'ensemble des sondes Rohde & Schwarz.
ZZA-RTM 19" Adapter - Specifications
R&S RTM Digital Oscilloscope - Product brochure Digital oscilloscopes for fast signal analysis, finding signal faults quickly and effectively, triggering and decoding of serial protocols.
R&S RTM3000 Oscilloscope - Data sheet
Get in touch with the power of ten. Discover the R&S®RTM3000 oscilloscopes (100 MHz to 1 GHz) - Poster
The R&S®RTM3000 and R&S®RTA4000 offer pulse width modulation (PWM) track analysis functionality, which is a great feature for verifying and optimizing soft start.
09-Jul-2019
Cursors that follow the waveform
The track functionality of the R&S®RTM3000 and the R&S®RTA4000 oscilloscopes is a great feature for displaying any varying PWM signal versus time in various applications.
25-Sep-2019
Combining a low-noise oscilloscope with a power rail probe provides a measurement system that delivers measurements that are more accurate.
03-Jan-2018
Combining a low-noise oscilloscope with a power rail probe, developed uniquely for measuring power rails, provides a measurement system that delivers measurements that are more accurate.
09-Jul-2020
Calibration certificate; ZNL; ZNLE; FTP1000; RTH1000; RTB2000; ZPH; FPH; FPC1000; RTM3000 Calibration certificate? Calibration certificate; ZNL; ZNLE; FTP1000; RTH1000; RTB2000; ZPH; FPH; FPC1000; RTM3000 Related Products
No synchronisation in Auto Trigger Mode
Delta Time Accuracy Calculation for my Oscilloscope
How can I find out that the measurement has been finished?
Configuring the Probe Adapter RT-Z2T with remote commands
How can I query the waveform data of the serveral segments?
LabView Driver rsrtx - Range of Configure Trigger Channel Level
We want to measure the voltage of the main line with our oscilloscope.
Rohde & Schwarz Getting Started manual for R&S RTA4000 digital oscilloscopes
How can I copy the screen shots from the internal memory to an USB stick?
I use the oscilloscope in RUN continious mode. When I press "STOP" more than one acquisitions are shown. The waveforms are overlayed. Is there a way to prevent this?
At old scopes there was no trigger necessary to run the X/Y mode. Why does the mode not work if no valid trigger condition is detected?
When I set the frequency of the arbitrary generator to 10 KHz, the frequency of the output signal is 120 KHz. What is wrong here?
I have exported the waveform into a csv file. When I open the file in Excel, the values are completely wrong. How can I get correct values?
I have compared passive and active probes. It seems that the noise with active probes is higher. What is the reason and what can I do to reduce the noise?