Accurately measure your UWB device's time of flight

The R&S®CMP200 radio communication tester together with the R&S®CM-Z300A time of flight kit provides an accurate setup for time of flight measurements – in validation, calibration and certification.

Rohde & Schwarz test solution for accurate UWB device testing.
Rohde & Schwarz test solution for accurate UWB device testing.
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Your task: accurate time of flight measurements

Secure ranging is a key feature for several ultrawideband (UWB) applications. Therefore, accurate time of flight (ToF) measurements are required for the validation of UWB devices and chipsets, antenna calibration, as well as physical layer certification as defined by the FiRa conso

Rohde & Schwarz solution for UWB time of flight

Rohde & Schwarz provides a test solution for accurate time of flight measurements that is easy to set up. The R&S®CM-Z300A UWB ToF measurement kit together with the R&S®CMP200 radio communication tester enables typical time of flight measurements to be performed without the need for additional calibration and path delay measurements.

The time of flight measurement kit consists of an RF power splitter/combiner, a selection of attenuators, a pair of cables to connect to the R&S®CMP200 and a short cable (15 cm) to connect to the antenna port of the device under test (DUT), as illustrated in the figure below.

Depending on the specific needs, it is possible to add or change components in the setup such as different cables. In this case, it is highly recommended to validate the delay characteristics of the setup using a vector network analyzer (VNA) and to change the configuration parameter in the UWB test suite accordingly.

Test setup for ToF measurements as required for e.g. FiRa physical layer certification
Test setup for ToF measurements as required for e.g. FiRa physical layer certification
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Components of the R&S®CM-Z300A UWB time of flight measurement kit
Components of the R&S®CM-Z300A UWB time of flight measurement kit
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Configuration of the test setup in just a few steps

For the setup, the configuration port 1 of the splitter/combiner is connected to the TX port 1 (IFout) of the R&S®CMP200 using a long RF cable. Port 2 of the splitter/combiner is connected to the RX port 1 (IFin) of the R&S®CMP200 using the other long cable. Finally, the sum port S of the splitter/combiner is connected to the antenna port of the device under test using the short RF cable.

The RF coupling from RX to TX acts as a timing reference for the ToF measurements. The length of the cables between the splitter and the R&S®CMP200 is therefore uncritical.

As depicted in the example below, the expected time of flight for a configuration including an attenuator of e.g. 10 dB would be exactly 1 ns, which corresponds to a measured distance in the air of 30 cm.

Group delay of the splitter/combiner
Group delay of the splitter/combiner
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If the measurement setup requires longer cables, or the measurements should be performed via RF switches to several antenna ports, or in case of over-the-air test setups, the RF path delay needs to be determined with a multiport network analyzer.

In this case, perform the following steps:

1. Assemble the R&S®CM-Z300A with all other RF cables and network devices (splitters, combiners, circulators) that will be used with the DUT to interface with the R&S®CMP200.

2. Connect the two ends of this RF network – the DUT terminated end and the R&S®CMP200 terminated end at the sum port S of the splitter/combiner – to the two ports on a multiport RF network analyzer such as the R&S®ZNB vector network analyzer.

3. Measure the RF path delay of the RF network, for example at the UWB channel of interest e.g. on channel 5: 6489.6 MHz.

4. Update the path delay property of the test_config.ini file with the value measured in step 3 plus the 0.1 ns from the kit (Tgs), in microseconds.

RF path delay measurement in a customized setup
RF path delay measurement in a customized setup
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ToF measurement made easy

The R&S®CMP200 combined with the R&S®CM-Z300A ToF kit enables accurate time of flight measurements with an easy to handle test setup.

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