Modem RF functionality

nRF9151 Hardware Verification Guidelines

nRF9151 is fully calibrated and does not require any additional RF calibration. It is enough to verify successful assembly and soldering. For this purpose, nRF9151 supports the Nordic-proprietary %XRFTEST RF test AT command. Testing with three of the main test modes for RF performance, RX, TX, and Global Navigation Satellite System (GNSS) Signal-to-Noise Ratio (SNR), is supported.

To confirm the LTE RF functionality, usually testing either TX or RX is enough. For more information, see RX functionality test and TX functionality test.

The support for the AT command-based test mode is intended for non-signaling RF testing and allows the use of lower cost test equipment, such as a spectrum analyzer and RF signal generator. The following figures show alternative setups for RF testing.

In the setups shown in the following figures, the RF attenuator is intended to stabilize RF impedance seen by the nRF9151 antenna port due to test fixture and cabling. For example, an attenuator of 6 dB to 10 dB can be used.

The setup in the following figure supports only RX mode testing.

Figure 1. Non-signaling RF test setup for LTE/DECT NR+ and GNSS RX mode testing
Page-1 Sheet.71 Sheet.70 Sheet.27 Sheet.65 Sheet.5 Control unit (for example a computer) Control unit (for example a computer) Sheet.6 RF signal generator RF signal generator Sheet.9 Power supply 3.0-5.5 V/>500 mA Power supply 3.0-5.5 V/>500 mA Dynamic connector Dynamic connector.12 Sheet.28 UART UART Sheet.29 AT commands AT commands Sheet.4 nRF9151 nRF9151 Sheet.32 GNSS GNSS Sheet.33 ANT ANT Sheet.34 Dynamic connector.35 Sheet.36 Sheet.50 Sheet.52 RF switch RF switch Sheet.56 Sheet.57 Test equipment control Test equipment control Sheet.66 Sheet.67 RF attn. RF attn. Sheet.69 RF attn. RF attn.

The setup in the following figure contains capability for both LTE TX and RX testing.

Figure 2. Non-signaling RF test setup supporting both TX and RX testing
Non-signaling RF test setup supporting both TX and RX testing

The setup in the following figure uses a non-signaling LTE tester for more advanced measurements.

Figure 3. Non-signaling RF test setup using RF tester
Page-1 Sheet.71 Sheet.70 Sheet.27 Sheet.65 Sheet.5 Control unit (for example a computer) Control unit (for example a computer) Sheet.6 LTE non-signaling tester (for example CMW100) LTE non-signaling tester (for example CMW100) Sheet.9 Power supply 3.0-5.5 V/>500 mA Power supply 3.0-5.5 V/>500 mA Dynamic connector Dynamic connector.12 Sheet.28 UART UART Sheet.29 AT commands AT commands Sheet.4 nRF9151 nRF9151 Sheet.32 GNSS GNSS Sheet.33 ANT ANT Sheet.34 Dynamic connector.35 Sheet.36 Sheet.50 Sheet.52 RF switch (opt.) RF switch (opt.) Sheet.56 Sheet.57 Test equipment control Test equipment control Sheet.66 Sheet.67 RF attn. RF attn. Sheet.69 RF attn. RF attn.

The need for an RF switch or separate RF generator for GNSS depends on the selected tester and the amount of parallel test setups.

The recommended voltage for the power supply is a minimum of 3.0 V for RF 3GPP compliance. It is recommended to use a common timebase reference clock for all RF equipment if several sets of RF test equipment are used in the test setup.

For information on RF performance related test modes and other supported test capabilities, see nRF91x1 Production Test AT Commands.