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AN2972 Datasheet(PDF) 18 Page - STMicroelectronics

Part # AN2972
Description  Designing an antenna for the M24LRxx-R
PDF  25 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

AN2972 Datasheet(HTML) 18 Page - STMicroelectronics

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How to check the M24LRxx antenna tuning
AN2972
18/25
Doc ID 15629 Rev 6
3
How to check the M24LRxx antenna tuning
The methods of antenna design described in the previous section may lead to an
inductance slightly different from the value that would offer optimum performance in the end
application. This is because the overall inductance of the antenna might slightly drift in the
application (with magnetic and ferromagnetic materials in the proximity of the antenna). It is
therefore necessary to run actual measurements of the resonant frequency of the antenna.
3.1
Antenna tuning measurements with a network analyzer
The tuning frequency of the M24LRxx antenna can be measured using a network analyzer
with a loop probe.
The RF electromagnetic field is generated by connecting a loop probe (like the 7405-901
Eaton/Alitech 6 cm loop) to the output of the network analyzer set in reflection mode (S11
measurement).
Figure 19. Measurement equipment
This equipment setup will directly display the system’s resonant frequency.
Experiments
As the objective is to find an [Lantenna + M24LRxx Ctuning] tuned at 13.56 MHz, the
frequency sweep range has to be set around this value, that is:
●
Start frequency: 5 MHz
●
End frequency: 20 MHz
●
Output power: –10 dBm
●
Measurement: reflection or S11
●
Format: log magnitude
Place the antenna within the field generated by the network analyzer + loop probe. The
resonant frequency corresponds to the minimum observed on the S11 measurement curve.
Network analyser
Loop probe
Antenna prototype with the M24LRxx
(represented as a capacitor)
ai16083b



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