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AN3206 Datasheet(PDF) 4 Page - STMicroelectronics

Part # AN3206
Description  PCB design guidelines for the STM32W108 platform
PDF  14 Pages
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Manufacturer  STMICROELECTRONICS [STMicroelectronics]
Direct Link  http://www.st.com
Logo STMICROELECTRONICS - STMicroelectronics

AN3206 Datasheet(HTML) 4 Page - STMicroelectronics

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Reference design
AN3206
4/14
Doc ID 17406 Rev 3
2.1
RF design guidelines
2.1.1
STM32W108 RF ports
The STM32W108's bi-directional RF port (pins RF_P and RF_N) provides access to a low
noise amplifier (LNA) and a power amplifier (PA) through a shared differential interface. The
disabled high-Z state of either the PA or the LNA enables transmitting and receiving through
the shared port without the need for a conventional T/R switch.
An ‘alternate’ PA-only port (pins RF_TX_ALT_P and RF_TX_ALT_N) is also provided. This
function is achieved via an additional PA. Design considerations for this alternate PA are not
covered in this document.
Note:
The on-chip parasitic capacitance is different between the two ports and will slightly alter the
off-chip matching component values.
2.1.2
Optimizing for TX (Boost mode)
The STM32W Reference Design has been optimized for maximum transmitter (TX) output
power in Boost mode using practical components and readily available printed circuit board
(PCB) substrates. The optimum load at the PA on the silicon die is approximately 700
Ω
when the PA/LNA device capacitance is resonated-out. This maximizes the voltage swing at
the drains of the PA devices within the available supply voltage. Too large a load causes
voltage limiting whereas too small a load does not make full use of the available supply
voltage. Figure 2 illustrates a die-level simulation of the load impedance and its effect on PA
output power.
Figure 2.
Simulated Boost output power with PA load resistance
Optimizing the TX output performance in Boost mode does not cause degradation in either
Normal mode or RX sensitivity. Because the receiver is CMOS-based, it amplifies the input
signal voltage, rather than its current. The receiver noise is a fixed value of noise voltage
that may be referred to its input. It might be expected that increasing the transformation



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