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Wi-Fi Front-End Module transmits data between your device and a router using radio waves that travel at specific frequencies.
2.4 gigahertz and 5 gigahertz are the two radio-wave frequencies that can be employed, depending on the volume of data being transmitted.
But what does that really mean. A hertz is merely a frequency measurement, after all.
Let’s imagine, for illustration, that you are sitting on a beach and admiring the waves as they come in. You might determine the frequency of the waves by counting the intervals between each wave crash.
The frequency of one wave per second is one hertz. On the other hand, one gigahertz equals one billion waves per second.
Beaches aren’t like that, which is a good thing because it probably wouldn’t be very restful. The more frequently a signal is transmitted, the more data is sent per second.
The Global Wi-Fi Front-End Module market accounted for $XX Billion in 2023 and is anticipated to reach $XX Billion by 2030, registering a CAGR of XX% from 2024 to 2030.
In a 3 mm by 4 mm size, the NXP Wi-Fi Front-End Module WLAN8101C is a 5 GHz 2 x 2 MIMO RFFE for Wi-Fi 6 applications.
There are two monolithic front-end ICs in the WLAN8101C. Each front-end IC includes a single pole double throw (SPDT) switch, a low noise amplifier, and a low noise amplifier with bypass capabilities.
Coexistence filters are also included in the WLAN8101C for both broadcast and receive channels.
The device includes harmonic and out-of-band filtering, which reduces the layout area in the application, and is matched to 50.2 x 2 MIMO RFFE module in a compact size for WiFi 6 applicationsIntegrated power amplifiers with numerous operating modes for controlling linearity and dynamic power efficiency.
3 TX operation modes with full high band flexibility from 5150 MHz to 5925 MHz allow for power efficiency adaption.
High gain and bypass modes are supported by integrated low noise amplifiers.Integrated directional couplers for accurate transmit power control Integrated SPDT switches for single antenna RX and TX operationDC free input/output ports; no external matching components needed.RF decoupling capacitors built into every VCC and control pin.
a packaging with a low profile and a 3 mm x 4 mm size.All pins have integrated ESD protection.
ANSI/ESDA/JEDEC standard for the Human Body Model (HBM) JS-001 exceeds the ANSI/ESDA/JEDEC standard for the Charged Device Model (CDM) of 2 kV.