| Allicdata Part #: | 336-4170-ND |
| Manufacturer Part#: |
EFR32FG14P231F256IM32-B |
| Price: | $ 7.02 |
| Product Category: | RF/IF and RFID |
| Manufacturer: | Silicon Labs |
| Short Description: | FLEX PREMIUM QFN32 SUBG EXTENDED |
| More Detail: | IC RF 32-VFQFN Exposed Pad |
| DataSheet: | EFR32FG14P231F256IM32-B Datasheet/PDF |
| Quantity: | 254 |
| 1 +: | $ 6.38190 |
| 25 +: | $ 5.31720 |
| 100 +: | $ 4.78548 |
| 1000 +: | $ 3.58911 |
Specifications
| Series: | * |
| Packaging: | Tube |
| Part Status: | Active |
| Package / Case: | 32-VFQFN Exposed Pad |
Description
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
EFR32FG14P231F256IM32-B, a member of the EFR32 family of radio frequency transceiver integrated circuits (RFICs), is an integrated solution that provides a simple platform to quickly design and prototype advanced radio communication systems. It has been created to address the needs of the rapidly evolving market for low power, high performance, and flexible radio applications.The EFR32FG14P231F256IM32-B has an application field for wireless communication systems such as Bluetooth, Wi-Fi, ZigBee, and Z-Wave, as well as for consumer electronics, industrial, and medical applications. These all have to do with transmitting data wirelessly between two points, or from one point to another. This radio frequency transceiver integrated circuit is suitable for all applications that require high data rate and low-power system solutions.The EFR32FG14P231F256IM32-B features a wide operating voltage range of 1.8V to 3.6V, a digital pulse width modulation (PWM) clock, a direct digital frequency synthesizer (DDS) with a multiple of modes, and an internal VCO. Other features include low power consumption, wide operating temperature range, and a very flexible modem architecture.The EFR32FG14P231F256IM32-B utilizes a variety of methods in order to produce an efficient and reliable radio frequency transmission. The component accept signals from the external common antenna and then amplifies them to prepare for transmission. The amplifier is then passed through a band-pass filter which is used to reject any unwanted frequencies from being transmitted. This filter also helps to maintain a consistent frequency level throughout the entire transmission.Next, the frequency upconversion circuit converts the signal to a higher frequency. This circuit is necessary as the TX packet is at a higher frequency than the RX packet. The higher frequency is then passed through two mixer stages, the RF mixer and the IF mixer. The RF mixer combines the signal with an oscillator signal. The IF mixer combines the signal from the RF mixer with a carrier frequency in order to produce an intermediate frequency (IF) signal.After the two mixer stages, the IF signal is then passed through an IF filter. This filter is used to reject any frequencies which are not related to the desired frequency. Finally, the IF signal is passed through a power amplifier before it is transmitted.The power amplifier increases the power of the signal before it is transmitted. However, the power amplifier is not the only factor that is considered when determining the strength of a transmitted signal. The antenna must also be considered. Antennas can be designed to focus the signal onto a specific target area, or they can be used to spread the signal over a wider area.The EFR32FG14P231F256IM32-B provides a low-cost, low-power solution for any radio frequency transceiver application. With its high performance and low power characteristics, the EFR32FG14P231F256IM32-B provides an ideal solution for wireless communication systems, consumer electronics, industrial, and medical applications.
The specific data is subject to PDF, and the above content is for reference
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EFR32FG14P231F256IM32-B Datasheet/PDF