SI1037-B-GM3 Allicdata Electronics

SI1037-B-GM3 RF/IF and RFID

Allicdata Part #:

SI1037-B-GM3-ND

Manufacturer Part#:

SI1037-B-GM3

Price: $ 3.79
Product Category:

RF/IF and RFID

Manufacturer: Silicon Labs
Short Description: IC RF TXRX+MCU ISM ...
More Detail: IC RF TxRx + MCU General ISM ...
DataSheet: SI1037-B-GM3 datasheetSI1037-B-GM3 Datasheet/PDF
Quantity: 1000
480 +: $ 3.44138
Stock 1000Can Ship Immediately
$ 3.79
Specifications
Power - Output: 13dBm (Max)
Package / Case: 85-VFLGA Exposed Pad
Operating Temperature: -40°C ~ 85°C
Current - Transmitting: 17mA ~ 30mA
Current - Receiving: 18.5mA
Voltage - Supply: 1.8 V ~ 3.8 V
GPIO: 53
Serial Interfaces: I²C, SPI, UART
Memory Size: 16kB Flash, 4.4kB RAM
Sensitivity: -121dBm
Series: --
Data Rate (Max): 256kbps
Frequency: 240MHz ~ 960MHz
Modulation: FSK, GFSK, OOK
Protocol: EZRadioPro
RF Family/Standard: General ISM
Type: TxRx + MCU
Part Status: Not For New Designs
Packaging: Tray 
Description

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RF transceiver ICs are integrated circuits that give users the ability to transmit and receive wireless signals. The SI1037-B-GM3 is a RF transceiver IC with integrated RF power amplifier, power oscillator, phase-locked loop, frequency synthesizer, data rate modem, matching network and a wideband direct conversion modulator/demodulator. It is designed to help users transmit and receive a variety of high data rate wireless protocols including Bluetooth, Wi-Fi, Ultra Wide Band (UWB) and ZigBee.

The SI1037-B-GM3 operates in the 2.4 GHz to 2.5 GHz frequency band. It leverages an advanced Digital Signal Processor (DSP) to synthesize and store complex modulation schemes, such as DSSS, FHSS, and OFDM. The DSP also supports dynamic frequency hopping, channel bandwidth selection, data rate optimization, and other higher layer functions, making it suitable for both the heavily regulated broadcast requirements of high-data-rate UWB applications and the more flexible frequency-hopping spread spectrum requirements of 2.4 GHz protocols.

The SI1037-B-GM3 is suitable for a variety of wireless applications, including ISM and medical band designs. It can be used for applications such as Wi-Fi point-to-point/multipoint systems, Bluetooth base-stations, ZigBee or other short-range industrial and medical wireless applications, Ultra Wideband (UWB) localized digital communication systems, and long range security systems.

The communications link between two nodes is established by transmitting modulated signals across a two-way radio channel. In the SI1037-B-GM3, these signals are generated by the power oscillator, modulated by the data rate modem, and amplified by the power amplifier. The modulated RF signal is received by the RF chain and demodulated by the data rate modem. The demodulated signal is then processed and transferred to the embedded processor for further processing.

The SI1037-B-GM3 uses a low-power phase-locked loop (PLL) circuit to provide a high precision frequency synthesizer. This PLL circuit can generate all of the frequencies needed for the desired wireless protocol with great accuracy. The frequency synthesizer is then used to generate the necessary RF carrier frequencies for the application at hand.

The matching networks integrated in the SI1037-B-GM3 provides a better impedance match between the transmission line and the antenna. This ensures that the power generated by the power amplifier is efficiently coupled to the antenna with minimal back radiation.

The SI1037-B-GM3 includes advanced power management features to minimize power consumption during inactivity. It also contains programmable power control to adjust the amount of power output by the power amplifier according to the application. This helps to ensure that the device meets requirements for RF power amplifier linearity, providing optimal performance.

The SI1037-B-GM3 is a versatile and highly integrated RF transceiver IC designed to simplify the design of a wide range of wireless applications. It integrates a wide variety of features to simplify the design process, and can support a wide range of data rates and modulation schemes. Its advanced frequency synthesizer, power management, and power control make it a great choice for designers looking to implement high-performance, cost effective, and feature-rich wireless systems.

The specific data is subject to PDF, and the above content is for reference

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