SI4010-C2-GTR Allicdata Electronics

SI4010-C2-GTR RF/IF and RFID

Allicdata Part #:

336-4342-2-ND

Manufacturer Part#:

SI4010-C2-GTR

Price: $ 0.00
Product Category:

RF/IF and RFID

Manufacturer: Silicon Labs
Short Description: IC TX 27-960MHZ FSK 3.6V 10MSOP
More Detail: RF Transmitter FSK, OOK 27MHz ~ 960MHz 10dBm 100 k...
DataSheet: SI4010-C2-GTR datasheetSI4010-C2-GTR Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Series: EZRadio®
Packaging: Tape & Reel (TR) 
Part Status: Active
Frequency: 27MHz ~ 960MHz
Applications: Garage Openers, RKE, Security Alarms
Modulation or Protocol: FSK, OOK
Data Rate (Max): 100 kBaud
Power - Output: 10dBm
Current - Transmitting: 19.8mA
Data Interface: PCB, Surface Mount
Antenna Connector: PCB, Surface Mount
Memory Size: 4kB RAM
Features: 8051 MCU Core, Crystal-less Operation
Voltage - Supply: 1.8 V ~ 3.6 V
Operating Temperature: -40°C ~ 85°C
Package / Case: 10-TFSOP, 10-MSOP (0.118", 3.00mm Width)
Description

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RF transmitters are a type of electronic device that generates and transmits radio frequency (RF) signals. One of the most commonly used RF transmitters is the SI4010-C2-GTR. It is a low-power, narrow-band, single-ended, narrow-band RF transmitter that has a wide range of applications, including medical, automotive, and industrial.

SI4010-C2-GTR Application Field

The SI4010-C2-GTR is well-suited for use in consumer electronics, automotive, medical, industrial, and many other applications. In consumer electronics, the SI4010-C2-GTR is used for transmitting data to cellular phones, tablets, MP3 players, and other portable devices. In automotive applications, the transmitter is used to send data to keyless entry systems, electronic brakes, remote controls, and remote start systems. It is also suitable for medical devices, such as ECG and EEG monitors, as well as in industrial applications, such as factory automation, proximity sensing, and motion sensing.

SI4010-C2-GTR Working Principle

The SI4010-C2-GTR is based on a digital phase-locked loop architecture and is optimized for use in small, battery-powered applications. The transmitter operates in a range from 315 to 433 MHz with output power of up to 2.5 mW. It is also capable of transmitting data at up to 600 kbps over short distances. The transmitter is configured with a range of features that can be used to optimize performance such as power control, pre-emphasis, and pre-emphasis modulation.

The transmitter has several features that make it ideal for use in low-power applications, including rapid shutdown times and low-power consumption. It can operate on 1.8V to 3.6V DC supplies and draws less than 13 mA. Additionally, the transmitter features an enable pin, which can be used to turn off the transmitter quickly to reduce power consumption. The enable pin also provides a mechanism for quickly suspending the transmission whenever required.

In addition to these features, the SI4010-C2-GTR also has integrated temperature sensors and voltage monitors that can be used to monitor the temperature and voltage of the system and take appropriate action if necessary. This helps to ensure the system’s stability and reliability. The transmitter also has integrated filters that can be used to reduce interference from external sources.

The SI4010-C2-GTR is also designed with high reliability in mind. It has a low bit-error rate and is immune to false triggering. Furthermore, it features a built-in sink current protection circuit to help reduce susceptibility to EMI and thermal runaway. The transmitter is also shielded against ESD, EMC, and electrostatic discharge, making it an ideal choice for low-power RF applications.

Conclusion

The SI4010-C2-GTR is a low-power, single-ended, narrow-band RF transmitter that is ideal for use in consumer electronics, automotive, medical, industrial, and many other applications. It is designed with a range of features that can be used to optimize performance and ensure stability and reliability of the system. It draws a low current and can be shut down quickly to reduce power consumption. Additionally, it is shielded against ESD, EMC, and electrostatic discharge, making it an ideal choice for low-power RF applications.

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

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