Silicon Labs SI4743-C-EVB
- SI4743-C-EVB
- Silicon Labs
- BOARD EVALUATION FOR SI4743-C
- RF Evaluation and Development Kits, Boards
- SI4743-C-EVB Datasheet
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Lead free / RoHS Compliant - 9826
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What is SI4743-C-EVB
Silicon Labs Part Number SI4743-C-EVB(RF Evaluation and Development Kits, Boards), developed and manufactured by Silicon Labs, distributed globally by Jinftry. We distribute various electronic components from world-renowned brands and provide one-stop services, making us a trusted global electronic component distributor.
SI4743-C-EVB is one of the part numbers distributed by Jinftry, and you can learn about its specifications/configurations, package/case, Datasheet, and other information here. Electronic components are affected by supply and demand, and prices fluctuate frequently. If you have a demand, please do not hesitate to send us an RFQ or email us immediately [email protected] Please inquire about the real-time unit price, Data Code, Lead time, payment terms, and any other information you would like to know. We will do our best to provide you with a quotation and reply as soon as possible.
SI4743-C-EVB Specifications
- Part NumberSI4743-C-EVB
- CategoryRF Evaluation and Development Kits, Boards
- ManufacturerSilicon Labs
- DescriptionBOARD EVALUATION FOR SI4743-C
- Package-
- Series-
- TypeReceiver
- For Use With/Related ProductsSI4743
- Frequency153kHz ~ 279kHz, 520kHz ~ 1.71MHz, 2.3MHz ~ 26.1MHz, 64MHz ~ 108MHz
- Supplied ContentsBoard(s)
Application of SI4743-C-EVB
SI4743-C-EVB Datasheet
SI4743-C-EVB Datasheet , Receiver,SI4743,153kHz ~ 279kHz, 520kHz ~ 1.71MHz, 2.3MHz ~ 26.1MHz, 64MHz ~ 108MHz,Board(s)
SI4743-C-EVB Classification
RF Evaluation and Development Kits, Boards
FAQ about RF Evaluation and Development Kits, Boards
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1. What are the main application areas of radio frequency integrated circuits?
RFIC has a wide range of applications, mainly including the following aspects:
Wireless communication: used in mobile phones, wireless walkie-talkies, Bluetooth devices and Wi-Fi terminals, etc., responsible for modulating, demodulating and amplifying signals.
GPS: RFIC is often used in GPS receivers to process GPS signals and realize positioning functions.
Radio frequency identification (RFID): used in RFID tags and readers to realize contactless identification and data transmission.
Television and radio: used in television receivers, digital TV tuners and radios to process radio frequency signals.
Radar systems: used for signal processing and target detection in weather radars, military radars and other monitoring systems.
Internet of Things (IoT) devices: act as wireless communication modules in various IoT devices, such as smart home controllers and remote sensors.
Medical devices: some medical devices, such as remote monitoring devices and implantable medical devices, also use RFIC for data transmission.
Automotive electronics: used in vehicle communication systems, such as vehicle wireless communication, vehicle positioning and smart key systems. -
2. What does an RFIC usually consist of?
Radio frequency integrated circuits (RFICs) usually consist of the following components:
Antenna: responsible for signal transmission and reception, completing the conversion of conducted RF signals to electromagnetic waves in space .
Filter: responsible for signal filtering, usually a bandpass filter, allowing only the required signals to be transmitted or received, filtering out useless signals and interference.
Low noise amplifier (LNA): used to amplify weak received signals and reduce noise interference on the signal.
Power amplifier (PA): Amplifies the small signal in the transmission path to a certain power level to ensure long-distance wireless transmission.
Modulator: Used for signal modulation, usually "up-conversion", to load information onto the RF carrier.
Demodulator: Decodes the received signal and recovers the original signal from the RF carrier.
Application areas of RF integrated circuits:
Wireless communication: Used in mobile phones, wireless walkie-talkies, Bluetooth devices, and Wi-Fi terminals, etc., responsible for modulating, demodulating, and amplifying signals.
GPS: Used in GPS receivers to process GPS signals and realize positioning functions.
Radio frequency identification (RFID): Used in RFID tags and readers to achieve contactless identification and data transmission.
Television and broadcasting: Used in television receiving equipment, digital TV tuners and broadcasting to process RF signals.
Radar systems: Used for signal processing and target detection in weather radars, military radars, and other monitoring systems.
Internet of Things (IoT) devices: Act as wireless communication modules in devices such as smart home controllers and remote sensors.
Medical devices: Some medical devices such as remote monitoring devices and implantable medical devices also use RFIC for data transmission.
Automotive electronics: used in vehicle communication systems, such as vehicle wireless communication, vehicle positioning and smart key systems.
RF integrated circuits play a vital role in modern electronic products and systems with their miniaturization, low power consumption and high integration.
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3. What does a development kit do?
Development kits have many functions in software development, mainly including the following aspects:
Simplify the development process: Development kits usually integrate many interfaces such as simulation, input and output, USB, LCD, network, etc., connect to the computer through the USB interface, and have functions such as high-speed code download, online debugging, breakpoints, single step, variable observation, register observation, etc., to achieve real-time online simulation and debugging of the microcontroller. This helps beginners and designers to quickly evaluate and develop a variety of applications, and become familiar with hardware principles and protocol stacks.
Provide a comprehensive development environment: For example, Android Studio is a fully integrated open source development environment that provides a Gradle-based management system that provides greater flexibility in the build process. It comes with a fast simulator that can install and run applications on virtual devices faster and simulate different configurations and functions. In addition, Android Studio also provides push notifications, performance monitoring and other functions, and is the official IDE for developing Android applications.
Support multiple devices and platforms: HUAWEI DevEco Studio is an integrated development environment (IDE) built on the open source version of IntelliJ IDEA Community, which provides basic functions such as project management, code editing, interface preview, compilation and construction, and code debugging. It also integrates performance tuning tools, device simulation tools, command line tools, etc. to help developers solve problems in specific areas. DevEco Testing is a test suite officially provided by Hongmeng, which supports a variety of devices such as mobile phones, folding screens, tablets, smart screens, watches, speakers, etc., and provides performance, power consumption, stability, compatibility and other test standards.
Promote IoT development: Niobe WiFi-IoT industry IoT development kit adopts a three-layer assembly structure design, supports OpenHarmony, and integrates multiple security capabilities and functions to connect multiple ecosystems. By providing a variety of functional expansion boards, developers can quickly make IoT product prototypes based on the OpenHarmony solution, shorten the product development cycle, and quickly achieve mass production.
Improve development efficiency: Development kits usually contain multiple related files and resources to simplify the software development, deployment and maintenance process. By organizing and managing source code, binary files, configuration files, and documents, developers can manage and use these resources more efficiently and improve development efficiency.
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