Parallax, Inc.

Parallax, Inc.

Parallax, Inc. is a leading company known for its expertise in microcontroller and microcontroller development tools, as well as the manufacture of educational robots. Based in Rocklin, California, the company has been a key player in the electronics industry for over 25 years. Parallax offers a wide range of products including the BASIC Stamp microcontroller, Propeller microcontroller, sensors, and robotics kits, catering to hobbyists, educators, and professionals alike. Their educational robots, such as the Boe-Bot and Scribbler, have gained popularity for their effectiveness in teaching programming and robotics concepts. Committed to innovation, Parallax consistently introduces new products and resources to support the learning and development needs of its diverse customer base. With a focus on quality and user-friendly design, Parallax continues to be a trusted source for electronic components and educational tools, making significant contributions to the field of embedded systems and robotics.

RF Transmitters

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Parallax, Inc.
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27980
RF TRANSMITTER 433.92MHZ MODULE
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PCB Symbol, Footprint & 3D Model
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Module
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5V
433.92MHz
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19.2kBaud
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About  RF Transmitters

RF transmitters are integral components utilized for broadcasting radio frequency signals while incorporating data modulation for effective data transmission within a system. These transmitters operate across a broad frequency range spanning from 315Hz to 64GHz, accommodating a wide spectrum of applications and communication needs. In terms of data rate capabilities, RF transmitters support data transmission speeds ranging from 3kbps to 2Mbps, enabling the efficient conveyance of varying data loads based on the specific requirements of the application. Additionally, these transmitters offer a configurable power output that ranges from -30dBm to 24.7dBm, allowing for optimized signal strength and range as needed for different communication scenarios. The data interface options available for RF transmitters encompass a diverse array of connectivity methods, including connectors, I2C (Inter-Integrated Circuit), pin pads, parallel interfaces, PCB (Printed Circuit Board) connections, serial interfaces, solder pads, SPI (Serial Peripheral Interface), UART (Universal Asynchronous Receiver-Transmitter), and USB (Universal Serial Bus). This extensive range of data interface options ensures compatibility with various system architectures and communication protocols, facilitating seamless integration into diverse electronic systems. Furthermore, RF transmitters feature multiple antenna connection options, including castellation, on-board mounting, PCB integration, and through-hole connections. These diverse antenna connection methods cater to different design requirements and facilitate the incorporation of RF transmitters into a wide range of electronic devices and systems. In summary, RF transmitters serve as crucial elements for broadcasting radio frequency signals while modulating data for efficient transmission within electronic systems. With their extensive frequency range, adaptable data rates, configurable power output, versatile data interface options, and diverse antenna connection methods, RF transmitters play a vital role in enabling effective wireless communication across a multitude of applications and use cases.