Helium

Helium

Helium is a technology company that has developed a decentralized wireless network specifically designed for connecting Internet of Things (IoT) devices. The Helium network operates on a unique blockchain-based infrastructure, enabling IoT devices to communicate with each other and the internet in a secure and scalable manner. With its low-power, long-range wireless capabilities, Helium provides a cost-effective and efficient solution for IoT connectivity. The network is powered by a decentralized peer-to-peer architecture, where individuals or businesses can set up and operate Helium hotspots to expand the network coverage. In return for providing network coverage, hotspot operators are rewarded with Helium's native cryptocurrency, HNT. This incentivized model has led to rapid growth and adoption of the Helium network, making it one of the largest and fastest-growing IoT networks in the world. Helium's innovative approach to IoT connectivity is revolutionizing industries such as smart cities, logistics, agriculture, and more, enabling seamless and reliable communication between IoT devices.

RF Transceiver Modules and Modems

Results:
2
Series
Current - Transmitting
Package / Case
Current - Receiving
Operating Temperature
Serial Interfaces
Mounting Type
RF Family/Standard
Power - Output
Antenna Type
Sensitivity
Data Rate
Memory Size
Voltage - Supply
Modulation
Frequency
Utilized IC / Part
Protocol
Results remaining2
Applied Filters:
Helium
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ImageProduct DetailPriceAvailabilityECAD ModelSeriesMounting TypePackage / CaseOperating TemperatureMemory SizeVoltage - SupplyRF Family/StandardProtocolModulationPower - OutputSensitivitySerial InterfacesCurrent - ReceivingCurrent - TransmittingData RateFrequencyAntenna TypeUtilized IC / Part
H-EN-ATOM-AM-PRT-1-1
RF TXRX MODULE 802.15.4 CHIP SMD
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Surface Mount
Module
-40°C ~ 85°C
-
2V ~ 3.6V
802.15.4
-
-
27dBm
-110dBm
I²C, SPI, UART
39mA
38mA
250kbps
915MHz, 2.4GHz
Integrated, Chip
AT86RF212B
H-EN-ATOM-AM-SMD-1-1
RF TXRX MODULE 802.15.4 CHIP SMD
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Quantity
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PCB Symbol, Footprint & 3D Model
Atom
Surface Mount
40-SMD Module
-40°C ~ 85°C
-
2V ~ 3.6V
802.15.4
-
-
27dBm
-110dBm
I²C, SPI, UART
23mA ~ 39mA
85mA ~ 380mA
250kbps
915MHz, 2.4GHz
Integrated, Chip
AT86RF212B

About  RF Transceiver Modules and Modems

RF Transceiver Modules are essential components used for transmitting and receiving radio frequency signals across a wide range of applications. These modules are designed to operate within various RF families or standards, including Bluetooth, Cellular, General ISM, GPS, Navigation, SiBeam, WiFi, and 802.15.4. They support a broad frequency range spanning from 70MHz to 65GHz, allowing for flexibility in communication across different RF bands. In addition to their frequency range, RF Transceiver Modules also offer diverse data rate capabilities, covering a range from 600 bps (bits per second) to 12.3Gbps (gigabits per second). This wide data rate spectrum enables these modules to accommodate varying communication requirements, from low-speed applications to high-speed data transmission. Furthermore, RF Transceiver Modules provide a configurable power output, ranging from -10dBm to 54dBm. This adjustable power output capability allows for optimized signal transmission based on specific application needs, ensuring efficient and reliable communication over both short and long distances. These modules are widely utilized in a multitude of wireless communication systems, including but not limited to IoT devices, wireless sensor networks, mobile communication, satellite communication, and wireless local area networks (WLANs). Their versatility and adaptability make them indispensable for enabling seamless RF signal transmission and reception in diverse real-world scenarios. In summary, RF Transceiver Modules serve as critical components for transmitting and receiving radio frequency signals across a broad spectrum of applications. With support for various RF families, a wide frequency range, adaptable data rates, and configurable power output, these modules play a pivotal role in facilitating efficient and reliable wireless communication in modern technological landscapes.