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High-gain 8dBi Fiber Glass Antenna For Lora

20x600mm 8dBi Fiber Glass Antenna 868MHz 8dBi Antenna Lora 8dBi Antenna 915MHz - C&T RF Antennas Manufacturer

China 8dBi Fiber Glass Antenna Manufacturer

C&T RF Antennas Inc is the Omni High-gain 8dBi Fiber Glass Antenna Antenna Manufacturer, we provide external and internal Lora & Lorawan antennas with many antenna types.

Contact the C&T RF sales team for more 8dBi Fiber Glass Antenna Lora fiberglass antenna details.

What is a High-gain 8dBi Fiber Glass Antenna For Lora?

The High-gain 8dBi Fiber Glass Antenna Lora CTRF-ANTENNA-FB-8593-20600-N is an 8dbi fiberglass antenna that supports an 850-930MHz LoRa antenna manufactured by C&T RF Antennas Inc for outdoor Lora/LoraWan applications.

Some concepts in LoRaWAN.

1. Duty cycle

Duty Cycle has the following meaning in the field of telecommunications.

In a sequence of ideal pulses (e.g. a square wave), the ratio of the duration of a positive pulse represents 1 to the total period of the pulse.

For example, a pulse train with a pulse width of 1 µs and a signal period of 4 µs has a duty cycle of 0.25.

The ratio of the time occupied by a pulse to the total time during a continuous period of operation.

In CVSD modulation (continuously variable slope delta modulation), the average ratio of bits is “1” (not completed).

In periodic phenomena, the ratio of the time the phenomenon takes place to the total time.

For square waves or other applications, this is often referred to as the duty cycle or work cycle.

In this context it can be understood as follows: the ratio of the time1 that the node transmits LoRaWAN data to the transmitting cycle is the duty cycle.

The duty cycle is another representation of the cycle, and the ratio is used to dynamically constrain the node’s transmit cycle. The node may not start the next cycle until after the current cycle has ended.

For example, if the duty cycle of band 470 is 1% and a node takes 10 ms to send a set of data using this band, then the current transmission period of this node is T1. The node cannot send data again until the end of the current period, i.e. T1-10 ms.

T1=101%=1000ms

It must wait 1000-10=990ms before it can send again.

Note the time units in the calculation

2. Consistency check code (MIC)

The MIC in LoRaWAN is the four least significant bytes of the CMAC, which is described in the LoRaWAN protocol:

The MIC is calculated as follows [RFC4493]:

msg = MHDR | FHDR | FPort | FRMPayload

CMAC = aes128_cmac(NwkSKey, B 0 | msg)

MIC = cmac[0..3]

CMAC is an algorithm in AES, and the developer can directly call the AES library function, which is implemented in OpenSSL.

3. Lora networking architecture

The most important feature of LoRa is the physical layer or radio modulation that creates long-range communication connections, which is based on CSS modulation (Chirp Spread Spectrum).

Compared to traditional modulation techniques such as ASK and FSK, LoRa can greatly increase the communication range and CSS is characterized by long transmission distances and high interference resistance.

LoRa and LoRaWAN have better link budgets than other standard communication technologies, and a single gateway or base station can cover a large area, depending on the environment and interference at the location used.

LoRa is one of the popular technologies designed specifically for IoT wireless transmission and the LoRa network specification has the LoRa physical layer technology and the LoRAWAN open layer protocol.

 

The Outdoor Antenna 8dBi Fiber Glass Antenna is manufactured by C&T RF Antennas Inc, the Lora internal antennas & Lora external antennas manufacturer in China.

C&T RF Antennas Inc provides the 15dBi Lora antenna11dBi Lora Antenna12dBi Lora antenna20dBi Lora antenna10dBi Lora antenna9dBi Lora antenna8dBi Lora antenna6dBi Lora antenna5.8dBi Lora antenna5dBi Lora antenna4dBi Lora antenna3dBi Glass Fiber Lora Antenna3dBi Lora antenna2.5dBi Lora antenna2dBi Lora antenna, etc.

C&T RF Antennas Inc provides the internal-external IoT & M2M antenna with many radio frequency bands such as Cellular6G5G4G3GNB-IoTGNSSGPSDual-band Wifi5.8 GHz2.4 GHz169MHz230MHz315MHz433MHz868MHz915MHz LoRaUWBRFIDADS-B, etc.

We provide Lora antenna with other antenna types such as Through-hole Mount AntennasMagnetic Mount AntennasRubber Duck AntennasFiberglass AntennasPCB AntennasFPC AntennasSpring Antennas, etc.

The Omni High-gain 8dBi Fiber Glass Antenna Lora antenna is available at C&T RF Antennas Inc. C&T RF Antennas Inc offers 8dBi Fiber Glass Antenna Lora antenna inventory, 8dBi Fiber Glass Antenna Lora antenna pricing, & 8dBi Fiber Glass Antenna Lora antenna datasheets or the other Lora antenna types.

High-gain 8dBi Fiber Glass Antenna Lora Antenna Specifications

High-gain 8dBi Fiber Glass Antenna Lora Antenna Electrical Specifications

RF Antenna TypeOmni Fiberglass Antenna
ModelCTRF-ANTENNA-FB-8593-20600-N
Frequency Range850-930MHz
Gain8dBi
VSWR≤1.8
Impedance50 Ω
PolarizationVertical
DirectionalOmni-directional
ConnectorN-type Male
Max Power50W
Lightning ProtectionDC-Ground

High-gain 8dBi Fiber Glass Antenna Lora Antenna Mechanical Specifications

Dimension20*600mm
WeightApprox. 260g
Radome MaterialFiberglass
Operation Temperature-20˚C ~ +85˚C
Storage Temperature-40˚C ~ +85˚C
ColorGrey
Antenna DesignDipole Array
MountingScrew
Safety Emission and otherRoHS Compliant
ApplicationsPublic Safety/LMR/P25/TETRA, ISM/SCADA/Utilities, RFID, IoT/NB-IoT/LoRa

 

Fiberglass antenna features and applications

Fiberglass Antenna Features
Fiberglass Antenna Features – C&T RF Antennas Inc

 

 

Omnidirectional Antenna Fiberglass Antenna Features
Omnidirectional Antenna Fiberglass Antenna Features – C&T RF Antennas Inc

 

How do you mount a LoRa antenna?

Fiberglass Antenna Mounting Methods
Fiberglass Antenna Mounting Methods – C&T RF Antennas Inc

 

High-gain Omnidirectional Antenna Fiberglass Antennas
High-gain Omnidirectional Antenna Fiberglass Antennas – C&T RF Antennas Inc

 

Omnidirectional Antenna Fiberglass Antenna Applications
Omnidirectional Antenna Fiberglass Antenna Applications – C&T RF Antennas Inc

 

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