What is a High-gain Flexible 5GNR PCB Antenna Ipex Antenna?
The High-gain Flexible 5GNR PCB Antenna Ipex Antenna CTRF-ANTENNA-FPC-60600-8237-IPEX antenna is a new radio 5G (NR) antenna designed flexible PCB antenna manufactured by C&T RF Antennas Inc for Cellular 4G 5G 6G network applications.
The High-performance & High-gain Flexible 5GNR PCB Antenna Ipex Antenna has a high-gain 8dBi 4G LTE 5G NR antenna, an 82x37mm flexible PCB board size built-in antenna with an Ipex/u.FL connector antenna for IoT & M2M industries.
The High-gain Flexible 5GNR PCB Antenna Ipex Antenna is supplied by C&T RF Antennas Inc, the IoT & M2M antenna internal & external manufacturer in China.
C&T RF Antennas Inc provides antenna types with Through-hole Mount Antennas, Magnetic Mount Antennas, Rubber Duck Antennas, Fiberglass Antennas, PCB Antennas, FPC Antennas, Spring Coil Antennas, Sector Antennas, Yagi antennas, etc.
C&T RF Antennas Inc provides the internal-external wireless antenna with many radio frequency bands such as Cellular, 6G, 5G, 4G, 3G, NB-IoT, GNSS, GPS, Dual-band Wifi, 5.8 GHz, 2.4 GHz, 169MHz, 230MHz, 315MHz, 433MHz, 868MHz, 915MHz LoRa, UWB, RFID, ADS-B, etc.
C&T RF Antennas Inc provides single-band, dual-band, and multi-band antennas such as 3in1 combination antennas 4G/GPS/Wifi antennas, 2in1 4G/GPS antennas, GSM/GPS antennas, 4G/Wifi antennas, GPS/Wifi antennas, etc. for Wi-Fi And Bluetooth, GPS And GNSS, LoRa And ISM, IoT, And M2M applications.
Contact the C&T RF sales team for more details on the High-performance & High-gain Flexible 5GNR PCB Antenna Ipex Antennas such as the 4G LTE 5G NR Antenna datasheet, 4G LTE 5G NR Antenna pricing, 4G LTE 5G NR Antenna inventory, or the other types of 4G LTE 5G NR antennas.
High-gain Flexible 5GNR PCB Antenna Ipex Antenna Specifications
High-gain Flexible 5GNR PCB Antenna Ipex Antenna Electrical Specifications | |
RF Antenna Type | Embedded Flexible PCB Antenna |
Model | CTRF-ANTENNA-FPC-60600-6626-IPEX |
Frequency Range | 600-6000 MHz |
Gain | 6/8dBi |
Radiation Pattern | Omnidirectional |
VSWR | ≤3.0 |
Impedance | 50 Ω |
Polarization | Vertical Polarization |
Cable Type | RG1.13 |
Cable Length | 100mm |
Connector | U.FL/IPEX |
Lightning Protection | DC-Ground |
High-gain Flexible 5GNR PCB Antenna Ipex Antenna Mechanical Specifications | |
Dimension | 82*37mm |
Weight | Approx. 8g |
Material | Flexible PCB/FPC |
Operation Temperature | -40˚C ~ +85˚C |
Storage Temperature | -40˚C ~ +80˚C |
Color | Black |
Antenna Design | Dipole Array |
Connector Pull Test | >= 1 Kg |
Safety Emission and other | RoHS Compliant |
Applications | ISM/SCADA/Utilities, M2M/IoT/NB-IoT/LoRa, LTE-M/Cat-M, 2G/3G/4G/LTE/UMTS/GSM, 5G NR/6G |
5G NR design’s features
One of the most important decisions in 5G NR design is the choice of radio waveform and multiple access technologies.
In 5G NR, we introduce scalable OFDM parameter configurations that allow support for multiple spectrum bands/types and deployment modes.
For example, 5G NR must be able to operate in millimeter wave bands with larger channel widths (e.g., hundreds of MHz).
The 3GPP 5G NR Rel-15 specification will utilize scalable OFDM parameter configurations to enable subcarrier spacing that scales with the nth power of the channel width by 2.
This way, in systems with larger bandwidths, the FFT point size also scales without increasing the complexity of processing.
Another key technology for 5G NR design is a flexible time-slot-based framework to support operators in efficiently multiplexing conceived (and unanticipated) 5G services on the same frequency.
The key technical invention that enables this flexible framework is the 5G NR self-contained time slot structure. In the new self-contained time slot structure, each 5G NR transmission is modularly processed with independent decoding capabilities, avoiding static timing relationships across time slots.
By qualifying the transmission in both the time and frequency domains, this flexible design simplifies the addition of new 5G NR features/services in the future – which provides better forward compatibility than previous generations of mobile communications.
Thanks to the fast UL/DL (uplink/downlink) transition and scalable time slot lengths (e.g. 500s at 30kHz intervals and 125s at 120kHz intervals), the 5G NR self-contained time slot architecture also delivers significantly lower latency compared to LTE.
The time slot architecture framework contains uplink/downlink scheduling, data, and acknowledgment in the same time slot.
In addition to lower latency, the modular time slot architecture design supports adaptive TDD UL/DL configurations, advanced channel reciprocity-based antenna techniques (e.g., downlink massive MIMO guidance based on fast uplink detection), and other usage scenarios through the addition of subframe headers (e.g., contention resolution headers for license-free spectrum).
These make the invention a key technology for many 5G NR requirements, and it is part of the 3GPP 5G NR specification.
Embedded Antena 4G LTE 5G NR Flexible PCB Antenna Features
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