NimbeLink

NimbeLink

NimbeLink is a well-established company that specializes in the design and development of cellular-based IoT solutions. The company offers a comprehensive range of products and services, including embedded modems, asset tracking devices, and cellular connectivity solutions tailored for the Internet of Things (IoT) applications. NimbeLink's expertise in cellular technology enables them to provide reliable and secure connectivity solutions, empowering businesses to effectively deploy and manage IoT devices across various industries such as agriculture, energy, transportation, and industrial automation. With a strong focus on innovation and customer satisfaction, NimbeLink continues to be a leading provider of cutting-edge IoT solutions, helping businesses harness the power of cellular connectivity to drive operational efficiency and unlock new opportunities in the rapidly evolving IoT landscape.

RF Antennas

Results:
7
Series
Frequency Range
Gain
Applications
Number of Bands
Height (Max)
Antenna Type
Frequency Group
Termination
Mounting Type
RF Family/Standard
VSWR
Frequency (Center/Band)
Features
Ingress Protection
Grade
Qualification
Power - Max
Return Loss
Results remaining7
Applied Filters:
NimbeLink
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ImageProduct DetailPriceAvailabilityECAD ModelHeight (Max)FeaturesIngress ProtectionPower - MaxReturn LossMounting TypeRF Family/StandardGradeSeriesFrequency GroupFrequency (Center/Band)Frequency RangeAntenna TypeNumber of BandsVSWRGainTerminationApplicationsQualification
F56NBAAA-G150U
LTE FLEX ANTENNA
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-
-
-
Adhesive
Cellular
-
Profile Contour
Wide Band
-
617MHz ~ 960MHz, 1.7GHz ~ 6GHz
FlexPIFA
7
01:02.5
1.7dBi, 3.5dBi, 3dBi, 4.2dBi, 4dBi, 5.1dBi, 6.9dBi
U.FL
2G, 3G, 4G, 5G, LTE
-
F47NBAAB-G150U
LTE FLEX ANTENNA
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Quantity
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PCB Symbol, Footprint & 3D Model
-
Cable - 150mm
-
-
-
Adhesive
Cellular
-
Profile Contour
-
-
698MHz ~ 960MHz, 1.55GHz ~ 1.61GHz, 1.7GHz ~ 2.7GHz
FlexPIFA
4
01:02.5
2.9dBi, 2.5dBi, 3.7dBi, 2.9dBi
U.FL
2G, 3G, 4G, LTE
-
F47AGCHA-G150U
LTE FLEX ANTENNA
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-
-
-
-
Cellular
-
-
-
-
-
-
-
10
3dBi
U.FL
-
-
ET47AGBNA
DIPOLE ANTENNA
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Quantity
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PCB Symbol, Footprint & 3D Model
8.106" (205.90mm)
-
-
-
-
-
Cellular
-
-
Ultra Wide Band
-
703MHz ~ 960MHz, 1.71GHz ~ 2.17GHz, 2.3GHz ~ 2.4GHz, 2.5GHz ~ 2.69GHz
Whip, Straight
4
-
-0.2dBi, 1.9dBi, 3.5dBi, 3.7dBi, 1.5dBi, 2.4dBi, 2.6dBi, 4.7dBi, 5.6dBi
SMA
Cellular, LTE
-
CRJKS0010-LNA-G65U
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Quantity
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PCB Symbol, Footprint & 3D Model
0.264" (6.70mm)
LNA
-
-
-
-
Navigation
-
-
UHF (1GHz ~ 2GHz)
1.583GHz
1.559GHz ~ 1.610GHz
Ceramic Patch
1
-
17dBi
-
GPS
-
ET56AGBJA
DIPOLE ANTENNA
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Quantity
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PCB Symbol, Footprint & 3D Model
-
-
-
-
-
-
Cellular
-
-
-
-
-
-
-
10
3dBi
U.FL
-
-
CRJKS0009-LNA-LM5X3000SMA
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Quantity
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PCB Symbol, Footprint & 3D Model
0.535" (13.60mm)
LNA
-
-
-
Magnetic
-
-
-
UHF (1GHz ~ 2GHz)
1.5845GHz
1.559GHz ~ 1.61GHz
Ceramic Patch
1
-
23dB
SMA
GPS
-

About  RF Antennas

RF antennas are crucial components used in the reception and transmission of electromagnetic waves across a broad range of radio frequencies. These antennas are specifically designed to operate within the DC to 18GHz frequency range, making them compatible with various RF families, including Bluetooth, Cellular, General ISM, Navigation, Wi-Fi, and 802.15.4. There is a wide variety of RF antenna types available, each optimized for specific applications and performance characteristics. Some of the commonly used RF antenna types include: Bead Antennas: These compact antennas are often used in RFID applications and offer omnidirectional radiation patterns. Biconical Antennas: Biconical antennas are designed for wideband applications and feature a broad frequency range and omnidirectional radiation patterns. Blade Antennas: Blade antennas are thin, planar antennas that are ideal for portable devices and have a narrow radiation pattern. Ceramic Patch Antennas: These antennas are commonly used in wireless communication systems, such as GPS and cellular devices, and provide high gain with directional radiation patterns. Chip Antennas: Chip antennas are small, surface-mountable antennas that are commonly used in IoT devices and offer compact size and omnidirectional radiation patterns. Coiled Inductor Antennas: These antennas consist of a coil of wire wound around a ferrite or iron core and are often used in AM/FM radios and wireless charging systems. Corner Reflector Antennas: Corner reflector antennas use a corner reflector structure to achieve higher gain and are commonly used in radar and satellite communication systems. Directional Antennas: These antennas focus the radiation pattern in a specific direction, providing higher gain and longer range. Examples include Yagi and dish antennas. Dome Antennas: Dome antennas are aesthetically pleasing and often used in indoor wireless communication systems like Wi-Fi networks. Flat Antennas: These thin, planar antennas are suitable for embedding in devices like laptops and smartphones, offering low profile and omnidirectional radiation patterns. Flex Notch Antennas: Flex notch antennas are flexible antennas used in applications where size and shape constraints exist, such as wearable devices. Helical Antennas: Helical antennas are compact, coil-shaped antennas that offer circular polarization and are commonly used in applications like GPS and wireless communication systems. Horn Antennas: Horn antennas have a flared shape, enabling high directivity and gain, and are often used in microwave applications and radar systems. Log Periodic Antennas: These antennas have a wide frequency range and consistent performance, making them suitable for applications requiring broad bandwidth, such as TV and radio broadcasting. Loop Antennas: Loop antennas are simple and compact, often used in portable devices like AM/FM radios and RFID systems. Module Antennas: These antennas are integrated into RF modules and are commonly used in wireless communication modules and IoT devices. Whip Antennas: Whip antennas consist of a straight, flexible rod and are commonly used in portable radios and wireless communication systems. Yagi Antennas: Yagi antennas are highly directional and offer high gain, making them suitable for long-range communication applications like TV reception and point-to-point links. Puck Antennas: Puck antennas are compact, puck-shaped antennas typically used in GPS devices and wireless communication systems. The selection of the appropriate RF antenna type depends on factors such as the desired frequency range, gain, radiation pattern, and application-specific requirements. These antennas are essential for enabling wireless communication, data transmission, and reception across various industries, including telecommunications, aerospace, defense, automotive, and IoT. In summary, RF antennas are available in a wide range of types, each designed to cater to specific applications and performance characteristics. These antennas enable the reception and transmission of electromagnetic waves in various radio frequency bands, supporting seamless wireless communication and connectivity in numerous industries and technologies.