| Part | RoHS | Manufacturer | RF or Microwave Device Type | Mounting Feature | No. of Terminals | Package Body Material | Screening Level | Polarization | Maximum Voltage Standing Wave Ratio | No. of Elements | Omni-Directional | Maximum Transmission Power | Construction | Package Equivalence Code | Characteristic Impedance | Maximum Operating Temperature | Application | Gain | Wind Rating | Minimum Operating Temperature | Terminal Finish | Bandwidth | Front-To-Back Ratio | Diameter | Additional Features | Beamwidth-E | JESD-609 Code | Minimum Operating Frequency | Beamwidth-H | Maximum Operating Frequency |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
Thales Components |
BASE STATION/BROADCAST TRANSMISSION ANTENNA |
DUAL POLARIZED |
1.4 |
NO |
250 W |
65 Cel |
GSM900 |
16 dB |
125.268 mph |
-55 Cel |
29 dB |
7.8 deg |
870 MHz |
65 deg |
960 MHz |
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|
Thales Components |
BASE STATION/BROADCAST TRANSMISSION ANTENNA |
DUAL POLARIZED |
1.3 |
NO |
200 W |
50 ohm |
70 Cel |
GSM900 |
15.8 dB |
125.268 mph |
-55 Cel |
16 dB |
6.5 deg |
870 MHz |
90 deg |
960 MHz |
||||||||||||||
|
Thales Components |
BASE STATION/BROADCAST TRANSMISSION ANTENNA |
LINEAR VERTICAL |
1.5 |
YES |
500 W |
50 ohm |
70 Cel |
GSM900 |
11 dB |
125.268 mph |
-30 Cel |
10 deg |
870 MHz |
360 deg |
960 MHz |
|||||||||||||||
|
Thales Components |
BASE STATION/BROADCAST TRANSMISSION ANTENNA |
LINEAR VERTICAL |
1.3 |
NO |
500 W |
50 ohm |
65 Cel |
GSM900 |
16 dB |
125.268 mph |
-55 Cel |
25 dB |
8 deg |
870 MHz |
85 deg |
960 MHz |
||||||||||||||
|
Thales Components |
BASE STATION/BROADCAST TRANSMISSION ANTENNA |
DUAL POLARIZED |
1.3 |
NO |
300 W |
50 ohm |
70 Cel |
GSM900 |
15 dB |
125.268 mph |
-55 Cel |
25 dB |
8 deg |
870 MHz |
120 deg |
960 MHz |
||||||||||||||
|
|
Phoenix Contact |
BASE STATION/BROADCAST TRANSMISSION ANTENNA |
LINEAR VERTICAL |
YES |
COAXIAL |
50 ohm |
65 Cel |
MOBILE SYSTEM/MULTIPOINT COMMUNICATION SYSTEM |
2 dB |
-20 Cel |
RSMA-M |
75 deg |
360 deg |
|||||||||||||||||
|
|
Abracon |
BASE STATION/BROADCAST TRANSMISSION ANTENNA |
PANEL MOUNT |
RHCP |
2 |
NO |
COAXIAL |
50 ohm |
85 Cel |
RFID |
-40 Cel |
MMCX |
902 MHz |
928 MHz |
||||||||||||||||
|
|
Abracon |
BASE STATION/BROADCAST TRANSMISSION ANTENNA |
PANEL MOUNT |
RHCP |
2 |
NO |
COAXIAL |
50 ohm |
85 Cel |
RFID |
-40 Cel |
MMCX |
902 MHz |
928 MHz |
||||||||||||||||
|
|
Abracon |
BASE STATION/BROADCAST TRANSMISSION ANTENNA |
PANEL MOUNT |
LINEAR |
1.66 |
NO |
COAXIAL |
50 ohm |
85 Cel |
BLUETOOTH/IOT/WIFI/ZIGBEE |
-40 Cel |
ANTENNA GAIN IS -5.16 DBI, IPEX |
2400 MHz |
2484 MHz |
||||||||||||||||
|
|
KYOCERA AVX |
BASE STATION/BROADCAST TRANSMISSION ANTENNA |
||||||||||||||||||||||||||||
|
|
Abracon |
BASE STATION/BROADCAST TRANSMISSION ANTENNA |
PANEL MOUNT |
RHCP |
NO |
COAXIAL |
50 ohm |
RFID |
SMA |
854 MHz |
882 MHz |
|||||||||||||||||||
|
|
Abracon |
BASE STATION/BROADCAST TRANSMISSION ANTENNA |
THROUGH HOLE MOUNT |
1 |
RHCP |
1.5 |
NO |
COMPONENT |
50 ohm |
RFID |
918 MHz |
927 MHz |
||||||||||||||||||
|
|
Abracon |
BASE STATION/BROADCAST TRANSMISSION ANTENNA |
SURFACE MOUNT |
1 |
RHCP/LINEAR |
NO |
COMPONENT |
85 Cel |
RFID |
1 dB |
-40 Cel |
865 MHz |
868 MHz |
|||||||||||||||||
|
|
Abracon |
BASE STATION/BROADCAST TRANSMISSION ANTENNA |
SURFACE MOUNT |
1 |
LINEAR |
NO |
COMPONENT |
85 Cel |
RFID |
1 dB |
-40 Cel |
865 MHz |
868 MHz |
|||||||||||||||||
|
|
Abracon |
BASE STATION/BROADCAST TRANSMISSION ANTENNA |
SURFACE MOUNT |
1 |
LINEAR |
NO |
COMPONENT |
85 Cel |
RFID |
3 dB |
-40 Cel |
902 MHz |
928 MHz |
|||||||||||||||||
|
|
TE Connectivity |
BASE STATION/BROADCAST TRANSMISSION ANTENNA |
9 dB |
|||||||||||||||||||||||||||
|
Molex |
BASE STATION/BROADCAST TRANSMISSION ANTENNA |
PANEL MOUNT |
LINEAR |
COAXIAL |
50 ohm |
85 Cel |
-40 Cel |
SMA-F, IT CAN ALSO OPERATE AT 5000 to 6000 MHZ and 6000 TO 7125 MHZ |
2400 MHz |
2500 MHz |
RF/Microwave antennas are devices designed to radiate or receive electromagnetic waves in the radio frequency (RF) and microwave frequency range. They are used in a wide range of applications, including wireless communications, radar systems, satellite communications, and broadcast systems.
RF/Microwave antennas are typically made up of conductive elements such as wires, rods, or plates, which are placed in a specific arrangement to produce the desired radiation pattern. The design of the antenna is critical for achieving good performance in terms of gain, directivity, and efficiency.
There are many types of RF/Microwave antennas, each with its own unique characteristics and advantages. Some common types include dipole antennas, patch antennas, helical antennas, and horn antennas. Each type of antenna is suited for specific applications and can be optimized for different frequency ranges.
RF/Microwave antennas are critical components in modern wireless communication systems, and their performance is a key factor in the overall performance of the system. With advances in technology, the design and performance of RF/Microwave antennas continue to improve, allowing for better signal quality and higher data rates in wireless communication systems.