FXP832030458D [TAOGLAS]
FXP832 Freedom Wi-Fi 2.4GHz and 4.9-6GHz Dipole Antenna;型号: | FXP832030458D |
厂家: | Taoglas |
描述: | FXP832 Freedom Wi-Fi 2.4GHz and 4.9-6GHz Dipole Antenna |
文件: | 总16页 (文件大小:1082K) |
中文: | 中文翻译 | 下载: | 下载PDF数据表文档文件 |
SPECIFICATION
Part No.
: FXP832.03.0458D
: FXP832 Freedom Wi-Fi 2.4GHz and
4.9-6GHz
Product Name
Dipole Antenna
Features
:
Flexible
Very High Efficiency
42mm*7mm*0.1mm
Ground-plane Independent
458mm (18 inches) RG174 Cable
RP-SMA(M) Straight Connector
RoHS Compliant
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1.Introduction
FXP832 is a breakthrough, very high efficiency, small, dual-band dipole
omni-directional antenna for 2.4/5 GHz bands. This antenna is designed for DSRC, V2V,
WiFi, Bluetooth, Zigbee and other applications in these bands. It is designed in such a
narrow rectangular form factor to cover most of the current applications on the market.
Taoglas FXP series are conformal flexible antennas and can fit irregular housings.
With dimensions of 42*7*.01mm it comes with double-sided 3M tape for easy “peel and
stick” mounting. This longer cable length version of the FXP832 is ideal for applications
in embedded industrial and automotive environments.
Like all embedded omni-directional antennas, care should be taken to keep the antenna
away from metal as much as possible, a minimum of 10mm is recommended.
Many module manufacturers specify peak gain limits for any antennas that are to be
connected to that module. Those peak gain limits are based on free-space conditions.
In practice, the peak gain of an antenna tested in free-space can degrade by at least 1
or 2dBi when put inside a device. So ideally you should go for a slightly higher peak gain
antenna than mentioned on the module specification to compensate for this effect,
giving you better performance.
Upon testing of any of our antennas with your device and a selection of appropriate
layout, integration technique, or cable, Taoglas can make sure any of our antennas’
peak gain will be below the peak gain limits. Taoglas can then issue a specification
and/or report for the selected antenna in your device that will clearly show it complying
with the peak gain limits, so you can be assured you are meeting regulatory
requirements for that module.
For example, a module manufacturer may state that the antenna must have less than
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2dBi peak gain, but you don’t need to select an embedded antenna that has a peak gain
of less than 2dBi in free-space. This will give you a less optimized solution. It is better
to go for a slightly higher free-space peak gain of 3dBi or more if available. Once that
antenna gets integrated into your device, performance will degrade below this 2dBi
peak gain due to the effects of GND plane, surrounding components, and device
housing. If you want to be absolutely sure, contact Taoglas and we will test. Choosing
a Taoglas antenna with a higher peak gain than what is specified by the module
manufacturer and enlisting our help will ensure you are getting the best performance
possible without exceeding the peak gain limits.
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2.Specification
ELECTRICAL
2.4 ~ 2.5GHz
<-10
Frequency
Return Loss (dB)
Peak Gain (on plastic*)
Average Gain (on plastic)
Efficiency (on plastic)
Polarization
4.9 ~ 6.0GHz
<-10
3.66dBi
5.33dBi
-1.89dBi
64.7%
-1.25dBi
74.9%
Linear
50 Ohms
Omni
Impedance
Radiation Pattern
Input Power
2W max.
MECHANICAL
Dimensions
Antenna Body Material
Cable
42mm
x
7mm
Polymer
Black 458mm (18 inches) RG174 Coaxial Cable
RP-SMA(M) Straight
Connector
Weight
7.5g
ENVIRONMENTAL
Temperature Range
Humidity
-40°C to 85°C
Non-condensing 65°C 95% RH
* FXP832 is likely to be mounted on plastic in many applications so we provide the antenna
measurement on a 2mm thickness ABS plastic.
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3. Antenna Characteristics
3.1. Return Loss
3.2.
Antenna Efficiency
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3.3. Antenna Peak Gain
3.2
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3.4. Radiation Pattern for FXP832 on 2mm ABS
y
x
z
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XY-plane
Y
X
Y
X
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XZ-plane
Z
X
Z
X
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YZ-plane
Z
Y
Z
Y
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3.5. 3D Radiation Pattern for FXP832
Z
Y
X
Figure 1. OTA setup
Fig 2. Radiation pattern at 2400 MHz
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Fig 3. Radiation pattern at 2450 MHz
Fig 4. Radiation pattern at 2500MHz
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Fig 5. Radiation pattern at 4900 MHz
Fig 6. Radiation pattern at 5150 MHz
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Fig 7. Radiation pattern at 5550 MHz
Fig 8. Radiation patterns at 5850MHz
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4.Antenna Drawing
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5.Packaging
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