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GW.11.A113
RF Antenna, 2.4835 GHz to 2.4 GHz, 2.3 dBi, 1 W, 50ohm, Linear Vertical, SMA Connector
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- Manufacturer: TAOGLAS
- Product type:
- Gain: 2.3dBi
- SVHC: To Be Advised
- VSWR: -
- Input Power: 1W
- Antenna Type: WiFi / Bluetooth / Zigbee / ISM
- Frequency Max: 2.4835GHz
- Frequency Min: 2.4GHz
- Product Range: -
- Input Impedance: 50ohm
- Antenna Mounting: SMA Connector
- Antenna Polarisation: Linear Vertical
| Delivery and price | |
|---|---|
| Units per pack | 250 |
| Price | 4.14 € |
| Current stock | 10+ |
| Lead time | 30 days |
Pre TAOGLAS.
## **Specification**
- Part No. : **GW.11.A113**
Product Name :
- 2.4GHz 2.3dBi Terminal Mount Dipole Antenna
Description : Hinged TPE Housing Connector: SMA(M) Length 84mm
ROHS & REACH Compliant
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aT TAOGLAS.
## **1. Introduction**
The GW.11 2.4 GHz dipole SMA terminal mount antenna is ideal for 2.4 GHz wireless applications such as Bluetooth and Wireless LAN. At only 84mm in length omnidirectional 2.3dBi gain across all bands ensures constant reception and transmission.
The antenna structure is designed for robust handling and the housing is made with TPE giving superior environmental reliability and a quality finish. The antenna can be rotated 90 degrees on the base hinge for ease of placement.
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 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
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aT TAOGLAS.
module manufacturer and enlisting our help will ensure you are getting the best performance possible without exceeding the peak gain limits.
It is better not to select an embedded antenna with very low free-space peak gain (<2dBi) directly, as this antenna would have worse performance in your device, and lead to compromised performance compared to using a Taoglas antenna.
Connector mount is fully customizable.
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a TAOGLAS.
## **2.Specification Table**
|Parameter<br>~~a~~|ELECTRICAL|ELECTRICAL|ELECTRICAL|ELECTRICAL|
|---|---|---|---|---|
|Communication<br>System<br>~~a~~|Bluetooth|Wi-Fi|ZigBee|2.4GHz ISM|
||2401-2480|2412-2462|2410-2480|2400-2483.5|
|Peak Gain(dBi)*|2.3||||
|Average Gain(dBi)*|-0.88||||
|Efficiency (%)*|80%||||
|Return Loss(dB)*|- 10 dB Maximum||||
|Radiation|Omni-directional||||
|Polarization|Linear Vertical||||
|Power Handling|1W||||
|Impedance|50 Ω||||
|~~——E—E—*—K<T>*—=;<~C>—;_—>E~~|MECHANICAL<br>~~——E—E—*—K<T>*—=;<~C>—;_—>E~~||||
|Antenna Cover|TPE||||
|Antenna Base|PC & PBT||||
|Color|Black||||
|Connector|SMA(M)||||
|~~a~~|ENVIRONMENTAL||||
|Operation<br>Temperature<br>~~a~~|-40°C ~ + 85°C||||
|Storage Temperature|-40°C ~ + 85°C||||
*The antenna was measured in free space
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## TAOGLAS.
## **3. Antenna Characteristics**
## **3.1 Return Loss**
## **3.2 Peak Gain**
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## TAOGLAS.
## **3.3 Average Gain**
## **3.4 Efficiency**
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## TAOGLAS.
## **4. Radiation Patterns**
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**==> picture [57 x 10] intentionally omitted <==**
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XY Plane<br>**----- End of picture text -----**<br>
## XZ Plane
## YZ Plane
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X<br>**----- End of picture text -----**<br>
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270 90 Y<br>240 / 120 —2400MHz<br>——2450MHz<br>210 150<br>180 (dBi) wom 2500MHz<br>Z<br>0<br>5<br>330 30<br>-5<br>-15<br>300 ] 60<br>NZ -25 \ \ / / a \<br>Ld DN \\}// Z\ =<br>t+ —f -35 rw x \ } fh C\ _\— ~~<br>270 -45 90 X<br>1 me ra y } \ x SO 7— _<br>v va J /\\ \ a 7<br>pa /+-* \ NL —— 2400MHz<br>240 120<br>2450MHz<br>2500MHz<br>210 150<br>180 (dBi)<br>Z<br>0<br>5<br>330 7 30<br>300 60<br>\)<br>{<br>270 90<br>" —2400MHz<br>240 \ 120 ——2450MHz<br>210 150<br>OMHz<br>180 (dBi) Y<br>**----- End of picture text -----**<br>
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## **5. Drawing**
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## **6. APPLICATION NOTE**
- **6.1 The GW.11 antenna measurment setup (40mm*60mm PCB board)**
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## TAOGLAS.
## **6.2 Return Loss when antenna setup on different**
## **conditions**
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— On 30 x 30cm ground plane, antenna right angle<br>**----- End of picture text -----**<br>
**6.3 The GW.11 antenna measurment setup**
## **(40mmX100mm PCB board)**
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## TAOGLAS.
## **6.4 Return Loss when antenna setup on different**
## **conditions**
**6.5 The GW.11 antenna measurment setup**
## **(90mmX150mm PCB board)**
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## **6.6 Return Loss when antenna setup on different conditions**
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yr TAOGLAS.
## **7. Packaging**
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aT TAOGLAS.
Taoglas makes no warranties based on the accuracy or completeness of the contents of this document and reserves the right to make changes to specifications and product descriptions at any time without notice. Taoglas reserves all rights to this document and the information contained herein. Reproduction, use or disclosure to third parties without express permission is strictly prohibited.
- © Taoglas
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Updated at June 9, 2026
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