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TS.07.0113
RF Antenna, Monopole, Linear, 1.561 GHz to 1.61 GHz, SMA Connector Mount, -0.23 dBi, 10 W
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- Manufacturer: TAOGLAS
- Product type:
- Gain: -0.23dBi
- SVHC: To Be Advised
- VSWR: -
- Input Power: 10W
- Antenna Type: Monopole
- Frequency Max: 1.61GHz
- Frequency Min: 1.561GHz
- Product Range: -
- Input Impedance: 50ohm
- Antenna Mounting: SMA Connector
- Antenna Polarisation: Linear
| Delivery and price | |
|---|---|
| Units per pack | 250 |
| Price | 6.58 € |
| Current stock | 25+ |
| Lead time | 30 days |
## **SPECIFICATION**
|Part No.|:|**TS.07.0113**|
|---|---|---|
|Product Name|:|Orange Straight TS.07|
|||GPS/GLONASS/GALILEO/BeiDou Monopole|
|||Passive Antenna|
|Features|:|1561-1610 MHz|
|||72 ± 1.5mm Length|
|||Standard with SMA(M) connector|
|||Low profile|
|||Extended operation temperature range (-40 to|
|||+85C)|
|||Top quality housing with brass hinge and|
|||connector|
|||Antenna must have a view of the Sky|
|||ROHS Compliant|
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## **1. Introduction**
The compact TS.07, with hinged rotatable SMA connector, is an impressively high efficiency monopole antenna, providing coverage among GPS, GLONASS, GAILEO, and BeiDou frequencies.
With its navigation system frequency range, plus compact design, TS.07 can fit and function perfectly with vehicle tracking devices, telematics devices, and other remote monitoring systems.
This 72mm long monopole antenna performs efficiently from 1561 MHz to 1610 MHz, covering GPS, GLONASS, GAILEO, and BeiDou frequencies. When connected to the device ground-plane, the TS.07 is capable of achieving more than 70% efficiency.
The TS.07, as all monopole antennas, works best when connected directly to the ground-plane of the device main-board or the device's metal enclosure. As with all passive antennas, using a coax with more than ~1.5 dB of loss will result in reduced receiver sensitivity. Taoglas recommends connecting the TS.07 directly to the device ground-plane for best performance.
The robust brass hinge enables the TS.07 to be oriented in all directions, providing user to maximize performance with minimum effort.
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## **2. Specification**
|ELECTRICAL<br>~~—l_—_—Ei—E&_@_i—~E~~|ELECTRICAL<br>~~—l_—_—Ei—E&_@_i—~E~~|ELECTRICAL<br>~~—l_—_—Ei—E&_@_i—~E~~|ELECTRICAL<br>~~—l_—_—Ei—E&_@_i—~E~~|ELECTRICAL<br>~~—l_—_—Ei—E&_@_i—~E~~|
|---|---|---|---|---|
|||**Straight Position**|||
|Band||BEIDOU|GPS/GAILEO|GLONASS|
|Frequency (MHz)||1561|1575.42|1602|
|Average Gain (dBi)||-4.70|-4.48|-4.13|
|Efficiency (%)<br>Peak Gain (dBi)|In Free Space|33.89<br>-0.79|35.65<br>-0.55|38.66<br>-0.23|
|Return Loss (dB)|||< -7||
|Average Gain (dBi)||-1.53|-1.50|-1.41|
|Efficiency (%)|With 15x9cm|70.29|70.78|72.23|
|Peak Gain (dBi)|Ground Plane|1.99|1.94|1.96|
|Return Loss (dB)|||< -10||
|Average Gain (dBi)||-1.35|-1.41|-1.50|
|Efficiency (%)<br>Peak Gain (dBi)|On 30x30cm<br>Metal Plane<br>Edge|73.20<br>4.05|72.35<br>4.04|70.81<br>3.98|
|Return Loss (dB)|||< -10||
|Average Gain (dBi)||-2.10|-2.22|-2.36|
|Efficiency (%)<br>Peak Gain (dBi)|On 30x30cm<br>Metal Plane<br>Center|61.66<br>2.26|60.02<br>2.15|58.05<br>2.21|
|Return Loss (dB)|||< -4||
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|>a<br>TAOGLAS.|>a<br>TAOGLAS.|>a<br>TAOGLAS.|>a<br>TAOGLAS.|>a<br>TAOGLAS.|
|---|---|---|---|---|
|**Bent Position**|||||
|Average Gain (dBi)|In Free Space|-5.31|-5.06|-4.68|
|Efficiency (%)||29.48|31.17|34.02|
|Peak Gain (dBi)||-0.82|-0.59|-0.16|
|Return Loss (dB)||< -7|||
|Average Gain (dBi)|With 15x9cm<br>Ground Plane|-1.53|-1.50|-1.41|
|Efficiency (%)||70.29|70.78|72.23|
|Peak Gain (dBi)||1.99|1.94|1.96|
|Return Loss (dB)||< -10|||
|Average Gain (dBi)|On 30x30cm<br>Metal Plane<br>Edge|-1.12|-1.14|-1.17|
|Efficiency (%)||77.26|76.86|76.32|
|Peak Gain (dBi)||4.39|4.37|4.31|
|Return Loss (dB)||< -10|||
|Average Gain (dBi)|On 30x30cm<br>Metal Plane<br>Center|-2.50|-2.60|-2.73|
|Efficiency (%)||56.19|54.96|53.33|
|Peak Gain (dBi)||2.04|1.91|1.79|
|Return Loss (dB)||< -4|||
|Radiation||Omni-directional|||
|Polarization||Linear|||
|Impedance||50 Ω|||
|Input Power||10W|||
|MECHANICAL<br>~~Le~~|||||
|Antenna Length||72mm|||
|Antenna Diameter||10mm|||
|Casing||POM|||
|Connector||SMA(M)|||
|Weight||6g|||
|Recommended Torque for Mounting||0.9N·m|||
|Max. Torque for Mounting||1.176N·m|||
|ENVIRONMENTAL<br>~~Le~~|||||
|Operation Temperature||-40°C ~ + 85°C|||
|Storage Temperature||-40°C ~ + 85°C|||
|Humidity||Non-condensing 65°C 95% RH|||
|SPE-14-8-115/A/EW<br>Page 4 of 30|||||
SPE-14-8-115/A/EW Page 4 of 30
## **3. Antenna Characteristics**
## **3.1 Testing setup**
## **Antenna Straight Position**
a)In free space
b)with 15*9cm c)with 30*30cm Ground Ground Metal Edge
d)with 30*30cm Ground Metal Center
**Antenna bent Position**
a)In free space
b)with 15*9cm c)with 30*30cm Ground Ground Metal Edge
d)with 30*30cm Ground Metal Center
**Figure.1** Measurement environments
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**3.2 Return loss**
**Figure2.** Return loss of TS.07 antenna with straight Position
**Figure3.** Return loss of TS.07 antenna with bent Position
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## **3.3 Efficiency**
**Figure4.** Efficiency of TS.07 antenna with straight Position
**Figure5.** Efficiency of TS.07 antenna with bent Position
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## **3.4 Peak gain**
**Figure6.** Peak gain of TS.07 antenna with straight Position
**Figure7.** Peak gain of TS.07 antenna with bent Position
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SPE-14-8-115/A/EW
## **3.5 Average gain**
**Figure8.** Average gain of TS.07 with antenna straight Position
**Figure9.** Average gain of TS.07 antenna with bent Position
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SPE-14-8-115/A/EW
## **4. Antenna Radiation Patterns**
The antenna radiation patterns were measured in a CTIA certified ETS Anechoic Chamber. The measurement setups are shown below.
## **Antenna with Straight Position**
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Y<br>Y<br>X<br>X<br>Z<br>Z<br>**----- End of picture text -----**<br>
In free space
On 15x9cm ground plane
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**----- Start of picture text -----**<br>
Y<br>X<br>Z<br>**----- End of picture text -----**<br>
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**----- Start of picture text -----**<br>
Y<br>X<br>Z<br>**----- End of picture text -----**<br>
On 30x30cm metal ground center
On 30x30cm metal ground edge
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## **Antenna Bent Position**
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**----- Start of picture text -----**<br>
Y<br>Y<br>X<br>X<br>Z<br>Z<br>On 15x9cm ground plane<br>**----- End of picture text -----**<br>
In free space
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**----- Start of picture text -----**<br>
Y<br>X<br>Z<br>**----- End of picture text -----**<br>
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**----- Start of picture text -----**<br>
Y<br>X<br>Z<br>**----- End of picture text -----**<br>
On 30x30cm metal ground center
On 30x30cm metal ground edge
**Figure.10.** Testing Setup in ETS Anechoic Chamber
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## **4.1 2D Radiation pattern (Straight Position in free space)** XY Plane
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X<br>0<br>330 — ~ 30<br>300 eT 60<br>Y<br>CV \ at<br>2A0 ~LL 1 120<br>210) 480<br>180 (dB)<br>XZ Plane<br>Z<br>0<br>330 — ~ 30<br>300 . Jf 60<br>270 | [=p —} | 90 X<br>**----- End of picture text -----**<br>
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**----- Start of picture text -----**<br>
YZ Plane<br>Z<br>0<br>330 — .30<br>300 \ 4 60<br>270 | 88 — ) ) 90 Y<br>**----- End of picture text -----**<br>
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**4.2 2D Radiation pattern (Straight Position with 15x9cm ground plane)** XY Plane
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**----- Start of picture text -----**<br>
X<br>0<br>330 — ~30<br>300, PTT, 60<br>270, {, 4-45) 90 Y<br>et<br>240 Ff<br>C<br>[| \b<br>210 == 150<br>180 (a8)<br>XZ Plane<br>Z<br>0<br>330 — ~30<br>300, NR \ 60<br>270/{ {45 »_}} 90 X<br>**----- End of picture text -----**<br>
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## YZ Plane
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**----- Start of picture text -----**<br>
Z<br>0<br>~ 30<br>60<br>Y<br>+ | | | hh \90<br>**----- End of picture text -----**<br>
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**4.3 2D Radiation pattern (Straight Position with 30x30cm ground plane edge)**
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**----- Start of picture text -----**<br>
XY Plane<br>X<br>0<br>330 — ~ 30<br>300. BOTH, 60<br>Y<br>NV et 564M<br>o40\\ LT y\\ ) /4(—-1575.42MHz<br>[| \e —=1602MHz<br>210 150<br>=180 (dB)<br>XZ Plane<br>Z<br>0<br>330 — ~ 30<br>300, aa a 60<br>270, {| =48 }}} |} } 90<br>X<br>\ \ VV ARMIT\SZN SI 7 ] —=1561MHz<br>**----- End of picture text -----**<br>
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**----- Start of picture text -----**<br>
YZ Plane<br>Z<br>0<br>330 ~30<br>300, NS 60<br>270, {| | {48 +} } |} \j90 Y<br>Da561 MHZ<br>**----- End of picture text -----**<br>
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**==> picture [448 x 507] intentionally omitted <==**
**----- Start of picture text -----**<br>
4.4 2D Radiation pattern (Straight Position with 30x30cm ground<br>plane center)<br>X<br> XY Plane<br>0<br>330 — ~ 30<br>300 PTS 60<br>270 | 45°) } ff 90<br>Y<br>Ot561mz<br>240° Ty\ \ ) 4 99——-1575.42MHz<br>NO | —=1602MHz<br>210 150<br>180 (dB)<br>XZ Plane<br>Z<br>0<br>330 — ~30<br>300 BT HK 60<br>270, {| -45 }—)—} I 90 X<br>**----- End of picture text -----**<br>
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## YZ Plane
**==> picture [157 x 160] intentionally omitted <==**
**----- Start of picture text -----**<br>
Z<br>0<br>60<br>| 4« 90 Y<br>**----- End of picture text -----**<br>
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## **4.5 2D Radiation pattern (Bent Position in free space)** XY Plane
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**----- Start of picture text -----**<br>
X<br>0<br>330 — ~ 30<br>300 BOTH, 60<br>270 | tf |} —} J} 90 Y<br>Ot<br>240) Ty\ \ (49:<br>—<br>210~_/ | ~~ 150<br>180 (aB)<br>XZ Plane<br>Z<br>0<br>330 — ~ 30<br>300 ——-~ 60<br>270|-} {| (-45 »}}) |} 90 X<br>**----- End of picture text -----**<br>
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**----- Start of picture text -----**<br>
YZ Plane<br>Z<br>0<br>330 — ~30<br><a,<br>300 60<br>270 {| 1-45 + | |) |90 Y<br>**----- End of picture text -----**<br>
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**==> picture [459 x 510] intentionally omitted <==**
**----- Start of picture text -----**<br>
4.6 2D Radiation pattern (Bent Position with 15x9cm ground plane)<br>XY Plane<br>X<br>0<br>330 — ~30<br>300. BOTH, 60<br>Y<br>nt 561mHz<br>240\N LT y\\ J /4("1575.42MHz<br>[|<br>f<br>\e —=1602MHz<br>210 === 150<br>180 (aB)<br>XZ Plane<br>Z<br>0<br>330 — ~30<br>300, BH, 60<br>270'{ {| (45 - } } ) \ \90 X<br>**----- End of picture text -----**<br>
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**----- Start of picture text -----**<br>
YZ Plane<br>Z<br>0<br>330 ~30<br>300 eT 60<br>270 {48} N90 Y<br>**----- End of picture text -----**<br>
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**4.7 2D Radiation pattern (Bent Position with 30x30cm ground plane edge)**
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**----- Start of picture text -----**<br>
XY Plane<br>X<br>0<br>330 — ~ 30<br>300, PTH 60<br>270, | =45 }—} |) 90 Y<br>Vt<br>o40\\ 4 5 em<br>[| \<br>210 = 150<br>180 (eB)<br>XZ Plane<br>Z<br>0<br>330 — ~30<br>300, BON 60<br>270| { {45} }} }} 90 X<br>**----- End of picture text -----**<br>
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**==> picture [329 x 172] intentionally omitted <==**
**----- Start of picture text -----**<br>
YZ Plane<br>Z<br>0<br>330 — 30<br>300 ee 60<br>270, {48} 90 Y<br>**----- End of picture text -----**<br>
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**==> picture [474 x 513] intentionally omitted <==**
**----- Start of picture text -----**<br>
4.8 2D Radiation pattern (Bent Position with 30*30cm ground plane_<br>center)<br>X<br>XY Plane<br>0<br>330 — ~30<br>300 eT 60<br>270 | 45 }} fF} 90<br>Y<br>rt56 1MHz<br>240\ / IT\ \ J /49(—1575.42MHz<br>NO | —=1602MHz<br>210 150<br>180 (aB)<br>XZ Plane<br>Z<br>0<br>330. — ~ 30<br>300, BT, 60<br>270} +-45 +} | 90 X<br>**----- End of picture text -----**<br>
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**----- Start of picture text -----**<br>
YZ Plane<br>Z<br>0<br>33030<br>300 BH, 60<br>Y<br>**----- End of picture text -----**<br>
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## **5. Installation**
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**----- Start of picture text -----**<br>
6. Drawing<br>**----- End of picture text -----**<br>
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**----- Start of picture text -----**<br>
7 Pin<br>**----- End of picture text -----**<br>
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SPE-14-8-115/A/EW
## **7. Packaging**
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.
Copyright © Taoglas Ltd.
SPE-14-8-115/A/EW Page 30 of 30
Updated at June 9, 2026
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