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FXUB63.07.0150C
PCB Antenna, 698MHz to 3GHz, 2.3 VSWR, 4.5dBi Gain, 50ohm, Linear Polarisation, Adhesive
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- Manufacturer: TAOGLAS
- Product type:
- Antenna Type:PCB; Frequency Min:698MHz; Frequency Max:3GHz; Antenna Mounting:Adhesive; Gain:4.5dBi; VSWR:2.3; Input Power:5W; Input Impedance:50ohm; Antenna Polarisation:Linear; Product
- Gain: 4.5dBi
- SVHC: To Be Advised
- VSWR: 2.3
- Input Power: 5W
- Antenna Type: PCB
- Frequency Max: 3GHz
- Frequency Min: 698MHz
- Product Range: -
- Input Impedance: 50ohm
- Antenna Mounting: Adhesive
- Antenna Polarisation: Linear
| Delivery and price | |
|---|---|
| Units per pack | 250 |
| Price | 2.9 € |
| Current stock | 200+ |
| Lead time | 30 days |
## **SPECIFICATION** ## **PATENT PENDING** Part No: **FXUB63.07.0150C** Product Name: LTE Wide Band Flex Antenna 698MHz -3000 MHz Features: Patent Pending Ground Plane Independent 698-3000 MHz >45% Efficiency on All bands 5 dBi Peak Gain 96*21*0.2 mm size IPEX MHFI (U.FL Compatible) RoHS Compliant SPE-14-8-054/C/RC Page 1 of 15 **==> picture [188 x 94] intentionally omitted <==** ## **1. Introduction** The patent pending FXUB63 flexible ultra wideband antenna has been designed to cover all working frequencies in the 698-3000MHz spectrum, covering all Cellular, 2.4GHz Wi-Fi, ISM and AGPS. The antenna is delivered with a flexible body with excellent efficiencies on all bands, ground independent, with cable and connector for easy installation. The FXUB63 flexible polymer antenna, at 96*21*0.2mm, is ultra thin and truly ultra wideband with high efficiencies across the bands. It is assembled by a simple “peel and stick” process, attaching securely to non-metal surfaces via 3M adhesive. It enables designers to use only one antenna that covers all common LTE frequencies. The FXUB63 antenna is a durable flexible polymer antenna that has a peak gain of 5dBi, an efficiency of more than 45% across the bands and is designed to be mounted directly onto a plastic or glass cover. It is an ideal choice for any device maker that needs to keep manufacturing costs down over the lifetime of a product. It is ground plane independent and delivered with a cable and connector for easy connecting to the wireless module or customer PCB. Cables and Connectors are customizable. Like all such antennas, care should be taken to mount the antenna at least 10mm from metal components or surfaces, and ideally 20mm for best radiation efficiency. SPE-14-8-054/C/RC Page 2 of 15 **==> picture [188 x 94] intentionally omitted <==** ## **2. Specification** |Band|700/850/900|1575|1700/<br>1800/1900|2100|2400|2600| |---|---|---|---|---|---|---| |Standard|CELL|GPS|CELL|CELL|ISM|CELL| |Frequency (MHz)|698-960|1575.42|1710 -1990|1755-2170|2400 -2500|2500-2690| |Max VSWR|2:1|2:1|1.8:1|1.7:1|1.7:1|2.3:1| |Max Return Loss (dB)|-10|-10|-11|-12|-12|-8| |Peak Gain (dBi)|1|2.5|3.5|5|5|4.5| |Efficiency (%)|50|75|78|65|75|75| |Average Gain (dB)|-3|-2|-2|-2.5|-2|-2| |Radiation Properties|Omnidirectional|||||| |Max Input Power<br>(Watts)|5|||||| |Polarization|Linear|||||| |Impedance(Ohms)|50 Ohms|||||| *Antenna measured on plastic plate of 3 mm thickness. ||MECHANICAL| |---|---| |Dimensions (mm)|96*21*0.2 mm| |Material|Flexible Polymer| |Connector and Cable|U.FL and 1.37 mm mini coax| |Cable Length|150 mm| ||ENVIRONMENTAL| |---|---| |Operation Temperature|-40°C to 85°C| |Storage Temperature|-40°C to 85°C| |Relative Humidity|40% to 95%| |RoHs Compliant|Yes| SPE-14-8-054/C/RC Page 3 of 15 ## **3. Antenna Parameters** ## **3.1. Return Loss** **Figure 1.** Return loss of FXUB63 Antenna. ## **3.2. VSWR** **Figure 2.** VSWR of FXUB63 Antenna. SPE-14-8-054/C/RC Page 4 of 15 ## **3.3. Peak Gain** **Figure 3.** Peak Gain of FXUB63 Antenna. ## **3.4. Efficiency** **Figure 4.** Efficiency of FXUB63 Antenna. SPE-14-8-054/C/RC Page 5 of 15 ## **3.5. Average Gain** **Figure 5.** Average Gain of FXUB63 Antenna. ## **3.6. Radiation Pattern** **==> picture [85 x 73] intentionally omitted <==** **----- Start of picture text -----**<br> Z<br>a<br>Y<br>X<br>**----- End of picture text -----**<br> **Figure 6.** Radiation Pattern Reference of FXUB63 Antenna. SPE-14-8-054/C/RC Page 6 of 15 **Figure 7.** Radiation Pattern at 750 MHz of FXUB63 Antenna. **Figure 8.** Radiation Pattern at 850 MHz of FXUB63 Antenna. SPE-14-8-054/C/RC Page 7 of 15 **Figure 9.** Radiation Pattern at 925 MHz of FXUB63 Antenna. **Figure 10.** Radiation Pattern at 1400 MHz of FXUB63 Antenna. SPE-14-8-054/C/RC Page 8 of 15 **Figure 11.** Radiation Pattern at 1575 MHz of FXUB63 Antenna. **Figure 12.** Radiation Pattern at 1750 MHz of FXUB63 Antenna. SPE-14-8-054/C/RC Page 9 of 15 **Figure 13.** Radiation Pattern at 1850 MHz of FXUB63 Antenna. **Figure 14.** Radiation Pattern at 1950 MHz of FXUB63 Antenna. SPE-14-8-054/C/RC Page 10 of 15 **Figure 15.** Radiation Pattern at 2100 MHz of FXUB63 Antenna. **Figure 16.** Radiation Pattern at 2450 MHz of FXUB63 Antenna. SPE-14-8-054/C/RC Page 11 of 15 **Figure 17.** Radiation Pattern at 2600 MHz of FXUB63 Antenna. SPE-14-8-054/C/RC Page 12 of 15 ## **3. Mechanical Drawing (Unit: mm)** **Figure 18.** Mechanical drawing of FXUB63 Antenna. SPE-14-8-054/C/RC Page 13 of 15 ## **4. Packaging** SPE-14-8-054/C/RC Page 14 of 15 **==> picture [188 x 94] intentionally omitted <==** 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-14-8-054/C/RC Page 15 of 15
Updated at June 9, 2026
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