# Particle Taoglas Cellular PCB Antenna 2G/3G 2.4dBi

**Type:** Product page · **SKU:** CE07833 · **Brand:** [Particle](https://core-electronics.com.au/brands/particle-australia)
**Page:** https://core-electronics.com.au/particle-taoglas-cellular-pcb-antenna-2g-3g-2-4dbi.html ([markdown](https://core-electronics.com.au/particle-taoglas-cellular-pcb-antenna-2g-3g-2-4dbi.html.md))

This penta-band GSM antenna from industry leader Taoglas is a great multi-purpose antenna for almost all cellular applications. It's compact size makes it convenient for design into small enclosures, and it features a rigid structure that ensures minimal gain loss during integration.

## Pricing

- **Price:** $614.95 (inc GST) — $559.05 AUD, exc GST
- **Quantity discounts:** 3+ $542.27 (exc GST) · 5+ $531.09 (exc GST)

## Availability & dispatch

- Available with a lead time — expect dispatch between Aug 24 and Aug 25.

## Description

This penta-band GSM antenna from industry leader Taoglas is a great multi-purpose antenna for almost all cellular applications. It's compact size makes it convenient for design into small enclosures, and it features a rigid structure that ensures minimal gain loss during integration.

This antenna attaches directly to the u.FL connector on the Electron, and is the same antenna that we include with all of our Electron development kits. RoHS compliant, and includes 3M adhesive for easy integration into enclosures.

Find the complete datasheet for the antenna [here](https://core-electronics.com.au/attachments/localcontent/PC104_19554e533ac.pdf).

**Specifications**

- Dimensions 80 x 20.8 x 1.0 mm
- Cable Length 164.9mm
- Connector u.FL (IPEX)
- Gain Average -1.32 to -3.26 dBi
- Peak gain: 2.39dBi
- Frequency Range 850/900/1800/1900/2100 MHz bands
- Input Impedance 50Ω
- RoHS Compliant
- Antenna type: Monopole
- Mounting: 3M adhesive-backed for application on non-metallic surfaces
- Connector type: u.FL compatible

## Images

- [Product image 1](https://core-electronics.com.au/media/catalog/product/t/a/taoglas-1.jpg)
