
Antenova Trogona Dual-Band Wi-Fi® Antenna
Antenova Trogona Dual-band Wi-Fi® Antenna operates in both the 2.4GHz to 2.5GHz and 5.17GHz to 5.84GHz Wi-Fi bands to meet the requirements of all dual-band Wi-Fi applications. The antenna is constructed using FR4 materials, measures 19.3mm x 3.3mm x 4.4mm, and works over a ground plane with no clearance.Designed for Integration (DFI), the Trogona antenna maintains good performance when placed in a device. Using Antenova's guidance on positioning, the Trogona antenna can be easily integrated into the corner of a device with minimal PCB clearance area.
The Trogona antenna is ideal for single and MIMO antenna systems. Consumer applications include wearable devices, access points, portable devices, PC cards, game consoles, set-top boxes, and network devices.
Features
- Antenna for 2.4GHz to 2.5GHz and 5.17GHz to 5.84GHz applications (Wi-Fi 802.11a/b/g/n/ac)
- Works over a ground plane, no clearance required
- Ideal for wearables
- Maintains high performance on the device, DFI (Designed For Integration)
- SMD mounting
- Supplied on Tape and Reel
Applications
- Wearable devices
- Access points
- Portable devices
- PC-cards
- Game consoles
- Set-top-boxes
- Network devices
- MIMO systems
Specifications
- Peak gain
- 5.03dBi for the 2.4GHz to 2.5GHz
- 5.32dBi for the 5.175GHz to 5.835GHz
- Average gain
- -0.6dBi for the 2.4GHz to 2.5GHz
- -2.2dBi for the 5.175GHz to 5.835GHz
- Average efficiency
- >70% for the 2.4GHz to 2.5GHz
- >60% for the 5.175GHz to 5.835GHz
- -7.0dB maximum return loss
- Maximum VSWR
- 1.5:1 for the 2.4GHz to 2.5GHz
- 2.70:1 for the 5.175GHz to 5.835GHz
- 50Ω impedance with matching
- Temperature ranges
- -40°C to +140°C operating
- -10°C to +40°C storage
- 24-month shelf-life
- 19.3mm x 3.3mm x 4.4mm in dimension (LxWxH)
Trogona Evaluation Board
Antenova Trogona Evaluation Board evaluates the performance of the Antenova Trogona Dual-band Wi-Fi® Antenna. The evaluation board measures the Trogona Antenna's peak gain, average gain, average efficiency, maximum return loss, and maximum VSWR.