Airmar TM275C-LHW Transom Mount Low/High Wide CHIRP Transducer with Garmin 12-Pin Mix-N-Match Cable
Model: TM275C-LHW-12GGet more coverage under the boat with Airmar's new wide beam Chirp product line. Offering a high frequency range of 150-250 kHz and a constant 25° Beamwidth, these transducers are truly broadband at its best. In addition to improving the performance of Chirp-ready echosounders, anglers using the new wide beam transducers will achieve twice the coverage under the boat compared to our current high frequency Chirp transducers.
A unique property of the new high frequency transducers is that the Beamwidth is a constant 25° angle across the entire frequency band. Now, in addition to providing vast bottom coverage and precise fish detection in the upper water column that can sometimes go unseen with our narrow beam transducers, Airmar's new wide beam format also creates crisper and larger return images on the display. We've got you covered.
Specifications| Hull deadrise | up to 28° |
| Acoustic window | Urethane |
The Airmar TM275C-LHW Transducer is a transom-mount solution designed for marine applications requiring advanced sonar capabilities. This unit provides depth and fast-response water temperature sensing, suitable for integration with compatible Garmin systems via its 12-pin Mix-N-Match cable. It operates across two CHIRP frequency ranges: a low band from 42 kHz to 65 kHz with a variable 25� to 16� beamwidth, and a high band from 150 kHz to 250 kHz with a constant 25� beamwidth. This configuration delivers 123 kHz of total bandwidth, encompassing common fishing frequencies like 50 kHz and 200 kHz. The wide beam design in the high-frequency range aims to double the coverage under the vessel compared to standard narrow-beam CHIRP transducers, improving target detection and bottom imaging. The TM275C-LHW-12G is intended for professional use on vessels with a hull deadrise up to 28�, utilizing a urethane acoustic window for durability.
TM275C-LHW-12G - Airmar TM275C-LHW Transducer With Garmin 12-Pin MMC