Raymarine
Raymarine R109LH 2kW Depth Temp Urethane Through Hull CHIRP Low-High Transducer
Pickup available at Mercury Yacht Harbour
Usually ready in 2-4 days
Description
The Raymarine R109LH is a high-power 2 kW urethane thru-hull CHIRP transducer built around 16 internal ceramics for serious deep-water performance. The thru-hull design puts nothing between the transducer and the water, maximising sensitivity, while the wider medium-band coverage adds visibility in shallower water.
This Low-High configuration operates at 38-75 kHz (low) / 130-210 kHz (high) with a beamwidth of 19°-10° (low), 8°-4° (high), reaching depths of 1829 m (6000 ft) low / 457 m (1500 ft) high. The transducer records both depth and water temperature and suits fibreglass, wood and metal hulls with a deadrise of 0 - 25°.
As a 2 kW transducer the R109LH is intended for high-power CHIRP sonar modules such as the Raymarine CP570; it is not driven by the 600W/1 kW sonar built into entry chartplotters. The fitted cable is 10 m (33 ft).
PRODUCT DETAILS
- High-power 2 kW urethane thru-hull CHIRP transducer with 16 internal ceramics
- Low-High configuration: 38-75 kHz (low) / 130-210 kHz (high)
- Beamwidth 19°-10° (low), 8°-4° (high)
- Maximum depth 1829 m (6000 ft) low / 457 m (1500 ft) high
- Records depth and water temperature
- Suits fibreglass, wood and metal hulls (deadrise 0 - 25°)
- For professional 2 kW CHIRP sonar modules (e.g. CP570); 10 m (33 ft) cable
No compatible transducers listed for this product.
No spares or accessories listed for this product.
No compatible products found.
Performance
| Operating Frequency | 38-75 kHz (low) / 130-210 kHz (high) |
| Beamwidth | 19°-10° (low), 8°-4° (high) |
| Maximum Depth | 1829 m (6000 ft) low / 457 m (1500 ft) high |
General
| Mount | Through-Hull |
| Material | Urethane |
| Power (RMS) | 2 kW |
| Records | Depth / Temperature |
| Hull Material | Fibreglass / Wood / Metal |
| Deadrise Angles | 0 - 25° |
| Cable Length | 10 m (33 ft) |
| Internal Ceramics | 16 |
No videos available for this product.
No downloads available for this product.
