Garmin GPSMAP 496 Owner's Manual (for North America) - Page 152

Transducer Coverage, angle provides a coverage width that is approximately 1/5 of

Page 152 highlights

Setting up and Using Sonar > Understanding Sonar Transducer Coverage The area covered by the transmitted sound waves is determined by the cone angle of the transducer and the water depth. The wide cone angles (40°), associated with low frequencies (50 kHz) provide a Coverage Depth large coverage area for finding fish within a coverage width that Diameter is approximately 2/3 of the water depth. However, this also means that wide cone angles produce less bottom detail and resolution. As shown in the drawing on the near right, the 40° cone angle produces Coverage Diameter Depth a coverage area of approximately a 20-foot diameter circle at a 30-foot depth. The narrow cone angles (10°) associated with the high frequencies (200 kHz) provide better bottom resolution and crisper detail, but cannot show a large coverage area for finding fish. The 10° cone angle provides a coverage width that is approximately 1/5 of the water depth. As shown in the drawing on the far right, the 10° cone angle produces a coverage area of approximately a 6-foot diameter circle at a 30-foot depth. 40° Cone Angle (50 kHz) 10° Cone Angle (200 kHz) Dual frequency mode combines both frequencies to get the best coverage area and contour/depth readings. 144 GPSMAP 496 Owner's Manual

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²44
GPSMAP 496 Owner’s Manual
Setting up and Using Sonar >
Understanding Sonar
Transducer Coverage
The area covered by the transmitted sound waves is determined by
the cone angle of the transducer and the water depth. The wide cone
angles (40°), associated with low frequencies (50 kHz) provide a
large coverage area for finding fish within a coverage width that
is approximately 2/3 of the water depth. However, this also means
that wide cone angles produce less bottom detail and resolution. As
shown in the drawing on the near right, the 40° cone angle produces
a coverage area of approximately a 20-foot diameter circle at a
30-foot depth.
The narrow cone angles (10°) associated with the high frequencies
(200 kHz) provide better bottom resolution and crisper detail, but
cannot show a large coverage area for finding fish. The 10° cone
angle provides a coverage width that is approximately 1/5 of the
water depth. As shown in the drawing on the far right, the 10° cone
angle produces a coverage area of approximately a 6-foot diameter
circle at a 30-foot depth.
Dual frequency mode combines both frequencies to get the best
coverage area and contour/depth readings.
40° Cone Angle (50 kHz)
Coverage
D±ameter
Depth
10° Cone Angle (200 kHz)
Coverage
D±ameter
Depth