13
1.
The desired ensemble interval. If the ping timing exceed the Ensemble
interval the ensemble timing will slip.
iii.
Latitude (deg)
1.
Deployment location
iv.
Longitude (deg)
1.
Deployment Location
v.
Right Bank
1.
Sets Right Bank Deployment location
vi.
Left Bank
1.
Sets Left Bank Deployment location
vii.
Height above Bottom (m)
1.
Physical location of HASCP above the bottom during deployment
2.
Required for waves calculations
viii.
Water Depth (m)
1.
Physical location of HASCP during deployment
2.
Useful for speed of sound calculation if pressure sensor and/or surface
detection not available.
ix.
Water Temperature (C)
1.
Used when built in temperature sensor is not available.
x.
Water Speed of Sound (m/s)
2.
Used for speed of sound when no sensors are available to calculate or
measure the speed of sound. Sometimes used when the end user wants to
scale the Doppler and range data themselves.
Figure 6. Firmware tab showing the firmware version, source level in dB for different power level, and the
receive sensitivity of the HASCP. Bm0 and Bm2 are beam 0 and beam 2 (1200 kHz), Bm1 is beam 1 (600
kHz), Bm3 is beam 3 (2400 kHz) and Bm4 is beam 4 (1200 kHz).
Summary of Contents for HASCP
Page 26: ...26 Figure 15 Firmware Tab in the RTI HASCP software...
Page 68: ...68 8 Cable Wiring Diagrams This section outlines the HASCP communication cable wiring...
Page 73: ...73 10 Mechanical Drawings and Assembly Figure 23 Outline drawing of the HASCP unit MCBH 10M...
Page 74: ...74 Figure 24 Location of transducer beams in the HASCP unit...
Page 76: ...76 Figure 26 Exploded view of the HASCP unit showing the details of the hardware used...
Page 78: ...78 Figure 28 HASCP mounted on a pole used for internal testing at RTI...