ATM-900 Series Acoustic Telemetry Modems Introduction and Overview Communication Group: Justin Manley – Senior Director of Business Development Debbie.

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Presentation transcript:

ATM-900 Series Acoustic Telemetry Modems Introduction and Overview Communication Group: Justin Manley – Senior Director of Business Development Debbie King – Product Line Manager Adam Lipper – Applications Engineer Joe Borden – Applications Engineer Presenter: Adam Lipper – Applications Engineer

Overview Acoustic Data Telemetry – Why do I need it? – Where can I use it? – What applications does acoustic telemetry have? Teledyne Benthos ATM-900 Series Modems – Standard Operating Modes – Available Options – Hardware Upgrades – Standard Modem Configurations – ATM-900 Series Firmware – Standard Features Question and Answer

Why do I need Acoustic Telemetry? To send real-time data To receive real-time data Wires are expensive and fragile Want to use water as medium

Where can I use Acoustic Telemetry? Anywhere High Noise, cold temperatures, deep water, shallow water Long distances, short distances With other acoustic devices

What applications does acoustic telemetry have? Send real-time data Receive real-time data ADCP’s, AUV’s, stress probe, CTD, tide gauge, etc.

Standard Features Capable of sending hardware break to Teledyne RD Instruments Acoustic Doppler Current Profiler Data logger for instrument data Bi-directional half duplex Ranging Single RS-232 instrument or single RS- 422 instrument, RS-485 Device Enable Sends full hardware break to ADCP to wake any ADCP not a software break. 6144KB (6MB) for logging data Two way communications, one direction at a time Range from one modem to another Capable of interfacing to just about any RS232 instrument Can sink 20mA current at 40V DC Max

Three housing options: ATM-910 Series 500 meter depth rated PVC ATM-920 Series 2000 meter depth rated aluminum ATM-960 Series 6000 meter depth rated aluminum Remote transducer head options UDB-9400 Deck Unit capable of AC/DC power operations Low Frequency (LF)9 – 14 kHz Medium Frequency (MF)16 – 21 kHz Interoperability Band C22 – 27 kHz Power level adjustment to control amount of energy in water. Internal band pass filter to eliminate out of band noise. Internal batteries or 12-36V DC operation Standard Features

ATM-903 Models Similar to ATM-885-4G OEM PCB 6000 Meter Depth Rated transducer ATM-903 is customer integrated electronics Requires – Dry electronics space – 12-36V DC power – Bulkhead penetration for transducer connection All ATM-900 Series Modems Any ATM-900-xxx is a spare board set

ATM-910 Models All New! 500 Meter Depth Rated as indicated by 1 in model number ATM-914 has remote transducer with internal batteries ATM-915 has integral transducer with internal batteries ATM-916 has integral transducer with no batteries All ATM-900 Series Modems

ATM-920 Models Similar to ATM-885-4G 2000 Meter Depth Rated as indicated by 2 in model number ATM-924 has remote transducer with internal batteries ATM-925 has integral transducer with internal batteries ATM-926 has integral transducer with no batteries All ATM-900 Series Modems

ATM-960 Models Similar to ATM-887-4G 6000 Meter Depth Rated as indicated by 6 in model number ATM-964 has remote transducer with internal batteries ATM-965 has integral transducer with internal batteries ATM-966 has integral transducer with no batteries All ATM-900 Series Modems

UDB-9400 Series Deck Unit UDB-9400 Series Deck Units, Three Models – UDB-9400M – Multi Channel [Navigation, Modems, Releases] – UDB-9400E – Export Series, Single Channel [Modems, Releases] – UDB-9400A – Acoustics Series, Single Channel [Releases] Transducer Cables (B x) – 25 Meter -1 Cable – 50 Meter -2 Cable – 75 Meter -3 Cable – 100 Meter -4 Cable – 200 Meter -5 Cable Transducer (B x) – LF Omni-Directional (-1) 185dB Output – MF Omni-Directional (-2) 183dB Output – Band C Omni-Directional (-3) 178dB Output – Oil Filled LF Omni-Directional (-4) 192dB Output – Directional transducers are possible

Standard Operational Modes Online Mode – Data is transferred from one modem to another Command Mode – Commands are entered and parsed Data Logger Mode – Data is logged to flash storage area

Available Options Available Now Dual serial port (Port1 RS-232/RS-422 user selectable and Port2 RS-232 only) Multi-channel receive (for LBL systems) High capacity data logger storage (4GB SDHC Card) PSK co-processor support for ATM-900 Series Standard Real-Time Clock (2PPM accuracy) Available Soon In-Band Acoustic Data Recorder

Always Available Technical Support Applications Engineering (pre-quote, during sale, post sale) Technical Sales information Training, on-site or at factory for you and your customers

The Applications

Nova Southeastern University – Oceanographic Center Gulf Stream Monitoring Subsea: One ATM-885R, 2m cable and AT-408 Topside:ATM-891, 25m Cable, AT-408 Range/Depth: 3000m/800m Goal: Download data from ADCP once per month to verify operation. Deployment time: 1 year Data: Download 128KBytes once per month from the ADCP to verify that data is being collected. The 128KBytes is output by the ADCP into the modem Ring buffer which is a first in first out, FIFO, buffer with 128KByte storage.

Nova Southeastern University – Oceanographic Center

BMT Scientific Marine Services William Offshore Spar – Devils Tower Subsea: One ATM-885 Directional and One ATM-885 Omni- directional Topside: ATM-891, 200m cable and AT-408 hull mounted to Spar Range/Depth: 2000m & 1000m/1890m & 800m Goal: Transfer ADCP data from two ADCP’s at different depths in the same water column. Deployment time: 2 years and 1 year Data: 1200byte current profiles sent from each ADCP every 20 minutes Notes: External battery packs are in use to extend deployment time to 1 and 2 years.

BMT Scientific Marine Services William Offshore Spar – Devils Tower

Questions?

Teledyne Benthos Thank you for your attention.