Wednesday, May 26, 2010

GMS Marine Electronic: LAZ5100 Echo Sounder Transducer replacement

GMS Marine Electronic: LAZ5100 Echo Sounder Transducer replacement

GMS Marine Electronic: MX Marine / Simrad MX420 DGPS System

GMS Marine Electronic: MX Marine / Simrad MX420 DGPS System

Monday, May 3, 2010

LAZ5100 Echo Sounder Transducer replacement

This ship was dry docking in one of the shipyard locally.
The vessel has not replaced the transducers for the pass 10years. Consider the transducer very reliable. They come with 50Khz forward transducer and 200Khz aft transducer. Normally 200Khz transducer is used to detect shallow water depth as compare to 50Khz transducer. Basically, the LAZ5000 display was faulty due to unable to switch on. Replaced with LAZ5100 Display unit. The crew also complaint the slave display DAZ25 not showing correct depth when the Master display was working well with good depth before.
I have used my laptop to simulate a $DBT or $DPT at old DAZ25 found unable to update. So replaced with new DAZ25 and found working well with simulated nmea from laptop.

The first time went down to inner tank to locate the forward 50Khz transducer was a good experience. Caution need to be observe, ventilation must be provided with blower working in good condition. Working in confine space would require a gas detector been carried around the waist in case of oxygen level fall below 19percent or above 21percent, it will beep to warn of danger in confine space. Excess of CO2(Carbon Dioxide) can also be dangerous in confine space. So minimum of 2 person entering tank was necessary to prevent accident and seek help in case of accident do happen.

It was fully dark with a funny smell. Torch light should be strong and bright to find the right place. We enter into the inner tank from main deck with at least 4 levels down the vertical ladder before we reaching the bottom. The location was very small and only allow one person to reach the transducer. Finally we found 3 x transducers and the most left was identified as 50Khz echo sounder transducer and the smallest among  compare to speed log transducer to the right.

I have instruct yard workers to remove the transducer from outside the bottom since ship was at dry dock. Cut  the wire from inside around 1meter from transducer so that remove from outside would be easy. After removing the 3 bolts from outside transducer, we manage to slowly twist the transducer from side to side to rotate the transducer and finally made its way out. Replaced with new transducer is also tricky as the old transducer cable is useful to guide the new transducer cable to run through the trunking and all the way up to the junction box in a deck below main deck.

Finally the new transducer was fixed and connected. Display showed good reading after ship undock at the shipyard. Please see some of the pictures taken.







Wednesday, April 21, 2010

KW950E interface negative 35V step Gyro heading to 38400bps $HEHDT

This is a procedure to interface 4 wire negative step at ref. 35V to 38400bps nmea output. I had tested working on a tanker recently with MK37 Gyro compass.
I had study this connection and document down the procedure.

1. Connect step input to SK2, R+  = Ref, S1 = S1-, S2 = S2-, S3 = S3-
2. Link S1+, S2+, S3+ and R+ together
2. Set SW1 to 0000 1010 for 38400bps $HEHDT
3. Connect nmea output to SK3 data output A and B

Tuesday, April 20, 2010

KW950E interface serial Gyro heading from low speed 4800bps to 38400bps

As this has become a requirement to connect high speed nmea Gyro compass signal to radar. Typical set at baudrate of 38400bps.
KW950E was able to fulfill this requirement. During the interface of C-plath nmea Gyro signal to Sperry marine VMFT radar, we used KW950E to connect input with 4800bps and ouput 38400bps to both radar and both ECDIS.Be very careful, only one setting works with KW950E from NMEA 4800bps to 38400bps. Below were the procedures :
1. Connect 24Vdc into SK1 of KW950E
2. Connect 4800bps $HEHDT into SK5 data input no.2 - A and B
3. Connect data output into SK3 output no.1 - A and B
4. Set SW1 to 0001 1110 for 4800 input, 38400 output and HEHDT
5. Switch on power and you will get to see display blinking, press either increase or decrease to acknowledge the presence of signal input.

Setup completed. Please see attached pictures to see the connection details.


Wednesday, April 14, 2010

Ship at OPL

I was attending a sperry marine BME radar service onboard a container at eastern OPL. Travel in the morning and return at night. Some of the very beautiful ships i have taken along the way to service trip.





Sunday, April 4, 2010

My first radar experience in 1990 - Decca TM 1626

I still remember the first radar i had encounter fall all the way back in 1990. It was ARPA Decca 1626 True Motion X-band radar. During that time, i have no idea what is this piece of equipment doing good for us? I see yellow patches on the PPI(Plan Position Indicator) screen rotate in clockwise circular motion. This yellow patches were known as video or targets or return echo from the transmission of radar which help us identified the objects around us up to 48nm. Although the radar screen can show up to 96nm, in practice, it was not possible to achieve 96nm due to the power output from a 25Kw magnetron. It was a good piece of equipment at that point of time. This equipment had more than 20 slot cards in the lower rack which help in the processing of radar video, calculate dead reckoning function...etc. I cannot remember whether it was connected with GPS as at that time only transit satelite was available. I do remember this piece of equipment can acquire a maximum of 20 targets at any one time. It was one of the latest technology at that time.
Kelvin hughes radtrack radar was also one of the ARPA radar with latest technology at that time.
Then in 1991, there comes a PC radar which can acquire 50 targets at one time. This piece of equipment process radar video in a digitize format. The screen changes from PPI to a multicolor VGA monitor.
It was the DB2000I display processing monitor interface with Decca I-band  transceiver. DB2000I comes with a floppy drive slot, powered by a few processors cards which run by intel microprocessor 80286 and 80287.
These processors include RDD, RTS and OPC processor. Raw video was converted by radar scan converter from analog to digital. The instructor from Norcontrol Norway - Mr. Paul Herfjord had travel down to Singapore in Jan 1992 for the DataBridge2000 technical training course.
Since then i have been servicing these few pieces of equipments from these few companies until now.