STL H2 - Motor Hopper

STL H2 - IMO 9763502 - Details and current position

What is the ship's current position? Where is the ship located? STL H2 last received position is 1.35957 N / 104.05271 E on Dec 11, 2017 at 12:59 UTC.

Vessel STL H2 (IMO: 9763502, MMSI: 563032960) is a built in 2015 and currently sailing under the flag of . STL H2 has 68m length overall and beam of 14m. Her gross tonnage is 1519 tons. Below you can find more technical information, photos, AIS data and last 5 port calls of STL H2 detected by AIS.

STL H2 map position

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STL H2 AIS Data

Last report:
Ship type:
Motor Hopper
Flag:
Flag of Singapore Singapore
Destination:
CHANGI
ETA:
Aug 21, 04:00
Lat/Lon:
1.35957 N/104.05271 E
Course/Speed:
288.8 ° / 6 kn.
Current draught: 4.2 m
Callsign:
9V3024
IMO / MMSI:
9763502 / 563032960

STL H2 Master Data

Built: 2015
Size:
68 x 14 m
Draught:
N/A
Place of build:
Premium users only
Gross Tonnage:
1519 t
Net Tonnage:
N/A
Deadweight:
2322 t
Crude (bbl): Premium users only

Last 5 port calls as detected by AIS

Are you interested in the sailing schedule of the STL H2 ship?
The STL H2 port of calls and sailing schedule for the past months are listed below as detected by our live AIS ship tracking system. Most recent port call is . Currently the vessel STL H2 is on her next destination to CHANGI and the estimated time of arrival (ETA) is around Aug 21, 04:00. VesselFinder also gathers and keeps detailed information about ship movement history (e.g ship track) for the past 7 days (max). More detailed historical ship movement AIS records are available on request.

Date / Time Port / Country
Dec 11, 2017, 12:04 UTC
Oct 10, 2017, 05:05 UTC
Sep 08, 2017, 09:04 UTC
Jul 20, 2017, 23:04 UTC
Feb 22, 2016, 14:04 UTC
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Web resources (STL H2)

No data

Disclaimer

STL H2 current position and history of port calls are received by AIS. Technical specifications, tonnages and management details are derived from VesselFinder database. The data is for informational purposes only and VesselFinder is not responsible for the accuracy and reliability of STL H2 data.