Showing 67 items matching "communication signal"
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Flagstaff Hill Maritime Museum and VillageEquipment - Distant Signal, 1897-1931
... ...Communication Signal...signal flags. The Table of Codes was published, showing how to use combinations of these flags to send messages. The Code was revised in 1887 to cover situations where distance, light, wind and weather conditions affected the visibility of the flags and prevented clear communication. ...The same shapes continue to be used today for the sets of Day Shapes used as marine navigational signals that are mandatory on certain-sized vessels. flagstaff hill warrnambool flagstaff Hill Maritime Museum and village Shipwreck Coast Marine Navigation Marine communications Communication Signal Lifesaving ship at sea day shape masthead signal day signal day mark signals marine technology safety equipment navigation equipment marine day shape day marker cane day shape signal cone day signal cone cone signal cone day shape distant signal flagstaff signal signal station communications signals marine signals flaghoists International Marine Conference International Code of Signals signal codes marine safety signal flags daymark day symbol navigation Warrnambool flagstaff 1854 1857 1931 1887 1897 Distant Signal Cone, part of a Flagstaff signal set. ...This three-dimensional Distant Signal is part of a Flagstaff Signal set of ball, cone and drum shapes. It has been woven and then fabricated with strong metal swivel fittings and loops for suspending from a high point on a flagstaff at a signal station or on a ship’s masthead. The cane signal was constructed to withstand all weather and to be visible from a long distance. The gaps between the woven cane allow air to pass through, minimising possible swaying. Similar sets were made from rope or fabric. Warrnambool's Flagstaff was erected in 1854. Its primary use was to display visual signals that could convey messages between land and sea. It was also used to notify the local population of the approach of ships. One of the popular signalling codes in use in the early-to-mid 1800s was the Marryat’s Code but there were others in use as well; there was no one standard code. In 1857 the International Marine Conference adopted an International Code of Signals as a standard communications system for all vessels that could be understood in many different languages. The Normanby Advertiser reported on June 5th 1857 a query from the Post Master General as to whether the request of the Chief Harbour Master would be carried out, in that Warrnambool would receive a new flagstaff and a set of Marryatt’s signal flags. The Table of Codes was published, showing how to use combinations of these flags to send messages. The Code was revised in 1887 to cover situations where distance, light, wind and weather conditions affected the visibility of the flags and prevented clear communication. The first report of the International Code of Signals Committee of 1897 warned signalmen not to rely on ordinary semaphore flags and introduced a Distant Signal Code using either particular semaphore flags or the three-dimensional shapes of a ball, cone and drum that aligned with the semaphore flag shapes of a circle, pennant and square. International Code of Signals In 1931, after World War I’s experiences in using signal codes, the International Code of Signals conference in Washington revised and published the rules for the conduct of signalling. One of the changes was that “the use of the Distant Signals and of fixed semaphore was abandoned”. It is of interest to know that modern marine law in many countries insists that a set of Day Shapes must be carried onboard vessels of a certain size. These highly visible geometric shapes are used at sea in daylight to communicate messages between vessels. They are used in a similar way to the Distant Signals, in that different combinations of shapes represent different messages. The set of shapes includes a ball, cylinder, cone and diamond. The shapes are hung between the top of the vessel’s foremast and the front of the vessel. They are only coloured black and are about 1.5 metres high. The vertical line of shapes can mean messages such as Boat not under command, Fishing, and Under sail and power.Distant Signals were an important means of marine communication from the late 1880s to the early 1930s, including during World War I. They were an advancement to the International Shipping Codes and safety. The cane signals’ shapes appear to be the same from whatever direction they are viewed, removing confusion about the message they convey. The same shapes continue to be used today for the sets of Day Shapes used as marine navigational signals that are mandatory on certain-sized vessels.Distant Signal Cone, part of a Flagstaff signal set. A woven cane cone, painted black, with a metal rod passing through the centre and two crossed metal bars at the base. The central rod has a loop at the top and passes through the bars at the base, finishing in a metal loop. The rod has swivels at each end.flagstaff hill, warrnambool, flagstaff hill maritime museum and village, shipwreck coast, marine navigation, marine communications, communication signal, lifesaving, ship at sea, day shape, masthead signal, day signal, day mark signals, marine technology, safety equipment, navigation equipment, marine day shape, day marker, cane day shape, signal cone, day signal cone, cone signal, cone day shape, distant signal, flagstaff signal, signal station, communications, signals, marine signals, flaghoists, international marine conference, international code of signals, signal codes, marine safety, signal flags, daymark, day symbol, navigation, warrnambool flagstaff, 1854, 1857 1931, 1887, 1897 -
Flagstaff Hill Maritime Museum and VillageEquipment - Distant Signal, 1897-1931
... ...Communication Signal...signal flags. The Table of Codes was published, showing how to use combinations of these flags to send messages. The Code was revised in 1887 to cover situations where distance, light, wind and weather conditions affected the visibility of the flags and prevented clear communication. ...The same shapes continue to be used today for the sets of Day Shapes used as marine navigational signals that are mandatory on certain-sized vessels. flagstaff hill warrnambool flagstaff Hill Maritime Museum and village Shipwreck Coast Marine Navigation Marine communications Communication Signal Lifesaving ship at sea day shape masthead signal day signal day mark signals marine technology safety equipment navigation equipment marine day shape day marker cane day shape signal ball day signal ball Ball signal ball day shape distant signal flagstaff signal signal station communications signals marine signals flaghoists International Marine Conference International Code of Signals signal codes marine safety signal flags daymark day symbol navigation Warrnambool flagstaff 1854 1857 1931 1887 1897 Distant Signal Ball, part of a Flagstaff signal set. ...This three-dimensional Distant Signal is part of a Flagstaff Signal set of ball, cone and drum shapes. It has been woven and then fabricated with strong metal swivel fittings and loops for suspending from a high point on a flagstaff at a signal station or on a ship’s masthead. The cane signal was constructed to withstand all weather and to be visible from a long distance. The gaps between the woven cane allow air to pass through, minimising possible swaying. Similar sets were made from rope or fabric. Warrnambool's Flagstaff was erected in 1854. Its primary use was to display visual signals that could convey messages between land and sea. It was also used to notify the local population of the approach of ships. One of the popular signalling codes in use in the early-to-mid 1800s was the Marryat’s Code but there were others in use as well; there was no one standard code. In 1857 the International Marine Conference adopted an International Code of Signals as a standard communications system for all vessels that could be understood in many different languages. The Normanby Advertiser reported on June 5th 1857 a query from the Post Master General as to whether the request of the Chief Harbour Master would be carried out, in that Warrnambool would receive a new flagstaff and a set of Marryatt’s signal flags. The Table of Codes was published, showing how to use combinations of these flags to send messages. The Code was revised in 1887 to cover situations where distance, light, wind and weather conditions affected the visibility of the flags and prevented clear communication. The first report of the International Code of Signals Committee of 1897 warned signalmen not to rely on ordinary semaphore flags and introduced a Distant Signal Code using either particular semaphore flags or the three-dimensional shapes of a ball, cone and drum that aligned with the semaphore flag shapes of a circle, pennant and square. International Code of Signals In 1931, after World War I’s experiences in using signal codes, the International Code of Signals conference in Washington revised and published the rules for the conduct of signalling. One of the changes was that “the use of the Distant Signals and of fixed semaphore was abandoned”. It is of interest to know that modern marine law in many countries insists that a set of Day Shapes must be carried onboard vessels of a certain size. These highly visible geometric shapes are used at sea in daylight to communicate messages between vessels. They are used in a similar way to the Distant Signals, in that different combinations of shapes represent different messages. The set of shapes includes a ball, cylinder, cone and diamond. The shapes are hung between the top of the vessel’s foremast and the front of the vessel. They are only coloured black and are about 1.5 metres high. The vertical line of shapes can mean messages such as Boat not under command, Fishing, and Under sail and power.Distant Signals were an important means of marine communication from the late 1880s to the early 1930s, including during World War I. They were an advancement to the International Shipping Codes and safety. The cane signals’ shapes appear to be the same from whatever direction they are viewed, removing confusion about the message they convey. The same shapes continue to be used today for the sets of Day Shapes used as marine navigational signals that are mandatory on certain-sized vessels.Distant Signal Ball, part of a Flagstaff signal set. A round woven cane ball, painted black, with a metal rod passing through the centre. The rod has a loop at each end, then a concave, octagonal metal plate that rests on the outside surface of the ball, serving as a washer. The rod has swivels at each end.flagstaff hill, warrnambool, flagstaff hill maritime museum and village, shipwreck coast, marine navigation, marine communications, communication signal, lifesaving, ship at sea, day shape, masthead signal, day signal, day mark signals, marine technology, safety equipment, navigation equipment, marine day shape, day marker, cane day shape, signal ball, day signal ball, ball signal, ball day shape, distant signal, flagstaff signal, signal station, communications, signals, marine signals, flaghoists, international marine conference, international code of signals, signal codes, marine safety, signal flags, daymark, day symbol, navigation, warrnambool flagstaff, 1854, 1857 1931, 1887, 1897 -
Flagstaff Hill Maritime Museum and VillageEquipment - Flare, Mid-20th century
... ...communication signal...LSRC flare light safety equipment distress signal safety at sea emergency signal broad arrow communication signal vingage pyrotechnic flare Inscribed: "R↑L", "27, 11, 55", "Long Lights" Flare (three), ; metal base, black cylinder, removeable wooden end cap that has a wooden key attached by string at centre. ...This flare pictured is one of three lighting or signal flares. These are pyrotechnic devices used at sea, mainly as a distress signal. However, they have other meanings when used for naval purposes, such as the executive order to start a particular manoeuvre. These are usually packaged as part of a distress pack containing all necessary rockets or flares for immediate use, in any emergency, by ships and off-shore yachts. The inscribed numbers could possibly be the date packaged or the date of useful life i.e. 27-11-1955.This set of three flares is significant for its connection with local history, maritime history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. Hundreds of shipwrecks along the coast are evidence of the rough weather and rugged coastline. Ordinary citizens, the Harbour employees, and the volunteer boat and rescue crew, saved lives in adverse circumstances. Some were recognised as heroes, others went unrecognised. In Lady Bay, Warrnambool, there were around 16 known shipwrecks between 1850 and 1905. Many lives were saved but tragically, eight lives were lost.Flare (three), ; metal base, black cylinder, removeable wooden end cap that has a wooden key attached by string at centre. Inscribed "R↑L" on the cap and metal base. Inscribed: "R↑L", "27, 11, 55", "Long Lights"flagstaff hill maritime museum and village, flagstaff hill, maritime museum, maritime village, warrnambool, great ocean road, lady bay, warrnambool harbour, port of warrnambool, shipwreck, life-saving, lifesaving, rescue crew, rescue, rocket rescue, rocket crew, lifeboat men, beach rescue, line rescue, rescue equipment, rocket firing equipment, rocket rescue equipment, maritime accidents, shipwreck victim, rocket equipment, marine technology, rescue boat, lifeboat, life saving rescue crew, lifesaving rescue crew, rocket rescue method, rocket apparatus rescue, stranded vessel, mortar, life jacket, rocket machine, rocket line, rocket set, schermuly, harbour board, government of victoria, harbour master, armband, l.s.r.c., lsrc, flare, light, safety equipment, distress signal, safety at sea, emergency signal, broad arrow, communication signal, vingage, pyrotechnic flare -
Flagstaff Hill Maritime Museum and VillageEquipment - Flare, Mid-20th century
... ...communication signal...Many lives were saved but tragically, eight lives were lost. flagstaff hill maritime museum and village flagstaff hill maritime museum maritime village warrnambool great ocean road lady bay warrnambool harbour port of warrnambool shipwreck life-saving lifesaving rescue crew rescue rocket rescue rocket crew lifeboat men beach rescue line rescue rescue equipment rocket firing equipment rocket rescue equipment maritime accidents shipwreck victim rocket equipment marine technology rescue boat lifeboat life saving rescue crew lifesaving rescue crew rocket rescue method rocket apparatus rescue stranded vessel mortar life jacket rocket machine rocket line rocket set schermuly harbour board government of victoria harbour master armband l.s.r.c. lsrc flare light safety equipment distress signal safety at sea emergency signal broad arrow communication signal vingage pyrotechnic flare Stamped black: "I" Impressed into cap: ""I", "R↑L" (inside oval). ...This flare pictured is one of three lighting or signal flares. These are pyrotechnic devices used at sea, mainly as a distress signal. However, they have other meanings when used for naval purposes, such as the executive order to start a particular manoeuvre. These are usually packaged as part of a distress pack containing all necessary rockets or flares for immediate use, in any emergency, by ships and off-shore yachts.This set of three flares is significant for its connection with local history, maritime history and marine technology. Lifesaving has been an important part of the services performed from Warrnambool's very early days, supported by State and Local Government, and based on the methods and experience of Great Britain. Hundreds of shipwrecks along the coast are evidence of the rough weather and rugged coastline. Ordinary citizens, the Harbour employees, and the volunteer boat and rescue crew, saved lives in adverse circumstances. Some were recognised as heroes, others went unrecognised. In Lady Bay, Warrnambool, there were around 16 known shipwrecks between 1850 and 1905. Many lives were saved but tragically, eight lives were lost.Flare; mushroom coloured cylinder, metal base with wooden top joined to it. Base has removable cap with metal encased wooden fuse attached, which holds seven removeable pegs and rings. String threaded through top holes has a wooden peg attached. Top also has holes drilled on opposing sides through which the peg would fit. Inscriptions stamped in black on base, and impressed into cap. Stamped black: "I" Impressed into cap: ""I", "R↑L" (inside oval).flagstaff hill maritime museum and village, flagstaff hill, maritime museum, maritime village, warrnambool, great ocean road, lady bay, warrnambool harbour, port of warrnambool, shipwreck, life-saving, lifesaving, rescue crew, rescue, rocket rescue, rocket crew, lifeboat men, beach rescue, line rescue, rescue equipment, rocket firing equipment, rocket rescue equipment, maritime accidents, shipwreck victim, rocket equipment, marine technology, rescue boat, lifeboat, life saving rescue crew, lifesaving rescue crew, rocket rescue method, rocket apparatus rescue, stranded vessel, mortar, life jacket, rocket machine, rocket line, rocket set, schermuly, harbour board, government of victoria, harbour master, armband, l.s.r.c., lsrc, flare, light, safety equipment, distress signal, safety at sea, emergency signal, broad arrow, communication signal, vingage, pyrotechnic flare -
Flagstaff Hill Maritime Museum and VillageEquipment - Distant Signal, 1897-1931
... ...Communication Signal...signal flags. The Table of Codes was published, showing how to use combinations of these flags to send messages. The Code was revised in 1887 to cover situations where distance, light, wind and weather conditions affected the visibility of the flags and prevented clear communication. ...The same shapes continue to be used today for the sets of Day Shapes used as marine navigational signals that are mandatory on certain-sized vessels. flagstaff hill warrnambool flagstaff Hill Maritime Museum and village Shipwreck Coast Marine Navigation Marine communications Communication Signal Lifesaving ship at sea day shape masthead signal day signal day mark signals marine technology safety equipment navigation equipment marine day shape day marker cane day shape signal cone day signal cone cone signal cone day shape distant signal flagstaff signal signal station communications signals marine signals flaghoists International Marine Conference International Code of Signals signal codes marine safety signal flags daymark day symbol navigation Warrnambool flagstaff 1854 1857 1931 1887 1897 Distant Signal Cone, part of a Flagstaff signal set. ...This three-dimensional Distant Signal is part of a Flagstaff Signal set of ball, cone and drum shapes. It has been woven and then fabricated with strong metal swivel fittings and loops for suspending from a high point on a flagstaff at a signal station or on a ship’s masthead. The cane signal was constructed to withstand all weather and to be visible from a long distance. The gaps between the woven cane allow air to pass through, minimising possible swaying. Similar sets were made from rope or fabric. Warrnambool's Flagstaff was erected in 1854. Its primary use was to display visual signals that could convey messages between land and sea. It was also used to notify the local population of the approach of ships. One of the popular signalling codes in use in the early-to-mid 1800s was the Marryat’s Code but there were others in use as well; there was no one standard code. In 1857 the International Marine Conference adopted an International Code of Signals as a standard communications system for all vessels that could be understood in many different languages. The Normanby Advertiser reported on June 5th 1857 a query from the Post Master General as to whether the request of the Chief Harbour Master would be carried out, in that Warrnambool would receive a new flagstaff and a set of Marryatt’s signal flags. The Table of Codes was published, showing how to use combinations of these flags to send messages. The Code was revised in 1887 to cover situations where distance, light, wind and weather conditions affected the visibility of the flags and prevented clear communication. The first report of the International Code of Signals Committee of 1897 warned signalmen not to rely on ordinary semaphore flags and introduced a Distant Signal Code using either particular semaphore flags or the three-dimensional shapes of a ball, cone and drum that aligned with the semaphore flag shapes of a circle, pennant and square. International Code of Signals In 1931, after World War I’s experiences in using signal codes, the International Code of Signals conference in Washington revised and published the rules for the conduct of signalling. One of the changes was that “the use of the Distant Signals and of fixed semaphore was abandoned”. It is of interest to know that modern marine law in many countries insists that a set of Day Shapes must be carried onboard vessels of a certain size. These highly visible geometric shapes are used at sea in daylight to communicate messages between vessels. They are used in a similar way to the Distant Signals, in that different combinations of shapes represent different messages. The set of shapes includes a ball, cylinder, cone and diamond. The shapes are hung between the top of the vessel’s foremast and the front of the vessel. They are only coloured black and are about 1.5 metres high. The vertical line of shapes can mean messages such as Boat not under command, Fishing, and Under sail and power.Distant Signals were an important means of marine communication from the late 1880s to the early 1930s, including during World War I. They were an advancement to the International Shipping Codes and safety. The cane signals’ shapes appear to be the same from whatever direction they are viewed, removing confusion about the message they convey. The same shapes continue to be used today for the sets of Day Shapes used as marine navigational signals that are mandatory on certain-sized vessels.Distant Signal Cone, part of a Flagstaff signal set. A woven cane cone, painted black, with a metal rod passing through the centre and two crossed metal bars at the base. The central rod has a loop at the top and passes through the bars at the base, finishing in a metal loop. The rod has swivels at each end.flagstaff hill, warrnambool, flagstaff hill maritime museum and village, shipwreck coast, marine navigation, marine communications, communication signal, lifesaving, ship at sea, day shape, masthead signal, day signal, day mark signals, marine technology, safety equipment, navigation equipment, marine day shape, day marker, cane day shape, signal cone, day signal cone, cone signal, cone day shape, distant signal, flagstaff signal, signal station, communications, signals, marine signals, flaghoists, international marine conference, international code of signals, signal codes, marine safety, signal flags, daymark, day symbol, navigation, warrnambool flagstaff, 1854, 1857 1931, 1887, 1897 -
Flagstaff Hill Maritime Museum and VillageInstrument - Foghorn, Late 19th century
... communication...marine warning signal...Therefore the item has a historical connection with sailing and maritime pursuits from our past. flagstaff hill warrnambool shipwrecked coast flagstaff hill maritime museum maritime museum shipwreck coast flagstaff hill maritime village great ocean road foghorn maritime technology maritime communication marine warning signal portable foghorn bellows foghorn crank handle Robert Hope-Jones John Northey None English Rotary Norwegian Pattern nautical foghorn within a boxed pine varnished case with exposed corner dovetailing, original leather carrying strap, brass side crank, and original copper trumped horn. ...A foghorn is a device that uses sound to warn of navigational hazards like rocky coastlines, or boats of the presence of other vessels, in foggy conditions. The term is most often used with marine transport. When visual navigation aids such as lighthouses are obscured, foghorns provide an audible warning of rocky outcrops, shoals, headlands, or other dangers to shipping. An early form of fog signal was to use a bell, gong, explosive signal or firing a cannon to alert shipping. From the early 20th century an improved device called the diaphone was used in place of these other devices, The diaphone horn was based directly on the organ stop of the same name invented by Robert Hope-Jones, creator of the Wurlitzer organ. Hope-Jones' design was based on a piston that was closed only at its bottom end and had slots, perpendicular to its axis, cut through its sides, the slotted piston moved within a similarly slotted cylinder. Outside of the cylinder was a reservoir of high-pressure air. Initially, this air would be admitted behind the piston, pushing it forward. When the slots of the piston aligned with those of the cylinder, air passed into the piston, making a sound and pushing the piston back to its starting position, whence the cycle would be repeated. This method of producing a low audible sound was further developed as a fog signal by John Northey of Toronto and these diaphones were powered by compressed air produced by an electric motor or other mechanical means that admitted extremely powerful low-frequency notes. The example in the Flagstaff collection is an early cased and portable diaphone used on pleasure or sailing craft. By manually turning the crank handle air is produced and fed into valves that direct air across vibrating metal reeds to produce the required sound. in foggy weather, fog horns are used to pinpoint a vessels position and to indicate how the vessel is sailing in foggy conditions. One blast, when sailing on starboard tack and two blasts, when sailing on a port tack and three dots, when with wind is behind the vessel. Since the automation of lighthouses became common in the 1960s and 1970s, most older foghorn marine installations have been removed to avoid the need to run the complex machinery associated with them, and have been replaced with an electrically powered diaphragm or compressed air horns. The example in the collection is significant as it was used in the early 19th century for sailing vessels was important but these portable crank fog horns have also been superseded by modern electric varieties. Therefore the item has a historical connection with sailing and maritime pursuits from our past.English Rotary Norwegian Pattern nautical foghorn within a boxed pine varnished case with exposed corner dovetailing, original leather carrying strap, brass side crank, and original copper trumped horn. Card accessory with Directions for Use in both English and French.Noneflagstaff hill, warrnambool, shipwrecked coast, flagstaff hill maritime museum, maritime museum, shipwreck coast, flagstaff hill maritime village, great ocean road, foghorn, maritime technology, maritime communication, marine warning signal, portable foghorn, bellows foghorn, crank handle, robert hope-jones, john northey -
Flagstaff Hill Maritime Museum and VillageEquipment - EPIRB Transmitter
... signal...communication...communication unit for sending a distress location transmission in an emergency at sea. The EPIRB is a yellow, rectangular box with dials, buttons, indicator lights and instruction. An antenna protrudes from the top of the unit. The EPIRB unit sends a 406P (X) EPIRB, with 406M-Hz frequency, 48-hour duration signal...It also carries stories of heroic efforts to save lives, and other inventions to help reduce the chance of accidents at sea. flagstaff hill warrnambool shipwrecked-coast flagstaff-hill flagstaff-hill-maritime-museum maritime-museum shipwreck-coast flagstaff-hill-maritime-village emergency position indicating radio beacon epirb lokata ltd marine safety equipment satellite transmitting beacon Safety equipment distress signal life saving safety at sea shipwreck location LO-KATA Falmouth emergency beacon radio signal communication marine equipment "NAME OF VESSEL 'SERVICE IF SELF TEST FAILS' " “LO-KATA” moulded into the body ...This distress EPIRB unit (Emergency Position Indication Radio Beacon) was found on the beach at Levy's Point, Warrnambool, in December 2000 by a Warrnambool resident. Local police were alerted at the time. This distress signal unit is a world-wide COSPAS/SARSAT, satellite assisted, SAR (Search and Rescue) system for location of distress transmissions emitted by an EPIRB. Offshore cruising vessels must have such a unit as part of its essential safety equipment. This model EPIRB relies on four satellites with orbit times of approximately 100 minutes. Earlier units relied solely on aircraft flying overhead to detect and forward on the EPIRB’s location to Search And Rescue authorities, whereas this new system utilises satellites. An employee from the Lokata firm provided additional information about the Lokata EPIRB units. They had a machined aluminium case with labels that were also made on site. The units could be activated manually or automatically released when a magnetic switch in the case casing was activated. This later model, circa 1983, would have been mounted externally on a vessel's bulkhead in a spring-loaded, stainless-steel protective 'skeleton' mounting, The unit released when the water pressure sensor detected a set time it was under the water, in a similar way that life crafts were released. Each unit was registered to a particular vessel - the vessel's details on this unit are indecipherable. The Lokata Company was established in 1970, designing and manufacturing marine products including communications. The company no longer makes products with the “Lokata” brand. In 2001 Sartech Engineering Ltd. took over the support for the Lokata EPIRB beacons. This emergency location device is a late 20th century invention to help save lives at sea. It adds to the history of maritime life, its risks, the lives lost as sea, and the many inventions aimed as rescuing and saving lives. The local area is notorious for the number of lives lost through shipwreck. It also carries stories of heroic efforts to save lives, and other inventions to help reduce the chance of accidents at sea.EPIRB unit; “Emergency Position Indication Radio Beacon”. A distress communication unit for sending a distress location transmission in an emergency at sea. The EPIRB is a yellow, rectangular box with dials, buttons, indicator lights and instruction. An antenna protrudes from the top of the unit. The EPIRB unit sends a 406P (X) EPIRB, with 406M-Hz frequency, 48-hour duration signal. The maker was LOKATA Ltd in England. Remnants of a white label remain on the side. Circa 1980s."NAME OF VESSEL 'SERVICE IF SELF TEST FAILS' " “LO-KATA” moulded into the body. "406P (X) EPIRB" “Model 406” "Lokata Type No 92408" "UK Type approved to MPT 1278" "Class 2" "Made by Lokata Ltd, Falmouth Cornwall England TR10 8AE"" "LOKATE LTD. New North Road Hainault, Ilford Essex IG6 2UR" "ARMED / SAFE / TRANSMIT / CODE / DISPLAY / SET / wait / pass / fail / TEST" "IDENTIFIER / 1349:24034234N" [some characters may be different] "COUNTRY / DENMARK" "VESSEL IDENTITY / 124 [the rest is indecipherable]flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, emergency position indicating radio beacon, epirb, lokata ltd, marine safety equipment, satellite transmitting beacon, safety equipment, distress signal, life saving, safety at sea, shipwreck location, lo-kata, falmouth, emergency, beacon, radio signal, communication, marine equipment -
4th/19th Prince of Wales's Light Horse Regiment Unit History RoomBook, Communication for Armor, November 1965
... Soft covered book, the purpose of which is to present, in concise form, the information needed in planning and establishing communication with signal equipment being used in US Armor units. ...signals handbook usa US ARMY ARMOR SCHOOL Fort Knox Kentucky November 1965 Soft covered book, the purpose of which is to present, in concise form, the information needed in planning and establishing communication with signal equipment being used in US Armor units. ...Soft covered book, the purpose of which is to present, in concise form, the information needed in planning and establishing communication with signal equipment being used in US Armor units. US ARMY ARMOR SCHOOL Fort Knox Kentucky November 1965signals, handbook, usa -
National Vietnam Veterans Museum (NVVM)Manual, Signals Communication Equipment Manuals, 1960's
... Written on the label reads Signal Communication Equipment Manuals. The manual is held together with a metal slide on the inside....Signals Communication Equipment Manuals Manual Manual Electrical & Mechanical Engineering ...A brown coloured cardboard cover with a white label at the top. Written on the label reads Signal Communication Equipment Manuals. The manual is held together with a metal slide on the inside.manual, signals, signal communications, equipment -
Melbourne Tram MuseumFunctional object - Conductors (Signal) Bell - JS pattern, John Stephenson
... Part of a brass Conductor Communication Bell, or signal bell, consisting of cast frame, part of the bell striker and bell pull part. ... or signal bell made for use on tramcars. trams tramways conductors bells John Stephenson Part of a brass Conductor Communication Bell, or signal bell, consisting of cast frame, part of the bell striker and bell pull part. ...Bell used by the conductor or passengers to signal to the driver - stop, proceed or an emergency stop. The actual bell and part of the striker are missing. The striker has been broken off. The "JS" indicates it was made by John Stephenson of New York who made tramway equipment and the first cable tram saloon cars for Melbourne. Demonstrates a conductors communication or signal bell made for use on tramcars.Part of a brass Conductor Communication Bell, or signal bell, consisting of cast frame, part of the bell striker and bell pull part. Has at both ends, nine screw holes that were used to secure the bell to the roof of a tram. trams, tramways, conductors, bells, john stephenson -
Melbourne Tram MuseumFunctional object - Conductor's (Signal) Bell - MMTB Pattern, Melbourne & Metropolitan Tramways Board (MMTB)
... Brass Conductor Communication Bell, or signal bell, consisting of cast frame, bell, striker, bell pull part, three nuts to secure the bell to the frame and two rivets securing for the bell pull part. ...MMTB Drawing R1241 Details of Signal Bell refers. Demonstrates a conductors communication or signal bell made for use on tramcars. trams tramways conductors bells MMTB Has at either end, some letters cast into the section that was used to secure the bell into position. ...Bell used by the conductor or passengers to signal to the driver - stop, proceed or an emergency stop. MMTB Drawing R1241 Details of Signal Bell refers.Demonstrates a conductors communication or signal bell made for use on tramcars. Brass Conductor Communication Bell, or signal bell, consisting of cast frame, bell, striker, bell pull part, three nuts to secure the bell to the frame and two rivets securing for the bell pull part. Has at both ends, four screw holes that were used to secure the bell to the roof. Has at either end, some letters cast into the section that was used to secure the bell into position. Unable to be deciphered.trams, tramways, conductors, bells, mmtb -
Melbourne Tram MuseumFunctional object - Conductors Bell - cable tram, c1890
... Brass Conductor Communication Bell, or signal bell, consisting of cast frame, bell striker and bell pull part. ... or signal bell made for use on cable trams. trams tramways conductors bells cable trams Brass Conductor Communication Bell, or signal bell, consisting of cast frame, bell striker and bell pull part. ...Bell used by the conductor to signal to the driver to stop, proceed or an emergency stop. The flat leather strap indicates it was used on a cable tram, rather than an electric tramcar which were fitted with round leather cords. The leather strap is riveted to a round steel ring.Demonstrates a conductors communication or signal bell made for use on cable trams.Brass Conductor Communication Bell, or signal bell, consisting of cast frame, bell striker and bell pull part. Has at both ends, four open screw holes that were used to secure the bell to the roof of a tram with a flat 22mm wide leather strap attached using a steel ring.trams, tramways, conductors, bells, cable trams -
Melbourne Tram MuseumFunctional object - Conductor's (Signal) Bell -TB Pattern, Tramway Board
... Brass Conductor Communication Bell, or signal bell, consisting of cast frame, bell, striker, bell pull part, one nut and washer to secure the bell to the frame and two rivets securing for the bell pull part. ...Bell used by the conductor or passengers to signal to the driver - stop, proceed or an emergency stop. Demonstrates a conductors communication or signal bell made for use on tramcars. trams tramways conductors bells Tramway Board Brass Conductor Communication Bell, or signal bell, consisting of cast frame, bell, striker, bell pull part, one nut and washer to secure the bell to the frame and two rivets securing for the bell pull part. ...Bell used by the conductor or passengers to signal to the driver - stop, proceed or an emergency stop. Demonstrates a conductors communication or signal bell made for use on tramcars. Brass Conductor Communication Bell, or signal bell, consisting of cast frame, bell, striker, bell pull part, one nut and washer to secure the bell to the frame and two rivets securing for the bell pull part. Has at both ends, six screw holes that were used to secure the bell to the roof and at one end the initials "TB" cast in - "Tramway Board".trams, tramways, conductors, bells, tramway board -
Melbourne Tram MuseumFunctional object - Conductors (Signal) Bell - TB Pattern, Tramway Board
... Brass Conductor Communication Bell, or signal bell, consisting of cast frame, bell, striker, bell pull part, one nut to secure the bell to the frame and two rivets securing for the bell pull part. ...Bell used by the conductor or passengers to signal to the driver - stop, proceed or an emergency stop. TB Pattern Demonstrates a conductors communication or signal bell made for use on tramcars. trams tramways conductors bells MMTB Brass Conductor Communication Bell, or signal bell, consisting of cast frame, bell, striker, bell pull part, one nut to secure the bell to the frame and two rivets securing for the bell pull part. ...Bell used by the conductor or passengers to signal to the driver - stop, proceed or an emergency stop. TB PatternDemonstrates a conductors communication or signal bell made for use on tramcars.Brass Conductor Communication Bell, or signal bell, consisting of cast frame, bell, striker, bell pull part, one nut to secure the bell to the frame and two rivets securing for the bell pull part. Has at both ends, multiple screw holes that were used to secure the bell to the roof. Has at one end the initials "TB" cast in - "Tramway Board". trams, tramways, conductors, bells, mmtb -
Ballarat Tramway MuseumFunctional object - Conductor's (Signal) Bell - MMTB Pattern, Melbourne and Metropolitan Tramways Board (MMTB)
... Brass Conductor Communication Bell, or signal bell, consisting of cast frame, bell, striker, bell pull part, three nuts to secure the bell to the frame and two rivets securing for the bell pull part. ...Signal Bell refers. Tram 502 entered service 4/1928. Demonstrates a conductors communication or signal bell made for use on tramcars. trams tramways conductors bells mmtb W2 class tram 502 Brass Conductor Communication Bell, or signal bell, consisting of cast frame, bell, striker, bell pull part, three nuts to secure the bell to the frame and two rivets securing for the bell pull part. ...Bell used by the conductor or passengers to signal to the driver - stop, proceed or an emergency stop. MMTB Drawing R1241 Details of Signal Bell refers. Tram 502 entered service 4/1928. Demonstrates a conductors communication or signal bell made for use on tramcars. Brass Conductor Communication Bell, or signal bell, consisting of cast frame, bell, striker, bell pull part, three nuts to secure the bell to the frame and two rivets securing for the bell pull part. Has at both ends, four screw holes that were used to secure the bell to the roof. Has been stamped at one end on the underside "502" "1", indicating it was made or used on W2 502, No. 1 end. trams, tramways, conductors, bells, mmtb, w2 class, tram 502 -
Melbourne Tram MuseumFunctional object - Conductor's (Signal) Bell - MMTB Pattern, Melbourne & Metropolitan Tramways Board (MMTB)
... Brass Conductor Communication Bell, or signal bell, consisting of cast frame, bell, striker, bell pull part, three nuts to secure the bell to the frame and two rivets securing for the bell pull part. ...Signal Bell refers. Tram 579 entered service 9/1929. Demonstrates a conductors communication or signal bell made for use on tramcars. trams tramways conductors bells MMTB W2 class tram 579 Brass Conductor Communication Bell, or signal bell, consisting of cast frame, bell, striker, bell pull part, three nuts to secure the bell to the frame and two rivets securing for the bell pull part. ...Bell used by the conductor or passengers to signal to the driver - stop, proceed or an emergency stop. MMTB Drawing R1241 Details of Signal Bell refers. Tram 579 entered service 9/1929.Demonstrates a conductors communication or signal bell made for use on tramcars. Brass Conductor Communication Bell, or signal bell, consisting of cast frame, bell, striker, bell pull part, three nuts to secure the bell to the frame and two rivets securing for the bell pull part. Has at both ends, four screw holes that were used to secure the bell to the roof. Has been stamped at one end on the underside "579 2", indicating it was made or used on W2 579, No. 2 end.trams, tramways, conductors, bells, mmtb, w2 class, tram 579 -
Melbourne Tram MuseumFunctional object - Conductors (Signal) Bell - N&C pattern
... Brass Conductor Communication Bell, or signal bell, consisting of cast frame, bell, striker, bell pull part, sheet metal domed section that is secured to the underside of the bell with one nut to secure the bell to the frame and two rivets securing for the bell pull part. ...Bell used by the conductor or passengers to signal to the driver - stop, proceed or an emergency stop. N&C - Demonstrates a conductors communication or signal bell made for use on tramcars. trams tramways conductors bells MMTB Brass Conductor Communication Bell, or signal bell, consisting of cast frame, bell, striker, bell pull part, sheet metal domed section that is secured to the underside of the bell with one nut to secure the bell to the frame and two rivets securing for the bell pull part. ...Bell used by the conductor or passengers to signal to the driver - stop, proceed or an emergency stop. N&C - Demonstrates a conductors communication or signal bell made for use on tramcars.Brass Conductor Communication Bell, or signal bell, consisting of cast frame, bell, striker, bell pull part, sheet metal domed section that is secured to the underside of the bell with one nut to secure the bell to the frame and two rivets securing for the bell pull part. Has at both ends, six screw holes that were used to secure the bell to the roof. Note the difference in the casting detail between the two ends of the bell.trams, tramways, conductors, bells, mmtb -
Ballarat Tramway MuseumFunctional object - Tramcar Conductors (Signal) Bell
... Brass Conductor Signal or Communication Bell, consisting of cast frame, bell, striker, bell pull part, one nut to secure the bell to the frame and a screwed bolt for the bell pull part. ...communication bell made by or for use on Melbourne tramcars. A reminder of SEC Tram No. 20 which was involved in a major accident in Victoria St on 16/9/1970 Conductor Bell Trams Ballarat Tram 20 Accidents tramways Brass Conductor Signal or Communication Bell, consisting of cast frame, bell, striker, bell pull part, one nut to secure the bell to the frame and a screwed bolt for the bell pull part. ...Recovered by the donor, with approval of the Depot Foreman, from the wreckage in the SEC Ballarat yard from the demolished Tram No. 20 that was involved in a collision on 16/9/1970. One of the support members, near the bell striker has been broken through and the area where it was secured to the roof of the tram at the same end has been bent. This may be the result of the accident. JS - John Stephenson of New York?Demonstrates a conductors communication bell made by or for use on Melbourne tramcars. A reminder of SEC Tram No. 20 which was involved in a major accident in Victoria St on 16/9/1970Brass Conductor Signal or Communication Bell, consisting of cast frame, bell, striker, bell pull part, one nut to secure the bell to the frame and a screwed bolt for the bell pull part. Has a section of leather bell cord and a leather bell cord hanging piece. Has the initials "JS" cast in both ends that were used to secure the bell to the roof. Has two metal clips used to secure the leather bell cord into position.conductor, bell, trams, ballarat, tram 20, accidents, tramways -
Flagstaff Hill Maritime Museum and VillageEquipment - Wicker Basket
... Flares are used for distress signalling, illumination, communication or defensive countermeasures in civilian and military applications. ...Flares are used for distress signalling, illumination, communication or defensive countermeasures in civilian and military applications. ...A flare, also sometimes called a fusee, is a type of pyrotechnic that produces a bright light or intense heat without an explosion. Flares are used for distress signalling, illumination, communication or defensive countermeasures in civilian and military applications. Flares may be ground pyrotechnics, projectile pyrotechnics, or parachute-suspended to provide maximum illumination time over a large area. Projectile pyrotechnics may be dropped from aircraft, fired from rocket or artillery, or deployed by flare guns or hand held percussive tubes. Signalling flares have been in use by all branches of the military services since the 1920s also by the maritime services to signal other ships or for distress purposes. The earliest recorded use of gunpowder for signalling purposes was the 'signal bomb' used by the Chinese Song Dynasty as the Mongol-led Yuan Dynasty besieged Yangzhou in 1276. These soft-shelled bombs, timed to explode in mid-air, were used to send messages to a detachment of troops far in the distance. Another mention of the signal bomb appears in a text dating from 1293 requesting their collection from those still stored in Zhejiang. A signal gun appears in Korea by 1600. The (Wu I Thu Phu Thung Chih or Illustrated Military Encyclopedia) written in 1791 depicts a signal gun in an illustration. The item was used to carry and store flares for signalling use as the inscription on the canvas cover suggests. Given the method of storing flares is in a wicker basket that is non conducting of an electrical charge that may accidentally set of explosive materials. The writer assumes the basket was used from the early 20th century and most likely by maritime or military services to store it's flares.Basket cane square with metal locks & rope handles each end. Canvas reinforced on vertical sides with a canvas cover on top. Canvas cover has leather straps. Stencilled on canvas in white paint "SIGNALLING STORES" flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, basket, cane basket, signalling stores -
Flagstaff Hill Maritime Museum and VillageEquipment - Distant Signal, 1897-1931
... signal flags. The Table of Codes was published, showing how to use combinations of these flags to send messages. The Code was revised in 1887 to cover situations where distance, light, wind and weather conditions affected the visibility of the flags and prevented clear communication. ...Distant Signals were an important means of marine communication from the late 1880s to the early 1930s, including during World War I. ...This three-dimensional Distant Signal is part of a Flagstaff Signal set of ball, cone and drum shapes. It has been woven and then fabricated with strong metal swivel fittings and loops for suspending from a high point on a flagstaff at a signal station or on a ship’s masthead. The cane signal was constructed to withstand all weather and to be visible from a long distance. The gaps between the woven cane allow air to pass through, minimising possible swaying. Similar sets were made from rope or fabric. Warrnambool's Flagstaff was erected in 1854. Its primary use was to display visual signals that could convey messages between land and sea. It was also used to notify the local population of the approach of ships. One of the popular signalling codes in use in the early-to-mid 1800s was the Marryat’s Code but there were others in use as well; there was no one standard code. In 1857 the International Marine Conference adopted an International Code of Signals as a standard communications system for all vessels that could be understood in many different languages. The Normanby Advertiser reported on June 5th 1857 a query from the Post Master General as to whether the request of the Chief Harbour Master would be carried out, in that Warrnambool would receive a new flagstaff and a set of Marryatt’s signal flags. The Table of Codes was published, showing how to use combinations of these flags to send messages. The Code was revised in 1887 to cover situations where distance, light, wind and weather conditions affected the visibility of the flags and prevented clear communication. The first report of the International Code of Signals Committee of 1897 warned signalmen not to rely on ordinary semaphore flags and introduced a Distant Signal Code using either particular semaphore flags or the three-dimensional shapes of a ball, cone and drum that aligned with the semaphore flag shapes of a circle, pennant and square. International Code of Signals In 1931, after World War I’s experiences in using signal codes, the International Code of Signals conference in Washington revised and published the rules for the conduct of signalling. One of the changes was that “the use of the Distant Signals and of fixed semaphore was abandoned”. It is of interest to know that modern marine law in many countries insists that a set of Day Shapes must be carried onboard vessels of a certain size. These highly visible geometric shapes are used at sea in daylight to communicate messages between vessels. They are used in a similar way to the Distant Signals, in that different combinations of shapes represent different messages. The set of shapes includes a ball, cylinder, cone and diamond. The shapes are hung between the top of the vessel’s foremast and the front of the vessel. They are only coloured black and are about 1.5 metres high. The vertical line of shapes can mean messages such as Boat not under command, Fishing, and Under sail and power.Distant Signals were an important means of marine communication from the late 1880s to the early 1930s, including during World War I. They were an advancement to the International Shipping Codes and safety. The cane signals’ shapes appear to be the same from whatever direction they are viewed, removing confusion about the message they convey. The same shapes continue to be used today for the sets of Day Shapes used as marine navigational signals that are mandatory on certain-sized vessels.Distant Signal Ball, part of a Flagstaff signal set. A round woven cane ball, painted black, with a metal rod passing through the centre. The rod has a loop at each end, then a concave, octagonal metal plate that rests on the outside surface of the ball, serving as a washer. The rod has swivels at each end.flagstaff hill, flagstaff hill maritime museum and village, warrnambool, maritime museum, maritime village, great ocean road, shipwreck coast, distant signal, signal, maritime signal, ball signal, signal shape, flagstaff signal, signal station, masthead signal, communications, marine technology, signals, marine signals, flaghoists, international marine conference, international code of signals, signal codes, marine safety, signal flags, day shape, daymark, day symbol, navigation, warrnambool flagstaff, 1854, 1857 1931, 1887, 1897 -
Flagstaff Hill Maritime Museum and VillageMorse key
... flagstaff hill warrnambool shipwrecked-coast flagstaff-hill flagstaff-hill-maritime-museum maritime-museum shipwreck-coast flagstaff-hill-maritime-village morse key teleprinter telegraphic printer codes signals communication telegraphy Morse key telegraphic printer, 250 ohm resistors inward and outward switch and teleprinter with tape reel to record messages spare wheel on wood base to collect and store full reels from teleprinter. ...Morse key telegraphic printer, 250 ohm resistors inward and outward switch and teleprinter with tape reel to record messages spare wheel on wood base to collect and store full reels from teleprinter.flagstaff hill, warrnambool, shipwrecked-coast, flagstaff-hill, flagstaff-hill-maritime-museum, maritime-museum, shipwreck-coast, flagstaff-hill-maritime-village, morse key, teleprinter, telegraphic printer, codes, signals, communication, telegraphy -
Flagstaff Hill Maritime Museum and VillageEquipment - Distant Signal, 1897-1931
... signal flags. The Table of Codes was published, showing how to use combinations of these flags to send messages. The Code was revised in 1887 to cover situations where distance, light, wind and weather conditions affected the visibility of the flags and prevented clear communication. ...Distant Signals were an important means of marine communication from the late 1880s to the early 1930s, including during World War I. ...This three-dimensional Distant Signal is part of a Flagstaff Signal set of ball, cone and drum shapes. It has been woven and then fabricated with strong metal swivel fittings and loops for suspending from a high point on a flagstaff at a signal station or on a ship’s masthead. The cane signal was constructed to withstand all weather and to be visible from a long distance. The gaps between the woven cane allow air to pass through, minimising possible swaying. Similar sets were made from rope or fabric. Warrnambool's Flagstaff was erected in 1854. Its primary use was to display visual signals that could convey messages between land and sea. It was also used to notify the local population of the approach of ships. One of the popular signalling codes in use in the early-to-mid 1800s was the Marryat’s Code but there were others in use as well; there was no one standard code. In 1857 the International Marine Conference adopted an International Code of Signals as a standard communications system for all vessels that could be understood in many different languages. The Normanby Advertiser reported on June 5th 1857 a query from the Post Master General as to whether the request of the Chief Harbour Master would be carried out, in that Warrnambool would receive a new flagstaff and a set of Marryatt’s signal flags. The Table of Codes was published, showing how to use combinations of these flags to send messages. The Code was revised in 1887 to cover situations where distance, light, wind and weather conditions affected the visibility of the flags and prevented clear communication. The first report of the International Code of Signals Committee of 1897 warned signalmen not to rely on ordinary semaphore flags and introduced a Distant Signal Code using either particular semaphore flags or the three-dimensional shapes of a ball, cone and drum that aligned with the semaphore flag shapes of a circle, pennant and square. International Code of Signals In 1931, after World War I’s experiences in using signal codes, the International Code of Signals conference in Washington revised and published the rules for the conduct of signalling. One of the changes was that “the use of the Distant Signals and of fixed semaphore was abandoned”. It is of interest to know that modern marine law in many countries insists that a set of Day Shapes must be carried onboard vessels of a certain size. These highly visible geometric shapes are used at sea in daylight to communicate messages between vessels. They are used in a similar way to the Distant Signals, in that different combinations of shapes represent different messages. The set of shapes includes a ball, cylinder, cone and diamond. The shapes are hung between the top of the vessel’s foremast and the front of the vessel. They are only coloured black and are about 1.5 metres high. The vertical line of shapes can mean messages such as Boat not under command, Fishing, and Under sail and power.Distant Signals were an important means of marine communication from the late 1880s to the early 1930s, including during World War I. They were an advancement to the International Shipping Codes and safety. The cane signals’ shapes appear to be the same from whatever direction they are viewed, removing confusion about the message they convey. The same shapes continue to be used today for the sets of Day Shapes used as marine navigational signals that are mandatory on certain-sized vessels.Distant Signal Ball, part of a Flagstaff signal set. A round woven cane ball, painted black, with a metal rod passing through the centre. The rod has a loop at each end, then a concave, octagonal metal plate that rests on the outside surface of the ball, serving as a washer. The rod has swivels at each end.distant signal, flagstaff signal, signal station, masthead signal, communications, marine technology, signals, marine signals, flaghoists, international marine conference, international code of signals, signal codes, marine safety, signal flags, day shape, daymark, day symbol, navigation, warrnambool flagstaff, 1854, 1857 1931, 1887, 1897 -
Flagstaff Hill Maritime Museum and VillageEquipment - Ship's Telegraph section, A. Robinson & Co. Ltd, Late-19th to mid-20th centuries
... signal the change at the same time. The engineer then adjusts the ship’s engines and steering equipment to follow the pilot’s Order. The manufacturer, A. Robinson & Co. Ltd of Liverpool, established his business in 1780 and continued until 1968 when the business was purchased by marine products maker Chadburns, established in London in 1870. This Engine Room section is part of a ship's telegraph communication ...The ship’s communication system that was used from the late 19th century to early-to-mid-20th-century is called an Engine Order Telegraph (E.O.T.) or ship’s telegraph. The system has two parts, the Bridge Section and the Engine Room Section. The Bridge Section is usually mounted on top of a pedestal, and the Engine Room Section is often attached to a vertical surface. The standard commands printed or stamped onto the dial are the directions of AHEAD and ASTERN, and the speeds of STOP, SLOW, HALF, and FULL. The ship’s pilot on the Bridge of a vessel sends his Orders for speed and direction to the to the Engine Room with the E.O.T. He moves the lever or levers, depending on the number of engines the ship has, to change the indicator on the Bridge Section’s dial to point in the new direction and speed of travel. This change causes the Orders to be duplicated on the Engine Room Section’s dial and a bell to signal the change at the same time. The engineer then adjusts the ship’s engines and steering equipment to follow the pilot’s Order. The manufacturer, A. Robinson & Co. Ltd of Liverpool, established his business in 1780 and continued until 1968 when the business was purchased by marine products maker Chadburns, established in London in 1870.This Engine Room section is part of a ship's telegraph communication system and represents marine technology used in the late-19th to mid-20th-century. Engine Room Section of a ship’s telegraph or Engine Order Telegraph (E.O.T.). The round brass dial has inscriptions stamped around its edge and centre. Red inlaid glass plates have inscriptions in white paint on them. The inscriptions are nautical terms for direction and speed and include the maker’s details. A rotating pointer is joined to the centre of the dial. The maker is A. Robinson & Co. Ltd of Liverpool. Stamped: “FULL / HALF / SLOW / STOP / FULL / HALF / SLOW / STOP”, “AHEAD / ASTERN” Printed: “FULL / HALF / SLOW / STOP / FULL / HALF / SLOW / STOP” Stamped on the dial: “A. ROBINSON & CO. LTD / MANUFACTURERS / LIVERPOOL”flagstaff hill, warrnambool, maritime museum, maritime village, great ocean road, shipwreck coast, marine technology, marine communications, engine order telegraph, e.o.t., ship’s telegraph, bridge section, engine room section, ship’s engine telegraph section, marine telegraph, a. robinson & co. ltd, liverpool -
The Beechworth Burke MuseumUniform - Hat, 1939
... The Signals Branch, which Joan Cahill served in, was responsible for providing reliable and secure communication services between the Australian army and Allied forces....The Signals Branch, which Joan Cahill served in, was responsible for providing reliable and secure communication services between the Australian army and Allied forces. ...This hat was worn by Joan Cahill during her service in the AWAS, where she served in the Signals Branch and rose to the rank of Corporal. The AWAS was formed in 1941, and its main objective was to support the Australian army in various ways. Over 24,000 women served in the AWAS, performing critical support roles such as clerical work, vehicle maintenance, and communications. The Signals Branch, which Joan Cahill served in, was responsible for providing reliable and secure communication services between the Australian army and Allied forces.Khaki women's army hat with grosgrain band wrapped around the circumference with a small metal rising sun attached.burke museum, beechworth, army service, army uniform, joan cahill, australian women's army service, ww2, wwii, world war two -
Werribee RSL Sub BranchBook, Military History, SIGNALS STORY OF THE AUSTRALIAN CORPS OF SIGNALS, 1951 (exact)
... "SIGNALS" is an outline of the achievments of the Australian Corpf of Signals over the years from the campaigns in the Middle East to the present day of the victories in New Guinea. Itpays tribute to the Arm of the services which is on duty and maintainimng vital communication channels for the passage of signals traffic to the far-flung Headquarters and Units of the Australian Military Forces...."SIGNALS" is an outline of the achievments of the Australian Corpf of Signals over the years from the campaigns in the Middle East to the present day of the victories in New Guinea. Itpays tribute to the Arm of the services which is on duty and maintainimng vital communication channels for the passage of signals traffic to the far-flung Headquarters and Units of the Australian Military Forces. ..."SIGNALS" is an outline of the achievments of the Australian Corpf of Signals over the years from the campaigns in the Middle East to the present day of the victories in New Guinea. Itpays tribute to the Arm of the services which is on duty and maintainimng vital communication channels for the passage of signals traffic to the far-flung Headquarters and Units of the Australian Military Forces.'TO THE FALLEN" Front cover is embossed. The embossing is in silver. The embossung shows the Signal Corp emblem and title. world war two, signals, middle east, australian military forces, new, guinea, aaho 6 -
Werribee RSL Sub BranchBook, Military History, SIGNALS STORY OF THE AUSTRALIAN CORPS OF SIGNALS, 1951 (exact)
... "SIGNALS" is an outline of the achievments of the Australian Corpf of Signals over the years from the campaigns in the Middle East to the present day of the victories in New Guinea. Itpays tribute to the Arm of the services which is on duty and maintainimng vital communication channels for the passage of signals traffic to the far-flung Headquarters and Units of the Australian Military Forces...."SIGNALS" is an outline of the achievments of the Australian Corpf of Signals over the years from the campaigns in the Middle East to the present day of the victories in New Guinea. Itpays tribute to the Arm of the services which is on duty and maintainimng vital communication channels for the passage of signals traffic to the far-flung Headquarters and Units of the Australian Military Forces. ..."SIGNALS" is an outline of the achievments of the Australian Corpf of Signals over the years from the campaigns in the Middle East to the present day of the victories in New Guinea. Itpays tribute to the Arm of the services which is on duty and maintainimng vital communication channels for the passage of signals traffic to the far-flung Headquarters and Units of the Australian Military Forces.'TO THE FALLEN" Front cover is embossed. The embossing is in silver. The embossung shows the Signal Corp emblem and title. world war two, signals, middle east, australian military forces, new, guinea, aaho 6 -
Nhill Aviation Heritage CentreMemorabilia - Signalling lamp
... signal lamp...lantern...communication...Type used on the RAAF Base by air crew and control tower operators. signal lamp lantern communication signals RAAF Ref No SA/760 Lantern portable signalling. ...Type used on the RAAF Base by air crew and control tower operators. Electric signalling lamp in grey metal casing, and hand grip with trigger at rear. Mount on top for sighting attachmentRAAF Ref No SA/760 Lantern portable signalling. Admiralty Pattern No 5110D. Serial No. 3901 Year 1942 Amalgamated Wireless A/SIA LTD signal lamp, lantern, communication, signals -
Lara RSL Sub BranchBook, Signals - Story of the Australian Corps of Signals, 1953
... An outline of the Australian Signals Corps over the years from the campaign in the Middle East to the present day of the victories in New Guinea. A tribute to the corps that stayed on duty every hour of every day providing and maintaining vital communication channels. signal corps wwii c.h.simpson motorcycle couriers signals 7 australian division lt.commander b.t.r chadd palestine spark plug semiphore morse code field radio a.i.f british signals corps pieter mersk breconshire corp signals new guinea malaysa singapore switchboard carrier pigeons linesmen gaza signal office Signals - Story of the Australian Corps of Signals. ...Little has been written previously about this technical group of men and women and that their duties were under insurmountable difficulties which they faced and overcome in conditions that were encountered in the desert and jungle warfare. Without their constant and never ending services, the task of the force in bringing to a close this fight for freedom would have been greatly handicapped.An outline of the Australian Signals Corps over the years from the campaign in the Middle East to the present day of the victories in New Guinea. A tribute to the corps that stayed on duty every hour of every day providing and maintaining vital communication channels.Signals - Story of the Australian Corps of Signals. Green front and back hardcover with black text and insignia. Photographs, cartoons, illustrations and poems. The inside front and back covers have a photograph montage in green sepia.signal corps, wwii, c.h.simpson, motorcycle couriers, signals 7 australian division, lt.commander b.t.r chadd, palestine, spark plug, semiphore, morse code, field radio, a.i.f, british signals corps, pieter mersk, breconshire corp signals, new guinea, malaysa, singapore, switchboard, carrier pigeons, linesmen, gaza signal office -
Flagstaff Hill Maritime Museum and VillageDocument - Telegraph, Klingender Dickson and Kiddle, solicitors, 3-6-1896
... signals are then converted back to words at the other end of the wire. Morse code is a similar system. A fee is charged to send a telegraph, per letter or per word. The telegraph greatly improved communication...signals are then converted back to words at the other end of the wire. Morse code is a similar system. A fee is charged to send a telegraph, per letter or per word. The telegraph greatly improved communication ...The telegraph system of sending and receiving messages was developed in the early 1800s and improved as time went on. It sends electronic signals that represent letters and words along a wire. Those signals are then converted back to words at the other end of the wire. Morse code is a similar system. A fee is charged to send a telegraph, per letter or per word. The telegraph greatly improved communication, particularly in a large country like Australia. It was a fast way to send news and send out calls for help for people during a shipwreck. In Warrnambool, it was even used to set the correct time every day; a signal was sent from the time ball in Melbourne, and along the railway line to the Warrnambool Post Office. This 1896 telegraph tells a big story in very few words, only fourteen! The layout of the paper form includes a table with four columns and five rows, set out for writing just one word into each of the twenty spaces. The happy message is the approval to go ahead with the exchange/sale of the title from landowner Rutledge to Wilson. The Melbourne Legal firm Klingender Dickson and Kiddle sent this message on behalf of its client to the Bank of Australasia in Warrnambool. The Bank of Australasia was incorporated by the Royal Charter of England in March 1834. The bank began in Australia on 14th December 1835, opening in Sydney. The Acting Superintendent of the bank at that time was David Charters McArthur. He was Superintendent from 1867-to 1876. The Melbourne branch opened on 28th August 1838 in a two-roomed brick cottage on the north side of Little Collins Street, where two huge mastiff dogs were used at night to guard the bank. The government also provided an armed military sentinel. Due to the bank's rapid growth, a new building for the Melbourne branch was opened in 1840 at 75 Collins Street West. By 1879 the bank had been upgraded to a magnificent two-storey building on the corners of Collins and Queens Streets, with the entry on Collins Street. In 1951 the Bank of Australasia amalgamated with the Union Bank to form Australia and New Zealand Bank, now known as the ANZ. Then in 1970, the ANZ merged with both the ES&A and the London Bank of Australia to form the ANZ Banking Group Limited. The ANZ Banking Group Ltd kindly donated a variety of historic items from the Bank of Australasia. BANK of AUSTRALASIA, WARRNAMBOOL – In 1854 Warrnambool had two banks, the Union Bank and the Bank of Australasia. Later, completely different bank businesses opened; in 1867 the National Bank of Australasia, then in 1875 the Colonial Bank of Australasia. The original Warrnambool branch of the Bank of Australasia was established in July 1854, and operated from a leased cottage on Merri Street, close to Liebig Street. The bank later bought a stone building previously erected by drapers Cramond & Dickson on the corner of Timor and Gibson Streets. Samuel Hannaford was a teller and then Manager at the Warrnambool branch from 1855 to 1856 and the Warrnambool Council chose that bank for its dealings during 1856-57. In 1859 Roberts & Co. was awarded the contract to build the new Bank of Australasia branch for the sum of £3,000. The land was on a sand hill on the northeast corner of Timor and Kepler Streets and had been bought in 1855 from investor James Cust. The new building opened on May 21, 1860. The bank continued to operate there until 1951 when it merged with the Union Bank to form the ANZ Bank, which continued operating from its Liebig Street building. Warrnambool City Council purchased the former Bank of Australasia building in 1971 and renovated it, then on 3rd December 1973 it was officially opened as the Art Gallery by Cr. Harold Stephenson and Gallery Director John Welsh. The Gallery transferred to the purpose-built building in Liebig Street in 1986 and the old bank building is now the Gallery club. Staff at the Bank of Australasia in Warrnambool included the following men but others were also involved: Samuel Hannaford, Teller then Manager from 1855-1856; W H Palmer, Manager from January 1857 until November 1869 when the Teller Basil Spence was promoted to Manager; H B Chomley, Manager from April 1873 and still there in 1886; A Butt, Manager in 1895-1904; J R McCleary Accountant and Acting Manager for 12 months, until 1900; A Kirk, Manager 1904; J Moore, staff until his transfer to Bendigo in December 1908; J S Bath was Manager until 1915; C C Cox, Manager until April 1923; Richard C Stanley, Manager 1923 to April 1928. This telegraph has historical significance as it was sent to the Bank of Australasia in Warrnambool. The parties involved in the message, Rutledge and Wilson, were involved in a land deal in 1896 when the district was importing and exporting goods into and out of Warrnambool Harbour via sailing ships. It is also a historical record of the nature of financial agreements between similar institutions in Warrnambool and the district. The telegraph is significant for its association with the Bank of Australasia in Warrnambool, the first bank in Warrnambool, established in 1854. The bank continued to operate until its merger in 1951 when it became the ANZ Bank, which is still in operation today. The Bank was an integral part of the establishment and growth of commerce in Colonial Warrnambool and throughout Australia.Telegraph RECEIVED: Warrnambool Post Office, Wednesday 3rd June 1896. FROM: Klingender, Dickson, and Kiddle, solicitors, Bank Place, Melbourne FOR :the Manager, Bank of Australasia, Warrnambool, REGARDING: Rutledge to Wilson titleSTAMP: text inside circle "WARRNAMBOOL VIC", and in centre of the circle "JE 3 96" Telegraph No. "23", FROM :"Melbourne", FOR: "The Mgr, Bank of Australasia" MESSAGE (14 words): "Rutledge to Wilson title accepted by Purchaser's Solicitors settlement may be effected with auctioneers" TIME: "9:24" SIGNED: " Klingender Dickson Kiddle, Solrs, Bank Place"flagstaff hill, warrnambool, flagstaff hill maritime museum, maritime museum, commerce, banking, bank of australasia, australia & new zealand bank, anz bank, david charters mcarthur, telegraph, 1896, rutledge, wilson, klengender, dickson, kiddle, warrnambool post office, klengender dickson and kiddle, bank place -
Flagstaff Hill Maritime Museum and VillageEquipment - Ship's Telegraph section, Chadburn & Sons, 1875-1898
... The gong sounded two signals whenever the navigational commands to change the speed or direction were given by the ship’s pilot. Communication...The gong sounded two signals whenever the navigational commands to change the speed or direction were given by the ship’s pilot. Communication ...The ship’s telegraph section was once part of the navigational equipment of the famous paddle steamer, PS Hygeia, and was later installed on Flagstaff Hill’s exhibit, the steamer Rowitta. This is the Bridge Section of a ship’s telegraph, a Duplex Gong model, made by Chadburn & Son of Liverpool. The gong sounded two signals whenever the navigational commands to change the speed or direction were given by the ship’s pilot. Communication between the ship’s pilot and the engine room in the late 19th to the mid-20th centuries was made with a system called an Engine Order Telegraph (E.O.T.) or ship’s telegraph. The equipment has two parts, the Bridge Section and the Engine Room Section. The Bridge Section was usually mounted onto a pedestal, and the Engine Room Section was attached to a vertical surface. The standard marine commands were printed or stamped around the face of the dial and indicated by a pointer or arrow that was usually moved by a rotating brass section or handle. The ship’s pilot stationed on the Bridge of a vessel sends his Orders for speed and direction to the Engine Room with the E.O.T. He moves the lever or levers, depending on the number of engines the ship has, to change the indicator on the Bridge Section’s dial to point in the new direction and speed of travel. This change causes the Orders to be duplicated on the Engine Room Section’s dial and a bell or bells to signal the change at the same time. The engineer then adjusts the ship’s engines and steering equipment to follow the pilot’s Order. CHADBURN & SON, Liverpool- Chadburn Brothers, William and C.H., were joint inventors and well-established makers of optical and scientific instruments and marine gauges. The firm was granted the Prince Albert Royal Warrant in the late 19th century. In 1870, William Chadburn applied for a patent for his navigational communication device for use on ships. By 1875, Chadburn & Son was producing the brass Engine Order Telegraph in its plant at 71 Lord Street, Liverpool. In 1911, the ship, RMS Titanic, was launched, fitted with Chadburn & Sons E.O.T. The Chadburn Ship Telegraph Company Limited was registered in 1898 to take over Chadburn & Sons. In 1903, a large factory at Bootle, near Liverpool, and its products were being sold overseas. In 1920, electric-powered telegraphs were developed. In 1944, the name changed to Chadburn’s (Liverpool) Limited. In 1968, the company became Chadburn Bloctube Ltd. In 2000, the company, now Bloctube Marine Limited, was still manufacturing ship telegraphs. The P.S. HYGEIA 1890-1932: - This ship’s telegraph was installed on the new paddle steamer, PS Hygeia, one of three iconic pleasure steamers famous for providing regular services in Port Phillip Bay, Victoria, to thousands of passengers between the ports of Queenscliff, Sorrento, Portsea, Dromana, Rosebud, Rye, and Mornington. It joined the Ozone and the Weeroona, all three described as being glamorous, powerful and fast. Its ticket office was on the pier itself. The P.S. Hygeia was built in Yorker, Scotland, in 1890, by Napier, Sharks & Bell. It was registered in Melbourne, Australia, by Hubbart, Parker & Co. in 1891. The steel ship was 92 metres long, able to travel at 22 knots, and licensed to carry over 1600 passengers in luxury, with even a barber shop on board. The regular service between the ports in Port Phillip Bay, Victoria, continued for over 40 years. With the decline in passenger demand, the service wound down. The Hygeia was sold to H.M. Morris in 1931 for demolition and breaking up. Equipment, fittings, and even lifebuoys were sold, with many items purchased by people who had some connection to the Hygeia. On August 25th, 1931, what was left of the vessel departed Port Melbourne and eventually, in June 1932, it was laid to rest at the ships’ graveyard outside Port Phillip Heads. The SS ROWITTA 1909-2015: - The ship’s telegraph was originally installed on the PS Hygeia. It was purchased when the Hygeia was broken up in 1931 and later installed, in 1975, on Flagstaff Hill’s SS Rowitta, an exhibit greatly enjoyed by the public until it was demolished in 2015. The ferry “SS Rowitta” was built in 1909 in Hobart, Tasmania. The timber steam ferry was built using planks of Huon and Karri wood. It was a favourite with sightseeing passengers steaming along Tasmania’s Tamar and Derwent rivers for 30 years. Rowitta was also known as Tarkarri and Sorrento and had worked as a coastal trading vessel between Devonport and Melbourne, and Melbourne, Queenscliff and Sorrento. The vessel had given over 100 years of service and pleasure. This Bridge section of a ship’s Engine Order Telegraph, used with an Engine Room section, represents late-19th-century change and progress in communication and navigation at sea. This type of equipment was still in use in the mid-20th century. It is significant for its association with its maker, Chadburn & Son, of Liverpool, a well-known marine instrument maker whose work was recognised by English Royalty, and whose products were selected to supply similar equipment for use on the RMS Titanic. The ship’s telegraph is also significant for its association with the paddle steamer PS Hygeia, one of three iconic steamers that transported thousands of passengers from port to port within Port Phillip Bay, Victoria, for over 40 years from the 1890s to the 1930s. Queenscliff Borough remembers the Hygeia by naming a road near the pier Hygeia Drive. The Hygeia is registered on the Victorian Heritage Database as a vessel of significance, VHR S329. In 1901, Hygeia had the privilege of carrying their Royal Highnesses, the Duke and Duchess of York, from Mornington to St Kilda Pier, Melbourne, during their Royal visit celebrating the Federation of Australia. The ship’s telegraph is also important for its connection with the Rowitta, a large exhibit on display at Flagstaff Hill Maritime Village, aiding maritime education for over 40 years. It represented the importance of coastal traders to transport, trade and communication along the coast of Victoria, and before the availability of rail and motor vehicles, serving many roles. Bridge section of a Ship’s Telegraph or Engine Order Telegraph (E.O.T.). The round, double-sided, painted glass dial is inside a brass case behind glass. It is fitted onto an outward tapering brass pedestal with a round base. The brass indicator arrows between the handles point simultaneously to both sides of the dial when moved. An oval brass maker’s plate is attached to the top of the case. The dial’s faces have inscriptions that indicate speed and direction, and the front face and plate include the maker’s details. A serial number is stamped on the collar where the dial is fitted to the pedestal. The ship’s telegraph is a Duplex Gong model, made by Chadburn & Son of Liverpool. It was originally part of the navigational fittings on the paddle steamer, PS Hygeia.Dial, maker’s details: “PATENT “DUPLEX GONG” TELEGRAPH / CHADBURN & SON / TELEGRAPH WORKS / PATENTEES & MANUFACTURERS / 11 WATERLOO ROAD / LIVERPOOL” LONDON / 105 FENCHURCH STREET” “NEWCASTLE / 85 QUAY + SIDE” “GLASGOW / 69 ANDERSON QUAY” “PATENT” Dial instructions: “FULL / HALF/ SLOW / FINISHED WITH ENGINES / STOP STAND BY / SLOW / HALF / FULL / ASTERN / AHEAD” Maker’s plate: “CHADBURN / & SON / PATENT / LIVERPOOL” Serial number: “22073”flagstaff hill, warrnambool, maritime village, maritime museum, shipwreck coast, great ocean road, engine order telegraph, e.o.t., navigational instrument, communication device, ship’s telegraph, engine room section, bridge section, rms titanic, chadburn & son, chadburn brothers, william chadburn, chadburn ship telegraph company, chadburns, duplex gong, liverpool, ss rowitta, navigation, marine technology, pilot’s orders, steam power, hobart, tasmania, devonport, tasmanian-built, ferry, steam ferry, steamer, 1909, early 20th century vessel, passenger vessel, tamar trading company, launceston, george town, sorrento, tarkarri, speculant, peter mcgennan, p j mcgennan & co. port phillip ferries pty ltd, melbourne, coastal trader, timber steamer, huon, karri, freighter, supply ship, charter ferry, floating restaurant, prawn boat, lakes entrance, ps hygeia, paddle steamer, pleasure steamer, port phillip bay, queenscliff, portsea, dromana, rosebud, rye, mornington, hubbart parker & co, 1890, 1903, h.m. morris, hygeia
