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Aldis Signal Lamp
Ed

作成者

Ed

21. 8月 2026FI
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Aldis Signal Lamp

A heliograph is a superb instrument that stops working when the sun goes behind a cloud, and does nothing at all at night. The signal lamp answers the same need — line-of-sight Morse with no wire between the parties — by carrying its own light. A lamp sits at the focus of a mirror to throw a narrow beam, and a trigger-operated shutter or a tilting mirror chops that beam into the dots and dashes. Because the beam is narrow it is both efficient and discreet: a receiver off to the side sees very little, which mattered enormously to ships keeping radio silence. Arthur Cyril Webb Aldis patented the tilting-mirror mechanism in 1916 and the lamps stayed in naval service for decades.
中級者
2 hours

手順

1

Make a beam instead of a glow

A bare lamp wastes almost all its light. A mirror behind it does not.

  1. Mount an LED and its battery holder on a small board.
  2. Curve a strip of acrylic mirror sheet behind it and hold the curve with card.
  3. Move the lamp back and forth until the projected patch on a distant wall is at its smallest and brightest.
That smallest-patch position is the focus. Compare the patch brightness with and without the mirror — the difference is dramatic, and it is the entire reason a signal lamp is visible at distance while a torch is not.

このステップの材料:

LED - Basic 5mmLED - Basic 5mm1
Acrylic Mirror SheetAcrylic Mirror Sheet1
AA Battery Holder (4-Cell, 5-Pack)AA Battery Holder (4-Cell, 5-Pack)1 パック
2

Add a shutter with a clean edge

The shutter is the whole signalling mechanism, and its quality is timing quality.

  1. Cut a card vane that fully blocks the beam.
  2. Hinge it so a finger press swings it clear and a spring or its own weight returns it.
  3. Aim for the beam to go from full to none in as short a travel as possible.
A slow, soft edge blurs the distinction between a dot and a short dash at the receiving end. This is why the mechanism was worth patenting: Aldis tilted a MIRROR rather than moving a shutter, giving a fast, crisp transition with a light trigger and no heavy moving part.

このステップの材料:

Card Stock (Heavy, 50 Sheets)Card Stock (Heavy, 50 Sheets)1 パック
Cabinet Butt HingeCabinet Butt Hinge1
3

Sight it, then send

A narrow beam has to be aimed, and that is a real operational burden.

  1. Fix a simple sight along the top of the lamp, aligned with the beam.
  2. Have a partner stand well away and aim using the sight.
  3. Send a short Morse message and have them read it back.
  4. Now have them move ten metres sideways and try again without re-aiming.
Step aside from the beam and the message vanishes. That is the discretion the Navy wanted — and simultaneously the reason a signal lamp needs a trained operator holding the aim while sending, where a flag can simply be waved.
4

Test it against the conditions that defeat the alternatives

Find the boundary of the region this approach owns.

  1. Send a message in full daylight and note the maximum readable distance.
  2. Repeat after dark.
  3. Repeat with a sheet of tracing paper held in the path to imitate haze.
Daylight range is poor — the beam competes with the sun, which is exactly where the heliograph excels because it uses the sun rather than fighting it. After dark the ranking reverses completely and the lamp reaches far further than any daytime method. Haze punishes both. Two instruments, two opposite conditions, and a signaller ashore historically carried both.
5

History and context

Arthur Cyril Webb Aldis patented his signalling lamp in 1916, during the First World War. The design's distinguishing feature is that the trigger tilts a mirror in and out of the beam path rather than moving a shutter in front of the lens — light, fast and reliable in a hand-held instrument. Aldis was part of the Birmingham optical firm whose name is also on the Aldis camera lens.

Its enduring role is radio silence. A ship transmitting by radio announces its position to anyone listening over the horizon. A narrow light beam pointed at one other ship does not. Signal lamps therefore remained standard equipment through both world wars and long after radio was mature — not because radio was unavailable, but because being heard was the danger. Warships still carry them.

The family it belongs to: heliograph, signal lamp, semaphore flags and Chappe's towers all solve line-of-sight signalling. The lamp's specific region is night, dusk, overcast weather and any situation where the transmission must not spread. It is heavier than flags, needs power, and demands accurate aiming — real costs, freely admitted, paid for capabilities nothing else in the family offers.

A note on what the shutter is doing: chopping a continuous carrier into timed marks and spaces is exactly what a telegraph key does to a current and what a radio transmitter does to a wave. The medium changes; the modulation is the same idea, which is why Morse could move between all of them without alteration.

材料

5
見積もり合計
¥1

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