HarmonyFidelisHarmonyFidelis
Login
NewsMajor ProjectsActorsAcademy

The Electric Telegraph — The First Instant Communication Network

In 1837, Samuel Morse files a caveat (US patent no. 1,647 would not be granted until June 20, 1840) for a single-wire electric telegraph capable of transmitting 10 words per minute at the propagation speed of current (~200,000 km/s in a copper conductor) — for the first time, information outruns the human messenger.

Source: loc.gov

The Electric Telegraph — The First Instant Communication Network

Discovery

ParameterValue
Patent dateSeptember 28, 1837 (caveat filed)
InventorSamuel Finley Breese Morse (1791–1872)
Key collaboratorAlfred Vail (mechanic, code co-inventor)
Physical principleElectromagnet actuated by DC current pulses
ComponentsTransmission key, battery, copper wire, electromagnet, recording stylus
Throughput~10 words/min (trained operator)
First public demonstrationJanuary 6, 1838, Speedwell Ironworks, Morristown (New Jersey)

Technical Explanation

1. Binary encoding — Morse code encodes each letter using sequences of two symbols: dot (short pulse, ~60 ms) and dash (long pulse, ~180 ms). "E" (·) is the shortest, "J" (·———) the longest. Morse and Vail assign the shortest codes to the most frequent letters in English — a precursor to Huffman coding.

2. Electromagnetic circuit — The sending operator closes a circuit by depressing the key. Battery current (~3–6 V) flows through the wire to the receiver, where an electromagnet pulls a stylus against a moving paper strip. The duration of the circuit closure determines dot or dash.

3. Relay amplification — Beyond ~50 km, wire resistance attenuates the signal. Morse introduces the telegraph relay: a weak electromagnet trips a switch that closes a second circuit powered by a local battery. This signal regeneration principle is the direct ancestor of the digital repeater.

Why It Worked

Other inventors were working on the telegraph (Wheatstone and Cooke in England with a 5-needle system, Schilling in Russia). Morse's system won through simplicity: a single wire (versus 5 for Wheatstone), a simple code learnable in weeks, and paper recording that created a written proof of the message.

The relay, patented by Joseph Henry before Morse, solved the attenuation problem that had confined earlier attempts to short distances. Morse had the merit of integrating this invention into a complete and commercially viable system.

Causal Chain

Sturgeon's electromagnet (1824) → Joseph Henry improves the electromagnetic relay (1831) → Morse integrates relay + code into a practical system (1837) → Congress funds the Washington-Baltimore line (1843) → Telegraph network covers the United States (1850s) → Permanent transatlantic cable (1866) → International Telegraph Union, first telecommunications governance body (1865)

Anecdote

Samuel Morse was originally a renowned painter and professor of arts at New York University. The idea for the telegraph came to him during a sea voyage in 1832: Dr. Charles Thomas Jackson told him about Faraday's electromagnetism experiments. Morse sketched his first diagrams in his sketchbook — still preserved at the Smithsonian Institution.

Sources

References verified during the August 2026 fact-checking audit: these are the pages
against which this bulletin's claims were checked.

  1. Samuel Morse Papers, chronologie 1791-1839 (caveat de 1837) — Library of Congress
  2. This is our last cry before our eternal silence (dernière émission Morse française, 31 janvier 1997)
  3. Le Conquet radio — station FFU, fin des émissions Morse