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Breguet SN.3

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Breguet SN.3

In 1915, the French Aviation Militaire announced a competition for the creation of light bombers capable of carrying out bombing raids on the German city of Essen. The specifications required the aircraft to carry a bomb load of 200 kilograms over a distance of 600 kilometers.

Several firms participated in the competition, including Paul Schmitt and Breguet. Louis Breguet’s aircraft was designated SN.3, a name that played on the city name Essen.

Design and Features

It was a two-seater, three-strut biplane with wings of different spans, powered by a 250 hp Renault 8Gd engine. The aircraft’s armament consisted of a single 7.7mm Lewis machine gun on a movable turret and 240 kilograms of bombs (typically 30 x 8 kg).

A Michelin bomb sight was also installed on the aircraft.

Competition and Outcome

Only the bombers from Paul Schmitt and Breguet were able to finish the competition. They met the requirement to fly the Villacoublay-Chartres-Etampes-Villacoublay route in four minutes and 30 seconds at a speed of 132 km/h.

The SN.3 was declared the winner of the competition, but it was not ordered for serial production. The military was not satisfied with the aircraft’s protection and combat radius. Breguet was asked to refine the aircraft for mass production, which ultimately led to the development of the Breguet-Michelin BM.4.

Technical Specifications

Modification Breguet SN.3
Wingspan, m 16.40
Length, m 9.50
Height, m 3.70
Wing area, m2 54.00
Empty weight 1350
Normal takeoff weight 2150
Engine type 1 Piston engine Renault 8Gd
Power, hp 1 x 250
Maximum speed, km/h 135
Cruising speed, km/h 115
Practical range, km 800
Crew 2 crew
Armament One movable Lewis machine gun of 7.7 mm caliber and up to 240 kg of bomb load (usually 30×8 kg)

Image and diagram gallery of the Breguet SN.3

Breguet SN.3
Breguet SN.3
Breguet SN.3
Breguet SN.3
Breguet SN.3
Breguet SN.3
Breguet SN.3
Breguet SN.3

France

ArchivoAéreo Editorial Team

A group of aviation researchers and enthusiasts dedicated to documenting and preserving global aeronautical history. All articles are reviewed to ensure historical accuracy.

Sources & Accuracy

The information presented in this technical sheet has been compiled from declassified flight manuals, historical archives, and specialized literature. While we strive for maximum accuracy, some performance data may vary depending on the specific variant or operational conditions.