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The Battery Computer System (BCS) AN/GYK-29 was a computer used by the United States Army for computing artillery fire mission data. It replaced the FADAC and was small enough to fit into the HMMWV combat vehicle. The AN/GSG-10 TACFIRE (Tactical Fire) direction system automated field artillery command and control functions. [8]
F1 Major items, small arms, automatic gun, trench mortar, and field artillery sighting equipment, and fire control instruments; F2 Major items, harbor defense, railway, and antiaircraft artillery sighting equipment, and fire-control instruments; F3 Items not authorized for general issue; F4 Rule, slide, M1917 – Parts and equipment
Mark 1A Computer Mk 37 Director above the bridge of destroyer USS Cassin Young with AN/SPG-25 radar antenna. The Mark 1, and later the Mark 1A, Fire Control Computer was a component of the Mark 37 Gun Fire Control System deployed by the United States Navy during World War II and up to 1991 and possibly later.
The M578 recovery vehicle is seen here assisting the crew of an M551 Sheridan light tank in Vietnam.. In 1956 the US Army commissioned the Pacific Car & Foundry Company to design an undercarriage for a new series of self-propelled artillery systems that would be lighter, air transportable, and provide a common chassis for multiple vehicles.
World War II–era Mark 37 Director for 5 in/38 caliber dual purpose guns above bridge of destroyer USS Cassin Young, backfitted with postwar AN/SPG-25 radar antenna. For warships of the 20th century, the director is part of the fire control system; it passes information to the computer that calculates range and elevation for the guns.
S4 Architecture Diagram. The NATO Army Armaments Group (NAAG) Integrated Capability Group Indirect Fires (ICGIF), formerly Land Group 4, and their Sub Group 2 (SG2) on Surface to Surface Ballistics has created a widely used set of shareable fire control software using the Ada programming language.
In 1944, the US Army contracted [7] for an electronic "computer with guns, a tracking radar, plotting boards and communications equipment" (M33C & M33D models used different subassemblies for 90 & 120 mm gun/ammunition ballistics.) [3] The "trial model predecessor" (T-33) was used as late as 1953, [8] and the production M33 (each $383,000 in 1954 dollars) [9] had been deployed in 1950. [10]
The Central Computer System of the AN/FSQ-7 had two computers for redundancy each with Arithmetic, Core Memory, Instruction Control, Maintenance Control, Selection & IO Control, and Program elements. [28] The Q7 had input/output devices such as: IBM 723 card punch and IBM 713 punched card reader; IBM 718 line printer (64 print positions)