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Like [Magnetic_drum_memory](Magnetic_drum_memory.md), magnetic core memory was Like [Magnetic_drum_memory](Magnetic_drum_memory.md), magnetic core memory was
faster and more reliable than [delay_line_memory](Delay_line_memory.md) and faster and more reliable than [delay_line_memory](Delay_line_memory.md) and
vacuum-tubes, and was also persistent. vacuum-tubes, and was also persistent. Thus it was used for volatile memory as
well as storage.
It worked as follows. Magnetic beads made of ferrite and threaded with copper It worked as follows. Magnetic beads made of ferrite and threaded with copper
were arranged in a crisscross grid. A bead would be placed at the overlap of two were arranged in a crisscross grid. A bead would be placed at the overlap of two

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zk/Mainframe_computers.md Normal file
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---
title: Mainframe_computers
tags: []
created: Friday, September 27, 2024
---
# Mainframe_computers

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### IBM 1401 (1959) ### IBM 1401 (1959)
![IBM 1401](../img/ibm-1401.jpg)
Another IBM mainframe. Transistors replaced vacuum-tubes. Magnetic core storage
replaced magnetic drum storage. It was housed in rectangular light-blue cabinets
and the ubiquity of the 1401 in industry earned IBM the moniker 'Big Blue'.
### IBM System/360 (1964)
![IBM 360](../img/ibm-360.jpg)
Named to suggest all-round compatibility - a family of mainframes designed to
cover commercial and scientific applications. Considered one of history's most
successful computers.
Up until this point all IBM computers had a programming language unique to the
specific processor. At that point there were about seven IBM computer models in
active use and they were all incompatible with each other.
![IBM 360 promo poster](../img/ibm-360-in-use.jpeg)
In contrast the 360 computers all used the same programming language. This meant
they were interoperable with each others. Because the there were variants in the
360 ranges, customers could purchase a smaller system knowing they could expand
it if their needs grew, without reprogramming their application software.
## Magnetic core devices: Whirlwind and SAGE ## Magnetic core devices: Whirlwind and SAGE
Two devices that leveraged the new technology of Two devices that leveraged the new technology of
@ -607,3 +632,23 @@ its way from the military context to business and consumer computing.
An example of a civilian application of SAGE technology was airline booking An example of a civilian application of SAGE technology was airline booking
systems, where booking reservation data needed to be processed in realtime. IBM systems, where booking reservation data needed to be processed in realtime. IBM
worked with American Airlines to introduce this. worked with American Airlines to introduce this.
## Transistor and integrated circuit revolution
The arc of modern computing history (and its main eras) can be presented as
- vacuum-tubes
- [transistors](Transistors.md)
- [integrated_circuits](Integrated_circuits.md)
The transistor was invented at Bell Labs in 1947 by William Shockley and others.
They were not created with computers in mind. Instead they were first used in
hearing aids (1953) and transistor radios (1954).
From the mid-1950s onwards they started being used in military computers.
They had several advantages over vacuum-tubes: they were durable and reliable
with no required startup time, they were power efficient and small.
The actual period where transistors alone were supreme in the form of a
transistor board was relatively short-lived and rapidly gave way to ICs.