Key points
- CSIRO built Australia's first programmable digital computer, CSIR Mark I, later known as CSIRAC, in 1949.
- CSIRO researchers also developed Australia’s first computer technologies, networks and required capability.
- CSIRAC could process calculations around a thousand times faster than anything else in Australia at the time and revolutionised everything from weather forecasting to banking.
Digital computers as we now know them aren’t yet invented and in the world of technology, engineering and physics, scientists perform complex calculations by hand or with a mechanical adding machine. Calculating things is very slow – at the rate of about one operation per second. More complex mathematical problems take days or even weeks to complete.
What’s considered the world’s first ‘modern’ computer, ENIAC, was built in the US in 1945 but Australia’s journey into the computer age begins with a vision and a machine unlike anything the country has ever seen.
The birth of Australia’s first computer
The story starts in 1947 with three pioneers: Trevor Pearcey, Maston Beard and Geoff Hill. Working at CSIR’s Radiophysics Laboratory in Sydney, they set out to build Australia’s first computer, or as it was technically known then, a ‘stored-program digital electronic system’. Their vision is a machine capable of performing complex calculations at unprecedented speeds.
The result was CSIR Mark I, later known as CSIRAC (CSIR Automatic Computer). It was Australia's first programmable digital computer and only the fourth stored-program computer in the world.
In order to make it work, the team also had to build Australia’s first computer science and technology capability. The stored program concept, for example, was a crucial breakthrough, and there were no machines with that capability when design work started on the CSIRO Mark 1.
When computing filled a double garage
By modern standards, CSIRAC was enormous. It was roughly the size of a double garage and contained thousands of electronic components, like vacuum tubes and mercury delay lines used for memory storage. It used the electricity of a suburban street, yet it had only a fraction of the brainpower of even the simplest modern smartphone.
But in its time, CSIRAC was a technological marvel. It could process calculations around a thousand times faster than anything else in Australia at the time and revolutionised everything from weather forecasting to banking. It even played what is thought to be the first ever computer-generated music, Colonel Bogey, to the audience at Australia’s first computer conference in June 1951.
CSIRAC ran its first successful test program in November 1949 and quickly became one of Australia's most important scientific tools, supporting research across a wide range of disciplines.
Improvements were steadily made to the computer in the early 1950’s and it provided a computing service to all of CSIRO from 1951 to 1955.
In 1956 CSIRAC was dismantled, loaded onto trucks and driven down the Hume Highway to the University of Melbourne, where it was used until 1964. Over its 14-year lifetime, CSIRAC processed more than 1000 projects. It is now on display at Melbourne Museum and is the world’s oldest surviving stored program electronic computer.
Trevor Pearcey's vision
While Pearcey helped create Australia's first computer, he was also thinking about the future of computing. In 1948, before CSIRAC had even become fully operational, he published an article titled Modern Trends in Machine Computation. In it, he suggested that information might one day be accessed remotely through telephone and teleprinter networks.He wrote that an ‘automatic encyclopaedia service’ could one day operate through national communications systems. Decades before the development of the internet and online search engines, Pearcey had anticipated a world where information could be retrieved electronically from distant computers.
Creating a national computing service
By the late 1950s, computing had become increasingly important to scientific research but CSIRO researchers, spread across Australia, generally had little or no access to advanced computing facilities.In 1958, Trevor Pearcey met with Edmund ’Alf’ Cornish, head of CSIRO's Division of Mathematical Statistics. Cornish proposed the creation of a central computing laboratory to serve the organisation's growing needs. Together with CSIRO mathematician and programmer Geoff Hill, they proposed locating a powerful central computer in Canberra, supported by smaller regional computers in Sydney, Melbourne and Adelaide. The machines would be compatible with one another, allowing scientific work to be distributed across the network regardless of where researchers were located.
In the early 1960s, the CSIRO Executive and Federal Cabinet approved a grant of 3 million pounds (around $115 million today) to establish the network for CSIRO and government departments with scientific computing needs. Four years later, CSIRO installed a large central machine in a new building in Canberra, with compatible satellite systems in Sydney, Melbourne and Adelaide. The machines all ran the same computer language, Fortran, which despite its age, is still important to high-performance computing.
A network before networks
Initially, this was not an electronic ‘network’. Scientists prepared their programs on punch cards and sent them by plane to Canberra. The jobs were typically processed overnight and results were returned the next morning.Although slow by today's standards, this arrangement effectively created a nationwide computing service. Researchers from across Australia could access advanced computing resources that would otherwise have been unavailable to them. It was a network that was ‘waiting to happen’.
Many of the technologies needed to support the system did not yet exist commercially so CSIRO staff developed them themselves. Brian Austin built the operating system, called DAD (for ‘drums and displays’), which was later exported to the US. Henry Hudson developed software tools including editors and networking utilities, while other researchers created programs for job scheduling, data storage and interactive computing. These innovations were developed largely in-house and were critical to the success of the network.
The birth of CSIRONET
By the late 1960s, CSIRO researchers began experimenting with remote computer access. Brian Austin and colleagues connected Teletype machines to the Canberra machine, first locally and then over greater distances. One experiment linked a remote site a kilometre away using a cable running along the boundary of the National Botanic Gardens. Despite suffering a major setback when lightning struck the cable and damaged equipment, the experiment proved that remote computer access was possible.In 1969, CSIRO moved from experimentation to implementation. It leased telecommunications lines and connected computing facilities across Australia, creating one of the country's first wide-area computer networks. Programmer John Paine developed Nodecode, software that packaged data for transmission between computers. This represented an early form of packet switching, a key technology which the internet was later based on.
The new network became known as CSIRONET. Throughout the 1970s it expanded quickly, connecting scientists across the nation. Researchers could submit jobs electronically, access central computing resources and collaborate more effectively. Dial-up connections even meant staff could work remotely from home years before personal computers became commonplace.
By 1976 most CSIRO divisions around Australia were connected. Over the following decades the network expanded to support email, advanced data storage systems, multiple mainframe computers and Australia's first true supercomputer. At its peak, CSIRONET served thousands of users across research and government organisations.
Then of course, another big breakthrough in the 1990s – CSIRO invented wireless local area network technology, which lead to modern WiFi.
A lasting legacy
The technologies developed by CSIRO helped establish Australia's early computing infrastructure and capability, and influenced the way scientific research was conducted across the country. Some of the research also contributed to the concepts and functions of modern-day computers globally.From CSIRAC to CSIRONET to WiFi, CSIRO has shown how computing could connect people, accelerate discovery and solve complex problems. In CSIRO’s centenary year, the national science agency is still at the forefront of developing computing power that helps Australia punch above its weight in scientific achievement.
Its High Performance Computing Facility supports major national research collaborations across climate science, genomics, energy, materials, space, advanced manufacturing and more, while meeting the growing demand in data-intensive and AI-driven science. The Vetra AI infrastructure, for example, is a cutting-edge computing resource for faster, safer data processing in robotics and other AI-powered technologies.
The vision of Trevor Pearcey and his colleagues continues to live on in the digital systems, networks and online services that Australians rely on every day. Long before the internet became a reality, CSIRO's computing pioneers were already laying the foundations for Australia's connected future.