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History and Development of the Multitrack Recorder

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4.1.1,2

History and development of the Multitrack Recorder

Multitrack recorders were originally developed in the early 1950s in Germany. The initial principle of multitracks was to divide a tape in two parts and record different sounds onto each and play them back concurrently. The fact that both tracks would be on the same tape would mean they would be synchronised exactly. In classical music recordings of the 1950s, the early two track machines were first used and recorded in stereo. Two different mics would be used and these signals would be recorded simultaneously. Pop and jazz recordings however, remained in mono until the mid sixties. The first three track recorder is attributed to Les Paul who developed the system with his wife, singer Mary Ford. Ampex were soon to realise the possibilities of such a machine and bought the device from Paul. Ampex quickly released a refined version of the three track which was in common use until the birth of 4-track in the mid 1960s. Many Motown hits and, maybe most famously, Phil Spector's 'Wall Of Sound' were recorded on three track machines.

When 4-track was born, a new world of recording and bouncing possibilities was opened up to the recording industry. Most Beatles and Rolling Stones albums were recorded in 4-track and Abbey Road became world renowned in the art of 4-track recording. Their engineers seemed to be able to create vast recordings, which required numerous bounces, whilst keeping unwanted bounce noise to a minimum. 4-track also paved the way for innovations in sound such as Quadraphonic. This system used each track as a means of creating a 360o mix. Albums like Pink Floyd's 'Dark Side Of The Moon' and Mike Oldfield's 'Tubular Bells' were recorded in Quadraphonic (as well as Stereo) but the system never really took off. It did however have a significant part to play in the development of surround sound.

By 1970 the 16-track recorder was emerging in the rock scene of the United States though the Beatles stuck with the 8-track to record their final albums. Split bank designs became popular offering a main bank of faders used for the mic/line inputs, a separate bank controlling monitor levels and cue mixes and a final section used for other submixes and reverb chambers. The typical price for a 16-track recorder was around $35,000 however the problem of noise build up with numerous tracks still existed (this is the main reason for the lack of interest in 24-track machines at the time).

The fact that magnetic tape could be inaudibly cut and pasted, coupled with the ability to recorded multiple tracks on one tape, transformed the music industry. A new culture developed in which one would record onto multiple tracks and then mix down afterwards. For the following thirty years, tape became the dominant format for sound recording which was then bounced to vinyl record, audio cassette or, by the mid eighties, compact disk.

One of the drawbacks in working with magnetic tape was that the magnetic particles on the tape would cause it to hiss. In the late 1960s, the 'hiss' problem lead to some studios and manufacturers experimenting with 'direct to disk' technology. This method of sound recording involved feeding the signal from the microphone straight to the disc cutter, bypassing the tape machine altogether. Although these new endeavours highlighted the magnitude of the 'hiss' problem, such technology never took off.

Developments in solid-state electronics throughout the 1970s sparked further experimentation with noise reduction. The most commercially successful attempts were developed by Dolby Laboratories. By working with various forms of multiband volume compression and expansion, Dolby's first noise reduction product was named the Dolby A system. They were very successful at increasing the signal to noise ratio and hence virtually eliminating tape hiss. A Dolby A system on a 16-track would cut the tape noise to the equivalent of a good 2-track machine but was extremely expensive. Although Dolby A was only used in a professional contexts, it's successors Dolby B and C became popular in the consumer market also, becoming almost universal on compact audios cassettes.

The 1980s saw the first real, digital audio began to emerge and provided the first real competition for analogue tape. Digital recording was a much more exact science facilitating easy editing, reproduction and storage solutions. The emergence of digital audio coincided with the development of the audio compact disc which is the most common medium in the commercial audio industry to date. Due to its precise nature, there is a growing culture of running a signal through analogue equipment to give it 'warmth'.

Towards the end of the 1980s, computer based sequencing and studio controlling exploded onto the scene. Computers were used to monitor, synchronise or detect virtually every device in the studio itself. These systems are the direct predecessors to systems such as Pro Tools and Logic used in studios today.

Automation was also an important development in the history of multitrack recorders. The first system to be developed was the APY Allison in 1975. This system stored automation data on two tracks of the tape. Similar systems such as Neve's NECAM system used a combination of 2 tracks from tape and a floppy disk to store automation data.

4.1.1,2

Jo Meek and his innovations in Multitracking

Meek's first venture into multitrack recording consisted of sound-on-sound composite recordings with his then producer Michael Barclay. These recordings were built by laying one track on to tape and then simply recording another over the top of it. At the time this was a pioneering recording technique. Further experimentation would follow. During his time at Landsdowne Studios Meek was said to have experimented with using two tape machines to produce 'flange' (an effect generally thought to have been developed in the mid-60s.)

When multitracking, Meek would use two or more tape machines. These were initially a Lyrec TR16 (two track) and an EMI TR51 (mono 1-track). When recording a band Meek would often record the rhythm track and then record vocals when bouncing to the master in order to save having an extra bouncing stage. The reason for this was that each bouncing stage would add a certain amount of noise to the master. If he wanted to create an orchestral track would often get a few players,

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