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By Nikhil Pal

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They had actually been invented decades before the bipolar transistor, but irreproducible characteristics and fast degradation had prevented their application. The MOS transistor came back into focus because as a surface device it is a natural match to planar processing. In 1963 complementary MOS,5 or CMOS, now the dominant technology for ICs, was invented. 40], Gordon Moore boldly predicted6 that the number of components per IC would double each year at least through 1975. Depending on how you count components, the actual doubling interval turned out to be 18 months, but the general pattern of exponential growth has proven to be accurate for more than 40 years, with no end in sight.

5 Data Analysis Standard data analysis concentrates on keeping the process within specification limits, thus ensuring the quality of the final product. Typically a normal distribution of the measured parameter is assumed and parameters of the distribution like median and sigma are reported. In conjunction with the process specification limits, the so-called process capability cp and process centering cpk can be calculated. These methods and their application are widely accepted and mandated by various quality management methods and standards like ISO 9000.

Still, they had important niche applications in radio communications, when vacuum tubes could not be used. As the understanding of their principles of operation grew, refinements to the manufacturing process first enabled military applications and then delivered the first commercially available devices in the form of single-pn-junction diodes and transistors in the early 1950s. The year 1958 marked the birth of the monolithic integrated circuit, now commonly just called IC. The invention of the IC is attributed to TI engineer Jack Kilby, but without the planar manufacturing process developed in the same year by Jean Hoerni and advanced by Robert Noyce and Gordon Moore at Fairchild,3 it would likely have taken quite a bit longer for the idea 3 R.

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