Before computer-aided design tools existed, chip layouts were hand-drawn at huge scale and cut from sheets of red-and-clear Rubylith film on precision cutting tables, then photographically reduced onto the masks used to pattern a wafer. The Mead–Conway design methodology and digital layout software of the 1980s eliminated the physical cutting step almost entirely.
Rubylith mask cutter已不复存在。这里整理是什么消灭了它,以及哪个职业接手了那份工作。
From vacuum tubes to point contacts to planar silicon
The decade after Bardeen and Brattain's demonstration was spent making transistors reliable and manufacturable rather than merely possible. Early point-contact devices were fragile and inconsistent; Shockley's junction transistor and then Gordon Teal's silicon version at Texas Instruments made the technology rugged enough for real products, starting with hearing aids and pocket radios. By the decade's end, Jack Kilby and Robert Noyce had each shown that an entire circuit, not just one transistor, could exist on a single piece of semiconductor — the idea that made everything after this era possible.
当时还发生了什么
John Bardeen and Walter Brattain demonstrate a working point-contact transistor on December 16; William Shockley's junction-transistor design follows within weeks, and all three later share the 1956 Nobel Prize in Physics.
Texas Instruments chemist Gordon Teal grows the first practical silicon transistor, replacing the germanium used until then; silicon's ability to handle far higher temperatures makes it the material the entire industry standardizes on.
Jack Kilby at Texas Instruments demonstrates a working circuit on a single sliver of germanium in September 1958; Robert Noyce at Fairchild Semiconductor files a rival patent in 1959 for a manufacturable silicon version, triggering a decade-long legal fight over credit.
In a magazine article for Electronics, Moore extrapolates from just five data points that the number of components on a chip is doubling roughly every year — a forecast the industry turns into a self-fulfilling roadmap.
那份工作如今在哪里
Designs and fabricates the transistors inside every computer, phone and weapon, using machines precise enough that only a few factories on Earth can run them.
🔌 Semiconductor Engineer →