IC Technology Flashcards

(24 cards)

1
Q

are usually called ICs

A

Integrated Circuits

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2
Q

Integrated Circuits are usually called
ICs and popularly known as a (3)

A

silicon chip, computer chip or microchip.

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3
Q

are tiny electronics circuits used to perform a specific electronic function, such as amplification, mathematical operations, switching, mixing signals, computer memory, timer, counter, single-circuit logic gates, op amps, 555 timers, voltage regulators, motor controllers, microcontrollers, microprocessors, FPGAs, etc.

A

Integrated circuits

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4
Q

An IC is a collection of electronic components –(3?), etc. – all stuffed into a tiny chip, and connected together to achieve a common goal.

A

resistors, transistors, capacitors

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5
Q

Integrated Circuits (ICs) are also known as microchips or microelectronic circuit, it is a ___________________ that holds thousands and millions of resistors, capacitors, and transistors.

A

semiconductor wafer

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6
Q

It is basically an assembly of electronic components that’s fabricated as a single unit.

A

semiconductor wafer

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7
Q

Several hundred identical integrated circuits (ICs) are made at a time on a (1) _________ which is several (2) _____________ wide, and the wafer is subsequently sliced into individual ICs called _______.

A

thin wafer, centimeters, chips

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8
Q
  • ICs integrate thousands to billions of components on a single chip.
  • Saves a lot of space compared to bulky discrete circuits.
    Example: A microprocessor IC replaces an entire PCB of discrete logic.
A

Miniaturization (Small Size)

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9
Q

• Once designed, ICs are manufactured in huge quantities using photolithography.
• The cost per circuit is much lower than assembling discrete parts.

A

Low Cost (Mass Production)

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10
Q

• Fewer soldered connections → less chance of failure.
• Encapsulated in plastic/ceramic package, making ICs more durable.

A

High Reliability

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11
Q

• Especially in CMOS ICs, which consume almost zero static power.
• Discrete circuits usually waste more energy.

A

Low Power Consumption

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12
Q

• Shorter signal paths
Mainstream Desktop
(micrometers inside IC vs.
Maximizine real-vorld Perormanc
centimeters on PCB).
• Reduces parasitic capacitance/inductance →
faster operation.

A

High Operating Speed

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13
Q

• Components in an IC are fabricated simultaneously → matched characteristics.
• Ensures uniformity and predictable behavior, unlike discrete parts with tolerance variations.

A

Better Performance & Consistency

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14
Q

• ICs can implement complex functions (e.g., microprocessors, memory chips, Al accelerators) that are impractical with discrete components.

A

Improved Functionality

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15
Q

• Important in portable electronics, aerospace, and loT devices.

A

Low Weight

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16
Q

• A single IC can be replaced instead of troubleshooting hundreds of discrete parts.

A

Easy Replacement & Handling

17
Q

Limited to low/medium power applications (most ICs cannot handle high voltage/current directly).

(Readings)

18
Q

Custom IC design is _________ and complex

19
Q

Less _________ than breadboarding with discrete components.

20
Q

Early developments of the Integrated Circuit (IC) go back to ______.

21
Q

German engineer __________________ filed a patent for an IC like semiconductor ____________ device showing ______ transistors on a common substrate in a ___________ amplifier arrangement.

A

Werner Jacobi, amplifying, five, 2-stage

22
Q

Jacobi disclosed small cheap of ________________.

23
Q

1958 - Integrated circuit invented
• September 12th 1958 _____________ at Texas instrument had built a simple
____________with five integrated components (resistors,
capacitors, distributed capacitors and transistors)

A

Jack Kilby, oscillator IC

24
Q

• In _______ the importance of the IC was recognized when Kilby shared the _______________ with two others. Kilby was sited by the Nobel committee “for his part in the invention of the integrated”

A

2000, Nobel prize in physics