Products/Services for CMOS Logic ALU Chip

  • Arithmetic Logic Units (ALU)-Image
    Arithmetic Logic Units (ALU) - (32 companies)
    Arithmetic logic units (ALU) perform arithmetic and logic operations on binary data inputs. In some processors, the ALU is divided into two units: an arithmetic unit (AU) and a logic unit (LU). In processors with multiple arithmetic units, one AU...
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  • Logic Adders-Image
    Logic Adders - (30 companies)
    ...binary numbers in either binary or binary coded decimal (BCD) format. These devices are typically used in arithmetic logic units (ALUs) and registers. Types of Logic Adders. There are two types of logic adders: half adders and full adders. Half adders...
  • Monostable Multivibrators-Image
    Monostable Multivibrators - (58 companies)
    ...complementary metal-oxide semiconductor (CMOS), uses a combination of p-type and n-type metal-oxide-semiconductor field effect transistors (MOSFETs) to implement logic gates and other digital circuits. Bipolar CMOS (BiCMOS) is a silicon-germanium technology...
  • Microcontrollers (MCU)-Image
    Microcontrollers (MCU) - (438 companies)
    Microcontrollers (MCUs) are complete computer systems on a chip. They combine an arithmetic logic unit (ALU), memory, timer/counters, serial port, input/output (I/O) ports and a clock oscillator. A microcontroller (MCU) is a full computer built...
  • CMOS Cameras-Image
    CMOS Cameras - (228 companies)
    Complementary metal oxide semiconductor (CMOS) cameras use image sensors that operate at lower voltages than charged coupled devices (CCDs), reducing power consumption for portable applications. Each CMOS active pixel sensor cell has its own buffer...
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    CMOS Image Sensors - (111 companies)
    Complementary metal oxide semiconductor (CMOS) image sensors operate at lower voltages than CCDs, reducing power consumption for portable applications. Analog and digital processing functions can be integrated readily onto the CMOS chip, reducing...
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    Logic Encoders - (107 companies)
    Another logic family, complementary metal-oxide semiconductor (CMOS), uses a combination of p-type and n-type metal-oxide-semiconductor field effect transistors (MOSFETs) to implement logic gates and other digital circuits. Logic families for logic...
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    Logic Latches - (76 companies)
    Schottky TTL (FAST) use transistors as digital switches. By contrast, emitter coupled logic (ECL) uses transistors to steer current through gates that compute logical functions. Another logic family, complementary metal-oxide semiconductor (CMOS), uses...
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    Logic Dividers - (68 companies)
    ...complementary metal-oxide semiconductor (CMOS), uses a combination of p-type and n-type metal-oxide-semiconductor field effect transistors (MOSFETs) to implement logic gates and other digital circuits. Logic families for logic dividers include cross-bar switch...
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    Logic Gates - (218 companies)
    ...oxide semiconductor (CMOS) open drain outputs are counterparts to transistor-to-transistor logic (TTL) open collectors. Open drain devices require a pull-up resistor to achieve a true high state. Open collectors have an output signal provided...

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  • http://dspace.mit.edu/bitstream/handle/1721.1/37906/133104456-MIT.pdf?sequence=2
    Chapter 8 describes a test- chip which implements ALU cores using PSSL, static CMOS , and domino logic styles.
  • A builder and simulator program with interactive virtual environments for the discovery and design of logic digital circuits
    TTL and CMOS chips contain logic gates, adders, multiplexers, flip- flops, ALUs , memories, registers, decoders, etc. ASIC chips include traffic light controllers, chronometers, parking controllers, elevator controllers, radio-alarms, robotic-arm controllers, frequency meters, number guessing games, and others.
  • Electrical-logic simulation and its applications
    E-Crystal was evaluated using a CMOS microprocessor SOAR (Smalltalk On A RISC) chip [44] and its ALU (Arithmetic Logic Unit).
  • CMOS current steering logic for low-voltage mixed-signal integrated circuits
    An additional test chip comprising four simple 4-bit arith- metic logic units ( ALU ) was fabricated using a 0.8 pm n-well CMOS process.
  • A flat, timing-driven design system for a high-performance CMOS processor chipset
    [10] IBM: CMOS5X 2.5V Gate Array/Standard Cell. “http:// www. chips .ibm.com/products/asics/tech/cmos5x/cmos5x.ht- ml” [11] Suzuki et. al.: A 1.5ns 32b CMOS ALU in Double Pass-Tran- sistor Logic . Proc. ISSCC ‘93, pp. 90-91.
  • AmIware Hardware Technology Drivers of Ambient Intelligence
    … AmI, data types, 90–91 AmI, microsystems for, 152–153 AmI, setup issues, 403, 407, 455 AmI, silicon retina chip for, 143–144 AmI, wireless … … Analog signal processing in CMOS imagers, 135–140 Analog to … … optimizations, 185–188 Arithmetic and logic unit ( ALU ), 231, 233 Artefact suppressing …
  • Compendium of Single Event Effects Results for Candidate Spacecraft Electronics for NASA
    … DIP dual inline package LCDT = low-cost digital tester WC = worst case ADC = analog to digital converter ALU = arithmetic logic unit ASIC application specific … … CCD charge collection device CMOS = complementary metal oxide semiconductor … … sensor FOCUTS = Flipped Optical Chip Ultra Thin Silicon-on …
  • Low Power Design Essentials
    … nanometer transistors threshold voltages, 31 Channel-coding techniques, 167 Charge recycling, 164–165 Charging capacitors, 55, 57 driving from a constant current source, 57 driving using sine wave, 58 Chip architecture and power density … … based delay model, 84 ALU for 64-bit microprocessor … … aggressive deployment at the algorithm level, 278 clock frequency, adjusting, 252 disadvantages, 252 converter loop sets VDD, fclk, 260 delay sensitivity, 265 dynamic frequency scaling (DFS), 253 dynamic logic , 263 dynamic voltage scaling … … timing variation, 264 static CMOS logic, 263 stream-based …
  • Computer Networks and Information Technologies
    The Arithmetic and Logic Unit ( ALU ) is a combination circuit that performs a number of arithmetic and logical operations. Over the past two dec- ades, Complementary Metal Oxide Semiconductor ( CMOS ) technology has played important role in designing high performance systems because of the advantages that … … exceptionally low power-delay product, the ability to accommodate millions of devices on a single chip .
  • A Comparison of Asymptotically Scalable Superscalar Processors
    We have shown how to implement efficient scheduling logic for a superscalar processor that shares ALUs [6]. We believe that in a 0.1 micrometer CMOS technology, a hybrid Ultrascalar with a window size of 128 and 16 shared ALUs (with floating-point) should fit easily within a chip 1 cm on a side.