Nova Patents
EP0444890A2

Full flash analog-to-digital converter.

Abstract

A full flash analog-to-digital converter comprises a plurality of comparators for comparing an analog input voltage with respective reference voltages, a first-stage encoder for generating low-order bits based on output signals from the comparators, a second-stage encoder for generating high-order bits based on the low-order bits generated by the first-stage encoder, the first-stage encoder comprising a circuit for generating a complement bit of the highest-order bit of the low-order bits generated by the first-stage encoder, and the second-stage encoder comprising a circuit for generating the high-order bits based on the highest-order bit and the complement bit.

EP0444890A2, drawing sheet 1
Sheet 1 of 57

Term

Term ended

Projected expiry passed 26 February 2011, 15.6 years ago.

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11 claims: 8 independent, 3 dependent

  1. 1
    A full flash analog-to-digital converter comprising:a plurality of comparators for comparing an analog input voltage with respective reference voltages;a first-stage encoder for generating low-order bits based on output signals from said comparators;a second-stage encoder for generating high-order bits based on the low-order bits generated by said first-stage encoder;said first-stage encoder comprising means for generating a complement bit of the highest-order bit of said low-order bits generated by said first-stage encoder;and    said second-stage encoder comprising means for generating said high-order bits based on said highest-order bit and said complement bit.
  2. 2
    A full flash analog-to-digital converter comprising:a plurality of comparators for comparing an analog input voltage with respective reference voltages;an encoder for generating a plurality of bits based on output signals from said comparators;said encoder comprising means for generating an additional bit by ORing the AND logical product of complement bits of second and third low-order bits of said plurality of bits, and a complement bit of a first low-order bit of said plurality of bits;a logic circuit for ANDing said additional bit and a complement bit of the additional bit;and    means for detecting an error pattern in the output signals from said comparators based on an output signal from said logic circuit.
  3. 3
    A full flash analog-to-digital converter comprising:a plurality of comparators for comparing an analog input voltage with respective reference voltages;an encoder for generating a plurality of information bits based on output signals from said comparators;and    said encoder comprising means for generating a plurality of complement bit signals corresponding respectively to said information bits.
  4. 4
    A full flash analog-to-digital converter comprising:a plurality of comparators for comparing an analog input voltage with respective reference voltages;an encoder for generating a plurality of bits based on output signals from said comparators;said encoder comprising means for generating a complement bit of a second low-order bit of said plurality of bits;a logic circuit for ANDing said complement bit and said second low-order bit;and    means for detecting an error pattern in the output signals from said comparators based on an output signal from said logic circuit.
  5. 5
    A full flash analog-to-digital converter comprising:a plurality of comparators for comparing an analog input voltage with respective reference voltages;an encoder for generating a plurality of information bits based on output signals from said comparators;said encoder comprising means for generating odd- and even-parity bits for said plurality of information bits;and    an error detecting circuit for detecting an error pattern in the output signals from said comparators based on said odd- and even-parity bits and said information bits.
  6. 6
    A full flash analog-to-digital converter comprising:a plurality of comparators for comparing an analog input voltage with respective reference voltages;a differentiating circuit for detecting differences between output voltages from each one and every other one of said comparators;encoder means for generating a binary code based on an output signal from said differentiating circuit;said encoder means comprising:    a first encoder for generating an [m-1] binary code in response to a (2m-1)th output signal (m is a natural number) of said differentiating circuit;and    a second encoder for generating an [m] binary code in response to a 2mth output signal from said differentiating circuit;and    a combining circuit for combining output signals from said first and second encoders into a final binary code.
  7. 7
    A full flash analog-to-digital converter comprising:a plurality of comparators for comparing an analog input voltage with respective reference voltages;a differentiating circuit for detecting differences between output voltages from each one and every other one of said comparators;encoder means for generating a binary code based on an output signal from said differentiating circuit;said encoder means comprising:    a first encoder for generating an [m-1] binary code in response to a (2m-1)th output signal (m is a natural number) of said differentiating circuit;and    a second encoder for generating an [m] binary code in response to a 2mth output signal from said differentiating circuit;a combining circuit for combining output signals from said first and second encoders into a final binary code;and    the arrangement being such that when an ith bit (i is a natural number) as counted from the lowest-order bit of the binary code produced in response to the (2m-1)th output signal from said differentiating circuit, and bits lower in order than said ith bit are "0" and also when an (i+1)th bit of the binary bit is "1", said (2m-1)th output signal from said differentiating circuit is supplied to an (i+1)th bit line of said second encoder rather than to an (i+1)th bit line of said first encoder.
  8. 10
    A full flash analog-to-digital converter comprising:first through Nth (N ≧ 2) comparator blocks each comprising a plurality of comparators;a high-order bit encoder;a low-order bit encoder;a high-order bit control AND gate block connected to output terminals of predetermined ones of the comparators of said first through Nth comparator blocks, for selecting one of said comparator blocks depending on the level of an analog input signal applied thereto to control said high-order bit encoder;and    first through Nth low-order bit control AND gate blocks connected respectively to output terminals of said first through Nth comparator blocks, for controlling said low-order bit encoder.