EP0920135A2

D/A conversion circuit and semiconductor device

Abstract

A D/A conversion circuit with a small area is provided. In the D/A conversion circuit, according to a digital signal transmitted from address lines of an address decoder, one of four gradation voltage lines is selected. A circuit including two N-channel TFTs is connected in series to a circuit including two P-channel TFT, and a circuit including the circuits connected in series to each other is connected in parallel to each of the gradation voltage lines. Further, an arrangement of the circuit including the two N-channel TFTs and the circuit including the two P-channel TFTs is reversed for every gradation voltage line. By this, the crossings of wiring lines in the D/A conversion circuit becomes small and the area can be made small.

EP0920135A2, drawing sheet 1
Sheet 1 of 71

Term

Term ended

Projected expiry passed 25 November 2018, 7.8 years ago.

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35 claims: 8 independent, 27 dependent

  1. 1
    A D/A conversion circuit, comprising:2 n gradation voltage lines, one of the 2 n gradation voltage lines being selected according to an inputted n-bit (n is an integer not less than 2) digital signal, and a gradation voltage being supplied to an output line from the selected gradation voltage line;a circuit including a first circuit with n P-channel TFTs connected in series to each other and a second circuit with n N-channel TFTs connected in series to each other, the circuit including the first circuit and the second circuit connected in series to each other and being connected in parallel to each of the 2 n gradation voltage lines;and a connection portion between the first circuit and the second circuit, the connection portion being connected to the output line, wherein the digital signal performs switching of the n P-channel TFTs and the n N-channel TFTs connected to each of the 2 n gradation voltage lines.
  2. 6
    A D/A conversion circuit, comprising:2 n gradation voltage lines, one of the 2 n gradation voltage lines being selected according to an inputted n-bit (n is an integer not less than 2) digital signal, and a gradation voltage being supplied to an output line from the selected gradation voltage line;a circuit including a first circuit with n P-channel TFTs connected in series to each other and a second circuit with n N-channel TFTs connected in series to each other, the circuit including the first circuit and the second circuit connected in series to each other and being connected in parallel to each of the 2 n gradation voltage line;and a connection portion between the first circuit and the second circuit, the connection portion being connected to the output line, wherein the digital signal is supplied to gate electrodes of the n P-channel TFTs and gate electrodes of the n N-channel TFTs connected to each of the 2 n gradation voltage lines.
  3. 11
    A D/A conversion circuit, comprising:2 n gradation voltage lines, one of the 2 n gradation voltage lines being selected according to an inputted n-bit (n is an integer not less than 2) digital signal, and a gradation voltage being supplied to an output line from the selected gradation voltage line;a circuit including a first circuit with n P-channel TFTs connected in series to each other and a second circuit with n N-channel TFTs connected in series to each other, the circuit including the first circuit and the second circuit connected in series to each other and being connected in parallel to each of the 2 n gradation voltage lines;and a connection portion between the first circuit and the second circuit, the connection portion being connected to the output line, wherein: voltages supplied to the 2 n gradation voltage lines become high in a direction from the first gradation voltage line to the 2 n -th gradation voltage line;the x-th (1 ≤ x ≤ 2 n ;x is an integer) gradation voltage line and the (2 n + 1 - x)-th gradation voltage line are paired and are adjacent to each other;an arrangement of the first circuit and the second circuit is reversed between the paired gradation voltage lines;and the digital signal is supplied to gate electrodes of the n P-channel TFTs and gate electrodes of the n N-channel TFTs connected to each of the 2 n gradation voltage lines.
  4. 16
    A D/A conversion circuit in which a gradation voltage corresponding to an inputted n-bit (n is a natural number not less than 2) digital signal is supplied to an output line, characterized in that:the n-bit digital signal is divided into upper x bits and lower y bits ( x + y = n ;both x and y are natural numbers);adjacent two gradation voltage lines are selected from (2 x + 1) gradation voltage lines by the upper x bits of the n-bit digital signal;2 y gradation voltages are generated from gradation voltages of the two selected adjacent gradation voltage lines;and a corresponding gradation voltage is supplied to the output line from the 2 y gradation voltages by the lower y bits of the n-bit digital signal.
  5. 20
    A D/A conversion circuit in which a gradation voltage corresponding to an inputted n-bit (n is a natural number not less than 2) digital signal is supplied to an output line, characterized in that:the n-bit digital signal is divided into upper x bits and lower y bits ( x + y = n ;both x and y are natural numbers);a z-th gradation voltage line and a (z + 1)-th gradation voltage line (1 ≤ z ≤ 2 x ;z is a natural number) are selected from (2 x + 1) gradation voltage lines by the upper x bits of the n-bit digital signal, voltages supplied to the gradation voltage lines becoming high in a direction from the first gradation voltage line to the (2 x + 1)-th gradation voltage line;2 y gradation voltages are formed from gradation voltages of the selected z-th and (z + 1)-th gradation voltage lines;and a corresponding gradation voltage from the 2 y gradation voltages is supplied to the output line by the lower y bits of the n-bit digital signal.
  6. 24
    A semiconductor device, comprising; a plurality of TFTs disposed in matrix; a source signal line side driving circuit for driving the plurality of TFTs; and a gate signal line side driving circuit for driving the plurality of TFTs, wherein:the source signal line side driving circuit includes a D/A conversion circuit in which a gradation voltage corresponding to an inputted n-bit (n is a natural number not less than 2) digital signal is supplied to an output line;the n-bit digital signal is divided into upper x bits and lower y bits ( x + y = n ;both x and y are natural numbers);adjacent two gradation voltage line are selected from (2 x + 1) gradation voltage lines by the upper x bits of the n-bit digital signal;2 y gradation voltage lines are formed from gradation voltages of the two selected adjacent gradation voltage lines;and a corresponding gradation voltage from the 2 y gradation voltages is supplied to the output line by the lower y bits of the n-bit digital signal.
  7. 28
    A semiconductor device, comprising:a plurality of TFTs disposed in matrix;a source signal line side driving circuit for driving the plurality of TFTs;and a gate signal line side driving circuit for driving the plurality of TFTs, wherein: the source signal line side driving circuit includes a D/A conversion circuit in which a gradation voltage corresponding to an inputted n-bit (n is a natural number not less than 2) digital signal is supplied to an output line;the n-bit digital signal is divided into upper x bits and lower y bits ( x + y = n ;both x and y are natural numbers);a z-th gradation voltage line and a (z + 1)-th gradation voltage line (1 ≤ z ≤ 2 x ;z is a natural number) are selected from (2 x + 1) gradation voltage lines by the upper x bits of the n-bit digital signal, voltages supplied to the gradation voltage lines becoming high in a direction from the first gradation voltage line to the (2 x + 1)-th gradation voltage line;2 y gradation voltages are formed from gradation voltages of the selected z-th and (z + 1)-th gradation voltage lines;and a corresponding gradation voltage from the 2 y gradation voltages is supplied to the output line by the lower y bits of the n-bit digital signal.
  8. 32
    A semiconductor device, comprising:a plurality of TFTs;a source signal line side driving circuit for driving the plurality of TFTs;and a gate signal line side driving circuit for driving the plurality of TFTs, wherein: the source signal line side driving circuit includes a D/A conversion circuit in which a gradation voltage corresponding to an inputted n-bit (n is a natural number not less than 2) digital signal is supplied to an output line;the n-bit digital signal is divided into upper x bits and lower y bits ( x + y = n ;both x and y are natural numbers);a z-th gradation voltage line and a (z + 1)-th gradation voltage line (1 ≤ z ≤ 2 x ;z is a natural number) are selected from the (2 x + 1) gradation voltage lines by the upper x bits of the n-bit digital signal, voltages supplied to the gradation voltage lines becoming high in a direction from the first gradation voltage line to the (2 x + 1)-th gradation voltage line;2 y gradation voltages are formed from gradation voltages of the selected z-th and (z + 1)-th gradation voltage lines;and a corresponding gradation voltage from the 2 y gradation voltages is supplied to the output line by the lower y bits of the n-bit digital signal.