IP Library Granted Patent US 9,747,855
Granted Patent B2
US 9,747,855 · App. 15/338,613 · Granted Aug 29, 2017

Semiconductor device, liquid crystal display panel, and mobile information terminal

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Quick Facts
Patent No.
US 9,747,855
App. No.
15/338,613
Filed
Oct 31, 2016
Granted
Aug 29, 2017
Kind
B2
Art Unit
2693
USPC
345/156
Abstract

A semiconductor device includes a plurality of sets of external drive terminals in a marginal region along one long side of a rectangular semiconductor substrate, a plurality of sets of ESD protection circuits arranged in the marginal region and coupled to corresponding sets of the drive terminals, and a plurality of output circuits coupled to corresponding sets of the drive terminals. Each set of drive terminals in a plurality of n columns along a Y direction is laid out in a staggered arrangement with drive terminals in adjacent columns shifted relative to each other. Each output circuit includes n output units associated with n drive terminals of each set and arranged in one column in an X direction. By the arrangement, the drive terminals can be arranged at a narrower pitch, and the total width for n output units can be compacted into that of one output circuit.

Claims (34)

1. A semiconductor device comprising:

a plurality of sets of n external drive terminals arranged in a marginal region along one long side of a rectangular semiconductor substrate;

a plurality of sets of n ESD protection circuits arranged in the marginal region, each set of n ESD protection circuits coupled to a corresponding set of n external drive terminals; and

a plurality of output circuits, each output circuit including a set of n output units coupled to a corresponding set of n external drive terminals, each output unit including a plurality of circuit components;

wherein each set of n external drive terminals is arranged in a plurality of n columns along a Y direction in a staggered arrangement in which the positions of the external drive terminals in adjacent columns are shifted with respect to each other,

wherein said plurality of output circuits are arranged in a plurality of different columns along the Y direction, each column including a single output circuit and extending in an X direction perpendicular to the Y direction, and

wherein a width dimension in the Y direction of each of said output circuits is smaller than a width dimension in the Y direction of each set of n external drive terminals.

2. The semiconductor device according to claim 1 , wherein each set of n output units is arranged in order in an even width in the X direction.

3. The semiconductor device according to claim 2 , wherein a region where said ESD protection circuits and said output circuits are formed is located underneath a region where said external drive terminals are arranged in a layered configuration.

4. The semiconductor device according to claim 1 , wherein said ESD protection circuits of each set are juxtaposed in the Y direction at a pitch that is equal to a layout pitch in the Y direction for said external drive terminals of each set laid out in the columns along the Y direction.

5. The semiconductor device according to claim 4 , further comprising a wiring region for coupling corresponding external drive terminals and output units between an array region of said ESD protection circuits along the Y direction and an array region of said output units along the Y direction.

6. The semiconductor device according to claim 1 , having array regions of said output circuits extending from a center part of the semiconductor substrate toward right and left sides of the substrate along the Y direction, wherein a part of said processing circuit is formed in a space between the right and left array regions of said output circuits.

7. The semiconductor device according to claim 1 , further comprising a plurality of external interface terminals arranged in a marginal region along the other long side of said semiconductor substrate, wherein said external interface terminals are coupled to said processing circuit.

8. The semiconductor device according to claim 7 , wherein a layout pitch for said external drive terminals is smaller than a layout pitch for said external interface terminals.

9. The semiconductor device according to claim 8 ,

wherein said external drive terminals are terminals for driving source electrodes of an active matrix type liquid crystal display, and

wherein the plurality of circuit components comprises:

a latch circuit that latches display data supplied from said processing circuit;

a tone level selecting circuit that decodes display data latched by the latch circuit and selects a tone level voltage signal;

an output amplifier that amplifies a tone level voltage signal output from said tone level selecting circuit; and

a select switch that selects either an output with a polarity from said output amplifier or an output with an opposite polarity from another output unit output amplifier and outputs the selected output to a corresponding one of the external drive terminals.

10. A liquid crystal display panel comprising:

an active matrix type liquid crystal display formed over a glass substrate;

a plurality of source electrode lines led out from said active matrix type liquid crystal display and formed over said glass substrate; and

a liquid crystal display driver, according to claim 1 , coupled to said source electrode lines and mounted over said glass substrate.

11. A mobile information terminal comprising, in a casing thereof:

an input unit;

a data processing unit that performs data processing according to an input signal from the input unit; and

a display unit for display under control of the data processing unit, said display unit comprising:

a display;

electrode lines led out from said display; and

a display driver, according to claim 1 , coupled to said electrode lines on one side and coupled to said data processing unit on another side.

12. The semiconductor device according to claim 1 , wherein the positions of the external drive terminals in adjacent columns overlap with respect to each other.

13. The semiconductor device according to claim 1 , wherein the component circuits are arranged together on a per-function basis in each column.