IP Library › Granted Patent US 8,415,746
Granted Patent B2
US 8,415,746 · App. 13/149,511 · Granted Apr 9, 2013

Thin-film semiconductor device, lateral bipolar thin-film transistor, hybrid thin-film transistor, MOS thin-film transistor, and method of fabricating thin-film transistor

Inventor: Genshiro Kawachi (Chiba, JP)
Assignee: Sharp Kabushiki Kaisha
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Quick Facts
Patent No.
US 8,415,746
App. No.
13/149,511
Granted
Apr 9, 2013
Kind
B2
Abstract

In a lateral bipolar transistor including an emitter, a base and a collector which are formed in a semiconductor thin film formed on an insulating substrate, the semiconductor thin film is a semiconductor thin film which is crystallized in a predetermined direction. In addition, in a MOS-bipolar hybrid transistor formed in a semiconductor thin film formed on an insulating substrate, the semiconductor thin film is a semiconductor thin film which is crystallized in a predetermined direction.

Claims (77)

1. An MOS-bipolar hybrid thin-film transistor, comprising:

a substrate formed of glass or plastic;

a semiconductor thin film which is provided on the substrate and includes at least one crystallized region which is crystallized in a predetermined direction;

a bipolar thin-film transistor including an emitter region, a base region and a collector region which are formed in the crystallized region of the semiconductor thin film, and a gate electrode arranged in the predetermined direction;

an MOS thin-film transistor including a source region formed by the emitter region, a channel region formed by the base region, and a drain region formed by the collector region which are formed in the semiconductor thin film, and a gate electrode formed over a channel in the channel region; and

a lead-out electrode connected to the base region, wherein

the gate electrode of the bipolar thin-film transistor is formed on the base region via an insulation film,

the lead-out electrode and the gate electrode of the bipolar thin-film transistor are electrically connected to have an equal potential,

the MOS-bipolar hybrid thin-film transistor has both a function of the bipolar thin-film transistor and a function of the MOS thin-film transistor, and

a flowing direction of current in the bipolar thin-film transistor, a flowing direction of current in the MOS thin-film transistor, and said predetermined direction are the same.

2. The MOS-bipolar hybrid thin-film transistor according to claim 1 , wherein the at least one crystallized region includes at least one single-crystal grain which is crystallized in a lateral direction.

3. The MOS-bipolar hybrid thin-film transistor according to claim 2 , wherein the semiconductor thin film has a T shaped pattern formed by a lateral portion and a width portion extended from the lateral portion,

the MOS thin-film transistor and the bipolar thin-film transistor are formed in the lateral portion, and

the bipolar thin-film transistor includes a base contact portion which is formed in the width portion and electrically connected to the base region.

4. The MOS-bipolar hybrid thin-film transistor according to claim 3 , wherein the base contact portion has an impurity concentration higher than the collector region.

5. The MOS-bipolar hybrid thin-film transistor according to claim 4 , wherein the bipolar thin-film transistor includes a collector contact portion which is formed in the width portion and electrically connected to the collector region and which has an impurity concentration higher than the collector region.

6. The MOS-bipolar hybrid thin-film transistor according to claim 2 , wherein the semiconductor thin film has a T shaped pattern formed by a lateral portion and a width portion extended from the lateral portion,

the MOS thin-film transistor and the bipolar thin-film transistor are formed in the lateral portion, and

the bipolar thin-film transistor includes a collector contact portion which is formed in the width portion and electrically connected to the collector region.

7. The MOS-bipolar hybrid thin-film transistor according to claim 6 , wherein the collector contact portion has an impurity concentration higher than the collector region.

8. The MOS-bipolar hybrid thin-film transistor according to claim 1 , wherein the base region has a width of at least 5 μm, the width being normal to the predetermined direction.

9. An MOS-bipolar hybrid thin-film transistor, comprising:

a substrate formed of glass or plastic;

a semiconductor thin film which is provided on the substrate and includes at least one crystallized region which is crystallized in a predetermined direction;

a plurality of bipolar thin-film transistors each including an emitter region, a base region and a collector region which are formed in the crystallized region of the semiconductor thin film, and a gate electrode arranged in the predetermined direction;

a plurality of MOS thin-film transistors each including a source region formed by the emitter region, a channel region formed by the base region, and a drain region formed by the collector region which are formed in the semiconductor thin film, and a gate electrode formed over a channel in the channel region; and

a lead-out electrode connected to each of the base regions, wherein

the gate electrodes of the bipolar thin-film transistors are respectively formed on the base regions via an insulation film,

the lead-out electrode and the gate electrodes of the bipolar thin-film transistors are electrically connected to have an equal potential,

the MOS-bipolar hybrid thin-film transistor has both a function of one of the bipolar thin-film transistors and a function of one of the MOS thin-film transistors, and

the channel regions respectively formed by the base regions are connected in parallel with each other.

10. The MOS-bipolar hybrid thin-film transistor according to claim 9 , wherein the at least one crystallized region includes at least one single-crystal grain which is crystallized in a lateral direction.

11. The MOS-bipolar hybrid thin-film transistor according to claim 10 , wherein the semiconductor thin film has a T shaped pattern formed by a lateral portion and a width portion extended from the lateral portion,

the MOS thin-film transistors and the bipolar thin-film transistors are formed in the lateral portion, and

each of the bipolar thin-film transistors includes a base contact portion which is formed in the width portion and electrically connected to the base region.

12. The MOS-bipolar hybrid thin-film transistor according to claim 11 , wherein the base contact portion has an impurity concentration higher than the collector region.

13. The MOS-bipolar hybrid thin-film transistor according to claim 12 , wherein each of the bipolar thin-film transistors includes a collector contact portion which is formed in the width portion and electrically connected to the collector region and which has an impurity concentration higher than the collector region.

14. The MOS-bipolar hybrid thin-film transistor according to claim 10 , wherein the semiconductor thin film has a T shaped pattern formed by a lateral portion and a width portion extended from the lateral portion,

the MOS thin-film transistors and the bipolar thin-film transistors are formed in the lateral portion, and

each of the bipolar thin-film transistors includes a collector contact portion which is formed in the width portion and electrically connected to the collector region.

15. The MOS-bipolar hybrid thin-film transistor according to claim 14 , wherein the collector contact portion has an impurity concentration higher than the collector region.

16. The MOS-bipolar hybrid thin-film transistor according to claim 9 , wherein each of the base regions has a width of at least 5 μm, the width being normal to the predetermined direction.

17. An MOS-bipolar hybrid thin-film transistor, comprising:

a substrate formed of glass or plastic;

a semiconductor thin film which is provided on the substrate and includes at least one crystallized region which is crystallized in a predetermined direction;

a plurality of bipolar thin-film transistors each including an emitter region, a base region and a collector region which are formed in the crystallized region of the semiconductor thin film, and a gate electrode arranged in the predetermined direction;

a plurality of MOS thin-film transistors each including a source region formed by the emitter region, a channel region formed by the base region, and a drain region formed by the collector region which are formed in the semiconductor thin film, and a gate electrode formed over a channel in the channel region; and

a lead-out electrode connected to each of the base regions, wherein

the gate electrodes of the bipolar thin-film transistors are respectively formed on the base regions via an insulation film,

the lead-out electrode and the gate electrodes of the bipolar thin-film transistors are electrically connected to have an equal potential,

the MOS-bipolar hybrid thin-film transistor has both a function of one of the bipolar thin-film transistors and a function of one of the MOS thin-film transistors,

the channel regions respectively formed by the base regions are connected in parallel with each other, and

a flowing direction of current in the one of the bipolar thin-film transistors, a flowing direction of current in the one of the MOS thin-film transistors, and said predetermined direction are the same.

18. An MOS-bipolar hybrid thin-film transistor, comprising:

a semiconductor thin film which includes at least one crystallized region;

a bipolar thin-film transistor including an emitter region, a base region and a collector region which are formed in the semiconductor thin film, and a gate electrode;

an MOS thin-film transistor including a source, a channel region, and a drain which are formed in the semiconductor thin film, and a gate electrode formed over a channel in the channel region; and

a lead-out electrode connected to the base region, wherein

the gate electrode of the bipolar thin-film transistor is formed on the base region via an insulation film,

the lead-out electrode and the gate electrode of the bipolar thin-film transistor are electrically connected to have an equal potential,

the semiconductor thin film is a semiconductor thin film which is crystallized in a predetermined direction,

the at least one crystallized region includes at least one single-crystal grain which is crystallized in a lateral direction,

the semiconductor thin film has a T shaped pattern formed by a lateral portion and a width portion extended from the lateral portion,

the MOS thin-film transistor and the bipolar thin-film transistor are formed in the lateral portion, and

the bipolar thin-film transistor includes a base contact portion which is formed in the width portion and electrically connected to the base region.

19. An MOS-bipolar hybrid thin-film transistor, comprising:

a semiconductor thin film which includes at least one crystallized region;

a bipolar thin-film transistor including an emitter region, a base region and a collector region which are formed in the semiconductor thin film, and a gate electrode;

an MOS thin-film transistor including a source, a channel region, and a drain which are formed in the semiconductor thin film, and a gate electrode formed over a channel in the channel region; and

a lead-out electrode connected to the base region, wherein

the gate electrode of the bipolar thin-film transistor is formed on the base region via an insulation film,

the lead-out electrode and the gate electrode of the bipolar thin-film transistor are electrically connected to have an equal potential,

the semiconductor thin film is a semiconductor thin film which is crystallized in a predetermined direction,

the at least one crystallized region includes at least one single-crystal grain which is crystallized in a lateral direction,

the semiconductor thin film has a T shaped pattern formed by a lateral portion and a width portion extended from the lateral portion,

the MOS thin-film transistor and the bipolar thin-film transistor are formed in the lateral portion, and

the bipolar thin-film transistor includes a collector contact portion which is formed in the width portion and electrically connected to the collector region.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 8, 2013
From: ADVANCED LCD TECHNOLOGIES DEVELOPMENT CENTER CO., LTD.
To: SHARP KABUSHIKI KAISHA
Reel/Frame 029585/0346 →
Priority Claims (1)
JP 2006-175473 · Jun 26, 2006 · national
Continuity (2)
Division 11760926 · Jun 11, 2007
Related Publication 20110227076A1 · Sep 22, 2011