IP Library Granted Patent US 6,984,023
Granted Patent B2
US 6,984,023 · App. 10/636,203 · Granted Jan 10, 2006

Micro-electromechanical displacement device

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Quick Facts
Patent No.
US 6,984,023
App. No.
10/636,203
Granted
Jan 10, 2006
Kind
B2
Abstract

A micro-electromechanical displacement device includes a wafer substrate that incorporates drive circuitry. A thermal actuator is fast, at one end, with the wafer substrate, while the other end is fast with a component to be displaced. The thermal actuator has a pair of activating members of a material having a coefficient of thermal expansion which is such that the material is capable of performing work when heated. One of the activating members is connected to the drive circuitry layer to be heated on receipt of a signal from the drive circuitry layer so that said one of the activating members expands to a greater extent than the remaining activating member, resulting in displacement of the actuator arm. A gap is defined between the activating members.

Claims (11)

1. A micro-electromechanical displacement device that comprises

a wafer substrate that incorporates drive circuitry; and

a thermal actuator that is fast, at one end, with the wafer substrate, while the other end is fast with a component to be displaced, the thermal actuator having a pair of activating members of a material having a coefficient of thermal expansion which is such that the material is capable of performing work when heated, one of the activating members being connected to a drive circuitry layer to be heated on receipt of a signal from the drive circuitry layer so that said one of the activating members expands to a greater extent than the remaining activating member, resulting in displacement of an actuator arm, a gap being defined between the activating members.

2. A micro-electromechanical displacement device as claimed in claim 1 , in which a strut is interposed between the activating members and fast with the activating members.

3. A micro-electromechanical displacement device as claimed in claim 1 , in which a heat sink is operatively arranged relative to said one of the activating members intermediate the ends of the actuator arm to reduce excessive heat build up in said one of the activating members.

4. A micro-electromechanical fluid ejection device that comprises

a wafer substrate that incorporates drive circuitry; and

a plurality of nozzle arrangements positioned on the wafer substrate, each nozzle arrangement being connected to the drive circuitry to be operable upon receipt of a signal from the drive circuitry, each nozzle arrangement comprising

nozzle chamber walls and a roof wall that define a nozzle chamber and a fluid ejection port in fluid communication with the nozzle chamber;

a fluid displacement member that is positioned in the nozzle chamber and is displaceable within the nozzle chamber to eject fluid from the fluid ejection port; and

an actuator arm that is anchored at one end to the wafer substrate and connected at an opposed end to the fluid displacement member, the actuator arm having a pair of activating members of a material having a coefficient of thermal expansion which is such that the material is capable of performing work when heated, one of the activating members being connected to a drive circuitry layer to be heated on receipt of the signal from the drive circuitry layer so that said one of the activating members expands to a greater extent than the remaining activating member, resulting in displacement of the actuator arm, a gap being defined between the activating members.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 28, 2013
From: SILVERBROOK RESEARCH PTY. LIMITED
To: ZAMTEC LIMITED
Reel/Frame 031506/0489 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 8, 2003
From: SILVERBROOK, KIA
To: SILVERBROOK RESEARCH PTY. LTD.
Reel/Frame 014382/0026 →