IP Library Granted Patent US 12669674
Granted Patent B2
US 12669674 · App. 18/294,615 · Granted Jun 30, 2026

Hybrid actuator for zoom driving

Inventors: Je Seung Yeon (Chungcheongbuk-do, KR); In Su Kang (Chungcheongbuk-do, KR); Hyeon Ik Cho (Daegu, KR); Jae Seon Lee (Chungcheongbuk-do, KR)
Assignee: JAHWA electronics Co., Ltd.
G02B7/102
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Quick Facts
Patent No.
US 12669674
App. No.
18/294,615
Granted
Jun 30, 2026
Kind
B2
Abstract

A hybrid zoom drive actuator includes a first carrier having a first lens attached thereto, a second carrier located anterior or posterior to the first carrier along the optical axis and having a second lens attached thereto, a housing enclosing the first and second carriers, a first driving unit capable of moving the first carrier along the optical axis, a driving magnet attached to the second carrier, a driving coil facing the driving magnet and capable of providing driving force to move the second carrier along the optical axis, a Hall sensor capable of detecting the position of the second carrier, and a first circuit board equipped with the driving coil and the Hall sensor.

Claims (46)

1 . A hybrid zoom drive actuator comprising:

a first carrier having a first lens attached thereto;

a second carrier located anterior or posterior to the first carrier along the optical axis and having a second lens attached thereto;

a housing enclosing the first and second carriers;

a first driving unit capable of moving the first carrier along the optical axis;

a driving magnet attached to the second carrier;

a driving coil facing the driving magnet and capable of providing driving force to move the second carrier along the optical axis;

a Hall sensor capable of detecting the position of the second carrier; and

a first circuit board equipped with the driving coil and the Hall sensor,

wherein the first circuit board is mounted on the first carrier to move along the optical axis with the first carrier.

2 . The hybrid zoom drive actuator according to claim 1 ,

wherein the actuator further comprises an operating drive capable of applying power to the driving coil, said power having a magnitude and a direction in response to the signal from the Hall sensor; and

wherein the operating drive, upon movement of the first carrier, controls the movement of the second carrier, said control being in response to the magnitude and direction of the movement of the first carrier.

3 . The hybrid zoom drive actuator according to claim 1 ,

wherein the second carrier is placed within the moving space provided by the first carrier, and

wherein the first carrier comprises a stopper structure to delimit the scope of movement for the second carrier.

4 . A hybrid zoom drive actuator comprising:

a first carrier having a first lens attached thereto;

a second carrier located anterior or posterior to the first carrier along the optical axis and having a second lens attached thereto;

a housing enclosing the first and second carriers;

a first driving unit capable of moving the first carrier along the optical axis;

a driving magnet attached to the second carrier;

a driving coil facing the driving magnet and capable of providing driving force to move the second carrier along the optical axis;

a Hall sensor capable of detecting the position of the second carrier; and

a first circuit board equipped with the driving coil and the Hall sensor,

wherein the second carrier comprises:

a second mount equipped with the second lens; and

a second support fitted on the second mount, either left or right thereto and equipped with the driving magnet; said second support extending longer along the optical axis than the second mount,

wherein the first carrier comprises

a first mount equipped with the first lens;

a first support fitted on the first mount, either left or right thereto and having a first reception member to provide the moving space for the second support; said first support being equipped on the exterior thereof with the first circuit board, and

a first guide formed on a side of the first mount, either the left or right thereof, but opposite the side the first support is fitted thereon, and

wherein either the first support or the first guide is physically connected to the first driving unit.

5 . The hybrid zoom drive actuator according to claim 4 ,

wherein the first support extends along the optical axis longer than the first mount in a direction running opposite to the second support.

6 . The hybrid zoom drive actuator according to claim 4 ,

wherein the second carrier further comprises a second guide formed on a side of the second mount, either the left or right thereof, but opposite the side the second support is fitted thereon, and

the first guide of the first carrier comprises a second reception member to provide the moving space for the second guide.

7 . The hybrid zoom drive actuator according to claim 6 ,

wherein first carrier comprises

a first guide rail formed on the first support and facing a first concave rail formed on the second support; and

a second guide rail formed on the first guide and facing a second concave rail formed on the second guide; and

wherein the one out of the first support and the first guide that is not physically connected to the first driving unit further comprises

a grooved rail facing a guide rail formed on the housing; and

a plurality of balls; with at least one of said plurality of balls positioned between the guide rail and the grooved rail; between the first guide rail and the first concave rail;

and between the second guide rail and the second concave rail.