This application claims priority to Taiwan Application Serial Number 97205660, filed Apr. 2, 2008, which is herein incorporated by reference.
1. Field of Invention
The present invention relates to a lens actuating module. More particularly, the present invention relates to a multi-stage lens actuating module.
2. Description of Related Art
Due to advances in photography, most modern cameras can focus on both near and far objects to ensure clear, sharp images. Adjusting the lens makes the light irradiated into the camera aggregated at an optimum position, the so-called focus, and then an image can be clearly recorded by the camera.
Manual focus is used for conventional cameras; in other words, the position of a traditional camera lens is manually adjusted to a point determined by a user's naked eye. Although advanced users may obtain a better effect by manual focus, it may be too difficult for amateur users; therefore, the fully automatic camera has been presented to the public. A fully automatic camera can automatically determine a proper focal distance before an image is recorded; thus, the difficulty in using the camera and the possibility of a faulty focus can be reduced.
Generally, there is a processor and a lens driving mechanism in a camera for simple auto-focus method. According to the tendency for electronic products to be integrated, a camera may also be utilized in a mobile phone or a PDA (personal digital assistant); thus, the price and miniaturization of an electronic device has become an important consideration.
According to the foregoing description, there is a need to reduce the price and the volume of the electronic devices with the photograph camera.
The invention provides a multi-stage lens actuating module, which includes a housing with a cavity, a lens holder disposed in the cavity for lo containing a lens component, an elastic piece disposed between the lens holder and the housing, a flange protruding from a side of the lens holder, and a raised bar protruding from a side of the elastic piece. The flange is in contact with the raised bar to determine a stroke of the lens holder.
It is to be understood that both the foregoing general description and the following detailed description are by examples, and are intended to provide further explanations of the invention as claimed.
The accompanying drawings are included to provide a further understanding of the invention, and are incorporated in and constitute a part of this specification. The drawings illustrate embodiments of the invention and, together with the description, serve to explain the principles of the invention. In the drawings,
Reference will now be made in detail to the present preferred embodiments of the invention, examples of which are illustrated in the accompanying drawings. Wherever possible, the same reference numbers are used in the drawings and the description to refer to the same or like parts.
Refer to
The multi-stage actuating module 100 includes an upper cover 150 and a bottom cover 156 disposed on two opposite sides of the housing 110, and a case 154 wrapping the housing 110. The multi-stage actuating module 100 further includes a magnetic device 112 and a conductor coil 122 for actuating the lens holder 120 in the housing 110. The conductor coil 122 may be encircled at an outer surface of the lens holder 120, and the magnetic device 112 may be disposed in the housing 110 and surround the lens holder 120. The magnetic device 112 is fastened on an inner surface of the holder 110, such that the magnetic device 112 can face the conductor coil 122 when the lens holder 120 is placed in the housing 110.
A part of the conductor coil 122 is located in the magnetic line provided by the magnetic device 112, and the magnetic line may perpendicularly cut across the conductor coil 122. When the conductor coil 122 conducts electrical current, the magnetic field of the conductor coil 122 and the magnetic line of the magnetic device 112 may generate a force to push the lens holder 120 in the moving direction.
The multi-stage actuating module 100 may further include a flange 160 protruding from the lens holder 120, and a raised bar 162 protruding from the elastic bar 140. The flange 160 is disposed on a side of the lens holder 120, which faces the elastic piece 140. The raised bar 162 is disposed on a side of the elastic piece 140, which faces the lens holder 120. The flange 160 may be in contact with the raised bar 162.
Refer to
An operation interface of the multi-stage actuating module 100 may be switched to apply a current to the conductor coil 122 of the lens holder 120 when the user wants to change the focus of the lens component 130. The force generated by the charged conductor coil 122 and the magnetic device 112 may force the lens holder 120 to move along the moving direction. Then the flange 160 of the lens holder 120 may cross through the raised bar 162 of the elastic piece 140, as shown in
The maximum stroke of the lens holder 120 may be determined by the height of the contact surface between the lens holder 120 and the upper cover 150. The contact surface of the lens holder 120 may touch the contact surface of the upper cover 150 tightly to prevent the lens holder 120 moving continuously when the flange 160 passes through the raised bar 162. But the flange 160 still touches the raised bar 162 of the elastic piece 140 when the lens holder 120 touches the upper cover 150, and the displacement of the lens holder 120 may be regarded as the maximum stroke.
The operation interface of the multi-stage actuating module 100 may be switched by hand to change the current direction of the conductor coil 122 to further change the force direction of the conductor coil 122 and the magnetic device 112, and the lens holder 120 may be disposed between the first position of
Refer to
The photo mode of the multi-stage actuating module 100 may be switched, and the force generated by the charged conductor coil 122 and the magnetic device 112 may force the flange 160 of the lens holder 120 cross through the raised bar 162 of the elastic piece 140 to change the focus. The current direction of the conductor coil 122 may be changed by manual switching the photo mode of the electronic device, thus the expensive auto-focus processor can be omitted to reduce the price of the multi-stage actuating module 100.
Refer to
The contact location of the flange 160 and the raised bars 162 may determine the position of the lens holder 120. The arrangement of the raised bars 162 may further determine the stroke of the lens holder 120, for example, the size, the adjacent distance, the arrange length of the raised bars 162 can be designed according to different requirement to altering the stroke of each stage of the lens holder 120.
The electronic device with the multi-stage actuating module 100 may include the operation interface, such as a control panel, a button, or a knob. The position of the lens component 130 of the multi-stage actuating module 100 may be manual controlled by the operation interface. The lens holder 120 may zoom-in toward the upper cover 150 step by step when the multi-stage actuating module 100 is selected at a macro mode. The current direction of the conductor coil 122 may be changed manually by the operation interface, and the lens holder 120 may zoom-out to the opposite upper cover 150 according to the requirement.
The multi-stage actuating module 100 of the embodiment may further include a low-level processor to automatically choose a preferred position of the lens holder 120 from the plural focus positions. The expensive auto-focus processor may be replaced by the low-level processor to reduce the price of the multi-stage actuating module 100.
Refer to
The lens holder 120 of the multi-stage actuating module 100 may step by step move forward or backward to the preferred focus. One of the flanges 160 disposed on the lens holder 120 is contact with the raised bar 162. The contact location of the flanges 160 and the raised bar 162 may determine the position of the lens holder 120. The arrangement of the flanges 160 may further determine the stroke of the lens holder 120, for example, the size, the adjacent distance, the number of the flanges 160 can be designed according to different requirement to altering the stroke of each stage of the lens holder 120.
Refer to
As shown in
As shown in
The material of the elastic piece 140 may be an elastic material, such as a metal, a plastic, or a rubber. The shape of the raised bar 160 may be an arc or a polygon.
The multi-stage lens actuating module of the invention may be utilized in electronic devices. The flange disposed on the lens holder and the raised bar disposed on the elastic piece may be regarded as the position structure to lo position the lens holder in different focus position. The operation interface of the electronic device may be switched annual or automatically to move the lens holder step by step to the preferred focus position. The multi-stage lens actuating module may omit the expensive auto-focus processor to reduce the price of the electronic device.
It will be apparent to those skilled in the art that various modifications and variations can be made to the structure of the present invention without departing from the scope or spirit of the invention. In view of the foregoing, it is intended that the present invention cover modifications and variations of this invention provided they fall within the scope of the following claims and their equivalents.
Number | Date | Country | Kind |
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97205660 | Apr 2008 | TW | national |