Aperture module and camera module including the same
An aperture module includes a base plate configured to have a central opening and include a pivot pin protruding from one corner area of the base plate, a pair of first blades configured to pivot about the pivot pin to form a first aperture diameter smaller than a diameter of the central opening, a pair of second blades configured to pivot about the pivot pin to form a second aperture diameter smaller than the first aperture diameter, a cover plate, comprising a cover guide slot, configured to cover the pair of first blades and the pair of second blades positioned on the base plate, and an aperture driver, comprising a driving pin coupled to a blade slot disposed in either one of the pair of first blades or the pair of second blades and the cover guide slot and configured to move along the cover guide slot.
1 . An aperture module comprising:
a base plate configured to have a central opening and include a pivot pin protruding from, at least, one corner area of the base plate;
a pair of first blades configured to pivot about the pivot pin to form a first aperture diameter smaller than a diameter of the central opening;
a pair of second blades configured to pivot about the pivot pin to form a second aperture diameter smaller than the first aperture diameter;
a cover plate, comprising a cover guide slot, configured to cover the pair of first blades and the pair of second blades positioned on the base plate, and to be coupled to the base plate; and
an aperture driver, comprising a shape memory alloy (SMA) wire and a driving pin coupled to a blade slot disposed in either one of the pair of first blades or the pair of second blades and the cover guide slot and configured to move along the cover guide slot,
wherein the driving pin comprises a groove disposed on an upper surface thereof, the groove receiving the SMA wire, and the SMA wire is coupled to the driving pin and configured to drive the driving pin.
2 . The aperture module of claim 1 , wherein
at least a first end of the SMA wire is seated in the groove on the upper surface of the driving pin and extends laterally from the driving pin to move the driving pin depending on an electrical signal input.
3 . The aperture module of claim 2 , wherein
the cover plate further includes a circuit board positioned in a lower corner area, and
the shape memory alloy wire is configured to have opposite ends thereof connected to the circuit board and a middle portion thereof connected to the driving pin.
4 . The aperture module of claim 2 , wherein
the cover plate further includes a circuit board positioned in a lower corner area, and
the shape memory alloy wire is configured to have a first end thereof connected to the circuit board and a second end thereof connected to the driving pin.
5 . The aperture module of claim 2 , wherein
the driving pin includes a first driving pin coupled to a pair of first blade slots respectively disposed in the pair of first blades, and a second driving pin coupled to a pair of second blade slots respectively disposed in the pair of second blades, and
the shape memory alloy wire includes a first shape memory alloy wire connected to the first driving pin, and a second shape memory alloy wire connected to the second driving pin.
6 . The aperture module of claim 1 , wherein
the pivot pin includes a first pivot pin coupled to a pair of pivot pin holes respectively disposed in the pair of first blades, and a second pivot pin coupled to a pair of pivot pin holes respectively disposed in the pair of second blades.
7 . The aperture module of claim 6 , wherein
the first pivot pin and the second pivot pin are positioned in opposite diagonal corner areas of the base plate, respectively.
8 . The aperture module of claim 1 , wherein
the first blades are positioned at different first stages, respectively, and
the second blades are positioned at different second stages, respectively.
9 . The aperture module of claim 1 , wherein
the pair of first blades includes a pair of first driving sections overlapping an overlapping area configured to vary depending on a movement of the driving pin, and a pair of first shielding sections semi-annularly extending from the pair of first driving sections, respectively, to form the first aperture diameter, and
the pair of first blades includes a pair of second driving sections overlapping an overlapping area configured to vary depending on a movement of the driving pin, and a pair of second shielding sections semi-annularly extending from the pair of second driving sections, respectively, to form the second aperture diameter.
10 . The aperture module of claim 1 , wherein each of the pair of first blades and the pair of second blades include a metal or a polymer.
11 . The aperture module of claim 1 , wherein
the base plate includes a base guide slot disposed in a region corresponding to the cover guide slot.
12 . The aperture module of claim 1 , wherein
the cover plate further includes a circuit board positioned in a lower corner area, and a clamp unit formed by bending a surface thereof extending from a corner area on which the circuit board is positioned to cover the circuit board.
13 . The aperture module of claim 1 , wherein
the base plate includes a stopper pin protruding from a surface thereof, and
each of the pair of first blades and the pair of second blades includes a stopper slot coupled to the stopper pin.
14 . The aperture module of claim 1 , wherein
the aperture driver further includes a spring member configured to support the driving pin, and apply a repulsive force radially outward of the central opening.
15 . The aperture module of claim 14 , wherein
the spring member includes a wire having a circular or polygonal cross-section.
16 . A camera module comprising:
a housing configured to have an inner space;
a lens driving module accommodated in the inner space of the housing; and
an aperture module positioned to control light incident on the lens driving module, the aperture module comprising:
a base plate configured to have a central opening and include a pivot pin protruding from, at least, one corner area of the base plate;
a pair of first blades configured to pivot about the pivot pin to form a first aperture diameter smaller than a diameter of the central opening;
a pair of second blades configured to pivot about the pivot pin to form a second aperture diameter smaller than the first aperture diameter;
a cover plate, comprising a cover guide slot, configured to cover the pair of first blades and the pair of second blades positioned on the base plate, and to be coupled to the base plate; and
an aperture driver, comprising a shape memory alloy (SMA) wire and a driving pin coupled to a blade slot disposed in either one of the pair of first blades or the pair of second blades and the cover guide slot,
wherein the driving pin comprises a groove disposed on an upper surface thereof, the groove receiving the SMA wire, the driving pin is configured to move along the cover guide slot, and the SMA wire is coupled to the driving pin and configured to drive the driving pin.
17 . The camera module of claim 16 , wherein
at least a first end of the SMA wire is seated in the groove on the upper surface of the driving pin and extends laterally from the driving pin to move the driving pin depending on an electrical signal input.
18 . The camera module of claim 17 , wherein
the driving pin includes a first driving pin coupled to a pair of first blade slots respectively disposed in the pair of first blades, and a second driving pin coupled to a pair of second blade slots respectively disposed in the pair of second blades, and
the shape memory alloy wire includes a first shape memory alloy wire connected to the first driving pin, and a second shape memory alloy wire connected to the second driving pin.
19 . The camera module of claim 16 , wherein
the pivot pin includes a first pivot pin coupled to a pair of pivot pin holes respectively disposed in the pair of first blades, and a second pivot pin coupled to a pair of pivot pin holes respectively disposed in the pair of second blades.
20 . An aperture module comprising:
a base plate comprising a first pivot pin and a second pivot pin spaced apart from the first pivot pin, wherein the first pivot pin and the second pivot pin are on opposing sides of the base plate;
a pair of first blades, disposed on the first pivot pin, configured to pivot about the first pivot pin to form a first aperture diameter smaller than a diameter of a central opening of the base plate;
a pair of second blades, disposed on the second pivot pin, configured to pivot about the second pivot pin to form a second aperture diameter different than the first aperture diameter and the central opening of the base plate;
a cover plate, comprising a cover guide slot, configured to cover the pair of first blades and the pair of second blades, and to be coupled to the base plate; and
an aperture driver, comprising a shape memory alloy (SMA) wire and a driving pin coupled to a blade slot disposed in either one of the pair of first blades or the pair of second blades and the cover guide slot,
wherein the driving pin comprises a groove disposed on an upper surface thereof, the groove receiving the SMA wire, the driving pin is configured to move along the cover guide slot, and the SMA wire is coupled to the driving pin and configured to drive the driving pin.
21 . The aperture module of claim 20 , wherein
a first end of the SMA wire is seated in the groove on the upper surface of the driving pin and extends laterally from the driving pin to move the driving pin depending on an electrical signal input.
22 . A camera module comprising:
a lens driving module accommodated in an inner space of a housing; and
the aperture module of claim 20 positioned within the housing to control light incident on the lens driving module.